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Chris Lattner01d1ee32002-05-21 20:50:24 +00001//===- SimplifyCFG.cpp - Code to perform CFG simplification ---------------===//
Misha Brukmanfd939082005-04-21 23:48:37 +00002//
John Criswellb576c942003-10-20 19:43:21 +00003// The LLVM Compiler Infrastructure
4//
Chris Lattner4ee451d2007-12-29 20:36:04 +00005// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
Misha Brukmanfd939082005-04-21 23:48:37 +00007//
John Criswellb576c942003-10-20 19:43:21 +00008//===----------------------------------------------------------------------===//
Chris Lattner01d1ee32002-05-21 20:50:24 +00009//
Chris Lattnerbb190ac2002-10-08 21:36:33 +000010// Peephole optimize the CFG.
Chris Lattner01d1ee32002-05-21 20:50:24 +000011//
12//===----------------------------------------------------------------------===//
13
Chris Lattner218a8222004-06-20 01:13:18 +000014#define DEBUG_TYPE "simplifycfg"
Chris Lattner01d1ee32002-05-21 20:50:24 +000015#include "llvm/Transforms/Utils/Local.h"
Chris Lattner723c66d2004-02-11 03:36:04 +000016#include "llvm/Constants.h"
17#include "llvm/Instructions.h"
Devang Patel383d7ed2009-02-03 22:12:02 +000018#include "llvm/IntrinsicInst.h"
Chris Lattner0d560082004-02-24 05:38:11 +000019#include "llvm/Type.h"
Reid Spencerc1030572007-01-19 21:13:56 +000020#include "llvm/DerivedTypes.h"
Dale Johannesenf8bc3002009-05-13 18:25:07 +000021#include "llvm/GlobalVariable.h"
Chris Lattner01d1ee32002-05-21 20:50:24 +000022#include "llvm/Support/CFG.h"
Reid Spencer551ccae2004-09-01 22:55:40 +000023#include "llvm/Support/Debug.h"
Chris Lattner79066fa2007-01-30 23:46:24 +000024#include "llvm/Analysis/ConstantFolding.h"
Chris Lattnereaba3a12005-09-19 23:49:37 +000025#include "llvm/Transforms/Utils/BasicBlockUtils.h"
Chris Lattner93e985f2007-02-13 02:10:56 +000026#include "llvm/ADT/SmallVector.h"
Chris Lattnerc9951232007-04-02 01:44:59 +000027#include "llvm/ADT/SmallPtrSet.h"
Evan Cheng502a4f52008-06-12 21:15:59 +000028#include "llvm/ADT/Statistic.h"
Chris Lattner01d1ee32002-05-21 20:50:24 +000029#include <algorithm>
30#include <functional>
Chris Lattnerd52c2612004-02-24 07:23:58 +000031#include <set>
Chris Lattner698f96f2004-10-18 04:07:22 +000032#include <map>
Chris Lattnerf7703df2004-01-09 06:12:26 +000033using namespace llvm;
Brian Gaeked0fde302003-11-11 22:41:34 +000034
Evan Cheng502a4f52008-06-12 21:15:59 +000035STATISTIC(NumSpeculations, "Number of speculative executed instructions");
36
Chris Lattner2bdcb562005-08-03 00:19:45 +000037/// SafeToMergeTerminators - Return true if it is safe to merge these two
38/// terminator instructions together.
39///
40static bool SafeToMergeTerminators(TerminatorInst *SI1, TerminatorInst *SI2) {
41 if (SI1 == SI2) return false; // Can't merge with self!
42
43 // It is not safe to merge these two switch instructions if they have a common
44 // successor, and if that successor has a PHI node, and if *that* PHI node has
45 // conflicting incoming values from the two switch blocks.
46 BasicBlock *SI1BB = SI1->getParent();
47 BasicBlock *SI2BB = SI2->getParent();
Chris Lattnerc9951232007-04-02 01:44:59 +000048 SmallPtrSet<BasicBlock*, 16> SI1Succs(succ_begin(SI1BB), succ_end(SI1BB));
Chris Lattner2bdcb562005-08-03 00:19:45 +000049
50 for (succ_iterator I = succ_begin(SI2BB), E = succ_end(SI2BB); I != E; ++I)
51 if (SI1Succs.count(*I))
52 for (BasicBlock::iterator BBI = (*I)->begin();
53 isa<PHINode>(BBI); ++BBI) {
54 PHINode *PN = cast<PHINode>(BBI);
55 if (PN->getIncomingValueForBlock(SI1BB) !=
56 PN->getIncomingValueForBlock(SI2BB))
57 return false;
58 }
59
60 return true;
61}
62
63/// AddPredecessorToBlock - Update PHI nodes in Succ to indicate that there will
64/// now be entries in it from the 'NewPred' block. The values that will be
65/// flowing into the PHI nodes will be the same as those coming in from
66/// ExistPred, an existing predecessor of Succ.
67static void AddPredecessorToBlock(BasicBlock *Succ, BasicBlock *NewPred,
68 BasicBlock *ExistPred) {
69 assert(std::find(succ_begin(ExistPred), succ_end(ExistPred), Succ) !=
70 succ_end(ExistPred) && "ExistPred is not a predecessor of Succ!");
71 if (!isa<PHINode>(Succ->begin())) return; // Quick exit if nothing to do
72
Chris Lattner093a4382008-07-13 22:23:11 +000073 PHINode *PN;
74 for (BasicBlock::iterator I = Succ->begin();
75 (PN = dyn_cast<PHINode>(I)); ++I)
76 PN->addIncoming(PN->getIncomingValueForBlock(ExistPred), NewPred);
Chris Lattner2bdcb562005-08-03 00:19:45 +000077}
78
Bill Wendling5049fa62009-01-19 23:43:56 +000079/// CanPropagatePredecessorsForPHIs - Return true if we can fold BB, an
80/// almost-empty BB ending in an unconditional branch to Succ, into succ.
81///
82/// Assumption: Succ is the single successor for BB.
83///
Chris Lattner3b3efc72005-08-03 00:29:26 +000084static bool CanPropagatePredecessorsForPHIs(BasicBlock *BB, BasicBlock *Succ) {
Chris Lattner01d1ee32002-05-21 20:50:24 +000085 assert(*succ_begin(BB) == Succ && "Succ is not successor of BB!");
Chris Lattner3abb95d2002-09-24 00:09:26 +000086
Matthijs Kooijman5e179a22008-05-23 09:09:41 +000087 DOUT << "Looking to fold " << BB->getNameStart() << " into "
88 << Succ->getNameStart() << "\n";
Dale Johannesenf33b1102009-03-19 17:23:29 +000089 // Shortcut, if there is only a single predecessor it must be BB and merging
Matthijs Kooijman5e179a22008-05-23 09:09:41 +000090 // is always safe
91 if (Succ->getSinglePredecessor()) return true;
92
93 typedef SmallPtrSet<Instruction*, 16> InstrSet;
94 InstrSet BBPHIs;
95
96 // Make a list of all phi nodes in BB
97 BasicBlock::iterator BBI = BB->begin();
98 while (isa<PHINode>(*BBI)) BBPHIs.insert(BBI++);
99
100 // Make a list of the predecessors of BB
101 typedef SmallPtrSet<BasicBlock*, 16> BlockSet;
102 BlockSet BBPreds(pred_begin(BB), pred_end(BB));
103
104 // Use that list to make another list of common predecessors of BB and Succ
105 BlockSet CommonPreds;
106 for (pred_iterator PI = pred_begin(Succ), PE = pred_end(Succ);
107 PI != PE; ++PI)
108 if (BBPreds.count(*PI))
109 CommonPreds.insert(*PI);
110
111 // Shortcut, if there are no common predecessors, merging is always safe
Dan Gohmana8c763b2008-08-14 18:13:49 +0000112 if (CommonPreds.empty())
Matthijs Kooijman5e179a22008-05-23 09:09:41 +0000113 return true;
114
115 // Look at all the phi nodes in Succ, to see if they present a conflict when
116 // merging these blocks
117 for (BasicBlock::iterator I = Succ->begin(); isa<PHINode>(I); ++I) {
118 PHINode *PN = cast<PHINode>(I);
119
120 // If the incoming value from BB is again a PHINode in
121 // BB which has the same incoming value for *PI as PN does, we can
122 // merge the phi nodes and then the blocks can still be merged
123 PHINode *BBPN = dyn_cast<PHINode>(PN->getIncomingValueForBlock(BB));
124 if (BBPN && BBPN->getParent() == BB) {
125 for (BlockSet::iterator PI = CommonPreds.begin(), PE = CommonPreds.end();
126 PI != PE; PI++) {
127 if (BBPN->getIncomingValueForBlock(*PI)
128 != PN->getIncomingValueForBlock(*PI)) {
129 DOUT << "Can't fold, phi node " << *PN->getNameStart() << " in "
130 << Succ->getNameStart() << " is conflicting with "
131 << BBPN->getNameStart() << " with regard to common predecessor "
132 << (*PI)->getNameStart() << "\n";
133 return false;
Chris Lattnerdc88dbe2005-08-03 00:38:27 +0000134 }
135 }
Matthijs Kooijman5e179a22008-05-23 09:09:41 +0000136 // Remove this phinode from the list of phis in BB, since it has been
137 // handled.
138 BBPHIs.erase(BBPN);
139 } else {
140 Value* Val = PN->getIncomingValueForBlock(BB);
141 for (BlockSet::iterator PI = CommonPreds.begin(), PE = CommonPreds.end();
142 PI != PE; PI++) {
143 // See if the incoming value for the common predecessor is equal to the
144 // one for BB, in which case this phi node will not prevent the merging
145 // of the block.
146 if (Val != PN->getIncomingValueForBlock(*PI)) {
147 DOUT << "Can't fold, phi node " << *PN->getNameStart() << " in "
148 << Succ->getNameStart() << " is conflicting with regard to common "
149 << "predecessor " << (*PI)->getNameStart() << "\n";
150 return false;
151 }
152 }
Chris Lattner1aad9212005-08-03 00:59:12 +0000153 }
Chris Lattner1aad9212005-08-03 00:59:12 +0000154 }
Matthijs Kooijman5e179a22008-05-23 09:09:41 +0000155
156 // If there are any other phi nodes in BB that don't have a phi node in Succ
157 // to merge with, they must be moved to Succ completely. However, for any
158 // predecessors of Succ, branches will be added to the phi node that just
159 // point to itself. So, for any common predecessors, this must not cause
160 // conflicts.
161 for (InstrSet::iterator I = BBPHIs.begin(), E = BBPHIs.end();
162 I != E; I++) {
163 PHINode *PN = cast<PHINode>(*I);
164 for (BlockSet::iterator PI = CommonPreds.begin(), PE = CommonPreds.end();
165 PI != PE; PI++)
166 if (PN->getIncomingValueForBlock(*PI) != PN) {
167 DOUT << "Can't fold, phi node " << *PN->getNameStart() << " in "
168 << BB->getNameStart() << " is conflicting with regard to common "
169 << "predecessor " << (*PI)->getNameStart() << "\n";
170 return false;
171 }
172 }
173
Chris Lattner8e75ee22005-12-03 18:25:58 +0000174 return true;
Chris Lattner01d1ee32002-05-21 20:50:24 +0000175}
176
Chris Lattner7e663482005-08-03 00:11:16 +0000177/// TryToSimplifyUncondBranchFromEmptyBlock - BB contains an unconditional
178/// branch to Succ, and contains no instructions other than PHI nodes and the
179/// branch. If possible, eliminate BB.
180static bool TryToSimplifyUncondBranchFromEmptyBlock(BasicBlock *BB,
181 BasicBlock *Succ) {
Matthijs Kooijman5e179a22008-05-23 09:09:41 +0000182 // Check to see if merging these blocks would cause conflicts for any of the
183 // phi nodes in BB or Succ. If not, we can safely merge.
Chris Lattner3b3efc72005-08-03 00:29:26 +0000184 if (!CanPropagatePredecessorsForPHIs(BB, Succ)) return false;
Chris Lattner7e663482005-08-03 00:11:16 +0000185
Bill Wendling0d45a092006-11-26 10:17:54 +0000186 DOUT << "Killing Trivial BB: \n" << *BB;
Chris Lattner7e663482005-08-03 00:11:16 +0000187
Chris Lattner3b3efc72005-08-03 00:29:26 +0000188 if (isa<PHINode>(Succ->begin())) {
189 // If there is more than one pred of succ, and there are PHI nodes in
190 // the successor, then we need to add incoming edges for the PHI nodes
191 //
Chris Lattner82442432008-02-18 07:42:56 +0000192 const SmallVector<BasicBlock*, 16> BBPreds(pred_begin(BB), pred_end(BB));
Chris Lattner3b3efc72005-08-03 00:29:26 +0000193
194 // Loop over all of the PHI nodes in the successor of BB.
195 for (BasicBlock::iterator I = Succ->begin(); isa<PHINode>(I); ++I) {
196 PHINode *PN = cast<PHINode>(I);
197 Value *OldVal = PN->removeIncomingValue(BB, false);
198 assert(OldVal && "No entry in PHI for Pred BB!");
199
Chris Lattnerdc88dbe2005-08-03 00:38:27 +0000200 // If this incoming value is one of the PHI nodes in BB, the new entries
201 // in the PHI node are the entries from the old PHI.
Chris Lattner3b3efc72005-08-03 00:29:26 +0000202 if (isa<PHINode>(OldVal) && cast<PHINode>(OldVal)->getParent() == BB) {
203 PHINode *OldValPN = cast<PHINode>(OldVal);
204 for (unsigned i = 0, e = OldValPN->getNumIncomingValues(); i != e; ++i)
Matthijs Kooijman5e179a22008-05-23 09:09:41 +0000205 // Note that, since we are merging phi nodes and BB and Succ might
206 // have common predecessors, we could end up with a phi node with
207 // identical incoming branches. This will be cleaned up later (and
208 // will trigger asserts if we try to clean it up now, without also
209 // simplifying the corresponding conditional branch).
Chris Lattner3b3efc72005-08-03 00:29:26 +0000210 PN->addIncoming(OldValPN->getIncomingValue(i),
211 OldValPN->getIncomingBlock(i));
212 } else {
Chris Lattner82442432008-02-18 07:42:56 +0000213 // Add an incoming value for each of the new incoming values.
214 for (unsigned i = 0, e = BBPreds.size(); i != e; ++i)
215 PN->addIncoming(OldVal, BBPreds[i]);
Chris Lattner3b3efc72005-08-03 00:29:26 +0000216 }
217 }
218 }
219
Chris Lattner7e663482005-08-03 00:11:16 +0000220 if (isa<PHINode>(&BB->front())) {
Bill Wendling13524bf2009-01-19 08:46:20 +0000221 SmallVector<BasicBlock*, 16>
222 OldSuccPreds(pred_begin(Succ), pred_end(Succ));
Chris Lattner7e663482005-08-03 00:11:16 +0000223
224 // Move all PHI nodes in BB to Succ if they are alive, otherwise
225 // delete them.
Chris Lattner9e0dad42009-01-19 02:07:32 +0000226 while (PHINode *PN = dyn_cast<PHINode>(&BB->front())) {
Chris Lattnerdc88dbe2005-08-03 00:38:27 +0000227 if (PN->use_empty()) {
228 // Just remove the dead phi. This happens if Succ's PHIs were the only
229 // users of the PHI nodes.
230 PN->eraseFromParent();
Chris Lattner9e0dad42009-01-19 02:07:32 +0000231 continue;
Chris Lattner7e663482005-08-03 00:11:16 +0000232 }
Chris Lattner9e0dad42009-01-19 02:07:32 +0000233
234 // The instruction is alive, so this means that BB must dominate all
235 // predecessors of Succ (Since all uses of the PN are after its
236 // definition, so in Succ or a block dominated by Succ. If a predecessor
237 // of Succ would not be dominated by BB, PN would violate the def before
238 // use SSA demand). Therefore, we can simply move the phi node to the
239 // next block.
240 Succ->getInstList().splice(Succ->begin(),
241 BB->getInstList(), BB->begin());
242
243 // We need to add new entries for the PHI node to account for
244 // predecessors of Succ that the PHI node does not take into
245 // account. At this point, since we know that BB dominated succ and all
246 // of its predecessors, this means that we should any newly added
247 // incoming edges should use the PHI node itself as the value for these
248 // edges, because they are loop back edges.
249 for (unsigned i = 0, e = OldSuccPreds.size(); i != e; ++i)
250 if (OldSuccPreds[i] != BB)
251 PN->addIncoming(PN, OldSuccPreds[i]);
252 }
Chris Lattner7e663482005-08-03 00:11:16 +0000253 }
254
255 // Everything that jumped to BB now goes to Succ.
