156066525SMatt Arsenault //===- LowerMemIntrinsics.cpp ----------------------------------*- C++ -*--===//
256066525SMatt Arsenault //
32946cd70SChandler Carruth // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
42946cd70SChandler Carruth // See https://llvm.org/LICENSE.txt for license information.
52946cd70SChandler Carruth // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
656066525SMatt Arsenault //
756066525SMatt Arsenault //===----------------------------------------------------------------------===//
856066525SMatt Arsenault
956066525SMatt Arsenault #include "llvm/Transforms/Utils/LowerMemIntrinsics.h"
10acfc785cSEvgeniy Brevnov #include "llvm/Analysis/ScalarEvolution.h"
119cd1cdf8SSean Fertile #include "llvm/Analysis/TargetTransformInfo.h"
1256066525SMatt Arsenault #include "llvm/IR/IRBuilder.h"
136bda14b3SChandler Carruth #include "llvm/IR/IntrinsicInst.h"
14acfc785cSEvgeniy Brevnov #include "llvm/IR/MDBuilder.h"
156bda14b3SChandler Carruth #include "llvm/Transforms/Utils/BasicBlockUtils.h"
1656066525SMatt Arsenault
1756066525SMatt Arsenault using namespace llvm;
1856066525SMatt Arsenault
createMemCpyLoopKnownSize(Instruction * InsertBefore,Value * SrcAddr,Value * DstAddr,ConstantInt * CopyLen,Align SrcAlign,Align DstAlign,bool SrcIsVolatile,bool DstIsVolatile,bool CanOverlap,const TargetTransformInfo & TTI,Optional<uint32_t> AtomicElementSize)199cd1cdf8SSean Fertile void llvm::createMemCpyLoopKnownSize(Instruction *InsertBefore, Value *SrcAddr,
209cd1cdf8SSean Fertile Value *DstAddr, ConstantInt *CopyLen,
21830cfda1SMatt Arsenault Align SrcAlign, Align DstAlign,
229cd1cdf8SSean Fertile bool SrcIsVolatile, bool DstIsVolatile,
23acfc785cSEvgeniy Brevnov bool CanOverlap,
24*da41214dSEvgeniy Brevnov const TargetTransformInfo &TTI,
25*da41214dSEvgeniy Brevnov Optional<uint32_t> AtomicElementSize) {
269cd1cdf8SSean Fertile // No need to expand zero length copies.
279cd1cdf8SSean Fertile if (CopyLen->isZero())
289cd1cdf8SSean Fertile return;
299cd1cdf8SSean Fertile
309cd1cdf8SSean Fertile BasicBlock *PreLoopBB = InsertBefore->getParent();
319cd1cdf8SSean Fertile BasicBlock *PostLoopBB = nullptr;
329cd1cdf8SSean Fertile Function *ParentFunc = PreLoopBB->getParent();
339cd1cdf8SSean Fertile LLVMContext &Ctx = PreLoopBB->getContext();
34b0bdb186SMatt Arsenault const DataLayout &DL = ParentFunc->getParent()->getDataLayout();
35acfc785cSEvgeniy Brevnov MDBuilder MDB(Ctx);
36acfc785cSEvgeniy Brevnov MDNode *NewDomain = MDB.createAnonymousAliasScopeDomain("MemCopyDomain");
37acfc785cSEvgeniy Brevnov StringRef Name = "MemCopyAliasScope";
38acfc785cSEvgeniy Brevnov MDNode *NewScope = MDB.createAnonymousAliasScope(NewDomain, Name);
399cd1cdf8SSean Fertile
4005e7d8d6SMatt Arsenault unsigned SrcAS = cast<PointerType>(SrcAddr->getType())->getAddressSpace();
4105e7d8d6SMatt Arsenault unsigned DstAS = cast<PointerType>(DstAddr->getType())->getAddressSpace();
4205e7d8d6SMatt Arsenault
439cd1cdf8SSean Fertile Type *TypeOfCopyLen = CopyLen->getType();
44830cfda1SMatt Arsenault Type *LoopOpType = TTI.getMemcpyLoopLoweringType(
45*da41214dSEvgeniy Brevnov Ctx, CopyLen, SrcAS, DstAS, SrcAlign.value(), DstAlign.value(),
46*da41214dSEvgeniy Brevnov AtomicElementSize);
47*da41214dSEvgeniy Brevnov assert((!AtomicElementSize || !LoopOpType->isVectorTy()) &&
48*da41214dSEvgeniy Brevnov "Atomic memcpy lowering is not supported for vector operand type");
499cd1cdf8SSean Fertile
50b0bdb186SMatt Arsenault unsigned LoopOpSize = DL.getTypeStoreSize(LoopOpType);
51*da41214dSEvgeniy Brevnov assert((!AtomicElementSize || LoopOpSize % *AtomicElementSize == 0) &&
52*da41214dSEvgeniy Brevnov "Atomic memcpy lowering is not supported for selected operand size");
53*da41214dSEvgeniy Brevnov
549cd1cdf8SSean Fertile uint64_t LoopEndCount = CopyLen->getZExtValue() / LoopOpSize;
559cd1cdf8SSean Fertile
569cd1cdf8SSean Fertile if (LoopEndCount != 0) {
579cd1cdf8SSean Fertile // Split
589cd1cdf8SSean Fertile PostLoopBB = PreLoopBB->splitBasicBlock(InsertBefore, "memcpy-split");
599cd1cdf8SSean Fertile BasicBlock *LoopBB =
609cd1cdf8SSean Fertile BasicBlock::Create(Ctx, "load-store-loop", ParentFunc, PostLoopBB);
619cd1cdf8SSean Fertile PreLoopBB->getTerminator()->setSuccessor(0, LoopBB);
629cd1cdf8SSean Fertile
639cd1cdf8SSean Fertile IRBuilder<> PLBuilder(PreLoopBB->getTerminator());
649cd1cdf8SSean Fertile
659cd1cdf8SSean Fertile // Cast the Src and Dst pointers to pointers to the loop operand type (if
669cd1cdf8SSean Fertile // needed).
679cd1cdf8SSean Fertile PointerType *SrcOpType = PointerType::get(LoopOpType, SrcAS);
689cd1cdf8SSean Fertile PointerType *DstOpType = PointerType::get(LoopOpType, DstAS);
699cd1cdf8SSean Fertile if (SrcAddr->getType() != SrcOpType) {
709cd1cdf8SSean Fertile SrcAddr = PLBuilder.CreateBitCast(SrcAddr, SrcOpType);
719cd1cdf8SSean Fertile }
729cd1cdf8SSean Fertile if (DstAddr->getType() != DstOpType) {
739cd1cdf8SSean Fertile DstAddr = PLBuilder.CreateBitCast(DstAddr, DstOpType);
749cd1cdf8SSean Fertile }
759cd1cdf8SSean Fertile
76830cfda1SMatt Arsenault Align PartDstAlign(commonAlignment(DstAlign, LoopOpSize));
77830cfda1SMatt Arsenault Align PartSrcAlign(commonAlignment(SrcAlign, LoopOpSize));
78b0bdb186SMatt Arsenault
799cd1cdf8SSean Fertile IRBuilder<> LoopBuilder(LoopBB);
809cd1cdf8SSean Fertile PHINode *LoopIndex = LoopBuilder.CreatePHI(TypeOfCopyLen, 2, "loop-index");
819cd1cdf8SSean Fertile LoopIndex->addIncoming(ConstantInt::get(TypeOfCopyLen, 0U), PreLoopBB);
829cd1cdf8SSean Fertile // Loop Body
839cd1cdf8SSean Fertile Value *SrcGEP =
849cd1cdf8SSean Fertile LoopBuilder.CreateInBoundsGEP(LoopOpType, SrcAddr, LoopIndex);
85acfc785cSEvgeniy Brevnov LoadInst *Load = LoopBuilder.CreateAlignedLoad(LoopOpType, SrcGEP,
86b0bdb186SMatt Arsenault PartSrcAlign, SrcIsVolatile);
87acfc785cSEvgeniy Brevnov if (!CanOverlap) {
88acfc785cSEvgeniy Brevnov // Set alias scope for loads.
