[FIR] Replace Flow with DelegatingFlow
This commit is contained in:
@@ -111,6 +111,13 @@ class DataFlowVariableStorage {
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}
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}
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fun removeVariableIfSynthetic(variable: DataFlowVariable): FirElement? {
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if (variable is SyntheticDataFlowVariable) {
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return removeVariable(variable)
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}
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return null
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}
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operator fun get(variable: DataFlowVariable): FirElement? {
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return variable.fir
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}
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+364
@@ -0,0 +1,364 @@
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/*
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* Copyright 2010-2019 JetBrains s.r.o. and Kotlin Programming Language contributors.
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* Use of this source code is governed by the Apache 2.0 license that can be found in the license/LICENSE.txt file.
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*/
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package org.jetbrains.kotlin.fir.resolve.dfa
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import com.google.common.collect.ArrayListMultimap
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import com.google.common.collect.Multimap
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import org.jetbrains.kotlin.fir.types.ConeKotlinType
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interface DelegatingFlow {
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companion object {
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fun createDefaultFlow(): DelegatingFlow = DelegatingFlowImpl(null)
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}
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fun getApprovedInfo(variable: RealDataFlowVariable): FirDataFlowInfo?
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fun getConditionalInfos(variable: DataFlowVariable): Collection<ConditionalFirDataFlowInfo>
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fun getVariablesInApprovedInfos(): Collection<RealDataFlowVariable>
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fun createNewFlow(): DelegatingFlow
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}
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private class DelegatingFlowImpl(
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val previousFlow: DelegatingFlowImpl?,
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val approvedInfos: ApprovedInfos = mutableMapOf(),
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val conditionalInfos: ConditionalInfos = ArrayListMultimap.create()
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) : DelegatingFlow {
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val level: Int = previousFlow?.level?.plus(1) ?: 0
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override fun getApprovedInfo(variable: RealDataFlowVariable): FirDataFlowInfo? {
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val info = MutableFirDataFlowInfo(mutableSetOf(), mutableSetOf())
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collect { flow ->
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flow.approvedInfos[variable]?.let { info += it }
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true
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}
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return info.takeIf { it.isNotEmpty }
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}
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override fun getConditionalInfos(variable: DataFlowVariable): Collection<ConditionalFirDataFlowInfo> {
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val result = mutableSetOf<ConditionalFirDataFlowInfo>()
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val isReal = !variable.isSynthetic()
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collect {
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val infos = it.conditionalInfos[variable]
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result += infos
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/*
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* Here we use invariant that if we found some conditional info about synthetic variable
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* on some level then there is definitely no another info on other levels of flow
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* It's correct because we can add condtional info about synthetic variable only
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* when we first met expression corresponding to that variable
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*/
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isReal || infos.isEmpty()
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}
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return result
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}
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override fun getVariablesInApprovedInfos(): Collection<RealDataFlowVariable> {
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val result = mutableSetOf<RealDataFlowVariable>()
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collect {
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result += approvedInfos.keys
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true
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}
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return result
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}
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override fun createNewFlow(): DelegatingFlowImpl {
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return DelegatingFlowImpl(this)
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}
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private inline fun collect(block: (DelegatingFlowImpl) -> Boolean) {
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var flow: DelegatingFlowImpl? = this
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while (flow != null) {
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val shouldContinue = block(flow)
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if (!shouldContinue) break
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flow = flow.previousFlow
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}
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}
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}
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fun DelegatingFlow.approvedInfosFromTopFlow(): Map<RealDataFlowVariable, FirDataFlowInfo> {
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require(this is DelegatingFlowImpl)
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return approvedInfos
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}
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fun DelegatingFlow.conditionalInfosFromTopFlow(): Multimap<DataFlowVariable, ConditionalFirDataFlowInfo> {
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require(this is DelegatingFlowImpl)
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return ImmutableMultimap(conditionalInfos)
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}
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fun ApprovedInfos.mergeInfo(other: Map<RealDataFlowVariable, FirDataFlowInfo>) {
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other.forEach { (variable, info) ->
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merge(variable, info) { existingInfo, newInfo ->
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(existingInfo as MutableFirDataFlowInfo) += newInfo
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existingInfo
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}
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}
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}
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private class ImmutableMultimap<K, V>(private val original: Multimap<K, V>) : Multimap<K, V> by original {
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override fun put(p0: K?, p1: V?): Boolean {
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throw IllegalStateException()
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}
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override fun remove(p0: Any?, p1: Any?): Boolean {
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throw IllegalStateException()
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}
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override fun putAll(p0: Multimap<out K, out V>): Boolean {
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throw IllegalStateException()
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}
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override fun putAll(p0: K?, p1: MutableIterable<V>): Boolean {
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throw IllegalStateException()
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}
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override fun removeAll(p0: Any?): MutableCollection<V> {
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throw IllegalStateException()
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}
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override fun replaceValues(p0: K?, p1: MutableIterable<V>): MutableCollection<V> {
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throw IllegalStateException()
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}
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}
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abstract class DelegatingLogicSystem(private val context: DataFlowInferenceContext) {
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// ------------------------------- Flow operations -------------------------------
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fun mergeFlows(flows: Collection<DelegatingFlow>): DelegatingFlow {
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if (flows.isEmpty()) return DelegatingFlow.createDefaultFlow()
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flows.singleOrNull()?.let { return it }
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@Suppress("UNCHECKED_CAST", "NAME_SHADOWING")
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val flows = flows as Collection<DelegatingFlowImpl>
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val commonFlow = flows.reduce(this::lowestCommonFlow)
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val approvedInfosFromAllFlows = mutableListOf<ApprovedInfos>()
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flows.forEach {
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approvedInfosFromAllFlows += it.collectInfos(commonFlow)
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}
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// approved info
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val variablesFromApprovedInfos = approvedInfosFromAllFlows.map { it.keys }.intersectSets()
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for (variable in variablesFromApprovedInfos) {
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val infos = approvedInfosFromAllFlows.mapNotNull { it[variable] }
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if (infos.size != flows.size) continue
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val intersectedInfo = or(infos)
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if (intersectedInfo.isEmpty) continue
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val existingInfo = commonFlow.approvedInfos[variable]
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if (existingInfo == null) {
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commonFlow.approvedInfos[variable] = intersectedInfo
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} else {
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(existingInfo as MutableFirDataFlowInfo) += intersectedInfo
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}
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}
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updateAllReceivers(commonFlow)
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return commonFlow
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}
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/*