Chris Lattner7e663482005-08-03 00:11:16 +0000256 BB->replaceAllUsesWith(Succ);
Chris Lattner86cc4232007-02-11 01:37:51 +0000257 if (!Succ->hasName()) Succ->takeName(BB);
Chris Lattner7e663482005-08-03 00:11:16 +0000258 BB->eraseFromParent(); // Delete the old basic block.
Chris Lattner7e663482005-08-03 00:11:16 +0000259 return true;
260}
261
Chris Lattner723c66d2004-02-11 03:36:04 +0000262/// GetIfCondition - Given a basic block (BB) with two predecessors (and
263/// presumably PHI nodes in it), check to see if the merge at this block is due
264/// to an "if condition". If so, return the boolean condition that determines
265/// which entry into BB will be taken. Also, return by references the block
266/// that will be entered from if the condition is true, and the block that will
267/// be entered if the condition is false.
Misha Brukmanfd939082005-04-21 23:48:37 +0000268///
Chris Lattner723c66d2004-02-11 03:36:04 +0000269///
270static Value *GetIfCondition(BasicBlock *BB,
271 BasicBlock *&IfTrue, BasicBlock *&IfFalse) {
272 assert(std::distance(pred_begin(BB), pred_end(BB)) == 2 &&
273 "Function can only handle blocks with 2 predecessors!");
274 BasicBlock *Pred1 = *pred_begin(BB);
275 BasicBlock *Pred2 = *++pred_begin(BB);
276
277 // We can only handle branches. Other control flow will be lowered to
278 // branches if possible anyway.
279 if (!isa<BranchInst>(Pred1->getTerminator()) ||
280 !isa<BranchInst>(Pred2->getTerminator()))
281 return 0;
282 BranchInst *Pred1Br = cast<BranchInst>(Pred1->getTerminator());
283 BranchInst *Pred2Br = cast<BranchInst>(Pred2->getTerminator());
284
285 // Eliminate code duplication by ensuring that Pred1Br is conditional if
286 // either are.
287 if (Pred2Br->isConditional()) {
288 // If both branches are conditional, we don't have an "if statement". In
289 // reality, we could transform this case, but since the condition will be
290 // required anyway, we stand no chance of eliminating it, so the xform is
291 // probably not profitable.
292 if (Pred1Br->isConditional())
293 return 0;
294
295 std::swap(Pred1, Pred2);
296 std::swap(Pred1Br, Pred2Br);
297 }
298
299 if (Pred1Br->isConditional()) {
300 // If we found a conditional branch predecessor, make sure that it branches
301 // to BB and Pred2Br. If it doesn't, this isn't an "if statement".
302 if (Pred1Br->getSuccessor(0) == BB &&
303 Pred1Br->getSuccessor(1) == Pred2) {
304 IfTrue = Pred1;
305 IfFalse = Pred2;
306 } else if (Pred1Br->getSuccessor(0) == Pred2 &&
307 Pred1Br->getSuccessor(1) == BB) {
308 IfTrue = Pred2;
309 IfFalse = Pred1;
310 } else {
311 // We know that one arm of the conditional goes to BB, so the other must
312 // go somewhere unrelated, and this must not be an "if statement".
313 return 0;
314 }
315
316 // The only thing we have to watch out for here is to make sure that Pred2
317 // doesn't have incoming edges from other blocks. If it does, the condition
318 // doesn't dominate BB.
319 if (++pred_begin(Pred2) != pred_end(Pred2))
320 return 0;
321
322 return Pred1Br->getCondition();
323 }
324
325 // Ok, if we got here, both predecessors end with an unconditional branch to
326 // BB. Don't panic! If both blocks only have a single (identical)
327 // predecessor, and THAT is a conditional branch, then we're all ok!
328 if (pred_begin(Pred1) == pred_end(Pred1) ||
329 ++pred_begin(Pred1) != pred_end(Pred1) ||
330 pred_begin(Pred2) == pred_end(Pred2) ||
331 ++pred_begin(Pred2) != pred_end(Pred2) ||
332 *pred_begin(Pred1) != *pred_begin(Pred2))
333 return 0;
334
335 // Otherwise, if this is a conditional branch, then we can use it!
336 BasicBlock *CommonPred = *pred_begin(Pred1);
337 if (BranchInst *BI = dyn_cast<BranchInst>(CommonPred->getTerminator())) {
338 assert(BI->isConditional() && "Two successors but not conditional?");
339 if (BI->getSuccessor(0) == Pred1) {
340 IfTrue = Pred1;
341 IfFalse = Pred2;
342 } else {
343 IfTrue = Pred2;
344 IfFalse = Pred1;
345 }
346 return BI->getCondition();
347 }
348 return 0;
349}
350
Bill Wendling5049fa62009-01-19 23:43:56 +0000351/// DominatesMergePoint - If we have a merge point of an "if condition" as
352/// accepted above, return true if the specified value dominates the block. We
353/// don't handle the true generality of domination here, just a special case
354/// which works well enough for us.
355///
356/// If AggressiveInsts is non-null, and if V does not dominate BB, we check to
357/// see if V (which must be an instruction) is cheap to compute and is
358/// non-trapping. If both are true, the instruction is inserted into the set
359/// and true is returned.
Chris Lattner9c078662004-10-14 05:13:36 +0000360static bool DominatesMergePoint(Value *V, BasicBlock *BB,
361 std::set<Instruction*> *AggressiveInsts) {
Chris Lattner570751c2004-04-09 22:50:22 +0000362 Instruction *I = dyn_cast<Instruction>(V);
Chris Lattnerb74b1812006-10-20 00:42:07 +0000363 if (!I) {
364 // Non-instructions all dominate instructions, but not all constantexprs
365 // can be executed unconditionally.
366 if (ConstantExpr *C = dyn_cast<ConstantExpr>(V))
367 if (C->canTrap())
368 return false;
369 return true;
370 }
Chris Lattner570751c2004-04-09 22:50:22 +0000371 BasicBlock *PBB = I->getParent();
Chris Lattner723c66d2004-02-11 03:36:04 +0000372
Chris Lattnerda895d62005-02-27 06:18:25 +0000373 // We don't want to allow weird loops that might have the "if condition" in
Chris Lattner570751c2004-04-09 22:50:22 +0000374 // the bottom of this block.
375 if (PBB == BB) return false;
Chris Lattner723c66d2004-02-11 03:36:04 +0000376
Chris Lattner570751c2004-04-09 22:50:22 +0000377 // If this instruction is defined in a block that contains an unconditional
378 // branch to BB, then it must be in the 'conditional' part of the "if
379 // statement".
380 if (BranchInst *BI = dyn_cast<BranchInst>(PBB->getTerminator()))
381 if (BI->isUnconditional() && BI->getSuccessor(0) == BB) {
Chris Lattner9c078662004-10-14 05:13:36 +0000382 if (!AggressiveInsts) return false;
Chris Lattner570751c2004-04-09 22:50:22 +0000383 // Okay, it looks like the instruction IS in the "condition". Check to
384 // see if its a cheap instruction to unconditionally compute, and if it
385 // only uses stuff defined outside of the condition. If so, hoist it out.
386 switch (I->getOpcode()) {
387 default: return false; // Cannot hoist this out safely.
Dale Johannesen3a56d142009-03-06 21:08:33 +0000388 case Instruction::Load: {
Chris Lattner570751c2004-04-09 22:50:22 +0000389 // We can hoist loads that are non-volatile and obviously cannot trap.
390 if (cast<LoadInst>(I)->isVolatile())
391 return false;
Eli Friedman080efb82008-12-16 20:54:32 +0000392 // FIXME: A computation of a constant can trap!
Chris Lattner570751c2004-04-09 22:50:22 +0000393 if (!isa<AllocaInst>(I->getOperand(0)) &&
Reid Spencer460f16c2004-07-18 00:32:14 +0000394 !isa<Constant>(I->getOperand(0)))
Chris Lattner570751c2004-04-09 22:50:22 +0000395 return false;
Dale Johannesenf8bc3002009-05-13 18:25:07 +0000396 // External weak globals may have address 0, so we can't load them.
Dale Johannesen7616a4a2009-05-14 18:41:18 +0000397 Value *V2 = I->getOperand(0)->getUnderlyingObject();
398 if (V2) {
399 GlobalVariable* GV = dyn_cast<GlobalVariable>(V2);
400 if (GV && GV->hasExternalWeakLinkage())
401 return false;
402 }
Chris Lattner570751c2004-04-09 22:50:22 +0000403 // Finally, we have to check to make sure there are no instructions
404 // before the load in its basic block, as we are going to hoist the loop
405 // out to its predecessor.
Dale Johannesen3a56d142009-03-06 21:08:33 +0000406 BasicBlock::iterator IP = PBB->begin();
407 while (isa<DbgInfoIntrinsic>(IP))
408 IP++;
409 if (IP != BasicBlock::iterator(I))
Chris Lattner570751c2004-04-09 22:50:22 +0000410 return false;
411 break;
Dale Johannesen3a56d142009-03-06 21:08:33 +0000412 }
Chris Lattner570751c2004-04-09 22:50:22 +0000413 case Instruction::Add:
414 case Instruction::Sub:
415 case Instruction::And:
416 case Instruction::Or:
417 case Instruction::Xor:
418 case Instruction::Shl:
Reid Spencer3822ff52006-11-08 06:47:33 +0000419 case Instruction::LShr:
420 case Instruction::AShr:
Reid Spencere4d87aa2006-12-23 06:05:41 +0000421 case Instruction::ICmp:
Chris Lattner570751c2004-04-09 22:50:22 +0000422 break; // These are all cheap and non-trapping instructions.
423 }
Misha Brukmanfd939082005-04-21 23:48:37 +0000424
Chris Lattner570751c2004-04-09 22:50:22 +0000425 // Okay, we can only really hoist these out if their operands are not
426 // defined in the conditional region.
Gabor Greiff7ea3632008-06-10 22:03:26 +0000427 for (User::op_iterator i = I->op_begin(), e = I->op_end(); i != e; ++i)
428 if (!DominatesMergePoint(*i, BB, 0))
Chris Lattner570751c2004-04-09 22:50:22 +0000429 return false;
Chris Lattner9c078662004-10-14 05:13:36 +0000430 // Okay, it's safe to do this! Remember this instruction.
431 AggressiveInsts->insert(I);
Chris Lattner570751c2004-04-09 22:50:22 +0000432 }
433
Chris Lattner723c66d2004-02-11 03:36:04 +0000434 return true;
435}
Chris Lattner01d1ee32002-05-21 20:50:24 +0000436
Bill Wendling5049fa62009-01-19 23:43:56 +0000437/// GatherConstantSetEQs - Given a potentially 'or'd together collection of
438/// icmp_eq instructions that compare a value against a constant, return the
439/// value being compared, and stick the constant into the Values vector.
Chris Lattner1654cff2004-06-19 07:02:14 +0000440static Value *GatherConstantSetEQs(Value *V, std::vector<ConstantInt*> &Values){
Anton Korobeynikov07e6e562008-02-20 11:26:25 +0000441 if (Instruction *Inst = dyn_cast<Instruction>(V)) {
Reid Spencere4d87aa2006-12-23 06:05:41 +0000442 if (Inst->getOpcode() == Instruction::ICmp &&
443 cast<ICmpInst>(Inst)->getPredicate() == ICmpInst::ICMP_EQ) {
Chris Lattner1654cff2004-06-19 07:02:14 +0000444 if (ConstantInt *C = dyn_cast<ConstantInt>(Inst->getOperand(1))) {
Chris Lattner0d560082004-02-24 05:38:11 +0000445 Values.push_back(C);
446 return Inst->getOperand(0);
Chris Lattner1654cff2004-06-19 07:02:14 +0000447 } else if (ConstantInt *C = dyn_cast<ConstantInt>(Inst->getOperand(0))) {
Chris Lattner0d560082004-02-24 05:38:11 +0000448 Values.push_back(C);
449 return Inst->getOperand(1);
450 }
451 } else if (Inst->getOpcode() == Instruction::Or) {
452 if (Value *LHS = GatherConstantSetEQs(Inst->getOperand(0), Values))
453 if (Value *RHS = GatherConstantSetEQs(Inst->getOperand(1), Values))
454 if (LHS == RHS)
455 return LHS;
456 }
Anton Korobeynikov07e6e562008-02-20 11:26:25 +0000457 }
Chris Lattner0d560082004-02-24 05:38:11 +0000458 return 0;
459}
460
Bill Wendling5049fa62009-01-19 23:43:56 +0000461/// GatherConstantSetNEs - Given a potentially 'and'd together collection of
462/// setne instructions that compare a value against a constant, return the value
463/// being compared, and stick the constant into the Values vector.
Chris Lattner1654cff2004-06-19 07:02:14 +0000464static Value *GatherConstantSetNEs(Value *V, std::vector<ConstantInt*> &Values){
Anton Korobeynikov07e6e562008-02-20 11:26:25 +0000465 if (Instruction *Inst = dyn_cast<Instruction>(V)) {
Reid Spencere4d87aa2006-12-23 06:05:41 +0000466 if (Inst->getOpcode() == Instruction::ICmp &&
467 cast<ICmpInst>(Inst)->getPredicate() == ICmpInst::ICMP_NE) {
Chris Lattner1654cff2004-06-19 07:02:14 +0000468 if (ConstantInt *C = dyn_cast<ConstantInt>(Inst->getOperand(1))) {
Chris Lattner0d560082004-02-24 05:38:11 +0000469 Values.push_back(C);
470 return Inst->getOperand(0);
Chris Lattner1654cff2004-06-19 07:02:14 +0000471 } else if (ConstantInt *C = dyn_cast<ConstantInt>(Inst->getOperand(0))) {
Chris Lattner0d560082004-02-24 05:38:11 +0000472 Values.push_back(C);
473 return Inst->getOperand(1);
474 }
Chris Lattner0d560082004-02-24 05:38:11 +0000475 } else if (Inst->getOpcode() == Instruction::And) {
476 if (Value *LHS = GatherConstantSetNEs(Inst->getOperand(0), Values))
477 if (Value *RHS = GatherConstantSetNEs(Inst->getOperand(1), Values))
478 if (LHS == RHS)
479 return LHS;
480 }
Anton Korobeynikov07e6e562008-02-20 11:26:25 +0000481 }
Chris Lattner0d560082004-02-24 05:38:11 +0000482 return 0;
483}
484
Chris Lattner0d560082004-02-24 05:38:11 +0000485/// GatherValueComparisons - If the specified Cond is an 'and' or 'or' of a
486/// bunch of comparisons of one value against constants, return the value and
487/// the constants being compared.
488static bool GatherValueComparisons(Instruction *Cond, Value *&CompVal,
Chris Lattner1654cff2004-06-19 07:02:14 +0000489 std::vector<ConstantInt*> &Values) {
Chris Lattner0d560082004-02-24 05:38:11 +0000490 if (Cond->getOpcode() == Instruction::Or) {
491 CompVal = GatherConstantSetEQs(Cond, Values);
492
493 // Return true to indicate that the condition is true if the CompVal is
494 // equal to one of the constants.
495 return true;
496 } else if (Cond->getOpcode() == Instruction::And) {
497 CompVal = GatherConstantSetNEs(Cond, Values);
Misha Brukmanfd939082005-04-21 23:48:37 +0000498
Chris Lattner0d560082004-02-24 05:38:11 +0000499 // Return false to indicate that the condition is false if the CompVal is
500 // equal to one of the constants.
501 return false;
502 }
503 return false;
504}
505
Eli Friedman080efb82008-12-16 20:54:32 +0000506static void EraseTerminatorInstAndDCECond(TerminatorInst *TI) {
507 Instruction* Cond = 0;
508 if (SwitchInst *SI = dyn_cast<SwitchInst>(TI)) {
509 Cond = dyn_cast<Instruction>(SI->getCondition());
510 } else if (BranchInst *BI = dyn_cast<BranchInst>(TI)) {
511 if (BI->isConditional())
512 Cond = dyn_cast<Instruction>(BI->getCondition());
513 }
514
515 TI->eraseFromParent();
516 if (Cond) RecursivelyDeleteTriviallyDeadInstructions(Cond);
517}
518
Chris Lattner9fd49552008-11-27 23:25:44 +0000519/// isValueEqualityComparison - Return true if the specified terminator checks
520/// to see if a value is equal to constant integer value.
Chris Lattner542f1492004-02-28 21:28:10 +0000521static Value *isValueEqualityComparison(TerminatorInst *TI) {
Chris Lattner4bebf082004-03-16 19:45:22 +0000522 if (SwitchInst *SI = dyn_cast<SwitchInst>(TI)) {
523 // Do not permit merging of large switch instructions into their
524 // predecessors unless there is only one predecessor.
