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/analysis/analysis-api-fir/src/org/jetbrains/kotlin/analysis/api/fir/diagnostics/KtFirDataClassConverters.kt "Kotlin Compiler Core" # UNKNOWN: /annotations/ /ant/ "Kotlin Build Tools" /benchmarks/ "Kotlin Compiler Core" /build-common/ "Kotlin Build Tools" /compiler/android-tests/ "Kotlin JVM" /compiler/backend/ "Kotlin JVM" /compiler/backend.common.jvm/ "Kotlin JVM"
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analysis/analysis-api-fir/src/org/jetbrains/kotlin/analysis/api/fir/references/KDocReferenceResolver.kt
* And then we will be able to resolve the qualifier selected by the user to the proper class, package or callable. * * It's possible that the whole qualifier is invalid, in this case we still want to resolve our [selectedFqName]. * To do this, we are trying to resolve the whole qualifier until we succeed. * * @param selectedFqName the selected fully qualified name of the KDoc
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analysis/analysis-api-fir/src/org/jetbrains/kotlin/analysis/api/fir/components/KtFirReferenceShortener.kt
* * N.B. Even if the [wholeQualifierElement] is not strictly in the [selection], * some outer part of it might be, and we want to shorten that. * So we have to check all the outer qualifiers. */ private fun findClassifierQualifierToShorten( wholeQualifierClassId: ClassId, wholeQualifierElement: KtElement,
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analysis/analysis-api-fir/src/org/jetbrains/kotlin/analysis/api/fir/references/FirReferenceResolveHelper.kt
// // For the example: // // class A { // constructor() // } // class B: <caret>A() // // We want to resolve to the secondary constructor in A. Therefore, we check that the caret is at a supertype // call entry and if so we resolve the constructor callee expression.
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analysis/analysis-api-fir/src/org/jetbrains/kotlin/analysis/api/fir/KtSymbolByFirBuilder.kt
return originalDeclaration.takeIf { this.origin is FirDeclarationOrigin.SubstitutionOverride.CallSite } } /** * We want to unwrap a SUBSTITUTION_OVERRIDE wrapper if it doesn't affect the declaration's signature in any way. If the signature * is somehow changed, then we want to keep the wrapper. * * Such substitute overrides happen because of inheritance. *
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analysis/analysis-api-fir/src/org/jetbrains/kotlin/analysis/api/fir/diagnostics/KtFirDataClassConverters.kt
firDiagnostic as KtPsiDiagnostic, token, ) } add(FirErrors.DECLARATION_CANT_BE_INLINED) { firDiagnostic -> DeclarationCantBeInlinedImpl( firDiagnostic as KtPsiDiagnostic, token, ) } add(FirErrors.DECLARATION_CANT_BE_INLINED_DEPRECATION.errorFactory) { firDiagnostic -> DeclarationCantBeInlinedDeprecationErrorImpl(
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analysis/analysis-api-fir/src/org/jetbrains/kotlin/analysis/api/fir/components/KtFirScopeProvider.kt
originalFile: KtFile, positionInFakeFile: KtElement ): KtScopeContext { val fakeFile = positionInFakeFile.containingKtFile // If the position is in KDoc, we want to pass the owning declaration to the ContextCollector. // That way, the resulting scope will contain all the nested declarations which can be references by KDoc. val parentKDoc = positionInFakeFile.parentOfType<KDoc>()
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analysis/analysis-api-fir/src/org/jetbrains/kotlin/analysis/api/fir/components/KtFirCallResolver.kt
* provided, an empty map is returned defensively so that [toTypeArgumentsMapping] doesn't conjure any error types. If you want to map * too few type arguments meaningfully, please provide filler types explicitly. */ private fun toTypeArgumentsMapping( typeArguments: List<FirTypeProjection>,
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analysis/analysis-api-fir/src/org/jetbrains/kotlin/analysis/api/fir/components/KtFirExpressionTypeProvider.kt
* * ```kt * fun usage(action: String.(Int) -> String) { * "hello".<expr>action</expr>(10) * } * ``` * * The user might want to know the type of the `action` callback. If we always return null for the named references, * we won't be able to handle this request, and just return null. So the user will only be able to see the type
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analysis/analysis-api-fir/src/org/jetbrains/kotlin/analysis/api/fir/components/KtFirImportOptimizer.kt
!isArrayFromVararg } // type ref with such source kind is explicitly present in the source, so we want to see it is KtFakeSourceElementKind.ArrayTypeFromVarargParameter -> true else -> false } fun createFor(typeRef: FirResolvedTypeRef): TypeQualifier? {
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