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* used for:
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* 1. val b = x is String
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* 2. b = x is String
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* 3. !b | b.not() for Booleans
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*/
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fun changeVariableForConditionFlow(
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flow: DelegatingFlow,
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sourceVariable: DataFlowVariable,
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newVariable: DataFlowVariable,
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transform: ((ConditionalFirDataFlowInfo) -> ConditionalFirDataFlowInfo)? = null
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) {
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require(flow is DelegatingFlowImpl)
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var infos = flow.getConditionalInfos(sourceVariable)
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if (transform != null) {
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infos = infos.map(transform)
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}
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flow.conditionalInfos.putAll(newVariable, infos)
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if (sourceVariable.isSynthetic()) {
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flow.conditionalInfos.removeAll(sourceVariable)
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}
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}
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fun approveFactsInsideFlow(
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variable: DataFlowVariable,
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condition: Condition,
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flow: DelegatingFlow,
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shouldCreateNewFlow: Boolean,
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shouldRemoveSynthetics: Boolean
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): DelegatingFlow {
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require(flow is DelegatingFlowImpl)
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val notApprovedFacts: Collection<ConditionalFirDataFlowInfo> = if (shouldRemoveSynthetics && variable.isSynthetic()) {
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flow.conditionalInfos.removeAll(variable)
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} else {
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flow.getConditionalInfos(variable)
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}
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val resultFlow = if (shouldCreateNewFlow) flow.createNewFlow() else flow
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if (notApprovedFacts.isEmpty()) {
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return resultFlow
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}
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val newFacts = ArrayListMultimap.create<RealDataFlowVariable, FirDataFlowInfo>()
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notApprovedFacts.forEach {
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if (it.condition == condition) {
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newFacts.put(it.variable, it.info)
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}
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}
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val updatedReceivers = mutableSetOf<RealDataFlowVariable>()
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newFacts.asMap().forEach { (variable, infos) ->
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@Suppress("NAME_SHADOWING")
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val info = MutableFirDataFlowInfo()
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infos.forEach {
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info += it
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}
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if (variable.isThisReference) {
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updatedReceivers += variable
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}
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addApprovedInfo(resultFlow, variable, info)
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}
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updatedReceivers.forEach {
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processUpdatedReceiverVariable(resultFlow, it)
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}
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return resultFlow
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}
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fun addApprovedInfo(flow: DelegatingFlow, variable: RealDataFlowVariable, info: FirDataFlowInfo) {
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assert(info is MutableFirDataFlowInfo)
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require(flow is DelegatingFlowImpl)
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flow.approvedInfos.addInfo(variable, info)
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if (variable.isThisReference) {
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processUpdatedReceiverVariable(flow, variable)
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}
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}
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fun addConditionalInfo(flow: DelegatingFlow, variable: DataFlowVariable, info: ConditionalFirDataFlowInfo) {
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require(flow is DelegatingFlowImpl)
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flow.conditionalInfos.put(variable, info)
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}
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// ------------------------------- DataFlowInfo operations -------------------------------
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fun orForVerifiedFacts(
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left: Map<RealDataFlowVariable, FirDataFlowInfo>,
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right: Map<RealDataFlowVariable, FirDataFlowInfo>
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): ApprovedInfos {
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if (left.isNullOrEmpty() || right.isNullOrEmpty()) return mutableMapOf()
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val map = mutableMapOf<RealDataFlowVariable, FirDataFlowInfo>()
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for (variable in left.keys.intersect(right.keys)) {
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val leftInfo = left.getValue(variable)
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val rightInfo = right.getValue(variable)
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map[variable] = or(listOf(leftInfo, rightInfo))
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}
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return map
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}
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fun approveFactTo(
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destination: ApprovedInfos,
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condition: Condition,
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notApprovedFacts: Collection<ConditionalFirDataFlowInfo>
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) {
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if (notApprovedFacts.isEmpty()) {
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return
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}
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notApprovedFacts.forEach {
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if (it.condition == condition) {
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destination.addInfo(it.variable, it.info)
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}
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}
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}
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fun approveFactTo(
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destination: ApprovedInfos,
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variable: DataFlowVariable,
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condition: Condition,
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flow: DelegatingFlow
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) {
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require(flow is DelegatingFlowImpl)
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val notApprovedFacts: Collection<ConditionalFirDataFlowInfo> = flow.getConditionalInfos(variable)
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approveFactTo(destination, condition, notApprovedFacts)
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}
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fun approveFact(condition: Condition, notApprovedFacts: Collection<ConditionalFirDataFlowInfo>): ApprovedInfos {
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return mutableMapOf<RealDataFlowVariable, FirDataFlowInfo>().apply { approveFactTo(this, condition, notApprovedFacts)}
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}
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fun approveFact(
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variable: DataFlowVariable,
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condition: Condition,
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flow: DelegatingFlow
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): ApprovedInfos {
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return mutableMapOf<RealDataFlowVariable, FirDataFlowInfo>().apply { approveFactTo(this, variable, condition, flow)}
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}
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// ------------------------------- Util functions -------------------------------
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abstract fun processUpdatedReceiverVariable(flow: DelegatingFlow, variable: RealDataFlowVariable)
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abstract fun updateAllReceivers(flow: DelegatingFlow)
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// ------------------------------- Util functions -------------------------------
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private fun <E> Collection<Set<E>>.intersectSets(): Set<E> = takeIf { isNotEmpty() }?.reduce { x, y -> x.intersect(y) } ?: emptySet()
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private fun or(infos: Collection<FirDataFlowInfo>): FirDataFlowInfo {
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infos.singleOrNull()?.let { return it }
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val exactType = orTypes(infos.map { it.exactType })
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val exactNotType = orTypes(infos.map { it.exactNotType })
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return FirDataFlowInfo(exactType, exactNotType)
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}
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private fun orTypes(types: Collection<Set<ConeKotlinType>>): Set<ConeKotlinType> {
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if (types.any { it.isEmpty() }) return emptySet()
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val allTypes = types.flatMapTo(mutableSetOf()) { it }
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val commonTypes = allTypes.toMutableSet()
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types.forEach { commonTypes.retainAll(it) }
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val differentTypes = allTypes - commonTypes
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context.commonSuperTypeOrNull(differentTypes.toList())?.let { commonTypes += it }
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return commonTypes
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}
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private fun lowestCommonFlow(left: DelegatingFlowImpl, right: DelegatingFlowImpl): DelegatingFlowImpl {
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val level = minOf(left.level, right.level)
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@Suppress("NAME_SHADOWING")
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var left = left
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while (left.level > level) {
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left = left.previousFlow!!
