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Chandler Carruthd3e73552013-01-07 03:08:10 +00001//===- llvm/Analysis/TargetTransformInfo.cpp ------------------------------===//
Nadav Rotem5dc203e2012-10-18 23:22:48 +00002//
3// The LLVM Compiler Infrastructure
4//
5// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
9
Chandler Carruthd3e73552013-01-07 03:08:10 +000010#include "llvm/Analysis/TargetTransformInfo.h"
Chandler Carruth705b1852015-01-31 03:43:40 +000011#include "llvm/Analysis/TargetTransformInfoImpl.h"
Chandler Carruth219b89b2014-03-04 11:01:28 +000012#include "llvm/IR/CallSite.h"
Chandler Carruth511aa762013-01-21 01:27:39 +000013#include "llvm/IR/DataLayout.h"
Chandler Carruth511aa762013-01-21 01:27:39 +000014#include "llvm/IR/Instruction.h"
Chandler Carruth511aa762013-01-21 01:27:39 +000015#include "llvm/IR/Instructions.h"
Chandler Carruth8a8cd2b2014-01-07 11:48:04 +000016#include "llvm/IR/IntrinsicInst.h"
Chandler Carruthe0385522015-02-01 10:11:22 +000017#include "llvm/IR/Module.h"
Chandler Carruth8a8cd2b2014-01-07 11:48:04 +000018#include "llvm/IR/Operator.h"
Guozhi Wei62d64142017-09-08 22:29:17 +000019#include "llvm/IR/PatternMatch.h"
Sean Fertile9cd1cdf2017-07-07 02:00:06 +000020#include "llvm/Support/CommandLine.h"
Nadav Rotem5dc203e2012-10-18 23:22:48 +000021#include "llvm/Support/ErrorHandling.h"
Benjamin Kramer82de7d32016-05-27 14:27:24 +000022#include <utility>
Nadav Rotem5dc203e2012-10-18 23:22:48 +000023
24using namespace llvm;
Guozhi Wei62d64142017-09-08 22:29:17 +000025using namespace PatternMatch;
Nadav Rotem5dc203e2012-10-18 23:22:48 +000026
Chandler Carruthf1221bd2014-04-22 02:48:03 +000027#define DEBUG_TYPE "tti"
28
Guozhi Wei62d64142017-09-08 22:29:17 +000029static cl::opt<bool> EnableReduxCost("costmodel-reduxcost", cl::init(false),
30 cl::Hidden,
31 cl::desc("Recognize reduction patterns."));
32
Chandler Carruth93dcdc42015-01-31 11:17:59 +000033namespace {
34/// \brief No-op implementation of the TTI interface using the utility base
35/// classes.
36///
37/// This is used when no target specific information is available.
38struct NoTTIImpl : TargetTransformInfoImplCRTPBase<NoTTIImpl> {
Mehdi Amini5010ebf2015-07-09 02:08:42 +000039 explicit NoTTIImpl(const DataLayout &DL)
Chandler Carruth93dcdc42015-01-31 11:17:59 +000040 : TargetTransformInfoImplCRTPBase<NoTTIImpl>(DL) {}
41};
42}
43
Mehdi Amini5010ebf2015-07-09 02:08:42 +000044TargetTransformInfo::TargetTransformInfo(const DataLayout &DL)
Chandler Carruth93dcdc42015-01-31 11:17:59 +000045 : TTIImpl(new Model<NoTTIImpl>(NoTTIImpl(DL))) {}
46
Chandler Carruth705b1852015-01-31 03:43:40 +000047TargetTransformInfo::~TargetTransformInfo() {}
Nadav Rotem5dc203e2012-10-18 23:22:48 +000048
Chandler Carruth705b1852015-01-31 03:43:40 +000049TargetTransformInfo::TargetTransformInfo(TargetTransformInfo &&Arg)
50 : TTIImpl(std::move(Arg.TTIImpl)) {}
Chandler Carruth539edf42013-01-05 11:43:11 +000051
Chandler Carruth705b1852015-01-31 03:43:40 +000052TargetTransformInfo &TargetTransformInfo::operator=(TargetTransformInfo &&RHS) {
53 TTIImpl = std::move(RHS.TTIImpl);
54 return *this;
Chandler Carruth539edf42013-01-05 11:43:11 +000055}
56
Chandler Carruth93205eb2015-08-05 18:08:10 +000057int TargetTransformInfo::getOperationCost(unsigned Opcode, Type *Ty,
58 Type *OpTy) const {
59 int Cost = TTIImpl->getOperationCost(Opcode, Ty, OpTy);
60 assert(Cost >= 0 && "TTI should not produce negative costs!");
61 return Cost;
Chandler Carruth511aa762013-01-21 01:27:39 +000062}
63
Chandler Carruth93205eb2015-08-05 18:08:10 +000064int TargetTransformInfo::getCallCost(FunctionType *FTy, int NumArgs) const {
65 int Cost = TTIImpl->getCallCost(FTy, NumArgs);
66 assert(Cost >= 0 && "TTI should not produce negative costs!");
67 return Cost;
Chandler Carruth0ba8db42013-01-22 11:26:02 +000068}
69
Chandler Carruth93205eb2015-08-05 18:08:10 +000070int TargetTransformInfo::getCallCost(const Function *F,
71 ArrayRef<const Value *> Arguments) const {
72 int Cost = TTIImpl->getCallCost(F, Arguments);
73 assert(Cost >= 0 && "TTI should not produce negative costs!");
74 return Cost;
Chandler Carruth0ba8db42013-01-22 11:26:02 +000075}
76
Justin Lebar8650a4d2016-04-15 01:38:48 +000077unsigned TargetTransformInfo::getInliningThresholdMultiplier() const {
78 return TTIImpl->getInliningThresholdMultiplier();
79}
80
Jingyue Wu15f3e822016-07-08 21:48:05 +000081int TargetTransformInfo::getGEPCost(Type *PointeeType, const Value *Ptr,
82 ArrayRef<const Value *> Operands) const {
83 return TTIImpl->getGEPCost(PointeeType, Ptr, Operands);
84}
85
Haicheng Wuabdef9e2017-07-15 02:12:16 +000086int TargetTransformInfo::getExtCost(const Instruction *I,
87 const Value *Src) const {
88 return TTIImpl->getExtCost(I, Src);
89}
90
Chandler Carruth93205eb2015-08-05 18:08:10 +000091int TargetTransformInfo::getIntrinsicCost(
92 Intrinsic::ID IID, Type *RetTy, ArrayRef<const Value *> Arguments) const {
93 int Cost = TTIImpl->getIntrinsicCost(IID, RetTy, Arguments);
94 assert(Cost >= 0 && "TTI should not produce negative costs!");
95 return Cost;
Chandler Carruth0ba8db42013-01-22 11:26:02 +000096}
97
Jun Bum Lim919f9e82017-04-28 16:04:03 +000098unsigned
99TargetTransformInfo::getEstimatedNumberOfCaseClusters(const SwitchInst &SI,
100 unsigned &JTSize) const {
101 return TTIImpl->getEstimatedNumberOfCaseClusters(SI, JTSize);
102}
103
Evgeny Astigeevich70ed78e2017-06-29 13:42:12 +0000104int TargetTransformInfo::getUserCost(const User *U,
105 ArrayRef<const Value *> Operands) const {
106 int Cost = TTIImpl->getUserCost(U, Operands);
Chandler Carruth93205eb2015-08-05 18:08:10 +0000107 assert(Cost >= 0 && "TTI should not produce negative costs!");
108 return Cost;
Chandler Carruth511aa762013-01-21 01:27:39 +0000109}
110
Tom Stellard8b1e0212013-07-27 00:01:07 +0000111bool TargetTransformInfo::hasBranchDivergence() const {
Chandler Carruth705b1852015-01-31 03:43:40 +0000112 return TTIImpl->hasBranchDivergence();
Tom Stellard8b1e0212013-07-27 00:01:07 +0000113}
114
Jingyue Wu5da831c2015-04-10 05:03:50 +0000115bool TargetTransformInfo::isSourceOfDivergence(const Value *V) const {
116 return TTIImpl->isSourceOfDivergence(V);
117}
118
Alexander Timofeev0f9c84c2017-06-15 19:33:10 +0000119bool llvm::TargetTransformInfo::isAlwaysUniform(const Value *V) const {
120 return TTIImpl->isAlwaysUniform(V);
121}
122
Matt Arsenault42b64782017-01-30 23:02:12 +0000123unsigned TargetTransformInfo::getFlatAddressSpace() const {
124 return TTIImpl->getFlatAddressSpace();
125}
126
Chandler Carruth0ba8db42013-01-22 11:26:02 +0000127bool TargetTransformInfo::isLoweredToCall(const Function *F) const {
Chandler Carruth705b1852015-01-31 03:43:40 +0000128 return TTIImpl->isLoweredToCall(F);
