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analysis/analysis-api-fir/src/org/jetbrains/kotlin/analysis/api/fir/components/KtFirSmartcastProvider.kt
if (this is KtQualifiedExpression && selectorExpression is KtCallExpression) return false // expressions like `foo.|bar|` or `foo?.|baz|` are ignored if (this is KtNameReferenceExpression && getQualifiedExpressionForSelector() != null) return false // only those types of expressions are supported
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analysis/analysis-api-fe10/src/org/jetbrains/kotlin/analysis/api/descriptors/components/KtFe10CompilerFacility.kt
/** * Whether unbound IR symbols should be stubbed instead of linked. * This should be enabled if the compiled file could refer to symbols defined in another file of the same module. * Such symbols are not compiled (only the file is passed to the backend) and so they cannot be linked from a dependency. */ val STUB_UNBOUND_IR_SYMBOLS: CompilerConfigurationKey<Boolean> = CompilerConfigurationKey<Boolean>("stub unbound IR symbols")
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analysis/analysis-api-fe10/src/org/jetbrains/kotlin/analysis/api/descriptors/CliFe10AnalysisFacade.kt
) { // there is no way to properly map KtModule to ModuleDescriptor, // Multi-module [KtFe10AnalysisHandlerExtension]s are used only for tests, // so just by name comparison should work as all module names are different return null } resolveSession = componentProvider.get() deprecationResolver = componentProvider.get()
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analysis/analysis-api-fir/src/org/jetbrains/kotlin/analysis/api/fir/KtFirAnalysisSession.kt
buildSet { // Add an empty scope to the shadowed set to give GlobalSearchScope.union something // to work with if there are no extension tools. // If there are extension tools, any empty scopes, whether from shadowedSearchScope // on the extension tools or from this add() call, will be ignored. add(GlobalSearchScope.EMPTY_SCOPE)
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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-fe10/src/org/jetbrains/kotlin/analysis/api/descriptors/utils/InlineFunctionAnalyzer.kt
*/ fun allFiles(): List<KtFile> = analyzedElements.mapTo(mutableSetOf()) { it.containingKtFile }.toList() /** * Returns the set of [KtObjectDeclaration]s which are defined as an object literal in one of the reached inline functions. */ fun inlineObjectDeclarations(): Set<KtObjectDeclaration> { val results = mutableSetOf<KtObjectDeclaration>()
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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/components/KtFirReferenceShortener.kt
this is FirClassUseSiteMemberScope -> true else -> false } /** * Assuming that both this [FirScope] and [another] are [FirNestedClassifierScope] or [FirClassUseSiteMemberScope] and both of them * are surrounding [from], returns whether this [FirScope] is closer than [another] based on the distance from [from]. *
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ReadMe.md
`Dependency verification failed` errors when local artifacts are absent or have different hashes listed in the [verification-metadata.xml](https://github.com/JetBrains/kotlin/blob/master/gradle/verification-metadata.xml) file. It's expected that `verification-metadata.xml` should only be updated with the commits that modify the build. There are some tips how to perform such updates:
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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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