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Dan Gohman45b31972008-05-14 00:24:14 +00001//===-- UnrollLoop.cpp - Loop unrolling utilities -------------------------===//
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 some loop unrolling utilities. It does not define any
11// actual pass or policy, but provides a single function to perform loop
12// unrolling.
13//
Dan Gohman45b31972008-05-14 00:24:14 +000014// The process of unrolling can produce extraneous basic blocks linked with
15// unconditional branches. This will be corrected in the future.
Chris Lattnerb298db72011-01-11 08:00:40 +000016//
Dan Gohman45b31972008-05-14 00:24:14 +000017//===----------------------------------------------------------------------===//
18
19#define DEBUG_TYPE "loop-unroll"
20#include "llvm/Transforms/Utils/UnrollLoop.h"
21#include "llvm/BasicBlock.h"
22#include "llvm/ADT/Statistic.h"
Duncan Sandsb6133d12010-11-23 20:26:33 +000023#include "llvm/Analysis/InstructionSimplify.h"
Andrew Trickb1eede12011-08-10 00:28:10 +000024#include "llvm/Analysis/LoopIterator.h"
Dan Gohman45b31972008-05-14 00:24:14 +000025#include "llvm/Analysis/LoopPass.h"
Dan Gohman572365e2010-07-26 18:02:06 +000026#include "llvm/Analysis/ScalarEvolution.h"
Dan Gohman45b31972008-05-14 00:24:14 +000027#include "llvm/Support/Debug.h"
Daniel Dunbarce63ffb2009-07-25 00:23:56 +000028#include "llvm/Support/raw_ostream.h"
Chris Lattner29874e02008-12-03 19:44:02 +000029#include "llvm/Transforms/Utils/BasicBlockUtils.h"
Dan Gohman45b31972008-05-14 00:24:14 +000030#include "llvm/Transforms/Utils/Cloning.h"
31#include "llvm/Transforms/Utils/Local.h"
Andrew Trick39f40292011-08-10 04:29:49 +000032#include "llvm/Transforms/Utils/SimplifyIndVar.h"
Dan Gohman45b31972008-05-14 00:24:14 +000033using namespace llvm;
34
Chris Lattner29874e02008-12-03 19:44:02 +000035// TODO: Should these be here or in LoopUnroll?
Dan Gohman45b31972008-05-14 00:24:14 +000036STATISTIC(NumCompletelyUnrolled, "Number of loops completely unrolled");
Chris Lattnerb298db72011-01-11 08:00:40 +000037STATISTIC(NumUnrolled, "Number of loops unrolled (completely or otherwise)");
Dan Gohman45b31972008-05-14 00:24:14 +000038
39/// RemapInstruction - Convert the instruction operands from referencing the
Devang Patel29d3dd82010-06-23 23:55:51 +000040/// current values into those specified by VMap.
Dan Gohman45b31972008-05-14 00:24:14 +000041static inline void RemapInstruction(Instruction *I,
Rafael Espindola1ed219a2010-10-13 01:36:30 +000042 ValueToValueMapTy &VMap) {
Dan Gohman45b31972008-05-14 00:24:14 +000043 for (unsigned op = 0, E = I->getNumOperands(); op != E; ++op) {
44 Value *Op = I->getOperand(op);
Rafael Espindola1ed219a2010-10-13 01:36:30 +000045 ValueToValueMapTy::iterator It = VMap.find(Op);
Devang Patel29d3dd82010-06-23 23:55:51 +000046 if (It != VMap.end())
Dan Gohmanb56c9662009-10-31 14:46:50 +000047 I->setOperand(op, It->second);
Dan Gohman45b31972008-05-14 00:24:14 +000048 }
Jay Foad95c3e482011-06-23 09:09:15 +000049
50 if (PHINode *PN = dyn_cast<PHINode>(I)) {
51 for (unsigned i = 0, e = PN->getNumIncomingValues(); i != e; ++i) {
52 ValueToValueMapTy::iterator It = VMap.find(PN->getIncomingBlock(i));
53 if (It != VMap.end())
54 PN->setIncomingBlock(i, cast<BasicBlock>(It->second));
55 }
56 }
Dan Gohman45b31972008-05-14 00:24:14 +000057}
58
Dan Gohman438b5832009-10-31 17:33:01 +000059/// FoldBlockIntoPredecessor - Folds a basic block into its predecessor if it
60/// only has one predecessor, and that predecessor only has one successor.