525 if (SI->getNumSuccessors() * std::distance(pred_begin(SI->getParent()),
526 pred_end(SI->getParent())) > 128)
527 return 0;
528
Chris Lattner542f1492004-02-28 21:28:10 +0000529 return SI->getCondition();
Chris Lattner4bebf082004-03-16 19:45:22 +0000530 }
Chris Lattner542f1492004-02-28 21:28:10 +0000531 if (BranchInst *BI = dyn_cast<BranchInst>(TI))
532 if (BI->isConditional() && BI->getCondition()->hasOneUse())
Reid Spencere4d87aa2006-12-23 06:05:41 +0000533 if (ICmpInst *ICI = dyn_cast<ICmpInst>(BI->getCondition()))
534 if ((ICI->getPredicate() == ICmpInst::ICMP_EQ ||
535 ICI->getPredicate() == ICmpInst::ICMP_NE) &&
536 isa<ConstantInt>(ICI->getOperand(1)))
537 return ICI->getOperand(0);
Chris Lattner542f1492004-02-28 21:28:10 +0000538 return 0;
539}
540
Bill Wendling5049fa62009-01-19 23:43:56 +0000541/// GetValueEqualityComparisonCases - Given a value comparison instruction,
542/// decode all of the 'cases' that it represents and return the 'default' block.
Chris Lattner542f1492004-02-28 21:28:10 +0000543static BasicBlock *
Misha Brukmanfd939082005-04-21 23:48:37 +0000544GetValueEqualityComparisonCases(TerminatorInst *TI,
Chris Lattner542f1492004-02-28 21:28:10 +0000545 std::vector<std::pair<ConstantInt*,
546 BasicBlock*> > &Cases) {
547 if (SwitchInst *SI = dyn_cast<SwitchInst>(TI)) {
548 Cases.reserve(SI->getNumCases());
549 for (unsigned i = 1, e = SI->getNumCases(); i != e; ++i)
Chris Lattnerbe54dcc2005-02-26 18:33:28 +0000550 Cases.push_back(std::make_pair(SI->getCaseValue(i), SI->getSuccessor(i)));
Chris Lattner542f1492004-02-28 21:28:10 +0000551 return SI->getDefaultDest();
552 }
553
554 BranchInst *BI = cast<BranchInst>(TI);
Reid Spencere4d87aa2006-12-23 06:05:41 +0000555 ICmpInst *ICI = cast<ICmpInst>(BI->getCondition());
556 Cases.push_back(std::make_pair(cast<ConstantInt>(ICI->getOperand(1)),
557 BI->getSuccessor(ICI->getPredicate() ==
558 ICmpInst::ICMP_NE)));
559 return BI->getSuccessor(ICI->getPredicate() == ICmpInst::ICMP_EQ);
Chris Lattner542f1492004-02-28 21:28:10 +0000560}
561
562
Bill Wendling5049fa62009-01-19 23:43:56 +0000563/// EliminateBlockCases - Given a vector of bb/value pairs, remove any entries
564/// in the list that match the specified block.
Misha Brukmanfd939082005-04-21 23:48:37 +0000565static void EliminateBlockCases(BasicBlock *BB,
Chris Lattner623369a2005-02-24 06:17:52 +0000566 std::vector<std::pair<ConstantInt*, BasicBlock*> > &Cases) {
567 for (unsigned i = 0, e = Cases.size(); i != e; ++i)
568 if (Cases[i].second == BB) {
569 Cases.erase(Cases.begin()+i);
570 --i; --e;
571 }
572}
573
Bill Wendling5049fa62009-01-19 23:43:56 +0000574/// ValuesOverlap - Return true if there are any keys in C1 that exist in C2 as
575/// well.
Chris Lattner623369a2005-02-24 06:17:52 +0000576static bool
577ValuesOverlap(std::vector<std::pair<ConstantInt*, BasicBlock*> > &C1,
578 std::vector<std::pair<ConstantInt*, BasicBlock*> > &C2) {
579 std::vector<std::pair<ConstantInt*, BasicBlock*> > *V1 = &C1, *V2 = &C2;
580
581 // Make V1 be smaller than V2.
582 if (V1->size() > V2->size())
583 std::swap(V1, V2);
584
585 if (V1->size() == 0) return false;
586 if (V1->size() == 1) {
587 // Just scan V2.
588 ConstantInt *TheVal = (*V1)[0].first;
589 for (unsigned i = 0, e = V2->size(); i != e; ++i)
590 if (TheVal == (*V2)[i].first)
591 return true;
592 }
593
594 // Otherwise, just sort both lists and compare element by element.
595 std::sort(V1->begin(), V1->end());
596 std::sort(V2->begin(), V2->end());
597 unsigned i1 = 0, i2 = 0, e1 = V1->size(), e2 = V2->size();
598 while (i1 != e1 && i2 != e2) {
599 if ((*V1)[i1].first == (*V2)[i2].first)
600 return true;
601 if ((*V1)[i1].first < (*V2)[i2].first)
602 ++i1;
603 else
604 ++i2;
605 }
606 return false;
607}
608
Bill Wendling5049fa62009-01-19 23:43:56 +0000609/// SimplifyEqualityComparisonWithOnlyPredecessor - If TI is known to be a
610/// terminator instruction and its block is known to only have a single
611/// predecessor block, check to see if that predecessor is also a value
612/// comparison with the same value, and if that comparison determines the
613/// outcome of this comparison. If so, simplify TI. This does a very limited
614/// form of jump threading.
Chris Lattner623369a2005-02-24 06:17:52 +0000615static bool SimplifyEqualityComparisonWithOnlyPredecessor(TerminatorInst *TI,
616 BasicBlock *Pred) {
617 Value *PredVal = isValueEqualityComparison(Pred->getTerminator());
618 if (!PredVal) return false; // Not a value comparison in predecessor.
619
620 Value *ThisVal = isValueEqualityComparison(TI);
621 assert(ThisVal && "This isn't a value comparison!!");
622 if (ThisVal != PredVal) return false; // Different predicates.
623
624 // Find out information about when control will move from Pred to TI's block.
625 std::vector<std::pair<ConstantInt*, BasicBlock*> > PredCases;
626 BasicBlock *PredDef = GetValueEqualityComparisonCases(Pred->getTerminator(),
627 PredCases);
628 EliminateBlockCases(PredDef, PredCases); // Remove default from cases.
Misha Brukmanfd939082005-04-21 23:48:37 +0000629
Chris Lattner623369a2005-02-24 06:17:52 +0000630 // Find information about how control leaves this block.
631 std::vector<std::pair<ConstantInt*, BasicBlock*> > ThisCases;
632 BasicBlock *ThisDef = GetValueEqualityComparisonCases(TI, ThisCases);
633 EliminateBlockCases(ThisDef, ThisCases); // Remove default from cases.
634
635 // If TI's block is the default block from Pred's comparison, potentially
636 // simplify TI based on this knowledge.
637 if (PredDef == TI->getParent()) {
638 // If we are here, we know that the value is none of those cases listed in
639 // PredCases. If there are any cases in ThisCases that are in PredCases, we
640 // can simplify TI.
641 if (ValuesOverlap(PredCases, ThisCases)) {
Eli Friedman080efb82008-12-16 20:54:32 +0000642 if (isa<BranchInst>(TI)) {
Chris Lattner623369a2005-02-24 06:17:52 +0000643 // Okay, one of the successors of this condbr is dead. Convert it to a
644 // uncond br.
645 assert(ThisCases.size() == 1 && "Branch can only have one case!");
Chris Lattner623369a2005-02-24 06:17:52 +0000646 // Insert the new branch.
Gabor Greif051a9502008-04-06 20:25:17 +0000647 Instruction *NI = BranchInst::Create(ThisDef, TI);
Chris Lattner623369a2005-02-24 06:17:52 +0000648
649 // Remove PHI node entries for the dead edge.
650 ThisCases[0].second->removePredecessor(TI->getParent());
651
Bill Wendling0d45a092006-11-26 10:17:54 +0000652 DOUT << "Threading pred instr: " << *Pred->getTerminator()
653 << "Through successor TI: " << *TI << "Leaving: " << *NI << "\n";
Chris Lattner623369a2005-02-24 06:17:52 +0000654
Eli Friedman080efb82008-12-16 20:54:32 +0000655 EraseTerminatorInstAndDCECond(TI);
Chris Lattner623369a2005-02-24 06:17:52 +0000656 return true;
657
658 } else {
659 SwitchInst *SI = cast<SwitchInst>(TI);
660 // Okay, TI has cases that are statically dead, prune them away.
Chris Lattnerc9951232007-04-02 01:44:59 +0000661 SmallPtrSet<Constant*, 16> DeadCases;
Chris Lattner623369a2005-02-24 06:17:52 +0000662 for (unsigned i = 0, e = PredCases.size(); i != e; ++i)
663 DeadCases.insert(PredCases[i].first);
664
Bill Wendling0d45a092006-11-26 10:17:54 +0000665 DOUT << "Threading pred instr: " << *Pred->getTerminator()
666 << "Through successor TI: " << *TI;
Chris Lattner623369a2005-02-24 06:17:52 +0000667
668 for (unsigned i = SI->getNumCases()-1; i != 0; --i)
669 if (DeadCases.count(SI->getCaseValue(i))) {
670 SI->getSuccessor(i)->removePredecessor(TI->getParent());
671 SI->removeCase(i);
672 }
673
Bill Wendling0d45a092006-11-26 10:17:54 +0000674 DOUT << "Leaving: " << *TI << "\n";
Chris Lattner623369a2005-02-24 06:17:52 +0000675 return true;
676 }
677 }
678
679 } else {
680 // Otherwise, TI's block must correspond to some matched value. Find out
681 // which value (or set of values) this is.
682 ConstantInt *TIV = 0;
683 BasicBlock *TIBB = TI->getParent();
684 for (unsigned i = 0, e = PredCases.size(); i != e; ++i)
Anton Korobeynikov07e6e562008-02-20 11:26:25 +0000685 if (PredCases[i].second == TIBB) {
Chris Lattner623369a2005-02-24 06:17:52 +0000686 if (TIV == 0)
687 TIV = PredCases[i].first;
688 else
689 return false; // Cannot handle multiple values coming to this block.
Anton Korobeynikov07e6e562008-02-20 11:26:25 +0000690 }
Chris Lattner623369a2005-02-24 06:17:52 +0000691 assert(TIV && "No edge from pred to succ?");
692
693 // Okay, we found the one constant that our value can be if we get into TI's
694 // BB. Find out which successor will unconditionally be branched to.
695 BasicBlock *TheRealDest = 0;
696 for (unsigned i = 0, e = ThisCases.size(); i != e; ++i)
697 if (ThisCases[i].first == TIV) {
698 TheRealDest = ThisCases[i].second;
699 break;
700 }
701
702 // If not handled by any explicit cases, it is handled by the default case.
703 if (TheRealDest == 0) TheRealDest = ThisDef;
704
705 // Remove PHI node entries for dead edges.
706 BasicBlock *CheckEdge = TheRealDest;
707 for (succ_iterator SI = succ_begin(TIBB), e = succ_end(TIBB); SI != e; ++SI)
708 if (*SI != CheckEdge)
709 (*SI)->removePredecessor(TIBB);
710 else
711 CheckEdge = 0;
712
713 // Insert the new branch.
Gabor Greif051a9502008-04-06 20:25:17 +0000714 Instruction *NI = BranchInst::Create(TheRealDest, TI);
Chris Lattner623369a2005-02-24 06:17:52 +0000715
Bill Wendling0d45a092006-11-26 10:17:54 +0000716 DOUT << "Threading pred instr: " << *Pred->getTerminator()
717 << "Through successor TI: " << *TI << "Leaving: " << *NI << "\n";
Chris Lattner623369a2005-02-24 06:17:52 +0000718
Eli Friedman080efb82008-12-16 20:54:32 +0000719 EraseTerminatorInstAndDCECond(TI);
Chris Lattner623369a2005-02-24 06:17:52 +0000720 return true;
721 }
722 return false;
723}
724
Dale Johannesenc81f5442009-03-12 21:01:11 +0000725namespace {
726 /// ConstantIntOrdering - This class implements a stable ordering of constant
727 /// integers that does not depend on their address. This is important for
728 /// applications that sort ConstantInt's to ensure uniqueness.
729 struct ConstantIntOrdering {
730 bool operator()(const ConstantInt *LHS, const ConstantInt *RHS) const {
731 return LHS->getValue().ult(RHS->getValue());
732 }
733 };
734}
Dale Johannesena9537cf2009-03-12 01:00:26 +0000735
Bill Wendling5049fa62009-01-19 23:43:56 +0000736/// FoldValueComparisonIntoPredecessors - The specified terminator is a value
737/// equality comparison instruction (either a switch or a branch on "X == c").
738/// See if any of the predecessors of the terminator block are value comparisons
739/// on the same value. If so, and if safe to do so, fold them together.
Chris Lattner542f1492004-02-28 21:28:10 +0000740static bool FoldValueComparisonIntoPredecessors(TerminatorInst *TI) {
741 BasicBlock *BB = TI->getParent();
742 Value *CV = isValueEqualityComparison(TI); // CondVal
743 assert(CV && "Not a comparison?");
744 bool Changed = false;
745
Chris Lattner82442432008-02-18 07:42:56 +0000746 SmallVector<BasicBlock*, 16> Preds(pred_begin(BB), pred_end(BB));
Chris Lattner542f1492004-02-28 21:28:10 +0000747 while (!Preds.empty()) {
Dan Gohmane9d87f42009-05-06 17:22:41 +0000748 BasicBlock *Pred = Preds.pop_back_val();
Misha Brukmanfd939082005-04-21 23:48:37 +0000749
Chris Lattner542f1492004-02-28 21:28:10 +0000750 // See if the predecessor is a comparison with the same value.
751 TerminatorInst *PTI = Pred->getTerminator();
752 Value *PCV = isValueEqualityComparison(PTI); // PredCondVal
753
754 if (PCV == CV && SafeToMergeTerminators(TI, PTI)) {
755 // Figure out which 'cases' to copy from SI to PSI.
756 std::vector<std::pair<ConstantInt*, BasicBlock*> > BBCases;
757 BasicBlock *BBDefault = GetValueEqualityComparisonCases(TI, BBCases);
758
759 std::vector<std::pair<ConstantInt*, BasicBlock*> > PredCases;
760 BasicBlock *PredDefault = GetValueEqualityComparisonCases(PTI, PredCases);
761
762 // Based on whether the default edge from PTI goes to BB or not, fill in
763 // PredCases and PredDefault with the new switch cases we would like to
764 // build.
Chris Lattner82442432008-02-18 07:42:56 +0000765 SmallVector<BasicBlock*, 8> NewSuccessors;
Chris Lattner542f1492004-02-28 21:28:10 +0000766
767 if (PredDefault == BB) {
768 // If this is the default destination from PTI, only the edges in TI
769 // that don't occur in PTI, or that branch to BB will be activated.
Dale Johannesenc81f5442009-03-12 21:01:11 +0000770 std::set<ConstantInt*, ConstantIntOrdering> PTIHandled;
Chris Lattner542f1492004-02-28 21:28:10 +0000771 for (unsigned i = 0, e = PredCases.size(); i != e; ++i)
772 if (PredCases[i].second != BB)
773 PTIHandled.insert(PredCases[i].first);
774 else {
775 // The default destination is BB, we don't need explicit targets.
776 std::swap(PredCases[i], PredCases.back());
777 PredCases.pop_back();
778 --i; --e;
779 }
780
781 // Reconstruct the new switch statement we will be building.
782 if (PredDefault != BBDefault) {
783 PredDefault->removePredecessor(Pred);
784 PredDefault = BBDefault;
785 NewSuccessors.push_back(BBDefault);
786 }
787 for (unsigned i = 0, e = BBCases.size(); i != e; ++i)
788 if (!PTIHandled.count(BBCases[i].first) &&
789 BBCases[i].second != BBDefault) {
790 PredCases.push_back(BBCases[i]);
791 NewSuccessors.push_back(BBCases[i].second);
792 }
793
794 } else {
795 // If this is not the default destination from PSI, only the edges
796 // in SI that occur in PSI with a destination of BB will be
797 // activated.
Dale Johannesenc81f5442009-03-12 21:01:11 +0000798 std::set<ConstantInt*, ConstantIntOrdering> PTIHandled;
Chris Lattner542f1492004-02-28 21:28:10 +0000799 for (unsigned i = 0, e = PredCases.size(); i != e; ++i)
800 if (PredCases[i].second == BB) {
801 PTIHandled.insert(PredCases[i].first);
802 std::swap(PredCases[i], PredCases.back());
803 PredCases.pop_back();
804 --i; --e;
805 }
806
807 // Okay, now we know which constants were sent to BB from the
808 // predecessor. Figure out where they will all go now.
