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AliasAnalysis.h
(51.98 KB)
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AliasAnalysisEvaluator.h
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AliasSetTracker.h
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AssumeBundleQueries.h
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AssumptionCache.h
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BasicAliasAnalysis.h
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BlockFrequencyInfo.h
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BlockFrequencyInfoImpl.h
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BranchProbabilityInfo.h
(10.1 KB)
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CFG.h
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CFGPrinter.h
(9.31 KB)
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CFLAliasAnalysisUtils.h
(1.66 KB)
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CFLAndersAliasAnalysis.h
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CFLSteensAliasAnalysis.h
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CGSCCPassManager.h
(41.2 KB)
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CallGraph.h
(18.88 KB)
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CallGraphSCCPass.h
(5.01 KB)
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CallPrinter.h
(799 B)
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CaptureTracking.h
(4.78 KB)
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CmpInstAnalysis.h
(2.57 KB)
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CodeMetrics.h
(3.15 KB)
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ConstantFolding.h
(8.01 KB)
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DDG.h
(19.15 KB)
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DOTGraphTraitsPass.h
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DemandedBits.h
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DependenceAnalysis.h
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DependenceGraphBuilder.h
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DivergenceAnalysis.h
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DomPrinter.h
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DomTreeUpdater.h
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DominanceFrontier.h
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DominanceFrontierImpl.h
(7.12 KB)
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EHPersonalities.h
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GlobalsModRef.h
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GuardUtils.h
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HeatUtils.h
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IVDescriptors.h
(14.56 KB)
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IVUsers.h
(6.07 KB)
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IndirectCallPromotionAnalysis.h
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IndirectCallVisitor.h
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InlineAdvisor.h
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InlineCost.h
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InlineFeaturesAnalysis.h
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InlineModelFeatureMaps.h
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InlineSizeEstimatorAnalysis.h
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InstructionPrecedenceTracking.h
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InstructionSimplify.h
(13.36 KB)
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Interval.h
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IntervalIterator.h
(10.64 KB)
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IntervalPartition.h
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IteratedDominanceFrontier.h
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LazyBlockFrequencyInfo.h
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LazyBranchProbabilityInfo.h
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LazyCallGraph.h
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LazyValueInfo.h
(5.4 KB)
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LegacyDivergenceAnalysis.h
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Lint.h
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Loads.h
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LoopAccessAnalysis.h
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LoopAnalysisManager.h
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LoopCacheAnalysis.h
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LoopInfo.h
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LoopInfoImpl.h
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LoopIterator.h
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LoopNestAnalysis.h
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LoopPass.h
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LoopUnrollAnalyzer.h
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MLInlineAdvisor.h
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MLModelRunner.h
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MemoryBuiltins.h
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MemoryDependenceAnalysis.h
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MemoryLocation.h
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MemorySSA.h
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MemorySSAUpdater.h
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ModuleSummaryAnalysis.h
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MustExecute.h
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ObjCARCAliasAnalysis.h
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ObjCARCAnalysisUtils.h
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ObjCARCInstKind.h
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OptimizationRemarkEmitter.h
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PHITransAddr.h
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Passes.h
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PhiValues.h
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PostDominators.h
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ProfileSummaryInfo.h
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PtrUseVisitor.h
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RegionInfo.h
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RegionInfoImpl.h
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RegionIterator.h