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}
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@Suppress("NAME_SHADOWING")
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var right = right
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while (right.level > level) {
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right = right.previousFlow!!
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}
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while (left != right) {
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left = left.previousFlow!!
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right = right.previousFlow!!
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}
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return left
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}
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private fun DelegatingFlowImpl.collectInfos(untilFlow: DelegatingFlowImpl): ApprovedInfos {
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val approvedInfos: ApprovedInfos = mutableMapOf()
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// val conditionalInfos: ConditionalInfos = ArrayListMultimap.create()
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var flow = this
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while (flow != untilFlow) {
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flow.approvedInfos.forEach { (variable, info) -> approvedInfos.addInfo(variable, info) }
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/*
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* we don't join conditional infos yet
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flow.conditionalInfos.asMap().forEach { (variable, infos) ->
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conditionalInfos.putAll(variable, infos)
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}
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*/
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flow = flow.previousFlow!!
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}
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return approvedInfos
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}
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}
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+148
-160
@@ -41,9 +41,9 @@ class FirDataFlowAnalyzer(transformer: FirBodyResolveTransformer) : BodyResolveC
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private val receiverStack: ImplicitReceiverStackImpl = transformer.implicitReceiverStack
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private val graphBuilder = ControlFlowGraphBuilder()
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private val logicSystem = LogicSystem(context)
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private val logicSystem = DelegatingLogicSystemImpl(context)
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private val variableStorage = DataFlowVariableStorage()
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private val flowOnNodes = mutableMapOf<CFGNode<*>, Flow>()
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private val flowOnNodes = mutableMapOf<CFGNode<*>, DelegatingFlow>()
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private val variablesForWhenConditions = mutableMapOf<WhenBranchConditionExitNode, DataFlowVariable>()
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@@ -58,7 +58,7 @@ class FirDataFlowAnalyzer(transformer: FirBodyResolveTransformer) : BodyResolveC
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* If there is no useful information there is no data flow variable also
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*/
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val variable = qualifiedAccessExpression.realVariable?.variableUnderAlias ?: return null
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return graphBuilder.lastNode.flow.approvedFacts(variable)?.exactType ?: return null
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return graphBuilder.lastNode.flow.getApprovedInfo(variable)?.exactType ?: return null
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}
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// ----------------------------------- Named function -----------------------------------
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@@ -111,7 +111,7 @@ class FirDataFlowAnalyzer(transformer: FirBodyResolveTransformer) : BodyResolveC
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val type = typeOperatorCall.conversionTypeRef.coneTypeSafe<ConeKotlinType>() ?: return
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val operandVariable = getOrCreateRealVariable(typeOperatorCall.argument)?.variableUnderAlias ?: return
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var flow = node.flow
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val flow = node.flow
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when (typeOperatorCall.operation) {
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FirOperation.IS, FirOperation.NOT_IS -> {
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val expressionVariable = getOrCreateSyntheticVariable(typeOperatorCall)
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@@ -122,14 +122,16 @@ class FirDataFlowAnalyzer(transformer: FirBodyResolveTransformer) : BodyResolveC
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fun chooseInfo(trueBranch: Boolean) =
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if ((typeOperatorCall.operation == FirOperation.IS) == trueBranch) trueInfo else falseInfo
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flow = flow.addNotApprovedFact(
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logicSystem.addConditionalInfo(
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flow,
