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Chris Lattner81ae3f22010-12-26 19:39:38 +00001//===-- LoopIdiomRecognize.cpp - Loop idiom recognition -------------------===//
2//
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//
10// This pass implements an idiom recognizer that transforms simple loops into a
11// non-loop form. In cases that this kicks in, it can be a significant
12// performance win.
13//
Andrew Kaylor7cdf01e2016-08-11 18:28:33 +000014// If compiling for code size we avoid idiom recognition if the resulting
15// code could be larger than the code for the original loop. One way this could
16// happen is if the loop is not removable after idiom recognition due to the
17// presence of non-idiom instructions. The initial implementation of the
18// heuristics applies to idioms in multi-block loops.
19//
Chris Lattner81ae3f22010-12-26 19:39:38 +000020//===----------------------------------------------------------------------===//
Chris Lattner0469e012011-01-02 18:32:09 +000021//
22// TODO List:
23//
24// Future loop memory idioms to recognize:
Chandler Carruth099f5cb02012-11-02 08:33:25 +000025// memcmp, memmove, strlen, etc.
Chris Lattner0469e012011-01-02 18:32:09 +000026// Future floating point idioms to recognize in -ffast-math mode:
27// fpowi
28// Future integer operation idioms to recognize:
29// ctpop, ctlz, cttz
30//
31// Beware that isel's default lowering for ctpop is highly inefficient for
32// i64 and larger types when i64 is legal and the value has few bits set. It
33// would be good to enhance isel to emit a loop for ctpop in this case.
34//
Chris Lattner02a97762011-01-03 01:10:08 +000035// This could recognize common matrix multiplies and dot product idioms and
Chris Lattner8fac5db2011-01-02 23:19:45 +000036// replace them with calls to BLAS (if linked in??).
37//
Chris Lattner0469e012011-01-02 18:32:09 +000038//===----------------------------------------------------------------------===//
Chris Lattner81ae3f22010-12-26 19:39:38 +000039
Dehao Chenb9f8e292016-07-12 18:45:51 +000040#include "llvm/Transforms/Scalar/LoopIdiomRecognize.h"
Haicheng Wuf1c00a22016-01-26 02:27:47 +000041#include "llvm/ADT/MapVector.h"
42#include "llvm/ADT/SetVector.h"
Chandler Carruthaafe0912012-06-29 12:38:19 +000043#include "llvm/ADT/Statistic.h"
Chris Lattnercb18bfa2010-12-27 18:39:08 +000044#include "llvm/Analysis/AliasAnalysis.h"
Chandler Carruth7b560d42015-09-09 17:55:00 +000045#include "llvm/Analysis/BasicAliasAnalysis.h"
46#include "llvm/Analysis/GlobalsModRef.h"
Haicheng Wuf1c00a22016-01-26 02:27:47 +000047#include "llvm/Analysis/LoopAccessAnalysis.h"
Dehao Chenb9f8e292016-07-12 18:45:51 +000048#include "llvm/Analysis/LoopPass.h"
Chandler Carruth7b560d42015-09-09 17:55:00 +000049#include "llvm/Analysis/ScalarEvolutionAliasAnalysis.h"
Chad Rosiera15b4b62015-11-23 21:09:13 +000050#include "llvm/Analysis/ScalarEvolutionExpander.h"
Chandler Carruthaafe0912012-06-29 12:38:19 +000051#include "llvm/Analysis/ScalarEvolutionExpressions.h"
Benjamin Kramer799003b2015-03-23 19:32:43 +000052#include "llvm/Analysis/TargetLibraryInfo.h"
Chandler Carruthd3e73552013-01-07 03:08:10 +000053#include "llvm/Analysis/TargetTransformInfo.h"
Chris Lattner7c5f9c32010-12-26 20:45:45 +000054#include "llvm/Analysis/ValueTracking.h"
Chandler Carruth9fb823b2013-01-02 11:36:10 +000055#include "llvm/IR/DataLayout.h"
Chandler Carruth5ad5f152014-01-13 09:26:24 +000056#include "llvm/IR/Dominators.h"
Chandler Carruth9fb823b2013-01-02 11:36:10 +000057#include "llvm/IR/IRBuilder.h"
58#include "llvm/IR/IntrinsicInst.h"
59#include "llvm/IR/Module.h"
Chandler Carruthaafe0912012-06-29 12:38:19 +000060#include "llvm/Support/Debug.h"
61#include "llvm/Support/raw_ostream.h"
Dehao Chenb9f8e292016-07-12 18:45:51 +000062#include "llvm/Transforms/Scalar.h"
Chandler Carruth3bab7e12017-01-11 09:43:56 +000063#include "llvm/Transforms/Scalar/LoopPassManager.h"
Ahmed Bougachaace97c12016-04-27 19:04:50 +000064#include "llvm/Transforms/Utils/BuildLibCalls.h"
Chris Lattnerb9fe6852010-12-27 00:03:23 +000065#include "llvm/Transforms/Utils/Local.h"
Chandler Carruth31088a92016-02-19 10:45:18 +000066#include "llvm/Transforms/Utils/LoopUtils.h"
Chris Lattner81ae3f22010-12-26 19:39:38 +000067using namespace llvm;
68
Chandler Carruth964daaa2014-04-22 02:55:47 +000069#define DEBUG_TYPE "loop-idiom"
70
Chandler Carruth099f5cb02012-11-02 08:33:25 +000071STATISTIC(NumMemSet, "Number of memset's formed from loop stores");
72STATISTIC(NumMemCpy, "Number of memcpy's formed from loop load+stores");
Chris Lattner81ae3f22010-12-26 19:39:38 +000073
Andrew Kaylor7cdf01e2016-08-11 18:28:33 +000074static cl::opt<bool> UseLIRCodeSizeHeurs(
75 "use-lir-code-size-heurs",
76 cl::desc("Use loop idiom recognition code size heuristics when compiling"
77 "with -Os/-Oz"),
78 cl::init(true), cl::Hidden);
79
Chris Lattner81ae3f22010-12-26 19:39:38 +000080namespace {
Shuxin Yang95de7c32012-12-09 03:12:46 +000081
Dehao Chenb9f8e292016-07-12 18:45:51 +000082class LoopIdiomRecognize {
Chandler Carruthbad690e2015-08-12 23:06:37 +000083 Loop *CurLoop;
Chandler Carruthbf143e22015-08-14 00:21:10 +000084 AliasAnalysis *AA;
Chandler Carruthbad690e2015-08-12 23:06:37 +000085 DominatorTree *DT;
Chandler Carruth18c26692015-08-13 09:27:01 +000086 LoopInfo *LI;
Chandler Carruthbad690e2015-08-12 23:06:37 +000087 ScalarEvolution *SE;
88 TargetLibraryInfo *TLI;
89 const TargetTransformInfo *TTI;
Chad Rosier43f9b482015-11-06 16:33:57 +000090 const DataLayout *DL;
Andrew Kaylor7cdf01e2016-08-11 18:28:33 +000091 bool ApplyCodeSizeHeuristics;
Chris Lattner81ae3f22010-12-26 19:39:38 +000092
Chandler Carruthbad690e2015-08-12 23:06:37 +000093public:
Dehao Chenb9f8e292016-07-12 18:45:51 +000094 explicit LoopIdiomRecognize(AliasAnalysis *AA, DominatorTree *DT,
95 LoopInfo *LI, ScalarEvolution *SE,
96 TargetLibraryInfo *TLI,
97 const TargetTransformInfo *TTI,
98 const DataLayout *DL)
99 : CurLoop(nullptr), AA(AA), DT(DT), LI(LI), SE(SE), TLI(TLI), TTI(TTI),
100 DL(DL) {}
Chris Lattner81ae3f22010-12-26 19:39:38 +0000101
Dehao Chenb9f8e292016-07-12 18:45:51 +0000102 bool runOnLoop(Loop *L);
Shuxin Yang95de7c32012-12-09 03:12:46 +0000103
Chandler Carruthbad690e2015-08-12 23:06:37 +0000104private:
Chad Rosiercc9030b2015-11-11 23:00:59 +0000105 typedef SmallVector<StoreInst *, 8> StoreList;
Haicheng Wuf1c00a22016-01-26 02:27:47 +0000106 typedef MapVector<Value *, StoreList> StoreListMap;
107 StoreListMap StoreRefsForMemset;
108 StoreListMap StoreRefsForMemsetPattern;
Haicheng Wu9d6c9402016-01-04 21:43:14 +0000109 StoreList StoreRefsForMemcpy;
110 bool HasMemset;
111 bool HasMemsetPattern;
112 bool HasMemcpy;
Anna Thomas5ecb8f72017-05-19 17:05:36 +0000113 /// Return code for isLegalStore()
114 enum LegalStoreKind {
Anna Thomasae3f752f2017-05-19 18:00:30 +0000115 None = 0,
Anna Thomas5ecb8f72017-05-19 17:05:36 +0000116 Memset,
117 MemsetPattern,
118 Memcpy,
Anna Thomasb2a212c2017-06-06 16:45:25 +0000119 UnorderedAtomicMemcpy,
Anna Thomasae3f752f2017-05-19 18:00:30 +0000120 DontUse // Dummy retval never to be used. Allows catching errors in retval
121 // handling.
Anna Thomas5ecb8f72017-05-19 17:05:36 +0000122 };
Chad Rosiercc9030b2015-11-11 23:00:59 +0000123
Chandler Carruthd9c60702015-08-13 00:10:03 +0000124 /// \name Countable Loop Idiom Handling
125 /// @{
126
Chandler Carruthbad690e2015-08-12 23:06:37 +0000127 bool runOnCountableLoop();
Chandler Carruthd9c60702015-08-13 00:10:03 +0000128 bool runOnLoopBlock(BasicBlock *BB, const SCEV *BECount,
129 SmallVectorImpl<BasicBlock *> &ExitBlocks);
130
Chad Rosiercc9030b2015-11-11 23:00:59 +0000131 void collectStores(BasicBlock *BB);
Anna Thomas5ecb8f72017-05-19 17:05:36 +0000132 LegalStoreKind isLegalStore(StoreInst *SI);
Haicheng Wuf1c00a22016-01-26 02:27:47 +0000133 bool processLoopStores(SmallVectorImpl<StoreInst *> &SL, const SCEV *BECount,
134 bool ForMemset);
Chandler Carruthd9c60702015-08-13 00:10:03 +0000135 bool processLoopMemSet(MemSetInst *MSI, const SCEV *BECount);
136
137 bool processLoopStridedStore(Value *DestPtr, unsigned StoreSize,
Haicheng Wu9d6c9402016-01-04 21:43:14 +0000138 unsigned StoreAlignment, Value *StoredVal,
Haicheng Wuf1c00a22016-01-26 02:27:47 +0000139 Instruction *TheStore,
140 SmallPtrSetImpl<Instruction *> &Stores,
141 const SCEVAddRecExpr *Ev, const SCEV *BECount,
Andrew Kaylor7cdf01e2016-08-11 18:28:33 +0000142 bool NegStride, bool IsLoopMemset = false);
Haicheng Wu9d6c9402016-01-04 21:43:14 +0000143 bool processLoopStoreOfLoopLoad(StoreInst *SI, const SCEV *BECount);
Andrew Kaylor7cdf01e2016-08-11 18:28:33 +0000144 bool avoidLIRForMultiBlockLoop(bool IsMemset = false,
145 bool IsLoopMemset = false);
Chandler Carruthd9c60702015-08-13 00:10:03 +0000146
147 /// @}
148 /// \name Noncountable Loop Idiom Handling
149 /// @{
150
151 bool runOnNoncountableLoop();
152
Chandler Carruth8219a502015-08-13 00:44:29 +0000153 bool recognizePopcount();
154 void transformLoopToPopcount(BasicBlock *PreCondBB, Instruction *CntInst,
155 PHINode *CntPhi, Value *Var);
Evgeny Stupachenko2fecd382017-05-15 19:08:56 +0000156 bool recognizeAndInsertCTLZ();
157 void transformLoopToCountable(BasicBlock *PreCondBB, Instruction *CntInst,
158 PHINode *CntPhi, Value *Var, const DebugLoc DL,
159 bool ZeroCheck, bool IsCntPhiUsedOutsideLoop);
Chandler Carruth8219a502015-08-13 00:44:29 +0000160
Chandler Carruthd9c60702015-08-13 00:10:03 +0000161 /// @}
Chandler Carruthbad690e2015-08-12 23:06:37 +0000162};
163
Dehao Chenb9f8e292016-07-12 18:45:51 +0000164class LoopIdiomRecognizeLegacyPass : public LoopPass {
165public:
166 static char ID;
167 explicit LoopIdiomRecognizeLegacyPass() : LoopPass(ID) {
168 initializeLoopIdiomRecognizeLegacyPassPass(
169 *PassRegistry::getPassRegistry());
170 }
171
172 bool runOnLoop(Loop *L, LPPassManager &LPM) override {
173 if (skipLoop(L))
174 return false;
175
176 AliasAnalysis *AA = &getAnalysis<AAResultsWrapperPass>().getAAResults();
177 DominatorTree *DT = &getAnalysis<DominatorTreeWrapperPass>().getDomTree();
178 LoopInfo *LI = &getAnalysis<LoopInfoWrapperPass>().getLoopInfo();
179 ScalarEvolution *SE = &getAnalysis<ScalarEvolutionWrapperPass>().getSE();
180 TargetLibraryInfo *TLI =
181 &getAnalysis<TargetLibraryInfoWrapperPass>().getTLI();
182 const TargetTransformInfo *TTI =
183 &getAnalysis<TargetTransformInfoWrapperPass>().getTTI(
184 *L->getHeader()->getParent());
185 const DataLayout *DL = &L->getHeader()->getModule()->getDataLayout();
186
187 LoopIdiomRecognize LIR(AA, DT, LI, SE, TLI, TTI, DL);
188 return LIR.runOnLoop(L);
189 }
190
191 /// This transformation requires natural loop information & requires that
192 /// loop preheaders be inserted into the CFG.
