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Chris Lattner93f3bcf2009-10-10 09:04:27 +00001//===- SSAUpdater.cpp - Unstructured SSA Update Tool ----------------------===//
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 file implements the SSAUpdater class.
11//
12//===----------------------------------------------------------------------===//
13
Bob Wilson84bd6b02010-04-17 03:08:24 +000014#define DEBUG_TYPE "ssaupdater"
Chandler Carruthd04a8d42012-12-03 16:50:05 +000015#include "llvm/Transforms/Utils/SSAUpdater.h"
Chris Lattner93f3bcf2009-10-10 09:04:27 +000016#include "llvm/ADT/DenseMap.h"
Chris Lattner84063572011-07-18 01:43:58 +000017#include "llvm/ADT/TinyPtrVector.h"
Duncan Sandscdbd9922010-11-16 17:41:24 +000018#include "llvm/Analysis/InstructionSimplify.h"
Stephen Hines36b56882014-04-23 16:57:46 -070019#include "llvm/IR/CFG.h"
Chandler Carruth0b8c9a82013-01-02 11:36:10 +000020#include "llvm/IR/Constants.h"
21#include "llvm/IR/Instructions.h"
22#include "llvm/IR/IntrinsicInst.h"
Chris Lattner93f3bcf2009-10-10 09:04:27 +000023#include "llvm/Support/Debug.h"
Chris Lattner93f3bcf2009-10-10 09:04:27 +000024#include "llvm/Support/raw_ostream.h"
Devang Patel40348e82011-04-29 22:28:59 +000025#include "llvm/Transforms/Utils/BasicBlockUtils.h"
Cameron Zwarichc8279392011-05-24 03:10:43 +000026#include "llvm/Transforms/Utils/Local.h"
Bob Wilson4aad88d2010-05-04 23:18:19 +000027#include "llvm/Transforms/Utils/SSAUpdaterImpl.h"
Devang Patel40348e82011-04-29 22:28:59 +000028
Chris Lattner93f3bcf2009-10-10 09:04:27 +000029using namespace llvm;
30
Bob Wilson84bd6b02010-04-17 03:08:24 +000031typedef DenseMap<BasicBlock*, Value*> AvailableValsTy;
Chris Lattner93f3bcf2009-10-10 09:04:27 +000032static AvailableValsTy &getAvailableVals(void *AV) {
33 return *static_cast<AvailableValsTy*>(AV);
34}
35
Chris Lattnerf5a1fb62009-10-10 23:15:24 +000036SSAUpdater::SSAUpdater(SmallVectorImpl<PHINode*> *NewPHI)
Duncan Sandsfc6e29d2010-09-02 08:14:03 +000037 : AV(0), ProtoType(0), ProtoName(), InsertedPHIs(NewPHI) {}
Chris Lattner93f3bcf2009-10-10 09:04:27 +000038
39SSAUpdater::~SSAUpdater() {
Richard Smith1cec7a02012-08-17 21:42:44 +000040 delete static_cast<AvailableValsTy*>(AV);
Chris Lattner93f3bcf2009-10-10 09:04:27 +000041}
42
Chris Lattnerdb125cf2011-07-18 04:54:35 +000043void SSAUpdater::Initialize(Type *Ty, StringRef Name) {
Chris Lattner93f3bcf2009-10-10 09:04:27 +000044 if (AV == 0)
45 AV = new AvailableValsTy();
46 else
47 getAvailableVals(AV).clear();
Duncan Sandsfc6e29d2010-09-02 08:14:03 +000048 ProtoType = Ty;
49 ProtoName = Name;
Chris Lattner93f3bcf2009-10-10 09:04:27 +000050}
51
Chris Lattner0bef5622009-10-10 23:41:48 +000052bool SSAUpdater::HasValueForBlock(BasicBlock *BB) const {
53 return getAvailableVals(AV).count(BB);
54}
55
Chris Lattner93f3bcf2009-10-10 09:04:27 +000056void SSAUpdater::AddAvailableValue(BasicBlock *BB, Value *V) {
Duncan Sandsfc6e29d2010-09-02 08:14:03 +000057 assert(ProtoType != 0 && "Need to initialize SSAUpdater");
58 assert(ProtoType == V->getType() &&
Chris Lattner93f3bcf2009-10-10 09:04:27 +000059 "All rewritten values must have the same type");
60 getAvailableVals(AV)[BB] = V;
61}
62
Bob Wilson84bd6b02010-04-17 03:08:24 +000063static bool IsEquivalentPHI(PHINode *PHI,
Chris Lattner2a6cbba2013-10-14 16:05:55 +000064 SmallDenseMap<BasicBlock*, Value*, 8> &ValueMapping) {
Bob Wilsone98585e2010-01-27 22:01:02 +000065 unsigned PHINumValues = PHI->getNumIncomingValues();
66 if (PHINumValues != ValueMapping.size())
67 return false;
68
69 // Scan the phi to see if it matches.
