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During vectorization better to postpone the vectorization of the CmpInst instructions till the end of the basic block. Otherwise we may vectorize it too early and may miss some vectorization patterns, like reductions. Reworked part of D57059 Differential Revision: https://reviews.llvm.org/D99796
156 lines
5.9 KiB
C++
156 lines
5.9 KiB
C++
//===- SLPVectorizer.h ------------------------------------------*- C++ -*-===//
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//
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// Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
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// See https://llvm.org/LICENSE.txt for license information.
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// SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
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//
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//===----------------------------------------------------------------------===//
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// This pass implements the Bottom Up SLP vectorizer. It detects consecutive
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// stores that can be put together into vector-stores. Next, it attempts to
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// construct vectorizable tree using the use-def chains. If a profitable tree
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// was found, the SLP vectorizer performs vectorization on the tree.
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//
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// The pass is inspired by the work described in the paper:
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// "Loop-Aware SLP in GCC" by Ira Rosen, Dorit Nuzman, Ayal Zaks.
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//
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//===----------------------------------------------------------------------===//
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#ifndef LLVM_TRANSFORMS_VECTORIZE_SLPVECTORIZER_H
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#define LLVM_TRANSFORMS_VECTORIZE_SLPVECTORIZER_H
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#include "llvm/ADT/ArrayRef.h"
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#include "llvm/ADT/MapVector.h"
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#include "llvm/ADT/None.h"
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#include "llvm/ADT/SmallVector.h"
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#include "llvm/IR/PassManager.h"
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namespace llvm {
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class AAResults;
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class AssumptionCache;
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class BasicBlock;
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class CmpInst;
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class DataLayout;
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class DemandedBits;
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class DominatorTree;
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class Function;
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class GetElementPtrInst;
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class InsertElementInst;
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class InsertValueInst;
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class Instruction;
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class LoopInfo;
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class OptimizationRemarkEmitter;
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class PHINode;
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class ScalarEvolution;
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class StoreInst;
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class TargetLibraryInfo;
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class TargetTransformInfo;
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class Value;
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/// A private "module" namespace for types and utilities used by this pass.
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/// These are implementation details and should not be used by clients.
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namespace slpvectorizer {
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class BoUpSLP;
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} // end namespace slpvectorizer
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struct SLPVectorizerPass : public PassInfoMixin<SLPVectorizerPass> {
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using StoreList = SmallVector<StoreInst *, 8>;
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using StoreListMap = MapVector<Value *, StoreList>;
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using GEPList = SmallVector<GetElementPtrInst *, 8>;
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using GEPListMap = MapVector<Value *, GEPList>;
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ScalarEvolution *SE = nullptr;
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TargetTransformInfo *TTI = nullptr;
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TargetLibraryInfo *TLI = nullptr;
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AAResults *AA = nullptr;
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LoopInfo *LI = nullptr;
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DominatorTree *DT = nullptr;
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AssumptionCache *AC = nullptr;
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DemandedBits *DB = nullptr;
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const DataLayout *DL = nullptr;
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public:
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PreservedAnalyses run(Function &F, FunctionAnalysisManager &AM);
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// Glue for old PM.
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bool runImpl(Function &F, ScalarEvolution *SE_, TargetTransformInfo *TTI_,
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TargetLibraryInfo *TLI_, AAResults *AA_, LoopInfo *LI_,
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DominatorTree *DT_, AssumptionCache *AC_, DemandedBits *DB_,
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OptimizationRemarkEmitter *ORE_);
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private:
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/// Collect store and getelementptr instructions and organize them
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/// according to the underlying object of their pointer operands. We sort the
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/// instructions by their underlying objects to reduce the cost of
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/// consecutive access queries.
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///
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/// TODO: We can further reduce this cost if we flush the chain creation
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/// every time we run into a memory barrier.
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void collectSeedInstructions(BasicBlock *BB);
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/// Try to vectorize a chain that starts at two arithmetic instrs.
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bool tryToVectorizePair(Value *A, Value *B, slpvectorizer::BoUpSLP &R);
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/// Try to vectorize a list of operands.
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/// When \p InsertUses is provided and its entries are non-zero
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/// then users of \p VL are known to be InsertElement instructions
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/// each associated with same VL entry index. Their cost is then
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/// used to adjust cost of the vectorization assuming instcombine pass
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/// then optimizes ExtractElement-InsertElement sequence.
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/// \returns true if a value was vectorized.
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bool tryToVectorizeList(ArrayRef<Value *> VL, slpvectorizer::BoUpSLP &R,
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bool AllowReorder = false,
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ArrayRef<Value *> InsertUses = None);
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/// Try to vectorize a chain that may start at the operands of \p I.
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bool tryToVectorize(Instruction *I, slpvectorizer::BoUpSLP &R);
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/// Vectorize the store instructions collected in Stores.
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bool vectorizeStoreChains(slpvectorizer::BoUpSLP &R);
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/// Vectorize the index computations of the getelementptr instructions
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/// collected in GEPs.
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bool vectorizeGEPIndices(BasicBlock *BB, slpvectorizer::BoUpSLP &R);
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/// Try to find horizontal reduction or otherwise vectorize a chain of binary
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/// operators.
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bool vectorizeRootInstruction(PHINode *P, Value *V, BasicBlock *BB,
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slpvectorizer::BoUpSLP &R,
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TargetTransformInfo *TTI);
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/// Try to vectorize trees that start at insertvalue instructions.
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bool vectorizeInsertValueInst(InsertValueInst *IVI, BasicBlock *BB,
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slpvectorizer::BoUpSLP &R);
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/// Try to vectorize trees that start at insertelement instructions.
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bool vectorizeInsertElementInst(InsertElementInst *IEI, BasicBlock *BB,
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slpvectorizer::BoUpSLP &R);
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/// Tries to vectorize constructs started from CmpInst, InsertValueInst or
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/// InsertElementInst instructions.
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bool vectorizeSimpleInstructions(SmallVectorImpl<Instruction *> &Instructions,
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BasicBlock *BB, slpvectorizer::BoUpSLP &R,
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bool AtTerminator);
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/// Scan the basic block and look for patterns that are likely to start
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/// a vectorization chain.
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bool vectorizeChainsInBlock(BasicBlock *BB, slpvectorizer::BoUpSLP &R);
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bool vectorizeStoreChain(ArrayRef<Value *> Chain, slpvectorizer::BoUpSLP &R,
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unsigned Idx);
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bool vectorizeStores(ArrayRef<StoreInst *> Stores, slpvectorizer::BoUpSLP &R);
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/// The store instructions in a basic block organized by base pointer.
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StoreListMap Stores;
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/// The getelementptr instructions in a basic block organized by base pointer.
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GEPListMap GEPs;
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};
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} // end namespace llvm
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#endif // LLVM_TRANSFORMS_VECTORIZE_SLPVECTORIZER_H
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