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Dan Gohman3dc2d922008-05-14 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 Gohman3dc2d922008-05-14 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 Lattnerdfcfcb42011-01-11 08:00:40 +000016//
Dan Gohman3dc2d922008-05-14 00:24:14 +000017//===----------------------------------------------------------------------===//
18
Mark Heffernan675d4012014-07-10 23:30:06 +000019#include "llvm/ADT/SmallPtrSet.h"
Dan Gohman3dc2d922008-05-14 00:24:14 +000020#include "llvm/ADT/Statistic.h"
Daniel Jasperaec2fa32016-12-19 08:22:17 +000021#include "llvm/Analysis/AssumptionCache.h"
Duncan Sands433c1672010-11-23 20:26:33 +000022#include "llvm/Analysis/InstructionSimplify.h"
Andrew Trickb72bbe22011-08-10 00:28:10 +000023#include "llvm/Analysis/LoopIterator.h"
Adam Nemet0965da22017-10-09 23:19:02 +000024#include "llvm/Analysis/OptimizationRemarkEmitter.h"
Dan Gohmana7908ae2010-07-26 18:02:06 +000025#include "llvm/Analysis/ScalarEvolution.h"
David Blaikie31b98d22018-06-04 21:23:21 +000026#include "llvm/Transforms/Utils/Local.h"
Chandler Carruth9fb823b2013-01-02 11:36:10 +000027#include "llvm/IR/BasicBlock.h"
Hal Finkela995f922014-07-10 14:41:31 +000028#include "llvm/IR/DataLayout.h"
Dehao Chenfb02f712017-02-10 21:09:07 +000029#include "llvm/IR/DebugInfoMetadata.h"
Benjamin Kramer799003b2015-03-23 19:32:43 +000030#include "llvm/IR/Dominators.h"
David Majnemer110522b2016-08-16 21:09:46 +000031#include "llvm/IR/IntrinsicInst.h"
Diego Novillo34fc8a72014-04-29 14:27:31 +000032#include "llvm/IR/LLVMContext.h"
Dan Gohman3dc2d922008-05-14 00:24:14 +000033#include "llvm/Support/Debug.h"
Daniel Dunbar0dd5e1e2009-07-25 00:23:56 +000034#include "llvm/Support/raw_ostream.h"
Chris Lattnerdc3f6f22008-12-03 19:44:02 +000035#include "llvm/Transforms/Utils/BasicBlockUtils.h"
Dan Gohman3dc2d922008-05-14 00:24:14 +000036#include "llvm/Transforms/Utils/Cloning.h"
Davide Italianocd96cfd2016-07-09 03:03:01 +000037#include "llvm/Transforms/Utils/LoopSimplify.h"
Chandler Carruthaa7fa5e2014-01-23 11:23:19 +000038#include "llvm/Transforms/Utils/LoopUtils.h"
Andrew Trick4d0040b2011-08-10 04:29:49 +000039#include "llvm/Transforms/Utils/SimplifyIndVar.h"
Chandler Carruth6bda14b2017-06-06 11:49:48 +000040#include "llvm/Transforms/Utils/UnrollLoop.h"
Dan Gohman3dc2d922008-05-14 00:24:14 +000041using namespace llvm;
42
Chandler Carruth964daaa2014-04-22 02:55:47 +000043#define DEBUG_TYPE "loop-unroll"
44
Chris Lattnerdc3f6f22008-12-03 19:44:02 +000045// TODO: Should these be here or in LoopUnroll?
Dan Gohman3dc2d922008-05-14 00:24:14 +000046STATISTIC(NumCompletelyUnrolled, "Number of loops completely unrolled");
Chris Lattnerdfcfcb42011-01-11 08:00:40 +000047STATISTIC(NumUnrolled, "Number of loops unrolled (completely or otherwise)");
Dan Gohman3dc2d922008-05-14 00:24:14 +000048
David L Kreitzer188de5a2016-04-05 12:19:35 +000049static cl::opt<bool>
Michael Zolotukhinb2738e42016-08-02 21:24:14 +000050UnrollRuntimeEpilog("unroll-runtime-epilog", cl::init(false), cl::Hidden,
David L Kreitzer188de5a2016-04-05 12:19:35 +000051 cl::desc("Allow runtime unrolled loops to be unrolled "
52 "with epilog instead of prolog."));
53
Eli Friedman0a217452017-01-18 23:26:37 +000054static cl::opt<bool>
55UnrollVerifyDomtree("unroll-verify-domtree", cl::Hidden,
56 cl::desc("Verify domtree after unrolling"),
57#ifdef NDEBUG
58 cl::init(false)
59#else
60 cl::init(true)
61#endif
62 );
63
Sanjay Patel5b8d7412016-03-08 16:26:39 +000064/// Convert the instruction operands from referencing the current values into
65/// those specified by VMap.
David Greenaee7ad02018-05-27 12:54:33 +000066static inline void remapInstruction(Instruction *I,
67 ValueToValueMapTy &VMap) {
Dan Gohman3dc2d922008-05-14 00:24:14 +000068 for (unsigned op = 0, E = I->getNumOperands(); op != E; ++op) {
69 Value *Op = I->getOperand(op);
Adrian Prantlbfa77c42017-11-01 23:12:35 +000070
71 // Unwrap arguments of dbg.value intrinsics.
72 bool Wrapped = false;
73 if (auto *V = dyn_cast<MetadataAsValue>(Op))
74 if (auto *Unwrapped = dyn_cast<ValueAsMetadata>(V->getMetadata())) {
75 Op = Unwrapped->getValue();
76 Wrapped = true;
77 }
78
79 auto wrap = [&](Value *V) {
80 auto &C = I->getContext();
81 return Wrapped ? MetadataAsValue::get(C, ValueAsMetadata::get(V)) : V;
82 };
83
Rafael Espindola229e38f2010-10-13 01:36:30 +000084 ValueToValueMapTy::iterator It = VMap.find(Op);
Devang Patelb8f11de2010-06-23 23:55:51 +000085 if (It != VMap.end())
Adrian Prantlbfa77c42017-11-01 23:12:35 +000086 I->setOperand(op, wrap(It->second));
Dan Gohman3dc2d922008-05-14 00:24:14 +000087 }
Jay Foad61ea0e42011-06-23 09:09:15 +000088
89 if (PHINode *PN = dyn_cast<PHINode>(I)) {
90 for (unsigned i = 0, e = PN->getNumIncomingValues(); i != e; ++i) {
91 ValueToValueMapTy::iterator It = VMap.find(PN->getIncomingBlock(i));
92 if (It != VMap.end())
93 PN->setIncomingBlock(i, cast<BasicBlock>(It->second));
94 }
95 }
Dan Gohman3dc2d922008-05-14 00:24:14 +000096}
97
Sanjay Patel5b8d7412016-03-08 16:26:39 +000098/// Folds a basic block into its predecessor if it only has one predecessor, and
99/// that predecessor only has one successor.
Max Kazantseva5574932018-03-26 11:31:46 +0000100/// The LoopInfo Analysis that is passed will be kept consistent.
David Greenaee7ad02018-05-27 12:54:33 +0000101static BasicBlock *
102foldBlockIntoPredecessor(BasicBlock *BB, LoopInfo *LI, ScalarEvolution *SE,
103 DominatorTree *DT) {
Dan Gohman2d02ff82009-10-31 17:33:01 +0000104 // Merge basic blocks into their predecessor if there is only one distinct
105 // pred, and if there is only one distinct successor of the predecessor, and
106 // if there are no PHI nodes.
107 BasicBlock *OnlyPred = BB->getSinglePredecessor();
Craig Topperf40110f2014-04-25 05:29:35 +0000108 if (!OnlyPred) return nullptr;
Dan Gohman2d02ff82009-10-31 17:33:01 +0000109
110 if (OnlyPred->getTerminator()->getNumSuccessors() != 1)
Craig Topperf40110f2014-04-25 05:29:35 +0000111 return nullptr;
Dan Gohman2d02ff82009-10-31 17:33:01 +0000112
David Greenaee7ad02018-05-27 12:54:33 +0000113 LLVM_DEBUG(dbgs() << "Merging: " << *BB << "into: " << *OnlyPred);
Dan Gohman2d02ff82009-10-31 17:33:01 +0000114
115 // Resolve any PHI nodes at the start of the block. They are all
116 // guaranteed to have exactly one entry if they exist, unless there are
117 // multiple duplicate (but guaranteed to be equal) entries for the
118 // incoming edges. This occurs when there are multiple edges from
119 // OnlyPred to OnlySucc.