809 for (unsigned i = 0, e = BBCases.size(); i != e; ++i)
810 if (PTIHandled.count(BBCases[i].first)) {
811 // If this is one we are capable of getting...
812 PredCases.push_back(BBCases[i]);
813 NewSuccessors.push_back(BBCases[i].second);
814 PTIHandled.erase(BBCases[i].first);// This constant is taken care of
815 }
816
817 // If there are any constants vectored to BB that TI doesn't handle,
818 // they must go to the default destination of TI.
Dale Johannesenc81f5442009-03-12 21:01:11 +0000819 for (std::set<ConstantInt*, ConstantIntOrdering>::iterator I =
820 PTIHandled.begin(),
Chris Lattner542f1492004-02-28 21:28:10 +0000821 E = PTIHandled.end(); I != E; ++I) {
822 PredCases.push_back(std::make_pair(*I, BBDefault));
823 NewSuccessors.push_back(BBDefault);
824 }
825 }
826
827 // Okay, at this point, we know which new successor Pred will get. Make
828 // sure we update the number of entries in the PHI nodes for these
829 // successors.
830 for (unsigned i = 0, e = NewSuccessors.size(); i != e; ++i)
831 AddPredecessorToBlock(NewSuccessors[i], Pred, BB);
832
833 // Now that the successors are updated, create the new Switch instruction.
Gabor Greifb1dbcd82008-05-15 10:04:30 +0000834 SwitchInst *NewSI = SwitchInst::Create(CV, PredDefault,
835 PredCases.size(), PTI);
Chris Lattner542f1492004-02-28 21:28:10 +0000836 for (unsigned i = 0, e = PredCases.size(); i != e; ++i)
837 NewSI->addCase(PredCases[i].first, PredCases[i].second);
Chris Lattner13b2f762005-01-01 16:02:12 +0000838
Eli Friedman080efb82008-12-16 20:54:32 +0000839 EraseTerminatorInstAndDCECond(PTI);
Chris Lattner13b2f762005-01-01 16:02:12 +0000840
Chris Lattner542f1492004-02-28 21:28:10 +0000841 // Okay, last check. If BB is still a successor of PSI, then we must
842 // have an infinite loop case. If so, add an infinitely looping block
843 // to handle the case to preserve the behavior of the code.
844 BasicBlock *InfLoopBlock = 0;
845 for (unsigned i = 0, e = NewSI->getNumSuccessors(); i != e; ++i)
846 if (NewSI->getSuccessor(i) == BB) {
847 if (InfLoopBlock == 0) {
Chris Lattner093a4382008-07-13 22:23:11 +0000848 // Insert it at the end of the function, because it's either code,
Chris Lattner542f1492004-02-28 21:28:10 +0000849 // or it won't matter if it's hot. :)
Gabor Greif051a9502008-04-06 20:25:17 +0000850 InfLoopBlock = BasicBlock::Create("infloop", BB->getParent());
851 BranchInst::Create(InfLoopBlock, InfLoopBlock);
Chris Lattner542f1492004-02-28 21:28:10 +0000852 }
853 NewSI->setSuccessor(i, InfLoopBlock);
854 }
Misha Brukmanfd939082005-04-21 23:48:37 +0000855
Chris Lattner542f1492004-02-28 21:28:10 +0000856 Changed = true;
857 }
858 }
859 return Changed;
860}
861
Dale Johannesenc1f10402009-06-15 20:59:27 +0000862// isSafeToHoistInvoke - If we would need to insert a select that uses the
863// value of this invoke (comments in HoistThenElseCodeToIf explain why we
864// would need to do this), we can't hoist the invoke, as there is nowhere
865// to put the select in this case.
866static bool isSafeToHoistInvoke(BasicBlock *BB1, BasicBlock *BB2,
867 Instruction *I1, Instruction *I2) {
868 for (succ_iterator SI = succ_begin(BB1), E = succ_end(BB1); SI != E; ++SI) {
869 PHINode *PN;
870 for (BasicBlock::iterator BBI = SI->begin();
871 (PN = dyn_cast<PHINode>(BBI)); ++BBI) {
872 Value *BB1V = PN->getIncomingValueForBlock(BB1);
873 Value *BB2V = PN->getIncomingValueForBlock(BB2);
874 if (BB1V != BB2V && (BB1V==I1 || BB2V==I2)) {
875 return false;
876 }
877 }
878 }
879 return true;
880}
881
Chris Lattner6306d072005-08-03 17:59:45 +0000882/// HoistThenElseCodeToIf - Given a conditional branch that goes to BB1 and
Chris Lattner37dc9382004-11-30 00:29:14 +0000883/// BB2, hoist any common code in the two blocks up into the branch block. The
884/// caller of this function guarantees that BI's block dominates BB1 and BB2.
885static bool HoistThenElseCodeToIf(BranchInst *BI) {
886 // This does very trivial matching, with limited scanning, to find identical
887 // instructions in the two blocks. In particular, we don't want to get into
888 // O(M*N) situations here where M and N are the sizes of BB1 and BB2. As
889 // such, we currently just scan for obviously identical instructions in an
890 // identical order.
891 BasicBlock *BB1 = BI->getSuccessor(0); // The true destination.
892 BasicBlock *BB2 = BI->getSuccessor(1); // The false destination
893
Devang Patel65085cf2009-02-04 00:03:08 +0000894 BasicBlock::iterator BB1_Itr = BB1->begin();
895 BasicBlock::iterator BB2_Itr = BB2->begin();
896
897 Instruction *I1 = BB1_Itr++, *I2 = BB2_Itr++;
898 while (isa<DbgInfoIntrinsic>(I1))
899 I1 = BB1_Itr++;
900 while (isa<DbgInfoIntrinsic>(I2))
901 I2 = BB2_Itr++;
Dale Johannesenc1f10402009-06-15 20:59:27 +0000902 if (I1->getOpcode() != I2->getOpcode() || isa<PHINode>(I1) ||
903 !I1->isIdenticalTo(I2) ||
904 (isa<InvokeInst>(I1) && !isSafeToHoistInvoke(BB1, BB2, I1, I2)))
Chris Lattner37dc9382004-11-30 00:29:14 +0000905 return false;
906
907 // If we get here, we can hoist at least one instruction.
908 BasicBlock *BIParent = BI->getParent();
Chris Lattner37dc9382004-11-30 00:29:14 +0000909
910 do {
911 // If we are hoisting the terminator instruction, don't move one (making a
912 // broken BB), instead clone it, and remove BI.
913 if (isa<TerminatorInst>(I1))
914 goto HoistTerminator;
Misha Brukmanfd939082005-04-21 23:48:37 +0000915
Chris Lattner37dc9382004-11-30 00:29:14 +0000916 // For a normal instruction, we just move one to right before the branch,
917 // then replace all uses of the other with the first. Finally, we remove
918 // the now redundant second instruction.
919 BIParent->getInstList().splice(BI, BB1->getInstList(), I1);
920 if (!I2->use_empty())
921 I2->replaceAllUsesWith(I1);
922 BB2->getInstList().erase(I2);
Misha Brukmanfd939082005-04-21 23:48:37 +0000923
Devang Patel65085cf2009-02-04 00:03:08 +0000924 I1 = BB1_Itr++;
925 while (isa<DbgInfoIntrinsic>(I1))
926 I1 = BB1_Itr++;
927 I2 = BB2_Itr++;
928 while (isa<DbgInfoIntrinsic>(I2))
929 I2 = BB2_Itr++;
Chris Lattner37dc9382004-11-30 00:29:14 +0000930 } while (I1->getOpcode() == I2->getOpcode() && I1->isIdenticalTo(I2));
931
932 return true;
933
934HoistTerminator:
Dale Johannesenc1f10402009-06-15 20:59:27 +0000935 // It may not be possible to hoist an invoke.
936 if (isa<InvokeInst>(I1) && !isSafeToHoistInvoke(BB1, BB2, I1, I2))
937 return true;
938
Chris Lattner37dc9382004-11-30 00:29:14 +0000939 // Okay, it is safe to hoist the terminator.
940 Instruction *NT = I1->clone();
941 BIParent->getInstList().insert(BI, NT);
942 if (NT->getType() != Type::VoidTy) {
943 I1->replaceAllUsesWith(NT);
944 I2->replaceAllUsesWith(NT);
Chris Lattner86cc4232007-02-11 01:37:51 +0000945 NT->takeName(I1);
Chris Lattner37dc9382004-11-30 00:29:14 +0000946 }
947
948 // Hoisting one of the terminators from our successor is a great thing.
949 // Unfortunately, the successors of the if/else blocks may have PHI nodes in
950 // them. If they do, all PHI entries for BB1/BB2 must agree for all PHI
951 // nodes, so we insert select instruction to compute the final result.
952 std::map<std::pair<Value*,Value*>, SelectInst*> InsertedSelects;
953 for (succ_iterator SI = succ_begin(BB1), E = succ_end(BB1); SI != E; ++SI) {
954 PHINode *PN;
955 for (BasicBlock::iterator BBI = SI->begin();
Chris Lattner0f535c62004-11-30 07:47:34 +0000956 (PN = dyn_cast<PHINode>(BBI)); ++BBI) {
Chris Lattner37dc9382004-11-30 00:29:14 +0000957 Value *BB1V = PN->getIncomingValueForBlock(BB1);
958 Value *BB2V = PN->getIncomingValueForBlock(BB2);
959 if (BB1V != BB2V) {
960 // These values do not agree. Insert a select instruction before NT
961 // that determines the right value.
962 SelectInst *&SI = InsertedSelects[std::make_pair(BB1V, BB2V)];
963 if (SI == 0)
Gabor Greif051a9502008-04-06 20:25:17 +0000964 SI = SelectInst::Create(BI->getCondition(), BB1V, BB2V,
965 BB1V->getName()+"."+BB2V->getName(), NT);
Chris Lattner37dc9382004-11-30 00:29:14 +0000966 // Make the PHI node use the select for all incoming values for BB1/BB2
967 for (unsigned i = 0, e = PN->getNumIncomingValues(); i != e; ++i)
968 if (PN->getIncomingBlock(i) == BB1 || PN->getIncomingBlock(i) == BB2)
969 PN->setIncomingValue(i, SI);
970 }
971 }
972 }
973
974 // Update any PHI nodes in our new successors.
975 for (succ_iterator SI = succ_begin(BB1), E = succ_end(BB1); SI != E; ++SI)
976 AddPredecessorToBlock(*SI, BIParent, BB1);
Misha Brukmanfd939082005-04-21 23:48:37 +0000977
Eli Friedman080efb82008-12-16 20:54:32 +0000978 EraseTerminatorInstAndDCECond(BI);
Chris Lattner37dc9382004-11-30 00:29:14 +0000979 return true;
980}
981
Evan Cheng4d09efd2008-06-07 08:52:29 +0000982/// SpeculativelyExecuteBB - Given a conditional branch that goes to BB1
983/// and an BB2 and the only successor of BB1 is BB2, hoist simple code
984/// (for now, restricted to a single instruction that's side effect free) from
985/// the BB1 into the branch block to speculatively execute it.
986static bool SpeculativelyExecuteBB(BranchInst *BI, BasicBlock *BB1) {
987 // Only speculatively execution a single instruction (not counting the
988 // terminator) for now.
Devang Patel06b1e672009-03-06 06:00:17 +0000989 Instruction *HInst = NULL;
990 Instruction *Term = BB1->getTerminator();
991 for (BasicBlock::iterator BBI = BB1->begin(), BBE = BB1->end();
992 BBI != BBE; ++BBI) {
993 Instruction *I = BBI;
994 // Skip debug info.
995 if (isa<DbgInfoIntrinsic>(I)) continue;
996 if (I == Term) break;
997
998 if (!HInst)
999 HInst = I;
1000 else
1001 return false;
1002 }
1003 if (!HInst)
1004 return false;
Evan Cheng4d09efd2008-06-07 08:52:29 +00001005
Evan Cheng797d9512008-06-11 19:18:20 +00001006 // Be conservative for now. FP select instruction can often be expensive.
1007 Value *BrCond = BI->getCondition();
1008 if (isa<Instruction>(BrCond) &&
1009 cast<Instruction>(BrCond)->getOpcode() == Instruction::FCmp)
1010 return false;
1011
Evan Cheng4d09efd2008-06-07 08:52:29 +00001012 // If BB1 is actually on the false edge of the conditional branch, remember
1013 // to swap the select operands later.
1014 bool Invert = false;
1015 if (BB1 != BI->getSuccessor(0)) {
1016 assert(BB1 == BI->getSuccessor(1) && "No edge from 'if' block?");
1017 Invert = true;
1018 }
1019
1020 // Turn
1021 // BB:
1022 // %t1 = icmp
1023 // br i1 %t1, label %BB1, label %BB2
1024 // BB1:
1025 // %t3 = add %t2, c
1026 // br label BB2
1027 // BB2:
1028 // =>
1029 // BB:
1030 // %t1 = icmp
1031 // %t4 = add %t2, c
1032 // %t3 = select i1 %t1, %t2, %t3
Devang Patel06b1e672009-03-06 06:00:17 +00001033 switch (HInst->getOpcode()) {
Evan Cheng4d09efd2008-06-07 08:52:29 +00001034 default: return false; // Not safe / profitable to hoist.
1035 case Instruction::Add:
1036 case Instruction::Sub:
Dan Gohmanae3a0be2009-06-04 22:49:04 +00001037 // Not worth doing for vector ops.
1038 if (isa<VectorType>(HInst->getType()))
Chris Lattner9dd3b612009-01-18 23:22:07 +00001039 return false;
1040 break;
Evan Cheng4d09efd2008-06-07 08:52:29 +00001041 case Instruction::And:
1042 case Instruction::Or:
1043 case Instruction::Xor:
1044 case Instruction::Shl:
1045 case Instruction::LShr:
1046 case Instruction::AShr:
Chris Lattner9dd3b612009-01-18 23:22:07 +00001047 // Don't mess with vector operations.
Devang Patel06b1e672009-03-06 06:00:17 +00001048 if (isa<VectorType>(HInst->getType()))
Evan Chenge5334ea2008-06-25 07:50:12 +00001049 return false;
Evan Cheng4d09efd2008-06-07 08:52:29 +00001050 break; // These are all cheap and non-trapping instructions.
1051 }
Chris Lattner6fe73bb2009-01-19 00:36:37 +00001052
1053 // If the instruction is obviously dead, don't try to predicate it.
Devang Patel06b1e672009-03-06 06:00:17 +00001054 if (HInst->use_empty()) {
1055 HInst->eraseFromParent();
Chris Lattner6fe73bb2009-01-19 00:36:37 +00001056 return true;
1057 }
Evan Cheng4d09efd2008-06-07 08:52:29 +00001058
1059 // Can we speculatively execute the instruction? And what is the value
1060 // if the condition is false? Consider the phi uses, if the incoming value
1061 // from the "if" block are all the same V, then V is the value of the
1062 // select if the condition is false.
1063 BasicBlock *BIParent = BI->getParent();
1064 SmallVector<PHINode*, 4> PHIUses;
1065 Value *FalseV = NULL;
Chris Lattner6fe73bb2009-01-19 00:36:37 +00001066
1067 BasicBlock *BB2 = BB1->getTerminator()->getSuccessor(0);
Devang Patel06b1e672009-03-06 06:00:17 +00001068 for (Value::use_iterator UI = HInst->use_begin(), E = HInst->use_end();
Evan Cheng4d09efd2008-06-07 08:52:29 +00001069 UI != E; ++UI) {
Chris Lattner6fe73bb2009-01-19 00:36:37 +00001070 // Ignore any user that is not a PHI node in BB2. These can only occur in
1071 // unreachable blocks, because they would not be dominated by the instr.
Evan Cheng4d09efd2008-06-07 08:52:29 +00001072 PHINode *PN = dyn_cast<PHINode>(UI);
Chris Lattner6fe73bb2009-01-19 00:36:37 +00001073 if (!PN || PN->getParent() != BB2)
1074 return false;
Evan Cheng4d09efd2008-06-07 08:52:29 +00001075 PHIUses.push_back(PN);
Chris Lattner6fe73bb2009-01-19 00:36:37 +00001076
Evan Cheng4d09efd2008-06-07 08:52:29 +00001077 Value *PHIV = PN->getIncomingValueForBlock(BIParent);
1078 if (!FalseV)
1079 FalseV = PHIV;
1080 else if (FalseV != PHIV)
Chris Lattner6fe73bb2009-01-19 00:36:37 +00001081 return false; // Inconsistent value when condition is false.
