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Devang Patelbc5fe632007-08-07 00:25:56 +00001//===- LoopIndexSplit.cpp - Loop Index Splitting Pass ---------------------===//
2//
3// The LLVM Compiler Infrastructure
4//
5// This file was developed by Devang Patel and is distributed under
6// the University of Illinois Open Source License. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
9//
10// This file implements Loop Index Splitting Pass.
11//
12//===----------------------------------------------------------------------===//
13
14#define DEBUG_TYPE "loop-index-split"
15
Devang Patelbc5fe632007-08-07 00:25:56 +000016#include "llvm/Transforms/Scalar.h"
17#include "llvm/Analysis/LoopPass.h"
18#include "llvm/Analysis/ScalarEvolutionExpander.h"
Devang Patel95fd7172007-08-08 21:39:47 +000019#include "llvm/Analysis/Dominators.h"
Devang Patel901f67e2007-08-10 18:07:13 +000020#include "llvm/Transforms/Utils/BasicBlockUtils.h"
21#include "llvm/Transforms/Utils/Cloning.h"
Devang Patelbc5fe632007-08-07 00:25:56 +000022#include "llvm/Support/Compiler.h"
Devang Patelf4277122007-08-15 03:31:47 +000023#include "llvm/ADT/DepthFirstIterator.h"
Devang Patelbc5fe632007-08-07 00:25:56 +000024#include "llvm/ADT/Statistic.h"
25
26using namespace llvm;
27
28STATISTIC(NumIndexSplit, "Number of loops index split");
29
30namespace {
31
32 class VISIBILITY_HIDDEN LoopIndexSplit : public LoopPass {
33
34 public:
35 static char ID; // Pass ID, replacement for typeid
36 LoopIndexSplit() : LoopPass((intptr_t)&ID) {}
37
38 // Index split Loop L. Return true if loop is split.
39 bool runOnLoop(Loop *L, LPPassManager &LPM);
40
41 void getAnalysisUsage(AnalysisUsage &AU) const {
42 AU.addRequired<ScalarEvolution>();
43 AU.addPreserved<ScalarEvolution>();
44 AU.addRequiredID(LCSSAID);
45 AU.addPreservedID(LCSSAID);
Devang Patel901f67e2007-08-10 18:07:13 +000046 AU.addRequired<LoopInfo>();
Devang Patelbc5fe632007-08-07 00:25:56 +000047 AU.addPreserved<LoopInfo>();
48 AU.addRequiredID(LoopSimplifyID);
49 AU.addPreservedID(LoopSimplifyID);
Devang Patel0aaeb172007-08-08 22:25:28 +000050 AU.addRequired<DominatorTree>();
Devang Patelf4277122007-08-15 03:31:47 +000051 AU.addRequired<DominanceFrontier>();
Devang Patel95fd7172007-08-08 21:39:47 +000052 AU.addPreserved<DominatorTree>();
53 AU.addPreserved<DominanceFrontier>();
Devang Patelbc5fe632007-08-07 00:25:56 +000054 }
55
56 private:
Devang Patelc8dadbf2007-08-08 21:02:17 +000057
58 class SplitInfo {
59 public:
Devang Patel61571ca2007-08-10 00:33:50 +000060 SplitInfo() : SplitValue(NULL), SplitCondition(NULL) {}
Devang Patel2545f7b2007-08-09 01:39:01 +000061
Devang Patelc8dadbf2007-08-08 21:02:17 +000062 // Induction variable's range is split at this value.
63 Value *SplitValue;
64
Devang Patelc8dadbf2007-08-08 21:02:17 +000065 // This compare instruction compares IndVar against SplitValue.
66 ICmpInst *SplitCondition;
67
Devang Patel31696332007-08-08 21:18:27 +000068 // Clear split info.
69 void clear() {
Devang Patel31696332007-08-08 21:18:27 +000070 SplitValue = NULL;
Devang Patel31696332007-08-08 21:18:27 +000071 SplitCondition = NULL;
Devang Patel31696332007-08-08 21:18:27 +000072 }
Devang Patel2545f7b2007-08-09 01:39:01 +000073
Devang Patelc8dadbf2007-08-08 21:02:17 +000074 };
Devang Patel61571ca2007-08-10 00:33:50 +000075
Devang Patelc8dadbf2007-08-08 21:02:17 +000076 private:
Devang Patelbc5fe632007-08-07 00:25:56 +000077 /// Find condition inside a loop that is suitable candidate for index split.
78 void findSplitCondition();
79
Devang Patel61571ca2007-08-10 00:33:50 +000080 /// Find loop's exit condition.
81 void findLoopConditionals();
82
83 /// Return induction variable associated with value V.
84 void findIndVar(Value *V, Loop *L);
85
Devang Patelbc5fe632007-08-07 00:25:56 +000086 /// processOneIterationLoop - Current loop L contains compare instruction
87 /// that compares induction variable, IndVar, agains loop invariant. If
88 /// entire (i.e. meaningful) loop body is dominated by this compare
89 /// instruction then loop body is executed only for one iteration. In
90 /// such case eliminate loop structure surrounding this loop body. For
Devang Patel901f67e2007-08-10 18:07:13 +000091 bool processOneIterationLoop(SplitInfo &SD);
Devang Patelbc5fe632007-08-07 00:25:56 +000092
Devang Patel0aaeb172007-08-08 22:25:28 +000093 /// If loop header includes loop variant instruction operands then
94 /// this loop may not be eliminated.
Devang Patelc8dadbf2007-08-08 21:02:17 +000095 bool safeHeader(SplitInfo &SD, BasicBlock *BB);
Devang Patelbc5fe632007-08-07 00:25:56 +000096
Devang Patel0aaeb172007-08-08 22:25:28 +000097 /// If Exit block includes loop variant instructions then this
98 /// loop may not be eliminated.
Devang Patelc8dadbf2007-08-08 21:02:17 +000099 bool safeExitBlock(SplitInfo &SD, BasicBlock *BB);
Devang Patelbc5fe632007-08-07 00:25:56 +0000100
Devang Patel60a94c72007-08-14 18:35:57 +0000101 /// removeBlocks - Remove basic block DeadBB and all blocks dominated by DeadBB.
102 /// This routine is used to remove split condition's dead branch, dominated by
103 /// DeadBB. LiveBB dominates split conidition's other branch.
104 void removeBlocks(BasicBlock *DeadBB, Loop *LP, BasicBlock *LiveBB);
Devang Patel6a2d6ef2007-08-12 07:02:51 +0000105
Devang Patel0aaeb172007-08-08 22:25:28 +0000106 /// Find cost of spliting loop L.