Chandler Carruth0ba8db42013-01-22 11:26:02 +0000129}
130
Chandler Carruth705b1852015-01-31 03:43:40 +0000131void TargetTransformInfo::getUnrollingPreferences(
Geoff Berry66d9bdb2017-06-28 15:53:17 +0000132 Loop *L, ScalarEvolution &SE, UnrollingPreferences &UP) const {
133 return TTIImpl->getUnrollingPreferences(L, SE, UP);
Hal Finkel8f2e7002013-09-11 19:25:43 +0000134}
135
Chandler Carruth539edf42013-01-05 11:43:11 +0000136bool TargetTransformInfo::isLegalAddImmediate(int64_t Imm) const {
Chandler Carruth705b1852015-01-31 03:43:40 +0000137 return TTIImpl->isLegalAddImmediate(Imm);
Chandler Carruth539edf42013-01-05 11:43:11 +0000138}
139
140bool TargetTransformInfo::isLegalICmpImmediate(int64_t Imm) const {
Chandler Carruth705b1852015-01-31 03:43:40 +0000141 return TTIImpl->isLegalICmpImmediate(Imm);
Chandler Carruth539edf42013-01-05 11:43:11 +0000142}
143
144bool TargetTransformInfo::isLegalAddressingMode(Type *Ty, GlobalValue *BaseGV,
145 int64_t BaseOffset,
146 bool HasBaseReg,
Matt Arsenaulte83379e2015-06-07 20:12:03 +0000147 int64_t Scale,
Jonas Paulsson024e3192017-07-21 11:59:37 +0000148 unsigned AddrSpace,
149 Instruction *I) const {
Chandler Carruth705b1852015-01-31 03:43:40 +0000150 return TTIImpl->isLegalAddressingMode(Ty, BaseGV, BaseOffset, HasBaseReg,
Jonas Paulsson024e3192017-07-21 11:59:37 +0000151 Scale, AddrSpace, I);
Chandler Carruth539edf42013-01-05 11:43:11 +0000152}
153
Evgeny Stupachenkof2b3b462017-06-05 23:37:00 +0000154bool TargetTransformInfo::isLSRCostLess(LSRCost &C1, LSRCost &C2) const {
155 return TTIImpl->isLSRCostLess(C1, C2);
156}
157
Sanjay Pateld7c702b2018-02-05 23:43:05 +0000158bool TargetTransformInfo::canMacroFuseCmp() const {
159 return TTIImpl->canMacroFuseCmp();
160}
161
Krzysztof Parzyszek0b377e02018-03-26 13:10:09 +0000162bool TargetTransformInfo::shouldFavorPostInc() const {
163 return TTIImpl->shouldFavorPostInc();
164}
165
Elena Demikhovsky20662e32015-10-19 07:43:38 +0000166bool TargetTransformInfo::isLegalMaskedStore(Type *DataType) const {
167 return TTIImpl->isLegalMaskedStore(DataType);
Chandler Carruth705b1852015-01-31 03:43:40 +0000168}
169
Elena Demikhovsky20662e32015-10-19 07:43:38 +0000170bool TargetTransformInfo::isLegalMaskedLoad(Type *DataType) const {
171 return TTIImpl->isLegalMaskedLoad(DataType);
Chandler Carruth705b1852015-01-31 03:43:40 +0000172}
173
Elena Demikhovsky09285852015-10-25 15:37:55 +0000174bool TargetTransformInfo::isLegalMaskedGather(Type *DataType) const {
175 return TTIImpl->isLegalMaskedGather(DataType);
176}
177
178bool TargetTransformInfo::isLegalMaskedScatter(Type *DataType) const {
Mohammed Agabariacef53dc2017-07-27 10:28:16 +0000179 return TTIImpl->isLegalMaskedScatter(DataType);
Elena Demikhovsky09285852015-10-25 15:37:55 +0000180}
181
Sanjay Patel6fd43912017-09-09 13:38:18 +0000182bool TargetTransformInfo::hasDivRemOp(Type *DataType, bool IsSigned) const {
183 return TTIImpl->hasDivRemOp(DataType, IsSigned);
184}
185
Artem Belevichcb8f6322017-10-24 20:31:44 +0000186bool TargetTransformInfo::hasVolatileVariant(Instruction *I,
187 unsigned AddrSpace) const {
188 return TTIImpl->hasVolatileVariant(I, AddrSpace);
189}
190
Jonas Paulsson8624b7e2017-05-24 13:42:56 +0000191bool TargetTransformInfo::prefersVectorizedAddressing() const {
192 return TTIImpl->prefersVectorizedAddressing();
193}
194
Quentin Colombetbf490d42013-05-31 21:29:03 +0000195int TargetTransformInfo::getScalingFactorCost(Type *Ty, GlobalValue *BaseGV,
196 int64_t BaseOffset,
197 bool HasBaseReg,
Matt Arsenaulte83379e2015-06-07 20:12:03 +0000198 int64_t Scale,
199 unsigned AddrSpace) const {
Chandler Carruth93205eb2015-08-05 18:08:10 +0000200 int Cost = TTIImpl->getScalingFactorCost(Ty, BaseGV, BaseOffset, HasBaseReg,
201 Scale, AddrSpace);
202 assert(Cost >= 0 && "TTI should not produce negative costs!");
203 return Cost;
Quentin Colombetbf490d42013-05-31 21:29:03 +0000204}
205
Jonas Paulsson024e3192017-07-21 11:59:37 +0000206bool TargetTransformInfo::LSRWithInstrQueries() const {
207 return TTIImpl->LSRWithInstrQueries();
208}
209
Chandler Carruth539edf42013-01-05 11:43:11 +0000210bool TargetTransformInfo::isTruncateFree(Type *Ty1, Type *Ty2) const {
Chandler Carruth705b1852015-01-31 03:43:40 +0000211 return TTIImpl->isTruncateFree(Ty1, Ty2);
Chandler Carruth539edf42013-01-05 11:43:11 +0000212}
213
Chad Rosier54390052015-02-23 19:15:16 +0000214bool TargetTransformInfo::isProfitableToHoist(Instruction *I) const {
215 return TTIImpl->isProfitableToHoist(I);
216}
217
David Blaikie8ad9a972018-03-28 22:28:50 +0000218bool TargetTransformInfo::useAA() const { return TTIImpl->useAA(); }
219
Chandler Carruth539edf42013-01-05 11:43:11 +0000220bool TargetTransformInfo::isTypeLegal(Type *Ty) const {
Chandler Carruth705b1852015-01-31 03:43:40 +0000221 return TTIImpl->isTypeLegal(Ty);
Chandler Carruth539edf42013-01-05 11:43:11 +0000222}
223
224unsigned TargetTransformInfo::getJumpBufAlignment() const {
Chandler Carruth705b1852015-01-31 03:43:40 +0000225 return TTIImpl->getJumpBufAlignment();
Chandler Carruth539edf42013-01-05 11:43:11 +0000226}
227
228unsigned TargetTransformInfo::getJumpBufSize() const {
Chandler Carruth705b1852015-01-31 03:43:40 +0000229 return TTIImpl->getJumpBufSize();
Chandler Carruth539edf42013-01-05 11:43:11 +0000230}
231
232bool TargetTransformInfo::shouldBuildLookupTables() const {
Chandler Carruth705b1852015-01-31 03:43:40 +0000233 return TTIImpl->shouldBuildLookupTables();
Chandler Carruth539edf42013-01-05 11:43:11 +0000234}
Oliver Stannard4df1cc02016-10-07 08:48:24 +0000235bool TargetTransformInfo::shouldBuildLookupTablesForConstant(Constant *C) const {
236 return TTIImpl->shouldBuildLookupTablesForConstant(C);
237}
Chandler Carruth539edf42013-01-05 11:43:11 +0000238
Zaara Syeda1f59ae32018-01-30 16:17:22 +0000239bool TargetTransformInfo::useColdCCForColdCall(Function &F) const {
240 return TTIImpl->useColdCCForColdCall(F);
241}
242
Jonas Paulsson8e2f9482017-01-26 07:03:25 +0000243unsigned TargetTransformInfo::
244getScalarizationOverhead(Type *Ty, bool Insert, bool Extract) const {
245 return TTIImpl->getScalarizationOverhead(Ty, Insert, Extract);
246}
247
248unsigned TargetTransformInfo::
249getOperandsScalarizationOverhead(ArrayRef<const Value *> Args,
250 unsigned VF) const {
251 return TTIImpl->getOperandsScalarizationOverhead(Args, VF);
252}
253
Jonas Paulssonda74ed42017-04-12 12:41:37 +0000254bool TargetTransformInfo::supportsEfficientVectorElementLoadStore() const {
255 return TTIImpl->supportsEfficientVectorElementLoadStore();
256}
257
Olivier Sallenave049d8032015-03-06 23:12:04 +0000258bool TargetTransformInfo::enableAggressiveInterleaving(bool LoopHasReductions) const {
259 return TTIImpl->enableAggressiveInterleaving(LoopHasReductions);