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expressionVariable,
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ConditionalFirDataFlowInfo(
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EqTrue, operandVariable, chooseInfo(true)
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)
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)
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flow = flow.addNotApprovedFact(
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logicSystem.addConditionalInfo(
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flow,
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expressionVariable,
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ConditionalFirDataFlowInfo(
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EqFalse, operandVariable, chooseInfo(false)
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@@ -138,17 +140,20 @@ class FirDataFlowAnalyzer(transformer: FirBodyResolveTransformer) : BodyResolveC
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}
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FirOperation.AS -> {
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flow = addApprovedFact(flow, operandVariable, FirDataFlowInfo(setOf(type), emptySet()))
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logicSystem.addApprovedInfo(flow, operandVariable, FirDataFlowInfo(setOf(type), emptySet()))
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}
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FirOperation.SAFE_AS -> {
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val expressionVariable = getOrCreateSyntheticVariable(typeOperatorCall)
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flow = flow.addNotApprovedFact(
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logicSystem.addConditionalInfo(
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flow,
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expressionVariable,
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ConditionalFirDataFlowInfo(
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NotEqNull, operandVariable, FirDataFlowInfo(setOf(type), emptySet())
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)
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).addNotApprovedFact(
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)
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logicSystem.addConditionalInfo(
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flow,
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expressionVariable,
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ConditionalFirDataFlowInfo(
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EqNull, operandVariable, FirDataFlowInfo(emptySet(), setOf(type))
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@@ -192,12 +197,13 @@ class FirDataFlowAnalyzer(transformer: FirBodyResolveTransformer) : BodyResolveC
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}
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val expressionVariable = getOrCreateVariable(node.fir)
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var flow = node.flow
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val flow = node.flow
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// not null for comparisons with constants
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getRealVariablesForSafeCallChain(operand).takeIf { it.isNotEmpty() }?.let { operandVariables ->
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operandVariables.forEach { operandVariable ->
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flow = flow.addNotApprovedFact(
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logicSystem.addConditionalInfo(
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flow,
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expressionVariable, ConditionalFirDataFlowInfo(
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isEq.toEqBoolean(),
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operandVariable,
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@@ -214,12 +220,10 @@ class FirDataFlowAnalyzer(transformer: FirBodyResolveTransformer) : BodyResolveC
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val constValue = (const.value as Boolean)
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||||
val shouldInvert = isEq xor constValue
|
||||
|
||||
flow.conditionalInfos[operandVariable].forEach { info ->
|
||||
flow = flow.addNotApprovedFact(expressionVariable, info.let { if (shouldInvert) it.invert() else it })
|
||||
flow.getConditionalInfos(operandVariable).forEach { info ->
|
||||
logicSystem.addConditionalInfo(flow, expressionVariable, info.let { if (shouldInvert) it.invert() else it })
|
||||
}
|
||||
}
|
||||
|
||||
node.flow = flow
|
||||
}
|
||||
|
||||
private fun processEq(node: OperatorCallNode, leftOperand: FirExpression, rightOperand: FirExpression, operation: FirOperation) {
|
||||
@@ -234,7 +238,7 @@ class FirDataFlowAnalyzer(transformer: FirBodyResolveTransformer) : BodyResolveC
|
||||
}
|
||||
|
||||
private fun processEqNull(node: OperatorCallNode, operand: FirExpression, operation: FirOperation) {
|
||||
var flow = node.flow
|
||||
val flow = node.flow
|
||||
val expressionVariable = getOrCreateVariable(node.fir)
|
||||
|
||||
variableStorage[operand]?.let { operandVariable ->
|
||||
@@ -245,12 +249,15 @@ class FirDataFlowAnalyzer(transformer: FirBodyResolveTransformer) : BodyResolveC
|
||||
}
|
||||
val facts = logicSystem.approveFact(operandVariable, condition, flow)
|
||||
facts.forEach { (variable, info) ->
|
||||
flow = flow.addNotApprovedFact(
|
||||
logicSystem.addConditionalInfo(
|
||||
flow,
|
||||
expressionVariable,
|
||||
ConditionalFirDataFlowInfo(
|
||||
EqTrue, variable, info
|
||||
)
|
||||
).addNotApprovedFact(
|
||||
)
|
||||
logicSystem.addConditionalInfo(
