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Andrew Trickd04d15292011-12-09 06:19:40 +00001//===-- UnrollLoopRuntime.cpp - Runtime 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 for loops with run-time
11// trip counts. See LoopUnroll.cpp for unrolling loops with compile-time
12// trip counts.
13//
Jakub Staszak1b1d5232011-12-18 21:52:30 +000014// The functions in this file are used to generate extra code when the
Andrew Trickd04d15292011-12-09 06:19:40 +000015// run-time trip count modulo the unroll factor is not 0. When this is the
16// case, we need to generate code to execute these 'left over' iterations.
17//
Jakub Staszak1b1d5232011-12-18 21:52:30 +000018// The current strategy generates an if-then-else sequence prior to the
David L Kreitzer188de5a2016-04-05 12:19:35 +000019// unrolled loop to execute the 'left over' iterations before or after the
20// unrolled loop.
Andrew Trickd04d15292011-12-09 06:19:40 +000021//
22//===----------------------------------------------------------------------===//
23
Andrew Trickd04d15292011-12-09 06:19:40 +000024#include "llvm/ADT/Statistic.h"
Anna Thomasec9b3262017-07-13 13:21:23 +000025#include "llvm/ADT/SmallSet.h"
Chandler Carruthb5797b62015-01-18 09:21:15 +000026#include "llvm/Analysis/AliasAnalysis.h"
Andrew Trickd04d15292011-12-09 06:19:40 +000027#include "llvm/Analysis/LoopIterator.h"
Andrew Trickd04d15292011-12-09 06:19:40 +000028#include "llvm/Analysis/ScalarEvolution.h"
29#include "llvm/Analysis/ScalarEvolutionExpander.h"
Chandler Carruth9fb823b2013-01-02 11:36:10 +000030#include "llvm/IR/BasicBlock.h"
Chandler Carruth32c52c72015-01-18 02:39:37 +000031#include "llvm/IR/Dominators.h"
Kevin Qinfc02e3c2014-09-29 11:15:00 +000032#include "llvm/IR/Metadata.h"
Mehdi Aminia28d91d2015-03-10 02:37:25 +000033#include "llvm/IR/Module.h"
Andrew Trickd04d15292011-12-09 06:19:40 +000034#include "llvm/Support/Debug.h"
35#include "llvm/Support/raw_ostream.h"
Chandler Carruthb5797b62015-01-18 09:21:15 +000036#include "llvm/Transforms/Scalar.h"
Andrew Trickd04d15292011-12-09 06:19:40 +000037#include "llvm/Transforms/Utils/BasicBlockUtils.h"
38#include "llvm/Transforms/Utils/Cloning.h"
Anna Thomase5e5e592017-06-30 17:57:07 +000039#include "llvm/Transforms/Utils/LoopUtils.h"
Chandler Carruth6bda14b2017-06-06 11:49:48 +000040#include "llvm/Transforms/Utils/UnrollLoop.h"
Andrew Trickd04d15292011-12-09 06:19:40 +000041#include <algorithm>
42
43using namespace llvm;
44
Chandler Carruth964daaa2014-04-22 02:55:47 +000045#define DEBUG_TYPE "loop-unroll"
46
Jakub Staszak1b1d5232011-12-18 21:52:30 +000047STATISTIC(NumRuntimeUnrolled,
Andrew Trickd04d15292011-12-09 06:19:40 +000048 "Number of loops unrolled with run-time trip counts");
Anna Thomase5e5e592017-06-30 17:57:07 +000049static cl::opt<bool> UnrollRuntimeMultiExit(
50 "unroll-runtime-multi-exit", cl::init(false), cl::Hidden,
51 cl::desc("Allow runtime unrolling for loops with multiple exits, when "
52 "epilog is generated"));
Andrew Trickd04d15292011-12-09 06:19:40 +000053
54/// Connect the unrolling prolog code to the original loop.
55/// The unrolling prolog code contains code to execute the
56/// 'extra' iterations if the run-time trip count modulo the
57/// unroll count is non-zero.
58///
59/// This function performs the following:
60/// - Create PHI nodes at prolog end block to combine values
61/// that exit the prolog code and jump around the prolog.
62/// - Add a PHI operand to a PHI node at the loop exit block
63/// for values that exit the prolog and go around the loop.
64/// - Branch around the original loop if the trip count is less
65/// than the unroll factor.
66///
Sanjoy Das11b279a2015-02-18 19:32:25 +000067static void ConnectProlog(Loop *L, Value *BECount, unsigned Count,
Anna Thomas734ab3f2017-07-07 18:05:28 +000068 BasicBlock *PrologExit,
69 BasicBlock *OriginalLoopLatchExit,
70 BasicBlock *PreHeader, BasicBlock *NewPreHeader,
71 ValueToValueMapTy &VMap, DominatorTree *DT,
72 LoopInfo *LI, bool PreserveLCSSA) {
Andrew Trickd04d15292011-12-09 06:19:40 +000073 BasicBlock *Latch = L->getLoopLatch();
Craig Toppere73658d2014-04-28 04:05:08 +000074 assert(Latch && "Loop must have a latch");
David L Kreitzer188de5a2016-04-05 12:19:35 +000075 BasicBlock *PrologLatch = cast<BasicBlock>(VMap[Latch]);
Andrew Trickd04d15292011-12-09 06:19:40 +000076
77 // Create a PHI node for each outgoing value from the original loop
78 // (which means it is an outgoing value from the prolog code too).
79 // The new PHI node is inserted in the prolog end basic block.
David L Kreitzer188de5a2016-04-05 12:19:35 +000080 // The new PHI node value is added as an operand of a PHI node in either
Andrew Trickd04d15292011-12-09 06:19:40 +000081 // the loop header or the loop exit block.
David L Kreitzer188de5a2016-04-05 12:19:35 +000082 for (BasicBlock *Succ : successors(Latch)) {
83 for (Instruction &BBI : *Succ) {
84 PHINode *PN = dyn_cast<PHINode>(&BBI);
85 // Exit when we passed all PHI nodes.
86 if (!PN)
87 break;
Andrew Trickd04d15292011-12-09 06:19:40 +000088 // Add a new PHI node to the prolog end block and add the
89 // appropriate incoming values.
David L Kreitzer188de5a2016-04-05 12:19:35 +000090 PHINode *NewPN = PHINode::Create(PN->getType(), 2, PN->getName() + ".unr",
91 PrologExit->getFirstNonPHI());
Andrew Trickd04d15292011-12-09 06:19:40 +000092 // Adding a value to the new PHI node from the original loop preheader.
93 // This is the value that skips all the prolog code.
94 if (L->contains(PN)) {
David L Kreitzer188de5a2016-04-05 12:19:35 +000095 NewPN->addIncoming(PN->getIncomingValueForBlock(NewPreHeader),
96 PreHeader);
Andrew Trickd04d15292011-12-09 06:19:40 +000097 } else {
David L Kreitzer188de5a2016-04-05 12:19:35 +000098 NewPN->addIncoming(UndefValue::get(PN->getType()), PreHeader);
Andrew Trickd04d15292011-12-09 06:19:40 +000099 }
Jakub Staszak1b1d5232011-12-18 21:52:30 +0000100
101 Value *V = PN->getIncomingValueForBlock(Latch);
Andrew Trickd04d15292011-12-09 06:19:40 +0000102 if (Instruction *I = dyn_cast<Instruction>(V)) {
103 if (L->contains(I)) {
Duncan P. N. Exon Smitha71301b2016-04-17 19:26:49 +0000104 V = VMap.lookup(I);
Andrew Trickd04d15292011-12-09 06:19:40 +0000105 }
106 }
107 // Adding a value to the new PHI node from the last prolog block
108 // that was created.
David L Kreitzer188de5a2016-04-05 12:19:35 +0000109 NewPN->addIncoming(V, PrologLatch);
Andrew Trickd04d15292011-12-09 06:19:40 +0000110
111 // Update the existing PHI node operand with the value from the
112 // new PHI node. How this is done depends on if the existing
113 // PHI node is in the original loop block, or the exit block.