120 FoldSingleEntryPHINodes(BB);
121
122 // Delete the unconditional branch from the predecessor...
123 OnlyPred->getInstList().pop_back();
124
Dan Gohman2d02ff82009-10-31 17:33:01 +0000125 // Make all PHI nodes that referred to BB now refer to Pred as their
126 // source...
127 BB->replaceAllUsesWith(OnlyPred);
128
Jay Foad61ea0e42011-06-23 09:09:15 +0000129 // Move all definitions in the successor to the predecessor...
130 OnlyPred->getInstList().splice(OnlyPred->end(), BB->getInstList());
131
NAKAMURA Takumif9c83392013-11-17 18:05:34 +0000132 // OldName will be valid until erased.
Jakub Staszak86a74922013-11-13 20:09:11 +0000133 StringRef OldName = BB->getName();
Dan Gohman2d02ff82009-10-31 17:33:01 +0000134
Michael Zolotukhinde19ed12016-02-23 00:30:50 +0000135 // Erase the old block and update dominator info.
136 if (DT)
137 if (DomTreeNode *DTN = DT->getNode(BB)) {
138 DomTreeNode *PredDTN = DT->getNode(OnlyPred);
139 SmallVector<DomTreeNode *, 8> Children(DTN->begin(), DTN->end());
Michael Zolotukhin792a8852016-02-23 00:57:48 +0000140 for (auto *DI : Children)
Michael Zolotukhin4fdf9742016-02-23 00:48:44 +0000141 DT->changeImmediateDominator(DI, PredDTN);
Michael Zolotukhinde19ed12016-02-23 00:30:50 +0000142
143 DT->eraseNode(BB);
144 }
Andrew Trickbf69d032011-08-03 18:32:11 +0000145
Dan Gohman2d02ff82009-10-31 17:33:01 +0000146 LI->removeBlock(BB);
Dan Gohman2d02ff82009-10-31 17:33:01 +0000147
148 // Inherit predecessor's name if it exists...
149 if (!OldName.empty() && !OnlyPred->hasName())
150 OnlyPred->setName(OldName);
151
NAKAMURA Takumif9c83392013-11-17 18:05:34 +0000152 BB->eraseFromParent();
153
Dan Gohman2d02ff82009-10-31 17:33:01 +0000154 return OnlyPred;
155}
156
Michael Zolotukhin73957172016-02-05 02:17:36 +0000157/// Check if unrolling created a situation where we need to insert phi nodes to
158/// preserve LCSSA form.
159/// \param Blocks is a vector of basic blocks representing unrolled loop.
160/// \param L is the outer loop.
161/// It's possible that some of the blocks are in L, and some are not. In this
162/// case, if there is a use is outside L, and definition is inside L, we need to
163/// insert a phi-node, otherwise LCSSA will be broken.
164/// The function is just a helper function for llvm::UnrollLoop that returns
165/// true if this situation occurs, indicating that LCSSA needs to be fixed.
166static bool needToInsertPhisForLCSSA(Loop *L, std::vector<BasicBlock *> Blocks,
167 LoopInfo *LI) {
168 for (BasicBlock *BB : Blocks) {
169 if (LI->getLoopFor(BB) == L)
170 continue;
171 for (Instruction &I : *BB) {
172 for (Use &U : I.operands()) {
Michael Zolotukhind734bea2016-02-22 21:21:45 +0000173 if (auto Def = dyn_cast<Instruction>(U)) {
174 Loop *DefLoop = LI->getLoopFor(Def->getParent());
175 if (!DefLoop)
176 continue;
177 if (DefLoop->contains(L))
Michael Zolotukhin73957172016-02-05 02:17:36 +0000178 return true;
Michael Zolotukhind734bea2016-02-22 21:21:45 +0000179 }
Michael Zolotukhin73957172016-02-05 02:17:36 +0000180 }
181 }
182 }
183 return false;
184}
185
Florian Hahnfdea2e42017-01-10 23:24:54 +0000186/// Adds ClonedBB to LoopInfo, creates a new loop for ClonedBB if necessary
187/// and adds a mapping from the original loop to the new loop to NewLoops.
188/// Returns nullptr if no new loop was created and a pointer to the
189/// original loop OriginalBB was part of otherwise.
190const Loop* llvm::addClonedBlockToLoopInfo(BasicBlock *OriginalBB,
191 BasicBlock *ClonedBB, LoopInfo *LI,
192 NewLoopsMap &NewLoops) {
193 // Figure out which loop New is in.
194 const Loop *OldLoop = LI->getLoopFor(OriginalBB);
195 assert(OldLoop && "Should (at least) be in the loop being unrolled!");
196
197 Loop *&NewLoop = NewLoops[OldLoop];
198 if (!NewLoop) {
199 // Found a new sub-loop.
200 assert(OriginalBB == OldLoop->getHeader() &&
201 "Header should be first in RPO");
202
Sanjoy Dasdef17292017-09-28 02:45:42 +0000203 NewLoop = LI->AllocateLoop();
Florian Hahnfdea2e42017-01-10 23:24:54 +0000204 Loop *NewLoopParent = NewLoops.lookup(OldLoop->getParentLoop());
Michael Kuperstein5dd55e82017-01-26 01:04:11 +0000205
206 if (NewLoopParent)
207 NewLoopParent->addChildLoop(NewLoop);
208 else
209 LI->addTopLevelLoop(NewLoop);
210
Florian Hahnfdea2e42017-01-10 23:24:54 +0000211 NewLoop->addBasicBlockToLoop(ClonedBB, *LI);
212 return OldLoop;
213 } else {
214 NewLoop->addBasicBlockToLoop(ClonedBB, *LI);
215 return nullptr;
216 }
217}
218
Evgeny Stupachenko21bef2c2017-03-02 17:38:46 +0000219/// The function chooses which type of unroll (epilog or prolog) is more
220/// profitabale.
221/// Epilog unroll is more profitable when there is PHI that starts from
222/// constant. In this case epilog will leave PHI start from constant,
223/// but prolog will convert it to non-constant.
224///
225/// loop:
226/// PN = PHI [I, Latch], [CI, PreHeader]
227/// I = foo(PN)
228/// ...
229///
230/// Epilog unroll case.
231/// loop:
232/// PN = PHI [I2, Latch], [CI, PreHeader]
233/// I1 = foo(PN)
234/// I2 = foo(I1)
235/// ...
236/// Prolog unroll case.
237/// NewPN = PHI [PrologI, Prolog], [CI, PreHeader]
238/// loop:
239/// PN = PHI [I2, Latch], [NewPN, PreHeader]
240/// I1 = foo(PN)
241/// I2 = foo(I1)
242/// ...
243///
244static bool isEpilogProfitable(Loop *L) {
245 BasicBlock *PreHeader = L->getLoopPreheader();
246 BasicBlock *Header = L->getHeader();
247 assert(PreHeader && Header);
Benjamin Kramerc7fc81e2017-12-30 15:27:33 +0000248 for (const PHINode &PN : Header->phis()) {
249 if (isa<ConstantInt>(PN.getIncomingValueForBlock(PreHeader)))
Evgeny Stupachenko21bef2c2017-03-02 17:38:46 +0000250 return true;
251 }
252 return false;
253}
254
David Greencdee1d92018-05-16 10:41:58 +0000255/// Perform some cleanup and simplifications on loops after unrolling. It is
256/// useful to simplify the IV's in the new loop, as well as do a quick
257/// simplify/dce pass of the instructions.
David Greenaee7ad02018-05-27 12:54:33 +0000258static void simplifyLoopAfterUnroll(Loop *L, bool SimplifyIVs, LoopInfo *LI,
259 ScalarEvolution *SE, DominatorTree *DT,
260 AssumptionCache *AC) {
David Greencdee1d92018-05-16 10:41:58 +0000261 // Simplify any new induction variables in the partially unrolled loop.