|
||||
flow,
|
||||
expressionVariable,
|
||||
ConditionalFirDataFlowInfo(
|
||||
EqFalse, variable, info.invert()
|
||||
@@ -270,7 +277,8 @@ class FirDataFlowAnalyzer(transformer: FirBodyResolveTransformer) : BodyResolveC
|
||||
}
|
||||
|
||||
operandVariables.forEach { operandVariable ->
|
||||
flow = flow.addNotApprovedFact(
|
||||
logicSystem.addConditionalInfo(
|
||||
flow,
|
||||
expressionVariable, ConditionalFirDataFlowInfo(
|
||||
condition,
|
||||
operandVariable,
|
||||
@@ -279,7 +287,7 @@ class FirDataFlowAnalyzer(transformer: FirBodyResolveTransformer) : BodyResolveC
|
||||
)
|
||||
// TODO: design do we need casts to Nothing?
|
||||
/*
|
||||
flow = addNotApprovedFact(
|
||||
flow = addConditionalInfo(
|
||||
expressionVariable, UnapprovedFirDataFlowInfo(
|
||||
eq(conditionValue.invert()!!),
|
||||
operandVariable,
|
||||
@@ -289,7 +297,6 @@ class FirDataFlowAnalyzer(transformer: FirBodyResolveTransformer) : BodyResolveC
|
||||
*/
|
||||
|
||||
}
|
||||
node.flow = flow
|
||||
}
|
||||
|
||||
// ----------------------------------- Jump -----------------------------------
|
||||
@@ -301,43 +308,54 @@ class FirDataFlowAnalyzer(transformer: FirBodyResolveTransformer) : BodyResolveC
|
||||
// ----------------------------------- When -----------------------------------
|
||||
|
||||
fun enterWhenExpression(whenExpression: FirWhenExpression) {
|
||||
graphBuilder.enterWhenExpression(whenExpression).mergeIncomingFlow()
|
||||
val node = graphBuilder.enterWhenExpression(whenExpression).mergeIncomingFlow()
|
||||
node.flow = node.flow.createNewFlow()
|
||||
}
|
||||
|
||||
fun enterWhenBranchCondition(whenBranch: FirWhenBranch) {
|
||||
val node = graphBuilder.enterWhenBranchCondition(whenBranch).mergeIncomingFlow()
|
||||
val previousNode = node.previousNodes.single()
|
||||
if (previousNode is WhenBranchConditionExitNode) {
|
||||
node.flow = approveFactsAndUpdateImplicitReceivers(variablesForWhenConditions.remove(previousNode)!!, EqFalse, node.flow)
|
||||
node.flow = logicSystem.approveFactsInsideFlow(
|
||||
variablesForWhenConditions.remove(previousNode)!!,
|
||||
EqFalse,
|
||||
node.flow,
|
||||
shouldCreateNewFlow = true,
|
||||
shouldRemoveSynthetics = true
|
||||
)
|
||||
}
|
||||
node.flow.freeze()
|
||||
}
|
||||
|
||||
fun exitWhenBranchCondition(whenBranch: FirWhenBranch) {
|
||||
val (conditionExitNode, branchEnterNode) = graphBuilder.exitWhenBranchCondition(whenBranch)
|
||||
conditionExitNode.mergeIncomingFlow()
|
||||
conditionExitNode.flow.freeze()
|
||||
|
||||
val conditionVariable = getOrCreateVariable(whenBranch.condition)
|
||||
variablesForWhenConditions[conditionExitNode] = conditionVariable
|
||||
branchEnterNode.mergeIncomingFlow()
|
||||
branchEnterNode.flow = approveFactsAndUpdateImplicitReceivers(conditionVariable, EqTrue, branchEnterNode.flow)
|
||||
branchEnterNode.flow = logicSystem.approveFactsInsideFlow(
|
||||
conditionVariable,
|
||||
EqTrue,
|
||||
conditionExitNode.flow,
|
||||
shouldCreateNewFlow = true,
|
||||
shouldRemoveSynthetics = false
|
||||
)
|
||||
}
|
||||
|
||||
fun exitWhenBranchResult(whenBranch: FirWhenBranch) {
|
||||
val node = graphBuilder.exitWhenBranchResult(whenBranch).mergeIncomingFlow()
|
||||
val conditionVariable = getOrCreateVariable(whenBranch.condition)
|
||||
node.flow = node.flow.removeSyntheticVariable(conditionVariable).apply { freeze() }
|
||||
graphBuilder.exitWhenBranchResult(whenBranch).mergeIncomingFlow()
|
||||
}
|
||||
|
||||
fun exitWhenExpression(whenExpression: FirWhenExpression) {
|
||||
val node = graphBuilder.exitWhenExpression(whenExpression).mergeIncomingFlow()
|
||||
var flow = node.flow
|
||||
val subjectSymbol = whenExpression.subjectVariable?.symbol
|
||||
if (subjectSymbol != null) {
|
||||
variableStorage[subjectSymbol]?.let { flow = flow.removeVariable(it) }
|
||||
}
|
||||
val node = graphBuilder.exitWhenExpression(whenExpression)
|
||||
val previousFlows = node.alivePreviousNodes.map { it.flow }
|
||||
val flow = logicSystem.mergeFlows(previousFlows)
|
||||
node.flow = flow
|
||||
// TODO
|
||||
// val subjectSymbol = whenExpression.subjectVariable?.symbol
|
||||
// if (subjectSymbol != null) {
|
||||
// variableStorage[subjectSymbol]?.let { flow = flow.removeVariable(it) }
|
||||
// }
|
||||
// node.flow = flow
|
||||
}
|
||||
|
||||
// ----------------------------------- While Loop -----------------------------------
|
||||
@@ -463,7 +481,7 @@ class FirDataFlowAnalyzer(transformer: FirBodyResolveTransformer) : BodyResolveC
|
||||
variableStorage[initializer]?.let { initializerVariable ->
|
||||
assert(initializerVariable.isSynthetic())
|
||||
val realVariable = getOrCreateRealVariable(variable.symbol)
|
||||
node.flow = node.flow.copyNotApprovedFacts(initializerVariable, realVariable)
|
||||
logicSystem.changeVariableForConditionFlow(node.flow, initializerVariable, realVariable)
|
||||
}
|
||||
|
||||
initializer.resolvedSymbol?.let { initializerSymbol: FirBasedSymbol<*> ->
|
||||
@@ -491,93 +509,93 @@ class FirDataFlowAnalyzer(transformer: FirBodyResolveTransformer) : BodyResolveC
|
||||
|
||||
fun exitLeftBinaryAndArgument(binaryLogicExpression: FirBinaryLogicExpression) {
|
||||
val (leftNode, rightNode) = graphBuilder.exitLeftBinaryAndArgument(binaryLogicExpression)
|
||||
leftNode.mergeIncomingFlow()
|
||||
leftNode.flow.freeze()
|
||||
rightNode.mergeIncomingFlow()
|
||||
val leftOperandVariable = getOrCreateVariable(leftNode.previousNodes.first().fir)
|
||||
val flow = approveFactsAndUpdateImplicitReceivers(leftOperandVariable, EqTrue, rightNode.flow)
|
||||
rightNode.flow = flow.also { it.freeze() }
|
||||
exitLeftArgumentOfBinaryBooleanOperator(leftNode, rightNode, isAnd = true)
|
||||
}
|
||||
|
||||
fun exitBinaryAnd(binaryLogicExpression: FirBinaryLogicExpression) {
|
||||
val node = graphBuilder.exitBinaryAnd(binaryLogicExpression).mergeIncomingFlow()