70 for (unsigned i = 0, e = PHINumValues; i != e; ++i)
71 if (ValueMapping[PHI->getIncomingBlock(i)] !=
72 PHI->getIncomingValue(i)) {
73 return false;
74 }
75
76 return true;
77}
78
Chris Lattner5fb10722009-10-10 22:41:58 +000079Value *SSAUpdater::GetValueAtEndOfBlock(BasicBlock *BB) {
Chris Lattner5fb10722009-10-10 22:41:58 +000080 Value *Res = GetValueAtEndOfBlockInternal(BB);
Chris Lattner93f3bcf2009-10-10 09:04:27 +000081 return Res;
82}
83
Chris Lattner1a8d4de2009-10-10 23:00:11 +000084Value *SSAUpdater::GetValueInMiddleOfBlock(BasicBlock *BB) {
85 // If there is no definition of the renamed variable in this block, just use
86 // GetValueAtEndOfBlock to do our work.
Bob Wilson84bd6b02010-04-17 03:08:24 +000087 if (!HasValueForBlock(BB))
Chris Lattner1a8d4de2009-10-10 23:00:11 +000088 return GetValueAtEndOfBlock(BB);
Duncan Sandsed903422009-10-16 15:20:13 +000089
Chris Lattner1a8d4de2009-10-10 23:00:11 +000090 // Otherwise, we have the hard case. Get the live-in values for each
91 // predecessor.
92 SmallVector<std::pair<BasicBlock*, Value*>, 8> PredValues;
93 Value *SingularValue = 0;
Duncan Sandsed903422009-10-16 15:20:13 +000094
Chris Lattner1a8d4de2009-10-10 23:00:11 +000095 // We can get our predecessor info by walking the pred_iterator list, but it
96 // is relatively slow. If we already have PHI nodes in this block, walk one
97 // of them to get the predecessor list instead.
98 if (PHINode *SomePhi = dyn_cast<PHINode>(BB->begin())) {
99 for (unsigned i = 0, e = SomePhi->getNumIncomingValues(); i != e; ++i) {
100 BasicBlock *PredBB = SomePhi->getIncomingBlock(i);
101 Value *PredVal = GetValueAtEndOfBlock(PredBB);
102 PredValues.push_back(std::make_pair(PredBB, PredVal));
Duncan Sandsed903422009-10-16 15:20:13 +0000103
Chris Lattner1a8d4de2009-10-10 23:00:11 +0000104 // Compute SingularValue.
105 if (i == 0)
106 SingularValue = PredVal;
107 else if (PredVal != SingularValue)
108 SingularValue = 0;
109 }
110 } else {
111 bool isFirstPred = true;
112 for (pred_iterator PI = pred_begin(BB), E = pred_end(BB); PI != E; ++PI) {
113 BasicBlock *PredBB = *PI;
114 Value *PredVal = GetValueAtEndOfBlock(PredBB);
115 PredValues.push_back(std::make_pair(PredBB, PredVal));
Duncan Sandsed903422009-10-16 15:20:13 +0000116
Chris Lattner1a8d4de2009-10-10 23:00:11 +0000117 // Compute SingularValue.
118 if (isFirstPred) {
119 SingularValue = PredVal;
120 isFirstPred = false;
121 } else if (PredVal != SingularValue)
122 SingularValue = 0;
123 }
124 }
Duncan Sandsed903422009-10-16 15:20:13 +0000125
Chris Lattner1a8d4de2009-10-10 23:00:11 +0000126 // If there are no predecessors, just return undef.
127 if (PredValues.empty())
Duncan Sandsfc6e29d2010-09-02 08:14:03 +0000128 return UndefValue::get(ProtoType);
Duncan Sandsed903422009-10-16 15:20:13 +0000129
Chris Lattner1a8d4de2009-10-10 23:00:11 +0000130 // Otherwise, if all the merged values are the same, just use it.