260}
261
Clement Courbetb2c3eb82017-10-30 14:19:33 +0000262const TargetTransformInfo::MemCmpExpansionOptions *
263TargetTransformInfo::enableMemCmpExpansion(bool IsZeroCmp) const {
264 return TTIImpl->enableMemCmpExpansion(IsZeroCmp);
Zaara Syeda3a7578c2017-05-31 17:12:38 +0000265}
266
Silviu Baranga61bdc512015-08-10 14:50:54 +0000267bool TargetTransformInfo::enableInterleavedAccessVectorization() const {
268 return TTIImpl->enableInterleavedAccessVectorization();
269}
270
Renato Golin5cb666a2016-04-14 20:42:18 +0000271bool TargetTransformInfo::isFPVectorizationPotentiallyUnsafe() const {
272 return TTIImpl->isFPVectorizationPotentiallyUnsafe();
273}
274
Alina Sbirlea6f937b12016-08-04 16:38:44 +0000275bool TargetTransformInfo::allowsMisalignedMemoryAccesses(LLVMContext &Context,
276 unsigned BitWidth,
Alina Sbirlea327955e2016-07-11 20:46:17 +0000277 unsigned AddressSpace,
278 unsigned Alignment,
279 bool *Fast) const {
Alina Sbirlea6f937b12016-08-04 16:38:44 +0000280 return TTIImpl->allowsMisalignedMemoryAccesses(Context, BitWidth, AddressSpace,
Alina Sbirlea327955e2016-07-11 20:46:17 +0000281 Alignment, Fast);
282}
283
Chandler Carruth50a36cd2013-01-07 03:16:03 +0000284TargetTransformInfo::PopcntSupportKind
285TargetTransformInfo::getPopcntSupport(unsigned IntTyWidthInBit) const {
Chandler Carruth705b1852015-01-31 03:43:40 +0000286 return TTIImpl->getPopcntSupport(IntTyWidthInBit);
Chandler Carruth539edf42013-01-05 11:43:11 +0000287}
288
Richard Sandiford37cd6cf2013-08-23 10:27:02 +0000289bool TargetTransformInfo::haveFastSqrt(Type *Ty) const {
Chandler Carruth705b1852015-01-31 03:43:40 +0000290 return TTIImpl->haveFastSqrt(Ty);
Richard Sandiford37cd6cf2013-08-23 10:27:02 +0000291}
292
Sanjay Patel0de1a4b2017-11-27 21:15:43 +0000293bool TargetTransformInfo::isFCmpOrdCheaperThanFCmpZero(Type *Ty) const {
294 return TTIImpl->isFCmpOrdCheaperThanFCmpZero(Ty);
295}
296
Chandler Carruth93205eb2015-08-05 18:08:10 +0000297int TargetTransformInfo::getFPOpCost(Type *Ty) const {
298 int Cost = TTIImpl->getFPOpCost(Ty);
299 assert(Cost >= 0 && "TTI should not produce negative costs!");
300 return Cost;
Cameron Esfahani17177d12015-02-05 02:09:33 +0000301}
302
Sjoerd Meijer38c2cd02016-07-14 07:44:20 +0000303int TargetTransformInfo::getIntImmCodeSizeCost(unsigned Opcode, unsigned Idx,
304 const APInt &Imm,
305 Type *Ty) const {
306 int Cost = TTIImpl->getIntImmCodeSizeCost(Opcode, Idx, Imm, Ty);
307 assert(Cost >= 0 && "TTI should not produce negative costs!");
308 return Cost;
309}
310
Chandler Carruth93205eb2015-08-05 18:08:10 +0000311int TargetTransformInfo::getIntImmCost(const APInt &Imm, Type *Ty) const {
312 int Cost = TTIImpl->getIntImmCost(Imm, Ty);
313 assert(Cost >= 0 && "TTI should not produce negative costs!");
314 return Cost;
Chandler Carruth539edf42013-01-05 11:43:11 +0000315}
316
Chandler Carruth93205eb2015-08-05 18:08:10 +0000317int TargetTransformInfo::getIntImmCost(unsigned Opcode, unsigned Idx,
318 const APInt &Imm, Type *Ty) const {
319 int Cost = TTIImpl->getIntImmCost(Opcode, Idx, Imm, Ty);
320 assert(Cost >= 0 && "TTI should not produce negative costs!");
321 return Cost;
Juergen Ributzkaf26beda2014-01-25 02:02:55 +0000322}
323
Chandler Carruth93205eb2015-08-05 18:08:10 +0000324int TargetTransformInfo::getIntImmCost(Intrinsic::ID IID, unsigned Idx,
325 const APInt &Imm, Type *Ty) const {
326 int Cost = TTIImpl->getIntImmCost(IID, Idx, Imm, Ty);
327 assert(Cost >= 0 && "TTI should not produce negative costs!");
328 return Cost;
Juergen Ributzkaf26beda2014-01-25 02:02:55 +0000329}
330
Chandler Carruth539edf42013-01-05 11:43:11 +0000331unsigned TargetTransformInfo::getNumberOfRegisters(bool Vector) const {
Chandler Carruth705b1852015-01-31 03:43:40 +0000332 return TTIImpl->getNumberOfRegisters(Vector);
Chandler Carruth539edf42013-01-05 11:43:11 +0000333}
334
Nadav Rotemb1791a72013-01-09 22:29:00 +0000335unsigned TargetTransformInfo::getRegisterBitWidth(bool Vector) const {
Chandler Carruth705b1852015-01-31 03:43:40 +0000336 return TTIImpl->getRegisterBitWidth(Vector);
Nadav Rotemb1791a72013-01-09 22:29:00 +0000337}
338
Adam Nemete29686e2017-05-15 21:15:01 +0000339unsigned TargetTransformInfo::getMinVectorRegisterBitWidth() const {
340 return TTIImpl->getMinVectorRegisterBitWidth();
341}
342
Krzysztof Parzyszek5d93fdf2018-03-27 16:14:11 +0000343bool TargetTransformInfo::shouldMaximizeVectorBandwidth(bool OptSize) const {
344 return TTIImpl->shouldMaximizeVectorBandwidth(OptSize);
345}
346
Jun Bum Limdee55652017-04-03 19:20:07 +0000347bool TargetTransformInfo::shouldConsiderAddressTypePromotion(
348 const Instruction &I, bool &AllowPromotionWithoutCommonHeader) const {
349 return TTIImpl->shouldConsiderAddressTypePromotion(
350 I, AllowPromotionWithoutCommonHeader);
351}
352
Adam Nemetaf761102016-01-21 18:28:36 +0000353unsigned TargetTransformInfo::getCacheLineSize() const {
354 return TTIImpl->getCacheLineSize();
355}
356
Tobias Grosserd7eb6192017-08-24 09:46:25 +0000357llvm::Optional<unsigned> TargetTransformInfo::getCacheSize(CacheLevel Level)
358 const {
359 return TTIImpl->getCacheSize(Level);
360}
361
362llvm::Optional<unsigned> TargetTransformInfo::getCacheAssociativity(
363 CacheLevel Level) const {
364 return TTIImpl->getCacheAssociativity(Level);
365}
366
Adam Nemetdadfbb52016-01-27 22:21:25 +0000367unsigned TargetTransformInfo::getPrefetchDistance() const {
368 return TTIImpl->getPrefetchDistance();
369}
370
Adam Nemet6d8beec2016-03-18 00:27:38 +0000371unsigned TargetTransformInfo::getMinPrefetchStride() const {
372 return TTIImpl->getMinPrefetchStride();
373}
374
Adam Nemet709e3042016-03-18 00:27:43 +0000375unsigned TargetTransformInfo::getMaxPrefetchIterationsAhead() const {
376 return TTIImpl->getMaxPrefetchIterationsAhead();
377}
378
Wei Mi062c7442015-05-06 17:12:25 +0000379unsigned TargetTransformInfo::getMaxInterleaveFactor(unsigned VF) const {
380 return TTIImpl->getMaxInterleaveFactor(VF);
Nadav Rotemb696c362013-01-09 01:15:42 +0000381}
382
Chandler Carruth93205eb2015-08-05 18:08:10 +0000383int TargetTransformInfo::getArithmeticInstrCost(
Chandler Carruth705b1852015-01-31 03:43:40 +0000384 unsigned Opcode, Type *Ty, OperandValueKind Opd1Info,
385 OperandValueKind Opd2Info, OperandValueProperties Opd1PropInfo,
Mohammed Agabaria2c96c432017-01-11 08:23:37 +0000386 OperandValueProperties Opd2PropInfo,
387 ArrayRef<const Value *> Args) const {
Chandler Carruth93205eb2015-08-05 18:08:10 +0000388 int Cost = TTIImpl->getArithmeticInstrCost(Opcode, Ty, Opd1Info, Opd2Info,
Mohammed Agabaria2c96c432017-01-11 08:23:37 +0000389 Opd1PropInfo, Opd2PropInfo, Args);
Chandler Carruth93205eb2015-08-05 18:08:10 +0000390 assert(Cost >= 0 && "TTI should not produce negative costs!");