89acfc785cSEvgeniy Brevnov Load->setMetadata(LLVMContext::MD_alias_scope,
90acfc785cSEvgeniy Brevnov MDNode::get(Ctx, NewScope));
91acfc785cSEvgeniy Brevnov }
929cd1cdf8SSean Fertile Value *DstGEP =
939cd1cdf8SSean Fertile LoopBuilder.CreateInBoundsGEP(LoopOpType, DstAddr, LoopIndex);
94acfc785cSEvgeniy Brevnov StoreInst *Store = LoopBuilder.CreateAlignedStore(
95acfc785cSEvgeniy Brevnov Load, DstGEP, PartDstAlign, DstIsVolatile);
96acfc785cSEvgeniy Brevnov if (!CanOverlap) {
97acfc785cSEvgeniy Brevnov // Indicate that stores don't overlap loads.
98acfc785cSEvgeniy Brevnov Store->setMetadata(LLVMContext::MD_noalias, MDNode::get(Ctx, NewScope));
99acfc785cSEvgeniy Brevnov }
100*da41214dSEvgeniy Brevnov if (AtomicElementSize) {
101*da41214dSEvgeniy Brevnov Load->setAtomic(AtomicOrdering::Unordered);
102*da41214dSEvgeniy Brevnov Store->setAtomic(AtomicOrdering::Unordered);
103*da41214dSEvgeniy Brevnov }
1049cd1cdf8SSean Fertile Value *NewIndex =
1059cd1cdf8SSean Fertile LoopBuilder.CreateAdd(LoopIndex, ConstantInt::get(TypeOfCopyLen, 1U));
1069cd1cdf8SSean Fertile LoopIndex->addIncoming(NewIndex, LoopBB);
1079cd1cdf8SSean Fertile
1089cd1cdf8SSean Fertile // Create the loop branch condition.
1099cd1cdf8SSean Fertile Constant *LoopEndCI = ConstantInt::get(TypeOfCopyLen, LoopEndCount);
1109cd1cdf8SSean Fertile LoopBuilder.CreateCondBr(LoopBuilder.CreateICmpULT(NewIndex, LoopEndCI),
1119cd1cdf8SSean Fertile LoopBB, PostLoopBB);
1129cd1cdf8SSean Fertile }
1139cd1cdf8SSean Fertile
1149cd1cdf8SSean Fertile uint64_t BytesCopied = LoopEndCount * LoopOpSize;
1159cd1cdf8SSean Fertile uint64_t RemainingBytes = CopyLen->getZExtValue() - BytesCopied;
1169cd1cdf8SSean Fertile if (RemainingBytes) {
1179cd1cdf8SSean Fertile IRBuilder<> RBuilder(PostLoopBB ? PostLoopBB->getFirstNonPHI()
1189cd1cdf8SSean Fertile : InsertBefore);
1199cd1cdf8SSean Fertile
1209cd1cdf8SSean Fertile SmallVector<Type *, 5> RemainingOps;
1219cd1cdf8SSean Fertile TTI.getMemcpyLoopResidualLoweringType(RemainingOps, Ctx, RemainingBytes,
122830cfda1SMatt Arsenault SrcAS, DstAS, SrcAlign.value(),
123*da41214dSEvgeniy Brevnov DstAlign.value(), AtomicElementSize);
1249cd1cdf8SSean Fertile
1259cd1cdf8SSean Fertile for (auto OpTy : RemainingOps) {
126830cfda1SMatt Arsenault Align PartSrcAlign(commonAlignment(SrcAlign, BytesCopied));
127830cfda1SMatt Arsenault Align PartDstAlign(commonAlignment(DstAlign, BytesCopied));
128b0bdb186SMatt Arsenault
1299cd1cdf8SSean Fertile // Calaculate the new index
130b0bdb186SMatt Arsenault unsigned OperandSize = DL.getTypeStoreSize(OpTy);
131*da41214dSEvgeniy Brevnov assert(
132*da41214dSEvgeniy Brevnov (!AtomicElementSize || OperandSize % *AtomicElementSize == 0) &&
133*da41214dSEvgeniy Brevnov "Atomic memcpy lowering is not supported for selected operand size");
134*da41214dSEvgeniy Brevnov
1359cd1cdf8SSean Fertile uint64_t GepIndex = BytesCopied / OperandSize;
1369cd1cdf8SSean Fertile assert(GepIndex * OperandSize == BytesCopied &&
1379cd1cdf8SSean Fertile "Division should have no Remainder!");
1389cd1cdf8SSean Fertile // Cast source to operand type and load
1399cd1cdf8SSean Fertile PointerType *SrcPtrType = PointerType::get(OpTy, SrcAS);
1409cd1cdf8SSean Fertile Value *CastedSrc = SrcAddr->getType() == SrcPtrType
1419cd1cdf8SSean Fertile ? SrcAddr
1429cd1cdf8SSean Fertile : RBuilder.CreateBitCast(SrcAddr, SrcPtrType);
1439cd1cdf8SSean Fertile Value *SrcGEP = RBuilder.CreateInBoundsGEP(
1449cd1cdf8SSean Fertile OpTy, CastedSrc, ConstantInt::get(TypeOfCopyLen, GepIndex));
145acfc785cSEvgeniy Brevnov LoadInst *Load =
146b0bdb186SMatt Arsenault RBuilder.CreateAlignedLoad(OpTy, SrcGEP, PartSrcAlign, SrcIsVolatile);
147acfc785cSEvgeniy Brevnov if (!CanOverlap) {
148acfc785cSEvgeniy Brevnov // Set alias scope for loads.
149acfc785cSEvgeniy Brevnov Load->setMetadata(LLVMContext::MD_alias_scope,
150acfc785cSEvgeniy Brevnov MDNode::get(Ctx, NewScope));
151acfc785cSEvgeniy Brevnov }
1529cd1cdf8SSean Fertile // Cast destination to operand type and store.