262 if (SE && SimplifyIVs) {
263 SmallVector<WeakTrackingVH, 16> DeadInsts;
264 simplifyLoopIVs(L, SE, DT, LI, DeadInsts);
265
266 // Aggressively clean up dead instructions that simplifyLoopIVs already
267 // identified. Any remaining should be cleaned up below.
268 while (!DeadInsts.empty())
269 if (Instruction *Inst =
270 dyn_cast_or_null<Instruction>(&*DeadInsts.pop_back_val()))
271 RecursivelyDeleteTriviallyDeadInstructions(Inst);
272 }
273
274 // At this point, the code is well formed. We now do a quick sweep over the
275 // inserted code, doing constant propagation and dead code elimination as we
276 // go.
277 const DataLayout &DL = L->getHeader()->getModule()->getDataLayout();
278 const std::vector<BasicBlock *> &NewLoopBlocks = L->getBlocks();
279 for (BasicBlock *BB : NewLoopBlocks) {
280 for (BasicBlock::iterator I = BB->begin(), E = BB->end(); I != E;) {
281 Instruction *Inst = &*I++;
282
283 if (Value *V = SimplifyInstruction(Inst, {DL, nullptr, DT, AC}))
284 if (LI->replacementPreservesLCSSAForm(Inst, V))
285 Inst->replaceAllUsesWith(V);
286 if (isInstructionTriviallyDead(Inst))
287 BB->getInstList().erase(Inst);
288 }
289 }
290
291 // TODO: after peeling or unrolling, previously loop variant conditions are
292 // likely to fold to constants, eagerly propagating those here will require
293 // fewer cleanup passes to be run. Alternatively, a LoopEarlyCSE might be
294 // appropriate.
295}
296
Sanjoy Das09613b12017-09-20 02:31:57 +0000297/// Unroll the given loop by Count. The loop must be in LCSSA form. Unrolling
Dan Gohman3dc2d922008-05-14 00:24:14 +0000298/// can only fail when the loop's latch block is not terminated by a conditional
299/// branch instruction. However, if the trip count (and multiple) are not known,
300/// loop unrolling will mostly produce more code that is no faster.
301///
Haicheng Wub29dd012016-12-20 20:23:48 +0000302/// TripCount is the upper bound of the iteration on which control exits
303/// LatchBlock. Control may exit the loop prior to TripCount iterations either
304/// via an early branch in other loop block or via LatchBlock terminator. This
305/// is relaxed from the general definition of trip count which is the number of
306/// times the loop header executes. Note that UnrollLoop assumes that the loop
307/// counter test is in LatchBlock in order to remove unnecesssary instances of
308/// the test. If control can exit the loop from the LatchBlock's terminator
309/// prior to TripCount iterations, flag PreserveCondBr needs to be set.
Andrew Trick990f7712011-07-25 22:17:47 +0000310///
Haicheng Wu1ef17e92016-10-12 21:29:38 +0000311/// PreserveCondBr indicates whether the conditional branch of the LatchBlock
312/// needs to be preserved. It is needed when we use trip count upper bound to
John Brawn84b21832016-10-21 11:08:48 +0000313/// fully unroll the loop. If PreserveOnlyFirst is also set then only the first
314/// conditional branch needs to be preserved.
Haicheng Wu1ef17e92016-10-12 21:29:38 +0000315///
Andrew Trick990f7712011-07-25 22:17:47 +0000316/// Similarly, TripMultiple divides the number of times that the LatchBlock may
317/// execute without exiting the loop.
318///
Sanjoy Dase178f462015-04-14 03:20:38 +0000319/// If AllowRuntime is true then UnrollLoop will consider unrolling loops that
320/// have a runtime (i.e. not compile time constant) trip count. Unrolling these
321/// loops require a unroll "prologue" that runs "RuntimeTripCount % Count"
322/// iterations before branching into the unrolled loop. UnrollLoop will not
323/// runtime-unroll the loop if computing RuntimeTripCount will be expensive and
324/// AllowExpensiveTripCount is false.
325///
Sanjoy Das09613b12017-09-20 02:31:57 +0000326/// If we want to perform PGO-based loop peeling, PeelCount is set to the
Michael Kupersteinb151a642016-11-30 21:13:57 +0000327/// number of iterations we want to peel off.
328///
Dan Gohman3dc2d922008-05-14 00:24:14 +0000329/// The LoopInfo Analysis that is passed will be kept consistent.
330///
Justin Bogner843fb202015-12-15 19:40:57 +0000331/// This utility preserves LoopInfo. It will also preserve ScalarEvolution and
332/// DominatorTree if they are non-null.
Sanjoy Das3567d3d2017-09-27 21:45:19 +0000333LoopUnrollResult llvm::UnrollLoop(
Sanjoy Das09613b12017-09-20 02:31:57 +0000334 Loop *L, unsigned Count, unsigned TripCount, bool Force, bool AllowRuntime,
335 bool AllowExpensiveTripCount, bool PreserveCondBr, bool PreserveOnlyFirst,
336 unsigned TripMultiple, unsigned PeelCount, bool UnrollRemainder,
337 LoopInfo *LI, ScalarEvolution *SE, DominatorTree *DT, AssumptionCache *AC,
338 OptimizationRemarkEmitter *ORE, bool PreserveLCSSA) {
Michael Kupersteinb151a642016-11-30 21:13:57 +0000339
Dan Gohman415c64e2009-11-05 19:44:06 +0000340 BasicBlock *Preheader = L->getLoopPreheader();
341 if (!Preheader) {
Nicola Zaghend34e60c2018-05-14 12:53:11 +0000342 LLVM_DEBUG(dbgs() << " Can't unroll; loop preheader-insertion failed.\n");
Sanjoy Das3567d3d2017-09-27 21:45:19 +0000343 return LoopUnrollResult::Unmodified;
Dan Gohman415c64e2009-11-05 19:44:06 +0000344 }
345
Dan Gohman3dc2d922008-05-14 00:24:14 +0000346 BasicBlock *LatchBlock = L->getLoopLatch();
Dan Gohman415c64e2009-11-05 19:44:06 +0000347 if (!LatchBlock) {
Nicola Zaghend34e60c2018-05-14 12:53:11 +0000348 LLVM_DEBUG(dbgs() << " Can't unroll; loop exit-block-insertion failed.\n");
Sanjoy Das3567d3d2017-09-27 21:45:19 +0000349 return LoopUnrollResult::Unmodified;
Dan Gohman415c64e2009-11-05 19:44:06 +0000350 }
351
Andrew Trick4442bfe2012-04-10 05:14:42 +0000352 // Loops with indirectbr cannot be cloned.
353 if (!L->isSafeToClone()) {
Nicola Zaghend34e60c2018-05-14 12:53:11 +0000354 LLVM_DEBUG(dbgs() << " Can't unroll; Loop body cannot be cloned.\n");
Sanjoy Das3567d3d2017-09-27 21:45:19 +0000355 return LoopUnrollResult::Unmodified;
Andrew Trick4442bfe2012-04-10 05:14:42 +0000356 }
357
Davide Italiano0f62eea2017-04-24 20:14:11 +0000358 // The current loop unroll pass can only unroll loops with a single latch
359 // that's a conditional branch exiting the loop.
360 // FIXME: The implementation can be extended to work with more complicated
361 // cases, e.g. loops with multiple latches.
Dan Gohman415c64e2009-11-05 19:44:06 +0000362 BasicBlock *Header = L->getHeader();
Dan Gohman3dc2d922008-05-14 00:24:14 +0000363 BranchInst *BI = dyn_cast<BranchInst>(LatchBlock->getTerminator());
Andrew Trick279e7a62011-07-23 00:29:16 +0000364
Dan Gohman3dc2d922008-05-14 00:24:14 +0000365 if (!BI || BI->isUnconditional()) {
366 // The loop-rotate pass can be helpful to avoid this in many cases.