193 ///
194 void getAnalysisUsage(AnalysisUsage &AU) const override {
195 AU.addRequired<TargetLibraryInfoWrapperPass>();
196 AU.addRequired<TargetTransformInfoWrapperPass>();
197 getLoopAnalysisUsage(AU);
198 }
199};
Chandler Carruthbad690e2015-08-12 23:06:37 +0000200} // End anonymous namespace.
Chris Lattner81ae3f22010-12-26 19:39:38 +0000201
Chandler Carruth410eaeb2017-01-11 06:23:21 +0000202PreservedAnalyses LoopIdiomRecognizePass::run(Loop &L, LoopAnalysisManager &AM,
203 LoopStandardAnalysisResults &AR,
204 LPMUpdater &) {
Dehao Chenb9f8e292016-07-12 18:45:51 +0000205 const auto *DL = &L.getHeader()->getModule()->getDataLayout();
Dehao Chenb9f8e292016-07-12 18:45:51 +0000206
Chandler Carruth410eaeb2017-01-11 06:23:21 +0000207 LoopIdiomRecognize LIR(&AR.AA, &AR.DT, &AR.LI, &AR.SE, &AR.TLI, &AR.TTI, DL);
Dehao Chenb9f8e292016-07-12 18:45:51 +0000208 if (!LIR.runOnLoop(&L))
209 return PreservedAnalyses::all();
210
211 return getLoopPassPreservedAnalyses();
212}
213
214char LoopIdiomRecognizeLegacyPass::ID = 0;
215INITIALIZE_PASS_BEGIN(LoopIdiomRecognizeLegacyPass, "loop-idiom",
216 "Recognize loop idioms", false, false)
Chandler Carruth31088a92016-02-19 10:45:18 +0000217INITIALIZE_PASS_DEPENDENCY(LoopPass)
Chandler Carruthb98f63d2015-01-15 10:41:28 +0000218INITIALIZE_PASS_DEPENDENCY(TargetLibraryInfoWrapperPass)
Chandler Carruth705b1852015-01-31 03:43:40 +0000219INITIALIZE_PASS_DEPENDENCY(TargetTransformInfoWrapperPass)
Dehao Chenb9f8e292016-07-12 18:45:51 +0000220INITIALIZE_PASS_END(LoopIdiomRecognizeLegacyPass, "loop-idiom",
221 "Recognize loop idioms", false, false)
Chris Lattner81ae3f22010-12-26 19:39:38 +0000222
Dehao Chenb9f8e292016-07-12 18:45:51 +0000223Pass *llvm::createLoopIdiomPass() { return new LoopIdiomRecognizeLegacyPass(); }
Chris Lattner81ae3f22010-12-26 19:39:38 +0000224
David Majnemerc5601df2016-06-20 16:03:25 +0000225static void deleteDeadInstruction(Instruction *I) {
Benjamin Kramerf094d772015-02-07 21:37:08 +0000226 I->replaceAllUsesWith(UndefValue::get(I->getType()));
227 I->eraseFromParent();
Chandler Carruth099f5cb02012-11-02 08:33:25 +0000228}
229
Shuxin Yang95de7c32012-12-09 03:12:46 +0000230//===----------------------------------------------------------------------===//
231//
Shuxin Yang95de7c32012-12-09 03:12:46 +0000232// Implementation of LoopIdiomRecognize
233//
234//===----------------------------------------------------------------------===//
235
Dehao Chenb9f8e292016-07-12 18:45:51 +0000236bool LoopIdiomRecognize::runOnLoop(Loop *L) {
Chandler Carruthd9c60702015-08-13 00:10:03 +0000237 CurLoop = L;
Chandler Carruthd9c60702015-08-13 00:10:03 +0000238 // If the loop could not be converted to canonical form, it must have an
239 // indirectbr in it, just give up.
240 if (!L->getLoopPreheader())
241 return false;
242
243 // Disable loop idiom recognition if the function's name is a common idiom.
244 StringRef Name = L->getHeader()->getParent()->getName();
245 if (Name == "memset" || Name == "memcpy")
246 return false;
247
Andrew Kaylor7cdf01e2016-08-11 18:28:33 +0000248 // Determine if code size heuristics need to be applied.
249 ApplyCodeSizeHeuristics =
250 L->getHeader()->getParent()->optForSize() && UseLIRCodeSizeHeurs;
251
David L. Jonesd21529f2017-01-23 23:16:46 +0000252 HasMemset = TLI->has(LibFunc_memset);
253 HasMemsetPattern = TLI->has(LibFunc_memset_pattern16);
254 HasMemcpy = TLI->has(LibFunc_memcpy);
Haicheng Wu9d6c9402016-01-04 21:43:14 +0000255
256 if (HasMemset || HasMemsetPattern || HasMemcpy)
257 if (SE->hasLoopInvariantBackedgeTakenCount(L))
258 return runOnCountableLoop();
Chandler Carruthdc298322015-08-13 01:03:26 +0000259
Chandler Carruthd9c60702015-08-13 00:10:03 +0000260 return runOnNoncountableLoop();
261}
262
Shuxin Yang95de7c32012-12-09 03:12:46 +0000263bool LoopIdiomRecognize::runOnCountableLoop() {
264 const SCEV *BECount = SE->getBackedgeTakenCount(CurLoop);
Davide Italiano8ed04462015-05-11 21:02:34 +0000265 assert(!isa<SCEVCouldNotCompute>(BECount) &&
Chandler Carruthbad690e2015-08-12 23:06:37 +0000266 "runOnCountableLoop() called on a loop without a predictable"
267 "backedge-taken count");
Shuxin Yang95de7c32012-12-09 03:12:46 +0000268
269 // If this loop executes exactly one time, then it should be peeled, not
270 // optimized by this pass.
271 if (const SCEVConstant *BECst = dyn_cast<SCEVConstant>(BECount))
Sanjoy Das0de2fec2015-12-17 20:28:46 +0000272 if (BECst->getAPInt() == 0)
Shuxin Yang95de7c32012-12-09 03:12:46 +0000273 return false;
274
Chandler Carruthbad690e2015-08-12 23:06:37 +0000275 SmallVector<BasicBlock *, 8> ExitBlocks;
Shuxin Yang95de7c32012-12-09 03:12:46 +0000276 CurLoop->getUniqueExitBlocks(ExitBlocks);
277
278 DEBUG(dbgs() << "loop-idiom Scanning: F["
Chandler Carruthbad690e2015-08-12 23:06:37 +0000279 << CurLoop->getHeader()->getParent()->getName() << "] Loop %"
280 << CurLoop->getHeader()->getName() << "\n");
Shuxin Yang95de7c32012-12-09 03:12:46 +0000281
282 bool MadeChange = false;
Haicheng Wua95cd1262016-07-06 21:05:40 +0000283
284 // The following transforms hoist stores/memsets into the loop pre-header.
285 // Give up if the loop has instructions may throw.
286 LoopSafetyInfo SafetyInfo;
287 computeLoopSafetyInfo(&SafetyInfo, CurLoop);
Evgeniy Stepanov58ccc092017-04-24 18:25:07 +0000288 if (SafetyInfo.MayThrow)
Haicheng Wua95cd1262016-07-06 21:05:40 +0000289 return MadeChange;
290
Shuxin Yang95de7c32012-12-09 03:12:46 +0000291 // Scan all the blocks in the loop that are not in subloops.
Davide Italiano95a77e82015-05-14 21:52:12 +0000292 for (auto *BB : CurLoop->getBlocks()) {
Shuxin Yang95de7c32012-12-09 03:12:46 +0000293 // Ignore blocks in subloops.
Chandler Carruth18c26692015-08-13 09:27:01 +0000294 if (LI->getLoopFor(BB) != CurLoop)
Shuxin Yang95de7c32012-12-09 03:12:46 +0000295 continue;
296
Davide Italiano80625af2015-05-13 19:51:21 +0000297 MadeChange |= runOnLoopBlock(BB, BECount, ExitBlocks);
Shuxin Yang95de7c32012-12-09 03:12:46 +0000298 }
299 return MadeChange;
300}
301
Chad Rosiera548fe52015-11-12 19:09:16 +0000302static unsigned getStoreSizeInBytes(StoreInst *SI, const DataLayout *DL) {
303 uint64_t SizeInBits = DL->getTypeSizeInBits(SI->getValueOperand()->getType());
304 assert(((SizeInBits & 7) || (SizeInBits >> 32) == 0) &&
305 "Don't overflow unsigned.");
306 return (unsigned)SizeInBits >> 3;
307}
308
Chad Rosier4acff962016-02-12 19:05:27 +0000309static APInt getStoreStride(const SCEVAddRecExpr *StoreEv) {
Chad Rosiera548fe52015-11-12 19:09:16 +0000310 const SCEVConstant *ConstStride = cast<SCEVConstant>(StoreEv->getOperand(1));
Chad Rosier4acff962016-02-12 19:05:27 +0000311 return ConstStride->getAPInt();
Chad Rosiera548fe52015-11-12 19:09:16 +0000312}
313
Chad Rosier94274fb2015-12-21 14:49:32 +0000314/// getMemSetPatternValue - If a strided store of the specified value is safe to
315/// turn into a memset_pattern16, return a ConstantArray of 16 bytes that should
316/// be passed in. Otherwise, return null.
317///
318/// Note that we don't ever attempt to use memset_pattern8 or 4, because these
319/// just replicate their input array and then pass on to memset_pattern16.
320static Constant *getMemSetPatternValue(Value *V, const DataLayout *DL) {
321 // If the value isn't a constant, we can't promote it to being in a constant
322 // array. We could theoretically do a store to an alloca or something, but
323 // that doesn't seem worthwhile.
324 Constant *C = dyn_cast<Constant>(V);
325 if (!C)
326 return nullptr;
327
328 // Only handle simple values that are a power of two bytes in size.
329 uint64_t Size = DL->getTypeSizeInBits(V->getType());
330 if (Size == 0 || (Size & 7) || (Size & (Size - 1)))
331 return nullptr;
332
333 // Don't care enough about darwin/ppc to implement this.
334 if (DL->isBigEndian())
335 return nullptr;
336
337 // Convert to size in bytes.
338 Size /= 8;
339
340 // TODO: If CI is larger than 16-bytes, we can try slicing it in half to see
341 // if the top and bottom are the same (e.g. for vectors and large integers).
342 if (Size > 16)
343 return nullptr;
344
345 // If the constant is exactly 16 bytes, just use it.
346 if (Size == 16)
347 return C;
348
349 // Otherwise, we'll use an array of the constants.
350 unsigned ArraySize = 16 / Size;
351 ArrayType *AT = ArrayType::get(V->getType(), ArraySize);
352 return ConstantArray::get(AT, std::vector<Constant *>(ArraySize, C));
353}
354
Anna Thomasae3f752f2017-05-19 18:00:30 +0000355LoopIdiomRecognize::LegalStoreKind
356LoopIdiomRecognize::isLegalStore(StoreInst *SI) {
Anna Thomasb2a212c2017-06-06 16:45:25 +0000357
Chad Rosier869962f2015-12-01 14:26:35 +0000358 // Don't touch volatile stores.
Anna Thomasb2a212c2017-06-06 16:45:25 +0000359 if (SI->isVolatile())
360 return LegalStoreKind::None;
361 // We only want simple or unordered-atomic stores.
362 if (!SI->isUnordered())
Anna Thomas5ecb8f72017-05-19 17:05:36 +0000363 return LegalStoreKind::None;
Chad Rosier869962f2015-12-01 14:26:35 +0000364
Sanjoy Das206f65c2017-04-24 20:12:10 +0000365 // Don't convert stores of non-integral pointer types to memsets (which stores
366 // integers).
367 if (DL->isNonIntegralPointerType(SI->getValueOperand()->getType()))
Anna Thomas5ecb8f72017-05-19 17:05:36 +0000368 return LegalStoreKind::None;
Sanjoy Das206f65c2017-04-24 20:12:10 +0000369
Haicheng Wu57e1a3e2016-02-17 21:00:06 +0000370 // Avoid merging nontemporal stores.
371 if (SI->getMetadata(LLVMContext::MD_nontemporal))
Anna Thomas5ecb8f72017-05-19 17:05:36 +0000372 return LegalStoreKind::None;
Haicheng Wu57e1a3e2016-02-17 21:00:06 +0000373
Chad Rosiera548fe52015-11-12 19:09:16 +0000374 Value *StoredVal = SI->getValueOperand();
375 Value *StorePtr = SI->getPointerOperand();
376
377 // Reject stores that are so large that they overflow an unsigned.
378 uint64_t SizeInBits = DL->getTypeSizeInBits(StoredVal->getType());
379 if ((SizeInBits & 7) || (SizeInBits >> 32) != 0)
Anna Thomas5ecb8f72017-05-19 17:05:36 +0000380 return LegalStoreKind::None;
Chad Rosiera548fe52015-11-12 19:09:16 +0000381
382 // See if the pointer expression is an AddRec like {base,+,1} on the current
383 // loop, which indicates a strided store. If we have something else, it's a
384 // random store we can't handle.
385 const SCEVAddRecExpr *StoreEv =
386 dyn_cast<SCEVAddRecExpr>(SE->getSCEV(StorePtr));
387 if (!StoreEv || StoreEv->getLoop() != CurLoop || !StoreEv->isAffine())
Anna Thomas5ecb8f72017-05-19 17:05:36 +0000388 return LegalStoreKind::None;
Chad Rosiera548fe52015-11-12 19:09:16 +0000389
390 // Check to see if we have a constant stride.