61/// The LoopInfo Analysis that is passed will be kept consistent.
62/// Returns the new combined block.
Andrew Trick1009c322011-08-03 18:32:11 +000063static BasicBlock *FoldBlockIntoPredecessor(BasicBlock *BB, LoopInfo* LI,
64 LPPassManager *LPM) {
Dan Gohman438b5832009-10-31 17:33:01 +000065 // Merge basic blocks into their predecessor if there is only one distinct
66 // pred, and if there is only one distinct successor of the predecessor, and
67 // if there are no PHI nodes.
68 BasicBlock *OnlyPred = BB->getSinglePredecessor();
69 if (!OnlyPred) return 0;
70
71 if (OnlyPred->getTerminator()->getNumSuccessors() != 1)
72 return 0;
73
David Greenea9ad9c22010-01-05 01:26:41 +000074 DEBUG(dbgs() << "Merging: " << *BB << "into: " << *OnlyPred);
Dan Gohman438b5832009-10-31 17:33:01 +000075
76 // Resolve any PHI nodes at the start of the block. They are all
77 // guaranteed to have exactly one entry if they exist, unless there are
78 // multiple duplicate (but guaranteed to be equal) entries for the
79 // incoming edges. This occurs when there are multiple edges from
80 // OnlyPred to OnlySucc.
81 FoldSingleEntryPHINodes(BB);
82
83 // Delete the unconditional branch from the predecessor...
84 OnlyPred->getInstList().pop_back();
85
Dan Gohman438b5832009-10-31 17:33:01 +000086 // Make all PHI nodes that referred to BB now refer to Pred as their
87 // source...
88 BB->replaceAllUsesWith(OnlyPred);
89
Jay Foad95c3e482011-06-23 09:09:15 +000090 // Move all definitions in the successor to the predecessor...
91 OnlyPred->getInstList().splice(OnlyPred->end(), BB->getInstList());
92
Dan Gohman438b5832009-10-31 17:33:01 +000093 std::string OldName = BB->getName();
94
95 // Erase basic block from the function...
Andrew Trick1009c322011-08-03 18:32:11 +000096
97 // ScalarEvolution holds references to loop exit blocks.
98 if (ScalarEvolution *SE = LPM->getAnalysisIfAvailable<ScalarEvolution>()) {
99 if (Loop *L = LI->getLoopFor(BB))
100 SE->forgetLoop(L);
101 }
Dan Gohman438b5832009-10-31 17:33:01 +0000102 LI->removeBlock(BB);
103 BB->eraseFromParent();
104
105 // Inherit predecessor's name if it exists...
106 if (!OldName.empty() && !OnlyPred->hasName())
107 OnlyPred->setName(OldName);
108
109 return OnlyPred;
110}
111
Dan Gohman45b31972008-05-14 00:24:14 +0000112/// Unroll the given loop by Count. The loop must be in LCSSA form. Returns true
Chris Lattnerf5ebfb02011-02-18 04:25:21 +0000113/// if unrolling was successful, or false if the loop was unmodified. Unrolling
Dan Gohman45b31972008-05-14 00:24:14 +0000114/// can only fail when the loop's latch block is not terminated by a conditional
115/// branch instruction. However, if the trip count (and multiple) are not known,
116/// loop unrolling will mostly produce more code that is no faster.