Evan Cheng4d09efd2008-06-07 08:52:29 +00001082 }
Chris Lattner6fe73bb2009-01-19 00:36:37 +00001083
1084 assert(FalseV && "Must have at least one user, and it must be a PHI");
Evan Cheng4d09efd2008-06-07 08:52:29 +00001085
Evan Cheng502a4f52008-06-12 21:15:59 +00001086 // Do not hoist the instruction if any of its operands are defined but not
1087 // used in this BB. The transformation will prevent the operand from
1088 // being sunk into the use block.
Devang Patel06b1e672009-03-06 06:00:17 +00001089 for (User::op_iterator i = HInst->op_begin(), e = HInst->op_end();
1090 i != e; ++i) {
Evan Cheng502a4f52008-06-12 21:15:59 +00001091 Instruction *OpI = dyn_cast<Instruction>(*i);
1092 if (OpI && OpI->getParent() == BIParent &&
1093 !OpI->isUsedInBasicBlock(BIParent))
1094 return false;
1095 }
1096
Devang Patel3d0a9a32008-09-18 22:50:42 +00001097 // If we get here, we can hoist the instruction. Try to place it
Dale Johannesen990afed2009-03-13 01:05:24 +00001098 // before the icmp instruction preceding the conditional branch.
Devang Patel3d0a9a32008-09-18 22:50:42 +00001099 BasicBlock::iterator InsertPos = BI;
Dale Johannesen990afed2009-03-13 01:05:24 +00001100 if (InsertPos != BIParent->begin())
1101 --InsertPos;
1102 // Skip debug info between condition and branch.
1103 while (InsertPos != BIParent->begin() && isa<DbgInfoIntrinsic>(InsertPos))
Devang Patel3d0a9a32008-09-18 22:50:42 +00001104 --InsertPos;
Devang Patel20da1f02008-10-03 18:57:37 +00001105 if (InsertPos == BrCond && !isa<PHINode>(BrCond)) {
Devang Patel3d0a9a32008-09-18 22:50:42 +00001106 SmallPtrSet<Instruction *, 4> BB1Insns;
1107 for(BasicBlock::iterator BB1I = BB1->begin(), BB1E = BB1->end();
1108 BB1I != BB1E; ++BB1I)
1109 BB1Insns.insert(BB1I);
1110 for(Value::use_iterator UI = BrCond->use_begin(), UE = BrCond->use_end();
1111 UI != UE; ++UI) {
1112 Instruction *Use = cast<Instruction>(*UI);
1113 if (BB1Insns.count(Use)) {
1114 // If BrCond uses the instruction that place it just before
1115 // branch instruction.
1116 InsertPos = BI;
1117 break;
1118 }
1119 }
1120 } else
1121 InsertPos = BI;
Devang Patel06b1e672009-03-06 06:00:17 +00001122 BIParent->getInstList().splice(InsertPos, BB1->getInstList(), HInst);
Evan Cheng4d09efd2008-06-07 08:52:29 +00001123
1124 // Create a select whose true value is the speculatively executed value and
1125 // false value is the previously determined FalseV.
1126 SelectInst *SI;
1127 if (Invert)
Devang Patel06b1e672009-03-06 06:00:17 +00001128 SI = SelectInst::Create(BrCond, FalseV, HInst,
1129 FalseV->getName() + "." + HInst->getName(), BI);
Evan Cheng4d09efd2008-06-07 08:52:29 +00001130 else
Devang Patel06b1e672009-03-06 06:00:17 +00001131 SI = SelectInst::Create(BrCond, HInst, FalseV,
1132 HInst->getName() + "." + FalseV->getName(), BI);
Evan Cheng4d09efd2008-06-07 08:52:29 +00001133
1134 // Make the PHI node use the select for all incoming values for "then" and
1135 // "if" blocks.
1136 for (unsigned i = 0, e = PHIUses.size(); i != e; ++i) {
1137 PHINode *PN = PHIUses[i];
1138 for (unsigned j = 0, ee = PN->getNumIncomingValues(); j != ee; ++j)
1139 if (PN->getIncomingBlock(j) == BB1 ||
1140 PN->getIncomingBlock(j) == BIParent)
1141 PN->setIncomingValue(j, SI);
1142 }
1143
Evan Cheng502a4f52008-06-12 21:15:59 +00001144 ++NumSpeculations;
Evan Cheng4d09efd2008-06-07 08:52:29 +00001145 return true;
1146}
1147
Chris Lattner2e42e362005-09-20 00:43:16 +00001148/// BlockIsSimpleEnoughToThreadThrough - Return true if we can thread a branch
1149/// across this block.
1150static bool BlockIsSimpleEnoughToThreadThrough(BasicBlock *BB) {
1151 BranchInst *BI = cast<BranchInst>(BB->getTerminator());
Chris Lattnere9487f02005-09-20 01:48:40 +00001152 unsigned Size = 0;
1153
Devang Patel9200c892009-03-10 18:00:05 +00001154 for (BasicBlock::iterator BBI = BB->begin(); &*BBI != BI; ++BBI) {
Dale Johannesen8483e542009-03-12 23:18:09 +00001155 if (isa<DbgInfoIntrinsic>(BBI))
1156 continue;
Chris Lattnere9487f02005-09-20 01:48:40 +00001157 if (Size > 10) return false; // Don't clone large BB's.
Dale Johannesen8483e542009-03-12 23:18:09 +00001158 ++Size;
Chris Lattner2e42e362005-09-20 00:43:16 +00001159
Dale Johannesen8483e542009-03-12 23:18:09 +00001160 // We can only support instructions that do not define values that are
Chris Lattnere9487f02005-09-20 01:48:40 +00001161 // live outside of the current basic block.
1162 for (Value::use_iterator UI = BBI->use_begin(), E = BBI->use_end();
1163 UI != E; ++UI) {
1164 Instruction *U = cast<Instruction>(*UI);
1165 if (U->getParent() != BB || isa<PHINode>(U)) return false;
1166 }
Chris Lattner2e42e362005-09-20 00:43:16 +00001167
1168 // Looks ok, continue checking.
1169 }
Chris Lattnere9487f02005-09-20 01:48:40 +00001170
Chris Lattner2e42e362005-09-20 00:43:16 +00001171 return true;
1172}
1173
Chris Lattnereaba3a12005-09-19 23:49:37 +00001174/// FoldCondBranchOnPHI - If we have a conditional branch on a PHI node value
1175/// that is defined in the same block as the branch and if any PHI entries are
1176/// constants, thread edges corresponding to that entry to be branches to their
1177/// ultimate destination.
1178static bool FoldCondBranchOnPHI(BranchInst *BI) {
1179 BasicBlock *BB = BI->getParent();
1180 PHINode *PN = dyn_cast<PHINode>(BI->getCondition());
Chris Lattner9c88d982005-09-19 23:57:04 +00001181 // NOTE: we currently cannot transform this case if the PHI node is used
1182 // outside of the block.
Chris Lattner2e42e362005-09-20 00:43:16 +00001183 if (!PN || PN->getParent() != BB || !PN->hasOneUse())
1184 return false;
Chris Lattnereaba3a12005-09-19 23:49:37 +00001185
1186 // Degenerate case of a single entry PHI.
1187 if (PN->getNumIncomingValues() == 1) {
Chris Lattner29874e02008-12-03 19:44:02 +00001188 FoldSingleEntryPHINodes(PN->getParent());
Chris Lattnereaba3a12005-09-19 23:49:37 +00001189 return true;
1190 }
1191
1192 // Now we know that this block has multiple preds and two succs.
Chris Lattner2e42e362005-09-20 00:43:16 +00001193 if (!BlockIsSimpleEnoughToThreadThrough(BB)) return false;
Chris Lattnereaba3a12005-09-19 23:49:37 +00001194
1195 // Okay, this is a simple enough basic block. See if any phi values are
1196 // constants.
Zhou Sheng6b6b6ef2007-01-11 12:24:14 +00001197 for (unsigned i = 0, e = PN->getNumIncomingValues(); i != e; ++i) {
1198 ConstantInt *CB;
1199 if ((CB = dyn_cast<ConstantInt>(PN->getIncomingValue(i))) &&
Reid Spencer4fe16d62007-01-11 18:21:29 +00001200 CB->getType() == Type::Int1Ty) {
Chris Lattnereaba3a12005-09-19 23:49:37 +00001201 // Okay, we now know that all edges from PredBB should be revectored to
1202 // branch to RealDest.
1203 BasicBlock *PredBB = PN->getIncomingBlock(i);
Reid Spencer579dca12007-01-12 04:24:46 +00001204 BasicBlock *RealDest = BI->getSuccessor(!CB->getZExtValue());
Chris Lattnereaba3a12005-09-19 23:49:37 +00001205
Chris Lattnere9487f02005-09-20 01:48:40 +00001206 if (RealDest == BB) continue; // Skip self loops.
Chris Lattnereaba3a12005-09-19 23:49:37 +00001207
Chris Lattnere9487f02005-09-20 01:48:40 +00001208 // The dest block might have PHI nodes, other predecessors and other
1209 // difficult cases. Instead of being smart about this, just insert a new
1210 // block that jumps to the destination block, effectively splitting
1211 // the edge we are about to create.
Gabor Greif051a9502008-04-06 20:25:17 +00001212 BasicBlock *EdgeBB = BasicBlock::Create(RealDest->getName()+".critedge",
1213 RealDest->getParent(), RealDest);
1214 BranchInst::Create(RealDest, EdgeBB);
Chris Lattnere9487f02005-09-20 01:48:40 +00001215 PHINode *PN;
1216 for (BasicBlock::iterator BBI = RealDest->begin();
1217 (PN = dyn_cast<PHINode>(BBI)); ++BBI) {
1218 Value *V = PN->getIncomingValueForBlock(BB);
1219 PN->addIncoming(V, EdgeBB);
1220 }
1221
1222 // BB may have instructions that are being threaded over. Clone these
1223 // instructions into EdgeBB. We know that there will be no uses of the
1224 // cloned instructions outside of EdgeBB.
1225 BasicBlock::iterator InsertPt = EdgeBB->begin();
1226 std::map<Value*, Value*> TranslateMap; // Track translated values.
1227 for (BasicBlock::iterator BBI = BB->begin(); &*BBI != BI; ++BBI) {
1228 if (PHINode *PN = dyn_cast<PHINode>(BBI)) {
1229 TranslateMap[PN] = PN->getIncomingValueForBlock(PredBB);
1230 } else {
1231 // Clone the instruction.
1232 Instruction *N = BBI->clone();
1233 if (BBI->hasName()) N->setName(BBI->getName()+".c");
1234
1235 // Update operands due to translation.
Gabor Greiff7ea3632008-06-10 22:03:26 +00001236 for (User::op_iterator i = N->op_begin(), e = N->op_end();
1237 i != e; ++i) {
Chris Lattnere9487f02005-09-20 01:48:40 +00001238 std::map<Value*, Value*>::iterator PI =
Gabor Greiff7ea3632008-06-10 22:03:26 +00001239 TranslateMap.find(*i);
Chris Lattnere9487f02005-09-20 01:48:40 +00001240 if (PI != TranslateMap.end())
Gabor Greiff7ea3632008-06-10 22:03:26 +00001241 *i = PI->second;
Chris Lattnere9487f02005-09-20 01:48:40 +00001242 }
1243
1244 // Check for trivial simplification.
1245 if (Constant *C = ConstantFoldInstruction(N)) {
Chris Lattnere9487f02005-09-20 01:48:40 +00001246 TranslateMap[BBI] = C;
1247 delete N; // Constant folded away, don't need actual inst
1248 } else {
1249 // Insert the new instruction into its new home.
1250 EdgeBB->getInstList().insert(InsertPt, N);
1251 if (!BBI->use_empty())
1252 TranslateMap[BBI] = N;
1253 }
1254 }
1255 }
1256
Chris Lattnereaba3a12005-09-19 23:49:37 +00001257 // Loop over all of the edges from PredBB to BB, changing them to branch
Chris Lattnere9487f02005-09-20 01:48:40 +00001258 // to EdgeBB instead.
Chris Lattnereaba3a12005-09-19 23:49:37 +00001259 TerminatorInst *PredBBTI = PredBB->getTerminator();
1260 for (unsigned i = 0, e = PredBBTI->getNumSuccessors(); i != e; ++i)
1261 if (PredBBTI->getSuccessor(i) == BB) {
1262 BB->removePredecessor(PredBB);
Chris Lattnere9487f02005-09-20 01:48:40 +00001263 PredBBTI->setSuccessor(i, EdgeBB);
Chris Lattnereaba3a12005-09-19 23:49:37 +00001264 }
1265
Chris Lattnereaba3a12005-09-19 23:49:37 +00001266 // Recurse, simplifying any other constants.
1267 return FoldCondBranchOnPHI(BI) | true;
1268 }
Zhou Sheng6b6b6ef2007-01-11 12:24:14 +00001269 }
Chris Lattnereaba3a12005-09-19 23:49:37 +00001270
1271 return false;
1272}
1273
Chris Lattnerf58c1a52005-09-23 06:39:30 +00001274/// FoldTwoEntryPHINode - Given a BB that starts with the specified two-entry
1275/// PHI node, see if we can eliminate it.
1276static bool FoldTwoEntryPHINode(PHINode *PN) {
1277 // Ok, this is a two entry PHI node. Check to see if this is a simple "if
1278 // statement", which has a very simple dominance structure. Basically, we
1279 // are trying to find the condition that is being branched on, which
1280 // subsequently causes this merge to happen. We really want control
1281 // dependence information for this check, but simplifycfg can't keep it up
1282 // to date, and this catches most of the cases we care about anyway.
1283 //
1284 BasicBlock *BB = PN->getParent();
1285 BasicBlock *IfTrue, *IfFalse;
1286 Value *IfCond = GetIfCondition(BB, IfTrue, IfFalse);
1287 if (!IfCond) return false;
1288
Chris Lattner822a8792006-11-18 19:19:36 +00001289 // Okay, we found that we can merge this two-entry phi node into a select.
1290 // Doing so would require us to fold *all* two entry phi nodes in this block.
1291 // At some point this becomes non-profitable (particularly if the target
1292 // doesn't support cmov's). Only do this transformation if there are two or
1293 // fewer PHI nodes in this block.
1294 unsigned NumPhis = 0;
1295 for (BasicBlock::iterator I = BB->begin(); isa<PHINode>(I); ++NumPhis, ++I)
1296 if (NumPhis > 2)
1297 return false;
1298
Bill Wendling0d45a092006-11-26 10:17:54 +00001299 DOUT << "FOUND IF CONDITION! " << *IfCond << " T: "
1300 << IfTrue->getName() << " F: " << IfFalse->getName() << "\n";
Chris Lattnerf58c1a52005-09-23 06:39:30 +00001301
1302 // Loop over the PHI's seeing if we can promote them all to select
1303 // instructions. While we are at it, keep track of the instructions
1304 // that need to be moved to the dominating block.
1305 std::set<Instruction*> AggressiveInsts;
1306
Chris Lattnerf58c1a52005-09-23 06:39:30 +00001307 BasicBlock::iterator AfterPHIIt = BB->begin();
1308 while (isa<PHINode>(AfterPHIIt)) {
1309 PHINode *PN = cast<PHINode>(AfterPHIIt++);
1310 if (PN->getIncomingValue(0) == PN->getIncomingValue(1)) {
1311 if (PN->getIncomingValue(0) != PN)
1312 PN->replaceAllUsesWith(PN->getIncomingValue(0));
1313 else
1314 PN->replaceAllUsesWith(UndefValue::get(PN->getType()));
1315 } else if (!DominatesMergePoint(PN->getIncomingValue(0), BB,
1316 &AggressiveInsts) ||
1317 !DominatesMergePoint(PN->getIncomingValue(1), BB,
1318 &AggressiveInsts)) {
Chris Lattner055dc102005-09-23 07:23:18 +00001319 return false;
Chris Lattnerf58c1a52005-09-23 06:39:30 +00001320 }
1321 }
1322
Chris Lattnerf58c1a52005-09-23 06:39:30 +00001323 // If we all PHI nodes are promotable, check to make sure that all
1324 // instructions in the predecessor blocks can be promoted as well. If
1325 // not, we won't be able to get rid of the control flow, so it's not
1326 // worth promoting to select instructions.
