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analysis/analysis-api-fe10/src/org/jetbrains/kotlin/analysis/api/descriptors/symbols/descriptorBased/base/Kt1DescUtils.kt
typeProjection.type.hasReferenceOtherThan(allowedTypeParameterDescriptors) } } } /** * Use-site substitution override are tracked through [CallableDescriptor.getOriginal]. Note that overridden symbols are accessed through * [CallableDescriptor.getOverriddenDescriptors] instead, which is separate from [CallableDescriptor.getOriginal]. */ @Suppress("UNCHECKED_CAST")
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analysis/analysis-api-fir/src/org/jetbrains/kotlin/analysis/api/fir/references/KDocReferenceResolver.kt
* we need to resolve the whole qualifier to understand which parts of the qualifier are package or class qualifiers. * 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. *
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analysis/analysis-api-fir/src/org/jetbrains/kotlin/analysis/api/fir/references/FirReferenceResolveHelper.kt
internal object FirReferenceResolveHelper { fun FirResolvedTypeRef.toTargetSymbol(session: FirSession, symbolBuilder: KtSymbolByFirBuilder): KtSymbol? { // When you call a method from Java with type arguments, in FIR they are currently represented as flexible types. // TODO Consider handling other non-ConeLookupTagBasedType types here (see KT-66418) val type = getDeclaredType()?.lowerBoundIfFlexible() as? ConeLookupTagBasedType
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analysis/analysis-api-fir/src/org/jetbrains/kotlin/analysis/api/fir/components/KtFirSymbolContainingDeclarationProvider.kt
return false } is KtSamConstructorSymbol -> { // SAM constructors are always top-level return false } is KtScriptSymbol -> { // Scripts are always top-level return false } else -> {} }
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analysis/analysis-api-fir/src/org/jetbrains/kotlin/analysis/api/fir/components/KtFirScopeProvider.kt
/** * A scope containing both non-static and static members. A smart combined scope (as opposed to a naive combination of [KtScope]s * with [getCompositeScope]) avoids duplicate inner classes, as they are contained in non-static and static scopes. * * A proper combined declared member scope kind also makes it easier to cache combined scopes directly (if needed). */ COMBINED, }
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analysis/analysis-api-fir/src/org/jetbrains/kotlin/analysis/api/fir/components/KtFirCompilerFacility.kt
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analysis/analysis-api-fir/src/org/jetbrains/kotlin/analysis/api/fir/components/KtFirExpressionInfoProvider.kt
// Type parameters, return types and other annotations are all contained in KtUserType, // and are never considered used as expressions is KtUserType -> false // Only top-level named declarations have KtFile/KtScript Parents, and are never considered used is KtFile -> false is KtScript ->
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analysis/analysis-api-fir/src/org/jetbrains/kotlin/analysis/api/fir/components/KtFirMetadataCalculator.kt
append("(") if (method.containingClass?.isEnum == true && method.isConstructor) { // Enum constructors are represented without name/ordinal in light classes, which seems fine because they don't have name/ordinal // in Java sources as well, even though the parameters are there in the bytecode. Since metadata stores JVM signatures, we're // adding the name/ordinal parameters manually.
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analysis/analysis-api-fir/src/org/jetbrains/kotlin/analysis/api/fir/components/KtFirPsiTypeProvider.kt
} else null } } val unavailableLocalTypes = localTypes.filterNot { it.isLocalButAvailableAtPosition(session, useSitePosition) } // Need to approximate if there are local types that are not available in this scope return localTypes.isNotEmpty() && unavailableLocalTypes.isNotEmpty() } // Mimic FirDeclaration.visibilityForApproximation
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analysis/analysis-api-fe10/src/org/jetbrains/kotlin/analysis/api/descriptors/components/KtFe10CallResolver.kt
candidates.flatMap { candidate -> // The current BindingContext does not have the diagnostics for each individual candidate, only for the resolved call. // If there are multiple candidates, we can get each one's diagnostics by reporting it to a new BindingTrace. val candidateTrace = DelegatingBindingTrace(this, "Trace for candidate", withParentDiagnostics = false)
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