117///
Andrew Trick478849e2011-07-25 22:17:47 +0000118/// TripCount is generally defined as the number of times the loop header
119/// executes. UnrollLoop relaxes the definition to permit early exits: here
120/// TripCount is the iteration on which control exits LatchBlock if no early
121/// exits were taken. Note that UnrollLoop assumes that the loop counter test
122/// terminates LatchBlock in order to remove unnecesssary instances of the
123/// test. In other words, control may exit the loop prior to TripCount
124/// iterations via an early branch, but control may not exit the loop from the
125/// LatchBlock's terminator prior to TripCount iterations.
126///
127/// Similarly, TripMultiple divides the number of times that the LatchBlock may
128/// execute without exiting the loop.
129///
Dan Gohman45b31972008-05-14 00:24:14 +0000130/// The LoopInfo Analysis that is passed will be kept consistent.
131///
132/// If a LoopPassManager is passed in, and the loop is fully removed, it will be
133/// removed from the LoopPassManager as well. LPM can also be NULL.
Andrew Trick39f40292011-08-10 04:29:49 +0000134///
135/// This utility preserves LoopInfo. If DominatorTree or ScalarEvolution are
Andrew Trick7cb3dcb2011-08-10 18:07:05 +0000136/// available it must also preserve those analyses.
Andrew Trick2045ce12011-07-23 00:33:05 +0000137bool llvm::UnrollLoop(Loop *L, unsigned Count, unsigned TripCount,
Andrew Trick5d734482011-12-09 06:19:40 +0000138 bool AllowRuntime, unsigned TripMultiple,
139 LoopInfo *LI, LPPassManager *LPM) {
Dan Gohman692ad8d2009-11-05 19:44:06 +0000140 BasicBlock *Preheader = L->getLoopPreheader();
141 if (!Preheader) {
David Greenea9ad9c22010-01-05 01:26:41 +0000142 DEBUG(dbgs() << " Can't unroll; loop preheader-insertion failed.\n");
Dan Gohman692ad8d2009-11-05 19:44:06 +0000143 return false;
144 }
145
Dan Gohman45b31972008-05-14 00:24:14 +0000146 BasicBlock *LatchBlock = L->getLoopLatch();
Dan Gohman692ad8d2009-11-05 19:44:06 +0000147 if (!LatchBlock) {
David Greenea9ad9c22010-01-05 01:26:41 +0000148 DEBUG(dbgs() << " Can't unroll; loop exit-block-insertion failed.\n");
Dan Gohman692ad8d2009-11-05 19:44:06 +0000149 return false;
150 }
151
Andrew Trickd9fc1ce2012-04-10 05:14:42 +0000152 // Loops with indirectbr cannot be cloned.
153 if (!L->isSafeToClone()) {
154 DEBUG(dbgs() << " Can't unroll; Loop body cannot be cloned.\n");
155 return false;
156 }
157
Dan Gohman692ad8d2009-11-05 19:44:06 +0000158 BasicBlock *Header = L->getHeader();
Dan Gohman45b31972008-05-14 00:24:14 +0000159 BranchInst *BI = dyn_cast<BranchInst>(LatchBlock->getTerminator());
Andrew Trickba033772011-07-23 00:29:16 +0000160
Dan Gohman45b31972008-05-14 00:24:14 +0000161 if (!BI || BI->isUnconditional()) {
162 // The loop-rotate pass can be helpful to avoid this in many cases.
David Greenea9ad9c22010-01-05 01:26:41 +0000163 DEBUG(dbgs() <<
Chris Lattnerbdff5482009-08-23 04:37:46 +0000164 " Can't unroll; loop not terminated by a conditional branch.\n");
Dan Gohman45b31972008-05-14 00:24:14 +0000165 return false;
166 }
Andrew Trickba033772011-07-23 00:29:16 +0000167
Chris Lattnerf5ebfb02011-02-18 04:25:21 +0000168 if (Header->hasAddressTaken()) {
169 // The loop-rotate pass can be helpful to avoid this in many cases.