391 if (!isa<SCEVConstant>(StoreEv->getOperand(1)))
Anna Thomas5ecb8f72017-05-19 17:05:36 +0000392 return LegalStoreKind::None;
Chad Rosiera548fe52015-11-12 19:09:16 +0000393
Haicheng Wu9d6c9402016-01-04 21:43:14 +0000394 // See if the store can be turned into a memset.
395
396 // If the stored value is a byte-wise value (like i32 -1), then it may be
397 // turned into a memset of i8 -1, assuming that all the consecutive bytes
398 // are stored. A store of i32 0x01020304 can never be turned into a memset,
399 // but it can be turned into memset_pattern if the target supports it.
400 Value *SplatValue = isBytewiseValue(StoredVal);
401 Constant *PatternValue = nullptr;
402
Anna Thomasb2a212c2017-06-06 16:45:25 +0000403 // Note: memset and memset_pattern on unordered-atomic is yet not supported
404 bool UnorderedAtomic = SI->isUnordered() && !SI->isSimple();
405
Haicheng Wu9d6c9402016-01-04 21:43:14 +0000406 // If we're allowed to form a memset, and the stored value would be
407 // acceptable for memset, use it.
Anna Thomasb2a212c2017-06-06 16:45:25 +0000408 if (!UnorderedAtomic && HasMemset && SplatValue &&
Haicheng Wu9d6c9402016-01-04 21:43:14 +0000409 // Verify that the stored value is loop invariant. If not, we can't
410 // promote the memset.
411 CurLoop->isLoopInvariant(SplatValue)) {
412 // It looks like we can use SplatValue.
Anna Thomas5ecb8f72017-05-19 17:05:36 +0000413 return LegalStoreKind::Memset;
Anna Thomasb2a212c2017-06-06 16:45:25 +0000414 } else if (!UnorderedAtomic && HasMemsetPattern &&
Haicheng Wu9d6c9402016-01-04 21:43:14 +0000415 // Don't create memset_pattern16s with address spaces.
416 StorePtr->getType()->getPointerAddressSpace() == 0 &&
417 (PatternValue = getMemSetPatternValue(StoredVal, DL))) {
418 // It looks like we can use PatternValue!
Anna Thomas5ecb8f72017-05-19 17:05:36 +0000419 return LegalStoreKind::MemsetPattern;
Haicheng Wu9d6c9402016-01-04 21:43:14 +0000420 }
421
422 // Otherwise, see if the store can be turned into a memcpy.
423 if (HasMemcpy) {
424 // Check to see if the stride matches the size of the store. If so, then we
425 // know that every byte is touched in the loop.
Chad Rosier4acff962016-02-12 19:05:27 +0000426 APInt Stride = getStoreStride(StoreEv);
Haicheng Wu9d6c9402016-01-04 21:43:14 +0000427 unsigned StoreSize = getStoreSizeInBytes(SI, DL);
428 if (StoreSize != Stride && StoreSize != -Stride)
Anna Thomas5ecb8f72017-05-19 17:05:36 +0000429 return LegalStoreKind::None;
Haicheng Wu9d6c9402016-01-04 21:43:14 +0000430
431 // The store must be feeding a non-volatile load.
432 LoadInst *LI = dyn_cast<LoadInst>(SI->getValueOperand());
Anna Thomasb2a212c2017-06-06 16:45:25 +0000433
434 // Only allow non-volatile loads
435 if (!LI || LI->isVolatile())
436 return LegalStoreKind::None;
437 // Only allow simple or unordered-atomic loads
438 if (!LI->isUnordered())
Anna Thomas5ecb8f72017-05-19 17:05:36 +0000439 return LegalStoreKind::None;
Haicheng Wu9d6c9402016-01-04 21:43:14 +0000440
441 // See if the pointer expression is an AddRec like {base,+,1} on the current
442 // loop, which indicates a strided load. If we have something else, it's a
443 // random load we can't handle.
444 const SCEVAddRecExpr *LoadEv =
445 dyn_cast<SCEVAddRecExpr>(SE->getSCEV(LI->getPointerOperand()));
446 if (!LoadEv || LoadEv->getLoop() != CurLoop || !LoadEv->isAffine())
Anna Thomas5ecb8f72017-05-19 17:05:36 +0000447 return LegalStoreKind::None;
Haicheng Wu9d6c9402016-01-04 21:43:14 +0000448
449 // The store and load must share the same stride.
450 if (StoreEv->getOperand(1) != LoadEv->getOperand(1))
Anna Thomas5ecb8f72017-05-19 17:05:36 +0000451 return LegalStoreKind::None;
Haicheng Wu9d6c9402016-01-04 21:43:14 +0000452
453 // Success. This store can be converted into a memcpy.
Anna Thomasb2a212c2017-06-06 16:45:25 +0000454 UnorderedAtomic = UnorderedAtomic || LI->isAtomic();
455 return UnorderedAtomic ? LegalStoreKind::UnorderedAtomicMemcpy
456 : LegalStoreKind::Memcpy;
Haicheng Wu9d6c9402016-01-04 21:43:14 +0000457 }
458 // This store can't be transformed into a memset/memcpy.
Anna Thomas5ecb8f72017-05-19 17:05:36 +0000459 return LegalStoreKind::None;
Chad Rosiera548fe52015-11-12 19:09:16 +0000460}
461
Chad Rosiercc9030b2015-11-11 23:00:59 +0000462void LoopIdiomRecognize::collectStores(BasicBlock *BB) {
Haicheng Wu9d6c9402016-01-04 21:43:14 +0000463 StoreRefsForMemset.clear();
Haicheng Wuf1c00a22016-01-26 02:27:47 +0000464 StoreRefsForMemsetPattern.clear();
Haicheng Wu9d6c9402016-01-04 21:43:14 +0000465 StoreRefsForMemcpy.clear();
Chad Rosiercc9030b2015-11-11 23:00:59 +0000466 for (Instruction &I : *BB) {
467 StoreInst *SI = dyn_cast<StoreInst>(&I);
468 if (!SI)
469 continue;
470
Chad Rosiera548fe52015-11-12 19:09:16 +0000471 // Make sure this is a strided store with a constant stride.
Anna Thomas5ecb8f72017-05-19 17:05:36 +0000472 switch (isLegalStore(SI)) {
473 case LegalStoreKind::None:
474 // Nothing to do
475 break;
476 case LegalStoreKind::Memset: {
Haicheng Wuf1c00a22016-01-26 02:27:47 +0000477 // Find the base pointer.
478 Value *Ptr = GetUnderlyingObject(SI->getPointerOperand(), *DL);
479 StoreRefsForMemset[Ptr].push_back(SI);
Anna Thomas5ecb8f72017-05-19 17:05:36 +0000480 } break;
481 case LegalStoreKind::MemsetPattern: {
Haicheng Wuf1c00a22016-01-26 02:27:47 +0000482 // Find the base pointer.
483 Value *Ptr = GetUnderlyingObject(SI->getPointerOperand(), *DL);
484 StoreRefsForMemsetPattern[Ptr].push_back(SI);
Anna Thomas5ecb8f72017-05-19 17:05:36 +0000485 } break;
486 case LegalStoreKind::Memcpy:
Anna Thomasb2a212c2017-06-06 16:45:25 +0000487 case LegalStoreKind::UnorderedAtomicMemcpy:
Haicheng Wu9d6c9402016-01-04 21:43:14 +0000488 StoreRefsForMemcpy.push_back(SI);
Anna Thomas5ecb8f72017-05-19 17:05:36 +0000489 break;
490 default:
491 assert(false && "unhandled return value");
492 break;
493 }
Chad Rosiercc9030b2015-11-11 23:00:59 +0000494 }
495}
496
Chris Lattner8455b6e2011-01-02 19:01:03 +0000497/// runOnLoopBlock - Process the specified block, which lives in a counted loop
498/// with the specified backedge count. This block is known to be in the current
499/// loop and not in any subloops.
Chandler Carruthbad690e2015-08-12 23:06:37 +0000500bool LoopIdiomRecognize::runOnLoopBlock(
501 BasicBlock *BB, const SCEV *BECount,
502 SmallVectorImpl<BasicBlock *> &ExitBlocks) {
Chris Lattner8455b6e2011-01-02 19:01:03 +0000503 // We can only promote stores in this block if they are unconditionally
504 // executed in the loop. For a block to be unconditionally executed, it has
505 // to dominate all the exit blocks of the loop. Verify this now.
506 for (unsigned i = 0, e = ExitBlocks.size(); i != e; ++i)
507 if (!DT->dominates(BB, ExitBlocks[i]))
508 return false;
Andrew Trick328b2232011-03-14 16:48:10 +0000509
Chris Lattner7c5f9c32010-12-26 20:45:45 +0000510 bool MadeChange = false;
Chad Rosiercc9030b2015-11-11 23:00:59 +0000511 // Look for store instructions, which may be optimized to memset/memcpy.
512 collectStores(BB);
Haicheng Wu9d6c9402016-01-04 21:43:14 +0000513
Haicheng Wuf1c00a22016-01-26 02:27:47 +0000514 // Look for a single store or sets of stores with a common base, which can be
515 // optimized into a memset (memset_pattern). The latter most commonly happens
516 // with structs and handunrolled loops.
517 for (auto &SL : StoreRefsForMemset)
518 MadeChange |= processLoopStores(SL.second, BECount, true);
519
520 for (auto &SL : StoreRefsForMemsetPattern)
521 MadeChange |= processLoopStores(SL.second, BECount, false);
Chad Rosiercc9030b2015-11-11 23:00:59 +0000522
Haicheng Wu9d6c9402016-01-04 21:43:14 +0000523 // Optimize the store into a memcpy, if it feeds an similarly strided load.
524 for (auto &SI : StoreRefsForMemcpy)
525 MadeChange |= processLoopStoreOfLoopLoad(SI, BECount);
526
Chandler Carruthbad690e2015-08-12 23:06:37 +0000527 for (BasicBlock::iterator I = BB->begin(), E = BB->end(); I != E;) {
Duncan P. N. Exon Smithbe4d8cb2015-10-13 19:26:58 +0000528 Instruction *Inst = &*I++;
Chris Lattner86438102011-01-04 07:46:33 +0000529 // Look for memset instructions, which may be optimized to a larger memset.
Chandler Carruthbad690e2015-08-12 23:06:37 +0000530 if (MemSetInst *MSI = dyn_cast<MemSetInst>(Inst)) {
Sanjoy Dase6bca0e2017-05-01 17:07:49 +0000531 WeakTrackingVH InstPtr(&*I);
Chandler Carruthbad690e2015-08-12 23:06:37 +0000532 if (!processLoopMemSet(MSI, BECount))
533 continue;
Chris Lattner86438102011-01-04 07:46:33 +0000534 MadeChange = true;
Andrew Trick328b2232011-03-14 16:48:10 +0000535
Chris Lattner86438102011-01-04 07:46:33 +0000536 // If processing the memset invalidated our iterator, start over from the
537 // top of the block.
Craig Topperf40110f2014-04-25 05:29:35 +0000538 if (!InstPtr)
Chris Lattner86438102011-01-04 07:46:33 +0000539 I = BB->begin();
540 continue;
541 }
Chris Lattner7c5f9c32010-12-26 20:45:45 +0000542 }
Andrew Trick328b2232011-03-14 16:48:10 +0000543
Chris Lattner7c5f9c32010-12-26 20:45:45 +0000544 return MadeChange;
Chris Lattner81ae3f22010-12-26 19:39:38 +0000545}
546
Haicheng Wuf1c00a22016-01-26 02:27:47 +0000547/// processLoopStores - See if this store(s) can be promoted to a memset.
548bool LoopIdiomRecognize::processLoopStores(SmallVectorImpl<StoreInst *> &SL,
549 const SCEV *BECount,
550 bool ForMemset) {
551 // Try to find consecutive stores that can be transformed into memsets.
552 SetVector<StoreInst *> Heads, Tails;
553 SmallDenseMap<StoreInst *, StoreInst *> ConsecutiveChain;
Chris Lattner86438102011-01-04 07:46:33 +0000554
Haicheng Wuf1c00a22016-01-26 02:27:47 +0000555 // Do a quadratic search on all of the given stores and find
556 // all of the pairs of stores that follow each other.
557 SmallVector<unsigned, 16> IndexQueue;
558 for (unsigned i = 0, e = SL.size(); i < e; ++i) {
559 assert(SL[i]->isSimple() && "Expected only non-volatile stores.");
Andrew Trick328b2232011-03-14 16:48:10 +0000560
Haicheng Wuf1c00a22016-01-26 02:27:47 +0000561 Value *FirstStoredVal = SL[i]->getValueOperand();
562 Value *FirstStorePtr = SL[i]->getPointerOperand();
563 const SCEVAddRecExpr *FirstStoreEv =
564 cast<SCEVAddRecExpr>(SE->getSCEV(FirstStorePtr));
Chad Rosier4acff962016-02-12 19:05:27 +0000565 APInt FirstStride = getStoreStride(FirstStoreEv);
Haicheng Wuf1c00a22016-01-26 02:27:47 +0000566 unsigned FirstStoreSize = getStoreSizeInBytes(SL[i], DL);
Chad Rosier79676142015-10-28 14:38:49 +0000567
Haicheng Wuf1c00a22016-01-26 02:27:47 +0000568 // See if we can optimize just this store in isolation.