107 unsigned findSplitCost(Loop *L, SplitInfo &SD);
Devang Patelc8dadbf2007-08-08 21:02:17 +0000108 bool splitLoop(SplitInfo &SD);
Devang Patelbc5fe632007-08-07 00:25:56 +0000109
Devang Patel61571ca2007-08-10 00:33:50 +0000110 void initialize() {
111 IndVar = NULL;
112 IndVarIncrement = NULL;
113 ExitCondition = NULL;
Devang Patel6a2d6ef2007-08-12 07:02:51 +0000114 StartValue = NULL;
115 ExitValueNum = 0;
116 SplitData.clear();
Devang Patel61571ca2007-08-10 00:33:50 +0000117 }
118
Devang Patelbc5fe632007-08-07 00:25:56 +0000119 private:
120
121 // Current Loop.
122 Loop *L;
Devang Patel901f67e2007-08-10 18:07:13 +0000123 LPPassManager *LPM;
124 LoopInfo *LI;
Devang Patelbc5fe632007-08-07 00:25:56 +0000125 ScalarEvolution *SE;
Devang Patel0aaeb172007-08-08 22:25:28 +0000126 DominatorTree *DT;
Devang Patelb7639612007-08-13 22:13:24 +0000127 DominanceFrontier *DF;
Devang Patelc8dadbf2007-08-08 21:02:17 +0000128 SmallVector<SplitInfo, 4> SplitData;
Devang Patel61571ca2007-08-10 00:33:50 +0000129
130 // Induction variable whose range is being split by this transformation.
131 PHINode *IndVar;
132 Instruction *IndVarIncrement;
133
134 // Loop exit condition.
135 ICmpInst *ExitCondition;
136
137 // Induction variable's initial value.
138 Value *StartValue;
139
Devang Patel6a2d6ef2007-08-12 07:02:51 +0000140 // Induction variable's final loop exit value operand number in exit condition..
141 unsigned ExitValueNum;
Devang Patelbc5fe632007-08-07 00:25:56 +0000142 };
143
144 char LoopIndexSplit::ID = 0;
145 RegisterPass<LoopIndexSplit> X ("loop-index-split", "Index Split Loops");
146}
147
148LoopPass *llvm::createLoopIndexSplitPass() {
149 return new LoopIndexSplit();
150}
151
152// Index split Loop L. Return true if loop is split.
Devang Patel901f67e2007-08-10 18:07:13 +0000153bool LoopIndexSplit::runOnLoop(Loop *IncomingLoop, LPPassManager &LPM_Ref) {
Devang Patelbc5fe632007-08-07 00:25:56 +0000154 bool Changed = false;
155 L = IncomingLoop;
Devang Patel901f67e2007-08-10 18:07:13 +0000156 LPM = &LPM_Ref;
Devang Patelc8dadbf2007-08-08 21:02:17 +0000157
Devang Patel81fcdfb2007-08-15 02:14:55 +0000158 // FIXME - Nested loops make dominator info updates tricky.
Devang Patel79276b32007-08-14 23:53:57 +0000159 if (!L->getSubLoops().empty())
160 return false;
161
Devang Patelbc5fe632007-08-07 00:25:56 +0000162 SE = &getAnalysis<ScalarEvolution>();
Devang Patel0aaeb172007-08-08 22:25:28 +0000163 DT = &getAnalysis<DominatorTree>();
Devang Patel901f67e2007-08-10 18:07:13 +0000164 LI = &getAnalysis<LoopInfo>();
Devang Patel2190f172007-08-15 03:34:53 +0000165 DF = &getAnalysis<DominanceFrontier>();
Devang Patelbc5fe632007-08-07 00:25:56 +0000166
Devang Patel61571ca2007-08-10 00:33:50 +0000167 initialize();
168
169 findLoopConditionals();
170
171 if (!ExitCondition)
172 return false;
173
Devang Patelbc5fe632007-08-07 00:25:56 +0000174 findSplitCondition();
175
Devang Patelc8dadbf2007-08-08 21:02:17 +0000176 if (SplitData.empty())
Devang Patelbc5fe632007-08-07 00:25:56 +0000177 return false;
178
Devang Patelc8dadbf2007-08-08 21:02:17 +0000179 // First see if it is possible to eliminate loop itself or not.
180 for (SmallVector<SplitInfo, 4>::iterator SI = SplitData.begin(),
Devang Patel49fbf5a2007-08-20 20:24:15 +0000181 E = SplitData.end(); SI != E;) {
Devang Patelc8dadbf2007-08-08 21:02:17 +0000182 SplitInfo &SD = *SI;
183 if (SD.SplitCondition->getPredicate() == ICmpInst::ICMP_EQ) {
Devang Patel901f67e2007-08-10 18:07:13 +0000184 Changed = processOneIterationLoop(SD);
Devang Patelc8dadbf2007-08-08 21:02:17 +0000185 if (Changed) {
186 ++NumIndexSplit;
187 // If is loop is eliminated then nothing else to do here.
188 return Changed;
Devang Patel49fbf5a2007-08-20 20:24:15 +0000189 } else {
190 SmallVector<SplitInfo, 4>::iterator Delete_SI = SI;
191 ++SI;
192 SplitData.erase(Delete_SI);
Devang Patelc8dadbf2007-08-08 21:02:17 +0000193 }
Devang Patel49fbf5a2007-08-20 20:24:15 +0000194 } else
195 ++SI;
Devang Patelc8dadbf2007-08-08 21:02:17 +0000196 }
197
Devang Patel0aaeb172007-08-08 22:25:28 +0000198 unsigned MaxCost = 99;
199 unsigned Index = 0;
200 unsigned MostProfitableSDIndex = 0;
Devang Patelc8dadbf2007-08-08 21:02:17 +0000201 for (SmallVector<SplitInfo, 4>::iterator SI = SplitData.begin(),
Devang Patel0aaeb172007-08-08 22:25:28 +0000202 E = SplitData.end(); SI != E; ++SI, ++Index) {
203 SplitInfo SD = *SI;
Devang Patelc8dadbf2007-08-08 21:02:17 +0000204
205 // ICM_EQs are already handled above.