170 DEBUG(dbgs() <<
171 " Won't unroll loop: address of header block is taken.\n");
172 return false;
173 }
Dan Gohman45b31972008-05-14 00:24:14 +0000174
Dan Gohman45b31972008-05-14 00:24:14 +0000175 if (TripCount != 0)
David Greenea9ad9c22010-01-05 01:26:41 +0000176 DEBUG(dbgs() << " Trip Count = " << TripCount << "\n");
Dan Gohman45b31972008-05-14 00:24:14 +0000177 if (TripMultiple != 1)
David Greenea9ad9c22010-01-05 01:26:41 +0000178 DEBUG(dbgs() << " Trip Multiple = " << TripMultiple << "\n");
Dan Gohman45b31972008-05-14 00:24:14 +0000179
180 // Effectively "DCE" unrolled iterations that are beyond the tripcount
181 // and will never be executed.
182 if (TripCount != 0 && Count > TripCount)
183 Count = TripCount;
184
Andrew Trick1da28272011-12-16 02:03:48 +0000185 // Don't enter the unroll code if there is nothing to do. This way we don't
186 // need to support "partial unrolling by 1".
187 if (TripCount == 0 && Count < 2)
188 return false;
189
Dan Gohman45b31972008-05-14 00:24:14 +0000190 assert(Count > 0);
191 assert(TripMultiple > 0);
192 assert(TripCount == 0 || TripCount % TripMultiple == 0);
193
194 // Are we eliminating the loop control altogether?
195 bool CompletelyUnroll = Count == TripCount;
196
Andrew Trick5d734482011-12-09 06:19:40 +0000197 // We assume a run-time trip count if the compiler cannot
198 // figure out the loop trip count and the unroll-runtime
199 // flag is specified.
200 bool RuntimeTripCount = (TripCount == 0 && Count > 0 && AllowRuntime);
201
202 if (RuntimeTripCount && !UnrollRuntimeLoopProlog(L, Count, LI, LPM))
203 return false;
204
205 // Notify ScalarEvolution that the loop will be substantially changed,
206 // if not outright eliminated.
Andrew Trickb78d83d2012-05-08 02:52:09 +0000207 if (LPM) {
208 ScalarEvolution *SE = LPM->getAnalysisIfAvailable<ScalarEvolution>();
209 if (SE)
210 SE->forgetLoop(L);
211 }
Andrew Trick5d734482011-12-09 06:19:40 +0000212
Dan Gohman45b31972008-05-14 00:24:14 +0000213 // If we know the trip count, we know the multiple...
214 unsigned BreakoutTrip = 0;
215 if (TripCount != 0) {
216 BreakoutTrip = TripCount % Count;
217 TripMultiple = 0;
218 } else {
219 // Figure out what multiple to use.
220 BreakoutTrip = TripMultiple =
221 (unsigned)GreatestCommonDivisor64(Count, TripMultiple);
222 }
223
224 if (CompletelyUnroll) {
David Greenea9ad9c22010-01-05 01:26:41 +0000225 DEBUG(dbgs() << "COMPLETELY UNROLLING loop %" << Header->getName()
Daniel Dunbarce63ffb2009-07-25 00:23:56 +0000226 << " with trip count " << TripCount << "!\n");
Dan Gohman45b31972008-05-14 00:24:14 +0000227 } else {
David Greenea9ad9c22010-01-05 01:26:41 +0000228 DEBUG(dbgs() << "UNROLLING loop %" << Header->getName()
Daniel Dunbarce63ffb2009-07-25 00:23:56 +0000229 << " by " << Count);
Dan Gohman45b31972008-05-14 00:24:14 +0000230 if (TripMultiple == 0 || BreakoutTrip != TripMultiple) {
David Greenea9ad9c22010-01-05 01:26:41 +0000231 DEBUG(dbgs() << " with a breakout at trip " << BreakoutTrip);
Dan Gohman45b31972008-05-14 00:24:14 +0000232 } else if (TripMultiple != 1) {
David Greenea9ad9c22010-01-05 01:26:41 +0000233 DEBUG(dbgs() << " with " << TripMultiple << " trips per branch");
Andrew Trick5d734482011-12-09 06:19:40 +0000234 } else if (RuntimeTripCount) {
235 DEBUG(dbgs() << " with run-time trip count");
Dan Gohman45b31972008-05-14 00:24:14 +0000236 }
David Greenea9ad9c22010-01-05 01:26:41 +0000237 DEBUG(dbgs() << "!\n");
Dan Gohman45b31972008-05-14 00:24:14 +0000238 }
239
240 std::vector<BasicBlock*> LoopBlocks = L->getBlocks();
241
Dan Gohman8dbe7f82008-06-24 20:44:42 +0000242 bool ContinueOnTrue = L->contains(BI->getSuccessor(0));
Dan Gohman45b31972008-05-14 00:24:14 +0000243 BasicBlock *LoopExit = BI->getSuccessor(ContinueOnTrue);
244
245 // For the first iteration of the loop, we should use the precloned values for
246 // PHI nodes. Insert associations now.