391 return Cost;
Chandler Carruth539edf42013-01-05 11:43:11 +0000392}
393
Chandler Carruth93205eb2015-08-05 18:08:10 +0000394int TargetTransformInfo::getShuffleCost(ShuffleKind Kind, Type *Ty, int Index,
395 Type *SubTp) const {
396 int Cost = TTIImpl->getShuffleCost(Kind, Ty, Index, SubTp);
397 assert(Cost >= 0 && "TTI should not produce negative costs!");
398 return Cost;
Chandler Carruth539edf42013-01-05 11:43:11 +0000399}
400
Chandler Carruth93205eb2015-08-05 18:08:10 +0000401int TargetTransformInfo::getCastInstrCost(unsigned Opcode, Type *Dst,
Jonas Paulssonfccc7d62017-04-12 11:49:08 +0000402 Type *Src, const Instruction *I) const {
403 assert ((I == nullptr || I->getOpcode() == Opcode) &&
404 "Opcode should reflect passed instruction.");
405 int Cost = TTIImpl->getCastInstrCost(Opcode, Dst, Src, I);
Chandler Carruth93205eb2015-08-05 18:08:10 +0000406 assert(Cost >= 0 && "TTI should not produce negative costs!");
407 return Cost;
Chandler Carruth539edf42013-01-05 11:43:11 +0000408}
409
Matthew Simpsone5dfb082016-04-27 15:20:21 +0000410int TargetTransformInfo::getExtractWithExtendCost(unsigned Opcode, Type *Dst,
411 VectorType *VecTy,
412 unsigned Index) const {
413 int Cost = TTIImpl->getExtractWithExtendCost(Opcode, Dst, VecTy, Index);
414 assert(Cost >= 0 && "TTI should not produce negative costs!");
415 return Cost;
416}
417
Chandler Carruth93205eb2015-08-05 18:08:10 +0000418int TargetTransformInfo::getCFInstrCost(unsigned Opcode) const {
419 int Cost = TTIImpl->getCFInstrCost(Opcode);
420 assert(Cost >= 0 && "TTI should not produce negative costs!");
421 return Cost;
Chandler Carruth539edf42013-01-05 11:43:11 +0000422}
423
Chandler Carruth93205eb2015-08-05 18:08:10 +0000424int TargetTransformInfo::getCmpSelInstrCost(unsigned Opcode, Type *ValTy,
Jonas Paulssonfccc7d62017-04-12 11:49:08 +0000425 Type *CondTy, const Instruction *I) const {
426 assert ((I == nullptr || I->getOpcode() == Opcode) &&
427 "Opcode should reflect passed instruction.");
428 int Cost = TTIImpl->getCmpSelInstrCost(Opcode, ValTy, CondTy, I);
Chandler Carruth93205eb2015-08-05 18:08:10 +0000429 assert(Cost >= 0 && "TTI should not produce negative costs!");
430 return Cost;
Chandler Carruth539edf42013-01-05 11:43:11 +0000431}
432
Chandler Carruth93205eb2015-08-05 18:08:10 +0000433int TargetTransformInfo::getVectorInstrCost(unsigned Opcode, Type *Val,
434 unsigned Index) const {
435 int Cost = TTIImpl->getVectorInstrCost(Opcode, Val, Index);
436 assert(Cost >= 0 && "TTI should not produce negative costs!");
437 return Cost;
Chandler Carruth539edf42013-01-05 11:43:11 +0000438}
439
Chandler Carruth93205eb2015-08-05 18:08:10 +0000440int TargetTransformInfo::getMemoryOpCost(unsigned Opcode, Type *Src,
441 unsigned Alignment,
Jonas Paulssonfccc7d62017-04-12 11:49:08 +0000442 unsigned AddressSpace,
443 const Instruction *I) const {
444 assert ((I == nullptr || I->getOpcode() == Opcode) &&
445 "Opcode should reflect passed instruction.");
446 int Cost = TTIImpl->getMemoryOpCost(Opcode, Src, Alignment, AddressSpace, I);
Chandler Carruth93205eb2015-08-05 18:08:10 +0000447 assert(Cost >= 0 && "TTI should not produce negative costs!");
448 return Cost;
Elena Demikhovskya3232f72015-01-25 08:44:46 +0000449}
450
Chandler Carruth93205eb2015-08-05 18:08:10 +0000451int TargetTransformInfo::getMaskedMemoryOpCost(unsigned Opcode, Type *Src,
452 unsigned Alignment,
453 unsigned AddressSpace) const {
454 int Cost =
455 TTIImpl->getMaskedMemoryOpCost(Opcode, Src, Alignment, AddressSpace);
456 assert(Cost >= 0 && "TTI should not produce negative costs!");
457 return Cost;
Chandler Carruth705b1852015-01-31 03:43:40 +0000458}
459
Elena Demikhovsky54946982015-12-28 20:10:59 +0000460int TargetTransformInfo::getGatherScatterOpCost(unsigned Opcode, Type *DataTy,
461 Value *Ptr, bool VariableMask,
462 unsigned Alignment) const {
463 int Cost = TTIImpl->getGatherScatterOpCost(Opcode, DataTy, Ptr, VariableMask,
464 Alignment);
465 assert(Cost >= 0 && "TTI should not produce negative costs!");
466 return Cost;
467}
468
Chandler Carruth93205eb2015-08-05 18:08:10 +0000469int TargetTransformInfo::getInterleavedMemoryOpCost(
Hao Liu32c05392015-06-08 06:39:56 +0000470 unsigned Opcode, Type *VecTy, unsigned Factor, ArrayRef<unsigned> Indices,
471 unsigned Alignment, unsigned AddressSpace) const {
Chandler Carruth93205eb2015-08-05 18:08:10 +0000472 int Cost = TTIImpl->getInterleavedMemoryOpCost(Opcode, VecTy, Factor, Indices,
473 Alignment, AddressSpace);
474 assert(Cost >= 0 && "TTI should not produce negative costs!");
475 return Cost;
Hao Liu32c05392015-06-08 06:39:56 +0000476}
477
Chandler Carruth93205eb2015-08-05 18:08:10 +0000478int TargetTransformInfo::getIntrinsicInstrCost(Intrinsic::ID ID, Type *RetTy,
Jonas Paulssona48ea232017-03-14 06:35:36 +0000479 ArrayRef<Type *> Tys, FastMathFlags FMF,
480 unsigned ScalarizationCostPassed) const {
481 int Cost = TTIImpl->getIntrinsicInstrCost(ID, RetTy, Tys, FMF,
482 ScalarizationCostPassed);
Chandler Carruth93205eb2015-08-05 18:08:10 +0000483 assert(Cost >= 0 && "TTI should not produce negative costs!");
484 return Cost;
485}
486
Elena Demikhovsky54946982015-12-28 20:10:59 +0000487int TargetTransformInfo::getIntrinsicInstrCost(Intrinsic::ID ID, Type *RetTy,
Jonas Paulssona48ea232017-03-14 06:35:36 +0000488 ArrayRef<Value *> Args, FastMathFlags FMF, unsigned VF) const {
489 int Cost = TTIImpl->getIntrinsicInstrCost(ID, RetTy, Args, FMF, VF);
Elena Demikhovsky54946982015-12-28 20:10:59 +0000490 assert(Cost >= 0 && "TTI should not produce negative costs!");
491 return Cost;
492}
493
Chandler Carruth93205eb2015-08-05 18:08:10 +0000494int TargetTransformInfo::getCallInstrCost(Function *F, Type *RetTy,
495 ArrayRef<Type *> Tys) const {
496 int Cost = TTIImpl->getCallInstrCost(F, RetTy, Tys);
497 assert(Cost >= 0 && "TTI should not produce negative costs!");
498 return Cost;
Michael Zolotukhin7ed84a82015-03-17 19:26:23 +0000499}
500
Chandler Carruth539edf42013-01-05 11:43:11 +0000501unsigned TargetTransformInfo::getNumberOfParts(Type *Tp) const {
Chandler Carruth705b1852015-01-31 03:43:40 +0000502 return TTIImpl->getNumberOfParts(Tp);
Chandler Carruth539edf42013-01-05 11:43:11 +0000503}
504
Chandler Carruth93205eb2015-08-05 18:08:10 +0000505int TargetTransformInfo::getAddressComputationCost(Type *Tp,
Mohammed Agabaria23599ba2017-01-05 14:03:41 +0000506 ScalarEvolution *SE,
507 const SCEV *Ptr) const {
508 int Cost = TTIImpl->getAddressComputationCost(Tp, SE, Ptr);
Chandler Carruth93205eb2015-08-05 18:08:10 +0000509 assert(Cost >= 0 && "TTI should not produce negative costs!");
510 return Cost;
Arnold Schwaighofer594fa2d2013-02-08 14:50:48 +0000511}