Chad Rosier4acff962016-02-12 19:05:27 +0000569 if (FirstStride == FirstStoreSize || -FirstStride == FirstStoreSize) {
Haicheng Wuf1c00a22016-01-26 02:27:47 +0000570 Heads.insert(SL[i]);
571 continue;
572 }
Chris Lattner0f4a6402011-02-19 19:31:39 +0000573
Haicheng Wuf1c00a22016-01-26 02:27:47 +0000574 Value *FirstSplatValue = nullptr;
575 Constant *FirstPatternValue = nullptr;
576
577 if (ForMemset)
578 FirstSplatValue = isBytewiseValue(FirstStoredVal);
579 else
580 FirstPatternValue = getMemSetPatternValue(FirstStoredVal, DL);
581
582 assert((FirstSplatValue || FirstPatternValue) &&
583 "Expected either splat value or pattern value.");
584
585 IndexQueue.clear();
586 // If a store has multiple consecutive store candidates, search Stores
587 // array according to the sequence: from i+1 to e, then from i-1 to 0.
588 // This is because usually pairing with immediate succeeding or preceding
589 // candidate create the best chance to find memset opportunity.
590 unsigned j = 0;
591 for (j = i + 1; j < e; ++j)
592 IndexQueue.push_back(j);
593 for (j = i; j > 0; --j)
594 IndexQueue.push_back(j - 1);
595
596 for (auto &k : IndexQueue) {
597 assert(SL[k]->isSimple() && "Expected only non-volatile stores.");
598 Value *SecondStorePtr = SL[k]->getPointerOperand();
599 const SCEVAddRecExpr *SecondStoreEv =
600 cast<SCEVAddRecExpr>(SE->getSCEV(SecondStorePtr));
Chad Rosier4acff962016-02-12 19:05:27 +0000601 APInt SecondStride = getStoreStride(SecondStoreEv);
Haicheng Wuf1c00a22016-01-26 02:27:47 +0000602
603 if (FirstStride != SecondStride)
604 continue;
605
606 Value *SecondStoredVal = SL[k]->getValueOperand();
607 Value *SecondSplatValue = nullptr;
608 Constant *SecondPatternValue = nullptr;
609
610 if (ForMemset)
611 SecondSplatValue = isBytewiseValue(SecondStoredVal);
612 else
613 SecondPatternValue = getMemSetPatternValue(SecondStoredVal, DL);
614
615 assert((SecondSplatValue || SecondPatternValue) &&
616 "Expected either splat value or pattern value.");
617
618 if (isConsecutiveAccess(SL[i], SL[k], *DL, *SE, false)) {
619 if (ForMemset) {
620 if (FirstSplatValue != SecondSplatValue)
621 continue;
622 } else {
623 if (FirstPatternValue != SecondPatternValue)
624 continue;
625 }
626 Tails.insert(SL[k]);
627 Heads.insert(SL[i]);
628 ConsecutiveChain[SL[i]] = SL[k];
629 break;
630 }
631 }
632 }
633
634 // We may run into multiple chains that merge into a single chain. We mark the
635 // stores that we transformed so that we don't visit the same store twice.
636 SmallPtrSet<Value *, 16> TransformedStores;
637 bool Changed = false;
638
639 // For stores that start but don't end a link in the chain:
640 for (SetVector<StoreInst *>::iterator it = Heads.begin(), e = Heads.end();
641 it != e; ++it) {
642 if (Tails.count(*it))
643 continue;
644
645 // We found a store instr that starts a chain. Now follow the chain and try
646 // to transform it.
647 SmallPtrSet<Instruction *, 8> AdjacentStores;
648 StoreInst *I = *it;
649
650 StoreInst *HeadStore = I;
651 unsigned StoreSize = 0;
652
653 // Collect the chain into a list.
654 while (Tails.count(I) || Heads.count(I)) {
655 if (TransformedStores.count(I))
656 break;
657 AdjacentStores.insert(I);
658
659 StoreSize += getStoreSizeInBytes(I, DL);
660 // Move to the next value in the chain.
661 I = ConsecutiveChain[I];
662 }
663
664 Value *StoredVal = HeadStore->getValueOperand();
665 Value *StorePtr = HeadStore->getPointerOperand();
666 const SCEVAddRecExpr *StoreEv = cast<SCEVAddRecExpr>(SE->getSCEV(StorePtr));
Chad Rosier4acff962016-02-12 19:05:27 +0000667 APInt Stride = getStoreStride(StoreEv);
Haicheng Wuf1c00a22016-01-26 02:27:47 +0000668
669 // Check to see if the stride matches the size of the stores. If so, then
670 // we know that every byte is touched in the loop.
671 if (StoreSize != Stride && StoreSize != -Stride)
672 continue;
673
674 bool NegStride = StoreSize == -Stride;
675
676 if (processLoopStridedStore(StorePtr, StoreSize, HeadStore->getAlignment(),
677 StoredVal, HeadStore, AdjacentStores, StoreEv,
678 BECount, NegStride)) {
679 TransformedStores.insert(AdjacentStores.begin(), AdjacentStores.end());
680 Changed = true;
681 }
682 }
683
684 return Changed;
Chris Lattner81ae3f22010-12-26 19:39:38 +0000685}
686
Chris Lattner86438102011-01-04 07:46:33 +0000687/// processLoopMemSet - See if this memset can be promoted to a large memset.
Chandler Carruthbad690e2015-08-12 23:06:37 +0000688bool LoopIdiomRecognize::processLoopMemSet(MemSetInst *MSI,
689 const SCEV *BECount) {
Chris Lattner86438102011-01-04 07:46:33 +0000690 // We can only handle non-volatile memsets with a constant size.
Chandler Carruthbad690e2015-08-12 23:06:37 +0000691 if (MSI->isVolatile() || !isa<ConstantInt>(MSI->getLength()))
692 return false;
Chris Lattner86438102011-01-04 07:46:33 +0000693
Chris Lattnere6b261f2011-02-18 22:22:15 +0000694 // If we're not allowed to hack on memset, we fail.
Ahmed Bougacha7f971932016-04-27 19:04:46 +0000695 if (!HasMemset)
Chris Lattnere6b261f2011-02-18 22:22:15 +0000696 return false;
Andrew Trick328b2232011-03-14 16:48:10 +0000697
Chris Lattner86438102011-01-04 07:46:33 +0000698 Value *Pointer = MSI->getDest();
Andrew Trick328b2232011-03-14 16:48:10 +0000699
Chris Lattner86438102011-01-04 07:46:33 +0000700 // See if the pointer expression is an AddRec like {base,+,1} on the current
701 // loop, which indicates a strided store. If we have something else, it's a
702 // random store we can't handle.
703 const SCEVAddRecExpr *Ev = dyn_cast<SCEVAddRecExpr>(SE->getSCEV(Pointer));
Craig Topperf40110f2014-04-25 05:29:35 +0000704 if (!Ev || Ev->getLoop() != CurLoop || !Ev->isAffine())
Chris Lattner86438102011-01-04 07:46:33 +0000705 return false;
706
707 // Reject memsets that are so large that they overflow an unsigned.
708 uint64_t SizeInBytes = cast<ConstantInt>(MSI->getLength())->getZExtValue();
709 if ((SizeInBytes >> 32) != 0)
710 return false;
Andrew Trick328b2232011-03-14 16:48:10 +0000711
Chris Lattner86438102011-01-04 07:46:33 +0000712 // Check to see if the stride matches the size of the memset. If so, then we
713 // know that every byte is touched in the loop.
Chad Rosier81362a82016-02-12 21:03:23 +0000714 const SCEVConstant *ConstStride = dyn_cast<SCEVConstant>(Ev->getOperand(1));
715 if (!ConstStride)
716 return false;
Andrew Trick328b2232011-03-14 16:48:10 +0000717
Chad Rosier81362a82016-02-12 21:03:23 +0000718 APInt Stride = ConstStride->getAPInt();
719 if (SizeInBytes != Stride && SizeInBytes != -Stride)
Chris Lattner86438102011-01-04 07:46:33 +0000720 return false;
Andrew Trick328b2232011-03-14 16:48:10 +0000721
Haicheng Wu9d6c9402016-01-04 21:43:14 +0000722 // Verify that the memset value is loop invariant. If not, we can't promote
723 // the memset.
724 Value *SplatValue = MSI->getValue();
725 if (!SplatValue || !CurLoop->isLoopInvariant(SplatValue))
726 return false;
727
Haicheng Wuf1c00a22016-01-26 02:27:47 +0000728 SmallPtrSet<Instruction *, 1> MSIs;
729 MSIs.insert(MSI);
Chad Rosier81362a82016-02-12 21:03:23 +0000730 bool NegStride = SizeInBytes == -Stride;
Chris Lattner0f4a6402011-02-19 19:31:39 +0000731 return processLoopStridedStore(Pointer, (unsigned)SizeInBytes,
Haicheng Wuf1c00a22016-01-26 02:27:47 +0000732 MSI->getAlignment(), SplatValue, MSI, MSIs, Ev,
Andrew Kaylor7cdf01e2016-08-11 18:28:33 +0000733 BECount, NegStride, /*IsLoopMemset=*/true);
Chris Lattner86438102011-01-04 07:46:33 +0000734}
735
Chandler Carruth099f5cb02012-11-02 08:33:25 +0000736/// mayLoopAccessLocation - Return true if the specified loop might access the
737/// specified pointer location, which is a loop-strided access. The 'Access'
738/// argument specifies what the verboten forms of access are (read or write).
Haicheng Wuf1c00a22016-01-26 02:27:47 +0000739static bool
740mayLoopAccessLocation(Value *Ptr, ModRefInfo Access, Loop *L,
741 const SCEV *BECount, unsigned StoreSize,
742 AliasAnalysis &AA,
743 SmallPtrSetImpl<Instruction *> &IgnoredStores) {
Chandler Carruth099f5cb02012-11-02 08:33:25 +0000744 // Get the location that may be stored across the loop. Since the access is
745 // strided positively through memory, we say that the modified location starts
746 // at the pointer and has infinite size.
Chandler Carruthecbd1682015-06-17 07:21:38 +0000747 uint64_t AccessSize = MemoryLocation::UnknownSize;
Chandler Carruth099f5cb02012-11-02 08:33:25 +0000748
749 // If the loop iterates a fixed number of times, we can refine the access size
750 // to be exactly the size of the memset, which is (BECount+1)*StoreSize
751 if (const SCEVConstant *BECst = dyn_cast<SCEVConstant>(BECount))
Chandler Carruthbad690e2015-08-12 23:06:37 +0000752 AccessSize = (BECst->getValue()->getZExtValue() + 1) * StoreSize;
Chandler Carruth099f5cb02012-11-02 08:33:25 +0000753
754 // TODO: For this to be really effective, we have to dive into the pointer
755 // operand in the store. Store to &A[i] of 100 will always return may alias
756 // with store of &A[100], we need to StoreLoc to be "A" with size of 100,
757 // which will then no-alias a store to &A[100].
Chandler Carruthac80dc72015-06-17 07:18:54 +0000758 MemoryLocation StoreLoc(Ptr, AccessSize);
Chandler Carruth099f5cb02012-11-02 08:33:25 +0000759
760 for (Loop::block_iterator BI = L->block_begin(), E = L->block_end(); BI != E;
761 ++BI)
Benjamin Kramer135f7352016-06-26 12:28:59 +0000762 for (Instruction &I : **BI)
763 if (IgnoredStores.count(&I) == 0 &&
764 (AA.getModRefInfo(&I, StoreLoc) & Access))
Chandler Carruth099f5cb02012-11-02 08:33:25 +0000765 return true;
766
767 return false;
768}
769
Chad Rosiered0c7d12015-11-13 19:11:07 +0000770// If we have a negative stride, Start refers to the end of the memory location
771// we're trying to memset. Therefore, we need to recompute the base pointer,
772// which is just Start - BECount*Size.
773static const SCEV *getStartForNegStride(const SCEV *Start, const SCEV *BECount,
774 Type *IntPtr, unsigned StoreSize,
775 ScalarEvolution *SE) {
776 const SCEV *Index = SE->getTruncateOrZeroExtend(BECount, IntPtr);
777 if (StoreSize != 1)
778 Index = SE->getMulExpr(Index, SE->getConstant(IntPtr, StoreSize),
779 SCEV::FlagNUW);
780 return SE->getMinusSCEV(Start, Index);
781}
782
Chris Lattner0f4a6402011-02-19 19:31:39 +0000783/// processLoopStridedStore - We see a strided store of some value. If we can
784/// transform this into a memset or memset_pattern in the loop preheader, do so.
Chandler Carruthbad690e2015-08-12 23:06:37 +0000785bool LoopIdiomRecognize::processLoopStridedStore(
786 Value *DestPtr, unsigned StoreSize, unsigned StoreAlignment,
Haicheng Wuf1c00a22016-01-26 02:27:47 +0000787 Value *StoredVal, Instruction *TheStore,
788 SmallPtrSetImpl<Instruction *> &Stores, const SCEVAddRecExpr *Ev,
Andrew Kaylor7cdf01e2016-08-11 18:28:33 +0000789 const SCEV *BECount, bool NegStride, bool IsLoopMemset) {
Chris Lattner0f4a6402011-02-19 19:31:39 +0000790 Value *SplatValue = isBytewiseValue(StoredVal);
Craig Topperf40110f2014-04-25 05:29:35 +0000791 Constant *PatternValue = nullptr;
Matt Arsenault009faed2013-09-11 05:09:42 +0000792
Haicheng Wu9d6c9402016-01-04 21:43:14 +0000793 if (!SplatValue)
794 PatternValue = getMemSetPatternValue(StoredVal, DL);
795
796 assert((SplatValue || PatternValue) &&
797 "Expected either splat value or pattern value.");
Andrew Trick328b2232011-03-14 16:48:10 +0000798
Chris Lattnerc4ca7ab2011-05-22 17:39:56 +0000799 // The trip count of the loop and the base pointer of the addrec SCEV is
800 // guaranteed to be loop invariant, which means that it should dominate the
801 // header. This allows us to insert code for it in the preheader.