Devang Patel39430842010-04-20 22:24:18 +0000247 ValueToValueMapTy LastValueMap;
Dan Gohman8dbe7f82008-06-24 20:44:42 +0000248 std::vector<PHINode*> OrigPHINode;
Dan Gohman45b31972008-05-14 00:24:14 +0000249 for (BasicBlock::iterator I = Header->begin(); isa<PHINode>(I); ++I) {
Andrew Trick70d0ca92011-08-09 03:11:29 +0000250 OrigPHINode.push_back(cast<PHINode>(I));
Dan Gohman45b31972008-05-14 00:24:14 +0000251 }
252
253 std::vector<BasicBlock*> Headers;
254 std::vector<BasicBlock*> Latches;
255 Headers.push_back(Header);
256 Latches.push_back(LatchBlock);
257
Andrew Trickb1eede12011-08-10 00:28:10 +0000258 // The current on-the-fly SSA update requires blocks to be processed in
259 // reverse postorder so that LastValueMap contains the correct value at each
260 // exit.
261 LoopBlocksDFS DFS(L);
Andrew Trick2d31ae32011-08-10 01:59:05 +0000262 DFS.perform(LI);
263
Andrew Trickb1eede12011-08-10 00:28:10 +0000264 // Stash the DFS iterators before adding blocks to the loop.
265 LoopBlocksDFS::RPOIterator BlockBegin = DFS.beginRPO();
266 LoopBlocksDFS::RPOIterator BlockEnd = DFS.endRPO();
267
Dan Gohman45b31972008-05-14 00:24:14 +0000268 for (unsigned It = 1; It != Count; ++It) {
Dan Gohman45b31972008-05-14 00:24:14 +0000269 std::vector<BasicBlock*> NewBlocks;
Andrew Trickba033772011-07-23 00:29:16 +0000270
Andrew Trickb1eede12011-08-10 00:28:10 +0000271 for (LoopBlocksDFS::RPOIterator BB = BlockBegin; BB != BlockEnd; ++BB) {
Devang Patel29d3dd82010-06-23 23:55:51 +0000272 ValueToValueMapTy VMap;
273 BasicBlock *New = CloneBasicBlock(*BB, VMap, "." + Twine(It));
Dan Gohman8dbe7f82008-06-24 20:44:42 +0000274 Header->getParent()->getBasicBlockList().push_back(New);
Dan Gohman45b31972008-05-14 00:24:14 +0000275
Dan Gohman8dbe7f82008-06-24 20:44:42 +0000276 // Loop over all of the PHI nodes in the block, changing them to use the
277 // incoming values from the previous block.