Nicola Zaghend34e60c2018-05-14 12:53:11 +0000367 LLVM_DEBUG(
368 dbgs()
369 << " Can't unroll; loop not terminated by a conditional branch.\n");
Sanjoy Das3567d3d2017-09-27 21:45:19 +0000370 return LoopUnrollResult::Unmodified;
Dan Gohman3dc2d922008-05-14 00:24:14 +0000371 }
Andrew Trick279e7a62011-07-23 00:29:16 +0000372
Davide Italiano0f62eea2017-04-24 20:14:11 +0000373 auto CheckSuccessors = [&](unsigned S1, unsigned S2) {
374 return BI->getSuccessor(S1) == Header && !L->contains(BI->getSuccessor(S2));
Davide Italiano0f62eea2017-04-24 20:14:11 +0000375 };
376
377 if (!CheckSuccessors(0, 1) && !CheckSuccessors(1, 0)) {
Nicola Zaghend34e60c2018-05-14 12:53:11 +0000378 LLVM_DEBUG(dbgs() << "Can't unroll; only loops with one conditional latch"
379 " exiting the loop can be unrolled\n");
Sanjoy Das3567d3d2017-09-27 21:45:19 +0000380 return LoopUnrollResult::Unmodified;
Davide Italiano0f62eea2017-04-24 20:14:11 +0000381 }
382
Chris Lattner4a14fbc2011-02-18 04:25:21 +0000383 if (Header->hasAddressTaken()) {
384 // The loop-rotate pass can be helpful to avoid this in many cases.
Nicola Zaghend34e60c2018-05-14 12:53:11 +0000385 LLVM_DEBUG(
386 dbgs() << " Won't unroll loop: address of header block is taken.\n");
Sanjoy Das3567d3d2017-09-27 21:45:19 +0000387 return LoopUnrollResult::Unmodified;
Chris Lattner4a14fbc2011-02-18 04:25:21 +0000388 }
Dan Gohman3dc2d922008-05-14 00:24:14 +0000389
Dan Gohman3dc2d922008-05-14 00:24:14 +0000390 if (TripCount != 0)
Nicola Zaghend34e60c2018-05-14 12:53:11 +0000391 LLVM_DEBUG(dbgs() << " Trip Count = " << TripCount << "\n");
Dan Gohman3dc2d922008-05-14 00:24:14 +0000392 if (TripMultiple != 1)
Nicola Zaghend34e60c2018-05-14 12:53:11 +0000393 LLVM_DEBUG(dbgs() << " Trip Multiple = " << TripMultiple << "\n");
Dan Gohman3dc2d922008-05-14 00:24:14 +0000394
395 // Effectively "DCE" unrolled iterations that are beyond the tripcount
396 // and will never be executed.
397 if (TripCount != 0 && Count > TripCount)
398 Count = TripCount;
399
Michael Kupersteinb151a642016-11-30 21:13:57 +0000400 // Don't enter the unroll code if there is nothing to do.
Anna Thomase7d865e2017-01-27 17:57:05 +0000401 if (TripCount == 0 && Count < 2 && PeelCount == 0) {
Nicola Zaghend34e60c2018-05-14 12:53:11 +0000402 LLVM_DEBUG(dbgs() << "Won't unroll; almost nothing to do\n");
Sanjoy Das3567d3d2017-09-27 21:45:19 +0000403 return LoopUnrollResult::Unmodified;
Anna Thomase7d865e2017-01-27 17:57:05 +0000404 }
Andrew Trickca3417e2011-12-16 02:03:48 +0000405
Dan Gohman3dc2d922008-05-14 00:24:14 +0000406 assert(Count > 0);
407 assert(TripMultiple > 0);
408 assert(TripCount == 0 || TripCount % TripMultiple == 0);
409
410 // Are we eliminating the loop control altogether?
411 bool CompletelyUnroll = Count == TripCount;
Michael Zolotukhin78760ee2015-12-09 18:20:28 +0000412 SmallVector<BasicBlock *, 4> ExitBlocks;
413 L->getExitBlocks(ExitBlocks);
Michael Zolotukhin97567e12016-04-06 21:47:12 +0000414 std::vector<BasicBlock*> OriginalLoopBlocks = L->getBlocks();
Michael Zolotukhin73957172016-02-05 02:17:36 +0000415
416 // Go through all exits of L and see if there are any phi-nodes there. We just
417 // conservatively assume that they're inserted to preserve LCSSA form, which
418 // means that complete unrolling might break this form. We need to either fix
419 // it in-place after the transformation, or entirely rebuild LCSSA. TODO: For
420 // now we just recompute LCSSA for the outer loop, but it should be possible
421 // to fix it in-place.
422 bool NeedToFixLCSSA = PreserveLCSSA && CompletelyUnroll &&
David Majnemer0a16c222016-08-11 21:15:00 +0000423 any_of(ExitBlocks, [](const BasicBlock *BB) {
424 return isa<PHINode>(BB->begin());
425 });
Dan Gohman3dc2d922008-05-14 00:24:14 +0000426
Andrew Trickd04d15292011-12-09 06:19:40 +0000427 // We assume a run-time trip count if the compiler cannot
428 // figure out the loop trip count and the unroll-runtime
429 // flag is specified.
430 bool RuntimeTripCount = (TripCount == 0 && Count > 0 && AllowRuntime);
431
Michael Kupersteinb151a642016-11-30 21:13:57 +0000432 assert((!RuntimeTripCount || !PeelCount) &&
433 "Did not expect runtime trip-count unrolling "
434 "and peeling for the same loop");
435
Florian Hahn52436a52018-03-23 10:38:12 +0000436 bool Peeled = false;
Davide Italiano20cb7e82017-08-28 20:29:33 +0000437 if (PeelCount) {
Florian Hahn52436a52018-03-23 10:38:12 +0000438 Peeled = peelLoop(L, PeelCount, LI, SE, DT, AC, PreserveLCSSA);
Davide Italiano20cb7e82017-08-28 20:29:33 +0000439
440 // Successful peeling may result in a change in the loop preheader/trip
441 // counts. If we later unroll the loop, we want these to be updated.
442 if (Peeled) {
443 BasicBlock *ExitingBlock = L->getExitingBlock();
444 assert(ExitingBlock && "Loop without exiting block?");
445 Preheader = L->getLoopPreheader();
446 TripCount = SE->getSmallConstantTripCount(L, ExitingBlock);
447 TripMultiple = SE->getSmallConstantTripMultiple(L, ExitingBlock);
448 }
449 }
Michael Kupersteinb151a642016-11-30 21:13:57 +0000450
Justin Lebar6827de12016-03-14 23:15:34 +0000451 // Loops containing convergent instructions must have a count that divides
452 // their TripMultiple.
Nicola Zaghend34e60c2018-05-14 12:53:11 +0000453 LLVM_DEBUG(
Eric Christopher257338f2016-03-15 03:01:31 +0000454 {
455 bool HasConvergent = false;
Justin Lebar50deb6d2016-05-10 00:31:23 +0000456 for (auto &BB : L->blocks())
Eric Christopher257338f2016-03-15 03:01:31 +0000457 for (auto &I : *BB)
458 if (auto CS = CallSite(&I))
459 HasConvergent |= CS.isConvergent();
Eric Christopheree00abe2016-03-15 02:19:06 +0000460 assert((!HasConvergent || TripMultiple % Count == 0) &&
461 "Unroll count must divide trip multiple if loop contains a "
Justin Lebar50deb6d2016-05-10 00:31:23 +0000462 "convergent operation.");
Eric Christopher257338f2016-03-15 03:01:31 +0000463 });
Michael Kupersteinb151a642016-11-30 21:13:57 +0000464
Evgeny Stupachenko21bef2c2017-03-02 17:38:46 +0000465 bool EpilogProfitability =
466 UnrollRuntimeEpilog.getNumOccurrences() ? UnrollRuntimeEpilog
467 : isEpilogProfitable(L);
468
Justin Lebar6827de12016-03-14 23:15:34 +0000469 if (RuntimeTripCount && TripMultiple % Count != 0 &&
David L Kreitzer188de5a2016-04-05 12:19:35 +0000470 !UnrollRuntimeLoopRemainder(L, Count, AllowExpensiveTripCount,
David Green64f53b42017-10-31 10:47:46 +0000471 EpilogProfitability, UnrollRemainder, LI, SE,
472 DT, AC, PreserveLCSSA)) {
Evgeny Stupachenkoea2aef42016-05-27 23:15:06 +0000473 if (Force)
474 RuntimeTripCount = false;
Anna Thomase7d865e2017-01-27 17:57:05 +0000475 else {
David Greenaee7ad02018-05-27 12:54:33 +0000476 LLVM_DEBUG(dbgs() << "Wont unroll; remainder loop could not be generated"
477 "when assuming runtime trip count\n");
Sanjoy Das3567d3d2017-09-27 21:45:19 +0000478 return LoopUnrollResult::Unmodified;
Anna Thomase7d865e2017-01-27 17:57:05 +0000479 }
Evgeny Stupachenkoea2aef42016-05-27 23:15:06 +0000480 }
Andrew Trickd04d15292011-12-09 06:19:40 +0000481
Dan Gohman3dc2d922008-05-14 00:24:14 +0000482 // If we know the trip count, we know the multiple...