1539cd1cdf8SSean Fertile PointerType *DstPtrType = PointerType::get(OpTy, DstAS);
1549cd1cdf8SSean Fertile Value *CastedDst = DstAddr->getType() == DstPtrType
1559cd1cdf8SSean Fertile ? DstAddr
1569cd1cdf8SSean Fertile : RBuilder.CreateBitCast(DstAddr, DstPtrType);
1579cd1cdf8SSean Fertile Value *DstGEP = RBuilder.CreateInBoundsGEP(
1589cd1cdf8SSean Fertile OpTy, CastedDst, ConstantInt::get(TypeOfCopyLen, GepIndex));
159acfc785cSEvgeniy Brevnov StoreInst *Store = RBuilder.CreateAlignedStore(Load, DstGEP, PartDstAlign,
160acfc785cSEvgeniy Brevnov DstIsVolatile);
161acfc785cSEvgeniy Brevnov if (!CanOverlap) {
162acfc785cSEvgeniy Brevnov // Indicate that stores don't overlap loads.
163acfc785cSEvgeniy Brevnov Store->setMetadata(LLVMContext::MD_noalias, MDNode::get(Ctx, NewScope));
164acfc785cSEvgeniy Brevnov }
165*da41214dSEvgeniy Brevnov if (AtomicElementSize) {
166*da41214dSEvgeniy Brevnov Load->setAtomic(AtomicOrdering::Unordered);
167*da41214dSEvgeniy Brevnov Store->setAtomic(AtomicOrdering::Unordered);
168*da41214dSEvgeniy Brevnov }
1699cd1cdf8SSean Fertile BytesCopied += OperandSize;
1709cd1cdf8SSean Fertile }
1719cd1cdf8SSean Fertile }
1729cd1cdf8SSean Fertile assert(BytesCopied == CopyLen->getZExtValue() &&
1739cd1cdf8SSean Fertile "Bytes copied should match size in the call!");
1749cd1cdf8SSean Fertile }
1759cd1cdf8SSean Fertile
createMemCpyLoopUnknownSize(Instruction * InsertBefore,Value * SrcAddr,Value * DstAddr,Value * CopyLen,Align SrcAlign,Align DstAlign,bool SrcIsVolatile,bool DstIsVolatile,bool CanOverlap,const TargetTransformInfo & TTI,Optional<uint32_t> AtomicElementSize)1769cd1cdf8SSean Fertile void llvm::createMemCpyLoopUnknownSize(Instruction *InsertBefore,
1779cd1cdf8SSean Fertile Value *SrcAddr, Value *DstAddr,
178830cfda1SMatt Arsenault Value *CopyLen, Align SrcAlign,
179830cfda1SMatt Arsenault Align DstAlign, bool SrcIsVolatile,
180acfc785cSEvgeniy Brevnov bool DstIsVolatile, bool CanOverlap,
181*da41214dSEvgeniy Brevnov const TargetTransformInfo &TTI,
182*da41214dSEvgeniy Brevnov Optional<uint32_t> AtomicElementSize) {
1839cd1cdf8SSean Fertile BasicBlock *PreLoopBB = InsertBefore->getParent();
1849cd1cdf8SSean Fertile BasicBlock *PostLoopBB =
1859cd1cdf8SSean Fertile PreLoopBB->splitBasicBlock(InsertBefore, "post-loop-memcpy-expansion");
1869cd1cdf8SSean Fertile
1879cd1cdf8SSean Fertile Function *ParentFunc = PreLoopBB->getParent();
188b0bdb186SMatt Arsenault const DataLayout &DL = ParentFunc->getParent()->getDataLayout();
1899cd1cdf8SSean Fertile LLVMContext &Ctx = PreLoopBB->getContext();
190acfc785cSEvgeniy Brevnov MDBuilder MDB(Ctx);
191acfc785cSEvgeniy Brevnov MDNode *NewDomain = MDB.createAnonymousAliasScopeDomain("MemCopyDomain");
192acfc785cSEvgeniy Brevnov StringRef Name = "MemCopyAliasScope";
193acfc785cSEvgeniy Brevnov MDNode *NewScope = MDB.createAnonymousAliasScope(NewDomain, Name);
194acfc785cSEvgeniy Brevnov
19505e7d8d6SMatt Arsenault unsigned SrcAS = cast<PointerType>(SrcAddr->getType())->getAddressSpace();
19605e7d8d6SMatt Arsenault unsigned DstAS = cast<PointerType>(DstAddr->getType())->getAddressSpace();
1979cd1cdf8SSean Fertile
198830cfda1SMatt Arsenault Type *LoopOpType = TTI.getMemcpyLoopLoweringType(
199*da41214dSEvgeniy Brevnov Ctx, CopyLen, SrcAS, DstAS, SrcAlign.value(), DstAlign.value(),
200*da41214dSEvgeniy Brevnov AtomicElementSize);
201*da41214dSEvgeniy Brevnov assert((!AtomicElementSize || !LoopOpType->isVectorTy()) &&
202*da41214dSEvgeniy Brevnov "Atomic memcpy lowering is not supported for vector operand type");
203b0bdb186SMatt Arsenault unsigned LoopOpSize = DL.getTypeStoreSize(LoopOpType);
204*da41214dSEvgeniy Brevnov assert((!AtomicElementSize || LoopOpSize % *AtomicElementSize == 0) &&
205*da41214dSEvgeniy Brevnov "Atomic memcpy lowering is not supported for selected operand size");
2069cd1cdf8SSean Fertile
2079cd1cdf8SSean Fertile IRBuilder<> PLBuilder(PreLoopBB->getTerminator());
2089cd1cdf8SSean Fertile
2099cd1cdf8SSean Fertile PointerType *SrcOpType = PointerType::get(LoopOpType, SrcAS);
2109cd1cdf8SSean Fertile PointerType *DstOpType = PointerType::get(LoopOpType, DstAS);
2119cd1cdf8SSean Fertile if (SrcAddr->getType() != SrcOpType) {
2129cd1cdf8SSean Fertile SrcAddr = PLBuilder.CreateBitCast(SrcAddr, SrcOpType);
2139cd1cdf8SSean Fertile }
2149cd1cdf8SSean Fertile if (DstAddr->getType() != DstOpType) {
2159cd1cdf8SSean Fertile DstAddr = PLBuilder.CreateBitCast(DstAddr, DstOpType);
2169cd1cdf8SSean Fertile }
2179cd1cdf8SSean Fertile
2189cd1cdf8SSean Fertile // Calculate the loop trip count, and remaining bytes to copy after the loop.
2199cd1cdf8SSean Fertile Type *CopyLenType = CopyLen->getType();
2209cd1cdf8SSean Fertile IntegerType *ILengthType = dyn_cast<IntegerType>(CopyLenType);
2219cd1cdf8SSean Fertile assert(ILengthType &&
2229cd1cdf8SSean Fertile "expected size argument to memcpy to be an integer type!");
22368d7f9daSSean Fertile Type *Int8Type = Type::getInt8Ty(Ctx);
22468d7f9daSSean Fertile bool LoopOpIsInt8 = LoopOpType == Int8Type;
2259cd1cdf8SSean Fertile ConstantInt *CILoopOpSize = ConstantInt::get(ILengthType, LoopOpSize);
22668d7f9daSSean Fertile Value *RuntimeLoopCount = LoopOpIsInt8 ?