278 if (*BB == Header)
279 for (unsigned i = 0, e = OrigPHINode.size(); i != e; ++i) {
Devang Patel29d3dd82010-06-23 23:55:51 +0000280 PHINode *NewPHI = cast<PHINode>(VMap[OrigPHINode[i]]);
Dan Gohman45b31972008-05-14 00:24:14 +0000281 Value *InVal = NewPHI->getIncomingValueForBlock(LatchBlock);
282 if (Instruction *InValI = dyn_cast<Instruction>(InVal))
Dan Gohman92329c72009-12-18 01:24:09 +0000283 if (It > 1 && L->contains(InValI))
Dan Gohman45b31972008-05-14 00:24:14 +0000284 InVal = LastValueMap[InValI];
Devang Patel29d3dd82010-06-23 23:55:51 +0000285 VMap[OrigPHINode[i]] = InVal;
Dan Gohman45b31972008-05-14 00:24:14 +0000286 New->getInstList().erase(NewPHI);
287 }
288
289 // Update our running map of newest clones
Dan Gohman8dbe7f82008-06-24 20:44:42 +0000290 LastValueMap[*BB] = New;
Devang Patel29d3dd82010-06-23 23:55:51 +0000291 for (ValueToValueMapTy::iterator VI = VMap.begin(), VE = VMap.end();
Dan Gohman45b31972008-05-14 00:24:14 +0000292 VI != VE; ++VI)
293 LastValueMap[VI->first] = VI->second;
294
Dan Gohman8dbe7f82008-06-24 20:44:42 +0000295 L->addBasicBlockToLoop(New, LI->getBase());
296
Andrew Trickb1eede12011-08-10 00:28:10 +0000297 // Add phi entries for newly created values to all exit blocks.
298 for (succ_iterator SI = succ_begin(*BB), SE = succ_end(*BB);
299 SI != SE; ++SI) {
300 if (L->contains(*SI))
301 continue;
302 for (BasicBlock::iterator BBI = (*SI)->begin();
303 PHINode *phi = dyn_cast<PHINode>(BBI); ++BBI) {
304 Value *Incoming = phi->getIncomingValueForBlock(*BB);
305 ValueToValueMapTy::iterator It = LastValueMap.find(Incoming);
306 if (It != LastValueMap.end())
307 Incoming = It->second;
308 phi->addIncoming(Incoming, New);
309 }
310 }
Dan Gohman8dbe7f82008-06-24 20:44:42 +0000311 // Keep track of new headers and latches as we create them, so that
312 // we can insert the proper branches later.
313 if (*BB == Header)
314 Headers.push_back(New);
Andrew Trickb1eede12011-08-10 00:28:10 +0000315 if (*BB == LatchBlock)
Dan Gohman8dbe7f82008-06-24 20:44:42 +0000316 Latches.push_back(New);
317
Dan Gohman8dbe7f82008-06-24 20:44:42 +0000318 NewBlocks.push_back(New);
Dan Gohman45b31972008-05-14 00:24:14 +0000319 }
Andrew Trickba033772011-07-23 00:29:16 +0000320
Dan Gohman45b31972008-05-14 00:24:14 +0000321 // Remap all instructions in the most recent iteration
Dan Gohman8dbe7f82008-06-24 20:44:42 +0000322 for (unsigned i = 0; i < NewBlocks.size(); ++i)
Dan Gohman45b31972008-05-14 00:24:14 +0000323 for (BasicBlock::iterator I = NewBlocks[i]->begin(),
324 E = NewBlocks[i]->end(); I != E; ++I)
Rafael Espindola1ed219a2010-10-13 01:36:30 +0000325 ::RemapInstruction(I, LastValueMap);
Dan Gohman45b31972008-05-14 00:24:14 +0000326 }
Andrew Trickba033772011-07-23 00:29:16 +0000327
Andrew Trickb1eede12011-08-10 00:28:10 +0000328 // Loop over the PHI nodes in the original block, setting incoming values.