|
||||
val (leftVariable, rightVariable) = binaryLogicExpression.getVariables()
|
||||
|
||||
val flowFromLeft = node.leftOperandNode.flow
|
||||
val flowFromRight = node.rightOperandNode.flow
|
||||
val flow = node.flow
|
||||
|
||||
val andVariable = getOrCreateVariable(binaryLogicExpression)
|
||||
|
||||
val leftIsTrue = approveFact(leftVariable, EqTrue, flowFromRight)
|
||||
val leftIsFalse = approveFact(leftVariable, EqFalse, flowFromRight)
|
||||
val rightIsTrue = approveFact(rightVariable, EqTrue, flowFromRight) ?: mutableMapOf()
|
||||
val rightIsFalse = approveFact(rightVariable, EqFalse, flowFromRight)
|
||||
|
||||
flowFromRight.approvedInfos.forEach { (variable, info) ->
|
||||
val actualInfo = flowFromLeft.approvedInfos[variable]?.let { info - it } ?: info
|
||||
if (actualInfo.isNotEmpty) rightIsTrue.compute(variable) { _, existingInfo -> info + existingInfo }
|
||||
}
|
||||
|
||||
logicSystem.andForVerifiedFacts(leftIsTrue, rightIsTrue)?.let {
|
||||
for ((variable, info) in it) {
|
||||
flow.addNotApprovedFact(andVariable, ConditionalFirDataFlowInfo(EqTrue, variable, info))
|
||||
}
|
||||
}
|
||||
logicSystem.orForVerifiedFacts(leftIsFalse, rightIsFalse)?.let {
|
||||
for ((variable, info) in it) {
|
||||
flow.addNotApprovedFact(andVariable, ConditionalFirDataFlowInfo(EqFalse, variable, info))
|
||||
}
|
||||
}
|
||||
node.flow = flow.removeSyntheticVariable(leftVariable).removeSyntheticVariable(rightVariable)
|
||||
val node = graphBuilder.exitBinaryAnd(binaryLogicExpression)
|
||||
exitBinaryBooleanOperator(binaryLogicExpression, node, isAnd = true)
|
||||
}
|
||||
|
||||
fun enterBinaryOr(binaryLogicExpression: FirBinaryLogicExpression) {
|
||||
graphBuilder.enterBinaryOr(binaryLogicExpression)
|
||||
graphBuilder.enterBinaryOr(binaryLogicExpression).mergeIncomingFlow()
|
||||
}
|
||||
|
||||
fun exitLeftBinaryOrArgument(binaryLogicExpression: FirBinaryLogicExpression) {
|
||||
val (leftNode, rightNode) = graphBuilder.exitLeftBinaryOrArgument(binaryLogicExpression)
|
||||
leftNode.mergeIncomingFlow()
|
||||
leftNode.flow.freeze()
|
||||
rightNode.mergeIncomingFlow()
|
||||
val leftOperandVariable = getOrCreateVariable(leftNode.previousNodes.first().fir)
|
||||
val flow = approveFactsAndUpdateImplicitReceivers(leftOperandVariable, EqFalse, rightNode.flow)
|
||||
rightNode.flow = flow.also { it.freeze() }
|
||||
exitLeftArgumentOfBinaryBooleanOperator(leftNode, rightNode, isAnd = false)
|
||||
}
|
||||
|
||||
fun exitBinaryOr(binaryLogicExpression: FirBinaryLogicExpression) {
|
||||
val node = graphBuilder.exitBinaryOr(binaryLogicExpression).mergeIncomingFlow()
|
||||
val (leftVariable, rightVariable) = binaryLogicExpression.getVariables()
|
||||
|
||||
val flowFromLeft = node.leftOperandNode.flow
|
||||
val flowFromRight = node.rightOperandNode.flow
|
||||
val flow = node.flow
|
||||
|
||||
val orVariable = getOrCreateVariable(binaryLogicExpression)
|
||||
|
||||
val leftIsTrue = approveFact(leftVariable, EqTrue, flowFromLeft)
|
||||
val leftIsFalse = approveFact(leftVariable, EqFalse, flowFromLeft)
|
||||
val rightIsTrue = approveFact(rightVariable, EqTrue, flowFromRight)
|
||||
val rightIsFalse = approveFact(rightVariable, EqFalse, flowFromRight)
|
||||
|
||||
logicSystem.orForVerifiedFacts(leftIsTrue, rightIsTrue)?.let {
|
||||
for ((variable, info) in it) {
|
||||
flow.addNotApprovedFact(orVariable, ConditionalFirDataFlowInfo(EqTrue, variable, info))
|
||||
}
|
||||
}
|
||||
logicSystem.andForVerifiedFacts(leftIsFalse, rightIsFalse)?.let {
|
||||
for ((variable, info) in it) {
|
||||
flow.addNotApprovedFact(orVariable, ConditionalFirDataFlowInfo(EqFalse, variable, info))
|
||||
}
|
||||
}
|
||||
node.flow = flow.removeSyntheticVariable(leftVariable).removeSyntheticVariable(rightVariable)
|
||||
val node = graphBuilder.exitBinaryOr(binaryLogicExpression)
|
||||
exitBinaryBooleanOperator(binaryLogicExpression, node, isAnd = false)
|
||||
}
|
||||
|
||||
private fun exitLeftArgumentOfBinaryBooleanOperator(leftNode: CFGNode<*>, rightNode: CFGNode<*>, isAnd: Boolean) {
|
||||
val parentFlow = leftNode.alivePreviousNodes.first().flow
|
||||
leftNode.flow = parentFlow.createNewFlow()
|
||||
val leftOperandVariable = getOrCreateVariable(leftNode.previousNodes.first().fir)
|
||||
rightNode.flow = logicSystem.approveFactsInsideFlow(
|
||||
leftOperandVariable,
|
||||
if (isAnd) EqTrue else EqFalse,
|
||||
parentFlow,
|
||||
shouldCreateNewFlow = true,
|
||||
shouldRemoveSynthetics = false
|
||||
)
|
||||
}
|
||||
|
||||
private fun exitBinaryBooleanOperator(
|
||||
binaryLogicExpression: FirBinaryLogicExpression,
|
||||
node: AbstractBinaryExitNode<*>,
|
||||
isAnd: Boolean
|
||||
) {
|
||||
val bothEvaluated = if (isAnd) EqTrue else EqFalse
|
||||
val onlyLeftEvaluated = bothEvaluated.invert()
|
||||
|
||||
// Naming for all variables was chosen in assumption that we processing && expression
|
||||
val flowFromRight = node.rightOperandNode.flow
|
||||
|
||||
val flow = node.mergeIncomingFlow().flow
|
||||
|
||||
val (leftVariable, rightVariable) = binaryLogicExpression.getVariables()
|
||||
val andVariable = getOrCreateVariable(binaryLogicExpression)
|
||||
|
||||
val conditionalFromLeft = flow.conditionalInfosFromTopFlow()[leftVariable]
|
||||
val conditionalFromRight = flowFromRight.conditionalInfosFromTopFlow()[rightVariable]
|
||||
|
||||
// left && right == True
|
||||
// left || right == False
|
||||
val approvedIfTrue: ApprovedInfos = mutableMapOf()
|
||||
logicSystem.approveFactTo(approvedIfTrue, bothEvaluated, conditionalFromLeft)
|
||||
logicSystem.approveFactTo(approvedIfTrue, bothEvaluated, conditionalFromRight)
|
||||
flowFromRight.approvedInfosFromTopFlow().forEach { (variable, info) ->
|
||||
approvedIfTrue.addInfo(variable, info)
|
||||
}
|
||||
approvedIfTrue.forEach { (variable, info) ->
|
||||
logicSystem.addConditionalInfo(flow, andVariable, info.toConditional(bothEvaluated, variable))
