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Andreas Bolkacb210102009-06-24 21:29:13 +00001//===- LoopDependenceAnalysis.cpp - LDA Implementation ----------*- C++ -*-===//
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 is the (beginning) of an implementation of a loop dependence analysis
11// framework, which is used to detect dependences in memory accesses in loops.
12//
13// Please note that this is work in progress and the interface is subject to
14// change.
15//
16// TODO: adapt as implementation progresses.
17//
Andreas Bolka15f72db2009-07-29 05:35:53 +000018// TODO: document lingo (pair, subscript, index)
19//
Andreas Bolkacb210102009-06-24 21:29:13 +000020//===----------------------------------------------------------------------===//
21
22#define DEBUG_TYPE "lda"
Andreas Bolka699db992009-08-07 18:23:41 +000023#include "llvm/ADT/DenseSet.h"
Andreas Bolka328fb3d2009-07-28 19:49:49 +000024#include "llvm/ADT/Statistic.h"
Andreas Bolkafecbc592009-07-01 21:45:23 +000025#include "llvm/Analysis/AliasAnalysis.h"
Andreas Bolkacb210102009-06-24 21:29:13 +000026#include "llvm/Analysis/LoopDependenceAnalysis.h"
27#include "llvm/Analysis/LoopPass.h"
28#include "llvm/Analysis/ScalarEvolution.h"
Andreas Bolka5eca4522009-08-03 01:03:48 +000029#include "llvm/Analysis/ScalarEvolutionExpressions.h"
Dan Gohman5034dd32010-12-15 20:02:24 +000030#include "llvm/Analysis/ValueTracking.h"
Andreas Bolkaf35626d2009-06-28 00:21:21 +000031#include "llvm/Instructions.h"
Andreas Bolka15f72db2009-07-29 05:35:53 +000032#include "llvm/Operator.h"
Andreas Bolka0baa25d2009-07-24 23:19:28 +000033#include "llvm/Support/Allocator.h"
Andreas Bolkae9722fc2009-06-30 02:12:10 +000034#include "llvm/Support/Debug.h"
Torok Edwinc25e7582009-07-11 20:10:48 +000035#include "llvm/Support/ErrorHandling.h"
Andreas Bolka0baa25d2009-07-24 23:19:28 +000036#include "llvm/Support/raw_ostream.h"
Andreas Bolkafecbc592009-07-01 21:45:23 +000037#include "llvm/Target/TargetData.h"
Andreas Bolkacb210102009-06-24 21:29:13 +000038using namespace llvm;
39
Andreas Bolka328fb3d2009-07-28 19:49:49 +000040STATISTIC(NumAnswered, "Number of dependence queries answered");
41STATISTIC(NumAnalysed, "Number of distinct dependence pairs analysed");
42STATISTIC(NumDependent, "Number of pairs with dependent accesses");
43STATISTIC(NumIndependent, "Number of pairs with independent accesses");
44STATISTIC(NumUnknown, "Number of pairs with unknown accesses");
45
Andreas Bolkacb210102009-06-24 21:29:13 +000046LoopPass *llvm::createLoopDependenceAnalysisPass() {
47 return new LoopDependenceAnalysis();
48}
49
Owen Anderson2ab36d32010-10-12 19:48:12 +000050INITIALIZE_PASS_BEGIN(LoopDependenceAnalysis, "lda",
51 "Loop Dependence Analysis", false, true)
52INITIALIZE_PASS_DEPENDENCY(ScalarEvolution)
53INITIALIZE_AG_DEPENDENCY(AliasAnalysis)
54INITIALIZE_PASS_END(LoopDependenceAnalysis, "lda",
Owen Andersonce665bd2010-10-07 22:25:06 +000055 "Loop Dependence Analysis", false, true)
Andreas Bolkacb210102009-06-24 21:29:13 +000056char LoopDependenceAnalysis::ID = 0;
57
58//===----------------------------------------------------------------------===//
Andreas Bolkaf35626d2009-06-28 00:21:21 +000059// Utility Functions
60//===----------------------------------------------------------------------===//
61
Andreas Bolka2fbb7702009-06-29 18:51:11 +000062static inline bool IsMemRefInstr(const Value *V) {
63 const Instruction *I = dyn_cast<const Instruction>(V);
64 return I && (I->mayReadFromMemory() || I->mayWriteToMemory());
Andreas Bolkaf35626d2009-06-28 00:21:21 +000065}