1327 BasicBlock *DomBlock = 0, *IfBlock1 = 0, *IfBlock2 = 0;
1328 PN = cast<PHINode>(BB->begin());
1329 BasicBlock *Pred = PN->getIncomingBlock(0);
1330 if (cast<BranchInst>(Pred->getTerminator())->isUnconditional()) {
1331 IfBlock1 = Pred;
1332 DomBlock = *pred_begin(Pred);
1333 for (BasicBlock::iterator I = Pred->begin();
1334 !isa<TerminatorInst>(I); ++I)
Devang Patel383d7ed2009-02-03 22:12:02 +00001335 if (!AggressiveInsts.count(I) && !isa<DbgInfoIntrinsic>(I)) {
Chris Lattnerf58c1a52005-09-23 06:39:30 +00001336 // This is not an aggressive instruction that we can promote.
1337 // Because of this, we won't be able to get rid of the control
1338 // flow, so the xform is not worth it.
1339 return false;
1340 }
1341 }
1342
1343 Pred = PN->getIncomingBlock(1);
1344 if (cast<BranchInst>(Pred->getTerminator())->isUnconditional()) {
1345 IfBlock2 = Pred;
1346 DomBlock = *pred_begin(Pred);
1347 for (BasicBlock::iterator I = Pred->begin();
1348 !isa<TerminatorInst>(I); ++I)
Devang Patel383d7ed2009-02-03 22:12:02 +00001349 if (!AggressiveInsts.count(I) && !isa<DbgInfoIntrinsic>(I)) {
Chris Lattnerf58c1a52005-09-23 06:39:30 +00001350 // This is not an aggressive instruction that we can promote.
1351 // Because of this, we won't be able to get rid of the control
1352 // flow, so the xform is not worth it.
1353 return false;
1354 }
1355 }
1356
1357 // If we can still promote the PHI nodes after this gauntlet of tests,
1358 // do all of the PHI's now.
1359
1360 // Move all 'aggressive' instructions, which are defined in the
1361 // conditional parts of the if's up to the dominating block.
1362 if (IfBlock1) {
1363 DomBlock->getInstList().splice(DomBlock->getTerminator(),
1364 IfBlock1->getInstList(),
1365 IfBlock1->begin(),
1366 IfBlock1->getTerminator());
1367 }
1368 if (IfBlock2) {
1369 DomBlock->getInstList().splice(DomBlock->getTerminator(),
1370 IfBlock2->getInstList(),
1371 IfBlock2->begin(),
1372 IfBlock2->getTerminator());
1373 }
1374
1375 while (PHINode *PN = dyn_cast<PHINode>(BB->begin())) {
1376 // Change the PHI node into a select instruction.
1377 Value *TrueVal =
1378 PN->getIncomingValue(PN->getIncomingBlock(0) == IfFalse);
1379 Value *FalseVal =
1380 PN->getIncomingValue(PN->getIncomingBlock(0) == IfTrue);
1381
Gabor Greif051a9502008-04-06 20:25:17 +00001382 Value *NV = SelectInst::Create(IfCond, TrueVal, FalseVal, "", AfterPHIIt);
Chris Lattner86cc4232007-02-11 01:37:51 +00001383 PN->replaceAllUsesWith(NV);
1384 NV->takeName(PN);
1385
Chris Lattnerf58c1a52005-09-23 06:39:30 +00001386 BB->getInstList().erase(PN);
1387 }
1388 return true;
1389}
Chris Lattnereaba3a12005-09-19 23:49:37 +00001390
Devang Patel998cbb02009-02-05 21:46:41 +00001391/// isTerminatorFirstRelevantInsn - Return true if Term is very first
1392/// instruction ignoring Phi nodes and dbg intrinsics.
1393static bool isTerminatorFirstRelevantInsn(BasicBlock *BB, Instruction *Term) {
1394 BasicBlock::iterator BBI = Term;
1395 while (BBI != BB->begin()) {
1396 --BBI;
1397 if (!isa<DbgInfoIntrinsic>(BBI))
1398 break;
1399 }
Devang Patel0464a142009-02-10 22:14:17 +00001400
1401 if (isa<PHINode>(BBI) || &*BBI == Term || isa<DbgInfoIntrinsic>(BBI))
Devang Patel998cbb02009-02-05 21:46:41 +00001402 return true;
1403 return false;
1404}
1405
Chris Lattnerc9e495c2008-04-24 00:01:19 +00001406/// SimplifyCondBranchToTwoReturns - If we found a conditional branch that goes
1407/// to two returning blocks, try to merge them together into one return,
1408/// introducing a select if the return values disagree.
1409static bool SimplifyCondBranchToTwoReturns(BranchInst *BI) {
1410 assert(BI->isConditional() && "Must be a conditional branch");
1411 BasicBlock *TrueSucc = BI->getSuccessor(0);
1412 BasicBlock *FalseSucc = BI->getSuccessor(1);
1413 ReturnInst *TrueRet = cast<ReturnInst>(TrueSucc->getTerminator());
1414 ReturnInst *FalseRet = cast<ReturnInst>(FalseSucc->getTerminator());
1415
1416 // Check to ensure both blocks are empty (just a return) or optionally empty
1417 // with PHI nodes. If there are other instructions, merging would cause extra
1418 // computation on one path or the other.
Devang Patel2cc86a12009-02-05 00:30:42 +00001419 if (!isTerminatorFirstRelevantInsn(TrueSucc, TrueRet))
1420 return false;
1421 if (!isTerminatorFirstRelevantInsn(FalseSucc, FalseRet))
1422 return false;
Chris Lattnerc9e495c2008-04-24 00:01:19 +00001423
1424 // Okay, we found a branch that is going to two return nodes. If
1425 // there is no return value for this function, just change the
1426 // branch into a return.
1427 if (FalseRet->getNumOperands() == 0) {
1428 TrueSucc->removePredecessor(BI->getParent());
1429 FalseSucc->removePredecessor(BI->getParent());
1430 ReturnInst::Create(0, BI);
Eli Friedman080efb82008-12-16 20:54:32 +00001431 EraseTerminatorInstAndDCECond(BI);
Chris Lattnerc9e495c2008-04-24 00:01:19 +00001432 return true;
1433 }
1434
Dan Gohmanfc74abf2008-07-23 00:34:11 +00001435 // Otherwise, figure out what the true and false return values are
1436 // so we can insert a new select instruction.
1437 Value *TrueValue = TrueRet->getReturnValue();
1438 Value *FalseValue = FalseRet->getReturnValue();
Chris Lattnerc9e495c2008-04-24 00:01:19 +00001439
Dan Gohmanfc74abf2008-07-23 00:34:11 +00001440 // Unwrap any PHI nodes in the return blocks.
1441 if (PHINode *TVPN = dyn_cast_or_null<PHINode>(TrueValue))
1442 if (TVPN->getParent() == TrueSucc)
1443 TrueValue = TVPN->getIncomingValueForBlock(BI->getParent());
1444 if (PHINode *FVPN = dyn_cast_or_null<PHINode>(FalseValue))
1445 if (FVPN->getParent() == FalseSucc)
1446 FalseValue = FVPN->getIncomingValueForBlock(BI->getParent());
1447
1448 // In order for this transformation to be safe, we must be able to
1449 // unconditionally execute both operands to the return. This is
1450 // normally the case, but we could have a potentially-trapping
1451 // constant expression that prevents this transformation from being
1452 // safe.
1453 if (ConstantExpr *TCV = dyn_cast_or_null<ConstantExpr>(TrueValue))
1454 if (TCV->canTrap())
1455 return false;
1456 if (ConstantExpr *FCV = dyn_cast_or_null<ConstantExpr>(FalseValue))
1457 if (FCV->canTrap())
1458 return false;
1459
Chris Lattnerc9e495c2008-04-24 00:01:19 +00001460 // Okay, we collected all the mapped values and checked them for sanity, and
1461 // defined to really do this transformation. First, update the CFG.
1462 TrueSucc->removePredecessor(BI->getParent());
1463 FalseSucc->removePredecessor(BI->getParent());
1464
1465 // Insert select instructions where needed.
1466 Value *BrCond = BI->getCondition();
Dan Gohmanfc74abf2008-07-23 00:34:11 +00001467 if (TrueValue) {
Chris Lattnerc9e495c2008-04-24 00:01:19 +00001468 // Insert a select if the results differ.
Dan Gohmanfc74abf2008-07-23 00:34:11 +00001469 if (TrueValue == FalseValue || isa<UndefValue>(FalseValue)) {
1470 } else if (isa<UndefValue>(TrueValue)) {
1471 TrueValue = FalseValue;
1472 } else {
1473 TrueValue = SelectInst::Create(BrCond, TrueValue,
1474 FalseValue, "retval", BI);
Chris Lattnerc9e495c2008-04-24 00:01:19 +00001475 }
Chris Lattnerc9e495c2008-04-24 00:01:19 +00001476 }
1477
Dan Gohmanfc74abf2008-07-23 00:34:11 +00001478 Value *RI = !TrueValue ?
1479 ReturnInst::Create(BI) :
1480 ReturnInst::Create(TrueValue, BI);
Chris Lattnerc9e495c2008-04-24 00:01:19 +00001481
1482 DOUT << "\nCHANGING BRANCH TO TWO RETURNS INTO SELECT:"
1483 << "\n " << *BI << "NewRet = " << *RI
1484 << "TRUEBLOCK: " << *TrueSucc << "FALSEBLOCK: "<< *FalseSucc;
1485
Eli Friedman080efb82008-12-16 20:54:32 +00001486 EraseTerminatorInstAndDCECond(BI);
1487
Chris Lattnerc9e495c2008-04-24 00:01:19 +00001488 return true;
1489}
1490
Chris Lattner1347e872008-07-13 21:12:01 +00001491/// FoldBranchToCommonDest - If this basic block is ONLY a setcc and a branch,
1492/// and if a predecessor branches to us and one of our successors, fold the
1493/// setcc into the predecessor and use logical operations to pick the right
1494/// destination.
1495static bool FoldBranchToCommonDest(BranchInst *BI) {
Chris Lattner093a4382008-07-13 22:23:11 +00001496 BasicBlock *BB = BI->getParent();
Chris Lattner1347e872008-07-13 21:12:01 +00001497 Instruction *Cond = dyn_cast<Instruction>(BI->getCondition());
1498 if (Cond == 0) return false;
1499
Chris Lattner093a4382008-07-13 22:23:11 +00001500
Chris Lattner1347e872008-07-13 21:12:01 +00001501 // Only allow this if the condition is a simple instruction that can be
1502 // executed unconditionally. It must be in the same block as the branch, and
1503 // must be at the front of the block.
Devang Pateld0a203d2009-02-04 21:39:48 +00001504 BasicBlock::iterator FrontIt = BB->front();
1505 // Ignore dbg intrinsics.
1506 while(isa<DbgInfoIntrinsic>(FrontIt))
1507 ++FrontIt;
Chris Lattner1347e872008-07-13 21:12:01 +00001508 if ((!isa<CmpInst>(Cond) && !isa<BinaryOperator>(Cond)) ||
Devang Pateld0a203d2009-02-04 21:39:48 +00001509 Cond->getParent() != BB || &*FrontIt != Cond || !Cond->hasOneUse()) {
Chris Lattner1347e872008-07-13 21:12:01 +00001510 return false;
Devang Pateld0a203d2009-02-04 21:39:48 +00001511 }
Chris Lattner6ff645b2009-01-19 23:03:13 +00001512
Chris Lattner1347e872008-07-13 21:12:01 +00001513 // Make sure the instruction after the condition is the cond branch.
1514 BasicBlock::iterator CondIt = Cond; ++CondIt;
Devang Pateld0a203d2009-02-04 21:39:48 +00001515 // Ingore dbg intrinsics.
1516 while(isa<DbgInfoIntrinsic>(CondIt))
1517 ++CondIt;
1518 if (&*CondIt != BI) {
1519 assert (!isa<DbgInfoIntrinsic>(CondIt) && "Hey do not forget debug info!");
Chris Lattner1347e872008-07-13 21:12:01 +00001520 return false;
Devang Pateld0a203d2009-02-04 21:39:48 +00001521 }
Chris Lattner6ff645b2009-01-19 23:03:13 +00001522
1523 // Cond is known to be a compare or binary operator. Check to make sure that
1524 // neither operand is a potentially-trapping constant expression.
1525 if (ConstantExpr *CE = dyn_cast<ConstantExpr>(Cond->getOperand(0)))
1526 if (CE->canTrap())
1527 return false;
1528 if (ConstantExpr *CE = dyn_cast<ConstantExpr>(Cond->getOperand(1)))
1529 if (CE->canTrap())
1530 return false;
1531
Chris Lattner1347e872008-07-13 21:12:01 +00001532
1533 // Finally, don't infinitely unroll conditional loops.
1534 BasicBlock *TrueDest = BI->getSuccessor(0);
1535 BasicBlock *FalseDest = BI->getSuccessor(1);
1536 if (TrueDest == BB || FalseDest == BB)
1537 return false;
1538
1539 for (pred_iterator PI = pred_begin(BB), E = pred_end(BB); PI != E; ++PI) {
1540 BasicBlock *PredBlock = *PI;
1541 BranchInst *PBI = dyn_cast<BranchInst>(PredBlock->getTerminator());
Chris Lattner6ff645b2009-01-19 23:03:13 +00001542
Chris Lattner093a4382008-07-13 22:23:11 +00001543 // Check that we have two conditional branches. If there is a PHI node in
1544 // the common successor, verify that the same value flows in from both
1545 // blocks.
Chris Lattner1347e872008-07-13 21:12:01 +00001546 if (PBI == 0 || PBI->isUnconditional() ||
1547 !SafeToMergeTerminators(BI, PBI))
1548 continue;
1549
Chris Lattner36989092008-07-13 21:20:19 +00001550 Instruction::BinaryOps Opc;
1551 bool InvertPredCond = false;
1552
1553 if (PBI->getSuccessor(0) == TrueDest)
1554 Opc = Instruction::Or;
1555 else if (PBI->getSuccessor(1) == FalseDest)
1556 Opc = Instruction::And;
1557 else if (PBI->getSuccessor(0) == FalseDest)
1558 Opc = Instruction::And, InvertPredCond = true;
1559 else if (PBI->getSuccessor(1) == TrueDest)
1560 Opc = Instruction::Or, InvertPredCond = true;
1561 else
1562 continue;
1563
Chris Lattner6ff645b2009-01-19 23:03:13 +00001564 DOUT << "FOLDING BRANCH TO COMMON DEST:\n" << *PBI << *BB;
1565
Chris Lattner36989092008-07-13 21:20:19 +00001566 // If we need to invert the condition in the pred block to match, do so now.
1567 if (InvertPredCond) {
Chris Lattner1347e872008-07-13 21:12:01 +00001568 Value *NewCond =
1569 BinaryOperator::CreateNot(PBI->getCondition(),
Chris Lattner36989092008-07-13 21:20:19 +00001570 PBI->getCondition()->getName()+".not", PBI);
Chris Lattner1347e872008-07-13 21:12:01 +00001571 PBI->setCondition(NewCond);
1572 BasicBlock *OldTrue = PBI->getSuccessor(0);
1573 BasicBlock *OldFalse = PBI->getSuccessor(1);
1574 PBI->setSuccessor(0, OldFalse);
1575 PBI->setSuccessor(1, OldTrue);
1576 }
Chris Lattner70087f32008-07-13 21:15:11 +00001577
Chris Lattner36989092008-07-13 21:20:19 +00001578 // Clone Cond into the predecessor basic block, and or/and the
1579 // two conditions together.
1580 Instruction *New = Cond->clone();
1581 PredBlock->getInstList().insert(PBI, New);
1582 New->takeName(Cond);
1583 Cond->setName(New->getName()+".old");
Chris Lattner70087f32008-07-13 21:15:11 +00001584
Chris Lattner36989092008-07-13 21:20:19 +00001585 Value *NewCond = BinaryOperator::Create(Opc, PBI->getCondition(),
1586 New, "or.cond", PBI);
1587 PBI->setCondition(NewCond);
1588 if (PBI->getSuccessor(0) == BB) {
1589 AddPredecessorToBlock(TrueDest, PredBlock, BB);
1590 PBI->setSuccessor(0, TrueDest);
Chris Lattner1347e872008-07-13 21:12:01 +00001591 }
Chris Lattner36989092008-07-13 21:20:19 +00001592 if (PBI->getSuccessor(1) == BB) {
1593 AddPredecessorToBlock(FalseDest, PredBlock, BB);
1594 PBI->setSuccessor(1, FalseDest);
1595 }
1596 return true;
Chris Lattner1347e872008-07-13 21:12:01 +00001597 }
1598 return false;
1599}
1600
Chris Lattner867661a2008-07-13 21:53:26 +00001601/// SimplifyCondBranchToCondBranch - If we have a conditional branch as a
1602/// predecessor of another block, this function tries to simplify it. We know
1603/// that PBI and BI are both conditional branches, and BI is in one of the
1604/// successor blocks of PBI - PBI branches to BI.