131 if (SingularValue != 0)
132 return SingularValue;
Duncan Sandsed903422009-10-16 15:20:13 +0000133
Bob Wilson84bd6b02010-04-17 03:08:24 +0000134 // Otherwise, we do need a PHI: check to see if we already have one available
135 // in this block that produces the right value.
136 if (isa<PHINode>(BB->begin())) {
Chris Lattner2a6cbba2013-10-14 16:05:55 +0000137 SmallDenseMap<BasicBlock*, Value*, 8> ValueMapping(PredValues.begin(),
138 PredValues.end());
Bob Wilson84bd6b02010-04-17 03:08:24 +0000139 PHINode *SomePHI;
140 for (BasicBlock::iterator It = BB->begin();
141 (SomePHI = dyn_cast<PHINode>(It)); ++It) {
142 if (IsEquivalentPHI(SomePHI, ValueMapping))
143 return SomePHI;
144 }
145 }
Bob Wilsone98585e2010-01-27 22:01:02 +0000146
Chris Lattner4c1e3da2009-12-21 07:16:11 +0000147 // Ok, we have no way out, insert a new one now.
Jay Foad3ecfc862011-03-30 11:28:46 +0000148 PHINode *InsertedPHI = PHINode::Create(ProtoType, PredValues.size(),
149 ProtoName, &BB->front());
Duncan Sandsed903422009-10-16 15:20:13 +0000150
Chris Lattner1a8d4de2009-10-10 23:00:11 +0000151 // Fill in all the predecessors of the PHI.
152 for (unsigned i = 0, e = PredValues.size(); i != e; ++i)
153 InsertedPHI->addIncoming(PredValues[i].second, PredValues[i].first);
Duncan Sandsed903422009-10-16 15:20:13 +0000154
Chris Lattner1a8d4de2009-10-10 23:00:11 +0000155 // See if the PHI node can be merged to a single value. This can happen in
156 // loop cases when we get a PHI of itself and one other value.
Duncan Sandscdbd9922010-11-16 17:41:24 +0000157 if (Value *V = SimplifyInstruction(InsertedPHI)) {
Chris Lattner1a8d4de2009-10-10 23:00:11 +0000158 InsertedPHI->eraseFromParent();
Duncan Sandscdbd9922010-11-16 17:41:24 +0000159 return V;
Chris Lattner1a8d4de2009-10-10 23:00:11 +0000160 }
Chris Lattnerf5a1fb62009-10-10 23:15:24 +0000161
Eli Benderskyccaddf42012-06-25 10:13:14 +0000162 // Set the DebugLoc of the inserted PHI, if available.
163 DebugLoc DL;
164 if (const Instruction *I = BB->getFirstNonPHI())
165 DL = I->getDebugLoc();
166 InsertedPHI->setDebugLoc(DL);
Devang Patel40348e82011-04-29 22:28:59 +0000167
Chris Lattnerf5a1fb62009-10-10 23:15:24 +0000168 // If the client wants to know about all new instructions, tell it.
169 if (InsertedPHIs) InsertedPHIs->push_back(InsertedPHI);
Duncan Sandsed903422009-10-16 15:20:13 +0000170
David Greene1af40ca2010-01-05 01:26:49 +0000171 DEBUG(dbgs() << " Inserted PHI: " << *InsertedPHI << "\n");
Chris Lattner1a8d4de2009-10-10 23:00:11 +0000172 return InsertedPHI;
173}
174
Chris Lattner93f3bcf2009-10-10 09:04:27 +0000175void SSAUpdater::RewriteUse(Use &U) {
176 Instruction *User = cast<Instruction>(U.getUser());
Bob Wilson84bd6b02010-04-17 03:08:24 +0000177
Chris Lattner88a86242009-10-20 20:27:49 +0000178 Value *V;
179 if (PHINode *UserPN = dyn_cast<PHINode>(User))
180 V = GetValueAtEndOfBlock(UserPN->getIncomingBlock(U));
181 else
182 V = GetValueInMiddleOfBlock(User->getParent());
Duncan Sandsed903422009-10-16 15:20:13 +0000183
Nadav Rotem7b6783a2012-08-13 23:06:54 +0000184 // Notify that users of the existing value that it is being replaced.