Chandler Carruth539edf42013-01-05 11:43:11 +0000512
Alexey Bataev3e9b3eb2017-07-31 14:19:32 +0000513int TargetTransformInfo::getArithmeticReductionCost(unsigned Opcode, Type *Ty,
514 bool IsPairwiseForm) const {
515 int Cost = TTIImpl->getArithmeticReductionCost(Opcode, Ty, IsPairwiseForm);
Chandler Carruth93205eb2015-08-05 18:08:10 +0000516 assert(Cost >= 0 && "TTI should not produce negative costs!");
517 return Cost;
Arnold Schwaighofercae87352013-09-17 18:06:50 +0000518}
519
Alexey Bataev6dd29fc2017-09-08 13:49:36 +0000520int TargetTransformInfo::getMinMaxReductionCost(Type *Ty, Type *CondTy,
521 bool IsPairwiseForm,
522 bool IsUnsigned) const {
523 int Cost =
524 TTIImpl->getMinMaxReductionCost(Ty, CondTy, IsPairwiseForm, IsUnsigned);
525 assert(Cost >= 0 && "TTI should not produce negative costs!");
526 return Cost;
527}
528
Chandler Carruth705b1852015-01-31 03:43:40 +0000529unsigned
530TargetTransformInfo::getCostOfKeepingLiveOverCall(ArrayRef<Type *> Tys) const {
531 return TTIImpl->getCostOfKeepingLiveOverCall(Tys);
Chad Rosierf9327d62015-01-26 22:51:15 +0000532}
533
534bool TargetTransformInfo::getTgtMemIntrinsic(IntrinsicInst *Inst,
535 MemIntrinsicInfo &Info) const {
Chandler Carruth705b1852015-01-31 03:43:40 +0000536 return TTIImpl->getTgtMemIntrinsic(Inst, Info);
Chad Rosierf9327d62015-01-26 22:51:15 +0000537}
538
Anna Thomasb2a212c2017-06-06 16:45:25 +0000539unsigned TargetTransformInfo::getAtomicMemIntrinsicMaxElementSize() const {
540 return TTIImpl->getAtomicMemIntrinsicMaxElementSize();
541}
542
Chandler Carruth705b1852015-01-31 03:43:40 +0000543Value *TargetTransformInfo::getOrCreateResultFromMemIntrinsic(
544 IntrinsicInst *Inst, Type *ExpectedType) const {
545 return TTIImpl->getOrCreateResultFromMemIntrinsic(Inst, ExpectedType);
546}
547
Sean Fertile9cd1cdf2017-07-07 02:00:06 +0000548Type *TargetTransformInfo::getMemcpyLoopLoweringType(LLVMContext &Context,
549 Value *Length,
550 unsigned SrcAlign,
551 unsigned DestAlign) const {
552 return TTIImpl->getMemcpyLoopLoweringType(Context, Length, SrcAlign,
553 DestAlign);
554}
555
556void TargetTransformInfo::getMemcpyLoopResidualLoweringType(
557 SmallVectorImpl<Type *> &OpsOut, LLVMContext &Context,
558 unsigned RemainingBytes, unsigned SrcAlign, unsigned DestAlign) const {
559 TTIImpl->getMemcpyLoopResidualLoweringType(OpsOut, Context, RemainingBytes,
560 SrcAlign, DestAlign);
561}
562
Eric Christopherd566fb12015-07-29 22:09:48 +0000563bool TargetTransformInfo::areInlineCompatible(const Function *Caller,
564 const Function *Callee) const {
565 return TTIImpl->areInlineCompatible(Caller, Callee);
Eric Christopher4371b132015-07-02 01:11:47 +0000566}
567
Krzysztof Parzyszek0b377e02018-03-26 13:10:09 +0000568bool TargetTransformInfo::isIndexedLoadLegal(MemIndexedMode Mode,
569 Type *Ty) const {
570 return TTIImpl->isIndexedLoadLegal(Mode, Ty);
571}
572
573bool TargetTransformInfo::isIndexedStoreLegal(MemIndexedMode Mode,
574 Type *Ty) const {
575 return TTIImpl->isIndexedStoreLegal(Mode, Ty);
576}
577
Volkan Keles1c386812016-10-03 10:31:34 +0000578unsigned TargetTransformInfo::getLoadStoreVecRegBitWidth(unsigned AS) const {
579 return TTIImpl->getLoadStoreVecRegBitWidth(AS);
580}
581
582bool TargetTransformInfo::isLegalToVectorizeLoad(LoadInst *LI) const {
583 return TTIImpl->isLegalToVectorizeLoad(LI);
584}
585
586bool TargetTransformInfo::isLegalToVectorizeStore(StoreInst *SI) const {
587 return TTIImpl->isLegalToVectorizeStore(SI);
588}
589
590bool TargetTransformInfo::isLegalToVectorizeLoadChain(
591 unsigned ChainSizeInBytes, unsigned Alignment, unsigned AddrSpace) const {
592 return TTIImpl->isLegalToVectorizeLoadChain(ChainSizeInBytes, Alignment,
593 AddrSpace);
594}
595
596bool TargetTransformInfo::isLegalToVectorizeStoreChain(
597 unsigned ChainSizeInBytes, unsigned Alignment, unsigned AddrSpace) const {
598 return TTIImpl->isLegalToVectorizeStoreChain(ChainSizeInBytes, Alignment,
599 AddrSpace);
600}
601
602unsigned TargetTransformInfo::getLoadVectorFactor(unsigned VF,
603 unsigned LoadSize,
604 unsigned ChainSizeInBytes,
605 VectorType *VecTy) const {
606 return TTIImpl->getLoadVectorFactor(VF, LoadSize, ChainSizeInBytes, VecTy);
607}
608
609unsigned TargetTransformInfo::getStoreVectorFactor(unsigned VF,
610 unsigned StoreSize,
611 unsigned ChainSizeInBytes,
612 VectorType *VecTy) const {
613 return TTIImpl->getStoreVectorFactor(VF, StoreSize, ChainSizeInBytes, VecTy);
614}
615
Amara Emersoncf9daa32017-05-09 10:43:25 +0000616bool TargetTransformInfo::useReductionIntrinsic(unsigned Opcode,
617 Type *Ty, ReductionFlags Flags) const {
618 return TTIImpl->useReductionIntrinsic(Opcode, Ty, Flags);
619}
620
Amara Emerson836b0f42017-05-10 09:42:49 +0000621bool TargetTransformInfo::shouldExpandReduction(const IntrinsicInst *II) const {
622 return TTIImpl->shouldExpandReduction(II);
623}
Amara Emersoncf9daa32017-05-09 10:43:25 +0000624
Guozhi Wei62d64142017-09-08 22:29:17 +0000625int TargetTransformInfo::getInstructionLatency(const Instruction *I) const {
626 return TTIImpl->getInstructionLatency(I);
627}
628
629static bool isReverseVectorMask(ArrayRef<int> Mask) {
630 for (unsigned i = 0, MaskSize = Mask.size(); i < MaskSize; ++i)
631 if (Mask[i] >= 0 && Mask[i] != (int)(MaskSize - 1 - i))
632 return false;
633 return true;
634}
635
636static bool isSingleSourceVectorMask(ArrayRef<int> Mask) {
637 bool Vec0 = false;
638 bool Vec1 = false;
639 for (unsigned i = 0, NumVecElts = Mask.size(); i < NumVecElts; ++i) {
640 if (Mask[i] >= 0) {
641 if ((unsigned)Mask[i] >= NumVecElts)
642 Vec1 = true;
643 else
644 Vec0 = true;
645 }
646 }
647 return !(Vec0 && Vec1);
648}
649
650static bool isZeroEltBroadcastVectorMask(ArrayRef<int> Mask) {
651 for (unsigned i = 0; i < Mask.size(); ++i)
652 if (Mask[i] > 0)
653 return false;
654 return true;
655}
656
657static bool isAlternateVectorMask(ArrayRef<int> Mask) {
658 bool isAlternate = true;
659 unsigned MaskSize = Mask.size();
660
661 // Example: shufflevector A, B, <0,5,2,7>
662 for (unsigned i = 0; i < MaskSize && isAlternate; ++i) {
663 if (Mask[i] < 0)
664 continue;
665 isAlternate = Mask[i] == (int)((i & 1) ? MaskSize + i : i);
666 }
667
668 if (isAlternate)
669 return true;
670
671 isAlternate = true;
672 // Example: shufflevector A, B, <4,1,6,3>
673 for (unsigned i = 0; i < MaskSize && isAlternate; ++i) {
674 if (Mask[i] < 0)
675 continue;
676 isAlternate = Mask[i] == (int)((i & 1) ? i : MaskSize + i);
677 }
678
679 return isAlternate;
680}
681
682static TargetTransformInfo::OperandValueKind getOperandInfo(Value *V) {
683 TargetTransformInfo::OperandValueKind OpInfo =
684 TargetTransformInfo::OK_AnyValue;
685
686 // Check for a splat of a constant or for a non uniform vector of constants.