22768d7f9daSSean Fertile CopyLen :
22868d7f9daSSean Fertile PLBuilder.CreateUDiv(CopyLen, CILoopOpSize);
2299cd1cdf8SSean Fertile BasicBlock *LoopBB =
23042b13343SSean Fertile BasicBlock::Create(Ctx, "loop-memcpy-expansion", ParentFunc, PostLoopBB);
2319cd1cdf8SSean Fertile IRBuilder<> LoopBuilder(LoopBB);
2329cd1cdf8SSean Fertile
233830cfda1SMatt Arsenault Align PartSrcAlign(commonAlignment(SrcAlign, LoopOpSize));
234830cfda1SMatt Arsenault Align PartDstAlign(commonAlignment(DstAlign, LoopOpSize));
235b0bdb186SMatt Arsenault
2369cd1cdf8SSean Fertile PHINode *LoopIndex = LoopBuilder.CreatePHI(CopyLenType, 2, "loop-index");
2379cd1cdf8SSean Fertile LoopIndex->addIncoming(ConstantInt::get(CopyLenType, 0U), PreLoopBB);
2389cd1cdf8SSean Fertile
2399cd1cdf8SSean Fertile Value *SrcGEP = LoopBuilder.CreateInBoundsGEP(LoopOpType, SrcAddr, LoopIndex);
240acfc785cSEvgeniy Brevnov LoadInst *Load = LoopBuilder.CreateAlignedLoad(LoopOpType, SrcGEP,
241acfc785cSEvgeniy Brevnov PartSrcAlign, SrcIsVolatile);
242acfc785cSEvgeniy Brevnov if (!CanOverlap) {
243acfc785cSEvgeniy Brevnov // Set alias scope for loads.
244acfc785cSEvgeniy Brevnov Load->setMetadata(LLVMContext::MD_alias_scope, MDNode::get(Ctx, NewScope));
245acfc785cSEvgeniy Brevnov }
2469cd1cdf8SSean Fertile Value *DstGEP = LoopBuilder.CreateInBoundsGEP(LoopOpType, DstAddr, LoopIndex);
247acfc785cSEvgeniy Brevnov StoreInst *Store =
248b0bdb186SMatt Arsenault LoopBuilder.CreateAlignedStore(Load, DstGEP, PartDstAlign, DstIsVolatile);
249acfc785cSEvgeniy Brevnov if (!CanOverlap) {
250acfc785cSEvgeniy Brevnov // Indicate that stores don't overlap loads.
251acfc785cSEvgeniy Brevnov Store->setMetadata(LLVMContext::MD_noalias, MDNode::get(Ctx, NewScope));
252acfc785cSEvgeniy Brevnov }
253*da41214dSEvgeniy Brevnov if (AtomicElementSize) {
254*da41214dSEvgeniy Brevnov Load->setAtomic(AtomicOrdering::Unordered);
255*da41214dSEvgeniy Brevnov Store->setAtomic(AtomicOrdering::Unordered);
256*da41214dSEvgeniy Brevnov }
2579cd1cdf8SSean Fertile Value *NewIndex =
2589cd1cdf8SSean Fertile LoopBuilder.CreateAdd(LoopIndex, ConstantInt::get(CopyLenType, 1U));
2599cd1cdf8SSean Fertile LoopIndex->addIncoming(NewIndex, LoopBB);
2609cd1cdf8SSean Fertile
261*da41214dSEvgeniy Brevnov bool requiresResidual =
262*da41214dSEvgeniy Brevnov !LoopOpIsInt8 && !(AtomicElementSize && LoopOpSize == AtomicElementSize);
263*da41214dSEvgeniy Brevnov if (requiresResidual) {
264*da41214dSEvgeniy Brevnov Type *ResLoopOpType = AtomicElementSize
265*da41214dSEvgeniy Brevnov ? Type::getIntNTy(Ctx, *AtomicElementSize * 8)
266*da41214dSEvgeniy Brevnov : Int8Type;
267*da41214dSEvgeniy Brevnov unsigned ResLoopOpSize = DL.getTypeStoreSize(ResLoopOpType);
268*da41214dSEvgeniy Brevnov assert((ResLoopOpSize == AtomicElementSize ? *AtomicElementSize : 1) &&
269*da41214dSEvgeniy Brevnov "Store size is expected to match type size");
270*da41214dSEvgeniy Brevnov
27168d7f9daSSean Fertile // Add in the
27268d7f9daSSean Fertile Value *RuntimeResidual = PLBuilder.CreateURem(CopyLen, CILoopOpSize);
27368d7f9daSSean Fertile Value *RuntimeBytesCopied = PLBuilder.CreateSub(CopyLen, RuntimeResidual);
27468d7f9daSSean Fertile
2759cd1cdf8SSean Fertile // Loop body for the residual copy.
2769cd1cdf8SSean Fertile BasicBlock *ResLoopBB = BasicBlock::Create(Ctx, "loop-memcpy-residual",
27742b13343SSean Fertile PreLoopBB->getParent(),
27842b13343SSean Fertile PostLoopBB);
2799cd1cdf8SSean Fertile // Residual loop header.
2809cd1cdf8SSean Fertile BasicBlock *ResHeaderBB = BasicBlock::Create(
2819cd1cdf8SSean Fertile Ctx, "loop-memcpy-residual-header", PreLoopBB->getParent(), nullptr);
2829cd1cdf8SSean Fertile
2839cd1cdf8SSean Fertile // Need to update the pre-loop basic block to branch to the correct place.
2849cd1cdf8SSean Fertile // branch to the main loop if the count is non-zero, branch to the residual
2859cd1cdf8SSean Fertile // loop if the copy size is smaller then 1 iteration of the main loop but
2869cd1cdf8SSean Fertile // non-zero and finally branch to after the residual loop if the memcpy
2879cd1cdf8SSean Fertile // size is zero.
2889cd1cdf8SSean Fertile ConstantInt *Zero = ConstantInt::get(ILengthType, 0U);
2899cd1cdf8SSean Fertile PLBuilder.CreateCondBr(PLBuilder.CreateICmpNE(RuntimeLoopCount, Zero),
2909cd1cdf8SSean Fertile LoopBB, ResHeaderBB);
2919cd1cdf8SSean Fertile PreLoopBB->getTerminator()->eraseFromParent();
2929cd1cdf8SSean Fertile
2939cd1cdf8SSean Fertile LoopBuilder.CreateCondBr(
2949cd1cdf8SSean Fertile LoopBuilder.CreateICmpULT(NewIndex, RuntimeLoopCount), LoopBB,
2959cd1cdf8SSean Fertile ResHeaderBB);
2969cd1cdf8SSean Fertile
2979cd1cdf8SSean Fertile // Determine if we need to branch to the residual loop or bypass it.
2989cd1cdf8SSean Fertile IRBuilder<> RHBuilder(ResHeaderBB);
2999cd1cdf8SSean Fertile RHBuilder.CreateCondBr(RHBuilder.CreateICmpNE(RuntimeResidual, Zero),
3009cd1cdf8SSean Fertile ResLoopBB, PostLoopBB);
3019cd1cdf8SSean Fertile
3029cd1cdf8SSean Fertile // Copy the residual with single byte load/store loop.