1605static bool SimplifyCondBranchToCondBranch(BranchInst *PBI, BranchInst *BI) {
1606 assert(PBI->isConditional() && BI->isConditional());
1607 BasicBlock *BB = BI->getParent();
1608
1609 // If this block ends with a branch instruction, and if there is a
1610 // predecessor that ends on a branch of the same condition, make
1611 // this conditional branch redundant.
1612 if (PBI->getCondition() == BI->getCondition() &&
1613 PBI->getSuccessor(0) != PBI->getSuccessor(1)) {
1614 // Okay, the outcome of this conditional branch is statically
1615 // knowable. If this block had a single pred, handle specially.
1616 if (BB->getSinglePredecessor()) {
1617 // Turn this into a branch on constant.
1618 bool CondIsTrue = PBI->getSuccessor(0) == BB;
1619 BI->setCondition(ConstantInt::get(Type::Int1Ty, CondIsTrue));
1620 return true; // Nuke the branch on constant.
1621 }
1622
1623 // Otherwise, if there are multiple predecessors, insert a PHI that merges
1624 // in the constant and simplify the block result. Subsequent passes of
1625 // simplifycfg will thread the block.
1626 if (BlockIsSimpleEnoughToThreadThrough(BB)) {
1627 PHINode *NewPN = PHINode::Create(Type::Int1Ty,
1628 BI->getCondition()->getName() + ".pr",
1629 BB->begin());
Chris Lattnereb388af2008-07-13 21:55:46 +00001630 // Okay, we're going to insert the PHI node. Since PBI is not the only
1631 // predecessor, compute the PHI'd conditional value for all of the preds.
1632 // Any predecessor where the condition is not computable we keep symbolic.
Chris Lattner867661a2008-07-13 21:53:26 +00001633 for (pred_iterator PI = pred_begin(BB), E = pred_end(BB); PI != E; ++PI)
1634 if ((PBI = dyn_cast<BranchInst>((*PI)->getTerminator())) &&
1635 PBI != BI && PBI->isConditional() &&
1636 PBI->getCondition() == BI->getCondition() &&
1637 PBI->getSuccessor(0) != PBI->getSuccessor(1)) {
1638 bool CondIsTrue = PBI->getSuccessor(0) == BB;
1639 NewPN->addIncoming(ConstantInt::get(Type::Int1Ty,
1640 CondIsTrue), *PI);
1641 } else {
1642 NewPN->addIncoming(BI->getCondition(), *PI);
1643 }
1644
1645 BI->setCondition(NewPN);
Chris Lattner867661a2008-07-13 21:53:26 +00001646 return true;
1647 }
1648 }
1649
1650 // If this is a conditional branch in an empty block, and if any
1651 // predecessors is a conditional branch to one of our destinations,
1652 // fold the conditions into logical ops and one cond br.
Zhou Shenga8d57fe2009-02-26 06:56:37 +00001653 BasicBlock::iterator BBI = BB->begin();
1654 // Ignore dbg intrinsics.
1655 while (isa<DbgInfoIntrinsic>(BBI))
1656 ++BBI;
1657 if (&*BBI != BI)
Chris Lattnerb8245122008-07-13 22:04:41 +00001658 return false;
Chris Lattner63bf29b2009-01-20 01:15:41 +00001659
1660
1661 if (ConstantExpr *CE = dyn_cast<ConstantExpr>(BI->getCondition()))
1662 if (CE->canTrap())
1663 return false;
Chris Lattnerb8245122008-07-13 22:04:41 +00001664
1665 int PBIOp, BIOp;
1666 if (PBI->getSuccessor(0) == BI->getSuccessor(0))
1667 PBIOp = BIOp = 0;
1668 else if (PBI->getSuccessor(0) == BI->getSuccessor(1))
1669 PBIOp = 0, BIOp = 1;
1670 else if (PBI->getSuccessor(1) == BI->getSuccessor(0))
1671 PBIOp = 1, BIOp = 0;
1672 else if (PBI->getSuccessor(1) == BI->getSuccessor(1))
1673 PBIOp = BIOp = 1;
1674 else
1675 return false;
Chris Lattner867661a2008-07-13 21:53:26 +00001676
Chris Lattnerb8245122008-07-13 22:04:41 +00001677 // Check to make sure that the other destination of this branch
1678 // isn't BB itself. If so, this is an infinite loop that will
1679 // keep getting unwound.
1680 if (PBI->getSuccessor(PBIOp) == BB)
1681 return false;
Chris Lattner867661a2008-07-13 21:53:26 +00001682
Chris Lattnerb8245122008-07-13 22:04:41 +00001683 // Do not perform this transformation if it would require
1684 // insertion of a large number of select instructions. For targets
1685 // without predication/cmovs, this is a big pessimization.
1686 BasicBlock *CommonDest = PBI->getSuccessor(PBIOp);
Chris Lattner867661a2008-07-13 21:53:26 +00001687
Chris Lattnerb8245122008-07-13 22:04:41 +00001688 unsigned NumPhis = 0;
1689 for (BasicBlock::iterator II = CommonDest->begin();
1690 isa<PHINode>(II); ++II, ++NumPhis)
1691 if (NumPhis > 2) // Disable this xform.
1692 return false;
Chris Lattner867661a2008-07-13 21:53:26 +00001693
Chris Lattnerb8245122008-07-13 22:04:41 +00001694 // Finally, if everything is ok, fold the branches to logical ops.
1695 BasicBlock *OtherDest = BI->getSuccessor(BIOp ^ 1);
1696
Chris Lattnerb8245122008-07-13 22:04:41 +00001697 DOUT << "FOLDING BRs:" << *PBI->getParent()
1698 << "AND: " << *BI->getParent();
1699
Chris Lattner093a4382008-07-13 22:23:11 +00001700
1701 // If OtherDest *is* BB, then BB is a basic block with a single conditional
1702 // branch in it, where one edge (OtherDest) goes back to itself but the other
1703 // exits. We don't *know* that the program avoids the infinite loop
1704 // (even though that seems likely). If we do this xform naively, we'll end up
1705 // recursively unpeeling the loop. Since we know that (after the xform is
1706 // done) that the block *is* infinite if reached, we just make it an obviously
1707 // infinite loop with no cond branch.
1708 if (OtherDest == BB) {
1709 // Insert it at the end of the function, because it's either code,
1710 // or it won't matter if it's hot. :)
1711 BasicBlock *InfLoopBlock = BasicBlock::Create("infloop", BB->getParent());
1712 BranchInst::Create(InfLoopBlock, InfLoopBlock);
1713 OtherDest = InfLoopBlock;
1714 }
1715
Chris Lattnerb8245122008-07-13 22:04:41 +00001716 DOUT << *PBI->getParent()->getParent();
1717
1718 // BI may have other predecessors. Because of this, we leave
1719 // it alone, but modify PBI.
1720
1721 // Make sure we get to CommonDest on True&True directions.
1722 Value *PBICond = PBI->getCondition();
1723 if (PBIOp)
1724 PBICond = BinaryOperator::CreateNot(PBICond,
1725 PBICond->getName()+".not",
1726 PBI);
1727 Value *BICond = BI->getCondition();
1728 if (BIOp)
1729 BICond = BinaryOperator::CreateNot(BICond,
1730 BICond->getName()+".not",
1731 PBI);
1732 // Merge the conditions.
1733 Value *Cond = BinaryOperator::CreateOr(PBICond, BICond, "brmerge", PBI);
1734
1735 // Modify PBI to branch on the new condition to the new dests.
1736 PBI->setCondition(Cond);
1737 PBI->setSuccessor(0, CommonDest);
1738 PBI->setSuccessor(1, OtherDest);
1739
1740 // OtherDest may have phi nodes. If so, add an entry from PBI's
1741 // block that are identical to the entries for BI's block.
1742 PHINode *PN;
1743 for (BasicBlock::iterator II = OtherDest->begin();
1744 (PN = dyn_cast<PHINode>(II)); ++II) {
1745 Value *V = PN->getIncomingValueForBlock(BB);
1746 PN->addIncoming(V, PBI->getParent());
1747 }
1748
1749 // We know that the CommonDest already had an edge from PBI to
1750 // it. If it has PHIs though, the PHIs may have different
1751 // entries for BB and PBI's BB. If so, insert a select to make
1752 // them agree.
1753 for (BasicBlock::iterator II = CommonDest->begin();
1754 (PN = dyn_cast<PHINode>(II)); ++II) {
1755 Value *BIV = PN->getIncomingValueForBlock(BB);
1756 unsigned PBBIdx = PN->getBasicBlockIndex(PBI->getParent());
1757 Value *PBIV = PN->getIncomingValue(PBBIdx);
1758 if (BIV != PBIV) {
1759 // Insert a select in PBI to pick the right value.
1760 Value *NV = SelectInst::Create(PBICond, PBIV, BIV,
1761 PBIV->getName()+".mux", PBI);
1762 PN->setIncomingValue(PBBIdx, NV);
Chris Lattner867661a2008-07-13 21:53:26 +00001763 }
1764 }
Chris Lattnerb8245122008-07-13 22:04:41 +00001765
1766 DOUT << "INTO: " << *PBI->getParent();
1767
1768 DOUT << *PBI->getParent()->getParent();
1769
1770 // This basic block is probably dead. We know it has at least
1771 // one fewer predecessor.
1772 return true;
Chris Lattner867661a2008-07-13 21:53:26 +00001773}
1774
Chris Lattnerc9e495c2008-04-24 00:01:19 +00001775
Bill Wendling5049fa62009-01-19 23:43:56 +00001776/// SimplifyCFG - This function is used to do simplification of a CFG. For
1777/// example, it adjusts branches to branches to eliminate the extra hop, it
1778/// eliminates unreachable basic blocks, and does other "peephole" optimization
1779/// of the CFG. It returns true if a modification was made.
1780///
1781/// WARNING: The entry node of a function may not be simplified.
1782///
Chris Lattnerf7703df2004-01-09 06:12:26 +00001783bool llvm::SimplifyCFG(BasicBlock *BB) {
Chris Lattnerdc3602b2003-08-24 18:36:16 +00001784 bool Changed = false;
Chris Lattner01d1ee32002-05-21 20:50:24 +00001785 Function *M = BB->getParent();
1786
1787 assert(BB && BB->getParent() && "Block not embedded in function!");
1788 assert(BB->getTerminator() && "Degenerate basic block encountered!");
Dan Gohmanecb7a772007-03-22 16:38:57 +00001789 assert(&BB->getParent()->getEntryBlock() != BB &&
1790 "Can't Simplify entry block!");
Chris Lattner01d1ee32002-05-21 20:50:24 +00001791
Chris Lattner5a5c9a52008-11-27 07:54:38 +00001792 // Remove basic blocks that have no predecessors... or that just have themself
1793 // as a predecessor. These are unreachable.
1794 if (pred_begin(BB) == pred_end(BB) || BB->getSinglePredecessor() == BB) {
Bill Wendling0d45a092006-11-26 10:17:54 +00001795 DOUT << "Removing BB: \n" << *BB;
Chris Lattner71af9b02008-12-03 06:40:52 +00001796 DeleteDeadBlock(BB);
Chris Lattner01d1ee32002-05-21 20:50:24 +00001797 return true;
1798 }
1799
Chris Lattner694e37f2003-08-17 19:41:53 +00001800 // Check to see if we can constant propagate this terminator instruction
1801 // away...
Chris Lattnerdc3602b2003-08-24 18:36:16 +00001802 Changed |= ConstantFoldTerminator(BB);
Chris Lattner694e37f2003-08-17 19:41:53 +00001803
Dan Gohman882d87d2008-03-11 21:53:06 +00001804 // If there is a trivial two-entry PHI node in this basic block, and we can
1805 // eliminate it, do so now.
1806 if (PHINode *PN = dyn_cast<PHINode>(BB->begin()))
1807 if (PN->getNumIncomingValues() == 2)
1808 Changed |= FoldTwoEntryPHINode(PN);
1809
Chris Lattner19831ec2004-02-16 06:35:48 +00001810 // If this is a returning block with only PHI nodes in it, fold the return
1811 // instruction into any unconditional branch predecessors.
Chris Lattner147af6b2004-04-02 18:13:43 +00001812 //
1813 // If any predecessor is a conditional branch that just selects among
1814 // different return values, fold the replace the branch/return with a select
1815 // and return.
Chris Lattner19831ec2004-02-16 06:35:48 +00001816 if (ReturnInst *RI = dyn_cast<ReturnInst>(BB->getTerminator())) {
Devang Patel2cc86a12009-02-05 00:30:42 +00001817 if (isTerminatorFirstRelevantInsn(BB, BB->getTerminator())) {
Chris Lattner147af6b2004-04-02 18:13:43 +00001818 // Find predecessors that end with branches.
Chris Lattner82442432008-02-18 07:42:56 +00001819 SmallVector<BasicBlock*, 8> UncondBranchPreds;
1820 SmallVector<BranchInst*, 8> CondBranchPreds;
Chris Lattner19831ec2004-02-16 06:35:48 +00001821 for (pred_iterator PI = pred_begin(BB), E = pred_end(BB); PI != E; ++PI) {
1822 TerminatorInst *PTI = (*PI)->getTerminator();
Anton Korobeynikov07e6e562008-02-20 11:26:25 +00001823 if (BranchInst *BI = dyn_cast<BranchInst>(PTI)) {
Chris Lattner19831ec2004-02-16 06:35:48 +00001824 if (BI->isUnconditional())
1825 UncondBranchPreds.push_back(*PI);
Chris Lattner147af6b2004-04-02 18:13:43 +00001826 else
1827 CondBranchPreds.push_back(BI);
Anton Korobeynikov07e6e562008-02-20 11:26:25 +00001828 }
Chris Lattner19831ec2004-02-16 06:35:48 +00001829 }
Misha Brukmanfd939082005-04-21 23:48:37 +00001830
Chris Lattner19831ec2004-02-16 06:35:48 +00001831 // If we found some, do the transformation!
Bill Wendling1c855032009-03-03 19:25:16 +00001832 if (!UncondBranchPreds.empty()) {
Chris Lattner19831ec2004-02-16 06:35:48 +00001833 while (!UncondBranchPreds.empty()) {
Dan Gohmane9d87f42009-05-06 17:22:41 +00001834 BasicBlock *Pred = UncondBranchPreds.pop_back_val();
Bill Wendling0d45a092006-11-26 10:17:54 +00001835 DOUT << "FOLDING: " << *BB
1836 << "INTO UNCOND BRANCH PRED: " << *Pred;
Chris Lattner19831ec2004-02-16 06:35:48 +00001837 Instruction *UncondBranch = Pred->getTerminator();
1838 // Clone the return and add it to the end of the predecessor.
1839 Instruction *NewRet = RI->clone();
1840 Pred->getInstList().push_back(NewRet);
1841
Devang Patel5622f072009-02-24 00:05:16 +00001842 BasicBlock::iterator BBI = RI;
1843 if (BBI != BB->begin()) {
1844 // Move region end info into the predecessor.
1845 if (DbgRegionEndInst *DREI = dyn_cast<DbgRegionEndInst>(--BBI))
1846 DREI->moveBefore(NewRet);
1847 }
1848
Chris Lattner19831ec2004-02-16 06:35:48 +00001849 // If the return instruction returns a value, and if the value was a
1850 // PHI node in "BB", propagate the right value into the return.
Gabor Greiff7ea3632008-06-10 22:03:26 +00001851 for (User::op_iterator i = NewRet->op_begin(), e = NewRet->op_end();
1852 i != e; ++i)
1853 if (PHINode *PN = dyn_cast<PHINode>(*i))
Chris Lattner19831ec2004-02-16 06:35:48 +00001854 if (PN->getParent() == BB)
Gabor Greiff7ea3632008-06-10 22:03:26 +00001855 *i = PN->getIncomingValueForBlock(Pred);
Chris Lattnerffba5822008-04-28 00:19:07 +00001856
Chris Lattner19831ec2004-02-16 06:35:48 +00001857 // Update any PHI nodes in the returning block to realize that we no
1858 // longer branch to them.
1859 BB->removePredecessor(Pred);
1860 Pred->getInstList().erase(UncondBranch);
1861 }
1862
1863 // If we eliminated all predecessors of the block, delete the block now.
1864 if (pred_begin(BB) == pred_end(BB))
1865 // We know there are no successors, so just nuke the block.
Devang Patel5622f072009-02-24 00:05:16 +00001866 M->getBasicBlockList().erase(BB);
Chris Lattner19831ec2004-02-16 06:35:48 +00001867
Chris Lattner19831ec2004-02-16 06:35:48 +00001868 return true;
1869 }
Chris Lattner147af6b2004-04-02 18:13:43 +00001870
1871 // Check out all of the conditional branches going to this return
1872 // instruction. If any of them just select between returns, change the
1873 // branch itself into a select/return pair.