Devang Patel49fbf5a2007-08-20 20:24:15 +0000206 assert (SD.SplitCondition->getPredicate() != ICmpInst::ICMP_EQ &&
207 "Unexpected split condition predicate");
Devang Patel0aaeb172007-08-08 22:25:28 +0000208
209 unsigned Cost = findSplitCost(L, SD);
210 if (Cost < MaxCost)
211 MostProfitableSDIndex = Index;
Devang Patelc8dadbf2007-08-08 21:02:17 +0000212 }
Devang Patelbc5fe632007-08-07 00:25:56 +0000213
Devang Patel0aaeb172007-08-08 22:25:28 +0000214 // Split most profitiable condition.
Devang Patel49fbf5a2007-08-20 20:24:15 +0000215 if (!SplitData.empty())
216 Changed = splitLoop(SplitData[MostProfitableSDIndex]);
Devang Patel0aaeb172007-08-08 22:25:28 +0000217
Devang Patelbc5fe632007-08-07 00:25:56 +0000218 if (Changed)
219 ++NumIndexSplit;
Devang Patelc8dadbf2007-08-08 21:02:17 +0000220
Devang Patelbc5fe632007-08-07 00:25:56 +0000221 return Changed;
222}
223
Devang Patel2545f7b2007-08-09 01:39:01 +0000224/// Return true if V is a induction variable or induction variable's
225/// increment for loop L.
Devang Patel61571ca2007-08-10 00:33:50 +0000226void LoopIndexSplit::findIndVar(Value *V, Loop *L) {
Devang Patel2545f7b2007-08-09 01:39:01 +0000227
228 Instruction *I = dyn_cast<Instruction>(V);
229 if (!I)
Devang Patel61571ca2007-08-10 00:33:50 +0000230 return;
Devang Patel2545f7b2007-08-09 01:39:01 +0000231
232 // Check if I is a phi node from loop header or not.
233 if (PHINode *PN = dyn_cast<PHINode>(V)) {
234 if (PN->getParent() == L->getHeader()) {
Devang Patel61571ca2007-08-10 00:33:50 +0000235 IndVar = PN;
236 return;
Devang Patel2545f7b2007-08-09 01:39:01 +0000237 }
238 }
239
240 // Check if I is a add instruction whose one operand is
241 // phi node from loop header and second operand is constant.
242 if (I->getOpcode() != Instruction::Add)
Devang Patel61571ca2007-08-10 00:33:50 +0000243 return;
Devang Patel2545f7b2007-08-09 01:39:01 +0000244
245 Value *Op0 = I->getOperand(0);
246 Value *Op1 = I->getOperand(1);
247
248 if (PHINode *PN = dyn_cast<PHINode>(Op0)) {
249 if (PN->getParent() == L->getHeader()
250 && isa<ConstantInt>(Op1)) {
251 IndVar = PN;
252 IndVarIncrement = I;
Devang Patel61571ca2007-08-10 00:33:50 +0000253 return;
Devang Patel2545f7b2007-08-09 01:39:01 +0000254 }
255 }
256
257 if (PHINode *PN = dyn_cast<PHINode>(Op1)) {
258 if (PN->getParent() == L->getHeader()
259 && isa<ConstantInt>(Op0)) {
260 IndVar = PN;
261 IndVarIncrement = I;
Devang Patel61571ca2007-08-10 00:33:50 +0000262 return;
Devang Patel2545f7b2007-08-09 01:39:01 +0000263 }
264 }
265
Devang Patel61571ca2007-08-10 00:33:50 +0000266 return;
267}
268
269// Find loop's exit condition and associated induction variable.
270void LoopIndexSplit::findLoopConditionals() {
271
272 BasicBlock *ExitBlock = NULL;
273
274 for (Loop::block_iterator I = L->block_begin(), E = L->block_end();
275 I != E; ++I) {
276 BasicBlock *BB = *I;
277 if (!L->isLoopExit(BB))
278 continue;
279 if (ExitBlock)
280 return;
281 ExitBlock = BB;
282 }
283
284 if (!ExitBlock)
285 return;
286
287 // If exit block's terminator is conditional branch inst then we have found
288 // exit condition.
289 BranchInst *BR = dyn_cast<BranchInst>(ExitBlock->getTerminator());
290 if (!BR || BR->isUnconditional())
291 return;
292
293 ICmpInst *CI = dyn_cast<ICmpInst>(BR->getCondition());
294 if (!CI)
295 return;
296
297 ExitCondition = CI;
298
299 // Exit condition's one operand is loop invariant exit value and second
300 // operand is SCEVAddRecExpr based on induction variable.
301 Value *V0 = CI->getOperand(0);
302 Value *V1 = CI->getOperand(1);
303
304 SCEVHandle SH0 = SE->getSCEV(V0);
305 SCEVHandle SH1 = SE->getSCEV(V1);
306
307 if (SH0->isLoopInvariant(L) && isa<SCEVAddRecExpr>(SH1)) {
Devang Patel6a2d6ef2007-08-12 07:02:51 +0000308 ExitValueNum = 0;
Devang Patel61571ca2007-08-10 00:33:50 +0000309 findIndVar(V1, L);
310 }
311 else if (SH1->isLoopInvariant(L) && isa<SCEVAddRecExpr>(SH0)) {
Devang Patel6a2d6ef2007-08-12 07:02:51 +0000312 ExitValueNum = 1;
Devang Patel61571ca2007-08-10 00:33:50 +0000313 findIndVar(V0, L);
314 }
315
Devang Patel6a2d6ef2007-08-12 07:02:51 +0000316 if (!IndVar)
Devang Patel61571ca2007-08-10 00:33:50 +0000317 ExitCondition = NULL;
318 else if (IndVar) {
319 BasicBlock *Preheader = L->getLoopPreheader();
320 StartValue = IndVar->getIncomingValueForBlock(Preheader);
321 }
Devang Patel2545f7b2007-08-09 01:39:01 +0000322}
323
Devang Patelbc5fe632007-08-07 00:25:56 +0000324/// Find condition inside a loop that is suitable candidate for index split.
325void LoopIndexSplit::findSplitCondition() {
326
Devang Patelc8dadbf2007-08-08 21:02:17 +0000327 SplitInfo SD;
Devang Patel2545f7b2007-08-09 01:39:01 +0000328 // Check all basic block's terminators.
Devang Patelbc5fe632007-08-07 00:25:56 +0000329
Devang Patel2545f7b2007-08-09 01:39:01 +0000330 for (Loop::block_iterator I = L->block_begin(), E = L->block_end();
331 I != E; ++I) {
332 BasicBlock *BB = *I;
Devang Patelbc5fe632007-08-07 00:25:56 +0000333
Devang Patel2545f7b2007-08-09 01:39:01 +0000334 // If this basic block does not terminate in a conditional branch
335 // then terminator is not a suitable split condition.