3039cd1cdf8SSean Fertile IRBuilder<> ResBuilder(ResLoopBB);
3049cd1cdf8SSean Fertile PHINode *ResidualIndex =
3059cd1cdf8SSean Fertile ResBuilder.CreatePHI(CopyLenType, 2, "residual-loop-index");
3069cd1cdf8SSean Fertile ResidualIndex->addIncoming(Zero, ResHeaderBB);
3079cd1cdf8SSean Fertile
308*da41214dSEvgeniy Brevnov Value *SrcAsResLoopOpType = ResBuilder.CreateBitCast(
309*da41214dSEvgeniy Brevnov SrcAddr, PointerType::get(ResLoopOpType, SrcAS));
310*da41214dSEvgeniy Brevnov Value *DstAsResLoopOpType = ResBuilder.CreateBitCast(
311*da41214dSEvgeniy Brevnov DstAddr, PointerType::get(ResLoopOpType, DstAS));
3129cd1cdf8SSean Fertile Value *FullOffset = ResBuilder.CreateAdd(RuntimeBytesCopied, ResidualIndex);
313*da41214dSEvgeniy Brevnov Value *SrcGEP = ResBuilder.CreateInBoundsGEP(
314*da41214dSEvgeniy Brevnov ResLoopOpType, SrcAsResLoopOpType, FullOffset);
315*da41214dSEvgeniy Brevnov LoadInst *Load = ResBuilder.CreateAlignedLoad(ResLoopOpType, SrcGEP,
316acfc785cSEvgeniy Brevnov PartSrcAlign, SrcIsVolatile);
317acfc785cSEvgeniy Brevnov if (!CanOverlap) {
318acfc785cSEvgeniy Brevnov // Set alias scope for loads.
319acfc785cSEvgeniy Brevnov Load->setMetadata(LLVMContext::MD_alias_scope,
320acfc785cSEvgeniy Brevnov MDNode::get(Ctx, NewScope));
321acfc785cSEvgeniy Brevnov }
322*da41214dSEvgeniy Brevnov Value *DstGEP = ResBuilder.CreateInBoundsGEP(
323*da41214dSEvgeniy Brevnov ResLoopOpType, DstAsResLoopOpType, FullOffset);
324acfc785cSEvgeniy Brevnov StoreInst *Store = ResBuilder.CreateAlignedStore(Load, DstGEP, PartDstAlign,
325acfc785cSEvgeniy Brevnov DstIsVolatile);
326acfc785cSEvgeniy Brevnov if (!CanOverlap) {
327acfc785cSEvgeniy Brevnov // Indicate that stores don't overlap loads.
328acfc785cSEvgeniy Brevnov Store->setMetadata(LLVMContext::MD_noalias, MDNode::get(Ctx, NewScope));
329acfc785cSEvgeniy Brevnov }
330*da41214dSEvgeniy Brevnov if (AtomicElementSize) {
331*da41214dSEvgeniy Brevnov Load->setAtomic(AtomicOrdering::Unordered);
332*da41214dSEvgeniy Brevnov Store->setAtomic(AtomicOrdering::Unordered);
333*da41214dSEvgeniy Brevnov }
334*da41214dSEvgeniy Brevnov Value *ResNewIndex = ResBuilder.CreateAdd(
335*da41214dSEvgeniy Brevnov ResidualIndex, ConstantInt::get(CopyLenType, ResLoopOpSize));
3369cd1cdf8SSean Fertile ResidualIndex->addIncoming(ResNewIndex, ResLoopBB);
3379cd1cdf8SSean Fertile
3389cd1cdf8SSean Fertile // Create the loop branch condition.
3399cd1cdf8SSean Fertile ResBuilder.CreateCondBr(
3409cd1cdf8SSean Fertile ResBuilder.CreateICmpULT(ResNewIndex, RuntimeResidual), ResLoopBB,
3419cd1cdf8SSean Fertile PostLoopBB);
3429cd1cdf8SSean Fertile } else {
3439cd1cdf8SSean Fertile // In this case the loop operand type was a byte, and there is no need for a
3449cd1cdf8SSean Fertile // residual loop to copy the remaining memory after the main loop.
3459cd1cdf8SSean Fertile // We do however need to patch up the control flow by creating the
3469cd1cdf8SSean Fertile // terminators for the preloop block and the memcpy loop.
3479cd1cdf8SSean Fertile ConstantInt *Zero = ConstantInt::get(ILengthType, 0U);
3489cd1cdf8SSean Fertile PLBuilder.CreateCondBr(PLBuilder.CreateICmpNE(RuntimeLoopCount, Zero),
3499cd1cdf8SSean Fertile LoopBB, PostLoopBB);
3509cd1cdf8SSean Fertile PreLoopBB->getTerminator()->eraseFromParent();
3519cd1cdf8SSean Fertile LoopBuilder.CreateCondBr(
3529cd1cdf8SSean Fertile LoopBuilder.CreateICmpULT(NewIndex, RuntimeLoopCount), LoopBB,
3539cd1cdf8SSean Fertile PostLoopBB);
3549cd1cdf8SSean Fertile }
3559cd1cdf8SSean Fertile }
3569cd1cdf8SSean Fertile
35756066525SMatt Arsenault // Lower memmove to IR. memmove is required to correctly copy overlapping memory
35856066525SMatt Arsenault // regions; therefore, it has to check the relative positions of the source and
35956066525SMatt Arsenault // destination pointers and choose the copy direction accordingly.
36056066525SMatt Arsenault //
36156066525SMatt Arsenault // The code below is an IR rendition of this C function:
36256066525SMatt Arsenault //
36356066525SMatt Arsenault // void* memmove(void* dst, const void* src, size_t n) {
36456066525SMatt Arsenault // unsigned char* d = dst;
36556066525SMatt Arsenault // const unsigned char* s = src;
36656066525SMatt Arsenault // if (s < d) {
36756066525SMatt Arsenault // // copy backwards
36856066525SMatt Arsenault // while (n--) {
36956066525SMatt Arsenault // d[n] = s[n];
37056066525SMatt Arsenault // }
37156066525SMatt Arsenault // } else {
37256066525SMatt Arsenault // // copy forward
37356066525SMatt Arsenault // for (size_t i = 0; i < n; ++i) {
37456066525SMatt Arsenault // d[i] = s[i];
37556066525SMatt Arsenault // }
37656066525SMatt Arsenault // }
37756066525SMatt Arsenault // return dst;
37856066525SMatt Arsenault // }
createMemMoveLoop(Instruction * InsertBefore,Value * SrcAddr,Value * DstAddr,Value * CopyLen,Align SrcAlign,Align DstAlign,bool SrcIsVolatile,bool DstIsVolatile)379b0bdb186SMatt Arsenault static void createMemMoveLoop(Instruction *InsertBefore, Value *SrcAddr,
380830cfda1SMatt Arsenault Value *DstAddr, Value *CopyLen, Align SrcAlign,
381830cfda1SMatt Arsenault Align DstAlign, bool SrcIsVolatile,
382b0bdb186SMatt Arsenault bool DstIsVolatile) {
38356066525SMatt Arsenault Type *TypeOfCopyLen = CopyLen->getType();
38456066525SMatt Arsenault BasicBlock *OrigBB = InsertBefore->getParent();
38556066525SMatt Arsenault Function *F = OrigBB->getParent();
386b0bdb186SMatt Arsenault const DataLayout &DL = F->getParent()->getDataLayout();
38756066525SMatt Arsenault
388c9032f1aSNikita Popov // TODO: Use different element type if possible?