687 if (isa<ConstantVector>(V) || isa<ConstantDataVector>(V)) {
688 OpInfo = TargetTransformInfo::OK_NonUniformConstantValue;
689 if (cast<Constant>(V)->getSplatValue() != nullptr)
690 OpInfo = TargetTransformInfo::OK_UniformConstantValue;
691 }
692
693 // Check for a splat of a uniform value. This is not loop aware, so return
694 // true only for the obviously uniform cases (argument, globalvalue)
695 const Value *Splat = getSplatValue(V);
696 if (Splat && (isa<Argument>(Splat) || isa<GlobalValue>(Splat)))
697 OpInfo = TargetTransformInfo::OK_UniformValue;
698
699 return OpInfo;
700}
701
702static bool matchPairwiseShuffleMask(ShuffleVectorInst *SI, bool IsLeft,
703 unsigned Level) {
704 // We don't need a shuffle if we just want to have element 0 in position 0 of
705 // the vector.
706 if (!SI && Level == 0 && IsLeft)
707 return true;
708 else if (!SI)
709 return false;
710
711 SmallVector<int, 32> Mask(SI->getType()->getVectorNumElements(), -1);
712
713 // Build a mask of 0, 2, ... (left) or 1, 3, ... (right) depending on whether
714 // we look at the left or right side.
715 for (unsigned i = 0, e = (1 << Level), val = !IsLeft; i != e; ++i, val += 2)
716 Mask[i] = val;
717
718 SmallVector<int, 16> ActualMask = SI->getShuffleMask();
719 return Mask == ActualMask;
720}
721
722namespace {
723/// Kind of the reduction data.
724enum ReductionKind {
725 RK_None, /// Not a reduction.
726 RK_Arithmetic, /// Binary reduction data.
727 RK_MinMax, /// Min/max reduction data.
728 RK_UnsignedMinMax, /// Unsigned min/max reduction data.
729};
730/// Contains opcode + LHS/RHS parts of the reduction operations.
731struct ReductionData {
732 ReductionData() = delete;
733 ReductionData(ReductionKind Kind, unsigned Opcode, Value *LHS, Value *RHS)
734 : Opcode(Opcode), LHS(LHS), RHS(RHS), Kind(Kind) {
735 assert(Kind != RK_None && "expected binary or min/max reduction only.");
736 }
737 unsigned Opcode = 0;
738 Value *LHS = nullptr;
739 Value *RHS = nullptr;
740 ReductionKind Kind = RK_None;
741 bool hasSameData(ReductionData &RD) const {
742 return Kind == RD.Kind && Opcode == RD.Opcode;
743 }
744};
745} // namespace
746
747static Optional<ReductionData> getReductionData(Instruction *I) {
748 Value *L, *R;
749 if (m_BinOp(m_Value(L), m_Value(R)).match(I))
750 return ReductionData(RK_Arithmetic, I->getOpcode(), L, R);
751 if (auto *SI = dyn_cast<SelectInst>(I)) {
752 if (m_SMin(m_Value(L), m_Value(R)).match(SI) ||
753 m_SMax(m_Value(L), m_Value(R)).match(SI) ||
754 m_OrdFMin(m_Value(L), m_Value(R)).match(SI) ||
755 m_OrdFMax(m_Value(L), m_Value(R)).match(SI) ||
756 m_UnordFMin(m_Value(L), m_Value(R)).match(SI) ||
757 m_UnordFMax(m_Value(L), m_Value(R)).match(SI)) {
758 auto *CI = cast<CmpInst>(SI->getCondition());
759 return ReductionData(RK_MinMax, CI->getOpcode(), L, R);
760 }
761 if (m_UMin(m_Value(L), m_Value(R)).match(SI) ||
762 m_UMax(m_Value(L), m_Value(R)).match(SI)) {
763 auto *CI = cast<CmpInst>(SI->getCondition());
764 return ReductionData(RK_UnsignedMinMax, CI->getOpcode(), L, R);
765 }
766 }
767 return llvm::None;
768}
769
770static ReductionKind matchPairwiseReductionAtLevel(Instruction *I,
771 unsigned Level,
772 unsigned NumLevels) {
773 // Match one level of pairwise operations.
774 // %rdx.shuf.0.0 = shufflevector <4 x float> %rdx, <4 x float> undef,
775 // <4 x i32> <i32 0, i32 2 , i32 undef, i32 undef>
776 // %rdx.shuf.0.1 = shufflevector <4 x float> %rdx, <4 x float> undef,
777 // <4 x i32> <i32 1, i32 3, i32 undef, i32 undef>
778 // %bin.rdx.0 = fadd <4 x float> %rdx.shuf.0.0, %rdx.shuf.0.1
779 if (!I)
780 return RK_None;
781
782 assert(I->getType()->isVectorTy() && "Expecting a vector type");
783
784 Optional<ReductionData> RD = getReductionData(I);
785 if (!RD)
786 return RK_None;
787
788 ShuffleVectorInst *LS = dyn_cast<ShuffleVectorInst>(RD->LHS);
789 if (!LS && Level)
790 return RK_None;
791 ShuffleVectorInst *RS = dyn_cast<ShuffleVectorInst>(RD->RHS);
792 if (!RS && Level)
793 return RK_None;
794
795 // On level 0 we can omit one shufflevector instruction.
796 if (!Level && !RS && !LS)
797 return RK_None;
798
799 // Shuffle inputs must match.
800 Value *NextLevelOpL = LS ? LS->getOperand(0) : nullptr;
801 Value *NextLevelOpR = RS ? RS->getOperand(0) : nullptr;
802 Value *NextLevelOp = nullptr;
803 if (NextLevelOpR && NextLevelOpL) {
804 // If we have two shuffles their operands must match.
805 if (NextLevelOpL != NextLevelOpR)
806 return RK_None;
807
808 NextLevelOp = NextLevelOpL;
809 } else if (Level == 0 && (NextLevelOpR || NextLevelOpL)) {
810 // On the first level we can omit the shufflevector <0, undef,...>. So the
811 // input to the other shufflevector <1, undef> must match with one of the
812 // inputs to the current binary operation.
813 // Example:
814 // %NextLevelOpL = shufflevector %R, <1, undef ...>
815 // %BinOp = fadd %NextLevelOpL, %R
816 if (NextLevelOpL && NextLevelOpL != RD->RHS)
817 return RK_None;
818 else if (NextLevelOpR && NextLevelOpR != RD->LHS)
819 return RK_None;
820
821 NextLevelOp = NextLevelOpL ? RD->RHS : RD->LHS;
822 } else
823 return RK_None;
824
825 // Check that the next levels binary operation exists and matches with the
826 // current one.
827 if (Level + 1 != NumLevels) {
828 Optional<ReductionData> NextLevelRD =
829 getReductionData(cast<Instruction>(NextLevelOp));
830 if (!NextLevelRD || !RD->hasSameData(*NextLevelRD))
831 return RK_None;
832 }
833
834 // Shuffle mask for pairwise operation must match.
835 if (matchPairwiseShuffleMask(LS, /*IsLeft=*/true, Level)) {
836 if (!matchPairwiseShuffleMask(RS, /*IsLeft=*/false, Level))
837 return RK_None;
838 } else if (matchPairwiseShuffleMask(RS, /*IsLeft=*/true, Level)) {
839 if (!matchPairwiseShuffleMask(LS, /*IsLeft=*/false, Level))
840 return RK_None;
841 } else {
842 return RK_None;
843 }
844
845 if (++Level == NumLevels)
846 return RD->Kind;
847
848 // Match next level.
849 return matchPairwiseReductionAtLevel(cast<Instruction>(NextLevelOp), Level,
850 NumLevels);
851}
852
853static ReductionKind matchPairwiseReduction(const ExtractElementInst *ReduxRoot,
854 unsigned &Opcode, Type *&Ty) {
855 if (!EnableReduxCost)
856 return RK_None;
857
858 // Need to extract the first element.
859 ConstantInt *CI = dyn_cast<ConstantInt>(ReduxRoot->getOperand(1));
860 unsigned Idx = ~0u;
861 if (CI)
862 Idx = CI->getZExtValue();
863 if (Idx != 0)
864 return RK_None;
865
866 auto *RdxStart = dyn_cast<Instruction>(ReduxRoot->getOperand(0));
867 if (!RdxStart)
868 return RK_None;
869 Optional<ReductionData> RD = getReductionData(RdxStart);
870 if (!RD)
871 return RK_None;
872
873 Type *VecTy = RdxStart->getType();
874 unsigned NumVecElems = VecTy->getVectorNumElements();
875 if (!isPowerOf2_32(NumVecElems))
876 return RK_None;
877
878 // We look for a sequence of shuffle,shuffle,add triples like the following
879 // that builds a pairwise reduction tree.