66
Andreas Bolka3b59dd82009-07-23 01:57:06 +000067static void GetMemRefInstrs(const Loop *L,
68 SmallVectorImpl<Instruction*> &Memrefs) {
Andreas Bolkac6a30302009-06-28 00:35:22 +000069 for (Loop::block_iterator b = L->block_begin(), be = L->block_end();
Andreas Bolka34ce6872009-07-28 19:49:25 +000070 b != be; ++b)
Andreas Bolkac6a30302009-06-28 00:35:22 +000071 for (BasicBlock::iterator i = (*b)->begin(), ie = (*b)->end();
Andreas Bolka34ce6872009-07-28 19:49:25 +000072 i != ie; ++i)
Andreas Bolkaacd6f8d2009-06-29 00:50:26 +000073 if (IsMemRefInstr(i))
Andreas Bolka3b59dd82009-07-23 01:57:06 +000074 Memrefs.push_back(i);
Andreas Bolkac6a30302009-06-28 00:35:22 +000075}
76
Andreas Bolkae9722fc2009-06-30 02:12:10 +000077static bool IsLoadOrStoreInst(Value *I) {
78 return isa<LoadInst>(I) || isa<StoreInst>(I);
79}
80
81static Value *GetPointerOperand(Value *I) {
82 if (LoadInst *i = dyn_cast<LoadInst>(I))
83 return i->getPointerOperand();
84 if (StoreInst *i = dyn_cast<StoreInst>(I))
85 return i->getPointerOperand();
Torok Edwinc23197a2009-07-14 16:55:14 +000086 llvm_unreachable("Value is no load or store instruction!");
Andreas Bolkae9722fc2009-06-30 02:12:10 +000087 // Never reached.
88 return 0;
89}
90
Andreas Bolka34ce6872009-07-28 19:49:25 +000091static AliasAnalysis::AliasResult UnderlyingObjectsAlias(AliasAnalysis *AA,
92 const Value *A,
93 const Value *B) {
Dan Gohman5034dd32010-12-15 20:02:24 +000094 const Value *aObj = GetUnderlyingObject(A);
95 const Value *bObj = GetUnderlyingObject(B);
Andreas Bolka34ce6872009-07-28 19:49:25 +000096 return AA->alias(aObj, AA->getTypeStoreSize(aObj->getType()),
97 bObj, AA->getTypeStoreSize(bObj->getType()));
98}
99
Andreas Bolka15f72db2009-07-29 05:35:53 +0000100static inline const SCEV *GetZeroSCEV(ScalarEvolution *SE) {
Owen Anderson1d0be152009-08-13 21:58:54 +0000101 return SE->getConstant(Type::getInt32Ty(SE->getContext()), 0L);
Andreas Bolka15f72db2009-07-29 05:35:53 +0000102}
103
Andreas Bolkaf35626d2009-06-28 00:21:21 +0000104//===----------------------------------------------------------------------===//
105// Dependence Testing
106//===----------------------------------------------------------------------===//
107
Andreas Bolka3b59dd82009-07-23 01:57:06 +0000108bool LoopDependenceAnalysis::isDependencePair(const Value *A,
109 const Value *B) const {
110 return IsMemRefInstr(A) &&
111 IsMemRefInstr(B) &&
112 (cast<const Instruction>(A)->mayWriteToMemory() ||
113 cast<const Instruction>(B)->mayWriteToMemory());
Andreas Bolkaf35626d2009-06-28 00:21:21 +0000114}
115
Andreas Bolka34ce6872009-07-28 19:49:25 +0000116bool LoopDependenceAnalysis::findOrInsertDependencePair(Value *A,
117 Value *B,
Andreas Bolkab4c28e92009-07-23 14:32:46 +0000118 DependencePair *&P) {
119 void *insertPos = 0;
120 FoldingSetNodeID id;
Andreas Bolka34ce6872009-07-28 19:49:25 +0000121 id.AddPointer(A);
122 id.AddPointer(B);
Andreas Bolkae9722fc2009-06-30 02:12:10 +0000123
Andreas Bolkab4c28e92009-07-23 14:32:46 +0000124 P = Pairs.FindNodeOrInsertPos(id, insertPos);
125 if (P) return true;
Andreas Bolkae9722fc2009-06-30 02:12:10 +0000126
Dan Gohman95531882010-03-18 18:49:47 +0000127 P = new (PairAllocator) DependencePair(id, A, B);
Andreas Bolkab4c28e92009-07-23 14:32:46 +0000128 Pairs.InsertNode(P, insertPos);
129 return false;
130}
131
Andreas Bolka699db992009-08-07 18:23:41 +0000132void LoopDependenceAnalysis::getLoops(const SCEV *S,
133 DenseSet<const Loop*>* Loops) const {
134 // Refactor this into an SCEVVisitor, if efficiency becomes a concern.
