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AliasAnalysis.h
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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
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CFG.h
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CFGPrinter.h
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CFLAliasAnalysisUtils.h
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CFLAndersAliasAnalysis.h
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CFLSteensAliasAnalysis.h
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CGSCCPassManager.h
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CallGraph.h
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CallGraphSCCPass.h
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CallPrinter.h
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CaptureTracking.h
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CmpInstAnalysis.h
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CodeMetrics.h
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ConstantFolding.h
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DDG.h
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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
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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
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IVUsers.h
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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
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Interval.h
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IntervalIterator.h
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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
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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
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TargetLibraryInfo.def
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TargetLibraryInfo.h
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TargetTransformInfo.h
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TargetTransformInfoImpl.h
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Trace.h
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TypeBasedAliasAnalysis.h
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TypeMetadataUtils.h
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Utils
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ValueLattice.h
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ValueLatticeUtils.h
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ValueTracking.h
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VecFuncs.def
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VectorUtils.h
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Editing: IntervalPartition.h
//===- IntervalPartition.h - Interval partition Calculation -----*- 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 contains the declaration of the IntervalPartition class, which // calculates and represents the interval partition of a function, or a // preexisting interval partition. // // In this way, the interval partition may be used to reduce a flow graph down // to its degenerate single node interval partition (unless it is irreducible). // // TODO: The IntervalPartition class should take a bool parameter that tells // whether it should add the "tails" of an interval to an interval itself or if // they should be represented as distinct intervals. // //===----------------------------------------------------------------------===// #ifndef LLVM_ANALYSIS_INTERVALPARTITION_H #define LLVM_ANALYSIS_INTERVALPARTITION_H #include "llvm/Pass.h" #include <map> #include <vector> namespace llvm { class BasicBlock; class Interval; //===----------------------------------------------------------------------===// // // IntervalPartition - This class builds and holds an "interval partition" for // a function. This partition divides the control flow graph into a set of // maximal intervals, as defined with the properties above. Intuitively, an // interval is a (possibly nonexistent) loop with a "tail" of non-looping // nodes following it. // class IntervalPartition : public FunctionPass { using IntervalMapTy = std::map<BasicBlock *, Interval *>; IntervalMapTy IntervalMap; using IntervalListTy = std::vector<Interval *>; Interval *RootInterval = nullptr; std::vector<Interval *> Intervals; public: static char ID; // Pass identification, replacement for typeid IntervalPartition(); // run - Calculate the interval partition for this function bool runOnFunction(Function &F) override; // IntervalPartition ctor - Build a reduced interval partition from an // existing interval graph. This takes an additional boolean parameter to // distinguish it from a copy constructor. Always pass in false for now. IntervalPartition(IntervalPartition &I, bool); // print - Show contents in human readable format... void print(raw_ostream &O, const Module* = nullptr) const override; // getRootInterval() - Return the root interval that contains the starting // block of the function. inline Interval *getRootInterval() { return RootInterval; } // isDegeneratePartition() - Returns true if the interval partition contains // a single interval, and thus cannot be simplified anymore. bool isDegeneratePartition() { return Intervals.size() == 1; } // TODO: isIrreducible - look for triangle graph. // getBlockInterval - Return the interval that a basic block exists in. inline Interval *getBlockInterval(BasicBlock *BB) { IntervalMapTy::iterator I = IntervalMap.find(BB); return I != IntervalMap.end() ? I->second : nullptr; } // getAnalysisUsage - Implement the Pass API void getAnalysisUsage(AnalysisUsage &AU) const override { AU.setPreservesAll(); } // Interface to Intervals vector... const std::vector<Interval*> &getIntervals() const { return Intervals; } // releaseMemory - Reset state back to before function was analyzed void releaseMemory() override; private: // addIntervalToPartition - Add an interval to the internal list of intervals, // and then add mappings from all of the basic blocks in the interval to the // interval itself (in the IntervalMap). void addIntervalToPartition(Interval *I); // updatePredecessors - Interval generation only sets the successor fields of // the interval data structures. After interval generation is complete, // run through all of the intervals and propagate successor info as // predecessor info. void updatePredecessors(Interval *Int); }; } // end namespace llvm #endif // LLVM_ANALYSIS_INTERVALPARTITION_H
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