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analysis/analysis-api-fir/src/org/jetbrains/kotlin/analysis/api/fir/components/KtFirReferenceShortener.kt
* [resolveUnqualifiedAccess] above. * 2. Check whether the candidate with the highest priority based on the distance to the scope from [expressionInScope] is the same * as [calledSymbol] ot not * - We use [hasScopeCloserThan] to determine the distance to the scope */ private fun shortenIfAlreadyImported( firQualifiedAccess: FirQualifiedAccessExpression,
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ReadMe.md
On Windows you might need to add long paths setting to the repo: git config core.longpaths true ## Building The project is built with Gradle. Run Gradle to build the project and to run the tests using the following command on Unix/macOS: ./gradlew <tasks-and-options> or the following command on Windows: gradlew <tasks-and-options>
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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-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. */
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analysis/analysis-api-fir/src/org/jetbrains/kotlin/analysis/api/fir/references/KDocReferenceResolver.kt
* To do this, we are trying to resolve the whole qualifier until we succeed. * * @param selectedFqName the selected fully qualified name of the KDoc * @param fullFqName the whole fully qualified name of the KDoc * @param contextElement the context element in which the KDoc is defined * * @return the collection of KtSymbol(s) resolved from the fully qualified name * based on the selected FqName and context element
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analysis/analysis-api-fir/src/org/jetbrains/kotlin/analysis/api/fir/components/KtFirDataFlowInfoProvider.kt
} } private fun findControlFlowGraph(anchor: KtElement, firStatements: List<FirElement>): ControlFlowGraph? { /** * Not all expressions appear in the [ControlFlowGraph]. * Still, if we find at least some of them, it's very unlikely that we will ever find a better graph. */ val firCandidates = buildSet { fun addCandidate(firCandidate: FirElement) {
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analysis/analysis-api-fir/src/org/jetbrains/kotlin/analysis/api/fir/components/KtFirCallResolver.kt
} /** * When resolving the calleeExpression of a `KtCallExpression`, we resolve the entire `KtCallExpression` instead. This way, the * corresponding FIR element is the `FirFunctionCall`, etc. Implicit invoke is then specially handled after obtaining the * `FirImplicitInvokeCall`. * * Note that, if the calleeExpression is already a KtCallExpression, then we don't do this because such a callExpression can be properly
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analysis/analysis-api-fir/src/org/jetbrains/kotlin/analysis/api/fir/references/FirReferenceResolveHelper.kt
// that the first segment of the qualified access could be the import alias if any. Then, we can still compare the // remaining parts. // E.g., coreR.string.hello // -> string.hello (drop the first segment) // test.pkg.R.string.hello
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analysis/analysis-api-fir/src/org/jetbrains/kotlin/analysis/api/fir/scopes/DeclarationsInPackageProvider.kt
* [DeclarationsInPackageProvider] first tries the [FirSymbolNamesProvider] of the analysis session's underlying FIR session, because it * provides symbol names from binary libraries in Standalone mode, which the Standalone declaration provider does not contain (to avoid * stub-indexing binary libraries). And in general, querying the symbol names provider might be faster since its sets are cached, which is
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SECURITY.md
## Supported Versions Security updates are applied to the latest feature release (1.x) of the compiler, standard library, and build plugins. A fix will be shipped with the next incremental (1.x.y) or bug fix release (1.x.yz). All fixes are also applied to the master branch to be included in all upcoming releases. ## Reporting a Vulnerability
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