114 if (L->contains(PN)) {
David L Kreitzer188de5a2016-04-05 12:19:35 +0000115 PN->setIncomingValue(PN->getBasicBlockIndex(NewPreHeader), NewPN);
Andrew Trickd04d15292011-12-09 06:19:40 +0000116 } else {
David L Kreitzer188de5a2016-04-05 12:19:35 +0000117 PN->addIncoming(NewPN, PrologExit);
Andrew Trickd04d15292011-12-09 06:19:40 +0000118 }
119 }
120 }
121
Michael Zolotukhind9b6ad32016-08-02 19:19:31 +0000122 // Make sure that created prolog loop is in simplified form
123 SmallVector<BasicBlock *, 4> PrologExitPreds;
124 Loop *PrologLoop = LI->getLoopFor(PrologLatch);
125 if (PrologLoop) {
126 for (BasicBlock *PredBB : predecessors(PrologExit))
127 if (PrologLoop->contains(PredBB))
128 PrologExitPreds.push_back(PredBB);
129
130 SplitBlockPredecessors(PrologExit, PrologExitPreds, ".unr-lcssa", DT, LI,
131 PreserveLCSSA);
132 }
133
Sanjay Patele08381a2016-02-08 19:27:33 +0000134 // Create a branch around the original loop, which is taken if there are no
Sanjoy Das11b279a2015-02-18 19:32:25 +0000135 // iterations remaining to be executed after running the prologue.
David L Kreitzer188de5a2016-04-05 12:19:35 +0000136 Instruction *InsertPt = PrologExit->getTerminator();
Alexey Samsonovea201992015-06-11 18:25:44 +0000137 IRBuilder<> B(InsertPt);
Sanjoy Das11b279a2015-02-18 19:32:25 +0000138
139 assert(Count != 0 && "nonsensical Count!");
140
David L Kreitzer8d441eb2016-03-25 14:24:52 +0000141 // If BECount <u (Count - 1) then (BECount + 1) % Count == (BECount + 1)
142 // This means %xtraiter is (BECount + 1) and all of the iterations of this
143 // loop were executed by the prologue. Note that if BECount <u (Count - 1)
144 // then (BECount + 1) cannot unsigned-overflow.
Alexey Samsonovea201992015-06-11 18:25:44 +0000145 Value *BrLoopExit =
146 B.CreateICmpULT(BECount, ConstantInt::get(BECount->getType(), Count - 1));
Andrew Trickd04d15292011-12-09 06:19:40 +0000147 // Split the exit to maintain loop canonicalization guarantees
Anna Thomas734ab3f2017-07-07 18:05:28 +0000148 SmallVector<BasicBlock *, 4> Preds(predecessors(OriginalLoopLatchExit));
149 SplitBlockPredecessors(OriginalLoopLatchExit, Preds, ".unr-lcssa", DT, LI,
Justin Bogner843fb202015-12-15 19:40:57 +0000150 PreserveLCSSA);
Andrew Trickd04d15292011-12-09 06:19:40 +0000151 // Add the branch to the exit block (around the unrolled loop)
Anna Thomas734ab3f2017-07-07 18:05:28 +0000152 B.CreateCondBr(BrLoopExit, OriginalLoopLatchExit, NewPreHeader);
David L Kreitzer188de5a2016-04-05 12:19:35 +0000153 InsertPt->eraseFromParent();
Eli Friedman0a217452017-01-18 23:26:37 +0000154 if (DT)
Anna Thomas734ab3f2017-07-07 18:05:28 +0000155 DT->changeImmediateDominator(OriginalLoopLatchExit, PrologExit);
David L Kreitzer188de5a2016-04-05 12:19:35 +0000156}
157
158/// Connect the unrolling epilog code to the original loop.
159/// The unrolling epilog code contains code to execute the
160/// 'extra' iterations if the run-time trip count modulo the
161/// unroll count is non-zero.
162///
163/// This function performs the following:
164/// - Update PHI nodes at the unrolling loop exit and epilog loop exit
165/// - Create PHI nodes at the unrolling loop exit to combine
166/// values that exit the unrolling loop code and jump around it.
167/// - Update PHI operands in the epilog loop by the new PHI nodes
168/// - Branch around the epilog loop if extra iters (ModVal) is zero.
169///
170static void ConnectEpilog(Loop *L, Value *ModVal, BasicBlock *NewExit,
171 BasicBlock *Exit, BasicBlock *PreHeader,
172 BasicBlock *EpilogPreHeader, BasicBlock *NewPreHeader,
173 ValueToValueMapTy &VMap, DominatorTree *DT,
174 LoopInfo *LI, bool PreserveLCSSA) {
175 BasicBlock *Latch = L->getLoopLatch();
176 assert(Latch && "Loop must have a latch");
177 BasicBlock *EpilogLatch = cast<BasicBlock>(VMap[Latch]);
178
179 // Loop structure should be the following:
180 //
181 // PreHeader
182 // NewPreHeader
183 // Header
184 // ...
185 // Latch
186 // NewExit (PN)
187 // EpilogPreHeader
188 // EpilogHeader
189 // ...
190 // EpilogLatch
191 // Exit (EpilogPN)
192
193 // Update PHI nodes at NewExit and Exit.
194 for (Instruction &BBI : *NewExit) {
195 PHINode *PN = dyn_cast<PHINode>(&BBI);
196 // Exit when we passed all PHI nodes.
197 if (!PN)
198 break;
199 // PN should be used in another PHI located in Exit block as
200 // Exit was split by SplitBlockPredecessors into Exit and NewExit
201 // Basicaly it should look like:
202 // NewExit:
203 // PN = PHI [I, Latch]
204 // ...
205 // Exit:
206 // EpilogPN = PHI [PN, EpilogPreHeader]
207 //
208 // There is EpilogPreHeader incoming block instead of NewExit as
209 // NewExit was spilt 1 more time to get EpilogPreHeader.
210 assert(PN->hasOneUse() && "The phi should have 1 use");
211 PHINode *EpilogPN = cast<PHINode> (PN->use_begin()->getUser());
212 assert(EpilogPN->getParent() == Exit && "EpilogPN should be in Exit block");
213
214 // Add incoming PreHeader from branch around the Loop
215 PN->addIncoming(UndefValue::get(PN->getType()), PreHeader);
216
217 Value *V = PN->getIncomingValueForBlock(Latch);
218 Instruction *I = dyn_cast<Instruction>(V);
219 if (I && L->contains(I))
220 // If value comes from an instruction in the loop add VMap value.
Duncan P. N. Exon Smitha71301b2016-04-17 19:26:49 +0000221 V = VMap.lookup(I);
David L Kreitzer188de5a2016-04-05 12:19:35 +0000222 // For the instruction out of the loop, constant or undefined value
223 // insert value itself.
224 EpilogPN->addIncoming(V, EpilogLatch);
225
226 assert(EpilogPN->getBasicBlockIndex(EpilogPreHeader) >= 0 &&
227 "EpilogPN should have EpilogPreHeader incoming block");
228 // Change EpilogPreHeader incoming block to NewExit.
229 EpilogPN->setIncomingBlock(EpilogPN->getBasicBlockIndex(EpilogPreHeader),
230 NewExit);
231 // Now PHIs should look like:
232 // NewExit:
233 // PN = PHI [I, Latch], [undef, PreHeader]
234 // ...
235 // Exit:
236 // EpilogPN = PHI [PN, NewExit], [VMap[I], EpilogLatch]
237 }
238
239 // Create PHI nodes at NewExit (from the unrolling loop Latch and PreHeader).
240 // Update corresponding PHI nodes in epilog loop.
241 for (BasicBlock *Succ : successors(Latch)) {
242 // Skip this as we already updated phis in exit blocks.
243 if (!L->contains(Succ))
244 continue;
245 for (Instruction &BBI : *Succ) {
246 PHINode *PN = dyn_cast<PHINode>(&BBI);
247 // Exit when we passed all PHI nodes.