880 //
881 // (X0, X1, X2, X3)
882 // (X0 + X1, X2 + X3, undef, undef)
883 // ((X0 + X1) + (X2 + X3), undef, undef, undef)
884 //
885 // %rdx.shuf.0.0 = shufflevector <4 x float> %rdx, <4 x float> undef,
886 // <4 x i32> <i32 0, i32 2 , i32 undef, i32 undef>
887 // %rdx.shuf.0.1 = shufflevector <4 x float> %rdx, <4 x float> undef,
888 // <4 x i32> <i32 1, i32 3, i32 undef, i32 undef>
889 // %bin.rdx.0 = fadd <4 x float> %rdx.shuf.0.0, %rdx.shuf.0.1
890 // %rdx.shuf.1.0 = shufflevector <4 x float> %bin.rdx.0, <4 x float> undef,
891 // <4 x i32> <i32 0, i32 undef, i32 undef, i32 undef>
892 // %rdx.shuf.1.1 = shufflevector <4 x float> %bin.rdx.0, <4 x float> undef,
893 // <4 x i32> <i32 1, i32 undef, i32 undef, i32 undef>
894 // %bin.rdx8 = fadd <4 x float> %rdx.shuf.1.0, %rdx.shuf.1.1
895 // %r = extractelement <4 x float> %bin.rdx8, i32 0
896 if (matchPairwiseReductionAtLevel(RdxStart, 0, Log2_32(NumVecElems)) ==
897 RK_None)
898 return RK_None;
899
900 Opcode = RD->Opcode;
901 Ty = VecTy;
902
903 return RD->Kind;
904}
905
906static std::pair<Value *, ShuffleVectorInst *>
907getShuffleAndOtherOprd(Value *L, Value *R) {
908 ShuffleVectorInst *S = nullptr;
909
910 if ((S = dyn_cast<ShuffleVectorInst>(L)))
911 return std::make_pair(R, S);
912
913 S = dyn_cast<ShuffleVectorInst>(R);
914 return std::make_pair(L, S);
915}
916
917static ReductionKind
918matchVectorSplittingReduction(const ExtractElementInst *ReduxRoot,
919 unsigned &Opcode, Type *&Ty) {
920 if (!EnableReduxCost)
921 return RK_None;
922
923 // Need to extract the first element.
924 ConstantInt *CI = dyn_cast<ConstantInt>(ReduxRoot->getOperand(1));
925 unsigned Idx = ~0u;
926 if (CI)
927 Idx = CI->getZExtValue();
928 if (Idx != 0)
929 return RK_None;
930
931 auto *RdxStart = dyn_cast<Instruction>(ReduxRoot->getOperand(0));
932 if (!RdxStart)
933 return RK_None;
934 Optional<ReductionData> RD = getReductionData(RdxStart);
935 if (!RD)
936 return RK_None;
937
938 Type *VecTy = ReduxRoot->getOperand(0)->getType();
939 unsigned NumVecElems = VecTy->getVectorNumElements();
940 if (!isPowerOf2_32(NumVecElems))
941 return RK_None;
942
943 // We look for a sequence of shuffles and adds like the following matching one
944 // fadd, shuffle vector pair at a time.
945 //
946 // %rdx.shuf = shufflevector <4 x float> %rdx, <4 x float> undef,
947 // <4 x i32> <i32 2, i32 3, i32 undef, i32 undef>
948 // %bin.rdx = fadd <4 x float> %rdx, %rdx.shuf
949 // %rdx.shuf7 = shufflevector <4 x float> %bin.rdx, <4 x float> undef,
950 // <4 x i32> <i32 1, i32 undef, i32 undef, i32 undef>
951 // %bin.rdx8 = fadd <4 x float> %bin.rdx, %rdx.shuf7
952 // %r = extractelement <4 x float> %bin.rdx8, i32 0
953
954 unsigned MaskStart = 1;
955 Instruction *RdxOp = RdxStart;
956 SmallVector<int, 32> ShuffleMask(NumVecElems, 0);
957 unsigned NumVecElemsRemain = NumVecElems;
958 while (NumVecElemsRemain - 1) {
959 // Check for the right reduction operation.
960 if (!RdxOp)
961 return RK_None;
962 Optional<ReductionData> RDLevel = getReductionData(RdxOp);
963 if (!RDLevel || !RDLevel->hasSameData(*RD))
964 return RK_None;
965
966 Value *NextRdxOp;
967 ShuffleVectorInst *Shuffle;
968 std::tie(NextRdxOp, Shuffle) =
969 getShuffleAndOtherOprd(RDLevel->LHS, RDLevel->RHS);
970
971 // Check the current reduction operation and the shuffle use the same value.
972 if (Shuffle == nullptr)
973 return RK_None;
974 if (Shuffle->getOperand(0) != NextRdxOp)
975 return RK_None;
976
977 // Check that shuffle masks matches.
978 for (unsigned j = 0; j != MaskStart; ++j)
979 ShuffleMask[j] = MaskStart + j;
980 // Fill the rest of the mask with -1 for undef.
981 std::fill(&ShuffleMask[MaskStart], ShuffleMask.end(), -1);
982
983 SmallVector<int, 16> Mask = Shuffle->getShuffleMask();
984 if (ShuffleMask != Mask)
985 return RK_None;
986
987 RdxOp = dyn_cast<Instruction>(NextRdxOp);
988 NumVecElemsRemain /= 2;
989 MaskStart *= 2;
990 }
991
992 Opcode = RD->Opcode;
993 Ty = VecTy;
994 return RD->Kind;
995}
996
997int TargetTransformInfo::getInstructionThroughput(const Instruction *I) const {
998 switch (I->getOpcode()) {
999 case Instruction::GetElementPtr:
1000 return getUserCost(I);
1001
1002 case Instruction::Ret:
1003 case Instruction::PHI:
1004 case Instruction::Br: {
1005 return getCFInstrCost(I->getOpcode());
1006 }
1007 case Instruction::Add:
1008 case Instruction::FAdd:
1009 case Instruction::Sub:
1010 case Instruction::FSub:
1011 case Instruction::Mul:
1012 case Instruction::FMul:
1013 case Instruction::UDiv:
1014 case Instruction::SDiv:
1015 case Instruction::FDiv:
1016 case Instruction::URem:
1017 case Instruction::SRem:
1018 case Instruction::FRem:
1019 case Instruction::Shl:
1020 case Instruction::LShr:
1021 case Instruction::AShr:
1022 case Instruction::And:
1023 case Instruction::Or:
1024 case Instruction::Xor: {
1025 TargetTransformInfo::OperandValueKind Op1VK =
1026 getOperandInfo(I->getOperand(0));
1027 TargetTransformInfo::OperandValueKind Op2VK =
1028 getOperandInfo(I->getOperand(1));
1029 SmallVector<const Value*, 2> Operands(I->operand_values());
1030 return getArithmeticInstrCost(I->getOpcode(), I->getType(), Op1VK,
1031 Op2VK, TargetTransformInfo::OP_None,
1032 TargetTransformInfo::OP_None,
1033 Operands);
1034 }
1035 case Instruction::Select: {
1036 const SelectInst *SI = cast<SelectInst>(I);
1037 Type *CondTy = SI->getCondition()->getType();
1038 return getCmpSelInstrCost(I->getOpcode(), I->getType(), CondTy, I);
1039 }
1040 case Instruction::ICmp:
1041 case Instruction::FCmp: {
1042 Type *ValTy = I->getOperand(0)->getType();
1043 return getCmpSelInstrCost(I->getOpcode(), ValTy, I->getType(), I);
1044 }
1045 case Instruction::Store: {
1046 const StoreInst *SI = cast<StoreInst>(I);
1047 Type *ValTy = SI->getValueOperand()->getType();
1048 return getMemoryOpCost(I->getOpcode(), ValTy,
1049 SI->getAlignment(),
1050 SI->getPointerAddressSpace(), I);
1051 }
1052 case Instruction::Load: {
1053 const LoadInst *LI = cast<LoadInst>(I);
1054 return getMemoryOpCost(I->getOpcode(), I->getType(),
1055 LI->getAlignment(),
1056 LI->getPointerAddressSpace(), I);
1057 }
1058 case Instruction::ZExt:
1059 case Instruction::SExt:
1060 case Instruction::FPToUI:
1061 case Instruction::FPToSI:
1062 case Instruction::FPExt:
1063 case Instruction::PtrToInt:
1064 case Instruction::IntToPtr:
1065 case Instruction::SIToFP:
1066 case Instruction::UIToFP:
1067 case Instruction::Trunc:
1068 case Instruction::FPTrunc:
1069 case Instruction::BitCast:
1070 case Instruction::AddrSpaceCast: {
1071 Type *SrcTy = I->getOperand(0)->getType();
1072 return getCastInstrCost(I->getOpcode(), I->getType(), SrcTy, I);
1073 }
1074 case Instruction::ExtractElement: {
1075 const ExtractElementInst * EEI = cast<ExtractElementInst>(I);
1076 ConstantInt *CI = dyn_cast<ConstantInt>(I->getOperand(1));
1077 unsigned Idx = -1;
1078 if (CI)
1079 Idx = CI->getZExtValue();
1080
1081 // Try to match a reduction sequence (series of shufflevector and vector
1082 // adds followed by a extractelement).