185 Value *OldVal = U.get();
186 if (OldVal != V && OldVal->hasValueHandle())
187 ValueHandleBase::ValueIsRAUWd(OldVal, V);
188
Torok Edwinf9933272009-10-20 15:42:00 +0000189 U.set(V);
Chris Lattner93f3bcf2009-10-10 09:04:27 +0000190}
191
Chris Lattnerffd9bee2010-08-29 04:54:06 +0000192void SSAUpdater::RewriteUseAfterInsertions(Use &U) {
193 Instruction *User = cast<Instruction>(U.getUser());
194
195 Value *V;
196 if (PHINode *UserPN = dyn_cast<PHINode>(User))
197 V = GetValueAtEndOfBlock(UserPN->getIncomingBlock(U));
198 else
199 V = GetValueAtEndOfBlock(User->getParent());
200
201 U.set(V);
202}
203
Bob Wilson4aad88d2010-05-04 23:18:19 +0000204namespace llvm {
205template<>
206class SSAUpdaterTraits<SSAUpdater> {
207public:
208 typedef BasicBlock BlkT;
209 typedef Value *ValT;
210 typedef PHINode PhiT;
211
212 typedef succ_iterator BlkSucc_iterator;
213 static BlkSucc_iterator BlkSucc_begin(BlkT *BB) { return succ_begin(BB); }
214 static BlkSucc_iterator BlkSucc_end(BlkT *BB) { return succ_end(BB); }
215
Chandler Carruthfdc2d0f2012-06-20 08:39:30 +0000216 class PHI_iterator {
217 private:
218 PHINode *PHI;
219 unsigned idx;
220
221 public:
222 explicit PHI_iterator(PHINode *P) // begin iterator
223 : PHI(P), idx(0) {}
224 PHI_iterator(PHINode *P, bool) // end iterator
225 : PHI(P), idx(PHI->getNumIncomingValues()) {}
226
227 PHI_iterator &operator++() { ++idx; return *this; }
228 bool operator==(const PHI_iterator& x) const { return idx == x.idx; }
229 bool operator!=(const PHI_iterator& x) const { return !operator==(x); }
230 Value *getIncomingValue() { return PHI->getIncomingValue(idx); }
231 BasicBlock *getIncomingBlock() { return PHI->getIncomingBlock(idx); }
232 };
233
234 static PHI_iterator PHI_begin(PhiT *PHI) { return PHI_iterator(PHI); }
235 static PHI_iterator PHI_end(PhiT *PHI) {
Bob Wilson4aad88d2010-05-04 23:18:19 +0000236 return PHI_iterator(PHI, true);
237 }
238
239 /// FindPredecessorBlocks - Put the predecessors of Info->BB into the Preds
240 /// vector, set Info->NumPreds, and allocate space in Info->Preds.
241 static void FindPredecessorBlocks(BasicBlock *BB,
242 SmallVectorImpl<BasicBlock*> *Preds) {
243 // We can get our predecessor info by walking the pred_iterator list,
244 // but it is relatively slow. If we already have PHI nodes in this
245 // block, walk one of them to get the predecessor list instead.
246 if (PHINode *SomePhi = dyn_cast<PHINode>(BB->begin())) {
247 for (unsigned PI = 0, E = SomePhi->getNumIncomingValues(); PI != E; ++PI)
248 Preds->push_back(SomePhi->getIncomingBlock(PI));
249 } else {
250 for (pred_iterator PI = pred_begin(BB), E = pred_end(BB); PI != E; ++PI)
251 Preds->push_back(*PI);
252 }
253 }
254
255 /// GetUndefVal - Get an undefined value of the same type as the value
256 /// being handled.
257 static Value *GetUndefVal(BasicBlock *BB, SSAUpdater *Updater) {
Duncan Sandsfc6e29d2010-09-02 08:14:03 +0000258 return UndefValue::get(Updater->ProtoType);
Bob Wilson4aad88d2010-05-04 23:18:19 +0000259 }
260
261 /// CreateEmptyPHI - Create a new PHI instruction in the specified block.
262 /// Reserve space for the operands but do not fill them in yet.
