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analysis/analysis-api-fir/src/org/jetbrains/kotlin/analysis/api/fir/references/KDocReferenceResolver.kt
ResolveResult(symbol = this, receiverClassReference) /** * Resolves the [selectedFqName] of KDoc * * To properly resolve qualifier parts in the middle, * 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. *
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analysis/analysis-api-fir/src/org/jetbrains/kotlin/analysis/api/fir/references/FirReferenceResolveHelper.kt
): Collection<KtSymbol> { if (expression != adjustedResolutionExpression) { // Type alias detection. // // If we adjusted resolution to get a constructor instead of a class, we need to undo that // if the class is defined as a type alias. We can detect that situation when the constructed type // is different from the return type of the constructor. //
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analysis/analysis-api-fir/src/org/jetbrains/kotlin/analysis/api/fir/components/KtFirScopeProvider.kt
// to get the combined scope. A base declared member scope with Java enhancement doesn't exist, unfortunately. DeclaredMemberScopeKind.COMBINED -> { // The static scope contains inner classes, so we need to exclude them from the non-static scope to avoid duplicates.
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analysis/analysis-api-fir/src/org/jetbrains/kotlin/analysis/api/fir/components/KtFirTypeProvider.kt
} private fun ConeKotlinType.getDirectSuperTypes(shouldApproximate: Boolean): Sequence<ConeKotlinType> { return when (this) { // We also need to collect those on `upperBound` due to nullability. is ConeFlexibleType -> lowerBound.getDirectSuperTypes(shouldApproximate) + upperBound.getDirectSuperTypes(shouldApproximate)
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analysis/analysis-api-fir/src/org/jetbrains/kotlin/analysis/api/fir/components/KtFirPsiTypeProvider.kt
val javaType = JavaTypeImpl.create(psiType, javaElementSourceFactory.createTypeSource(psiType)) val javaTypeRef = buildJavaTypeRef { // Annotations are unused during `resolveIfJavaType`, so there is no need to provide something annotationBuilder = { emptyList() } type = javaType } val javaTypeParameterStack = MutableJavaTypeParameterStack()
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analysis/analysis-api-fir/src/org/jetbrains/kotlin/analysis/api/fir/evaluate/FirCompileTimeConstantEvaluator.kt
// } } // That constant is encoded as `unaryMinus` call with the const 2147483628 of long type, while the resolved type is Int. // After computing the compile time constant, we need to adjust its type here. val expression = if (expectedKind != null && expectedKind != kind && value is Number) { val typeAdjustedValue = expectedKind.convertToNumber(value as Number)!!
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analysis/analysis-api-fir/src/org/jetbrains/kotlin/analysis/api/fir/components/KtFirImportOptimizer.kt
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analysis/analysis-api-fir/src/org/jetbrains/kotlin/analysis/api/fir/components/KtFirExpressionTypeProvider.kt
// If `valueArg` is [KtLambdaArgument], its [getArgumentExpression] could be labeled expression (e.g., l@{ ... }). // That is not exactly `expr`, which would be [KtLambdaExpression]. So, we need [unwrap] here. valueArg.getArgumentExpression()?.unwrap() == expr } ?: return null val callExpression = (valueArgument.parent as? KtValueArgumentList)?.parent as? KtCallElement
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