389c9032f1aSNikita Popov IRBuilder<> CastBuilder(InsertBefore);
390c9032f1aSNikita Popov Type *EltTy = CastBuilder.getInt8Ty();
391c9032f1aSNikita Popov Type *PtrTy =
392c9032f1aSNikita Popov CastBuilder.getInt8PtrTy(SrcAddr->getType()->getPointerAddressSpace());
393c9032f1aSNikita Popov SrcAddr = CastBuilder.CreateBitCast(SrcAddr, PtrTy);
394c9032f1aSNikita Popov DstAddr = CastBuilder.CreateBitCast(DstAddr, PtrTy);
39514359ef1SJames Y Knight
39656066525SMatt Arsenault // Create the a comparison of src and dst, based on which we jump to either
39756066525SMatt Arsenault // the forward-copy part of the function (if src >= dst) or the backwards-copy
39856066525SMatt Arsenault // part (if src < dst).
39956066525SMatt Arsenault // SplitBlockAndInsertIfThenElse conveniently creates the basic if-then-else
40056066525SMatt Arsenault // structure. Its block terminators (unconditional branches) are replaced by
40156066525SMatt Arsenault // the appropriate conditional branches when the loop is built.
40256066525SMatt Arsenault ICmpInst *PtrCompare = new ICmpInst(InsertBefore, ICmpInst::ICMP_ULT,
40356066525SMatt Arsenault SrcAddr, DstAddr, "compare_src_dst");
4044a2d58e1SChandler Carruth Instruction *ThenTerm, *ElseTerm;
40556066525SMatt Arsenault SplitBlockAndInsertIfThenElse(PtrCompare, InsertBefore, &ThenTerm,
40656066525SMatt Arsenault &ElseTerm);
40756066525SMatt Arsenault
40856066525SMatt Arsenault // Each part of the function consists of two blocks:
40956066525SMatt Arsenault // copy_backwards: used to skip the loop when n == 0
41056066525SMatt Arsenault // copy_backwards_loop: the actual backwards loop BB
41156066525SMatt Arsenault // copy_forward: used to skip the loop when n == 0
41256066525SMatt Arsenault // copy_forward_loop: the actual forward loop BB
41356066525SMatt Arsenault BasicBlock *CopyBackwardsBB = ThenTerm->getParent();
41456066525SMatt Arsenault CopyBackwardsBB->setName("copy_backwards");
41556066525SMatt Arsenault BasicBlock *CopyForwardBB = ElseTerm->getParent();
41656066525SMatt Arsenault CopyForwardBB->setName("copy_forward");
41756066525SMatt Arsenault BasicBlock *ExitBB = InsertBefore->getParent();
41856066525SMatt Arsenault ExitBB->setName("memmove_done");
41956066525SMatt Arsenault
420b0bdb186SMatt Arsenault unsigned PartSize = DL.getTypeStoreSize(EltTy);
421830cfda1SMatt Arsenault Align PartSrcAlign(commonAlignment(SrcAlign, PartSize));
422830cfda1SMatt Arsenault Align PartDstAlign(commonAlignment(DstAlign, PartSize));
423b0bdb186SMatt Arsenault
42456066525SMatt Arsenault // Initial comparison of n == 0 that lets us skip the loops altogether. Shared
42556066525SMatt Arsenault // between both backwards and forward copy clauses.
42656066525SMatt Arsenault ICmpInst *CompareN =
42756066525SMatt Arsenault new ICmpInst(OrigBB->getTerminator(), ICmpInst::ICMP_EQ, CopyLen,
42856066525SMatt Arsenault ConstantInt::get(TypeOfCopyLen, 0), "compare_n_to_0");
42956066525SMatt Arsenault
43056066525SMatt Arsenault // Copying backwards.
43156066525SMatt Arsenault BasicBlock *LoopBB =
43256066525SMatt Arsenault BasicBlock::Create(F->getContext(), "copy_backwards_loop", F, CopyForwardBB);
43356066525SMatt Arsenault IRBuilder<> LoopBuilder(LoopBB);
43456066525SMatt Arsenault PHINode *LoopPhi = LoopBuilder.CreatePHI(TypeOfCopyLen, 0);
43556066525SMatt Arsenault Value *IndexPtr = LoopBuilder.CreateSub(
43656066525SMatt Arsenault LoopPhi, ConstantInt::get(TypeOfCopyLen, 1), "index_ptr");
437b0bdb186SMatt Arsenault Value *Element = LoopBuilder.CreateAlignedLoad(
4387716075aSJames Y Knight EltTy, LoopBuilder.CreateInBoundsGEP(EltTy, SrcAddr, IndexPtr),
439b0bdb186SMatt Arsenault PartSrcAlign, "element");
440b0bdb186SMatt Arsenault LoopBuilder.CreateAlignedStore(
441b0bdb186SMatt Arsenault Element, LoopBuilder.CreateInBoundsGEP(EltTy, DstAddr, IndexPtr),
442b0bdb186SMatt Arsenault PartDstAlign);
44356066525SMatt Arsenault LoopBuilder.CreateCondBr(
44456066525SMatt Arsenault LoopBuilder.CreateICmpEQ(IndexPtr, ConstantInt::get(TypeOfCopyLen, 0)),
44556066525SMatt Arsenault ExitBB, LoopBB);
44656066525SMatt Arsenault LoopPhi->addIncoming(IndexPtr, LoopBB);
44756066525SMatt Arsenault LoopPhi->addIncoming(CopyLen, CopyBackwardsBB);
44856066525SMatt Arsenault BranchInst::Create(ExitBB, LoopBB, CompareN, ThenTerm);
44956066525SMatt Arsenault ThenTerm->eraseFromParent();
45056066525SMatt Arsenault
45156066525SMatt Arsenault // Copying forward.