329 for (unsigned i = 0, e = OrigPHINode.size(); i != e; ++i) {
330 PHINode *PN = OrigPHINode[i];
331 if (CompletelyUnroll) {
Dan Gohman8dbe7f82008-06-24 20:44:42 +0000332 PN->replaceAllUsesWith(PN->getIncomingValueForBlock(Preheader));
333 Header->getInstList().erase(PN);
334 }
Andrew Trickb1eede12011-08-10 00:28:10 +0000335 else if (Count > 1) {
336 Value *InVal = PN->removeIncomingValue(LatchBlock, false);
337 // If this value was defined in the loop, take the value defined by the
338 // last iteration of the loop.
339 if (Instruction *InValI = dyn_cast<Instruction>(InVal)) {
340 if (L->contains(InValI))
341 InVal = LastValueMap[InVal];
342 }
343 assert(Latches.back() == LastValueMap[LatchBlock] && "bad last latch");
344 PN->addIncoming(InVal, Latches.back());
345 }
Dan Gohman8dbe7f82008-06-24 20:44:42 +0000346 }
Dan Gohman45b31972008-05-14 00:24:14 +0000347
348 // Now that all the basic blocks for the unrolled iterations are in place,
349 // set up the branches to connect them.
Dan Gohman8dbe7f82008-06-24 20:44:42 +0000350 for (unsigned i = 0, e = Latches.size(); i != e; ++i) {
Dan Gohman45b31972008-05-14 00:24:14 +0000351 // The original branch was replicated in each unrolled iteration.
Dan Gohman8dbe7f82008-06-24 20:44:42 +0000352 BranchInst *Term = cast<BranchInst>(Latches[i]->getTerminator());
Dan Gohman45b31972008-05-14 00:24:14 +0000353
354 // The branch destination.
Dan Gohman8dbe7f82008-06-24 20:44:42 +0000355 unsigned j = (i + 1) % e;
356 BasicBlock *Dest = Headers[j];
Dan Gohman45b31972008-05-14 00:24:14 +0000357 bool NeedConditional = true;
358
Andrew Trick5d734482011-12-09 06:19:40 +0000359 if (RuntimeTripCount && j != 0) {
360 NeedConditional = false;
361 }
362
Dan Gohman8dbe7f82008-06-24 20:44:42 +0000363 // For a complete unroll, make the last iteration end with a branch
364 // to the exit block.
365 if (CompletelyUnroll && j == 0) {
Dan Gohman45b31972008-05-14 00:24:14 +0000366 Dest = LoopExit;
367 NeedConditional = false;
368 }
369
370 // If we know the trip count or a multiple of it, we can safely use an
371 // unconditional branch for some iterations.
Dan Gohman8dbe7f82008-06-24 20:44:42 +0000372 if (j != BreakoutTrip && (TripMultiple == 0 || j % TripMultiple != 0)) {
Dan Gohman45b31972008-05-14 00:24:14 +0000373 NeedConditional = false;
374 }
375
376 if (NeedConditional) {
377 // Update the conditional branch's successor for the following
378 // iteration.
379 Term->setSuccessor(!ContinueOnTrue, Dest);
380 } else {
Andrew Trickb1eede12011-08-10 00:28:10 +0000381 // Remove phi operands at this loop exit
382 if (Dest != LoopExit) {
383 BasicBlock *BB = Latches[i];
384 for (succ_iterator SI = succ_begin(BB), SE = succ_end(BB);
385 SI != SE; ++SI) {
386 if (*SI == Headers[i])
387 continue;
388 for (BasicBlock::iterator BBI = (*SI)->begin();
389 PHINode *Phi = dyn_cast<PHINode>(BBI); ++BBI) {
390 Phi->removeIncomingValue(BB, false);
391 }
392 }
393 }
Jay Foad8f9ffbd2011-01-07 20:25:56 +0000394 // Replace the conditional branch with an unconditional one.
395 BranchInst::Create(Dest, Term);
396 Term->eraseFromParent();
Jay Foadcd35e092011-06-21 10:33:19 +0000397 }
398 }
399
Jay Foad95c3e482011-06-23 09:09:15 +0000400 // Merge adjacent basic blocks, if possible.