Haicheng Wu9d6c9402016-01-04 21:43:14 +0000802 unsigned DestAS = DestPtr->getType()->getPointerAddressSpace();
Chris Lattnerc4ca7ab2011-05-22 17:39:56 +0000803 BasicBlock *Preheader = CurLoop->getLoopPreheader();
804 IRBuilder<> Builder(Preheader->getTerminator());
Chad Rosier43f9b482015-11-06 16:33:57 +0000805 SCEVExpander Expander(*SE, *DL, "loop-idiom");
Andrew Trick60ab3ef2011-06-28 05:04:16 +0000806
Matt Arsenault009faed2013-09-11 05:09:42 +0000807 Type *DestInt8PtrTy = Builder.getInt8PtrTy(DestAS);
Chad Rosier43f9b482015-11-06 16:33:57 +0000808 Type *IntPtr = Builder.getIntPtrTy(*DL, DestAS);
Chad Rosier79676142015-10-28 14:38:49 +0000809
810 const SCEV *Start = Ev->getStart();
Chad Rosier2fa50a72015-11-13 19:13:40 +0000811 // Handle negative strided loops.
Chad Rosiered0c7d12015-11-13 19:11:07 +0000812 if (NegStride)
813 Start = getStartForNegStride(Start, BECount, IntPtr, StoreSize, SE);
Matt Arsenault009faed2013-09-11 05:09:42 +0000814
Aditya Kumar1c42d132017-05-05 14:49:45 +0000815 // TODO: ideally we should still be able to generate memset if SCEV expander
816 // is taught to generate the dependencies at the latest point.
817 if (!isSafeToExpand(Start, *SE))
818 return false;
819
Chris Lattner29e14ed2010-12-26 23:42:51 +0000820 // Okay, we have a strided store "p[i]" of a splattable value. We can turn
Benjamin Kramerf77f2242012-10-21 19:31:16 +0000821 // this into a memset in the loop preheader now if we want. However, this
822 // would be unsafe to do if there is anything else in the loop that may read
Chandler Carruth7ec50852012-11-01 08:07:29 +0000823 // or write to the aliased location. Check for any overlap by generating the
824 // base pointer and checking the region.
Chad Rosier79676142015-10-28 14:38:49 +0000825 Value *BasePtr =
826 Expander.expandCodeFor(Start, DestInt8PtrTy, Preheader->getTerminator());
Chandler Carruth194f59c2015-07-22 23:15:57 +0000827 if (mayLoopAccessLocation(BasePtr, MRI_ModRef, CurLoop, BECount, StoreSize,
Haicheng Wuf1c00a22016-01-26 02:27:47 +0000828 *AA, Stores)) {
Chandler Carruth099f5cb02012-11-02 08:33:25 +0000829 Expander.clear();
830 // If we generated new code for the base pointer, clean up.
Benjamin Kramerf094d772015-02-07 21:37:08 +0000831 RecursivelyDeleteTriviallyDeadInstructions(BasePtr, TLI);
Chandler Carruth099f5cb02012-11-02 08:33:25 +0000832 return false;
833 }
834
Andrew Kaylor7cdf01e2016-08-11 18:28:33 +0000835 if (avoidLIRForMultiBlockLoop(/*IsMemset=*/true, IsLoopMemset))
836 return false;
837
Chris Lattnerc4ca7ab2011-05-22 17:39:56 +0000838 // Okay, everything looks good, insert the memset.
839
Chris Lattner29e14ed2010-12-26 23:42:51 +0000840 // The # stored bytes is (BECount+1)*Size. Expand the trip count out to
841 // pointer size if it isn't already.
Chris Lattner0ba473c2011-01-04 00:06:55 +0000842 BECount = SE->getTruncateOrZeroExtend(BECount, IntPtr);
Andrew Trick328b2232011-03-14 16:48:10 +0000843
Chandler Carruthbad690e2015-08-12 23:06:37 +0000844 const SCEV *NumBytesS =
Sanjoy Das2aacc0e2015-09-23 01:59:04 +0000845 SE->getAddExpr(BECount, SE->getOne(IntPtr), SCEV::FlagNUW);
Matt Arsenault5df49bd2013-09-11 05:09:35 +0000846 if (StoreSize != 1) {
Chris Lattner29e14ed2010-12-26 23:42:51 +0000847 NumBytesS = SE->getMulExpr(NumBytesS, SE->getConstant(IntPtr, StoreSize),
Andrew Trick8b55b732011-03-14 16:50:06 +0000848 SCEV::FlagNUW);
Matt Arsenault5df49bd2013-09-11 05:09:35 +0000849 }
Andrew Trick328b2232011-03-14 16:48:10 +0000850
Aditya Kumar1c42d132017-05-05 14:49:45 +0000851 // TODO: ideally we should still be able to generate memset if SCEV expander
852 // is taught to generate the dependencies at the latest point.
853 if (!isSafeToExpand(NumBytesS, *SE))
854 return false;
855
Andrew Trick328b2232011-03-14 16:48:10 +0000856 Value *NumBytes =
Chandler Carruthbad690e2015-08-12 23:06:37 +0000857 Expander.expandCodeFor(NumBytesS, IntPtr, Preheader->getTerminator());
Andrew Trick328b2232011-03-14 16:48:10 +0000858
Devang Pateld00c6282011-03-07 22:43:45 +0000859 CallInst *NewCall;
Matt Arsenault5df49bd2013-09-11 05:09:35 +0000860 if (SplatValue) {
Chandler Carruthbad690e2015-08-12 23:06:37 +0000861 NewCall =
862 Builder.CreateMemSet(BasePtr, SplatValue, NumBytes, StoreAlignment);
Matt Arsenault5df49bd2013-09-11 05:09:35 +0000863 } else {
Matt Arsenault009faed2013-09-11 05:09:42 +0000864 // Everything is emitted in default address space
865 Type *Int8PtrTy = DestInt8PtrTy;
866
Sanjay Patelaf674fb2015-12-14 17:24:23 +0000867 Module *M = TheStore->getModule();
Mehdi Aminidb11fdf2017-04-06 20:23:57 +0000868 Value *MSP =
869 M->getOrInsertFunction("memset_pattern16", Builder.getVoidTy(),
Serge Guelton59a2d7b2017-04-11 15:01:18 +0000870 Int8PtrTy, Int8PtrTy, IntPtr);
Ahmed Bougachaace97c12016-04-27 19:04:50 +0000871 inferLibFuncAttributes(*M->getFunction("memset_pattern16"), *TLI);
Andrew Trick328b2232011-03-14 16:48:10 +0000872
Chris Lattner0f4a6402011-02-19 19:31:39 +0000873 // Otherwise we should form a memset_pattern16. PatternValue is known to be
874 // an constant array of 16-bytes. Plop the value into a mergable global.
875 GlobalVariable *GV = new GlobalVariable(*M, PatternValue->getType(), true,
Benjamin Kramer838752d2015-03-03 00:17:09 +0000876 GlobalValue::PrivateLinkage,
Chris Lattner0f4a6402011-02-19 19:31:39 +0000877 PatternValue, ".memset_pattern");
Peter Collingbourne96efdd62016-06-14 21:01:22 +0000878 GV->setUnnamedAddr(GlobalValue::UnnamedAddr::Global); // Ok to merge these.
Chris Lattner0f4a6402011-02-19 19:31:39 +0000879 GV->setAlignment(16);
Matt Arsenault009faed2013-09-11 05:09:42 +0000880 Value *PatternPtr = ConstantExpr::getBitCast(GV, Int8PtrTy);
David Blaikieff6409d2015-05-18 22:13:54 +0000881 NewCall = Builder.CreateCall(MSP, {BasePtr, PatternPtr, NumBytes});
Chris Lattner0f4a6402011-02-19 19:31:39 +0000882 }
Andrew Trick328b2232011-03-14 16:48:10 +0000883
Chris Lattner29e14ed2010-12-26 23:42:51 +0000884 DEBUG(dbgs() << " Formed memset: " << *NewCall << "\n"
Chris Lattner86438102011-01-04 07:46:33 +0000885 << " from store to: " << *Ev << " at: " << *TheStore << "\n");
Devang Pateld00c6282011-03-07 22:43:45 +0000886 NewCall->setDebugLoc(TheStore->getDebugLoc());
Andrew Trick328b2232011-03-14 16:48:10 +0000887
Chris Lattnerb9fe6852010-12-27 00:03:23 +0000888 // Okay, the memset has been formed. Zap the original store and anything that
889 // feeds into it.
Haicheng Wuf1c00a22016-01-26 02:27:47 +0000890 for (auto *I : Stores)
David Majnemer41ff4fd2016-06-20 16:07:38 +0000891 deleteDeadInstruction(I);
Chris Lattner12f91be2011-01-02 07:36:44 +0000892 ++NumMemSet;
Chris Lattner29e14ed2010-12-26 23:42:51 +0000893 return true;
894}
895
Chad Rosier1cd3da12015-11-19 21:33:07 +0000896/// If the stored value is a strided load in the same loop with the same stride
897/// this may be transformable into a memcpy. This kicks in for stuff like
Xin Tonga41bf702017-05-01 23:08:19 +0000898/// for (i) A[i] = B[i];
Haicheng Wu9d6c9402016-01-04 21:43:14 +0000899bool LoopIdiomRecognize::processLoopStoreOfLoopLoad(StoreInst *SI,
900 const SCEV *BECount) {
Anna Thomasb2a212c2017-06-06 16:45:25 +0000901 assert(SI->isUnordered() && "Expected only non-volatile non-ordered stores.");
Haicheng Wu9d6c9402016-01-04 21:43:14 +0000902
903 Value *StorePtr = SI->getPointerOperand();
904 const SCEVAddRecExpr *StoreEv = cast<SCEVAddRecExpr>(SE->getSCEV(StorePtr));
Chad Rosier4acff962016-02-12 19:05:27 +0000905 APInt Stride = getStoreStride(StoreEv);
Haicheng Wu9d6c9402016-01-04 21:43:14 +0000906 unsigned StoreSize = getStoreSizeInBytes(SI, DL);
907 bool NegStride = StoreSize == -Stride;
Andrew Trick328b2232011-03-14 16:48:10 +0000908
Chad Rosierfddc01f2015-11-19 18:22:21 +0000909 // The store must be feeding a non-volatile load.
Haicheng Wu9d6c9402016-01-04 21:43:14 +0000910 LoadInst *LI = cast<LoadInst>(SI->getValueOperand());
Anna Thomasb2a212c2017-06-06 16:45:25 +0000911 assert(LI->isUnordered() && "Expected only non-volatile non-ordered loads.");
Chad Rosierfddc01f2015-11-19 18:22:21 +0000912
913 // See if the pointer expression is an AddRec like {base,+,1} on the current
914 // loop, which indicates a strided load. If we have something else, it's a
915 // random load we can't handle.
Chad Rosier3ecc8d82015-11-19 18:25:11 +0000916 const SCEVAddRecExpr *LoadEv =
Haicheng Wu9d6c9402016-01-04 21:43:14 +0000917 cast<SCEVAddRecExpr>(SE->getSCEV(LI->getPointerOperand()));
Andrew Trick328b2232011-03-14 16:48:10 +0000918
Chris Lattnerc4ca7ab2011-05-22 17:39:56 +0000919 // The trip count of the loop and the base pointer of the addrec SCEV is
920 // guaranteed to be loop invariant, which means that it should dominate the
921 // header. This allows us to insert code for it in the preheader.
922 BasicBlock *Preheader = CurLoop->getLoopPreheader();
923 IRBuilder<> Builder(Preheader->getTerminator());
Chad Rosier43f9b482015-11-06 16:33:57 +0000924 SCEVExpander Expander(*SE, *DL, "loop-idiom");
Andrew Trick60ab3ef2011-06-28 05:04:16 +0000925
Chad Rosiercc299b62015-11-13 21:51:02 +0000926 const SCEV *StrStart = StoreEv->getStart();
927 unsigned StrAS = SI->getPointerAddressSpace();
928 Type *IntPtrTy = Builder.getIntPtrTy(*DL, StrAS);
929
930 // Handle negative strided loops.
931 if (NegStride)
932 StrStart = getStartForNegStride(StrStart, BECount, IntPtrTy, StoreSize, SE);
933
Chris Lattner85b6d812011-01-02 03:37:56 +0000934 // Okay, we have a strided store "p[i]" of a loaded value. We can turn
Chandler Carruth099f5cb02012-11-02 08:33:25 +0000935 // this into a memcpy in the loop preheader now if we want. However, this
936 // would be unsafe to do if there is anything else in the loop that may read
937 // or write the memory region we're storing to. This includes the load that
938 // feeds the stores. Check for an alias by generating the base address and
939 // checking everything.
Chandler Carruthbad690e2015-08-12 23:06:37 +0000940 Value *StoreBasePtr = Expander.expandCodeFor(
Chad Rosiercc299b62015-11-13 21:51:02 +0000941 StrStart, Builder.getInt8PtrTy(StrAS), Preheader->getTerminator());
Chandler Carruth099f5cb02012-11-02 08:33:25 +0000942
Haicheng Wuf1c00a22016-01-26 02:27:47 +0000943 SmallPtrSet<Instruction *, 1> Stores;
944 Stores.insert(SI);
Chandler Carruth194f59c2015-07-22 23:15:57 +0000945 if (mayLoopAccessLocation(StoreBasePtr, MRI_ModRef, CurLoop, BECount,
Haicheng Wuf1c00a22016-01-26 02:27:47 +0000946 StoreSize, *AA, Stores)) {
Chandler Carruth099f5cb02012-11-02 08:33:25 +0000947 Expander.clear();
948 // If we generated new code for the base pointer, clean up.