483 unsigned BreakoutTrip = 0;
484 if (TripCount != 0) {
485 BreakoutTrip = TripCount % Count;
486 TripMultiple = 0;
487 } else {
488 // Figure out what multiple to use.
489 BreakoutTrip = TripMultiple =
490 (unsigned)GreatestCommonDivisor64(Count, TripMultiple);
491 }
492
Adam Nemetf57cc622016-09-30 03:44:16 +0000493 using namespace ore;
Diego Novillo34fc8a72014-04-29 14:27:31 +0000494 // Report the unrolling decision.
Dan Gohman3dc2d922008-05-14 00:24:14 +0000495 if (CompletelyUnroll) {
Nicola Zaghend34e60c2018-05-14 12:53:11 +0000496 LLVM_DEBUG(dbgs() << "COMPLETELY UNROLLING loop %" << Header->getName()
497 << " with trip count " << TripCount << "!\n");
David Green64f53b42017-10-31 10:47:46 +0000498 if (ORE)
499 ORE->emit([&]() {
500 return OptimizationRemark(DEBUG_TYPE, "FullyUnrolled", L->getStartLoc(),
501 L->getHeader())
502 << "completely unrolled loop with "
503 << NV("UnrollCount", TripCount) << " iterations";
504 });
Michael Kupersteinb151a642016-11-30 21:13:57 +0000505 } else if (PeelCount) {
Nicola Zaghend34e60c2018-05-14 12:53:11 +0000506 LLVM_DEBUG(dbgs() << "PEELING loop %" << Header->getName()
507 << " with iteration count " << PeelCount << "!\n");
David Green64f53b42017-10-31 10:47:46 +0000508 if (ORE)
509 ORE->emit([&]() {
510 return OptimizationRemark(DEBUG_TYPE, "Peeled", L->getStartLoc(),
511 L->getHeader())
512 << " peeled loop by " << NV("PeelCount", PeelCount)
513 << " iterations";
514 });
Dan Gohman3dc2d922008-05-14 00:24:14 +0000515 } else {
Adam Nemet15fccf02017-09-19 23:00:55 +0000516 auto DiagBuilder = [&]() {
517 OptimizationRemark Diag(DEBUG_TYPE, "PartialUnrolled", L->getStartLoc(),
518 L->getHeader());
519 return Diag << "unrolled loop by a factor of "
520 << NV("UnrollCount", Count);
521 };
Benjamin Kramercccdadc2014-07-08 14:55:06 +0000522
Nicola Zaghend34e60c2018-05-14 12:53:11 +0000523 LLVM_DEBUG(dbgs() << "UNROLLING loop %" << Header->getName() << " by "
524 << Count);
Dan Gohman3dc2d922008-05-14 00:24:14 +0000525 if (TripMultiple == 0 || BreakoutTrip != TripMultiple) {
Nicola Zaghend34e60c2018-05-14 12:53:11 +0000526 LLVM_DEBUG(dbgs() << " with a breakout at trip " << BreakoutTrip);
David Green64f53b42017-10-31 10:47:46 +0000527 if (ORE)
528 ORE->emit([&]() {
529 return DiagBuilder() << " with a breakout at trip "
530 << NV("BreakoutTrip", BreakoutTrip);
531 });
Dan Gohman3dc2d922008-05-14 00:24:14 +0000532 } else if (TripMultiple != 1) {
Nicola Zaghend34e60c2018-05-14 12:53:11 +0000533 LLVM_DEBUG(dbgs() << " with " << TripMultiple << " trips per branch");
David Green64f53b42017-10-31 10:47:46 +0000534 if (ORE)
535 ORE->emit([&]() {
536 return DiagBuilder() << " with " << NV("TripMultiple", TripMultiple)
537 << " trips per branch";
538 });
Andrew Trickd04d15292011-12-09 06:19:40 +0000539 } else if (RuntimeTripCount) {
Nicola Zaghend34e60c2018-05-14 12:53:11 +0000540 LLVM_DEBUG(dbgs() << " with run-time trip count");
David Green64f53b42017-10-31 10:47:46 +0000541 if (ORE)
542 ORE->emit(
543 [&]() { return DiagBuilder() << " with run-time trip count"; });
Dan Gohman3dc2d922008-05-14 00:24:14 +0000544 }
Nicola Zaghend34e60c2018-05-14 12:53:11 +0000545 LLVM_DEBUG(dbgs() << "!\n");
Dan Gohman3dc2d922008-05-14 00:24:14 +0000546 }
547
Max Kazantseva5574932018-03-26 11:31:46 +0000548 // We are going to make changes to this loop. SCEV may be keeping cached info
549 // about it, in particular about backedge taken count. The changes we make
550 // are guaranteed to invalidate this information for our loop. It is tempting
551 // to only invalidate the loop being unrolled, but it is incorrect as long as
552 // all exiting branches from all inner loops have impact on the outer loops,
553 // and if something changes inside them then any of outer loops may also
554 // change. When we forget outermost loop, we also forget all contained loops
555 // and this is what we need here.
Max Kazantsev30dee782018-04-24 04:33:04 +0000556 if (SE)
557 SE->forgetTopmostLoop(L);
Max Kazantseva5574932018-03-26 11:31:46 +0000558
Dan Gohman04c8bd72008-06-24 20:44:42 +0000559 bool ContinueOnTrue = L->contains(BI->getSuccessor(0));
Dan Gohman3dc2d922008-05-14 00:24:14 +0000560 BasicBlock *LoopExit = BI->getSuccessor(ContinueOnTrue);
561
562 // For the first iteration of the loop, we should use the precloned values for
563 // PHI nodes. Insert associations now.
Devang Patel21766432010-04-20 22:24:18 +0000564 ValueToValueMapTy LastValueMap;
Dan Gohman04c8bd72008-06-24 20:44:42 +0000565 std::vector<PHINode*> OrigPHINode;
Dan Gohman3dc2d922008-05-14 00:24:14 +0000566 for (BasicBlock::iterator I = Header->begin(); isa<PHINode>(I); ++I) {
Andrew Trick5e0ee1c2011-08-09 03:11:29 +0000567 OrigPHINode.push_back(cast<PHINode>(I));
Dan Gohman3dc2d922008-05-14 00:24:14 +0000568 }
569
570 std::vector<BasicBlock*> Headers;
571 std::vector<BasicBlock*> Latches;
572 Headers.push_back(Header);
573 Latches.push_back(LatchBlock);
574
Andrew Trickb72bbe22011-08-10 00:28:10 +0000575 // The current on-the-fly SSA update requires blocks to be processed in
576 // reverse postorder so that LastValueMap contains the correct value at each
577 // exit.
578 LoopBlocksDFS DFS(L);
Andrew Trick78b40c32011-08-10 01:59:05 +0000579 DFS.perform(LI);
580
Andrew Trickb72bbe22011-08-10 00:28:10 +0000581 // Stash the DFS iterators before adding blocks to the loop.