336 BranchInst *BR = dyn_cast<BranchInst>(BB->getTerminator());
337 if (!BR)
338 continue;
339
340 if (BR->isUnconditional())
Devang Patelbc5fe632007-08-07 00:25:56 +0000341 continue;
342
Devang Patel2545f7b2007-08-09 01:39:01 +0000343 ICmpInst *CI = dyn_cast<ICmpInst>(BR->getCondition());
Devang Patel61571ca2007-08-10 00:33:50 +0000344 if (!CI || CI == ExitCondition)
Devang Patel2545f7b2007-08-09 01:39:01 +0000345 return;
Devang Patelbc5fe632007-08-07 00:25:56 +0000346
Devang Patel2545f7b2007-08-09 01:39:01 +0000347 // If one operand is loop invariant and second operand is SCEVAddRecExpr
348 // based on induction variable then CI is a candidate split condition.
349 Value *V0 = CI->getOperand(0);
350 Value *V1 = CI->getOperand(1);
351
352 SCEVHandle SH0 = SE->getSCEV(V0);
353 SCEVHandle SH1 = SE->getSCEV(V1);
354
355 if (SH0->isLoopInvariant(L) && isa<SCEVAddRecExpr>(SH1)) {
356 SD.SplitValue = V0;
357 SD.SplitCondition = CI;
Devang Patel61571ca2007-08-10 00:33:50 +0000358 if (PHINode *PN = dyn_cast<PHINode>(V1)) {
359 if (PN == IndVar)
360 SplitData.push_back(SD);
361 }
362 else if (Instruction *Insn = dyn_cast<Instruction>(V1)) {
363 if (IndVarIncrement && IndVarIncrement == Insn)
364 SplitData.push_back(SD);
365 }
Devang Patelbc5fe632007-08-07 00:25:56 +0000366 }
Devang Patel2545f7b2007-08-09 01:39:01 +0000367 else if (SH1->isLoopInvariant(L) && isa<SCEVAddRecExpr>(SH0)) {
368 SD.SplitValue = V1;
369 SD.SplitCondition = CI;
Devang Patel61571ca2007-08-10 00:33:50 +0000370 if (PHINode *PN = dyn_cast<PHINode>(V0)) {
371 if (PN == IndVar)
372 SplitData.push_back(SD);
373 }
374 else if (Instruction *Insn = dyn_cast<Instruction>(V0)) {
375 if (IndVarIncrement && IndVarIncrement == Insn)
376 SplitData.push_back(SD);
377 }
Devang Patelbc5fe632007-08-07 00:25:56 +0000378 }
379 }
380}
381
382/// processOneIterationLoop - Current loop L contains compare instruction
383/// that compares induction variable, IndVar, against loop invariant. If
384/// entire (i.e. meaningful) loop body is dominated by this compare
385/// instruction then loop body is executed only once. In such case eliminate
386/// loop structure surrounding this loop body. For example,
387/// for (int i = start; i < end; ++i) {
388/// if ( i == somevalue) {
389/// loop_body
390/// }
391/// }
392/// can be transformed into
393/// if (somevalue >= start && somevalue < end) {
394/// i = somevalue;
395/// loop_body
396/// }
Devang Patel901f67e2007-08-10 18:07:13 +0000397bool LoopIndexSplit::processOneIterationLoop(SplitInfo &SD) {
Devang Patelbc5fe632007-08-07 00:25:56 +0000398
399 BasicBlock *Header = L->getHeader();
400
401 // First of all, check if SplitCondition dominates entire loop body
402 // or not.
403
404 // If SplitCondition is not in loop header then this loop is not suitable
405 // for this transformation.
Devang Patelc8dadbf2007-08-08 21:02:17 +0000406 if (SD.SplitCondition->getParent() != Header)
Devang Patelbc5fe632007-08-07 00:25:56 +0000407 return false;
408
Devang Patelbc5fe632007-08-07 00:25:56 +0000409 // If loop header includes loop variant instruction operands then
410 // this loop may not be eliminated.
Devang Patelc8dadbf2007-08-08 21:02:17 +0000411 if (!safeHeader(SD, Header))
Devang Patelbc5fe632007-08-07 00:25:56 +0000412 return false;
413
414 // If Exit block includes loop variant instructions then this
415 // loop may not be eliminated.
Devang Patelbfa5eba2007-08-10 00:59:03 +0000416 if (!safeExitBlock(SD, ExitCondition->getParent()))
Devang Patelbc5fe632007-08-07 00:25:56 +0000417 return false;
418
Devang Patel2bcb5012007-08-08 01:51:27 +0000419 // Update CFG.
420
Devang Patelc166b952007-08-20 20:49:01 +0000421 // Replace index variable with split value in loop body. Loop body is executed
422 // only when index variable is equal to split value.
423 IndVar->replaceAllUsesWith(SD.SplitValue);
424
425 // Remove Latch to Header edge.
Devang Patelbc5fe632007-08-07 00:25:56 +0000426 BasicBlock *Latch = L->getLoopLatch();
Devang Patel2bcb5012007-08-08 01:51:27 +0000427 BasicBlock *LatchSucc = NULL;
428 BranchInst *BR = dyn_cast<BranchInst>(Latch->getTerminator());
429 if (!BR)
430 return false;
431 Header->removePredecessor(Latch);
432 for (succ_iterator SI = succ_begin(Latch), E = succ_end(Latch);
433 SI != E; ++SI) {
434 if (Header != *SI)
435 LatchSucc = *SI;
436 }
437 BR->setUnconditionalDest(LatchSucc);
438
Devang Patelbc5fe632007-08-07 00:25:56 +0000439 Instruction *Terminator = Header->getTerminator();
Devang Patel59e0c062007-08-14 01:30:57 +0000440 Value *ExitValue = ExitCondition->getOperand(ExitValueNum);
Devang Patelbc5fe632007-08-07 00:25:56 +0000441
Devang Patelbc5fe632007-08-07 00:25:56 +0000442 // Replace split condition in header.
443 // Transform
444 // SplitCondition : icmp eq i32 IndVar, SplitValue
445 // into
446 // c1 = icmp uge i32 SplitValue, StartValue
447 // c2 = icmp ult i32 vSplitValue, ExitValue
448 // and i32 c1, c2
Devang Patel61571ca2007-08-10 00:33:50 +0000449 bool SignedPredicate = ExitCondition->isSignedPredicate();
Devang Patelbc5fe632007-08-07 00:25:56 +0000450 Instruction *C1 = new ICmpInst(SignedPredicate ?