248 if (!PN)
249 break;
250 // Add new PHI nodes to the loop exit block and update epilog
251 // PHIs with the new PHI values.
252 PHINode *NewPN = PHINode::Create(PN->getType(), 2, PN->getName() + ".unr",
253 NewExit->getFirstNonPHI());
254 // Adding a value to the new PHI node from the unrolling loop preheader.
255 NewPN->addIncoming(PN->getIncomingValueForBlock(NewPreHeader), PreHeader);
256 // Adding a value to the new PHI node from the unrolling loop latch.
257 NewPN->addIncoming(PN->getIncomingValueForBlock(Latch), Latch);
258
259 // Update the existing PHI node operand with the value from the new PHI
260 // node. Corresponding instruction in epilog loop should be PHI.
261 PHINode *VPN = cast<PHINode>(VMap[&BBI]);
262 VPN->setIncomingValue(VPN->getBasicBlockIndex(EpilogPreHeader), NewPN);
263 }
264 }
265
266 Instruction *InsertPt = NewExit->getTerminator();
267 IRBuilder<> B(InsertPt);
Evgeny Stupachenko23ce61b2016-04-27 03:04:54 +0000268 Value *BrLoopExit = B.CreateIsNotNull(ModVal, "lcmp.mod");
David L Kreitzer188de5a2016-04-05 12:19:35 +0000269 assert(Exit && "Loop must have a single exit block only");
Eli Friedman0a217452017-01-18 23:26:37 +0000270 // Split the epilogue exit to maintain loop canonicalization guarantees
David L Kreitzer188de5a2016-04-05 12:19:35 +0000271 SmallVector<BasicBlock*, 4> Preds(predecessors(Exit));
272 SplitBlockPredecessors(Exit, Preds, ".epilog-lcssa", DT, LI,
273 PreserveLCSSA);
274 // Add the branch to the exit block (around the unrolling loop)
275 B.CreateCondBr(BrLoopExit, EpilogPreHeader, Exit);
Andrew Trickd04d15292011-12-09 06:19:40 +0000276 InsertPt->eraseFromParent();
Eli Friedman0a217452017-01-18 23:26:37 +0000277 if (DT)
278 DT->changeImmediateDominator(Exit, NewExit);
279
280 // Split the main loop exit to maintain canonicalization guarantees.
281 SmallVector<BasicBlock*, 4> NewExitPreds{Latch};
282 SplitBlockPredecessors(NewExit, NewExitPreds, ".loopexit", DT, LI,
283 PreserveLCSSA);
Andrew Trickd04d15292011-12-09 06:19:40 +0000284}
285
286/// Create a clone of the blocks in a loop and connect them together.
David L Kreitzer188de5a2016-04-05 12:19:35 +0000287/// If CreateRemainderLoop is false, loop structure will not be cloned,
288/// otherwise a new loop will be created including all cloned blocks, and the
289/// iterator of it switches to count NewIter down to 0.
290/// The cloned blocks should be inserted between InsertTop and InsertBot.
291/// If loop structure is cloned InsertTop should be new preheader, InsertBot
292/// new loop exit.
Anna Thomase5e5e592017-06-30 17:57:07 +0000293/// Return the new cloned loop that is created when CreateRemainderLoop is true.
294static Loop *
295CloneLoopBlocks(Loop *L, Value *NewIter, const bool CreateRemainderLoop,
Sam Parker718c8a62017-08-14 09:25:26 +0000296 const bool UseEpilogRemainder, const bool UnrollRemainder,
297 BasicBlock *InsertTop,
Anna Thomase5e5e592017-06-30 17:57:07 +0000298 BasicBlock *InsertBot, BasicBlock *Preheader,
299 std::vector<BasicBlock *> &NewBlocks, LoopBlocksDFS &LoopBlocks,
300 ValueToValueMapTy &VMap, DominatorTree *DT, LoopInfo *LI) {
David L Kreitzer188de5a2016-04-05 12:19:35 +0000301 StringRef suffix = UseEpilogRemainder ? "epil" : "prol";
Andrew Trickd04d15292011-12-09 06:19:40 +0000302 BasicBlock *Header = L->getHeader();
303 BasicBlock *Latch = L->getLoopLatch();
304 Function *F = Header->getParent();
305 LoopBlocksDFS::RPOIterator BlockBegin = LoopBlocks.beginRPO();
306 LoopBlocksDFS::RPOIterator BlockEnd = LoopBlocks.endRPO();
Kevin Qinfc02e3c2014-09-29 11:15:00 +0000307 Loop *ParentLoop = L->getParentLoop();
Florian Hahn4f9d6d52017-01-10 23:43:35 +0000308 NewLoopsMap NewLoops;
Florian Hahn5364cf32017-01-31 11:13:44 +0000309 NewLoops[ParentLoop] = ParentLoop;
310 if (!CreateRemainderLoop)
Michael Kuperstein5dd55e82017-01-26 01:04:11 +0000311 NewLoops[L] = ParentLoop;
312
Andrew Trickd04d15292011-12-09 06:19:40 +0000313 // For each block in the original loop, create a new copy,
314 // and update the value map with the newly created values.
315 for (LoopBlocksDFS::RPOIterator BB = BlockBegin; BB != BlockEnd; ++BB) {
David L Kreitzer188de5a2016-04-05 12:19:35 +0000316 BasicBlock *NewBB = CloneBasicBlock(*BB, VMap, "." + suffix, F);
Andrew Trickd04d15292011-12-09 06:19:40 +0000317 NewBlocks.push_back(NewBB);
Florian Hahn5364cf32017-01-31 11:13:44 +0000318
Michael Kuperstein5dd55e82017-01-26 01:04:11 +0000319 // If we're unrolling the outermost loop, there's no remainder loop,
320 // and this block isn't in a nested loop, then the new block is not
321 // in any loop. Otherwise, add it to loopinfo.
322 if (CreateRemainderLoop || LI->getLoopFor(*BB) != L || ParentLoop)
Florian Hahn4f9d6d52017-01-10 23:43:35 +0000323 addClonedBlockToLoopInfo(*BB, NewBB, LI, NewLoops);
Andrew Trickd04d15292011-12-09 06:19:40 +0000324
325 VMap[*BB] = NewBB;
326 if (Header == *BB) {
327 // For the first block, add a CFG connection to this newly
Kevin Qinfc02e3c2014-09-29 11:15:00 +0000328 // created block.
Andrew Trickd04d15292011-12-09 06:19:40 +0000329 InsertTop->getTerminator()->setSuccessor(0, NewBB);
Kevin Qinfc02e3c2014-09-29 11:15:00 +0000330 }
Junmo Park502ff662016-01-28 01:23:18 +0000331
Eli Friedman0a217452017-01-18 23:26:37 +0000332 if (DT) {
333 if (Header == *BB) {
334 // The header is dominated by the preheader.
335 DT->addNewBlock(NewBB, InsertTop);
336 } else {
337 // Copy information from original loop to unrolled loop.
338 BasicBlock *IDomBB = DT->getNode(*BB)->getIDom()->getBlock();
339 DT->addNewBlock(NewBB, cast<BasicBlock>(VMap[IDomBB]));
340 }
341 }
342
Kevin Qinfc02e3c2014-09-29 11:15:00 +0000343 if (Latch == *BB) {
David L Kreitzer188de5a2016-04-05 12:19:35 +0000344 // For the last block, if CreateRemainderLoop is false, create a direct
345 // jump to InsertBot. If not, create a loop back to cloned head.