Andreas Bolka5eca4522009-08-03 01:03:48 +0000135 for (const Loop *L = this->L; L != 0; L = L->getParentLoop())
Dan Gohman17ead4f2010-11-17 21:23:15 +0000136 if (!SE->isLoopInvariant(S, L))
Andreas Bolka699db992009-08-07 18:23:41 +0000137 Loops->insert(L);
138}
139
140bool LoopDependenceAnalysis::isLoopInvariant(const SCEV *S) const {
141 DenseSet<const Loop*> loops;
142 getLoops(S, &loops);
143 return loops.empty();
Andreas Bolka5eca4522009-08-03 01:03:48 +0000144}
145
146bool LoopDependenceAnalysis::isAffine(const SCEV *S) const {
147 const SCEVAddRecExpr *rec = dyn_cast<SCEVAddRecExpr>(S);
148 return isLoopInvariant(S) || (rec && rec->isAffine());
149}
150
Andreas Bolka831f6f62009-08-05 04:26:05 +0000151bool LoopDependenceAnalysis::isZIVPair(const SCEV *A, const SCEV *B) const {
152 return isLoopInvariant(A) && isLoopInvariant(B);
153}
154
Andreas Bolka699db992009-08-07 18:23:41 +0000155bool LoopDependenceAnalysis::isSIVPair(const SCEV *A, const SCEV *B) const {
156 DenseSet<const Loop*> loops;
157 getLoops(A, &loops);
158 getLoops(B, &loops);
159 return loops.size() == 1;
160}
161
Andreas Bolka831f6f62009-08-05 04:26:05 +0000162LoopDependenceAnalysis::DependenceResult
163LoopDependenceAnalysis::analyseZIV(const SCEV *A,
164 const SCEV *B,
165 Subscript *S) const {
Andreas Bolka6151f672009-08-06 03:10:33 +0000166 assert(isZIVPair(A, B) && "Attempted to ZIV-test non-ZIV SCEVs!");
167 return A == B ? Dependent : Independent;
Andreas Bolka831f6f62009-08-05 04:26:05 +0000168}
169
Andreas Bolkac3cc45a2009-07-28 19:50:13 +0000170LoopDependenceAnalysis::DependenceResult
Andreas Bolka699db992009-08-07 18:23:41 +0000171LoopDependenceAnalysis::analyseSIV(const SCEV *A,
172 const SCEV *B,
173 Subscript *S) const {
174 return Unknown; // TODO: Implement.
175}
176
177LoopDependenceAnalysis::DependenceResult
178LoopDependenceAnalysis::analyseMIV(const SCEV *A,
179 const SCEV *B,
180 Subscript *S) const {
181 return Unknown; // TODO: Implement.