263 static Value *CreateEmptyPHI(BasicBlock *BB, unsigned NumPreds,
264 SSAUpdater *Updater) {
Jay Foad3ecfc862011-03-30 11:28:46 +0000265 PHINode *PHI = PHINode::Create(Updater->ProtoType, NumPreds,
266 Updater->ProtoName, &BB->front());
Bob Wilson4aad88d2010-05-04 23:18:19 +0000267 return PHI;
268 }
269
270 /// AddPHIOperand - Add the specified value as an operand of the PHI for
271 /// the specified predecessor block.
272 static void AddPHIOperand(PHINode *PHI, Value *Val, BasicBlock *Pred) {
273 PHI->addIncoming(Val, Pred);
274 }
275
276 /// InstrIsPHI - Check if an instruction is a PHI.
277 ///
278 static PHINode *InstrIsPHI(Instruction *I) {
279 return dyn_cast<PHINode>(I);
280 }
281
282 /// ValueIsPHI - Check if a value is a PHI.
283 ///
284 static PHINode *ValueIsPHI(Value *Val, SSAUpdater *Updater) {
285 return dyn_cast<PHINode>(Val);
286 }
287
288 /// ValueIsNewPHI - Like ValueIsPHI but also check if the PHI has no source
289 /// operands, i.e., it was just added.
290 static PHINode *ValueIsNewPHI(Value *Val, SSAUpdater *Updater) {
291 PHINode *PHI = ValueIsPHI(Val, Updater);
292 if (PHI && PHI->getNumIncomingValues() == 0)
293 return PHI;
294 return 0;
295 }
296
297 /// GetPHIValue - For the specified PHI instruction, return the value
298 /// that it defines.
299 static Value *GetPHIValue(PHINode *PHI) {
300 return PHI;
301 }
302};
303
304} // End llvm namespace
305
Chandler Carruth064a6862013-07-28 22:00:33 +0000306/// Check to see if AvailableVals has an entry for the specified BB and if so,
307/// return it. If not, construct SSA form by first calculating the required
308/// placement of PHIs and then inserting new PHIs where needed.
Chris Lattner5fb10722009-10-10 22:41:58 +0000309Value *SSAUpdater::GetValueAtEndOfBlockInternal(BasicBlock *BB) {
Chris Lattner93f3bcf2009-10-10 09:04:27 +0000310 AvailableValsTy &AvailableVals = getAvailableVals(AV);
Bob Wilson84bd6b02010-04-17 03:08:24 +0000311 if (Value *V = AvailableVals[BB])
312 return V;
Duncan Sandsed903422009-10-16 15:20:13 +0000313
Bob Wilson4aad88d2010-05-04 23:18:19 +0000314 SSAUpdaterImpl<SSAUpdater> Impl(this, &AvailableVals, InsertedPHIs);
315 return Impl.GetValue(BB);
Chris Lattner93f3bcf2009-10-10 09:04:27 +0000316}
Chris Lattnera2d845a2011-01-14 19:36:13 +0000317
318//===----------------------------------------------------------------------===//
319// LoadAndStorePromoter Implementation
320//===----------------------------------------------------------------------===//
321
Chris Lattnerdeaf55f2011-01-15 00:12:35 +0000322LoadAndStorePromoter::
323LoadAndStorePromoter(const SmallVectorImpl<Instruction*> &Insts,
Devang Patel231a5ab2011-07-06 21:09:55 +0000324 SSAUpdater &S, StringRef BaseName) : SSA(S) {
Chris Lattnera2d845a2011-01-14 19:36:13 +0000325 if (Insts.empty()) return;
326
Chris Lattnerdeaf55f2011-01-15 00:12:35 +0000327 Value *SomeVal;
Chris Lattnera2d845a2011-01-14 19:36:13 +0000328 if (LoadInst *LI = dyn_cast<LoadInst>(Insts[0]))
Chris Lattnerdeaf55f2011-01-15 00:12:35 +0000329 SomeVal = LI;
Chris Lattnera2d845a2011-01-14 19:36:13 +0000330 else
Chris Lattnerdeaf55f2011-01-15 00:12:35 +0000331 SomeVal = cast<StoreInst>(Insts[0])->getOperand(0);
332
333 if (BaseName.empty())
334 BaseName = SomeVal->getName();
335 SSA.Initialize(SomeVal->getType(), BaseName);
336}
337
338
339void LoadAndStorePromoter::
340run(const SmallVectorImpl<Instruction*> &Insts) const {
Chris Lattnera2d845a2011-01-14 19:36:13 +0000341
342 // First step: bucket up uses of the alloca by the block they occur in.