Kevin Qinfc02e3c2014-09-29 11:15:00 +0000346 VMap.erase((*BB)->getTerminator());
347 BasicBlock *FirstLoopBB = cast<BasicBlock>(VMap[Header]);
348 BranchInst *LatchBR = cast<BranchInst>(NewBB->getTerminator());
Alexey Samsonovea201992015-06-11 18:25:44 +0000349 IRBuilder<> Builder(LatchBR);
David L Kreitzer188de5a2016-04-05 12:19:35 +0000350 if (!CreateRemainderLoop) {
Alexey Samsonovea201992015-06-11 18:25:44 +0000351 Builder.CreateBr(InsertBot);
Kevin Qinfc02e3c2014-09-29 11:15:00 +0000352 } else {
David L Kreitzer188de5a2016-04-05 12:19:35 +0000353 PHINode *NewIdx = PHINode::Create(NewIter->getType(), 2,
354 suffix + ".iter",
Kevin Qinfc02e3c2014-09-29 11:15:00 +0000355 FirstLoopBB->getFirstNonPHI());
Kevin Qinfc02e3c2014-09-29 11:15:00 +0000356 Value *IdxSub =
357 Builder.CreateSub(NewIdx, ConstantInt::get(NewIdx->getType(), 1),
358 NewIdx->getName() + ".sub");
359 Value *IdxCmp =
360 Builder.CreateIsNotNull(IdxSub, NewIdx->getName() + ".cmp");
Alexey Samsonovea201992015-06-11 18:25:44 +0000361 Builder.CreateCondBr(IdxCmp, FirstLoopBB, InsertBot);
Kevin Qinfc02e3c2014-09-29 11:15:00 +0000362 NewIdx->addIncoming(NewIter, InsertTop);
363 NewIdx->addIncoming(IdxSub, NewBB);
Kevin Qinfc02e3c2014-09-29 11:15:00 +0000364 }
Alexey Samsonovea201992015-06-11 18:25:44 +0000365 LatchBR->eraseFromParent();
Kevin Qinfc02e3c2014-09-29 11:15:00 +0000366 }
367 }
368
369 // Change the incoming values to the ones defined in the preheader or
370 // cloned loop.
371 for (BasicBlock::iterator I = Header->begin(); isa<PHINode>(I); ++I) {
Duncan P. N. Exon Smith5b4c8372015-10-13 02:39:05 +0000372 PHINode *NewPHI = cast<PHINode>(VMap[&*I]);
David L Kreitzer188de5a2016-04-05 12:19:35 +0000373 if (!CreateRemainderLoop) {
374 if (UseEpilogRemainder) {
375 unsigned idx = NewPHI->getBasicBlockIndex(Preheader);
376 NewPHI->setIncomingBlock(idx, InsertTop);
377 NewPHI->removeIncomingValue(Latch, false);
378 } else {
379 VMap[&*I] = NewPHI->getIncomingValueForBlock(Preheader);
380 cast<BasicBlock>(VMap[Header])->getInstList().erase(NewPHI);
381 }
Kevin Qinfc02e3c2014-09-29 11:15:00 +0000382 } else {
383 unsigned idx = NewPHI->getBasicBlockIndex(Preheader);
384 NewPHI->setIncomingBlock(idx, InsertTop);
385 BasicBlock *NewLatch = cast<BasicBlock>(VMap[Latch]);
386 idx = NewPHI->getBasicBlockIndex(Latch);
387 Value *InVal = NewPHI->getIncomingValue(idx);
388 NewPHI->setIncomingBlock(idx, NewLatch);
Duncan P. N. Exon Smitha71301b2016-04-17 19:26:49 +0000389 if (Value *V = VMap.lookup(InVal))
390 NewPHI->setIncomingValue(idx, V);
Kevin Qinfc02e3c2014-09-29 11:15:00 +0000391 }
392 }
Florian Hahn5364cf32017-01-31 11:13:44 +0000393 if (CreateRemainderLoop) {
394 Loop *NewLoop = NewLoops[L];
395 assert(NewLoop && "L should have been cloned");
Sam Parker7cd826a2017-09-04 08:12:16 +0000396
397 // Only add loop metadata if the loop is not going to be completely
398 // unrolled.
399 if (UnrollRemainder)
400 return NewLoop;
401
Kevin Qinfc02e3c2014-09-29 11:15:00 +0000402 // Add unroll disable metadata to disable future unrolling for this loop.
Hongbin Zheng73f65042017-10-15 07:31:02 +0000403 NewLoop->setLoopAlreadyUnrolled();
Anna Thomase5e5e592017-06-30 17:57:07 +0000404 return NewLoop;
Andrew Trickd04d15292011-12-09 06:19:40 +0000405 }
Anna Thomase5e5e592017-06-30 17:57:07 +0000406 else
407 return nullptr;
Andrew Trickd04d15292011-12-09 06:19:40 +0000408}
409
Anna Thomas8e431a92017-07-12 20:55:43 +0000410/// Returns true if we can safely unroll a multi-exit/exiting loop. OtherExits
411/// is populated with all the loop exit blocks other than the LatchExit block.
412static bool
413canSafelyUnrollMultiExitLoop(Loop *L, SmallVectorImpl<BasicBlock *> &OtherExits,
414 BasicBlock *LatchExit, bool PreserveLCSSA,
415 bool UseEpilogRemainder) {
416
Anna Thomas5c07a4c2017-07-21 16:30:38 +0000417 // We currently have some correctness constrains in unrolling a multi-exit
418 // loop. Check for these below.
419
Anna Thomas8e431a92017-07-12 20:55:43 +0000420 // We rely on LCSSA form being preserved when the exit blocks are transformed.
421 if (!PreserveLCSSA)
422 return false;
423 SmallVector<BasicBlock *, 4> Exits;
424 L->getUniqueExitBlocks(Exits);
425 for (auto *BB : Exits)
426 if (BB != LatchExit)
427 OtherExits.push_back(BB);
428
429 // TODO: Support multiple exiting blocks jumping to the `LatchExit` when
430 // UnrollRuntimeMultiExit is true. This will need updating the logic in
431 // connectEpilog/connectProlog.
432 if (!LatchExit->getSinglePredecessor()) {
433 DEBUG(dbgs() << "Bailout for multi-exit handling when latch exit has >1 "
434 "predecessor.\n");
435 return false;
436 }
437 // FIXME: We bail out of multi-exit unrolling when epilog loop is generated
438 // and L is an inner loop. This is because in presence of multiple exits, the
439 // outer loop is incorrect: we do not add the EpilogPreheader and exit to the
440 // outer loop. This is automatically handled in the prolog case, so we do not
441 // have that bug in prolog generation.
442 if (UseEpilogRemainder && L->getParentLoop())
443 return false;
444
445 // All constraints have been satisfied.
446 return true;
447}
448
Anna Thomas5c07a4c2017-07-21 16:30:38 +0000449/// Returns true if we can profitably unroll the multi-exit loop L. Currently,
450/// we return true only if UnrollRuntimeMultiExit is set to true.
451static bool canProfitablyUnrollMultiExitLoop(
452 Loop *L, SmallVectorImpl<BasicBlock *> &OtherExits, BasicBlock *LatchExit,
453 bool PreserveLCSSA, bool UseEpilogRemainder) {
Anna Thomas8e431a92017-07-12 20:55:43 +0000454
Anna Thomas5c07a4c2017-07-21 16:30:38 +0000455#if !defined(NDEBUG)
456 SmallVector<BasicBlock *, 8> OtherExitsDummyCheck;
457 assert(canSafelyUnrollMultiExitLoop(L, OtherExitsDummyCheck, LatchExit,
458 PreserveLCSSA, UseEpilogRemainder) &&
459 "Should be safe to unroll before checking profitability!");
460#endif
Anna Thomasf34537d2017-09-15 15:56:05 +0000461
Anna Thomas5c07a4c2017-07-21 16:30:38 +0000462 // Priority goes to UnrollRuntimeMultiExit if it's supplied.
Anna Thomasf34537d2017-09-15 15:56:05 +0000463 if (UnrollRuntimeMultiExit.getNumOccurrences())
464 return UnrollRuntimeMultiExit;
465
466 // The main pain point with multi-exit loop unrolling is that once unrolled,
467 // we will not be able to merge all blocks into a straight line code.
468 // There are branches within the unrolled loop that go to the OtherExits.
469 // The second point is the increase in code size, but this is true
470 // irrespective of multiple exits.
471
472 // Note: Both the heuristics below are coarse grained. We are essentially
473 // enabling unrolling of loops that have a single side exit other than the
474 // normal LatchExit (i.e. exiting into a deoptimize block).