582 LoopBlocksDFS::RPOIterator BlockBegin = DFS.beginRPO();
583 LoopBlocksDFS::RPOIterator BlockEnd = DFS.endRPO();
584
Michael Zolotukhin73957172016-02-05 02:17:36 +0000585 std::vector<BasicBlock*> UnrolledLoopBlocks = L->getBlocks();
Michael Zolotukhin2f507252016-08-08 19:02:15 +0000586
587 // Loop Unrolling might create new loops. While we do preserve LoopInfo, we
588 // might break loop-simplified form for these loops (as they, e.g., would
589 // share the same exit blocks). We'll keep track of loops for which we can
590 // break this so that later we can re-simplify them.
591 SmallSetVector<Loop *, 4> LoopsToSimplify;
592 for (Loop *SubLoop : *L)
593 LoopsToSimplify.insert(SubLoop);
594
Dehao Chenfb02f712017-02-10 21:09:07 +0000595 if (Header->getParent()->isDebugInfoForProfiling())
596 for (BasicBlock *BB : L->getBlocks())
597 for (Instruction &I : *BB)
Dehao Chened2d5402017-10-26 21:20:52 +0000598 if (!isa<DbgInfoIntrinsic>(&I))
599 if (const DILocation *DIL = I.getDebugLoc())
600 I.setDebugLoc(DIL->cloneWithDuplicationFactor(Count));
Dehao Chenfb02f712017-02-10 21:09:07 +0000601
Dan Gohman3dc2d922008-05-14 00:24:14 +0000602 for (unsigned It = 1; It != Count; ++It) {
Dan Gohman3dc2d922008-05-14 00:24:14 +0000603 std::vector<BasicBlock*> NewBlocks;
Duncan P. N. Exon Smithc46cfcb2014-10-07 21:19:00 +0000604 SmallDenseMap<const Loop *, Loop *, 4> NewLoops;
605 NewLoops[L] = L;
Andrew Trick279e7a62011-07-23 00:29:16 +0000606
Andrew Trickb72bbe22011-08-10 00:28:10 +0000607 for (LoopBlocksDFS::RPOIterator BB = BlockBegin; BB != BlockEnd; ++BB) {
Devang Patelb8f11de2010-06-23 23:55:51 +0000608 ValueToValueMapTy VMap;
609 BasicBlock *New = CloneBasicBlock(*BB, VMap, "." + Twine(It));
Dan Gohman04c8bd72008-06-24 20:44:42 +0000610 Header->getParent()->getBasicBlockList().push_back(New);
Dan Gohman3dc2d922008-05-14 00:24:14 +0000611
Michael Kuperstein3c6b3ba2017-02-01 21:06:33 +0000612 assert((*BB != Header || LI->getLoopFor(*BB) == L) &&
Florian Hahna35b8a42017-02-01 10:39:35 +0000613 "Header should not be in a sub-loop");
Duncan P. N. Exon Smithc46cfcb2014-10-07 21:19:00 +0000614 // Tell LI about New.
Florian Hahna35b8a42017-02-01 10:39:35 +0000615 const Loop *OldLoop = addClonedBlockToLoopInfo(*BB, New, LI, NewLoops);
Max Kazantseva5574932018-03-26 11:31:46 +0000616 if (OldLoop)
Florian Hahna35b8a42017-02-01 10:39:35 +0000617 LoopsToSimplify.insert(NewLoops[OldLoop]);
Duncan P. N. Exon Smithc46cfcb2014-10-07 21:19:00 +0000618
Dan Gohman04c8bd72008-06-24 20:44:42 +0000619 if (*BB == Header)
Duncan P. N. Exon Smith0bbf5412014-10-06 22:04:59 +0000620 // Loop over all of the PHI nodes in the block, changing them to use
621 // the incoming values from the previous block.
Sanjay Pateleaf06852016-03-08 17:12:32 +0000622 for (PHINode *OrigPHI : OrigPHINode) {
623 PHINode *NewPHI = cast<PHINode>(VMap[OrigPHI]);
Dan Gohman3dc2d922008-05-14 00:24:14 +0000624 Value *InVal = NewPHI->getIncomingValueForBlock(LatchBlock);
625 if (Instruction *InValI = dyn_cast<Instruction>(InVal))
Dan Gohman18fa5682009-12-18 01:24:09 +0000626 if (It > 1 && L->contains(InValI))
Dan Gohman3dc2d922008-05-14 00:24:14 +0000627 InVal = LastValueMap[InValI];
Sanjay Pateleaf06852016-03-08 17:12:32 +0000628 VMap[OrigPHI] = InVal;
Dan Gohman3dc2d922008-05-14 00:24:14 +0000629 New->getInstList().erase(NewPHI);
630 }
631
632 // Update our running map of newest clones
Dan Gohman04c8bd72008-06-24 20:44:42 +0000633 LastValueMap[*BB] = New;
Devang Patelb8f11de2010-06-23 23:55:51 +0000634 for (ValueToValueMapTy::iterator VI = VMap.begin(), VE = VMap.end();
Dan Gohman3dc2d922008-05-14 00:24:14 +0000635 VI != VE; ++VI)
636 LastValueMap[VI->first] = VI->second;
637
Andrew Trickb72bbe22011-08-10 00:28:10 +0000638 // Add phi entries for newly created values to all exit blocks.
Sanjay Pateleaf06852016-03-08 17:12:32 +0000639 for (BasicBlock *Succ : successors(*BB)) {
640 if (L->contains(Succ))
Andrew Trickb72bbe22011-08-10 00:28:10 +0000641 continue;
Benjamin Kramerc7fc81e2017-12-30 15:27:33 +0000642 for (PHINode &PHI : Succ->phis()) {
643 Value *Incoming = PHI.getIncomingValueForBlock(*BB);
Andrew Trickb72bbe22011-08-10 00:28:10 +0000644 ValueToValueMapTy::iterator It = LastValueMap.find(Incoming);
645 if (It != LastValueMap.end())
646 Incoming = It->second;
Benjamin Kramerc7fc81e2017-12-30 15:27:33 +0000647 PHI.addIncoming(Incoming, New);
Andrew Trickb72bbe22011-08-10 00:28:10 +0000648 }
649 }
Dan Gohman04c8bd72008-06-24 20:44:42 +0000650 // Keep track of new headers and latches as we create them, so that
651 // we can insert the proper branches later.
652 if (*BB == Header)
653 Headers.push_back(New);
Andrew Trickb72bbe22011-08-10 00:28:10 +0000654 if (*BB == LatchBlock)
Dan Gohman04c8bd72008-06-24 20:44:42 +0000655 Latches.push_back(New);
656
Dan Gohman04c8bd72008-06-24 20:44:42 +0000657 NewBlocks.push_back(New);
Michael Zolotukhin73957172016-02-05 02:17:36 +0000658 UnrolledLoopBlocks.push_back(New);
Michael Zolotukhinde19ed12016-02-23 00:30:50 +0000659
660 // Update DomTree: since we just copy the loop body, and each copy has a
661 // dedicated entry block (copy of the header block), this header's copy
662 // dominates all copied blocks. That means, dominance relations in the
663 // copied body are the same as in the original body.
664 if (DT) {
665 if (*BB == Header)
666 DT->addNewBlock(New, Latches[It - 1]);
667 else {
668 auto BBDomNode = DT->getNode(*BB);
669 auto BBIDom = BBDomNode->getIDom();
670 BasicBlock *OriginalBBIDom = BBIDom->getBlock();
671 DT->addNewBlock(
672 New, cast<BasicBlock>(LastValueMap[cast<Value>(OriginalBBIDom)]));
673 }
674 }
Dan Gohman3dc2d922008-05-14 00:24:14 +0000675 }
Andrew Trick279e7a62011-07-23 00:29:16 +0000676
Dan Gohman3dc2d922008-05-14 00:24:14 +0000677 // Remap all instructions in the most recent iteration
Daniel Jasperaec2fa32016-12-19 08:22:17 +0000678 for (BasicBlock *NewBlock : NewBlocks) {
679 for (Instruction &I : *NewBlock) {
Sanjay Pateleaf06852016-03-08 17:12:32 +0000680 ::remapInstruction(&I, LastValueMap);
Daniel Jasperaec2fa32016-12-19 08:22:17 +0000681 if (auto *II = dyn_cast<IntrinsicInst>(&I))
682 if (II->getIntrinsicID() == Intrinsic::assume)
683 AC->registerAssumption(II);
684 }
685 }
Dan Gohman3dc2d922008-05-14 00:24:14 +0000686 }
Andrew Trick279e7a62011-07-23 00:29:16 +0000687
Andrew Trickb72bbe22011-08-10 00:28:10 +0000688 // Loop over the PHI nodes in the original block, setting incoming values.