451 ICmpInst::ICMP_SGE : ICmpInst::ICMP_UGE,
Devang Patelc8dadbf2007-08-08 21:02:17 +0000452 SD.SplitValue, StartValue, "lisplit",
453 Terminator);
Devang Patelbc5fe632007-08-07 00:25:56 +0000454 Instruction *C2 = new ICmpInst(SignedPredicate ?
455 ICmpInst::ICMP_SLT : ICmpInst::ICMP_ULT,
Devang Patel59e0c062007-08-14 01:30:57 +0000456 SD.SplitValue, ExitValue, "lisplit",
Devang Patelc8dadbf2007-08-08 21:02:17 +0000457 Terminator);
458 Instruction *NSplitCond = BinaryOperator::createAnd(C1, C2, "lisplit",
459 Terminator);
460 SD.SplitCondition->replaceAllUsesWith(NSplitCond);
461 SD.SplitCondition->eraseFromParent();
Devang Patelbc5fe632007-08-07 00:25:56 +0000462
Devang Patelbc5fe632007-08-07 00:25:56 +0000463 // Now, clear latch block. Remove instructions that are responsible
464 // to increment induction variable.
465 Instruction *LTerminator = Latch->getTerminator();
466 for (BasicBlock::iterator LB = Latch->begin(), LE = Latch->end();
467 LB != LE; ) {
468 Instruction *I = LB;
469 ++LB;
470 if (isa<PHINode>(I) || I == LTerminator)
471 continue;
472
Devang Patel59e0c062007-08-14 01:30:57 +0000473 if (I == IndVarIncrement)
474 I->replaceAllUsesWith(ExitValue);
475 else
476 I->replaceAllUsesWith(UndefValue::get(I->getType()));
Devang Patel0d75c292007-08-07 17:45:35 +0000477 I->eraseFromParent();
Devang Patelbc5fe632007-08-07 00:25:56 +0000478 }
479
Devang Patel901f67e2007-08-10 18:07:13 +0000480 LPM->deleteLoopFromQueue(L);
Devang Patel95fd7172007-08-08 21:39:47 +0000481
482 // Update Dominator Info.
483 // Only CFG change done is to remove Latch to Header edge. This
484 // does not change dominator tree because Latch did not dominate
485 // Header.
Devang Patelb7639612007-08-13 22:13:24 +0000486 if (DF) {
Devang Patel95fd7172007-08-08 21:39:47 +0000487 DominanceFrontier::iterator HeaderDF = DF->find(Header);
488 if (HeaderDF != DF->end())
489 DF->removeFromFrontier(HeaderDF, Header);
490
491 DominanceFrontier::iterator LatchDF = DF->find(Latch);
492 if (LatchDF != DF->end())
493 DF->removeFromFrontier(LatchDF, Header);
494 }
Devang Patelbc5fe632007-08-07 00:25:56 +0000495 return true;
496}
497
498// If loop header includes loop variant instruction operands then
499// this loop can not be eliminated. This is used by processOneIterationLoop().
Devang Patelc8dadbf2007-08-08 21:02:17 +0000500bool LoopIndexSplit::safeHeader(SplitInfo &SD, BasicBlock *Header) {
Devang Patelbc5fe632007-08-07 00:25:56 +0000501
502 Instruction *Terminator = Header->getTerminator();
503 for(BasicBlock::iterator BI = Header->begin(), BE = Header->end();
504 BI != BE; ++BI) {
505 Instruction *I = BI;
506
Devang Patel59e0c062007-08-14 01:30:57 +0000507 // PHI Nodes are OK.
Devang Patelbc5fe632007-08-07 00:25:56 +0000508 if (isa<PHINode>(I))
509 continue;
510
511 // SplitCondition itself is OK.
Devang Patelc8dadbf2007-08-08 21:02:17 +0000512 if (I == SD.SplitCondition)
Devang Patel2bcb5012007-08-08 01:51:27 +0000513 continue;
Devang Patelbc5fe632007-08-07 00:25:56 +0000514
Devang Patel2545f7b2007-08-09 01:39:01 +0000515 // Induction variable is OK.
Devang Patel61571ca2007-08-10 00:33:50 +0000516 if (I == IndVar)
Devang Patel2545f7b2007-08-09 01:39:01 +0000517 continue;
518
519 // Induction variable increment is OK.
Devang Patel61571ca2007-08-10 00:33:50 +0000520 if (I == IndVarIncrement)
Devang Patel2545f7b2007-08-09 01:39:01 +0000521 continue;
522
Devang Patelbc5fe632007-08-07 00:25:56 +0000523 // Terminator is also harmless.
524 if (I == Terminator)
525 continue;
526
527 // Otherwise we have a instruction that may not be safe.
528 return false;
529 }
530
531 return true;
532}
533
534// If Exit block includes loop variant instructions then this
535// loop may not be eliminated. This is used by processOneIterationLoop().
Devang Patelc8dadbf2007-08-08 21:02:17 +0000536bool LoopIndexSplit::safeExitBlock(SplitInfo &SD, BasicBlock *ExitBlock) {
Devang Patelbc5fe632007-08-07 00:25:56 +0000537
Devang Patelbc5fe632007-08-07 00:25:56 +0000538 for (BasicBlock::iterator BI = ExitBlock->begin(), BE = ExitBlock->end();
539 BI != BE; ++BI) {
540 Instruction *I = BI;
541
Devang Patel59e0c062007-08-14 01:30:57 +0000542 // PHI Nodes are OK.
Devang Patelbc5fe632007-08-07 00:25:56 +0000543 if (isa<PHINode>(I))
544 continue;
545
Devang Patel2545f7b2007-08-09 01:39:01 +0000546 // Induction variable increment is OK.
Devang Patel61571ca2007-08-10 00:33:50 +0000547 if (IndVarIncrement && IndVarIncrement == I)
Devang Patel2545f7b2007-08-09 01:39:01 +0000548 continue;
Devang Patelbc5fe632007-08-07 00:25:56 +0000549
Devang Patel2545f7b2007-08-09 01:39:01 +0000550 // Check if I is induction variable increment instruction.