475 // The heuristics considered are:
476 // 1. low number of branches in the unrolled version.
477 // 2. high predictability of these extra branches.
478 // We avoid unrolling loops that have more than two exiting blocks. This
479 // limits the total number of branches in the unrolled loop to be atmost
480 // the unroll factor (since one of the exiting blocks is the latch block).
481 SmallVector<BasicBlock*, 4> ExitingBlocks;
482 L->getExitingBlocks(ExitingBlocks);
483 if (ExitingBlocks.size() > 2)
484 return false;
485
486 // The second heuristic is that L has one exit other than the latchexit and
487 // that exit is a deoptimize block. We know that deoptimize blocks are rarely
488 // taken, which also implies the branch leading to the deoptimize block is
489 // highly predictable.
490 return (OtherExits.size() == 1 &&
491 OtherExits[0]->getTerminatingDeoptimizeCall());
492 // TODO: These can be fine-tuned further to consider code size or deopt states
493 // that are captured by the deoptimize exit block.
494 // Also, we can extend this to support more cases, if we actually
495 // know of kinds of multiexit loops that would benefit from unrolling.
Anna Thomas5c07a4c2017-07-21 16:30:38 +0000496}
Anna Thomas8e431a92017-07-12 20:55:43 +0000497
David L Kreitzer188de5a2016-04-05 12:19:35 +0000498/// Insert code in the prolog/epilog code when unrolling a loop with a
Andrew Trickd04d15292011-12-09 06:19:40 +0000499/// run-time trip-count.
500///
501/// This method assumes that the loop unroll factor is total number
Justin Lebar6086c6a2016-02-12 21:01:37 +0000502/// of loop bodies in the loop after unrolling. (Some folks refer
Andrew Trickd04d15292011-12-09 06:19:40 +0000503/// to the unroll factor as the number of *extra* copies added).
504/// We assume also that the loop unroll factor is a power-of-two. So, after
505/// unrolling the loop, the number of loop bodies executed is 2,
Jakub Staszak1b1d5232011-12-18 21:52:30 +0000506/// 4, 8, etc. Note - LLVM converts the if-then-sequence to a switch
Andrew Trickd04d15292011-12-09 06:19:40 +0000507/// instruction in SimplifyCFG.cpp. Then, the backend decides how code for
508/// the switch instruction is generated.
509///
David L Kreitzer188de5a2016-04-05 12:19:35 +0000510/// ***Prolog case***
Kevin Qinfc02e3c2014-09-29 11:15:00 +0000511/// extraiters = tripcount % loopfactor
512/// if (extraiters == 0) jump Loop:
Evgeny Stupachenko87880482016-04-08 20:20:38 +0000513/// else jump Prol:
Kevin Qinfc02e3c2014-09-29 11:15:00 +0000514/// Prol: LoopBody;
515/// extraiters -= 1 // Omitted if unroll factor is 2.
516/// if (extraiters != 0) jump Prol: // Omitted if unroll factor is 2.
Evgeny Stupachenko87880482016-04-08 20:20:38 +0000517/// if (tripcount < loopfactor) jump End:
Kevin Qinfc02e3c2014-09-29 11:15:00 +0000518/// Loop:
519/// ...
520/// End:
Andrew Trickd04d15292011-12-09 06:19:40 +0000521///
David L Kreitzer188de5a2016-04-05 12:19:35 +0000522/// ***Epilog case***
523/// extraiters = tripcount % loopfactor
Evgeny Stupachenko23ce61b2016-04-27 03:04:54 +0000524/// if (tripcount < loopfactor) jump LoopExit:
David L Kreitzer188de5a2016-04-05 12:19:35 +0000525/// unroll_iters = tripcount - extraiters
526/// Loop: LoopBody; (executes unroll_iter times);
527/// unroll_iter -= 1
528/// if (unroll_iter != 0) jump Loop:
529/// LoopExit:
530/// if (extraiters == 0) jump EpilExit:
531/// Epil: LoopBody; (executes extraiters times)
532/// extraiters -= 1 // Omitted if unroll factor is 2.
533/// if (extraiters != 0) jump Epil: // Omitted if unroll factor is 2.
534/// EpilExit:
535
536bool llvm::UnrollRuntimeLoopRemainder(Loop *L, unsigned Count,
537 bool AllowExpensiveTripCount,
538 bool UseEpilogRemainder,
Sam Parker718c8a62017-08-14 09:25:26 +0000539 bool UnrollRemainder,
David L Kreitzer188de5a2016-04-05 12:19:35 +0000540 LoopInfo *LI, ScalarEvolution *SE,
Sam Parker718c8a62017-08-14 09:25:26 +0000541 DominatorTree *DT, AssumptionCache *AC,
Sam Parker718c8a62017-08-14 09:25:26 +0000542 bool PreserveLCSSA) {
Anna Thomasbafe7662017-07-11 20:44:37 +0000543 DEBUG(dbgs() << "Trying runtime unrolling on Loop: \n");
544 DEBUG(L->dump());
Sam Parker7cd826a2017-09-04 08:12:16 +0000545 DEBUG(UseEpilogRemainder ? dbgs() << "Using epilog remainder.\n" :
546 dbgs() << "Using prolog remainder.\n");
Andrew Trickd04d15292011-12-09 06:19:40 +0000547
Anna Thomase5e5e592017-06-30 17:57:07 +0000548 // Make sure the loop is in canonical form.
Anna Thomasbafe7662017-07-11 20:44:37 +0000549 if (!L->isLoopSimplifyForm()) {
550 DEBUG(dbgs() << "Not in simplify form!\n");
David L Kreitzer188de5a2016-04-05 12:19:35 +0000551 return false;
Anna Thomasbafe7662017-07-11 20:44:37 +0000552 }
Andrew Trickd04d15292011-12-09 06:19:40 +0000553
Anna Thomas91eed9a2017-06-23 14:28:01 +0000554 // Guaranteed by LoopSimplifyForm.
555 BasicBlock *Latch = L->getLoopLatch();
Anna Thomase5e5e592017-06-30 17:57:07 +0000556 BasicBlock *Header = L->getHeader();
Anna Thomas91eed9a2017-06-23 14:28:01 +0000557
Anna Thomas91eed9a2017-06-23 14:28:01 +0000558 BranchInst *LatchBR = cast<BranchInst>(Latch->getTerminator());
Anna Thomas8e431a92017-07-12 20:55:43 +0000559 unsigned ExitIndex = LatchBR->getSuccessor(0) == Header ? 1 : 0;
560 BasicBlock *LatchExit = LatchBR->getSuccessor(ExitIndex);
Anna Thomase5e5e592017-06-30 17:57:07 +0000561 // Cloning the loop basic blocks (`CloneLoopBlocks`) requires that one of the
562 // targets of the Latch be an exit block out of the loop. This needs
563 // to be guaranteed by the callers of UnrollRuntimeLoopRemainder.
Anna Thomas8e431a92017-07-12 20:55:43 +0000564 assert(!L->contains(LatchExit) &&
Anna Thomase5e5e592017-06-30 17:57:07 +0000565 "one of the loop latch successors should be the exit block!");
Anna Thomas8e431a92017-07-12 20:55:43 +0000566 // These are exit blocks other than the target of the latch exiting block.
567 SmallVector<BasicBlock *, 4> OtherExits;
Anna Thomas5c07a4c2017-07-21 16:30:38 +0000568 bool isMultiExitUnrollingEnabled =
569 canSafelyUnrollMultiExitLoop(L, OtherExits, LatchExit, PreserveLCSSA,
570 UseEpilogRemainder) &&
571 canProfitablyUnrollMultiExitLoop(L, OtherExits, LatchExit, PreserveLCSSA,
572 UseEpilogRemainder);
Anna Thomas8e431a92017-07-12 20:55:43 +0000573 // Support only single exit and exiting block unless multi-exit loop unrolling is enabled.