343 // This is important because we have to handle multiple defs/uses in a block
344 // ourselves: SSAUpdater is purely for cross-block references.
Chris Lattner84063572011-07-18 01:43:58 +0000345 DenseMap<BasicBlock*, TinyPtrVector<Instruction*> > UsesByBlock;
Chris Lattnera2d845a2011-01-14 19:36:13 +0000346
347 for (unsigned i = 0, e = Insts.size(); i != e; ++i) {
348 Instruction *User = Insts[i];
349 UsesByBlock[User->getParent()].push_back(User);
350 }
351
352 // Okay, now we can iterate over all the blocks in the function with uses,
353 // processing them. Keep track of which loads are loading a live-in value.
354 // Walk the uses in the use-list order to be determinstic.
355 SmallVector<LoadInst*, 32> LiveInLoads;
356 DenseMap<Value*, Value*> ReplacedLoads;
357
358 for (unsigned i = 0, e = Insts.size(); i != e; ++i) {
359 Instruction *User = Insts[i];
360 BasicBlock *BB = User->getParent();
Chris Lattner84063572011-07-18 01:43:58 +0000361 TinyPtrVector<Instruction*> &BlockUses = UsesByBlock[BB];
Chris Lattnera2d845a2011-01-14 19:36:13 +0000362
363 // If this block has already been processed, ignore this repeat use.
364 if (BlockUses.empty()) continue;
365
366 // Okay, this is the first use in the block. If this block just has a
367 // single user in it, we can rewrite it trivially.
368 if (BlockUses.size() == 1) {
369 // If it is a store, it is a trivial def of the value in the block.
Cameron Zwarichc8279392011-05-24 03:10:43 +0000370 if (StoreInst *SI = dyn_cast<StoreInst>(User)) {
Devang Patel231a5ab2011-07-06 21:09:55 +0000371 updateDebugInfo(SI);
Chris Lattnerdeaf55f2011-01-15 00:12:35 +0000372 SSA.AddAvailableValue(BB, SI->getOperand(0));
Cameron Zwarichc8279392011-05-24 03:10:43 +0000373 } else
Chris Lattnera2d845a2011-01-14 19:36:13 +0000374 // Otherwise it is a load, queue it to rewrite as a live-in load.
375 LiveInLoads.push_back(cast<LoadInst>(User));
376 BlockUses.clear();
377 continue;
378 }
379
380 // Otherwise, check to see if this block is all loads.
381 bool HasStore = false;
382 for (unsigned i = 0, e = BlockUses.size(); i != e; ++i) {
383 if (isa<StoreInst>(BlockUses[i])) {
384 HasStore = true;
385 break;
386 }
387 }
388
389 // If so, we can queue them all as live in loads. We don't have an
390 // efficient way to tell which on is first in the block and don't want to
391 // scan large blocks, so just add all loads as live ins.
392 if (!HasStore) {
393 for (unsigned i = 0, e = BlockUses.size(); i != e; ++i)
394 LiveInLoads.push_back(cast<LoadInst>(BlockUses[i]));
395 BlockUses.clear();
396 continue;
397 }
398
399 // Otherwise, we have mixed loads and stores (or just a bunch of stores).
400 // Since SSAUpdater is purely for cross-block values, we need to determine
401 // the order of these instructions in the block. If the first use in the
402 // block is a load, then it uses the live in value. The last store defines
403 // the live out value. We handle this by doing a linear scan of the block.
404 Value *StoredValue = 0;
405 for (BasicBlock::iterator II = BB->begin(), E = BB->end(); II != E; ++II) {
406 if (LoadInst *L = dyn_cast<LoadInst>(II)) {
407 // If this is a load from an unrelated pointer, ignore it.
408 if (!isInstInList(L, Insts)) continue;
409
410 // If we haven't seen a store yet, this is a live in use, otherwise
411 // use the stored value.
412 if (StoredValue) {
Chris Lattnerdeaf55f2011-01-15 00:12:35 +0000413 replaceLoadWithValue(L, StoredValue);
Chris Lattnera2d845a2011-01-14 19:36:13 +0000414 L->replaceAllUsesWith(StoredValue);
415 ReplacedLoads[L] = StoredValue;
416 } else {
417 LiveInLoads.push_back(L);
418 }
419 continue;
420 }
421
Cameron Zwarichc8279392011-05-24 03:10:43 +0000422 if (StoreInst *SI = dyn_cast<StoreInst>(II)) {
Chris Lattnera2d845a2011-01-14 19:36:13 +0000423 // If this is a store to an unrelated pointer, ignore it.