Benjamin Kramerf094d772015-02-07 21:37:08 +0000949 RecursivelyDeleteTriviallyDeadInstructions(StoreBasePtr, TLI);
Chandler Carruth099f5cb02012-11-02 08:33:25 +0000950 return false;
951 }
952
Chad Rosiercc299b62015-11-13 21:51:02 +0000953 const SCEV *LdStart = LoadEv->getStart();
954 unsigned LdAS = LI->getPointerAddressSpace();
955
956 // Handle negative strided loops.
957 if (NegStride)
958 LdStart = getStartForNegStride(LdStart, BECount, IntPtrTy, StoreSize, SE);
959
Chandler Carruth099f5cb02012-11-02 08:33:25 +0000960 // For a memcpy, we have to make sure that the input array is not being
961 // mutated by the loop.
Chandler Carruthbad690e2015-08-12 23:06:37 +0000962 Value *LoadBasePtr = Expander.expandCodeFor(
Chad Rosiercc299b62015-11-13 21:51:02 +0000963 LdStart, Builder.getInt8PtrTy(LdAS), Preheader->getTerminator());
Chris Lattnerc4ca7ab2011-05-22 17:39:56 +0000964
Chandler Carruth194f59c2015-07-22 23:15:57 +0000965 if (mayLoopAccessLocation(LoadBasePtr, MRI_Mod, CurLoop, BECount, StoreSize,
Haicheng Wuf1c00a22016-01-26 02:27:47 +0000966 *AA, Stores)) {
Chandler Carruth099f5cb02012-11-02 08:33:25 +0000967 Expander.clear();
968 // If we generated new code for the base pointer, clean up.
Benjamin Kramerf094d772015-02-07 21:37:08 +0000969 RecursivelyDeleteTriviallyDeadInstructions(LoadBasePtr, TLI);
970 RecursivelyDeleteTriviallyDeadInstructions(StoreBasePtr, TLI);
Chandler Carruth099f5cb02012-11-02 08:33:25 +0000971 return false;
972 }
973
Andrew Kaylor7cdf01e2016-08-11 18:28:33 +0000974 if (avoidLIRForMultiBlockLoop())
975 return false;
976
Chris Lattnerc4ca7ab2011-05-22 17:39:56 +0000977 // Okay, everything is safe, we can transform this!
Andrew Trick60ab3ef2011-06-28 05:04:16 +0000978
Chris Lattner85b6d812011-01-02 03:37:56 +0000979 // The # stored bytes is (BECount+1)*Size. Expand the trip count out to
980 // pointer size if it isn't already.
Matt Arsenault009faed2013-09-11 05:09:42 +0000981 BECount = SE->getTruncateOrZeroExtend(BECount, IntPtrTy);
Andrew Trick328b2232011-03-14 16:48:10 +0000982
Chandler Carruthbad690e2015-08-12 23:06:37 +0000983 const SCEV *NumBytesS =
Sanjoy Das2aacc0e2015-09-23 01:59:04 +0000984 SE->getAddExpr(BECount, SE->getOne(IntPtrTy), SCEV::FlagNUW);
Andrew Trick328b2232011-03-14 16:48:10 +0000985
Daniel Neilson3faabbb2017-06-16 14:43:59 +0000986 if (StoreSize != 1)
987 NumBytesS = SE->getMulExpr(NumBytesS, SE->getConstant(IntPtrTy, StoreSize),
988 SCEV::FlagNUW);
989
990 Value *NumBytes =
991 Expander.expandCodeFor(NumBytesS, IntPtrTy, Preheader->getTerminator());
992
Anna Thomasb2a212c2017-06-06 16:45:25 +0000993 unsigned Align = std::min(SI->getAlignment(), LI->getAlignment());
994 CallInst *NewCall = nullptr;
995 // Check whether to generate an unordered atomic memcpy:
996 // If the load or store are atomic, then they must neccessarily be unordered
997 // by previous checks.
Daniel Neilson3faabbb2017-06-16 14:43:59 +0000998 if (!SI->isAtomic() && !LI->isAtomic())
Anna Thomasb2a212c2017-06-06 16:45:25 +0000999 NewCall = Builder.CreateMemCpy(StoreBasePtr, LoadBasePtr, NumBytes, Align);
Daniel Neilson3faabbb2017-06-16 14:43:59 +00001000 else {
Anna Thomasb2a212c2017-06-06 16:45:25 +00001001 // We cannot allow unaligned ops for unordered load/store, so reject
1002 // anything where the alignment isn't at least the element size.
1003 if (Align < StoreSize)
1004 return false;
1005
1006 // If the element.atomic memcpy is not lowered into explicit
1007 // loads/stores later, then it will be lowered into an element-size
1008 // specific lib call. If the lib call doesn't exist for our store size, then
1009 // we shouldn't generate the memcpy.
1010 if (StoreSize > TTI->getAtomicMemIntrinsicMaxElementSize())
1011 return false;
1012
Daniel Neilson3faabbb2017-06-16 14:43:59 +00001013 NewCall = Builder.CreateElementUnorderedAtomicMemCpy(
1014 StoreBasePtr, LoadBasePtr, NumBytes, StoreSize);
Anna Thomasb2a212c2017-06-06 16:45:25 +00001015
Anna Thomasb2a212c2017-06-06 16:45:25 +00001016 // Propagate alignment info onto the pointer args. Note that unordered
1017 // atomic loads/stores are *required* by the spec to have an alignment
1018 // but non-atomic loads/stores may not.
1019 NewCall->addParamAttr(0, Attribute::getWithAlignment(NewCall->getContext(),
1020 SI->getAlignment()));
1021 NewCall->addParamAttr(1, Attribute::getWithAlignment(NewCall->getContext(),
1022 LI->getAlignment()));
1023 }
Devang Patel0daa07e2011-05-04 21:37:05 +00001024 NewCall->setDebugLoc(SI->getDebugLoc());
Andrew Trick328b2232011-03-14 16:48:10 +00001025
Chandler Carruth099f5cb02012-11-02 08:33:25 +00001026 DEBUG(dbgs() << " Formed memcpy: " << *NewCall << "\n"
Chris Lattner85b6d812011-01-02 03:37:56 +00001027 << " from load ptr=" << *LoadEv << " at: " << *LI << "\n"
1028 << " from store ptr=" << *StoreEv << " at: " << *SI << "\n");
Andrew Trick60ab3ef2011-06-28 05:04:16 +00001029
Chad Rosier7f08d802015-10-13 20:59:16 +00001030 // Okay, the memcpy has been formed. Zap the original store and anything that
Chris Lattner85b6d812011-01-02 03:37:56 +00001031 // feeds into it.
David Majnemer41ff4fd2016-06-20 16:07:38 +00001032 deleteDeadInstruction(SI);
Chandler Carruth099f5cb02012-11-02 08:33:25 +00001033 ++NumMemCpy;
Chris Lattner85b6d812011-01-02 03:37:56 +00001034 return true;
1035}
Chandler Carruthd9c60702015-08-13 00:10:03 +00001036
Andrew Kaylor7cdf01e2016-08-11 18:28:33 +00001037// When compiling for codesize we avoid idiom recognition for a multi-block loop
1038// unless it is a loop_memset idiom or a memset/memcpy idiom in a nested loop.
1039//
1040bool LoopIdiomRecognize::avoidLIRForMultiBlockLoop(bool IsMemset,
1041 bool IsLoopMemset) {
1042 if (ApplyCodeSizeHeuristics && CurLoop->getNumBlocks() > 1) {
1043 if (!CurLoop->getParentLoop() && (!IsMemset || !IsLoopMemset)) {
1044 DEBUG(dbgs() << " " << CurLoop->getHeader()->getParent()->getName()
1045 << " : LIR " << (IsMemset ? "Memset" : "Memcpy")
1046 << " avoided: multi-block top-level loop\n");
1047 return true;
1048 }
1049 }
1050
1051 return false;
1052}
1053
Chandler Carruthd9c60702015-08-13 00:10:03 +00001054bool LoopIdiomRecognize::runOnNoncountableLoop() {
Evgeny Stupachenko2fecd382017-05-15 19:08:56 +00001055 return recognizePopcount() || recognizeAndInsertCTLZ();
Chandler Carruthd9c60702015-08-13 00:10:03 +00001056}
Chandler Carruth8219a502015-08-13 00:44:29 +00001057
1058/// Check if the given conditional branch is based on the comparison between
1059/// a variable and zero, and if the variable is non-zero, the control yields to
1060/// the loop entry. If the branch matches the behavior, the variable involved
Xin Tong8b8a6002017-01-05 21:40:08 +00001061/// in the comparison is returned. This function will be called to see if the
Chandler Carruth8219a502015-08-13 00:44:29 +00001062/// precondition and postcondition of the loop are in desirable form.
1063static Value *matchCondition(BranchInst *BI, BasicBlock *LoopEntry) {
1064 if (!BI || !BI->isConditional())
1065 return nullptr;
1066
1067 ICmpInst *Cond = dyn_cast<ICmpInst>(BI->getCondition());
1068 if (!Cond)
1069 return nullptr;
1070
1071 ConstantInt *CmpZero = dyn_cast<ConstantInt>(Cond->getOperand(1));
1072 if (!CmpZero || !CmpZero->isZero())
1073 return nullptr;
1074
1075 ICmpInst::Predicate Pred = Cond->getPredicate();
1076 if ((Pred == ICmpInst::ICMP_NE && BI->getSuccessor(0) == LoopEntry) ||
1077 (Pred == ICmpInst::ICMP_EQ && BI->getSuccessor(1) == LoopEntry))
1078 return Cond->getOperand(0);
1079
1080 return nullptr;
1081}
1082
Davide Italiano4bc91192017-05-23 22:32:56 +00001083// Check if the recurrence variable `VarX` is in the right form to create
1084// the idiom. Returns the value coerced to a PHINode if so.
1085static PHINode *getRecurrenceVar(Value *VarX, Instruction *DefX,
1086 BasicBlock *LoopEntry) {
1087 auto *PhiX = dyn_cast<PHINode>(VarX);
1088 if (PhiX && PhiX->getParent() == LoopEntry &&
1089 (PhiX->getOperand(0) == DefX || PhiX->getOperand(1) == DefX))
1090 return PhiX;
1091 return nullptr;
1092}
1093
Chandler Carruth8219a502015-08-13 00:44:29 +00001094/// Return true iff the idiom is detected in the loop.
1095///
1096/// Additionally:
1097/// 1) \p CntInst is set to the instruction counting the population bit.
1098/// 2) \p CntPhi is set to the corresponding phi node.
1099/// 3) \p Var is set to the value whose population bits are being counted.
1100///
1101/// The core idiom we are trying to detect is:
1102/// \code
1103/// if (x0 != 0)
1104/// goto loop-exit // the precondition of the loop
1105/// cnt0 = init-val;
1106/// do {
1107/// x1 = phi (x0, x2);
1108/// cnt1 = phi(cnt0, cnt2);
1109///
1110/// cnt2 = cnt1 + 1;
1111/// ...
1112/// x2 = x1 & (x1 - 1);
1113/// ...
1114/// } while(x != 0);
1115///
1116/// loop-exit:
1117/// \endcode
1118static bool detectPopcountIdiom(Loop *CurLoop, BasicBlock *PreCondBB,
1119 Instruction *&CntInst, PHINode *&CntPhi,
1120 Value *&Var) {
1121 // step 1: Check to see if the look-back branch match this pattern:
1122 // "if (a!=0) goto loop-entry".
1123 BasicBlock *LoopEntry;
1124 Instruction *DefX2, *CountInst;
1125 Value *VarX1, *VarX0;
1126 PHINode *PhiX, *CountPhi;
1127
1128 DefX2 = CountInst = nullptr;
1129 VarX1 = VarX0 = nullptr;
1130 PhiX = CountPhi = nullptr;
1131 LoopEntry = *(CurLoop->block_begin());
1132
1133 // step 1: Check if the loop-back branch is in desirable form.