574 if (!isMultiExitUnrollingEnabled &&
575 (!L->getExitingBlock() || OtherExits.size())) {
576 DEBUG(
577 dbgs()
578 << "Multiple exit/exiting blocks in loop and multi-exit unrolling not "
579 "enabled!\n");
Anna Thomaseb6d5d12017-07-06 18:39:26 +0000580 return false;
Anna Thomasbafe7662017-07-11 20:44:37 +0000581 }
Sanjay Patele08381a2016-02-08 19:27:33 +0000582 // Use Scalar Evolution to compute the trip count. This allows more loops to
583 // be unrolled than relying on induction var simplification.
Justin Bogner843fb202015-12-15 19:40:57 +0000584 if (!SE)
Andrew Trickd29cd732012-05-08 02:52:09 +0000585 return false;
Andrew Trickd04d15292011-12-09 06:19:40 +0000586
Sanjay Patele08381a2016-02-08 19:27:33 +0000587 // Only unroll loops with a computable trip count, and the trip count needs
588 // to be an int value (allowing a pointer type is a TODO item).
Anna Thomasdc935a62017-06-27 14:14:35 +0000589 // We calculate the backedge count by using getExitCount on the Latch block,
590 // which is proven to be the only exiting block in this loop. This is same as
591 // calculating getBackedgeTakenCount on the loop (which computes SCEV for all
592 // exiting blocks).
593 const SCEV *BECountSC = SE->getExitCount(L, Latch);
Sanjoy Das11b279a2015-02-18 19:32:25 +0000594 if (isa<SCEVCouldNotCompute>(BECountSC) ||
Anna Thomasbafe7662017-07-11 20:44:37 +0000595 !BECountSC->getType()->isIntegerTy()) {
596 DEBUG(dbgs() << "Could not compute exit block SCEV\n");
Andrew Trickd04d15292011-12-09 06:19:40 +0000597 return false;
Anna Thomasbafe7662017-07-11 20:44:37 +0000598 }
Andrew Trickd04d15292011-12-09 06:19:40 +0000599
Sanjoy Das11b279a2015-02-18 19:32:25 +0000600 unsigned BEWidth = cast<IntegerType>(BECountSC->getType())->getBitWidth();
Michael Zolotukhin0dcae712014-11-20 20:19:55 +0000601
Sanjay Patele08381a2016-02-08 19:27:33 +0000602 // Add 1 since the backedge count doesn't include the first loop iteration.
Jakub Staszak1b1d5232011-12-18 21:52:30 +0000603 const SCEV *TripCountSC =
Justin Bogner843fb202015-12-15 19:40:57 +0000604 SE->getAddExpr(BECountSC, SE->getConstant(BECountSC->getType(), 1));
Anna Thomasbafe7662017-07-11 20:44:37 +0000605 if (isa<SCEVCouldNotCompute>(TripCountSC)) {
606 DEBUG(dbgs() << "Could not compute trip count SCEV.\n");
Andrew Trickd04d15292011-12-09 06:19:40 +0000607 return false;
Anna Thomasbafe7662017-07-11 20:44:37 +0000608 }
Andrew Trickd04d15292011-12-09 06:19:40 +0000609
David L Kreitzer188de5a2016-04-05 12:19:35 +0000610 BasicBlock *PreHeader = L->getLoopPreheader();
611 BranchInst *PreHeaderBR = cast<BranchInst>(PreHeader->getTerminator());
Sanjoy Dase178f462015-04-14 03:20:38 +0000612 const DataLayout &DL = Header->getModule()->getDataLayout();
Justin Bogner843fb202015-12-15 19:40:57 +0000613 SCEVExpander Expander(*SE, DL, "loop-unroll");
Junmo Park6ebdc142016-02-16 06:46:58 +0000614 if (!AllowExpensiveTripCount &&
Anna Thomasbafe7662017-07-11 20:44:37 +0000615 Expander.isHighCostExpansion(TripCountSC, L, PreHeaderBR)) {
616 DEBUG(dbgs() << "High cost for expanding trip count scev!\n");
Sanjoy Dase178f462015-04-14 03:20:38 +0000617 return false;
Anna Thomasbafe7662017-07-11 20:44:37 +0000618 }
Sanjoy Dase178f462015-04-14 03:20:38 +0000619
Sanjoy Das11b279a2015-02-18 19:32:25 +0000620 // This constraint lets us deal with an overflowing trip count easily; see the
Sanjoy Das71190fe2015-04-12 01:24:01 +0000621 // comment on ModVal below.
Anna Thomasbafe7662017-07-11 20:44:37 +0000622 if (Log2_32(Count) > BEWidth) {
623 DEBUG(dbgs()
624 << "Count failed constraint on overflow trip count calculation.\n");
Andrew Trickd04d15292011-12-09 06:19:40 +0000625 return false;
Anna Thomasbafe7662017-07-11 20:44:37 +0000626 }
Andrew Trickd04d15292011-12-09 06:19:40 +0000627
David L Kreitzer188de5a2016-04-05 12:19:35 +0000628 // Loop structure is the following:
629 //
630 // PreHeader
631 // Header
632 // ...
633 // Latch
Anna Thomas91eed9a2017-06-23 14:28:01 +0000634 // LatchExit
David L Kreitzer188de5a2016-04-05 12:19:35 +0000635
636 BasicBlock *NewPreHeader;
637 BasicBlock *NewExit = nullptr;
638 BasicBlock *PrologExit = nullptr;
639 BasicBlock *EpilogPreHeader = nullptr;
640 BasicBlock *PrologPreHeader = nullptr;
641
642 if (UseEpilogRemainder) {
643 // If epilog remainder
644 // Split PreHeader to insert a branch around loop for unrolling.
645 NewPreHeader = SplitBlock(PreHeader, PreHeader->getTerminator(), DT, LI);
646 NewPreHeader->setName(PreHeader->getName() + ".new");
Anna Thomas91eed9a2017-06-23 14:28:01 +0000647 // Split LatchExit to create phi nodes from branch above.
648 SmallVector<BasicBlock*, 4> Preds(predecessors(LatchExit));
649 NewExit = SplitBlockPredecessors(LatchExit, Preds, ".unr-lcssa",
David L Kreitzer188de5a2016-04-05 12:19:35 +0000650 DT, LI, PreserveLCSSA);
651 // Split NewExit to insert epilog remainder loop.
652 EpilogPreHeader = SplitBlock(NewExit, NewExit->getTerminator(), DT, LI);
653 EpilogPreHeader->setName(Header->getName() + ".epil.preheader");
654 } else {
655 // If prolog remainder
656 // Split the original preheader twice to insert prolog remainder loop
657 PrologPreHeader = SplitEdge(PreHeader, Header, DT, LI);
658 PrologPreHeader->setName(Header->getName() + ".prol.preheader");
659 PrologExit = SplitBlock(PrologPreHeader, PrologPreHeader->getTerminator(),
660 DT, LI);
661 PrologExit->setName(Header->getName() + ".prol.loopexit");
662 // Split PrologExit to get NewPreHeader.
663 NewPreHeader = SplitBlock(PrologExit, PrologExit->getTerminator(), DT, LI);
664 NewPreHeader->setName(PreHeader->getName() + ".new");
665 }
666 // Loop structure should be the following:
667 // Epilog Prolog
668 //
669 // PreHeader PreHeader
670 // *NewPreHeader *PrologPreHeader
671 // Header *PrologExit
672 // ... *NewPreHeader
673 // Latch Header
674 // *NewExit ...
675 // *EpilogPreHeader Latch
Anna Thomas91eed9a2017-06-23 14:28:01 +0000676 // LatchExit LatchExit
David L Kreitzer188de5a2016-04-05 12:19:35 +0000677
678 // Calculate conditions for branch around loop for unrolling
679 // in epilog case and around prolog remainder loop in prolog case.