1083 unsigned ReduxOpCode;
1084 Type *ReduxType;
1085
1086 switch (matchVectorSplittingReduction(EEI, ReduxOpCode, ReduxType)) {
1087 case RK_Arithmetic:
1088 return getArithmeticReductionCost(ReduxOpCode, ReduxType,
1089 /*IsPairwiseForm=*/false);
1090 case RK_MinMax:
1091 return getMinMaxReductionCost(
1092 ReduxType, CmpInst::makeCmpResultType(ReduxType),
1093 /*IsPairwiseForm=*/false, /*IsUnsigned=*/false);
1094 case RK_UnsignedMinMax:
1095 return getMinMaxReductionCost(
1096 ReduxType, CmpInst::makeCmpResultType(ReduxType),
1097 /*IsPairwiseForm=*/false, /*IsUnsigned=*/true);
1098 case RK_None:
1099 break;
1100 }
1101
1102 switch (matchPairwiseReduction(EEI, ReduxOpCode, ReduxType)) {
1103 case RK_Arithmetic:
1104 return getArithmeticReductionCost(ReduxOpCode, ReduxType,
1105 /*IsPairwiseForm=*/true);
1106 case RK_MinMax:
1107 return getMinMaxReductionCost(
1108 ReduxType, CmpInst::makeCmpResultType(ReduxType),
1109 /*IsPairwiseForm=*/true, /*IsUnsigned=*/false);
1110 case RK_UnsignedMinMax:
1111 return getMinMaxReductionCost(
1112 ReduxType, CmpInst::makeCmpResultType(ReduxType),
1113 /*IsPairwiseForm=*/true, /*IsUnsigned=*/true);
1114 case RK_None:
1115 break;
1116 }
1117
1118 return getVectorInstrCost(I->getOpcode(),
1119 EEI->getOperand(0)->getType(), Idx);
1120 }
1121 case Instruction::InsertElement: {
1122 const InsertElementInst * IE = cast<InsertElementInst>(I);
1123 ConstantInt *CI = dyn_cast<ConstantInt>(IE->getOperand(2));
1124 unsigned Idx = -1;
1125 if (CI)
1126 Idx = CI->getZExtValue();
1127 return getVectorInstrCost(I->getOpcode(),
1128 IE->getType(), Idx);
1129 }
1130 case Instruction::ShuffleVector: {
1131 const ShuffleVectorInst *Shuffle = cast<ShuffleVectorInst>(I);
1132 Type *VecTypOp0 = Shuffle->getOperand(0)->getType();
1133 unsigned NumVecElems = VecTypOp0->getVectorNumElements();
1134 SmallVector<int, 16> Mask = Shuffle->getShuffleMask();
1135
1136 if (NumVecElems == Mask.size()) {
1137 if (isReverseVectorMask(Mask))
1138 return getShuffleCost(TargetTransformInfo::SK_Reverse, VecTypOp0,
1139 0, nullptr);
1140 if (isAlternateVectorMask(Mask))
1141 return getShuffleCost(TargetTransformInfo::SK_Alternate,
1142 VecTypOp0, 0, nullptr);
1143
1144 if (isZeroEltBroadcastVectorMask(Mask))
1145 return getShuffleCost(TargetTransformInfo::SK_Broadcast,
1146 VecTypOp0, 0, nullptr);
1147
1148 if (isSingleSourceVectorMask(Mask))
1149 return getShuffleCost(TargetTransformInfo::SK_PermuteSingleSrc,
1150 VecTypOp0, 0, nullptr);
1151
1152 return getShuffleCost(TargetTransformInfo::SK_PermuteTwoSrc,
1153 VecTypOp0, 0, nullptr);
1154 }
1155
1156 return -1;
1157 }
1158 case Instruction::Call:
1159 if (const IntrinsicInst *II = dyn_cast<IntrinsicInst>(I)) {
1160 SmallVector<Value *, 4> Args(II->arg_operands());
1161
1162 FastMathFlags FMF;
1163 if (auto *FPMO = dyn_cast<FPMathOperator>(II))
1164 FMF = FPMO->getFastMathFlags();
1165
1166 return getIntrinsicInstrCost(II->getIntrinsicID(), II->getType(),
1167 Args, FMF);
1168 }
1169 return -1;
1170 default:
1171 // We don't have any information on this instruction.
1172 return -1;
1173 }
1174}
1175
Chandler Carruth705b1852015-01-31 03:43:40 +00001176TargetTransformInfo::Concept::~Concept() {}
1177
Chandler Carruthe0385522015-02-01 10:11:22 +00001178TargetIRAnalysis::TargetIRAnalysis() : TTICallback(&getDefaultTTI) {}
1179
1180TargetIRAnalysis::TargetIRAnalysis(
Eric Christophera4e5d3c2015-09-16 23:38:13 +00001181 std::function<Result(const Function &)> TTICallback)
Benjamin Kramer82de7d32016-05-27 14:27:24 +00001182 : TTICallback(std::move(TTICallback)) {}
Chandler Carruthe0385522015-02-01 10:11:22 +00001183
Chandler Carruth164a2aa62016-06-17 00:11:01 +00001184TargetIRAnalysis::Result TargetIRAnalysis::run(const Function &F,
Sean Silva36e0d012016-08-09 00:28:15 +00001185 FunctionAnalysisManager &) {
Chandler Carruthe0385522015-02-01 10:11:22 +00001186 return TTICallback(F);
1187}
1188
Chandler Carruthdab4eae2016-11-23 17:53:26 +00001189AnalysisKey TargetIRAnalysis::Key;
NAKAMURA Takumidf0cd722016-02-28 17:17:00 +00001190
Eric Christophera4e5d3c2015-09-16 23:38:13 +00001191TargetIRAnalysis::Result TargetIRAnalysis::getDefaultTTI(const Function &F) {
Mehdi Amini5010ebf2015-07-09 02:08:42 +00001192 return Result(F.getParent()->getDataLayout());
Chandler Carruthe0385522015-02-01 10:11:22 +00001193}
1194
Chandler Carruth705b1852015-01-31 03:43:40 +00001195// Register the basic pass.
1196INITIALIZE_PASS(TargetTransformInfoWrapperPass, "tti",
1197 "Target Transform Information", false, true)
1198char TargetTransformInfoWrapperPass::ID = 0;
Chandler Carruth539edf42013-01-05 11:43:11 +00001199
Chandler Carruth705b1852015-01-31 03:43:40 +00001200void TargetTransformInfoWrapperPass::anchor() {}
Chandler Carruth539edf42013-01-05 11:43:11 +00001201
Chandler Carruth705b1852015-01-31 03:43:40 +00001202TargetTransformInfoWrapperPass::TargetTransformInfoWrapperPass()
Chandler Carruth5ec2b1d2015-02-01 12:26:09 +00001203 : ImmutablePass(ID) {
Chandler Carruth705b1852015-01-31 03:43:40 +00001204 initializeTargetTransformInfoWrapperPassPass(
1205 *PassRegistry::getPassRegistry());
1206}
1207
1208TargetTransformInfoWrapperPass::TargetTransformInfoWrapperPass(
Chandler Carruth5ec2b1d2015-02-01 12:26:09 +00001209 TargetIRAnalysis TIRA)
1210 : ImmutablePass(ID), TIRA(std::move(TIRA)) {
Chandler Carruth705b1852015-01-31 03:43:40 +00001211 initializeTargetTransformInfoWrapperPassPass(
1212 *PassRegistry::getPassRegistry());
1213}
1214
Eric Christophera4e5d3c2015-09-16 23:38:13 +00001215TargetTransformInfo &TargetTransformInfoWrapperPass::getTTI(const Function &F) {
Sean Silva36e0d012016-08-09 00:28:15 +00001216 FunctionAnalysisManager DummyFAM;
Chandler Carruth164a2aa62016-06-17 00:11:01 +00001217 TTI = TIRA.run(F, DummyFAM);
Chandler Carruth5ec2b1d2015-02-01 12:26:09 +00001218 return *TTI;
1219}
1220
Chandler Carruth93dcdc42015-01-31 11:17:59 +00001221ImmutablePass *
Chandler Carruth5ec2b1d2015-02-01 12:26:09 +00001222llvm::createTargetTransformInfoWrapperPass(TargetIRAnalysis TIRA) {
1223 return new TargetTransformInfoWrapperPass(std::move(TIRA));
Chandler Carruth539edf42013-01-05 11:43:11 +00001224}