Sanjay Pateleaf06852016-03-08 17:12:32 +0000689 for (PHINode *PN : OrigPHINode) {
Andrew Trickb72bbe22011-08-10 00:28:10 +0000690 if (CompletelyUnroll) {
Dan Gohman04c8bd72008-06-24 20:44:42 +0000691 PN->replaceAllUsesWith(PN->getIncomingValueForBlock(Preheader));
692 Header->getInstList().erase(PN);
693 }
Andrew Trickb72bbe22011-08-10 00:28:10 +0000694 else if (Count > 1) {
695 Value *InVal = PN->removeIncomingValue(LatchBlock, false);
696 // If this value was defined in the loop, take the value defined by the
697 // last iteration of the loop.
698 if (Instruction *InValI = dyn_cast<Instruction>(InVal)) {
699 if (L->contains(InValI))
700 InVal = LastValueMap[InVal];
701 }
702 assert(Latches.back() == LastValueMap[LatchBlock] && "bad last latch");
703 PN->addIncoming(InVal, Latches.back());
704 }
Dan Gohman04c8bd72008-06-24 20:44:42 +0000705 }
Dan Gohman3dc2d922008-05-14 00:24:14 +0000706
707 // Now that all the basic blocks for the unrolled iterations are in place,
708 // set up the branches to connect them.
Dan Gohman04c8bd72008-06-24 20:44:42 +0000709 for (unsigned i = 0, e = Latches.size(); i != e; ++i) {
Dan Gohman3dc2d922008-05-14 00:24:14 +0000710 // The original branch was replicated in each unrolled iteration.
Dan Gohman04c8bd72008-06-24 20:44:42 +0000711 BranchInst *Term = cast<BranchInst>(Latches[i]->getTerminator());
Dan Gohman3dc2d922008-05-14 00:24:14 +0000712
713 // The branch destination.
Dan Gohman04c8bd72008-06-24 20:44:42 +0000714 unsigned j = (i + 1) % e;
715 BasicBlock *Dest = Headers[j];
Dan Gohman3dc2d922008-05-14 00:24:14 +0000716 bool NeedConditional = true;
717
Andrew Trickd04d15292011-12-09 06:19:40 +0000718 if (RuntimeTripCount && j != 0) {
719 NeedConditional = false;
720 }
721
Dan Gohman04c8bd72008-06-24 20:44:42 +0000722 // For a complete unroll, make the last iteration end with a branch
723 // to the exit block.
Michael Zolotukhind56ee062015-09-23 23:12:43 +0000724 if (CompletelyUnroll) {
725 if (j == 0)
726 Dest = LoopExit;
Haicheng Wu1ef17e92016-10-12 21:29:38 +0000727 // If using trip count upper bound to completely unroll, we need to keep
728 // the conditional branch except the last one because the loop may exit
729 // after any iteration.
730 assert(NeedConditional &&
731 "NeedCondition cannot be modified by both complete "
732 "unrolling and runtime unrolling");
John Brawn84b21832016-10-21 11:08:48 +0000733 NeedConditional = (PreserveCondBr && j && !(PreserveOnlyFirst && i != 0));
Haicheng Wu1ef17e92016-10-12 21:29:38 +0000734 } else if (j != BreakoutTrip && (TripMultiple == 0 || j % TripMultiple != 0)) {
735 // If we know the trip count or a multiple of it, we can safely use an
736 // unconditional branch for some iterations.
Dan Gohman3dc2d922008-05-14 00:24:14 +0000737 NeedConditional = false;
738 }
739
740 if (NeedConditional) {
741 // Update the conditional branch's successor for the following
742 // iteration.
743 Term->setSuccessor(!ContinueOnTrue, Dest);
744 } else {
Andrew Trickb72bbe22011-08-10 00:28:10 +0000745 // Remove phi operands at this loop exit
746 if (Dest != LoopExit) {
747 BasicBlock *BB = Latches[i];
Sanjay Pateleaf06852016-03-08 17:12:32 +0000748 for (BasicBlock *Succ: successors(BB)) {
749 if (Succ == Headers[i])
Andrew Trickb72bbe22011-08-10 00:28:10 +0000750 continue;
Benjamin Kramerc7fc81e2017-12-30 15:27:33 +0000751 for (PHINode &Phi : Succ->phis())
752 Phi.removeIncomingValue(BB, false);
Andrew Trickb72bbe22011-08-10 00:28:10 +0000753 }
754 }
Jay Foad89afb432011-01-07 20:25:56 +0000755 // Replace the conditional branch with an unconditional one.
756 BranchInst::Create(Dest, Term);
757 Term->eraseFromParent();
Jay Foada97a2c92011-06-21 10:33:19 +0000758 }
759 }
Eli Friedman0a217452017-01-18 23:26:37 +0000760
Michael Zolotukhin97567e12016-04-06 21:47:12 +0000761 // Update dominators of blocks we might reach through exits.
762 // Immediate dominator of such block might change, because we add more
Michael Zolotukhinde19ed12016-02-23 00:30:50 +0000763 // routes which can lead to the exit: we can now reach it from the copied
Eli Friedman0a217452017-01-18 23:26:37 +0000764 // iterations too.
Michael Zolotukhinde19ed12016-02-23 00:30:50 +0000765 if (DT && Count > 1) {
Michael Zolotukhin97567e12016-04-06 21:47:12 +0000766 for (auto *BB : OriginalLoopBlocks) {
767 auto *BBDomNode = DT->getNode(BB);
Michael Zolotukhin56ad4042016-04-07 00:09:42 +0000768 SmallVector<BasicBlock *, 16> ChildrenToUpdate;
Michael Zolotukhin97567e12016-04-06 21:47:12 +0000769 for (auto *ChildDomNode : BBDomNode->getChildren()) {
770 auto *ChildBB = ChildDomNode->getBlock();
Michael Zolotukhin56ad4042016-04-07 00:09:42 +0000771 if (!L->contains(ChildBB))
772 ChildrenToUpdate.push_back(ChildBB);
Michael Zolotukhin97567e12016-04-06 21:47:12 +0000773 }
Eli Friedman0a217452017-01-18 23:26:37 +0000774 BasicBlock *NewIDom;
775 if (BB == LatchBlock) {
776 // The latch is special because we emit unconditional branches in
777 // some cases where the original loop contained a conditional branch.
778 // Since the latch is always at the bottom of the loop, if the latch
779 // dominated an exit before unrolling, the new dominator of that exit
780 // must also be a latch. Specifically, the dominator is the first
781 // latch which ends in a conditional branch, or the last latch if
782 // there is no such latch.
783 NewIDom = Latches.back();
784 for (BasicBlock *IterLatch : Latches) {
785 TerminatorInst *Term = IterLatch->getTerminator();
786 if (isa<BranchInst>(Term) && cast<BranchInst>(Term)->isConditional()) {
787 NewIDom = IterLatch;
788 break;
789 }
790 }
791 } else {
792 // The new idom of the block will be the nearest common dominator
793 // of all copies of the previous idom. This is equivalent to the
794 // nearest common dominator of the previous idom and the first latch,
795 // which dominates all copies of the previous idom.
796 NewIDom = DT->findNearestCommonDominator(BB, LatchBlock);
797 }
Michael Zolotukhin56ad4042016-04-07 00:09:42 +0000798 for (auto *ChildBB : ChildrenToUpdate)
799 DT->changeImmediateDominator(ChildBB, NewIDom);
Michael Zolotukhinde19ed12016-02-23 00:30:50 +0000800 }
801 }
Jay Foada97a2c92011-06-21 10:33:19 +0000802
David Green7c35de12018-02-28 11:00:08 +0000803 assert(!DT || !UnrollVerifyDomtree ||
804 DT->verify(DominatorTree::VerificationLevel::Fast));
Eli Friedman0a217452017-01-18 23:26:37 +0000805
Jay Foad61ea0e42011-06-23 09:09:15 +0000806 // Merge adjacent basic blocks, if possible.