Andrew Trickd04d15292011-12-09 06:19:40 +0000680 // Compute the number of extra iterations required, which is:
David L Kreitzer188de5a2016-04-05 12:19:35 +0000681 // extra iterations = run-time trip count % loop unroll factor
682 PreHeaderBR = cast<BranchInst>(PreHeader->getTerminator());
Andrew Trickd04d15292011-12-09 06:19:40 +0000683 Value *TripCount = Expander.expandCodeFor(TripCountSC, TripCountSC->getType(),
684 PreHeaderBR);
Sanjoy Das11b279a2015-02-18 19:32:25 +0000685 Value *BECount = Expander.expandCodeFor(BECountSC, BECountSC->getType(),
686 PreHeaderBR);
Benjamin Kramer0bf086f2014-06-21 13:46:25 +0000687 IRBuilder<> B(PreHeaderBR);
David L Kreitzer8d441eb2016-03-25 14:24:52 +0000688 Value *ModVal;
689 // Calculate ModVal = (BECount + 1) % Count.
690 // Note that TripCount is BECount + 1.
691 if (isPowerOf2_32(Count)) {
David L Kreitzer188de5a2016-04-05 12:19:35 +0000692 // When Count is power of 2 we don't BECount for epilog case, however we'll
693 // need it for a branch around unrolling loop for prolog case.
David L Kreitzer8d441eb2016-03-25 14:24:52 +0000694 ModVal = B.CreateAnd(TripCount, Count - 1, "xtraiter");
David L Kreitzer188de5a2016-04-05 12:19:35 +0000695 // 1. There are no iterations to be run in the prolog/epilog loop.
David L Kreitzer8d441eb2016-03-25 14:24:52 +0000696 // OR
697 // 2. The addition computing TripCount overflowed.
698 //
699 // If (2) is true, we know that TripCount really is (1 << BEWidth) and so
700 // the number of iterations that remain to be run in the original loop is a
701 // multiple Count == (1 << Log2(Count)) because Log2(Count) <= BEWidth (we
702 // explicitly check this above).
703 } else {
704 // As (BECount + 1) can potentially unsigned overflow we count
705 // (BECount % Count) + 1 which is overflow safe as BECount % Count < Count.
706 Value *ModValTmp = B.CreateURem(BECount,
707 ConstantInt::get(BECount->getType(),
708 Count));
709 Value *ModValAdd = B.CreateAdd(ModValTmp,
710 ConstantInt::get(ModValTmp->getType(), 1));
711 // At that point (BECount % Count) + 1 could be equal to Count.
712 // To handle this case we need to take mod by Count one more time.
713 ModVal = B.CreateURem(ModValAdd,
714 ConstantInt::get(BECount->getType(), Count),
715 "xtraiter");
716 }
Evgeny Stupachenko23ce61b2016-04-27 03:04:54 +0000717 Value *BranchVal =
718 UseEpilogRemainder ? B.CreateICmpULT(BECount,
719 ConstantInt::get(BECount->getType(),
720 Count - 1)) :
721 B.CreateIsNotNull(ModVal, "lcmp.mod");
722 BasicBlock *RemainderLoop = UseEpilogRemainder ? NewExit : PrologPreHeader;
723 BasicBlock *UnrollingLoop = UseEpilogRemainder ? NewPreHeader : PrologExit;
David L Kreitzer188de5a2016-04-05 12:19:35 +0000724 // Branch to either remainder (extra iterations) loop or unrolling loop.
Evgeny Stupachenko23ce61b2016-04-27 03:04:54 +0000725 B.CreateCondBr(BranchVal, RemainderLoop, UnrollingLoop);
Andrew Trickd04d15292011-12-09 06:19:40 +0000726 PreHeaderBR->eraseFromParent();
Eli Friedman0a217452017-01-18 23:26:37 +0000727 if (DT) {
728 if (UseEpilogRemainder)
729 DT->changeImmediateDominator(NewExit, PreHeader);
730 else
731 DT->changeImmediateDominator(PrologExit, PreHeader);
732 }
Andrew Trickd04d15292011-12-09 06:19:40 +0000733 Function *F = Header->getParent();
Andrew Trickd04d15292011-12-09 06:19:40 +0000734 // Get an ordered list of blocks in the loop to help with the ordering of the
David L Kreitzer188de5a2016-04-05 12:19:35 +0000735 // cloned blocks in the prolog/epilog code
Andrew Trickd04d15292011-12-09 06:19:40 +0000736 LoopBlocksDFS LoopBlocks(L);
737 LoopBlocks.perform(LI);
738
739 //
740 // For each extra loop iteration, create a copy of the loop's basic blocks
741 // and generate a condition that branches to the copy depending on the
742 // number of 'left over' iterations.
743 //
Kevin Qinfc02e3c2014-09-29 11:15:00 +0000744 std::vector<BasicBlock *> NewBlocks;
745 ValueToValueMapTy VMap;
Andrew Trickd04d15292011-12-09 06:19:40 +0000746
David L Kreitzer188de5a2016-04-05 12:19:35 +0000747 // For unroll factor 2 remainder loop will have 1 iterations.
748 // Do not create 1 iteration loop.
749 bool CreateRemainderLoop = (Count != 2);
Michael Zolotukhin0dcae712014-11-20 20:19:55 +0000750
Kevin Qinfc02e3c2014-09-29 11:15:00 +0000751 // Clone all the basic blocks in the loop. If Count is 2, we don't clone
752 // the loop, otherwise we create a cloned loop to execute the extra
753 // iterations. This function adds the appropriate CFG connections.
Anna Thomas91eed9a2017-06-23 14:28:01 +0000754 BasicBlock *InsertBot = UseEpilogRemainder ? LatchExit : PrologExit;
David L Kreitzer188de5a2016-04-05 12:19:35 +0000755 BasicBlock *InsertTop = UseEpilogRemainder ? EpilogPreHeader : PrologPreHeader;
Anna Thomase5e5e592017-06-30 17:57:07 +0000756 Loop *remainderLoop = CloneLoopBlocks(
Sam Parker718c8a62017-08-14 09:25:26 +0000757 L, ModVal, CreateRemainderLoop, UseEpilogRemainder, UnrollRemainder,
758 InsertTop, InsertBot,
Anna Thomase5e5e592017-06-30 17:57:07 +0000759 NewPreHeader, NewBlocks, LoopBlocks, VMap, DT, LI);
Andrew Trickd04d15292011-12-09 06:19:40 +0000760
David L Kreitzer188de5a2016-04-05 12:19:35 +0000761 // Insert the cloned blocks into the function.
762 F->getBasicBlockList().splice(InsertBot->getIterator(),
763 F->getBasicBlockList(),
764 NewBlocks[0]->getIterator(),
765 F->end());
766
Anna Thomase5e5e592017-06-30 17:57:07 +0000767 // Now the loop blocks are cloned and the other exiting blocks from the
768 // remainder are connected to the original Loop's exit blocks. The remaining
769 // work is to update the phi nodes in the original loop, and take in the
770 // values from the cloned region. Also update the dominator info for
Anna Thomasec9b3262017-07-13 13:21:23 +0000771 // OtherExits and their immediate successors, since we have new edges into
772 // OtherExits.
773 SmallSet<BasicBlock*, 8> ImmediateSuccessorsOfExitBlocks;
Anna Thomase5e5e592017-06-30 17:57:07 +0000774 for (auto *BB : OtherExits) {
775 for (auto &II : *BB) {
776
777 // Given we preserve LCSSA form, we know that the values used outside the
778 // loop will be used through these phi nodes at the exit blocks that are
779 // transformed below.
780 if (!isa<PHINode>(II))
781 break;
782 PHINode *Phi = cast<PHINode>(&II);
783 unsigned oldNumOperands = Phi->getNumIncomingValues();
784 // Add the incoming values from the remainder code to the end of the phi
785 // node.
786 for (unsigned i =0; i < oldNumOperands; i++){
Anna Thomas512dde72017-09-15 13:29:33 +0000787 Value *newVal = VMap.lookup(Phi->getIncomingValue(i));
Anna Thomas70ffd652017-07-10 15:29:38 +0000788 // newVal can be a constant or derived from values outside the loop, and
Anna Thomas512dde72017-09-15 13:29:33 +0000789 // hence need not have a VMap value. Also, since lookup already generated
790 // a default "null" VMap entry for this value, we need to populate that
791 // VMap entry correctly, with the mapped entry being itself.