Cameron Zwarichc8279392011-05-24 03:10:43 +0000424 if (!isInstInList(SI, Insts)) continue;
Devang Patel231a5ab2011-07-06 21:09:55 +0000425 updateDebugInfo(SI);
Cameron Zwarichc8279392011-05-24 03:10:43 +0000426
Chris Lattnera2d845a2011-01-14 19:36:13 +0000427 // Remember that this is the active value in the block.
Cameron Zwarichc8279392011-05-24 03:10:43 +0000428 StoredValue = SI->getOperand(0);
Chris Lattnera2d845a2011-01-14 19:36:13 +0000429 }
430 }
431
432 // The last stored value that happened is the live-out for the block.
433 assert(StoredValue && "Already checked that there is a store in block");
Chris Lattnerdeaf55f2011-01-15 00:12:35 +0000434 SSA.AddAvailableValue(BB, StoredValue);
Chris Lattnera2d845a2011-01-14 19:36:13 +0000435 BlockUses.clear();
436 }
437
438 // Okay, now we rewrite all loads that use live-in values in the loop,
439 // inserting PHI nodes as necessary.
440 for (unsigned i = 0, e = LiveInLoads.size(); i != e; ++i) {
441 LoadInst *ALoad = LiveInLoads[i];
Chris Lattnerdeaf55f2011-01-15 00:12:35 +0000442 Value *NewVal = SSA.GetValueInMiddleOfBlock(ALoad->getParent());
443 replaceLoadWithValue(ALoad, NewVal);
Chris Lattner867be592011-01-24 03:29:07 +0000444
445 // Avoid assertions in unreachable code.
446 if (NewVal == ALoad) NewVal = UndefValue::get(NewVal->getType());
Chris Lattnera2d845a2011-01-14 19:36:13 +0000447 ALoad->replaceAllUsesWith(NewVal);
448 ReplacedLoads[ALoad] = NewVal;
449 }
450
Chris Lattnerdeaf55f2011-01-15 00:12:35 +0000451 // Allow the client to do stuff before we start nuking things.
452 doExtraRewritesBeforeFinalDeletion();
453
Chris Lattnera2d845a2011-01-14 19:36:13 +0000454 // Now that everything is rewritten, delete the old instructions from the
455 // function. They should all be dead now.
456 for (unsigned i = 0, e = Insts.size(); i != e; ++i) {
457 Instruction *User = Insts[i];
458
459 // If this is a load that still has uses, then the load must have been added
460 // as a live value in the SSAUpdate data structure for a block (e.g. because
461 // the loaded value was stored later). In this case, we need to recursively
462 // propagate the updates until we get to the real value.
463 if (!User->use_empty()) {
464 Value *NewVal = ReplacedLoads[User];
465 assert(NewVal && "not a replaced load?");
466
467 // Propagate down to the ultimate replacee. The intermediately loads
468 // could theoretically already have been deleted, so we don't want to
469 // dereference the Value*'s.
470 DenseMap<Value*, Value*>::iterator RLI = ReplacedLoads.find(NewVal);
471 while (RLI != ReplacedLoads.end()) {
472 NewVal = RLI->second;
473 RLI = ReplacedLoads.find(NewVal);
474 }
475
Chris Lattnerdeaf55f2011-01-15 00:12:35 +0000476 replaceLoadWithValue(cast<LoadInst>(User), NewVal);
Chris Lattnera2d845a2011-01-14 19:36:13 +0000477 User->replaceAllUsesWith(NewVal);
478 }
479
Chris Lattnerdeaf55f2011-01-15 00:12:35 +0000480 instructionDeleted(User);
Chris Lattnera2d845a2011-01-14 19:36:13 +0000481 User->eraseFromParent();
482 }
483}
Benjamin Krameraa5354c2011-11-14 17:22:45 +0000484
485bool
486LoadAndStorePromoter::isInstInList(Instruction *I,
487 const SmallVectorImpl<Instruction*> &Insts)
488 const {
489 return std::find(Insts.begin(), Insts.end(), I) != Insts.end();
490}