1134 {
1135 if (Value *T = matchCondition(
1136 dyn_cast<BranchInst>(LoopEntry->getTerminator()), LoopEntry))
1137 DefX2 = dyn_cast<Instruction>(T);
1138 else
1139 return false;
1140 }
1141
1142 // step 2: detect instructions corresponding to "x2 = x1 & (x1 - 1)"
1143 {
1144 if (!DefX2 || DefX2->getOpcode() != Instruction::And)
1145 return false;
1146
1147 BinaryOperator *SubOneOp;
1148
1149 if ((SubOneOp = dyn_cast<BinaryOperator>(DefX2->getOperand(0))))
1150 VarX1 = DefX2->getOperand(1);
1151 else {
1152 VarX1 = DefX2->getOperand(0);
1153 SubOneOp = dyn_cast<BinaryOperator>(DefX2->getOperand(1));
1154 }
1155 if (!SubOneOp)
1156 return false;
1157
1158 Instruction *SubInst = cast<Instruction>(SubOneOp);
1159 ConstantInt *Dec = dyn_cast<ConstantInt>(SubInst->getOperand(1));
1160 if (!Dec ||
1161 !((SubInst->getOpcode() == Instruction::Sub && Dec->isOne()) ||
1162 (SubInst->getOpcode() == Instruction::Add &&
Craig Topper79ab6432017-07-06 18:39:47 +00001163 Dec->isMinusOne()))) {
Chandler Carruth8219a502015-08-13 00:44:29 +00001164 return false;
1165 }
1166 }
1167
1168 // step 3: Check the recurrence of variable X
Davide Italiano4bc91192017-05-23 22:32:56 +00001169 PhiX = getRecurrenceVar(VarX1, DefX2, LoopEntry);
1170 if (!PhiX)
1171 return false;
Chandler Carruth8219a502015-08-13 00:44:29 +00001172
1173 // step 4: Find the instruction which count the population: cnt2 = cnt1 + 1
1174 {
1175 CountInst = nullptr;
Duncan P. N. Exon Smithbe4d8cb2015-10-13 19:26:58 +00001176 for (BasicBlock::iterator Iter = LoopEntry->getFirstNonPHI()->getIterator(),
Chandler Carruth8219a502015-08-13 00:44:29 +00001177 IterE = LoopEntry->end();
1178 Iter != IterE; Iter++) {
Duncan P. N. Exon Smithbe4d8cb2015-10-13 19:26:58 +00001179 Instruction *Inst = &*Iter;
Chandler Carruth8219a502015-08-13 00:44:29 +00001180 if (Inst->getOpcode() != Instruction::Add)
1181 continue;
1182
1183 ConstantInt *Inc = dyn_cast<ConstantInt>(Inst->getOperand(1));
1184 if (!Inc || !Inc->isOne())
1185 continue;
1186
Davide Italiano7bf95b92017-05-23 23:51:54 +00001187 PHINode *Phi = getRecurrenceVar(Inst->getOperand(0), Inst, LoopEntry);
1188 if (!Phi)
Chandler Carruth8219a502015-08-13 00:44:29 +00001189 continue;
1190
1191 // Check if the result of the instruction is live of the loop.
1192 bool LiveOutLoop = false;
1193 for (User *U : Inst->users()) {
1194 if ((cast<Instruction>(U))->getParent() != LoopEntry) {
1195 LiveOutLoop = true;
1196 break;
1197 }
1198 }
1199
1200 if (LiveOutLoop) {
1201 CountInst = Inst;
1202 CountPhi = Phi;
1203 break;
1204 }
1205 }
1206
1207 if (!CountInst)
1208 return false;
1209 }
1210
1211 // step 5: check if the precondition is in this form:
1212 // "if (x != 0) goto loop-head ; else goto somewhere-we-don't-care;"
1213 {
1214 auto *PreCondBr = dyn_cast<BranchInst>(PreCondBB->getTerminator());
1215 Value *T = matchCondition(PreCondBr, CurLoop->getLoopPreheader());
1216 if (T != PhiX->getOperand(0) && T != PhiX->getOperand(1))
1217 return false;
1218
1219 CntInst = CountInst;
1220 CntPhi = CountPhi;
1221 Var = T;
1222 }
1223
1224 return true;
1225}
1226
Evgeny Stupachenko2fecd382017-05-15 19:08:56 +00001227/// Return true if the idiom is detected in the loop.
1228///
1229/// Additionally:
1230/// 1) \p CntInst is set to the instruction Counting Leading Zeros (CTLZ)
1231/// or nullptr if there is no such.
1232/// 2) \p CntPhi is set to the corresponding phi node
1233/// or nullptr if there is no such.
1234/// 3) \p Var is set to the value whose CTLZ could be used.
1235/// 4) \p DefX is set to the instruction calculating Loop exit condition.
1236///
1237/// The core idiom we are trying to detect is:
1238/// \code
1239/// if (x0 == 0)
1240/// goto loop-exit // the precondition of the loop
1241/// cnt0 = init-val;
1242/// do {
1243/// x = phi (x0, x.next); //PhiX
1244/// cnt = phi(cnt0, cnt.next);
1245///
1246/// cnt.next = cnt + 1;
1247/// ...
1248/// x.next = x >> 1; // DefX
1249/// ...
1250/// } while(x.next != 0);
1251///
1252/// loop-exit:
1253/// \endcode
1254static bool detectCTLZIdiom(Loop *CurLoop, PHINode *&PhiX,
1255 Instruction *&CntInst, PHINode *&CntPhi,
1256 Instruction *&DefX) {
1257 BasicBlock *LoopEntry;
1258 Value *VarX = nullptr;
1259
1260 DefX = nullptr;
1261 PhiX = nullptr;
1262 CntInst = nullptr;
1263 CntPhi = nullptr;
1264 LoopEntry = *(CurLoop->block_begin());
1265
1266 // step 1: Check if the loop-back branch is in desirable form.
1267 if (Value *T = matchCondition(
1268 dyn_cast<BranchInst>(LoopEntry->getTerminator()), LoopEntry))
1269 DefX = dyn_cast<Instruction>(T);
1270 else
1271 return false;
1272
1273 // step 2: detect instructions corresponding to "x.next = x >> 1"
1274 if (!DefX || DefX->getOpcode() != Instruction::AShr)
1275 return false;
1276 if (ConstantInt *Shft = dyn_cast<ConstantInt>(DefX->getOperand(1)))
1277 if (!Shft || !Shft->isOne())
1278 return false;
1279 VarX = DefX->getOperand(0);
1280
1281 // step 3: Check the recurrence of variable X
Davide Italiano4bc91192017-05-23 22:32:56 +00001282 PhiX = getRecurrenceVar(VarX, DefX, LoopEntry);
1283 if (!PhiX)
Evgeny Stupachenko2fecd382017-05-15 19:08:56 +00001284 return false;
1285
1286 // step 4: Find the instruction which count the CTLZ: cnt.next = cnt + 1
1287 // TODO: We can skip the step. If loop trip count is known (CTLZ),
1288 // then all uses of "cnt.next" could be optimized to the trip count
1289 // plus "cnt0". Currently it is not optimized.
1290 // This step could be used to detect POPCNT instruction:
1291 // cnt.next = cnt + (x.next & 1)
1292 for (BasicBlock::iterator Iter = LoopEntry->getFirstNonPHI()->getIterator(),
1293 IterE = LoopEntry->end();
1294 Iter != IterE; Iter++) {
1295 Instruction *Inst = &*Iter;
1296 if (Inst->getOpcode() != Instruction::Add)
1297 continue;
1298
1299 ConstantInt *Inc = dyn_cast<ConstantInt>(Inst->getOperand(1));
1300 if (!Inc || !Inc->isOne())
1301 continue;
1302
Davide Italiano7bf95b92017-05-23 23:51:54 +00001303 PHINode *Phi = getRecurrenceVar(Inst->getOperand(0), Inst, LoopEntry);
1304 if (!Phi)
Evgeny Stupachenko2fecd382017-05-15 19:08:56 +00001305 continue;
1306
1307 CntInst = Inst;
1308 CntPhi = Phi;
1309 break;
1310 }
1311 if (!CntInst)
1312 return false;
1313
1314 return true;
1315}
1316
1317/// Recognize CTLZ idiom in a non-countable loop and convert the loop
1318/// to countable (with CTLZ trip count).
1319/// If CTLZ inserted as a new trip count returns true; otherwise, returns false.
1320bool LoopIdiomRecognize::recognizeAndInsertCTLZ() {
1321 // Give up if the loop has multiple blocks or multiple backedges.
1322 if (CurLoop->getNumBackEdges() != 1 || CurLoop->getNumBlocks() != 1)
1323 return false;
1324
1325 Instruction *CntInst, *DefX;
1326 PHINode *CntPhi, *PhiX;
1327 if (!detectCTLZIdiom(CurLoop, PhiX, CntInst, CntPhi, DefX))
1328 return false;
1329
1330 bool IsCntPhiUsedOutsideLoop = false;
1331 for (User *U : CntPhi->users())
1332 if (!CurLoop->contains(dyn_cast<Instruction>(U))) {
1333 IsCntPhiUsedOutsideLoop = true;
1334 break;
1335 }
1336 bool IsCntInstUsedOutsideLoop = false;
1337 for (User *U : CntInst->users())
1338 if (!CurLoop->contains(dyn_cast<Instruction>(U))) {
1339 IsCntInstUsedOutsideLoop = true;
1340 break;
1341 }
1342 // If both CntInst and CntPhi are used outside the loop the profitability
1343 // is questionable.
1344 if (IsCntInstUsedOutsideLoop && IsCntPhiUsedOutsideLoop)
1345 return false;
1346
1347 // For some CPUs result of CTLZ(X) intrinsic is undefined
1348 // when X is 0. If we can not guarantee X != 0, we need to check this
1349 // when expand.
1350 bool ZeroCheck = false;
1351 // It is safe to assume Preheader exist as it was checked in
1352 // parent function RunOnLoop.
1353 BasicBlock *PH = CurLoop->getLoopPreheader();
1354 Value *InitX = PhiX->getIncomingValueForBlock(PH);
1355 // If we check X != 0 before entering the loop we don't need a zero
Evgeny Stupachenkocc195602017-05-16 21:44:59 +00001356 // check in CTLZ intrinsic, but only if Cnt Phi is not used outside of the
1357 // loop (if it is used we count CTLZ(X >> 1)).
1358 if (!IsCntPhiUsedOutsideLoop)
1359 if (BasicBlock *PreCondBB = PH->getSinglePredecessor())
1360 if (BranchInst *PreCondBr =
1361 dyn_cast<BranchInst>(PreCondBB->getTerminator())) {
1362 if (matchCondition(PreCondBr, PH) == InitX)
1363 ZeroCheck = true;
1364 }
Evgeny Stupachenko2fecd382017-05-15 19:08:56 +00001365
1366 // Check if CTLZ intrinsic is profitable. Assume it is always profitable
1367 // if we delete the loop (the loop has only 6 instructions):
1368 // %n.addr.0 = phi [ %n, %entry ], [ %shr, %while.cond ]
1369 // %i.0 = phi [ %i0, %entry ], [ %inc, %while.cond ]
1370 // %shr = ashr %n.addr.0, 1
1371 // %tobool = icmp eq %shr, 0
1372 // %inc = add nsw %i.0, 1
1373 // br i1 %tobool
1374
1375 IRBuilder<> Builder(PH->getTerminator());
1376 SmallVector<const Value *, 2> Ops =
1377 {InitX, ZeroCheck ? Builder.getTrue() : Builder.getFalse()};
1378 ArrayRef<const Value *> Args(Ops);
1379 if (CurLoop->getHeader()->size() != 6 &&
1380 TTI->getIntrinsicCost(Intrinsic::ctlz, InitX->getType(), Args) >
1381 TargetTransformInfo::TCC_Basic)
1382 return false;
1383
1384 const DebugLoc DL = DefX->getDebugLoc();
1385 transformLoopToCountable(PH, CntInst, CntPhi, InitX, DL, ZeroCheck,
1386 IsCntPhiUsedOutsideLoop);
1387 return true;
1388}
1389
Chandler Carruth8219a502015-08-13 00:44:29 +00001390/// Recognizes a population count idiom in a non-countable loop.
1391///
1392/// If detected, transforms the relevant code to issue the popcount intrinsic
1393/// function call, and returns true; otherwise, returns false.
1394bool LoopIdiomRecognize::recognizePopcount() {
Chandler Carruth8219a502015-08-13 00:44:29 +00001395 if (TTI->getPopcntSupport(32) != TargetTransformInfo::PSK_FastHardware)
1396 return false;
1397
1398 // Counting population are usually conducted by few arithmetic instructions.
Nick Lewycky06b0ea22015-08-18 22:41:58 +00001399 // Such instructions can be easily "absorbed" by vacant slots in a
Chandler Carruth8219a502015-08-13 00:44:29 +00001400 // non-compact loop. Therefore, recognizing popcount idiom only makes sense
1401 // in a compact loop.
1402
Renato Golin655348f2015-08-13 11:25:38 +00001403 // Give up if the loop has multiple blocks or multiple backedges.
1404 if (CurLoop->getNumBackEdges() != 1 || CurLoop->getNumBlocks() != 1)
Chandler Carruth8219a502015-08-13 00:44:29 +00001405 return false;
1406
Renato Golin655348f2015-08-13 11:25:38 +00001407 BasicBlock *LoopBody = *(CurLoop->block_begin());
1408 if (LoopBody->size() >= 20) {
1409 // The loop is too big, bail out.
Chandler Carruth8219a502015-08-13 00:44:29 +00001410 return false;
Renato Golin655348f2015-08-13 11:25:38 +00001411 }
Chandler Carruth8219a502015-08-13 00:44:29 +00001412
1413 // It should have a preheader containing nothing but an unconditional branch.
Renato Golin655348f2015-08-13 11:25:38 +00001414 BasicBlock *PH = CurLoop->getLoopPreheader();
Davide Italianoc0169fa2016-10-07 18:39:43 +00001415 if (!PH || &PH->front() != PH->getTerminator())
Renato Golin655348f2015-08-13 11:25:38 +00001416 return false;
1417 auto *EntryBI = dyn_cast<BranchInst>(PH->getTerminator());
Chandler Carruth8219a502015-08-13 00:44:29 +00001418 if (!EntryBI || EntryBI->isConditional())
1419 return false;
1420
1421 // It should have a precondition block where the generated popcount instrinsic
1422 // function can be inserted.
