
org.jetbrains.kotlin.resolve.BindingContextUtils.kt Maven / Gradle / Ivy
/*
* Copyright 2010-2015 JetBrains s.r.o.
*
* Licensed under the Apache License, Version 2.0 (the "License");
* you may not use this file except in compliance with the License.
* You may obtain a copy of the License at
*
* http://www.apache.org/licenses/LICENSE-2.0
*
* Unless required by applicable law or agreed to in writing, software
* distributed under the License is distributed on an "AS IS" BASIS,
* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
* See the License for the specific language governing permissions and
* limitations under the License.
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package org.jetbrains.kotlin.resolve.bindingContextUtil
import com.intellij.psi.PsiElement
import org.jetbrains.kotlin.descriptors.DeclarationDescriptor
import org.jetbrains.kotlin.descriptors.FunctionDescriptor
import org.jetbrains.kotlin.descriptors.impl.AnonymousFunctionDescriptor
import org.jetbrains.kotlin.psi.*
import org.jetbrains.kotlin.psi.psiUtil.getNonStrictParentOfType
import org.jetbrains.kotlin.psi.psiUtil.parentsWithSelf
import org.jetbrains.kotlin.resolve.BindingContext
import org.jetbrains.kotlin.resolve.BindingContext.*
import org.jetbrains.kotlin.resolve.BindingTrace
import org.jetbrains.kotlin.resolve.DescriptorToSourceUtils
import org.jetbrains.kotlin.resolve.DescriptorUtils
import org.jetbrains.kotlin.resolve.calls.context.ResolutionContext
import org.jetbrains.kotlin.resolve.calls.smartcasts.DataFlowInfo
import org.jetbrains.kotlin.resolve.scopes.LexicalScope
import org.jetbrains.kotlin.resolve.scopes.utils.takeSnapshot
import org.jetbrains.kotlin.types.expressions.typeInfoFactory.noTypeInfo
import org.jetbrains.kotlin.util.slicedMap.ReadOnlySlice
operator fun BindingContext.get(slice: ReadOnlySlice, key: K): V? = get(slice, key)
fun KtReturnExpression.getTargetFunctionDescriptor(context: BindingContext): FunctionDescriptor? {
val targetLabel = getTargetLabel()
if (targetLabel != null) return context[LABEL_TARGET, targetLabel]?.let { context[FUNCTION, it] }
val declarationDescriptor = context[DECLARATION_TO_DESCRIPTOR, getNonStrictParentOfType()]
val containingFunctionDescriptor = DescriptorUtils.getParentOfType(declarationDescriptor, FunctionDescriptor::class.java, false)
if (containingFunctionDescriptor == null) return null
return generateSequence(containingFunctionDescriptor) { DescriptorUtils.getParentOfType(it, FunctionDescriptor::class.java) }
.dropWhile { it is AnonymousFunctionDescriptor }
.firstOrNull()
}
fun KtReturnExpression.getTargetFunction(context: BindingContext): KtCallableDeclaration? {
return getTargetFunctionDescriptor(context)?.let { DescriptorToSourceUtils.descriptorToDeclaration(it) as? KtCallableDeclaration }
}
fun KtExpression.isUsedAsExpression(context: BindingContext): Boolean = context[BindingContext.USED_AS_EXPRESSION, this]!!
fun KtExpression.isUsedAsResultOfLambda(context: BindingContext): Boolean = context[BindingContext.USED_AS_RESULT_OF_LAMBDA, this]!!
fun KtExpression.isUsedAsStatement(context: BindingContext): Boolean = !isUsedAsExpression(context)
fun > ResolutionContext.recordDataFlowInfo(expression: KtExpression?) {
if (expression == null) return
val typeInfo = trace.get(BindingContext.EXPRESSION_TYPE_INFO, expression)
if (typeInfo != null) {
trace.record(BindingContext.EXPRESSION_TYPE_INFO, expression, typeInfo.replaceDataFlowInfo(dataFlowInfo))
}
else if (dataFlowInfo != DataFlowInfo.EMPTY) {
// Don't store anything in BindingTrace if it's simply an empty DataFlowInfo
trace.record(BindingContext.EXPRESSION_TYPE_INFO, expression, noTypeInfo(dataFlowInfo))
}
}
fun BindingTrace.recordScope(scope: LexicalScope, element: KtElement?) {
if (element != null) {
record(BindingContext.LEXICAL_SCOPE, element, scope.takeSnapshot() as LexicalScope)
}
}
fun BindingContext.getDataFlowInfo(position: PsiElement): DataFlowInfo {
for (element in position.parentsWithSelf) {
(element as? KtExpression)?.let {
val parent = it.parent
//TODO: it's a hack because KotlinTypeInfo with wrong DataFlowInfo stored for call expression after qualifier
if (parent is KtQualifiedExpression && it == parent.selectorExpression) return@let null
this[BindingContext.EXPRESSION_TYPE_INFO, it]
}?.let { return it.dataFlowInfo }
}
return DataFlowInfo.EMPTY
}
fun KtExpression.isUnreachableCode(context: BindingContext): Boolean = context[BindingContext.UNREACHABLE_CODE, this]!!
fun KtExpression.getReferenceTargets(context: BindingContext): Collection {
val targetDescriptor = if (this is KtReferenceExpression) context[BindingContext.REFERENCE_TARGET, this] else null
return targetDescriptor?.let { listOf(it) } ?: context[BindingContext.AMBIGUOUS_REFERENCE_TARGET, this].orEmpty()
}
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