|
||||
}
|
||||
|
||||
// left && right == False
|
||||
// left || right == True
|
||||
val approvedIfFalse: ApprovedInfos = mutableMapOf()
|
||||
val leftIsFalse = logicSystem.approveFact(onlyLeftEvaluated, conditionalFromLeft)
|
||||
val rightIsFalse = logicSystem.approveFact(onlyLeftEvaluated, conditionalFromRight)
|
||||
approvedIfFalse.mergeInfo(logicSystem.orForVerifiedFacts(leftIsFalse, rightIsFalse))
|
||||
approvedIfFalse.forEach { (variable, info) ->
|
||||
logicSystem.addConditionalInfo(flow, andVariable, info.toConditional(onlyLeftEvaluated, variable))
|
||||
}
|
||||
|
||||
node.flow = flow
|
||||
|
||||
variableStorage.removeVariableIfSynthetic(leftVariable)
|
||||
variableStorage.removeVariableIfSynthetic(rightVariable)
|
||||
}
|
||||
|
||||
|
||||
private fun exitBooleanNot(functionCall: FirFunctionCall, node: FunctionCallNode) {
|
||||
val booleanExpressionVariable = getOrCreateVariable(node.previousNodes.first().fir)
|
||||
val variable = getOrCreateVariable(functionCall)
|
||||
node.flow = node.flow.copyNotApprovedFacts(booleanExpressionVariable, variable) { it.invert() }
|
||||
logicSystem.changeVariableForConditionFlow(node.flow, booleanExpressionVariable, variable) { it.invert() }
|
||||
}
|
||||
|
||||
// ----------------------------------- Annotations -----------------------------------
|
||||
@@ -602,37 +620,26 @@ class FirDataFlowAnalyzer(transformer: FirBodyResolveTransformer) : BodyResolveC
|
||||
|
||||
// -------------------------------------------------------------------------------------------------------------------------
|
||||
|
||||
private fun approveFact(variable: DataFlowVariable, condition: Condition, flow: Flow): MutableMap<RealDataFlowVariable, FirDataFlowInfo>? =
|
||||
logicSystem.approveFact(variable, condition, flow)
|
||||
|
||||
private fun FirBinaryLogicExpression.getVariables(): Pair<DataFlowVariable, DataFlowVariable> =
|
||||
getOrCreateVariable(leftOperand) to getOrCreateVariable(rightOperand)
|
||||
|
||||
private var CFGNode<*>.flow: Flow
|
||||
get() = flowOnNodes[this] ?: Flow.EMPTY
|
||||
private var CFGNode<*>.flow: DelegatingFlow
|
||||
get() = flowOnNodes[this.origin] ?: DelegatingFlow.createDefaultFlow()
|
||||
set(value) {
|
||||
flowOnNodes[this] = value
|
||||
flowOnNodes[this.origin] = value
|
||||
}
|
||||
|
||||
private val CFGNode<*>.origin: CFGNode<*> get() = if (this is StubNode) previousNodes.first() else this
|
||||
|
||||
private fun <T : CFGNode<*>> T.mergeIncomingFlow(): T = this.also { node ->
|
||||
val previousFlows = node.alivePreviousNodes.map { it.flow }
|
||||
val flow = logicSystem.or(previousFlows)
|
||||
if (previousFlows.size > 1) {
|
||||
receiverStack.forEachIndexed { index, receiver ->
|
||||
val variable = variableStorage[receiver.boundSymbol] ?: return@forEachIndexed
|
||||
val approvedFacts = flow.approvedFacts(variable)
|
||||
if (approvedFacts == null) {
|
||||
receiver.replaceType(receiverStack.getOriginalType(index))
|
||||
} else {
|
||||
updateReceiverType(index, approvedFacts)
|
||||
}
|
||||
}
|
||||
}
|
||||
node.flow = flow
|
||||
node.flow = logicSystem.mergeFlows(previousFlows)
|
||||
}
|
||||
|
||||
// -------------------------------- get or create variable --------------------------------
|
||||
private fun getOrCreateSyntheticVariable(fir: FirElement): SyntheticDataFlowVariable = variableStorage.getOrCreateNewSyntheticVariable(fir)
|
||||
|
||||
private fun getOrCreateSyntheticVariable(fir: FirElement): SyntheticDataFlowVariable =
|
||||
variableStorage.getOrCreateNewSyntheticVariable(fir)
|
||||
|
||||
private fun getOrCreateRealVariable(fir: FirElement): RealDataFlowVariable? {
|
||||
if (fir is FirThisReceiverExpressionImpl) {
|
||||
@@ -694,44 +701,25 @@ class FirDataFlowAnalyzer(transformer: FirBodyResolveTransformer) : BodyResolveC
|
||||
return result
|
||||
}
|
||||
|
||||
private fun approveFactsAndUpdateImplicitReceivers(variable: DataFlowVariable, condition: Condition, flow: Flow): Flow {
|
||||
val (newFlow, variables) = logicSystem.approveFactsInsideFlow(variable, condition, flow)
|
||||
for (variable in variables) {
|
||||
updateReceiverType(newFlow, variable)
|
||||
}
|
||||
return newFlow
|
||||
}
|
||||
private inner class DelegatingLogicSystemImpl(context: DataFlowInferenceContext) : DelegatingLogicSystem(context) {
|
||||
override fun processUpdatedReceiverVariable(flow: DelegatingFlow, variable: RealDataFlowVariable) {
|
||||
val symbol = (variable.fir as? FirSymbolOwner<*>)?.symbol ?: return
|
||||
|
||||
private fun updateReceiverType(flow: Flow, variable: DataFlowVariable) {
|
||||
val symbol = (variable.fir as? FirSymbolOwner<*>)?.symbol ?: return
|
||||
val index = receiverStack.getReceiverIndex(symbol) ?: return
|
||||
val info = flow.approvedInfos[variable] ?: return
|
||||
updateReceiverType(index, info)
|
||||
}
|
||||
val index = receiverStack.getReceiverIndex(symbol) ?: return
|
||||
val info = flow.getApprovedInfo(variable)
|
||||
|
||||
private fun updateReceiverType(index: Int, info: FirDataFlowInfo) {
|
||||
val types = info.exactType.toMutableList().also {
|
||||
it += receiverStack.getOriginalType(index)
|
||||
}
|
||||
receiverStack.replaceReceiverType(index, context.intersectTypesOrNull(types)!!)
|
||||
|
||||
}
|
||||
|
||||
private fun addApprovedFact(flow: Flow, variable: RealDataFlowVariable, info: FirDataFlowInfo): Flow {
|
||||
return flow.addApprovedFact(variable, info).also {
|
||||
if (variable.isThisReference) {
|
||||
updateReceiverType(flow, variable)
|
||||
if (info == null) {
|
||||
receiverStack.replaceReceiverType(index, receiverStack.getOriginalType(index))
|
||||
} else {
|
||||
val types = info.exactType.toMutableList().also {
|
||||
it += receiverStack.getOriginalType(index)
|
||||
}
|
||||
receiverStack.replaceReceiverType(index, context.intersectTypesOrNull(types)!!)