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RegionPass.h
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RegionPrinter.h
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ScalarEvolution.h
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ScalarEvolutionAliasAnalysis.h
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ScalarEvolutionDivision.h
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ScalarEvolutionExpressions.h
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ScalarEvolutionNormalization.h
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ScopedNoAliasAA.h
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SparsePropagation.h
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StackLifetime.h
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StackSafetyAnalysis.h
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SyncDependenceAnalysis.h
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SyntheticCountsUtils.h
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TargetFolder.h
(11.04 KB)
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TargetLibraryInfo.def
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TargetLibraryInfo.h
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TargetTransformInfo.h
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TargetTransformInfoImpl.h
(37.63 KB)
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Trace.h
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TypeBasedAliasAnalysis.h
(3.05 KB)
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TypeMetadataUtils.h
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Utils
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ValueLattice.h
(15.14 KB)
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ValueLatticeUtils.h
(1.66 KB)
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ValueTracking.h
(35.82 KB)
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VecFuncs.def
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VectorUtils.h
(37.26 KB)
Editing: PHITransAddr.h
//===- PHITransAddr.h - PHI Translation for Addresses -----------*- C++ -*-===// // // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions. // See https://llvm.org/LICENSE.txt for license information. // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception // //===----------------------------------------------------------------------===// // // This file declares the PHITransAddr class. // //===----------------------------------------------------------------------===// #ifndef LLVM_ANALYSIS_PHITRANSADDR_H #define LLVM_ANALYSIS_PHITRANSADDR_H #include "llvm/ADT/SmallVector.h" #include "llvm/IR/Instruction.h" namespace llvm { class AssumptionCache; class DominatorTree; class DataLayout; class TargetLibraryInfo; /// PHITransAddr - An address value which tracks and handles phi translation. /// As we walk "up" the CFG through predecessors, we need to ensure that the /// address we're tracking is kept up to date. For example, if we're analyzing /// an address of "&A[i]" and walk through the definition of 'i' which is a PHI /// node, we *must* phi translate i to get "&A[j]" or else we will analyze an /// incorrect pointer in the predecessor block. /// /// This is designed to be a relatively small object that lives on the stack and /// is copyable. /// class PHITransAddr { /// Addr - The actual address we're analyzing. Value *Addr; /// The DataLayout we are playing with. const DataLayout &DL; /// TLI - The target library info if known, otherwise null. const TargetLibraryInfo *TLI; /// A cache of \@llvm.assume calls used by SimplifyInstruction. AssumptionCache *AC; /// InstInputs - The inputs for our symbolic address. SmallVector<Instruction*, 4> InstInputs; public: PHITransAddr(Value *addr, const DataLayout &DL, AssumptionCache *AC) : Addr(addr), DL(DL), TLI(nullptr), AC(AC) { // If the address is an instruction, the whole thing is considered an input. if (Instruction *I = dyn_cast<Instruction>(Addr)) InstInputs.push_back(I); } Value *getAddr() const { return Addr; } /// NeedsPHITranslationFromBlock - Return true if moving from the specified /// BasicBlock to its predecessors requires PHI translation. bool NeedsPHITranslationFromBlock(BasicBlock *BB) const { // We do need translation if one of our input instructions is defined in // this block. for (unsigned i = 0, e = InstInputs.size(); i != e; ++i) if (InstInputs[i]->getParent() == BB) return true; return false; } /// IsPotentiallyPHITranslatable - If this needs PHI translation, return true /// if we have some hope of doing it. This should be used as a filter to /// avoid calling PHITranslateValue in hopeless situations. bool IsPotentiallyPHITranslatable() const; /// PHITranslateValue - PHI translate the current address up the CFG from /// CurBB to Pred, updating our state to reflect any needed changes. If /// 'MustDominate' is true, the translated value must dominate /// PredBB. This returns true on failure and sets Addr to null. bool PHITranslateValue(BasicBlock *CurBB, BasicBlock *PredBB, const DominatorTree *DT, bool MustDominate); /// PHITranslateWithInsertion - PHI translate this value into the specified /// predecessor block, inserting a computation of the value if it is /// unavailable. /// /// All newly created instructions are added to the NewInsts list. This /// returns null on failure. /// Value *PHITranslateWithInsertion(BasicBlock *CurBB, BasicBlock *PredBB, const DominatorTree &DT, SmallVectorImpl<Instruction *> &NewInsts); void dump() const; /// Verify - Check internal consistency of this data structure. If the /// structure is valid, it returns true. If invalid, it prints errors and /// returns false. bool Verify() const; private: Value *PHITranslateSubExpr(Value *V, BasicBlock *CurBB, BasicBlock *PredBB, const DominatorTree *DT); /// InsertPHITranslatedSubExpr - Insert a computation of the PHI translated /// version of 'V' for the edge PredBB->CurBB into the end of the PredBB /// block. All newly created instructions are added to the NewInsts list. /// This returns null on failure. /// Value *InsertPHITranslatedSubExpr(Value *InVal, BasicBlock *CurBB, BasicBlock *PredBB, const DominatorTree &DT, SmallVectorImpl<Instruction *> &NewInsts); /// AddAsInput - If the specified value is an instruction, add it as an input. Value *AddAsInput(Value *V) { // If V is an instruction, it is now an input. if (Instruction *VI = dyn_cast<Instruction>(V)) InstInputs.push_back(VI); return V; } }; } // end namespace llvm #endif
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