182}
183
184LoopDependenceAnalysis::DependenceResult
Andreas Bolka15f72db2009-07-29 05:35:53 +0000185LoopDependenceAnalysis::analyseSubscript(const SCEV *A,
186 const SCEV *B,
187 Subscript *S) const {
David Greened387b2b2009-12-23 20:52:41 +0000188 DEBUG(dbgs() << " Testing subscript: " << *A << ", " << *B << "\n");
Andreas Bolka71339592009-07-30 02:26:01 +0000189
190 if (A == B) {
David Greened387b2b2009-12-23 20:52:41 +0000191 DEBUG(dbgs() << " -> [D] same SCEV\n");
Andreas Bolka71339592009-07-30 02:26:01 +0000192 return Dependent;
193 }
194
Andreas Bolka5eca4522009-08-03 01:03:48 +0000195 if (!isAffine(A) || !isAffine(B)) {
David Greened387b2b2009-12-23 20:52:41 +0000196 DEBUG(dbgs() << " -> [?] not affine\n");
Andreas Bolka5eca4522009-08-03 01:03:48 +0000197 return Unknown;
198 }
199
Andreas Bolka831f6f62009-08-05 04:26:05 +0000200 if (isZIVPair(A, B))
201 return analyseZIV(A, B, S);
202
Andreas Bolka699db992009-08-07 18:23:41 +0000203 if (isSIVPair(A, B))
204 return analyseSIV(A, B, S);
Andreas Bolka71339592009-07-30 02:26:01 +0000205
Andreas Bolka699db992009-08-07 18:23:41 +0000206 return analyseMIV(A, B, S);
Andreas Bolka15f72db2009-07-29 05:35:53 +0000207}
208
209LoopDependenceAnalysis::DependenceResult
Andreas Bolkac3cc45a2009-07-28 19:50:13 +0000210LoopDependenceAnalysis::analysePair(DependencePair *P) const {
David Greened387b2b2009-12-23 20:52:41 +0000211 DEBUG(dbgs() << "Analysing:\n" << *P->A << "\n" << *P->B << "\n");
Andreas Bolkab4c28e92009-07-23 14:32:46 +0000212
Andreas Bolkab4c28e92009-07-23 14:32:46 +0000213 // We only analyse loads and stores but no possible memory accesses by e.g.
214 // free, call, or invoke instructions.
215 if (!IsLoadOrStoreInst(P->A) || !IsLoadOrStoreInst(P->B)) {
David Greened387b2b2009-12-23 20:52:41 +0000216 DEBUG(dbgs() << "--> [?] no load/store\n");
Andreas Bolkac3cc45a2009-07-28 19:50:13 +0000217 return Unknown;
Andreas Bolkab4c28e92009-07-23 14:32:46 +0000218 }
219
Andreas Bolka34ce6872009-07-28 19:49:25 +0000220 Value *aPtr = GetPointerOperand(P->A);
221 Value *bPtr = GetPointerOperand(P->B);
Andreas Bolkae9722fc2009-06-30 02:12:10 +0000222
Andreas Bolka34ce6872009-07-28 19:49:25 +0000223 switch (UnderlyingObjectsAlias(AA, aPtr, bPtr)) {
224 case AliasAnalysis::MayAlias:
Dan Gohmand891acd2010-12-10 20:14:49 +0000225 case AliasAnalysis::PartialAlias:
Andreas Bolka34ce6872009-07-28 19:49:25 +0000226 // We can not analyse objects if we do not know about their aliasing.
David Greened387b2b2009-12-23 20:52:41 +0000227 DEBUG(dbgs() << "---> [?] may alias\n");
Andreas Bolkac3cc45a2009-07-28 19:50:13 +0000228 return Unknown;
Andreas Bolkae9722fc2009-06-30 02:12:10 +0000229
Andreas Bolka34ce6872009-07-28 19:49:25 +0000230 case AliasAnalysis::NoAlias:
231 // If the objects noalias, they are distinct, accesses are independent.
David Greened387b2b2009-12-23 20:52:41 +0000232 DEBUG(dbgs() << "---> [I] no alias\n");
Andreas Bolkac3cc45a2009-07-28 19:50:13 +0000233 return Independent;
Andreas Bolkae9722fc2009-06-30 02:12:10 +0000234
Andreas Bolka34ce6872009-07-28 19:49:25 +0000235 case AliasAnalysis::MustAlias:
236 break; // The underlying objects alias, test accesses for dependence.
237 }
Andreas Bolkafecbc592009-07-01 21:45:23 +0000238
Andreas Bolka15f72db2009-07-29 05:35:53 +0000239 const GEPOperator *aGEP = dyn_cast<GEPOperator>(aPtr);
240 const GEPOperator *bGEP = dyn_cast<GEPOperator>(bPtr);
241
242 if (!aGEP || !bGEP)
243 return Unknown;
244
245 // FIXME: Is filtering coupled subscripts necessary?