Devang Patel61571ca2007-08-10 00:33:50 +0000551 if (!IndVarIncrement && I->getOpcode() == Instruction::Add) {
Devang Patel2545f7b2007-08-09 01:39:01 +0000552
553 Value *Op0 = I->getOperand(0);
554 Value *Op1 = I->getOperand(1);
Devang Patelbc5fe632007-08-07 00:25:56 +0000555 PHINode *PN = NULL;
556 ConstantInt *CI = NULL;
557
558 if ((PN = dyn_cast<PHINode>(Op0))) {
559 if ((CI = dyn_cast<ConstantInt>(Op1)))
Devang Patel61571ca2007-08-10 00:33:50 +0000560 IndVarIncrement = I;
Devang Patelbc5fe632007-08-07 00:25:56 +0000561 } else
562 if ((PN = dyn_cast<PHINode>(Op1))) {
563 if ((CI = dyn_cast<ConstantInt>(Op0)))
Devang Patel61571ca2007-08-10 00:33:50 +0000564 IndVarIncrement = I;
Devang Patelbc5fe632007-08-07 00:25:56 +0000565 }
566
Devang Patel61571ca2007-08-10 00:33:50 +0000567 if (IndVarIncrement && PN == IndVar && CI->isOne())
Devang Patelbc5fe632007-08-07 00:25:56 +0000568 continue;
569 }
Devang Patel2bcb5012007-08-08 01:51:27 +0000570
Devang Patelbc5fe632007-08-07 00:25:56 +0000571 // I is an Exit condition if next instruction is block terminator.
572 // Exit condition is OK if it compares loop invariant exit value,
573 // which is checked below.
Devang Patel3719d4f2007-08-07 23:17:52 +0000574 else if (ICmpInst *EC = dyn_cast<ICmpInst>(I)) {
Devang Patel61571ca2007-08-10 00:33:50 +0000575 if (EC == ExitCondition)
Devang Patel2bcb5012007-08-08 01:51:27 +0000576 continue;
Devang Patelbc5fe632007-08-07 00:25:56 +0000577 }
578
Devang Patel61571ca2007-08-10 00:33:50 +0000579 if (I == ExitBlock->getTerminator())
580 continue;
581
Devang Patelbc5fe632007-08-07 00:25:56 +0000582 // Otherwise we have instruction that may not be safe.
583 return false;
584 }
585
Devang Patelbc5fe632007-08-07 00:25:56 +0000586 // We could not find any reason to consider ExitBlock unsafe.
587 return true;
588}
589
Devang Patel0aaeb172007-08-08 22:25:28 +0000590/// Find cost of spliting loop L. Cost is measured in terms of size growth.
591/// Size is growth is calculated based on amount of code duplicated in second
592/// loop.
593unsigned LoopIndexSplit::findSplitCost(Loop *L, SplitInfo &SD) {
594
595 unsigned Cost = 0;
596 BasicBlock *SDBlock = SD.SplitCondition->getParent();
597 for (Loop::block_iterator I = L->block_begin(), E = L->block_end();
598 I != E; ++I) {
599 BasicBlock *BB = *I;
600 // If a block is not dominated by split condition block then
601 // it must be duplicated in both loops.
602 if (!DT->dominates(SDBlock, BB))
603 Cost += BB->size();
604 }
605
606 return Cost;
607}
608
Devang Patel60a94c72007-08-14 18:35:57 +0000609/// removeBlocks - Remove basic block DeadBB and all blocks dominated by DeadBB.
610/// This routine is used to remove split condition's dead branch, dominated by
611/// DeadBB. LiveBB dominates split conidition's other branch.
612void LoopIndexSplit::removeBlocks(BasicBlock *DeadBB, Loop *LP,
613 BasicBlock *LiveBB) {
Devang Patel6a2d6ef2007-08-12 07:02:51 +0000614
Devang Patelf4277122007-08-15 03:31:47 +0000615 // First update DeadBB's dominance frontier.
Devang Patel9cee7a02007-08-17 21:59:16 +0000616 SmallVector<BasicBlock *, 8> FrontierBBs;
Devang Patelf4277122007-08-15 03:31:47 +0000617 DominanceFrontier::iterator DeadBBDF = DF->find(DeadBB);
618 if (DeadBBDF != DF->end()) {
619 SmallVector<BasicBlock *, 8> PredBlocks;
620
621 DominanceFrontier::DomSetType DeadBBSet = DeadBBDF->second;
622 for (DominanceFrontier::DomSetType::iterator DeadBBSetI = DeadBBSet.begin(),
623 DeadBBSetE = DeadBBSet.end(); DeadBBSetI != DeadBBSetE; ++DeadBBSetI) {
624 BasicBlock *FrontierBB = *DeadBBSetI;
Devang Patel9cee7a02007-08-17 21:59:16 +0000625 FrontierBBs.push_back(FrontierBB);
626
Devang Patelf4277122007-08-15 03:31:47 +0000627 // Rremove any PHI incoming edge from blocks dominated by DeadBB.
628 PredBlocks.clear();
629 for(pred_iterator PI = pred_begin(FrontierBB), PE = pred_end(FrontierBB);
630 PI != PE; ++PI) {
631 BasicBlock *P = *PI;
632 if (P == DeadBB || DT->dominates(DeadBB, P))
633 PredBlocks.push_back(P);
Devang Patelb7639612007-08-13 22:13:24 +0000634 }
Devang Patel9cee7a02007-08-17 21:59:16 +0000635
636 BasicBlock *NewDominator = NULL;
Devang Patelf4277122007-08-15 03:31:47 +0000637 for(BasicBlock::iterator FBI = FrontierBB->begin(), FBE = FrontierBB->end();
638 FBI != FBE; ++FBI) {
639 if (PHINode *PN = dyn_cast<PHINode>(FBI)) {
640 for(SmallVector<BasicBlock *, 8>::iterator PI = PredBlocks.begin(),
641 PE = PredBlocks.end(); PI != PE; ++PI) {
642 BasicBlock *P = *PI;
643 PN->removeIncomingValue(P);
644 }
Devang Patel9cee7a02007-08-17 21:59:16 +0000645 // If we have not identified new dominator then see if we can identify
646 // one based on remaining incoming PHINode values.
647 if (NewDominator == NULL && PN->getNumIncomingValues() == 1)
648 NewDominator = PN->getIncomingBlock(0);
Devang Patelf4277122007-08-15 03:31:47 +0000649 }
650 else
651 break;
Devang Patel9cee7a02007-08-17 21:59:16 +0000652 }
Devang Patel6a2d6ef2007-08-12 07:02:51 +0000653 }
Devang Patel6a2d6ef2007-08-12 07:02:51 +0000654 }
Devang Patelf4277122007-08-15 03:31:47 +0000655
656 // Now remove DeadBB and all nodes dominated by DeadBB in df order.