45256066525SMatt Arsenault BasicBlock *FwdLoopBB =
45356066525SMatt Arsenault BasicBlock::Create(F->getContext(), "copy_forward_loop", F, ExitBB);
45456066525SMatt Arsenault IRBuilder<> FwdLoopBuilder(FwdLoopBB);
45556066525SMatt Arsenault PHINode *FwdCopyPhi = FwdLoopBuilder.CreatePHI(TypeOfCopyLen, 0, "index_ptr");
456b0bdb186SMatt Arsenault Value *SrcGEP = FwdLoopBuilder.CreateInBoundsGEP(EltTy, SrcAddr, FwdCopyPhi);
457b0bdb186SMatt Arsenault Value *FwdElement =
458b0bdb186SMatt Arsenault FwdLoopBuilder.CreateAlignedLoad(EltTy, SrcGEP, PartSrcAlign, "element");
459b0bdb186SMatt Arsenault Value *DstGEP = FwdLoopBuilder.CreateInBoundsGEP(EltTy, DstAddr, FwdCopyPhi);
460b0bdb186SMatt Arsenault FwdLoopBuilder.CreateAlignedStore(FwdElement, DstGEP, PartDstAlign);
46156066525SMatt Arsenault Value *FwdIndexPtr = FwdLoopBuilder.CreateAdd(
46256066525SMatt Arsenault FwdCopyPhi, ConstantInt::get(TypeOfCopyLen, 1), "index_increment");
46356066525SMatt Arsenault FwdLoopBuilder.CreateCondBr(FwdLoopBuilder.CreateICmpEQ(FwdIndexPtr, CopyLen),
46456066525SMatt Arsenault ExitBB, FwdLoopBB);
46556066525SMatt Arsenault FwdCopyPhi->addIncoming(FwdIndexPtr, FwdLoopBB);
46656066525SMatt Arsenault FwdCopyPhi->addIncoming(ConstantInt::get(TypeOfCopyLen, 0), CopyForwardBB);
46756066525SMatt Arsenault
46856066525SMatt Arsenault BranchInst::Create(ExitBB, FwdLoopBB, CompareN, ElseTerm);
46956066525SMatt Arsenault ElseTerm->eraseFromParent();
47056066525SMatt Arsenault }
47156066525SMatt Arsenault
createMemSetLoop(Instruction * InsertBefore,Value * DstAddr,Value * CopyLen,Value * SetValue,Align DstAlign,bool IsVolatile)472b0bdb186SMatt Arsenault static void createMemSetLoop(Instruction *InsertBefore, Value *DstAddr,
473830cfda1SMatt Arsenault Value *CopyLen, Value *SetValue, Align DstAlign,
474b0bdb186SMatt Arsenault bool IsVolatile) {
47532d95742STeresa Johnson Type *TypeOfCopyLen = CopyLen->getType();
47656066525SMatt Arsenault BasicBlock *OrigBB = InsertBefore->getParent();
47756066525SMatt Arsenault Function *F = OrigBB->getParent();
478b0bdb186SMatt Arsenault const DataLayout &DL = F->getParent()->getDataLayout();
47956066525SMatt Arsenault BasicBlock *NewBB =
48056066525SMatt Arsenault OrigBB->splitBasicBlock(InsertBefore, "split");
48156066525SMatt Arsenault BasicBlock *LoopBB
48256066525SMatt Arsenault = BasicBlock::Create(F->getContext(), "loadstoreloop", F, NewBB);
48356066525SMatt Arsenault
48456066525SMatt Arsenault IRBuilder<> Builder(OrigBB->getTerminator());
48556066525SMatt Arsenault
48656066525SMatt Arsenault // Cast pointer to the type of value getting stored
48756066525SMatt Arsenault unsigned dstAS = cast<PointerType>(DstAddr->getType())->getAddressSpace();
48856066525SMatt Arsenault DstAddr = Builder.CreateBitCast(DstAddr,
48956066525SMatt Arsenault PointerType::get(SetValue->getType(), dstAS));
49056066525SMatt Arsenault
49132d95742STeresa Johnson Builder.CreateCondBr(
49232d95742STeresa Johnson Builder.CreateICmpEQ(ConstantInt::get(TypeOfCopyLen, 0), CopyLen), NewBB,
49332d95742STeresa Johnson LoopBB);
49432d95742STeresa Johnson OrigBB->getTerminator()->eraseFromParent();
49532d95742STeresa Johnson
496b0bdb186SMatt Arsenault unsigned PartSize = DL.getTypeStoreSize(SetValue->getType());
497830cfda1SMatt Arsenault Align PartAlign(commonAlignment(DstAlign, PartSize));
498b0bdb186SMatt Arsenault
49956066525SMatt Arsenault IRBuilder<> LoopBuilder(LoopBB);
50032d95742STeresa Johnson PHINode *LoopIndex = LoopBuilder.CreatePHI(TypeOfCopyLen, 0);
50132d95742STeresa Johnson LoopIndex->addIncoming(ConstantInt::get(TypeOfCopyLen, 0), OrigBB);
50256066525SMatt Arsenault
503b0bdb186SMatt Arsenault LoopBuilder.CreateAlignedStore(
50456066525SMatt Arsenault SetValue,
50556066525SMatt Arsenault LoopBuilder.CreateInBoundsGEP(SetValue->getType(), DstAddr, LoopIndex),
506b0bdb186SMatt Arsenault PartAlign, IsVolatile);
50756066525SMatt Arsenault
50856066525SMatt Arsenault Value *NewIndex =
50932d95742STeresa Johnson LoopBuilder.CreateAdd(LoopIndex, ConstantInt::get(TypeOfCopyLen, 1));
51056066525SMatt Arsenault LoopIndex->addIncoming(NewIndex, LoopBB);
51156066525SMatt Arsenault
51256066525SMatt Arsenault LoopBuilder.CreateCondBr(LoopBuilder.CreateICmpULT(NewIndex, CopyLen), LoopBB,
51356066525SMatt Arsenault NewBB);
51456066525SMatt Arsenault }
51556066525SMatt Arsenault
516*da41214dSEvgeniy Brevnov template <typename T>
canOverlap(MemTransferBase<T> * Memcpy,ScalarEvolution * SE)517*da41214dSEvgeniy Brevnov static bool canOverlap(MemTransferBase<T> *Memcpy, ScalarEvolution *SE) {
518acfc785cSEvgeniy Brevnov if (SE) {
519acfc785cSEvgeniy Brevnov auto *SrcSCEV = SE->getSCEV(Memcpy->getRawSource());
520acfc785cSEvgeniy Brevnov auto *DestSCEV = SE->getSCEV(Memcpy->getRawDest());
521acfc785cSEvgeniy Brevnov if (SE->isKnownPredicateAt(CmpInst::ICMP_NE, SrcSCEV, DestSCEV, Memcpy))
522*da41214dSEvgeniy Brevnov return false;
523*da41214dSEvgeniy Brevnov }
524*da41214dSEvgeniy Brevnov return true;
525acfc785cSEvgeniy Brevnov }
526acfc785cSEvgeniy Brevnov
expandMemCpyAsLoop(MemCpyInst * Memcpy,const TargetTransformInfo & TTI,ScalarEvolution * SE)527*da41214dSEvgeniy Brevnov void llvm::expandMemCpyAsLoop(MemCpyInst *Memcpy,
528*da41214dSEvgeniy Brevnov const TargetTransformInfo &TTI,
529*da41214dSEvgeniy Brevnov ScalarEvolution *SE) {