401 for (unsigned i = 0, e = Latches.size(); i != e; ++i) {
402 BranchInst *Term = cast<BranchInst>(Latches[i]->getTerminator());
403 if (Term->isUnconditional()) {
404 BasicBlock *Dest = Term->getSuccessor(0);
Andrew Trick1009c322011-08-03 18:32:11 +0000405 if (BasicBlock *Fold = FoldBlockIntoPredecessor(Dest, LI, LPM))
Jay Foad95c3e482011-06-23 09:09:15 +0000406 std::replace(Latches.begin(), Latches.end(), Dest, Fold);
407 }
408 }
Andrew Trickba033772011-07-23 00:29:16 +0000409
Andrew Trickb78d83d2012-05-08 02:52:09 +0000410 if (LPM) {
411 // FIXME: Reconstruct dom info, because it is not preserved properly.
412 // Incrementally updating domtree after loop unrolling would be easy.
413 if (DominatorTree *DT = LPM->getAnalysisIfAvailable<DominatorTree>())
414 DT->runOnFunction(*L->getHeader()->getParent());
Andrew Trick39f40292011-08-10 04:29:49 +0000415
Andrew Trickb78d83d2012-05-08 02:52:09 +0000416 // Simplify any new induction variables in the partially unrolled loop.
417 ScalarEvolution *SE = LPM->getAnalysisIfAvailable<ScalarEvolution>();
418 if (SE && !CompletelyUnroll) {
419 SmallVector<WeakVH, 16> DeadInsts;
420 simplifyLoopIVs(L, SE, LPM, DeadInsts);
Andrew Trick39f40292011-08-10 04:29:49 +0000421
Andrew Trickb78d83d2012-05-08 02:52:09 +0000422 // Aggressively clean up dead instructions that simplifyLoopIVs already
423 // identified. Any remaining should be cleaned up below.
424 while (!DeadInsts.empty())
425 if (Instruction *Inst =
426 dyn_cast_or_null<Instruction>(&*DeadInsts.pop_back_val()))
427 RecursivelyDeleteTriviallyDeadInstructions(Inst);
428 }
Andrew Trick39f40292011-08-10 04:29:49 +0000429 }
Dan Gohman8dbe7f82008-06-24 20:44:42 +0000430 // At this point, the code is well formed. We now do a quick sweep over the
431 // inserted code, doing constant propagation and dead code elimination as we
432 // go.
433 const std::vector<BasicBlock*> &NewLoopBlocks = L->getBlocks();
434 for (std::vector<BasicBlock*>::const_iterator BB = NewLoopBlocks.begin(),
435 BBE = NewLoopBlocks.end(); BB != BBE; ++BB)
436 for (BasicBlock::iterator I = (*BB)->begin(), E = (*BB)->end(); I != E; ) {
Dan Gohman45b31972008-05-14 00:24:14 +0000437 Instruction *Inst = I++;
438
439 if (isInstructionTriviallyDead(Inst))
Dan Gohman8dbe7f82008-06-24 20:44:42 +0000440 (*BB)->getInstList().erase(Inst);
Duncan Sandsb6133d12010-11-23 20:26:33 +0000441 else if (Value *V = SimplifyInstruction(Inst))
442 if (LI->replacementPreservesLCSSAForm(Inst, V)) {
443 Inst->replaceAllUsesWith(V);
444 (*BB)->getInstList().erase(Inst);
445 }
Dan Gohman45b31972008-05-14 00:24:14 +0000446 }
Dan Gohman45b31972008-05-14 00:24:14 +0000447
448 NumCompletelyUnrolled += CompletelyUnroll;
449 ++NumUnrolled;
450 // Remove the loop from the LoopPassManager if it's completely removed.
451 if (CompletelyUnroll && LPM != NULL)
452 LPM->deleteLoopFromQueue(L);
453
Dan Gohman45b31972008-05-14 00:24:14 +0000454 return true;
455}