Renato Golin655348f2015-08-13 11:25:38 +00001423 auto *PreCondBB = PH->getSinglePredecessor();
Chandler Carruth8219a502015-08-13 00:44:29 +00001424 if (!PreCondBB)
1425 return false;
1426 auto *PreCondBI = dyn_cast<BranchInst>(PreCondBB->getTerminator());
1427 if (!PreCondBI || PreCondBI->isUnconditional())
1428 return false;
1429
1430 Instruction *CntInst;
1431 PHINode *CntPhi;
1432 Value *Val;
1433 if (!detectPopcountIdiom(CurLoop, PreCondBB, CntInst, CntPhi, Val))
1434 return false;
1435
1436 transformLoopToPopcount(PreCondBB, CntInst, CntPhi, Val);
1437 return true;
1438}
1439
1440static CallInst *createPopcntIntrinsic(IRBuilder<> &IRBuilder, Value *Val,
Benjamin Kramerbdc49562016-06-12 15:39:02 +00001441 const DebugLoc &DL) {
Chandler Carruth8219a502015-08-13 00:44:29 +00001442 Value *Ops[] = {Val};
1443 Type *Tys[] = {Val->getType()};
1444
1445 Module *M = IRBuilder.GetInsertBlock()->getParent()->getParent();
1446 Value *Func = Intrinsic::getDeclaration(M, Intrinsic::ctpop, Tys);
1447 CallInst *CI = IRBuilder.CreateCall(Func, Ops);
1448 CI->setDebugLoc(DL);
1449
1450 return CI;
1451}
1452
Evgeny Stupachenko2fecd382017-05-15 19:08:56 +00001453static CallInst *createCTLZIntrinsic(IRBuilder<> &IRBuilder, Value *Val,
1454 const DebugLoc &DL, bool ZeroCheck) {
1455 Value *Ops[] = {Val, ZeroCheck ? IRBuilder.getTrue() : IRBuilder.getFalse()};
1456 Type *Tys[] = {Val->getType()};
1457
1458 Module *M = IRBuilder.GetInsertBlock()->getParent()->getParent();
1459 Value *Func = Intrinsic::getDeclaration(M, Intrinsic::ctlz, Tys);
1460 CallInst *CI = IRBuilder.CreateCall(Func, Ops);
1461 CI->setDebugLoc(DL);
1462
1463 return CI;
1464}
1465
1466/// Transform the following loop:
1467/// loop:
1468/// CntPhi = PHI [Cnt0, CntInst]
1469/// PhiX = PHI [InitX, DefX]
1470/// CntInst = CntPhi + 1
1471/// DefX = PhiX >> 1
1472// LOOP_BODY
1473/// Br: loop if (DefX != 0)
1474/// Use(CntPhi) or Use(CntInst)
1475///
1476/// Into:
1477/// If CntPhi used outside the loop:
1478/// CountPrev = BitWidth(InitX) - CTLZ(InitX >> 1)
1479/// Count = CountPrev + 1
1480/// else
1481/// Count = BitWidth(InitX) - CTLZ(InitX)
1482/// loop:
1483/// CntPhi = PHI [Cnt0, CntInst]
1484/// PhiX = PHI [InitX, DefX]
1485/// PhiCount = PHI [Count, Dec]
1486/// CntInst = CntPhi + 1
1487/// DefX = PhiX >> 1
1488/// Dec = PhiCount - 1
1489/// LOOP_BODY
1490/// Br: loop if (Dec != 0)
1491/// Use(CountPrev + Cnt0) // Use(CntPhi)
1492/// or
1493/// Use(Count + Cnt0) // Use(CntInst)
1494///
1495/// If LOOP_BODY is empty the loop will be deleted.
1496/// If CntInst and DefX are not used in LOOP_BODY they will be removed.
1497void LoopIdiomRecognize::transformLoopToCountable(
1498 BasicBlock *Preheader, Instruction *CntInst, PHINode *CntPhi, Value *InitX,
1499 const DebugLoc DL, bool ZeroCheck, bool IsCntPhiUsedOutsideLoop) {
1500 BranchInst *PreheaderBr = dyn_cast<BranchInst>(Preheader->getTerminator());
1501
1502 // Step 1: Insert the CTLZ instruction at the end of the preheader block
1503 // Count = BitWidth - CTLZ(InitX);
1504 // If there are uses of CntPhi create:
1505 // CountPrev = BitWidth - CTLZ(InitX >> 1);
1506 IRBuilder<> Builder(PreheaderBr);
1507 Builder.SetCurrentDebugLocation(DL);
1508 Value *CTLZ, *Count, *CountPrev, *NewCount, *InitXNext;
1509
1510 if (IsCntPhiUsedOutsideLoop)
1511 InitXNext = Builder.CreateAShr(InitX,
1512 ConstantInt::get(InitX->getType(), 1));
1513 else
1514 InitXNext = InitX;
1515 CTLZ = createCTLZIntrinsic(Builder, InitXNext, DL, ZeroCheck);
1516 Count = Builder.CreateSub(
1517 ConstantInt::get(CTLZ->getType(),
1518 CTLZ->getType()->getIntegerBitWidth()),
1519 CTLZ);
1520 if (IsCntPhiUsedOutsideLoop) {
1521 CountPrev = Count;
1522 Count = Builder.CreateAdd(
1523 CountPrev,
1524 ConstantInt::get(CountPrev->getType(), 1));
1525 }
1526 if (IsCntPhiUsedOutsideLoop)
1527 NewCount = Builder.CreateZExtOrTrunc(CountPrev,
1528 cast<IntegerType>(CntInst->getType()));
1529 else
1530 NewCount = Builder.CreateZExtOrTrunc(Count,
1531 cast<IntegerType>(CntInst->getType()));
1532
1533 // If the CTLZ counter's initial value is not zero, insert Add Inst.
1534 Value *CntInitVal = CntPhi->getIncomingValueForBlock(Preheader);
1535 ConstantInt *InitConst = dyn_cast<ConstantInt>(CntInitVal);
1536 if (!InitConst || !InitConst->isZero())
1537 NewCount = Builder.CreateAdd(NewCount, CntInitVal);
1538
1539 // Step 2: Insert new IV and loop condition:
1540 // loop:
1541 // ...
1542 // PhiCount = PHI [Count, Dec]
1543 // ...
1544 // Dec = PhiCount - 1
1545 // ...
1546 // Br: loop if (Dec != 0)
1547 BasicBlock *Body = *(CurLoop->block_begin());
1548 auto *LbBr = dyn_cast<BranchInst>(Body->getTerminator());
1549 ICmpInst *LbCond = cast<ICmpInst>(LbBr->getCondition());
1550 Type *Ty = Count->getType();
1551
1552 PHINode *TcPhi = PHINode::Create(Ty, 2, "tcphi", &Body->front());
1553
1554 Builder.SetInsertPoint(LbCond);
1555 Instruction *TcDec = cast<Instruction>(
1556 Builder.CreateSub(TcPhi, ConstantInt::get(Ty, 1),
1557 "tcdec", false, true));
1558
1559 TcPhi->addIncoming(Count, Preheader);
1560 TcPhi->addIncoming(TcDec, Body);
1561
1562 CmpInst::Predicate Pred =
1563 (LbBr->getSuccessor(0) == Body) ? CmpInst::ICMP_NE : CmpInst::ICMP_EQ;
1564 LbCond->setPredicate(Pred);
1565 LbCond->setOperand(0, TcDec);
1566 LbCond->setOperand(1, ConstantInt::get(Ty, 0));
1567
1568 // Step 3: All the references to the original counter outside
1569 // the loop are replaced with the NewCount -- the value returned from
1570 // __builtin_ctlz(x).
1571 if (IsCntPhiUsedOutsideLoop)
1572 CntPhi->replaceUsesOutsideBlock(NewCount, Body);
1573 else
1574 CntInst->replaceUsesOutsideBlock(NewCount, Body);
1575
1576 // step 4: Forget the "non-computable" trip-count SCEV associated with the
1577 // loop. The loop would otherwise not be deleted even if it becomes empty.
1578 SE->forgetLoop(CurLoop);
1579}
1580
Chandler Carruth8219a502015-08-13 00:44:29 +00001581void LoopIdiomRecognize::transformLoopToPopcount(BasicBlock *PreCondBB,
1582 Instruction *CntInst,
1583 PHINode *CntPhi, Value *Var) {
1584 BasicBlock *PreHead = CurLoop->getLoopPreheader();
1585 auto *PreCondBr = dyn_cast<BranchInst>(PreCondBB->getTerminator());
1586 const DebugLoc DL = CntInst->getDebugLoc();
1587
1588 // Assuming before transformation, the loop is following:
1589 // if (x) // the precondition
1590 // do { cnt++; x &= x - 1; } while(x);
1591
1592 // Step 1: Insert the ctpop instruction at the end of the precondition block
1593 IRBuilder<> Builder(PreCondBr);
1594 Value *PopCnt, *PopCntZext, *NewCount, *TripCnt;
1595 {
1596 PopCnt = createPopcntIntrinsic(Builder, Var, DL);
1597 NewCount = PopCntZext =
1598 Builder.CreateZExtOrTrunc(PopCnt, cast<IntegerType>(CntPhi->getType()));
1599
1600 if (NewCount != PopCnt)
1601 (cast<Instruction>(NewCount))->setDebugLoc(DL);
1602
1603 // TripCnt is exactly the number of iterations the loop has
1604 TripCnt = NewCount;
1605
1606 // If the population counter's initial value is not zero, insert Add Inst.
1607 Value *CntInitVal = CntPhi->getIncomingValueForBlock(PreHead);
1608 ConstantInt *InitConst = dyn_cast<ConstantInt>(CntInitVal);
1609 if (!InitConst || !InitConst->isZero()) {
1610 NewCount = Builder.CreateAdd(NewCount, CntInitVal);
1611 (cast<Instruction>(NewCount))->setDebugLoc(DL);
1612 }
1613 }
1614
Nick Lewycky2c852542015-08-19 06:22:33 +00001615 // Step 2: Replace the precondition from "if (x == 0) goto loop-exit" to
Nick Lewycky1098e492015-08-19 06:25:30 +00001616 // "if (NewCount == 0) loop-exit". Without this change, the intrinsic
Chandler Carruth8219a502015-08-13 00:44:29 +00001617 // function would be partial dead code, and downstream passes will drag
1618 // it back from the precondition block to the preheader.
1619 {
1620 ICmpInst *PreCond = cast<ICmpInst>(PreCondBr->getCondition());
1621
1622 Value *Opnd0 = PopCntZext;
1623 Value *Opnd1 = ConstantInt::get(PopCntZext->getType(), 0);
1624 if (PreCond->getOperand(0) != Var)
1625 std::swap(Opnd0, Opnd1);
1626
1627 ICmpInst *NewPreCond = cast<ICmpInst>(
1628 Builder.CreateICmp(PreCond->getPredicate(), Opnd0, Opnd1));
1629 PreCondBr->setCondition(NewPreCond);
1630
1631 RecursivelyDeleteTriviallyDeadInstructions(PreCond, TLI);
1632 }
1633
1634 // Step 3: Note that the population count is exactly the trip count of the
Nick Lewycky1098e492015-08-19 06:25:30 +00001635 // loop in question, which enable us to to convert the loop from noncountable
Chandler Carruth8219a502015-08-13 00:44:29 +00001636 // loop into a countable one. The benefit is twofold:
1637 //
Nick Lewycky2c852542015-08-19 06:22:33 +00001638 // - If the loop only counts population, the entire loop becomes dead after
1639 // the transformation. It is a lot easier to prove a countable loop dead
1640 // than to prove a noncountable one. (In some C dialects, an infinite loop
Chandler Carruth8219a502015-08-13 00:44:29 +00001641 // isn't dead even if it computes nothing useful. In general, DCE needs
1642 // to prove a noncountable loop finite before safely delete it.)
1643 //
1644 // - If the loop also performs something else, it remains alive.
1645 // Since it is transformed to countable form, it can be aggressively
1646 // optimized by some optimizations which are in general not applicable
1647 // to a noncountable loop.
1648 //
1649 // After this step, this loop (conceptually) would look like following:
1650 // newcnt = __builtin_ctpop(x);
1651 // t = newcnt;
1652 // if (x)
1653 // do { cnt++; x &= x-1; t--) } while (t > 0);
1654 BasicBlock *Body = *(CurLoop->block_begin());
1655 {
1656 auto *LbBr = dyn_cast<BranchInst>(Body->getTerminator());
1657 ICmpInst *LbCond = cast<ICmpInst>(LbBr->getCondition());
1658 Type *Ty = TripCnt->getType();
1659
Duncan P. N. Exon Smithbe4d8cb2015-10-13 19:26:58 +00001660 PHINode *TcPhi = PHINode::Create(Ty, 2, "tcphi", &Body->front());
Chandler Carruth8219a502015-08-13 00:44:29 +00001661
1662 Builder.SetInsertPoint(LbCond);
Chandler Carruth8219a502015-08-13 00:44:29 +00001663 Instruction *TcDec = cast<Instruction>(
Nick Lewycky1098e492015-08-19 06:25:30 +00001664 Builder.CreateSub(TcPhi, ConstantInt::get(Ty, 1),
1665 "tcdec", false, true));
Chandler Carruth8219a502015-08-13 00:44:29 +00001666
1667 TcPhi->addIncoming(TripCnt, PreHead);
1668 TcPhi->addIncoming(TcDec, Body);
1669
1670 CmpInst::Predicate Pred =
1671 (LbBr->getSuccessor(0) == Body) ? CmpInst::ICMP_UGT : CmpInst::ICMP_SLE;
1672 LbCond->setPredicate(Pred);
1673 LbCond->setOperand(0, TcDec);
Nick Lewycky2c852542015-08-19 06:22:33 +00001674 LbCond->setOperand(1, ConstantInt::get(Ty, 0));
Chandler Carruth8219a502015-08-13 00:44:29 +00001675 }
1676
1677 // Step 4: All the references to the original population counter outside
1678 // the loop are replaced with the NewCount -- the value returned from
1679 // __builtin_ctpop().
1680 CntInst->replaceUsesOutsideBlock(NewCount, Body);
1681
1682 // step 5: Forget the "non-computable" trip-count SCEV associated with the
1683 // loop. The loop would otherwise not be deleted even if it becomes empty.
1684 SE->forgetLoop(CurLoop);
1685}