246
Andreas Bolkaa1b78d12009-08-05 04:13:41 +0000247 // Collect GEP operand pairs (FIXME: use GetGEPOperands from BasicAA), adding
Andreas Bolka15f72db2009-07-29 05:35:53 +0000248 // trailing zeroes to the smaller GEP, if needed.
Andreas Bolkaa1b78d12009-08-05 04:13:41 +0000249 typedef SmallVector<std::pair<const SCEV*, const SCEV*>, 4> GEPOpdPairsTy;
250 GEPOpdPairsTy opds;
251 for(GEPOperator::const_op_iterator aIdx = aGEP->idx_begin(),
252 aEnd = aGEP->idx_end(),
253 bIdx = bGEP->idx_begin(),
254 bEnd = bGEP->idx_end();
255 aIdx != aEnd && bIdx != bEnd;
256 aIdx += (aIdx != aEnd), bIdx += (bIdx != bEnd)) {
Andreas Bolka15f72db2009-07-29 05:35:53 +0000257 const SCEV* aSCEV = (aIdx != aEnd) ? SE->getSCEV(*aIdx) : GetZeroSCEV(SE);
258 const SCEV* bSCEV = (bIdx != bEnd) ? SE->getSCEV(*bIdx) : GetZeroSCEV(SE);
Andreas Bolkaa1b78d12009-08-05 04:13:41 +0000259 opds.push_back(std::make_pair(aSCEV, bSCEV));
260 }
261
262 if (!opds.empty() && opds[0].first != opds[0].second) {
263 // We cannot (yet) handle arbitrary GEP pointer offsets. By limiting
264 //
265 // TODO: this could be relaxed by adding the size of the underlying object
266 // to the first subscript. If we have e.g. (GEP x,0,i; GEP x,2,-i) and we
267 // know that x is a [100 x i8]*, we could modify the first subscript to be
268 // (i, 200-i) instead of (i, -i).
269 return Unknown;
270 }
271
272 // Now analyse the collected operand pairs (skipping the GEP ptr offsets).
273 for (GEPOpdPairsTy::const_iterator i = opds.begin() + 1, end = opds.end();
274 i != end; ++i) {
Andreas Bolka15f72db2009-07-29 05:35:53 +0000275 Subscript subscript;
Andreas Bolkaa1b78d12009-08-05 04:13:41 +0000276 DependenceResult result = analyseSubscript(i->first, i->second, &subscript);
Andreas Bolka15f72db2009-07-29 05:35:53 +0000277 if (result != Dependent) {
278 // We either proved independence or failed to analyse this subscript.
279 // Further subscripts will not improve the situation, so abort early.
280 return result;
281 }
282 P->Subscripts.push_back(subscript);
Andreas Bolka15f72db2009-07-29 05:35:53 +0000283 }
Andreas Bolkaa1b78d12009-08-05 04:13:41 +0000284 // We successfully analysed all subscripts but failed to prove independence.
Andreas Bolka15f72db2009-07-29 05:35:53 +0000285 return Dependent;
Andreas Bolkab4c28e92009-07-23 14:32:46 +0000286}
287
288bool LoopDependenceAnalysis::depends(Value *A, Value *B) {
289 assert(isDependencePair(A, B) && "Values form no dependence pair!");
Andreas Bolka328fb3d2009-07-28 19:49:49 +0000290 ++NumAnswered;
Andreas Bolkab4c28e92009-07-23 14:32:46 +0000291
292 DependencePair *p;
293 if (!findOrInsertDependencePair(A, B, p)) {
294 // The pair is not cached, so analyse it.