657 SmallVector<BasicBlock *, 32> WorkList;
658 DomTreeNode *DN = DT->getNode(DeadBB);
659 for (df_iterator<DomTreeNode*> DI = df_begin(DN),
660 E = df_end(DN); DI != E; ++DI) {
661 BasicBlock *BB = DI->getBlock();
662 WorkList.push_back(BB);
Devang Patel9cee7a02007-08-17 21:59:16 +0000663 BB->replaceAllUsesWith(UndefValue::get(Type::LabelTy));
Devang Patelf4277122007-08-15 03:31:47 +0000664 }
665
666 while (!WorkList.empty()) {
667 BasicBlock *BB = WorkList.back(); WorkList.pop_back();
668 for(BasicBlock::iterator BBI = BB->begin(), BBE = BB->end();
669 BBI != BBE; ++BBI) {
670 Instruction *I = BBI;
671 I->replaceAllUsesWith(UndefValue::get(I->getType()));
672 I->eraseFromParent();
673 }
674 LPM->deleteSimpleAnalysisValue(BB, LP);
675 DT->eraseNode(BB);
676 DF->removeBlock(BB);
677 LI->removeBlock(BB);
678 BB->eraseFromParent();
679 }
Devang Patel9cee7a02007-08-17 21:59:16 +0000680
681 // Update Frontier BBs' dominator info.
682 while (!FrontierBBs.empty()) {
683 BasicBlock *FBB = FrontierBBs.back(); FrontierBBs.pop_back();
684 BasicBlock *NewDominator = FBB->getSinglePredecessor();
685 if (!NewDominator) {
686 pred_iterator PI = pred_begin(FBB), PE = pred_end(FBB);
687 NewDominator = *PI;
688 ++PI;
689 if (NewDominator != LiveBB) {
690 for(; PI != PE; ++PI) {
691 BasicBlock *P = *PI;
692 if (P == LiveBB) {
693 NewDominator = LiveBB;
694 break;
695 }
696 NewDominator = DT->findNearestCommonDominator(NewDominator, P);
697 }
698 }
699 }
700 assert (NewDominator && "Unable to fix dominator info.");
701 DT->changeImmediateDominator(FBB, NewDominator);
702 DF->changeImmediateDominator(FBB, NewDominator, DT);
703 }
704
Devang Patel6a2d6ef2007-08-12 07:02:51 +0000705}
706
Devang Patelc8dadbf2007-08-08 21:02:17 +0000707bool LoopIndexSplit::splitLoop(SplitInfo &SD) {
Devang Patelf824fb42007-08-10 00:53:35 +0000708
709 BasicBlock *Preheader = L->getLoopPreheader();
Devang Patel81fcdfb2007-08-15 02:14:55 +0000710 BasicBlock *SplitBlock = SD.SplitCondition->getParent();
711 BasicBlock *Latch = L->getLoopLatch();
712 BasicBlock *Header = L->getHeader();
713 BranchInst *SplitTerminator = cast<BranchInst>(SplitBlock->getTerminator());
714
715 // FIXME - Unable to handle triange loops at the moment.
716 // In triangle loop, split condition is in header and one of the
717 // the split destination is loop latch. If split condition is EQ
718 // then such loops are already handle in processOneIterationLoop().
719 if (Header == SplitBlock
720 && (Latch == SplitTerminator->getSuccessor(0)
721 || Latch == SplitTerminator->getSuccessor(1)))
722 return false;
Devang Patelf824fb42007-08-10 00:53:35 +0000723
Devang Patel9cba64e2007-08-18 00:00:32 +0000724 // If one of the split condition branch is post dominating other then loop
725 // index split is not appropriate.
Devang Patel9cee7a02007-08-17 21:59:16 +0000726 BasicBlock *Succ0 = SplitTerminator->getSuccessor(0);
727 BasicBlock *Succ1 = SplitTerminator->getSuccessor(1);
728 if (DT->dominates(Succ0, Latch) || DT->dominates(Succ1, Latch))
729 return false;
730
Devang Patel9cba64e2007-08-18 00:00:32 +0000731 // If one of the split condition branch is a predecessor of the other
732 // split condition branch head then do not split loop on this condition.
733 for(pred_iterator PI = pred_begin(Succ0), PE = pred_end(Succ0); PI != PE; ++PI)
734 if (Succ1 == *PI)
735 return false;
736 for(pred_iterator PI = pred_begin(Succ1), PE = pred_end(Succ1); PI != PE; ++PI)
737 if (Succ0 == *PI)
738 return false;
739
Devang Patel61571ca2007-08-10 00:33:50 +0000740 // True loop is original loop. False loop is cloned loop.
Devang Patelf824fb42007-08-10 00:53:35 +0000741
742 bool SignedPredicate = ExitCondition->isSignedPredicate();
Devang Patel61571ca2007-08-10 00:33:50 +0000743 //[*] Calculate True loop's new Exit Value in loop preheader.
Devang Patelf824fb42007-08-10 00:53:35 +0000744 // TLExitValue = min(SplitValue, ExitValue)
Devang Patel61571ca2007-08-10 00:33:50 +0000745 //[*] Calculate False loop's new Start Value in loop preheader.
Devang Patelf824fb42007-08-10 00:53:35 +0000746 // FLStartValue = min(SplitValue, TrueLoop.StartValue)
747 Value *TLExitValue = NULL;
748 Value *FLStartValue = NULL;
749 if (isa<ConstantInt>(SD.SplitValue)) {
750 TLExitValue = SD.SplitValue;
751 FLStartValue = SD.SplitValue;
752 }
753 else {
754 Value *C1 = new ICmpInst(SignedPredicate ?
755 ICmpInst::ICMP_SLT : ICmpInst::ICMP_ULT,
Devang Patel6a2d6ef2007-08-12 07:02:51 +0000756 SD.SplitValue,
757 ExitCondition->getOperand(ExitValueNum),
758 "lsplit.ev",
Devang Patelf824fb42007-08-10 00:53:35 +0000759 Preheader->getTerminator());
Devang Patel6a2d6ef2007-08-12 07:02:51 +0000760 TLExitValue = new SelectInst(C1, SD.SplitValue,
761 ExitCondition->getOperand(ExitValueNum),
Devang Patelf824fb42007-08-10 00:53:35 +0000762 "lsplit.ev", Preheader->getTerminator());
763
764 Value *C2 = new ICmpInst(SignedPredicate ?
765 ICmpInst::ICMP_SLT : ICmpInst::ICMP_ULT,
766 SD.SplitValue, StartValue, "lsplit.sv",
767 Preheader->getTerminator());
768 FLStartValue = new SelectInst(C2, SD.SplitValue, StartValue,
769 "lsplit.sv", Preheader->getTerminator());
770 }
Devang Patel901f67e2007-08-10 18:07:13 +0000771
Devang Patel6a2d6ef2007-08-12 07:02:51 +0000772 //[*] Clone loop. Avoid true destination of split condition and
773 // the blocks dominated by true destination.