Sanjay Pateleaf06852016-03-08 17:12:32 +0000807 for (BasicBlock *Latch : Latches) {
808 BranchInst *Term = cast<BranchInst>(Latch->getTerminator());
Jay Foad61ea0e42011-06-23 09:09:15 +0000809 if (Term->isUnconditional()) {
810 BasicBlock *Dest = Term->getSuccessor(0);
Max Kazantseva5574932018-03-26 11:31:46 +0000811 if (BasicBlock *Fold = foldBlockIntoPredecessor(Dest, LI, SE, DT)) {
Michael Zolotukhin73957172016-02-05 02:17:36 +0000812 // Dest has been folded into Fold. Update our worklists accordingly.
Jay Foad61ea0e42011-06-23 09:09:15 +0000813 std::replace(Latches.begin(), Latches.end(), Dest, Fold);
Michael Zolotukhin73957172016-02-05 02:17:36 +0000814 UnrolledLoopBlocks.erase(std::remove(UnrolledLoopBlocks.begin(),
815 UnrolledLoopBlocks.end(), Dest),
816 UnrolledLoopBlocks.end());
817 }
Jay Foad61ea0e42011-06-23 09:09:15 +0000818 }
819 }
Andrew Trick279e7a62011-07-23 00:29:16 +0000820
David Greencdee1d92018-05-16 10:41:58 +0000821 // At this point, the code is well formed. We now simplify the unrolled loop,
822 // doing constant propagation and dead code elimination as we go.
823 simplifyLoopAfterUnroll(L, !CompletelyUnroll && (Count > 1 || Peeled), LI, SE,
824 DT, AC);
Philip Reamesfac031a2016-12-30 22:10:19 +0000825
Dan Gohman3dc2d922008-05-14 00:24:14 +0000826 NumCompletelyUnrolled += CompletelyUnroll;
827 ++NumUnrolled;
Chandler Carruthaa7fa5e2014-01-23 11:23:19 +0000828
829 Loop *OuterL = L->getParentLoop();
Justin Bogner883a3ea2015-12-16 18:40:20 +0000830 // Update LoopInfo if the loop is completely removed.
831 if (CompletelyUnroll)
Sanjoy Das388b0122017-09-22 01:47:41 +0000832 LI->erase(L);
Dan Gohman3dc2d922008-05-14 00:24:14 +0000833
Michael Zolotukhin73957172016-02-05 02:17:36 +0000834 // After complete unrolling most of the blocks should be contained in OuterL.
835 // However, some of them might happen to be out of OuterL (e.g. if they
836 // precede a loop exit). In this case we might need to insert PHI nodes in
837 // order to preserve LCSSA form.
838 // We don't need to check this if we already know that we need to fix LCSSA
839 // form.
840 // TODO: For now we just recompute LCSSA for the outer loop in this case, but
841 // it should be possible to fix it in-place.
842 if (PreserveLCSSA && OuterL && CompletelyUnroll && !NeedToFixLCSSA)
843 NeedToFixLCSSA |= ::needToInsertPhisForLCSSA(OuterL, UnrolledLoopBlocks, LI);
844
Chandler Carruthaa7fa5e2014-01-23 11:23:19 +0000845 // If we have a pass and a DominatorTree we should re-simplify impacted loops
846 // to ensure subsequent analyses can rely on this form. We want to simplify
847 // at least one layer outside of the loop that was unrolled so that any
848 // changes to the parent loop exposed by the unrolling are considered.
Justin Bogner843fb202015-12-15 19:40:57 +0000849 if (DT) {
Chandler Carruthd84f7762014-01-28 01:25:38 +0000850 if (OuterL) {
Michael Zolotukhin2f507252016-08-08 19:02:15 +0000851 // OuterL includes all loops for which we can break loop-simplify, so
852 // it's sufficient to simplify only it (it'll recursively simplify inner
853 // loops too).
Michael Kuperstein461aa572017-01-23 23:45:42 +0000854 if (NeedToFixLCSSA) {
855 // LCSSA must be performed on the outermost affected loop. The unrolled
856 // loop's last loop latch is guaranteed to be in the outermost loop
Sanjoy Das388b0122017-09-22 01:47:41 +0000857 // after LoopInfo's been updated by LoopInfo::erase.
Michael Kuperstein461aa572017-01-23 23:45:42 +0000858 Loop *LatchLoop = LI->getLoopFor(Latches.back());
859 Loop *FixLCSSALoop = OuterL;
860 if (!FixLCSSALoop->contains(LatchLoop))
861 while (FixLCSSALoop->getParentLoop() != LatchLoop)
862 FixLCSSALoop = FixLCSSALoop->getParentLoop();
Dinesh Dwivedid266cb12014-05-29 06:47:23 +0000863
Michael Kuperstein461aa572017-01-23 23:45:42 +0000864 formLCSSARecursively(*FixLCSSALoop, *DT, LI, SE);
865 } else if (PreserveLCSSA) {
Michael Zolotukhin78760ee2015-12-09 18:20:28 +0000866 assert(OuterL->isLCSSAForm(*DT) &&
867 "Loops should be in LCSSA form after loop-unroll.");
Michael Kuperstein461aa572017-01-23 23:45:42 +0000868 }
869
870 // TODO: That potentially might be compile-time expensive. We should try
871 // to fix the loop-simplified form incrementally.
872 simplifyLoop(OuterL, DT, LI, SE, AC, PreserveLCSSA);
Michael Zolotukhin2f507252016-08-08 19:02:15 +0000873 } else {
874 // Simplify loops for which we might've broken loop-simplify form.
875 for (Loop *SubLoop : LoopsToSimplify)
Daniel Jasperaec2fa32016-12-19 08:22:17 +0000876 simplifyLoop(SubLoop, DT, LI, SE, AC, PreserveLCSSA);
Chandler Carruthd84f7762014-01-28 01:25:38 +0000877 }
Chandler Carruthaa7fa5e2014-01-23 11:23:19 +0000878 }
879
Sanjoy Das3567d3d2017-09-27 21:45:19 +0000880 return CompletelyUnroll ? LoopUnrollResult::FullyUnrolled
881 : LoopUnrollResult::PartiallyUnrolled;
Dan Gohman3dc2d922008-05-14 00:24:14 +0000882}
Jingyue Wu0220df02015-02-01 02:27:45 +0000883
884/// Given an llvm.loop loop id metadata node, returns the loop hint metadata
885/// node with the given name (for example, "llvm.loop.unroll.count"). If no
886/// such metadata node exists, then nullptr is returned.
Jingyue Wu49a766e2015-02-02 20:41:11 +0000887MDNode *llvm::GetUnrollMetadata(MDNode *LoopID, StringRef Name) {
Jingyue Wu0220df02015-02-01 02:27:45 +0000888 // First operand should refer to the loop id itself.
889 assert(LoopID->getNumOperands() > 0 && "requires at least one operand");
Jingyue Wu49a766e2015-02-02 20:41:11 +0000890 assert(LoopID->getOperand(0) == LoopID && "invalid loop id");
Jingyue Wu0220df02015-02-01 02:27:45 +0000891
892 for (unsigned i = 1, e = LoopID->getNumOperands(); i < e; ++i) {
Jingyue Wu49a766e2015-02-02 20:41:11 +0000893 MDNode *MD = dyn_cast<MDNode>(LoopID->getOperand(i));
Jingyue Wu0220df02015-02-01 02:27:45 +0000894 if (!MD)
895 continue;
896
Jingyue Wu49a766e2015-02-02 20:41:11 +0000897 MDString *S = dyn_cast<MDString>(MD->getOperand(0));
Jingyue Wu0220df02015-02-01 02:27:45 +0000898 if (!S)
899 continue;
900
901 if (Name.equals(S->getString()))
902 return MD;
903 }
904 return nullptr;
905}