Andreas Bolka328fb3d2009-07-28 19:49:49 +0000295 ++NumAnalysed;
Andreas Bolkac3cc45a2009-07-28 19:50:13 +0000296 switch (p->Result = analysePair(p)) {
Andreas Bolka328fb3d2009-07-28 19:49:49 +0000297 case Dependent: ++NumDependent; break;
298 case Independent: ++NumIndependent; break;
299 case Unknown: ++NumUnknown; break;
300 }
Andreas Bolkab4c28e92009-07-23 14:32:46 +0000301 }
302 return p->Result != Independent;
Andreas Bolkaf35626d2009-06-28 00:21:21 +0000303}
304
305//===----------------------------------------------------------------------===//
Andreas Bolkacb210102009-06-24 21:29:13 +0000306// LoopDependenceAnalysis Implementation
307//===----------------------------------------------------------------------===//
308
309bool LoopDependenceAnalysis::runOnLoop(Loop *L, LPPassManager &) {
310 this->L = L;
Andreas Bolkafecbc592009-07-01 21:45:23 +0000311 AA = &getAnalysis<AliasAnalysis>();
Andreas Bolkacb210102009-06-24 21:29:13 +0000312 SE = &getAnalysis<ScalarEvolution>();
313 return false;
314}
315
Andreas Bolkab4c28e92009-07-23 14:32:46 +0000316void LoopDependenceAnalysis::releaseMemory() {
317 Pairs.clear();
318 PairAllocator.Reset();
319}
320
Andreas Bolkacb210102009-06-24 21:29:13 +0000321void LoopDependenceAnalysis::getAnalysisUsage(AnalysisUsage &AU) const {
322 AU.setPreservesAll();
Andreas Bolkafecbc592009-07-01 21:45:23 +0000323 AU.addRequiredTransitive<AliasAnalysis>();
Andreas Bolka707207a2009-06-28 00:16:08 +0000324 AU.addRequiredTransitive<ScalarEvolution>();
325}
326
Andreas Bolka3b59dd82009-07-23 01:57:06 +0000327static void PrintLoopInfo(raw_ostream &OS,
328 LoopDependenceAnalysis *LDA, const Loop *L) {
Andreas Bolka707207a2009-06-28 00:16:08 +0000329 if (!L->empty()) return; // ignore non-innermost loops
330
Andreas Bolka292aef32009-07-03 01:42:52 +0000331 SmallVector<Instruction*, 8> memrefs;
332 GetMemRefInstrs(L, memrefs);
333
Andreas Bolka707207a2009-06-28 00:16:08 +0000334 OS << "Loop at depth " << L->getLoopDepth() << ", header block: ";
335 WriteAsOperand(OS, L->getHeader(), false);
336 OS << "\n";
Andreas Bolkac6a30302009-06-28 00:35:22 +0000337
Andreas Bolkac6a30302009-06-28 00:35:22 +0000338 OS << " Load/store instructions: " << memrefs.size() << "\n";
Andreas Bolka292aef32009-07-03 01:42:52 +0000339 for (SmallVector<Instruction*, 8>::const_iterator x = memrefs.begin(),
Andreas Bolka34ce6872009-07-28 19:49:25 +0000340 end = memrefs.end(); x != end; ++x)
Andreas Bolka3b59dd82009-07-23 01:57:06 +0000341 OS << "\t" << (x - memrefs.begin()) << ": " << **x << "\n";
Andreas Bolka292aef32009-07-03 01:42:52 +0000342
Andreas Bolkac6a30302009-06-28 00:35:22 +0000343 OS << " Pairwise dependence results:\n";
344 for (SmallVector<Instruction*, 8>::const_iterator x = memrefs.begin(),
Andreas Bolka34ce6872009-07-28 19:49:25 +0000345 end = memrefs.end(); x != end; ++x)
Andreas Bolkac6a30302009-06-28 00:35:22 +0000346 for (SmallVector<Instruction*, 8>::const_iterator y = x + 1;
Andreas Bolka34ce6872009-07-28 19:49:25 +0000347 y != end; ++y)
Andreas Bolkac6a30302009-06-28 00:35:22 +0000348 if (LDA->isDependencePair(*x, *y))
349 OS << "\t" << (x - memrefs.begin()) << "," << (y - memrefs.begin())
350 << ": " << (LDA->depends(*x, *y) ? "dependent" : "independent")
351 << "\n";
Andreas Bolka707207a2009-06-28 00:16:08 +0000352}
353
354void LoopDependenceAnalysis::print(raw_ostream &OS, const Module*) const {
Andreas Bolkac6a30302009-06-28 00:35:22 +0000355 // TODO: doc why const_cast is safe
356 PrintLoopInfo(OS, const_cast<LoopDependenceAnalysis*>(this), this->L);
Andreas Bolka707207a2009-06-28 00:16:08 +0000357}