774 DenseMap<const Value *, Value *> ValueMap;
775 Loop *FalseLoop = CloneLoop(L, LPM, LI, ValueMap, this);
776 BasicBlock *FalseHeader = FalseLoop->getHeader();
777
778 //[*] True loop's exit edge enters False loop.
779 PHINode *IndVarClone = cast<PHINode>(ValueMap[IndVar]);
Devang Patel901f67e2007-08-10 18:07:13 +0000780 BasicBlock *ExitBlock = ExitCondition->getParent();
781 BranchInst *ExitInsn = dyn_cast<BranchInst>(ExitBlock->getTerminator());
782 assert (ExitInsn && "Unable to find suitable loop exit branch");
783 BasicBlock *ExitDest = ExitInsn->getSuccessor(1);
Devang Patel6a2d6ef2007-08-12 07:02:51 +0000784
Devang Patel59e0c062007-08-14 01:30:57 +0000785 if (L->contains(ExitDest)) {
786 ExitDest = ExitInsn->getSuccessor(0);
787 ExitInsn->setSuccessor(0, FalseHeader);
788 } else
789 ExitInsn->setSuccessor(1, FalseHeader);
790
791 // Collect inverse map of Header PHINodes.
792 DenseMap<Value *, Value *> InverseMap;
793 for (BasicBlock::iterator BI = L->getHeader()->begin(),
794 BE = L->getHeader()->end(); BI != BE; ++BI) {
795 if (PHINode *PN = dyn_cast<PHINode>(BI)) {
796 PHINode *PNClone = cast<PHINode>(ValueMap[PN]);
797 InverseMap[PNClone] = PN;
798 } else
799 break;
800 }
801
802 // Update False loop's header
Devang Patel6a2d6ef2007-08-12 07:02:51 +0000803 for (BasicBlock::iterator BI = FalseHeader->begin(), BE = FalseHeader->end();
804 BI != BE; ++BI) {
805 if (PHINode *PN = dyn_cast<PHINode>(BI)) {
806 PN->removeIncomingValue(Preheader);
807 if (PN == IndVarClone)
808 PN->addIncoming(FLStartValue, ExitBlock);
Devang Patel59e0c062007-08-14 01:30:57 +0000809 else {
810 PHINode *OrigPN = cast<PHINode>(InverseMap[PN]);
811 Value *V2 = OrigPN->getIncomingValueForBlock(ExitBlock);
812 PN->addIncoming(V2, ExitBlock);
813 }
814 } else
Devang Patel6a2d6ef2007-08-12 07:02:51 +0000815 break;
816 }
817
Devang Patel59e0c062007-08-14 01:30:57 +0000818 // Update ExitDest. Now it's predecessor is False loop's exit block.
819 BasicBlock *ExitBlockClone = cast<BasicBlock>(ValueMap[ExitBlock]);
820 for (BasicBlock::iterator BI = ExitDest->begin(), BE = ExitDest->end();
821 BI != BE; ++BI) {
822 if (PHINode *PN = dyn_cast<PHINode>(BI)) {
823 PN->addIncoming(ValueMap[PN->getIncomingValueForBlock(ExitBlock)], ExitBlockClone);
824 PN->removeIncomingValue(ExitBlock);
825 } else
826 break;
827 }
Devang Patel6a2d6ef2007-08-12 07:02:51 +0000828
Devang Patelb7639612007-08-13 22:13:24 +0000829 if (DT) {
830 DT->changeImmediateDominator(FalseHeader, ExitBlock);
831 DT->changeImmediateDominator(ExitDest, cast<BasicBlock>(ValueMap[ExitBlock]));
832 }
833
Devang Patel901f67e2007-08-10 18:07:13 +0000834 assert (!L->contains(ExitDest) && " Unable to find exit edge destination");
Devang Patel901f67e2007-08-10 18:07:13 +0000835
Devang Patel6a2d6ef2007-08-12 07:02:51 +0000836 //[*] Split Exit Edge.
837 SplitEdge(ExitBlock, FalseHeader, this);
Devang Patel901f67e2007-08-10 18:07:13 +0000838
Devang Patel61571ca2007-08-10 00:33:50 +0000839 //[*] Eliminate split condition's false branch from True loop.
Devang Patel6a2d6ef2007-08-12 07:02:51 +0000840 BranchInst *BR = cast<BranchInst>(SplitBlock->getTerminator());
841 BasicBlock *FBB = BR->getSuccessor(1);
842 BR->setUnconditionalDest(BR->getSuccessor(0));
Devang Patel60a94c72007-08-14 18:35:57 +0000843 removeBlocks(FBB, L, BR->getSuccessor(0));
Devang Patel6a2d6ef2007-08-12 07:02:51 +0000844
845 //[*] Update True loop's exit value using new exit value.
846 ExitCondition->setOperand(ExitValueNum, TLExitValue);
847
848 //[*] Eliminate split condition's true branch in False loop CFG.
Devang Patel6a2d6ef2007-08-12 07:02:51 +0000849 BasicBlock *FSplitBlock = cast<BasicBlock>(ValueMap[SplitBlock]);
850 BranchInst *FBR = cast<BranchInst>(FSplitBlock->getTerminator());
851 BasicBlock *TBB = FBR->getSuccessor(0);
852 FBR->setUnconditionalDest(FBR->getSuccessor(1));
Devang Patel60a94c72007-08-14 18:35:57 +0000853 removeBlocks(TBB, FalseLoop, cast<BasicBlock>(FBR->getSuccessor(0)));
Devang Patel6a2d6ef2007-08-12 07:02:51 +0000854
Devang Patel6a2d6ef2007-08-12 07:02:51 +0000855 return true;
Devang Patelbc5fe632007-08-07 00:25:56 +0000856}
Devang Patel6a2d6ef2007-08-12 07:02:51 +0000857