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
private fun Flow.removeVariable(variable: DataFlowVariable): Flow {
|
||||
variableStorage.removeVariable(variable)
|
||||
return removeVariableFromFlow(variable)
|
||||
}
|
||||
|
||||
private fun Flow.removeSyntheticVariable(variable: DataFlowVariable): Flow {
|
||||
if (!variable.isSynthetic()) return this
|
||||
return removeVariable(variable)
|
||||
override fun updateAllReceivers(flow: DelegatingFlow) {
|
||||
receiverStack.mapNotNull { variableStorage[it.boundSymbol] }.forEach { processUpdatedReceiverVariable(flow, it) }
|
||||
}
|
||||
}
|
||||
}
|
||||
@@ -5,6 +5,7 @@
|
||||
|
||||
package org.jetbrains.kotlin.fir.resolve.dfa
|
||||
|
||||
import com.google.common.collect.ArrayListMultimap
|
||||
import org.jetbrains.kotlin.fir.types.ConeKotlinType
|
||||
import org.jetbrains.kotlin.fir.types.render
|
||||
|
||||
@@ -24,23 +25,58 @@ data class ConditionalFirDataFlowInfo(
|
||||
private fun Set<ConeKotlinType>.render(): String = joinToString { it.render() }
|
||||
}
|
||||
|
||||
data class FirDataFlowInfo(
|
||||
val exactType: Set<ConeKotlinType>,
|
||||
typealias ApprovedInfos = MutableMap<RealDataFlowVariable, FirDataFlowInfo>
|
||||
typealias ConditionalInfos = ArrayListMultimap<DataFlowVariable, ConditionalFirDataFlowInfo>
|
||||
|
||||
interface FirDataFlowInfo {
|
||||
companion object {
|
||||
// TODO: temporary
|
||||
operator fun invoke(exactType: Set<ConeKotlinType>, exactNotType: Set<ConeKotlinType>): FirDataFlowInfo =
|
||||
MutableFirDataFlowInfo(exactType.toMutableSet(), exactNotType.toMutableSet())
|
||||
}
|
||||
|
||||
val exactType: Set<ConeKotlinType>
|
||||
val exactNotType: Set<ConeKotlinType>
|
||||
) {
|
||||
operator fun plus(other: FirDataFlowInfo): FirDataFlowInfo = FirDataFlowInfo(
|
||||
exactType + other.exactType,
|
||||
exactNotType + other.exactNotType
|
||||
)
|
||||
|
||||
operator fun minus(other: FirDataFlowInfo): FirDataFlowInfo = FirDataFlowInfo(
|
||||
exactType - other.exactType,
|
||||
exactNotType - other.exactNotType
|
||||
)
|
||||
|
||||
val isNotEmpty: Boolean get() = exactType.isNotEmpty() || exactNotType.isNotEmpty()
|
||||
|
||||
fun invert(): FirDataFlowInfo = FirDataFlowInfo(exactNotType, exactType)
|
||||
operator fun plus(other: FirDataFlowInfo): FirDataFlowInfo
|
||||
operator fun minus(other: FirDataFlowInfo): FirDataFlowInfo
|
||||
val isNotEmpty: Boolean
|
||||
val isEmpty: Boolean get() = !isNotEmpty
|
||||
fun invert(): FirDataFlowInfo
|
||||
}
|
||||
|
||||
operator fun FirDataFlowInfo.plus(other: FirDataFlowInfo?): FirDataFlowInfo = other?.let { this + other } ?: this
|
||||
data class MutableFirDataFlowInfo(
|
||||
override val exactType: MutableSet<ConeKotlinType> = mutableSetOf(),
|
||||
override val exactNotType: MutableSet<ConeKotlinType> = mutableSetOf()
|
||||
) : FirDataFlowInfo {
|
||||
override operator fun plus(other: FirDataFlowInfo): MutableFirDataFlowInfo = MutableFirDataFlowInfo(
|
||||
HashSet(exactType).apply { addAll(other.exactType) },
|
||||
HashSet(exactNotType).apply { addAll(other.exactNotType) }
|
||||
)
|
||||
|
||||
override operator fun minus(other: FirDataFlowInfo): MutableFirDataFlowInfo = MutableFirDataFlowInfo(
|
||||
HashSet(exactType).apply { removeAll(other.exactType) },
|
||||
HashSet(exactNotType).apply { removeAll(other.exactNotType) }
|
||||
)
|
||||
|
||||
override val isNotEmpty: Boolean get() = exactType.isNotEmpty() || exactNotType.isNotEmpty()
|
||||
|
||||
override fun invert(): FirDataFlowInfo = MutableFirDataFlowInfo(exactNotType, exactType)
|
||||
|
||||
operator fun plusAssign(info: FirDataFlowInfo) {
|
||||
exactType += info.exactType
|
||||
exactNotType += info.exactNotType
|
||||
}
|
||||
|
||||
}
|
||||
|
||||
operator fun FirDataFlowInfo.plus(other: FirDataFlowInfo?): FirDataFlowInfo = other?.let { this + other } ?: this
|
||||
|
||||
fun FirDataFlowInfo.toConditional(condition: Condition, variable: RealDataFlowVariable): ConditionalFirDataFlowInfo =
|
||||
ConditionalFirDataFlowInfo(condition, variable, this)
|
||||
|
||||
fun ApprovedInfos.addInfo(variable: RealDataFlowVariable, info: FirDataFlowInfo) {
|
||||
compute(variable) { _, existingInfo ->
|
||||
if (existingInfo != null) (existingInfo as MutableFirDataFlowInfo).apply { this += info }
|
||||
else info
|
||||
}
|
||||
}
|
||||
Reference in New Issue
Block a user