792 if (!newVal) {
Anna Thomase5e5e592017-06-30 17:57:07 +0000793 newVal = Phi->getIncomingValue(i);
Anna Thomas512dde72017-09-15 13:29:33 +0000794 VMap[Phi->getIncomingValue(i)] = Phi->getIncomingValue(i);
795 }
Anna Thomase5e5e592017-06-30 17:57:07 +0000796 Phi->addIncoming(newVal,
797 cast<BasicBlock>(VMap[Phi->getIncomingBlock(i)]));
798 }
799 }
Simon Pilgrimf32f4be2017-07-13 17:10:12 +0000800#if defined(EXPENSIVE_CHECKS) && !defined(NDEBUG)
Anna Thomasec9b3262017-07-13 13:21:23 +0000801 for (BasicBlock *SuccBB : successors(BB)) {
802 assert(!(any_of(OtherExits,
803 [SuccBB](BasicBlock *EB) { return EB == SuccBB; }) ||
804 SuccBB == LatchExit) &&
805 "Breaks the definition of dedicated exits!");
806 }
807#endif
Anna Thomase5e5e592017-06-30 17:57:07 +0000808 // Update the dominator info because the immediate dominator is no longer the
809 // header of the original Loop. BB has edges both from L and remainder code.
810 // Since the preheader determines which loop is run (L or directly jump to
811 // the remainder code), we set the immediate dominator as the preheader.
Anna Thomasec9b3262017-07-13 13:21:23 +0000812 if (DT) {
Anna Thomase5e5e592017-06-30 17:57:07 +0000813 DT->changeImmediateDominator(BB, PreHeader);
Anna Thomasec9b3262017-07-13 13:21:23 +0000814 // Also update the IDom for immediate successors of BB. If the current
815 // IDom is the header, update the IDom to be the preheader because that is
816 // the nearest common dominator of all predecessors of SuccBB. We need to
817 // check for IDom being the header because successors of exit blocks can
818 // have edges from outside the loop, and we should not incorrectly update
819 // the IDom in that case.
820 for (BasicBlock *SuccBB: successors(BB))
821 if (ImmediateSuccessorsOfExitBlocks.insert(SuccBB).second) {
822 if (DT->getNode(SuccBB)->getIDom()->getBlock() == Header) {
823 assert(!SuccBB->getSinglePredecessor() &&
824 "BB should be the IDom then!");
825 DT->changeImmediateDominator(SuccBB, PreHeader);
826 }
827 }
828 }
Anna Thomase5e5e592017-06-30 17:57:07 +0000829 }
830
David L Kreitzer188de5a2016-04-05 12:19:35 +0000831 // Loop structure should be the following:
832 // Epilog Prolog
833 //
834 // PreHeader PreHeader
835 // NewPreHeader PrologPreHeader
836 // Header PrologHeader
837 // ... ...
838 // Latch PrologLatch
839 // NewExit PrologExit
840 // EpilogPreHeader NewPreHeader
841 // EpilogHeader Header
842 // ... ...
843 // EpilogLatch Latch
Anna Thomas91eed9a2017-06-23 14:28:01 +0000844 // LatchExit LatchExit
Andrew Trickd04d15292011-12-09 06:19:40 +0000845
Sanjay Patel4d36bba2016-02-08 21:32:43 +0000846 // Rewrite the cloned instruction operands to use the values created when the
847 // clone is created.
848 for (BasicBlock *BB : NewBlocks) {
849 for (Instruction &I : *BB) {
850 RemapInstruction(&I, VMap,
Duncan P. N. Exon Smithda68cbc2016-04-07 00:26:43 +0000851 RF_NoModuleLevelChanges | RF_IgnoreMissingLocals);
Andrew Trickd04d15292011-12-09 06:19:40 +0000852 }
853 }
854
David L Kreitzer188de5a2016-04-05 12:19:35 +0000855 if (UseEpilogRemainder) {
856 // Connect the epilog code to the original loop and update the
857 // PHI functions.
Anna Thomas91eed9a2017-06-23 14:28:01 +0000858 ConnectEpilog(L, ModVal, NewExit, LatchExit, PreHeader,
David L Kreitzer188de5a2016-04-05 12:19:35 +0000859 EpilogPreHeader, NewPreHeader, VMap, DT, LI,
860 PreserveLCSSA);
861
862 // Update counter in loop for unrolling.
863 // I should be multiply of Count.
864 IRBuilder<> B2(NewPreHeader->getTerminator());
865 Value *TestVal = B2.CreateSub(TripCount, ModVal, "unroll_iter");
866 BranchInst *LatchBR = cast<BranchInst>(Latch->getTerminator());
867 B2.SetInsertPoint(LatchBR);
868 PHINode *NewIdx = PHINode::Create(TestVal->getType(), 2, "niter",
869 Header->getFirstNonPHI());
870 Value *IdxSub =
871 B2.CreateSub(NewIdx, ConstantInt::get(NewIdx->getType(), 1),
872 NewIdx->getName() + ".nsub");
873 Value *IdxCmp;
874 if (LatchBR->getSuccessor(0) == Header)
875 IdxCmp = B2.CreateIsNotNull(IdxSub, NewIdx->getName() + ".ncmp");
876 else
877 IdxCmp = B2.CreateIsNull(IdxSub, NewIdx->getName() + ".ncmp");
878 NewIdx->addIncoming(TestVal, NewPreHeader);
879 NewIdx->addIncoming(IdxSub, Latch);
880 LatchBR->setCondition(IdxCmp);
881 } else {
882 // Connect the prolog code to the original loop and update the
883 // PHI functions.
Anna Thomas734ab3f2017-07-07 18:05:28 +0000884 ConnectProlog(L, BECount, Count, PrologExit, LatchExit, PreHeader,
885 NewPreHeader, VMap, DT, LI, PreserveLCSSA);
David L Kreitzer188de5a2016-04-05 12:19:35 +0000886 }
Wei Mi59ca9662016-08-25 16:17:18 +0000887
888 // If this loop is nested, then the loop unroller changes the code in the
889 // parent loop, so the Scalar Evolution pass needs to be run again.
890 if (Loop *ParentLoop = L->getParentLoop())
891 SE->forgetLoop(ParentLoop);
892
Anna Thomase5e5e592017-06-30 17:57:07 +0000893 // Canonicalize to LoopSimplifyForm both original and remainder loops. We
894 // cannot rely on the LoopUnrollPass to do this because it only does
895 // canonicalization for parent/subloops and not the sibling loops.
896 if (OtherExits.size() > 0) {
897 // Generate dedicated exit blocks for the original loop, to preserve
898 // LoopSimplifyForm.
899 formDedicatedExitBlocks(L, DT, LI, PreserveLCSSA);
900 // Generate dedicated exit blocks for the remainder loop if one exists, to
901 // preserve LoopSimplifyForm.
902 if (remainderLoop)
903 formDedicatedExitBlocks(remainderLoop, DT, LI, PreserveLCSSA);
904 }
905
Sam Parker718c8a62017-08-14 09:25:26 +0000906 if (remainderLoop && UnrollRemainder) {
Sam Parker7cd826a2017-09-04 08:12:16 +0000907 DEBUG(dbgs() << "Unrolling remainder loop\n");
David Green64f53b42017-10-31 10:47:46 +0000908 UnrollLoop(remainderLoop, /*Count*/ Count - 1, /*TripCount*/ Count - 1,
909 /*Force*/ false, /*AllowRuntime*/ false,
910 /*AllowExpensiveTripCount*/ false, /*PreserveCondBr*/ true,
911 /*PreserveOnlyFirst*/ false, /*TripMultiple*/ 1,
912 /*PeelCount*/ 0, /*UnrollRemainder*/ false, LI, SE, DT, AC,
913 /*ORE*/ nullptr, PreserveLCSSA);
Sam Parker718c8a62017-08-14 09:25:26 +0000914 }
915
Andrew Trickd04d15292011-12-09 06:19:40 +0000916 NumRuntimeUnrolled++;
917 return true;
918}