530*da41214dSEvgeniy Brevnov bool CanOverlap = canOverlap(Memcpy, SE);
5319cd1cdf8SSean Fertile if (ConstantInt *CI = dyn_cast<ConstantInt>(Memcpy->getLength())) {
532830cfda1SMatt Arsenault createMemCpyLoopKnownSize(
533830cfda1SMatt Arsenault /* InsertBefore */ Memcpy,
5349cd1cdf8SSean Fertile /* SrcAddr */ Memcpy->getRawSource(),
5359cd1cdf8SSean Fertile /* DstAddr */ Memcpy->getRawDest(),
5369cd1cdf8SSean Fertile /* CopyLen */ CI,
537830cfda1SMatt Arsenault /* SrcAlign */ Memcpy->getSourceAlign().valueOrOne(),
538830cfda1SMatt Arsenault /* DestAlign */ Memcpy->getDestAlign().valueOrOne(),
5399cd1cdf8SSean Fertile /* SrcIsVolatile */ Memcpy->isVolatile(),
5409cd1cdf8SSean Fertile /* DstIsVolatile */ Memcpy->isVolatile(),
541acfc785cSEvgeniy Brevnov /* CanOverlap */ CanOverlap,
5429cd1cdf8SSean Fertile /* TargetTransformInfo */ TTI);
5439cd1cdf8SSean Fertile } else {
544830cfda1SMatt Arsenault createMemCpyLoopUnknownSize(
545830cfda1SMatt Arsenault /* InsertBefore */ Memcpy,
5469cd1cdf8SSean Fertile /* SrcAddr */ Memcpy->getRawSource(),
5479cd1cdf8SSean Fertile /* DstAddr */ Memcpy->getRawDest(),
5489cd1cdf8SSean Fertile /* CopyLen */ Memcpy->getLength(),
549830cfda1SMatt Arsenault /* SrcAlign */ Memcpy->getSourceAlign().valueOrOne(),
550830cfda1SMatt Arsenault /* DestAlign */ Memcpy->getDestAlign().valueOrOne(),
5519cd1cdf8SSean Fertile /* SrcIsVolatile */ Memcpy->isVolatile(),
5529cd1cdf8SSean Fertile /* DstIsVolatile */ Memcpy->isVolatile(),
553acfc785cSEvgeniy Brevnov /* CanOverlap */ CanOverlap,
554b5e470aaSMichael Liao /* TargetTransformInfo */ TTI);
5559cd1cdf8SSean Fertile }
5569cd1cdf8SSean Fertile }
55756066525SMatt Arsenault
expandMemMoveAsLoop(MemMoveInst * Memmove)55856066525SMatt Arsenault void llvm::expandMemMoveAsLoop(MemMoveInst *Memmove) {
55956066525SMatt Arsenault createMemMoveLoop(/* InsertBefore */ Memmove,
56056066525SMatt Arsenault /* SrcAddr */ Memmove->getRawSource(),
56156066525SMatt Arsenault /* DstAddr */ Memmove->getRawDest(),
56256066525SMatt Arsenault /* CopyLen */ Memmove->getLength(),
563830cfda1SMatt Arsenault /* SrcAlign */ Memmove->getSourceAlign().valueOrOne(),
564830cfda1SMatt Arsenault /* DestAlign */ Memmove->getDestAlign().valueOrOne(),
56556066525SMatt Arsenault /* SrcIsVolatile */ Memmove->isVolatile(),
56656066525SMatt Arsenault /* DstIsVolatile */ Memmove->isVolatile());
56756066525SMatt Arsenault }
56856066525SMatt Arsenault
expandMemSetAsLoop(MemSetInst * Memset)56956066525SMatt Arsenault void llvm::expandMemSetAsLoop(MemSetInst *Memset) {
57056066525SMatt Arsenault createMemSetLoop(/* InsertBefore */ Memset,
57156066525SMatt Arsenault /* DstAddr */ Memset->getRawDest(),
57256066525SMatt Arsenault /* CopyLen */ Memset->getLength(),
57356066525SMatt Arsenault /* SetValue */ Memset->getValue(),
574830cfda1SMatt Arsenault /* Alignment */ Memset->getDestAlign().valueOrOne(),
57556066525SMatt Arsenault Memset->isVolatile());
57656066525SMatt Arsenault }
577*da41214dSEvgeniy Brevnov
expandAtomicMemCpyAsLoop(AtomicMemCpyInst * AtomicMemcpy,const TargetTransformInfo & TTI,ScalarEvolution * SE)578*da41214dSEvgeniy Brevnov void llvm::expandAtomicMemCpyAsLoop(AtomicMemCpyInst *AtomicMemcpy,
579*da41214dSEvgeniy Brevnov const TargetTransformInfo &TTI,
580*da41214dSEvgeniy Brevnov ScalarEvolution *SE) {
581*da41214dSEvgeniy Brevnov if (ConstantInt *CI = dyn_cast<ConstantInt>(AtomicMemcpy->getLength())) {
582*da41214dSEvgeniy Brevnov createMemCpyLoopKnownSize(
583*da41214dSEvgeniy Brevnov /* InsertBefore */ AtomicMemcpy,
584*da41214dSEvgeniy Brevnov /* SrcAddr */ AtomicMemcpy->getRawSource(),
585*da41214dSEvgeniy Brevnov /* DstAddr */ AtomicMemcpy->getRawDest(),
586*da41214dSEvgeniy Brevnov /* CopyLen */ CI,
587*da41214dSEvgeniy Brevnov /* SrcAlign */ AtomicMemcpy->getSourceAlign().valueOrOne(),
588*da41214dSEvgeniy Brevnov /* DestAlign */ AtomicMemcpy->getDestAlign().valueOrOne(),
589*da41214dSEvgeniy Brevnov /* SrcIsVolatile */ AtomicMemcpy->isVolatile(),
590*da41214dSEvgeniy Brevnov /* DstIsVolatile */ AtomicMemcpy->isVolatile(),
591*da41214dSEvgeniy Brevnov /* CanOverlap */ false, // SrcAddr & DstAddr may not overlap by spec.
592*da41214dSEvgeniy Brevnov /* TargetTransformInfo */ TTI,
593*da41214dSEvgeniy Brevnov /* AtomicCpySize */ AtomicMemcpy->getElementSizeInBytes());
594*da41214dSEvgeniy Brevnov } else {
595*da41214dSEvgeniy Brevnov createMemCpyLoopUnknownSize(
596*da41214dSEvgeniy Brevnov /* InsertBefore */ AtomicMemcpy,
597*da41214dSEvgeniy Brevnov /* SrcAddr */ AtomicMemcpy->getRawSource(),
598*da41214dSEvgeniy Brevnov /* DstAddr */ AtomicMemcpy->getRawDest(),
599*da41214dSEvgeniy Brevnov /* CopyLen */ AtomicMemcpy->getLength(),
600*da41214dSEvgeniy Brevnov /* SrcAlign */ AtomicMemcpy->getSourceAlign().valueOrOne(),
601*da41214dSEvgeniy Brevnov /* DestAlign */ AtomicMemcpy->getDestAlign().valueOrOne(),
602*da41214dSEvgeniy Brevnov /* SrcIsVolatile */ AtomicMemcpy->isVolatile(),
603*da41214dSEvgeniy Brevnov /* DstIsVolatile */ AtomicMemcpy->isVolatile(),
604*da41214dSEvgeniy Brevnov /* CanOverlap */ false, // SrcAddr & DstAddr may not overlap by spec.
605*da41214dSEvgeniy Brevnov /* TargetTransformInfo */ TTI,
606*da41214dSEvgeniy Brevnov /* AtomicCpySize */ AtomicMemcpy->getElementSizeInBytes());
607*da41214dSEvgeniy Brevnov }
608*da41214dSEvgeniy Brevnov }
609