1874 while (!CondBranchPreds.empty()) {
Dan Gohmane9d87f42009-05-06 17:22:41 +00001875 BranchInst *BI = CondBranchPreds.pop_back_val();
Chris Lattner147af6b2004-04-02 18:13:43 +00001876
1877 // Check to see if the non-BB successor is also a return block.
Chris Lattnerc9e495c2008-04-24 00:01:19 +00001878 if (isa<ReturnInst>(BI->getSuccessor(0)->getTerminator()) &&
1879 isa<ReturnInst>(BI->getSuccessor(1)->getTerminator()) &&
1880 SimplifyCondBranchToTwoReturns(BI))
1881 return true;
Chris Lattner147af6b2004-04-02 18:13:43 +00001882 }
Chris Lattner19831ec2004-02-16 06:35:48 +00001883 }
Reid Spencer3ed469c2006-11-02 20:25:50 +00001884 } else if (isa<UnwindInst>(BB->begin())) {
Chris Lattnere14ea082004-02-24 05:54:22 +00001885 // Check to see if the first instruction in this block is just an unwind.
1886 // If so, replace any invoke instructions which use this as an exception
Chris Lattneraf17b1d2004-07-20 01:17:38 +00001887 // destination with call instructions, and any unconditional branch
1888 // predecessor with an unwind.
Chris Lattnere14ea082004-02-24 05:54:22 +00001889 //
Chris Lattner82442432008-02-18 07:42:56 +00001890 SmallVector<BasicBlock*, 8> Preds(pred_begin(BB), pred_end(BB));
Chris Lattnere14ea082004-02-24 05:54:22 +00001891 while (!Preds.empty()) {
1892 BasicBlock *Pred = Preds.back();
Chris Lattneraf17b1d2004-07-20 01:17:38 +00001893 if (BranchInst *BI = dyn_cast<BranchInst>(Pred->getTerminator())) {
Nick Lewycky280a6e62008-04-25 16:53:59 +00001894 if (BI->isUnconditional()) {
Chris Lattneraf17b1d2004-07-20 01:17:38 +00001895 Pred->getInstList().pop_back(); // nuke uncond branch
1896 new UnwindInst(Pred); // Use unwind.
1897 Changed = true;
1898 }
Nick Lewycky3f4cc312008-03-09 07:50:37 +00001899 } else if (InvokeInst *II = dyn_cast<InvokeInst>(Pred->getTerminator()))
Chris Lattnere14ea082004-02-24 05:54:22 +00001900 if (II->getUnwindDest() == BB) {
1901 // Insert a new branch instruction before the invoke, because this
1902 // is now a fall through...
Gabor Greif051a9502008-04-06 20:25:17 +00001903 BranchInst *BI = BranchInst::Create(II->getNormalDest(), II);
Chris Lattnere14ea082004-02-24 05:54:22 +00001904 Pred->getInstList().remove(II); // Take out of symbol table
Misha Brukmanfd939082005-04-21 23:48:37 +00001905
Chris Lattnere14ea082004-02-24 05:54:22 +00001906 // Insert the call now...
Chris Lattner93e985f2007-02-13 02:10:56 +00001907 SmallVector<Value*,8> Args(II->op_begin()+3, II->op_end());
Gabor Greif051a9502008-04-06 20:25:17 +00001908 CallInst *CI = CallInst::Create(II->getCalledValue(),
Gabor Greiff7ea3632008-06-10 22:03:26 +00001909 Args.begin(), Args.end(),
1910 II->getName(), BI);
Chris Lattner16d0db22005-05-14 12:21:56 +00001911 CI->setCallingConv(II->getCallingConv());
Devang Patel05988662008-09-25 21:00:45 +00001912 CI->setAttributes(II->getAttributes());
Chris Lattnere14ea082004-02-24 05:54:22 +00001913 // If the invoke produced a value, the Call now does instead
1914 II->replaceAllUsesWith(CI);
1915 delete II;
1916 Changed = true;
1917 }
Misha Brukmanfd939082005-04-21 23:48:37 +00001918
Chris Lattnere14ea082004-02-24 05:54:22 +00001919 Preds.pop_back();
1920 }
Chris Lattner8e509dd2004-02-24 16:09:21 +00001921
1922 // If this block is now dead, remove it.
1923 if (pred_begin(BB) == pred_end(BB)) {
1924 // We know there are no successors, so just nuke the block.
1925 M->getBasicBlockList().erase(BB);
1926 return true;
1927 }
1928
Chris Lattner623369a2005-02-24 06:17:52 +00001929 } else if (SwitchInst *SI = dyn_cast<SwitchInst>(BB->getTerminator())) {
1930 if (isValueEqualityComparison(SI)) {
1931 // If we only have one predecessor, and if it is a branch on this value,
1932 // see if that predecessor totally determines the outcome of this switch.
1933 if (BasicBlock *OnlyPred = BB->getSinglePredecessor())
1934 if (SimplifyEqualityComparisonWithOnlyPredecessor(SI, OnlyPred))
1935 return SimplifyCFG(BB) || 1;
1936
1937 // If the block only contains the switch, see if we can fold the block
1938 // away into any preds.
Zhou Sheng9a7c7432009-02-25 15:34:27 +00001939 BasicBlock::iterator BBI = BB->begin();
1940 // Ignore dbg intrinsics.
1941 while (isa<DbgInfoIntrinsic>(BBI))
1942 ++BBI;
1943 if (SI == &*BBI)
Chris Lattner623369a2005-02-24 06:17:52 +00001944 if (FoldValueComparisonIntoPredecessors(SI))
1945 return SimplifyCFG(BB) || 1;
1946 }
Chris Lattner542f1492004-02-28 21:28:10 +00001947 } else if (BranchInst *BI = dyn_cast<BranchInst>(BB->getTerminator())) {
Chris Lattner7e663482005-08-03 00:11:16 +00001948 if (BI->isUnconditional()) {
Dan Gohman02dea8b2008-05-23 21:05:58 +00001949 BasicBlock::iterator BBI = BB->getFirstNonPHI();
Chris Lattner7e663482005-08-03 00:11:16 +00001950
1951 BasicBlock *Succ = BI->getSuccessor(0);
Devang Pateld0a203d2009-02-04 21:39:48 +00001952 // Ignore dbg intrinsics.
1953 while (isa<DbgInfoIntrinsic>(BBI))
1954 ++BBI;
Chris Lattner7e663482005-08-03 00:11:16 +00001955 if (BBI->isTerminator() && // Terminator is the only non-phi instruction!
1956 Succ != BB) // Don't hurt infinite loops!
1957 if (TryToSimplifyUncondBranchFromEmptyBlock(BB, Succ))
Chris Lattner1347e872008-07-13 21:12:01 +00001958 return true;
Chris Lattner7e663482005-08-03 00:11:16 +00001959
1960 } else { // Conditional branch
Reid Spencer3ed469c2006-11-02 20:25:50 +00001961 if (isValueEqualityComparison(BI)) {
Chris Lattner623369a2005-02-24 06:17:52 +00001962 // If we only have one predecessor, and if it is a branch on this value,
1963 // see if that predecessor totally determines the outcome of this
1964 // switch.
1965 if (BasicBlock *OnlyPred = BB->getSinglePredecessor())
1966 if (SimplifyEqualityComparisonWithOnlyPredecessor(BI, OnlyPred))
1967 return SimplifyCFG(BB) || 1;
1968
Chris Lattnere67fa052004-05-01 23:35:43 +00001969 // This block must be empty, except for the setcond inst, if it exists.
Devang Patel556b20a2009-02-04 01:06:11 +00001970 // Ignore dbg intrinsics.
Chris Lattnere67fa052004-05-01 23:35:43 +00001971 BasicBlock::iterator I = BB->begin();
Devang Pateld0a203d2009-02-04 21:39:48 +00001972 // Ignore dbg intrinsics.
Devang Patel556b20a2009-02-04 01:06:11 +00001973 while (isa<DbgInfoIntrinsic>(I))
Devang Pateld0a203d2009-02-04 21:39:48 +00001974 ++I;
1975 if (&*I == BI) {
Chris Lattnere67fa052004-05-01 23:35:43 +00001976 if (FoldValueComparisonIntoPredecessors(BI))
1977 return SimplifyCFG(BB) | true;
Devang Pateld0a203d2009-02-04 21:39:48 +00001978 } else if (&*I == cast<Instruction>(BI->getCondition())){
1979 ++I;
1980 // Ignore dbg intrinsics.
1981 while (isa<DbgInfoIntrinsic>(I))
1982 ++I;
1983 if(&*I == BI) {
1984 if (FoldValueComparisonIntoPredecessors(BI))
1985 return SimplifyCFG(BB) | true;
1986 }
1987 }
Chris Lattnere67fa052004-05-01 23:35:43 +00001988 }
Devang Pateld0a203d2009-02-04 21:39:48 +00001989
Chris Lattnereaba3a12005-09-19 23:49:37 +00001990 // If this is a branch on a phi node in the current block, thread control
1991 // through this block if any PHI node entries are constants.
1992 if (PHINode *PN = dyn_cast<PHINode>(BI->getCondition()))
1993 if (PN->getParent() == BI->getParent())
1994 if (FoldCondBranchOnPHI(BI))
1995 return SimplifyCFG(BB) | true;
Chris Lattnere67fa052004-05-01 23:35:43 +00001996
1997 // If this basic block is ONLY a setcc and a branch, and if a predecessor
1998 // branches to us and one of our successors, fold the setcc into the
1999 // predecessor and use logical operations to pick the right destination.
Chris Lattner1347e872008-07-13 21:12:01 +00002000 if (FoldBranchToCommonDest(BI))
2001 return SimplifyCFG(BB) | 1;
Chris Lattnere67fa052004-05-01 23:35:43 +00002002
Chris Lattner867661a2008-07-13 21:53:26 +00002003
2004 // Scan predecessor blocks for conditional branches.
Chris Lattner2e42e362005-09-20 00:43:16 +00002005 for (pred_iterator PI = pred_begin(BB), E = pred_end(BB); PI != E; ++PI)
2006 if (BranchInst *PBI = dyn_cast<BranchInst>((*PI)->getTerminator()))
Chris Lattner867661a2008-07-13 21:53:26 +00002007 if (PBI != BI && PBI->isConditional())
2008 if (SimplifyCondBranchToCondBranch(PBI, BI))
2009 return SimplifyCFG(BB) | true;
Chris Lattnerd52c2612004-02-24 07:23:58 +00002010 }
Chris Lattner698f96f2004-10-18 04:07:22 +00002011 } else if (isa<UnreachableInst>(BB->getTerminator())) {
2012 // If there are any instructions immediately before the unreachable that can
2013 // be removed, do so.
2014 Instruction *Unreachable = BB->getTerminator();
2015 while (Unreachable != BB->begin()) {
2016 BasicBlock::iterator BBI = Unreachable;
2017 --BBI;
Chris Lattnerf8131c92008-10-29 17:46:26 +00002018 // Do not delete instructions that can have side effects, like calls
2019 // (which may never return) and volatile loads and stores.
Dale Johannesen80b8a622009-03-12 17:42:45 +00002020 if (isa<CallInst>(BBI) && !isa<DbgInfoIntrinsic>(BBI)) break;
Chris Lattnerf8131c92008-10-29 17:46:26 +00002021
2022 if (StoreInst *SI = dyn_cast<StoreInst>(BBI))
2023 if (SI->isVolatile())
2024 break;
2025
2026 if (LoadInst *LI = dyn_cast<LoadInst>(BBI))
2027 if (LI->isVolatile())
2028 break;
2029
Chris Lattner698f96f2004-10-18 04:07:22 +00002030 // Delete this instruction
2031 BB->getInstList().erase(BBI);
2032 Changed = true;
2033 }
2034
2035 // If the unreachable instruction is the first in the block, take a gander
2036 // at all of the predecessors of this instruction, and simplify them.
2037 if (&BB->front() == Unreachable) {
Chris Lattner82442432008-02-18 07:42:56 +00002038 SmallVector<BasicBlock*, 8> Preds(pred_begin(BB), pred_end(BB));
Chris Lattner698f96f2004-10-18 04:07:22 +00002039 for (unsigned i = 0, e = Preds.size(); i != e; ++i) {
2040 TerminatorInst *TI = Preds[i]->getTerminator();
2041
2042 if (BranchInst *BI = dyn_cast<BranchInst>(TI)) {
2043 if (BI->isUnconditional()) {
2044 if (BI->getSuccessor(0) == BB) {
2045 new UnreachableInst(TI);
2046 TI->eraseFromParent();
2047 Changed = true;
2048 }
2049 } else {
2050 if (BI->getSuccessor(0) == BB) {
Gabor Greif051a9502008-04-06 20:25:17 +00002051 BranchInst::Create(BI->getSuccessor(1), BI);
Eli Friedman080efb82008-12-16 20:54:32 +00002052 EraseTerminatorInstAndDCECond(BI);
Chris Lattner698f96f2004-10-18 04:07:22 +00002053 } else if (BI->getSuccessor(1) == BB) {
Gabor Greif051a9502008-04-06 20:25:17 +00002054 BranchInst::Create(BI->getSuccessor(0), BI);
Eli Friedman080efb82008-12-16 20:54:32 +00002055 EraseTerminatorInstAndDCECond(BI);
Chris Lattner698f96f2004-10-18 04:07:22 +00002056 Changed = true;
2057 }
2058 }
2059 } else if (SwitchInst *SI = dyn_cast<SwitchInst>(TI)) {
2060 for (unsigned i = 1, e = SI->getNumCases(); i != e; ++i)
2061 if (SI->getSuccessor(i) == BB) {
Chris Lattner42eb7522005-05-20 22:19:54 +00002062 BB->removePredecessor(SI->getParent());
Chris Lattner698f96f2004-10-18 04:07:22 +00002063 SI->removeCase(i);
2064 --i; --e;
2065 Changed = true;
2066 }
2067 // If the default value is unreachable, figure out the most popular
2068 // destination and make it the default.
2069 if (SI->getSuccessor(0) == BB) {
2070 std::map<BasicBlock*, unsigned> Popularity;
2071 for (unsigned i = 1, e = SI->getNumCases(); i != e; ++i)
2072 Popularity[SI->getSuccessor(i)]++;
2073
2074 // Find the most popular block.
2075 unsigned MaxPop = 0;
2076 BasicBlock *MaxBlock = 0;
2077 for (std::map<BasicBlock*, unsigned>::iterator
2078 I = Popularity.begin(), E = Popularity.end(); I != E; ++I) {
2079 if (I->second > MaxPop) {
2080 MaxPop = I->second;
2081 MaxBlock = I->first;
2082 }
2083 }
2084 if (MaxBlock) {
2085 // Make this the new default, allowing us to delete any explicit
2086 // edges to it.
2087 SI->setSuccessor(0, MaxBlock);
2088 Changed = true;
2089
Chris Lattner42eb7522005-05-20 22:19:54 +00002090 // If MaxBlock has phinodes in it, remove MaxPop-1 entries from
2091 // it.
2092 if (isa<PHINode>(MaxBlock->begin()))
2093 for (unsigned i = 0; i != MaxPop-1; ++i)
2094 MaxBlock->removePredecessor(SI->getParent());
2095
Chris Lattner698f96f2004-10-18 04:07:22 +00002096 for (unsigned i = 1, e = SI->getNumCases(); i != e; ++i)
2097 if (SI->getSuccessor(i) == MaxBlock) {
2098 SI->removeCase(i);
2099 --i; --e;
2100 }
2101 }
2102 }
2103 } else if (InvokeInst *II = dyn_cast<InvokeInst>(TI)) {
2104 if (II->getUnwindDest() == BB) {
2105 // Convert the invoke to a call instruction. This would be a good
2106 // place to note that the call does not throw though.
Gabor Greif051a9502008-04-06 20:25:17 +00002107 BranchInst *BI = BranchInst::Create(II->getNormalDest(), II);
Chris Lattner698f96f2004-10-18 04:07:22 +00002108 II->removeFromParent(); // Take out of symbol table
Misha Brukmanfd939082005-04-21 23:48:37 +00002109
Chris Lattner698f96f2004-10-18 04:07:22 +00002110 // Insert the call now...
Chris Lattner93e985f2007-02-13 02:10:56 +00002111 SmallVector<Value*, 8> Args(II->op_begin()+3, II->op_end());
Gabor Greif051a9502008-04-06 20:25:17 +00002112 CallInst *CI = CallInst::Create(II->getCalledValue(),
2113 Args.begin(), Args.end(),
2114 II->getName(), BI);
Chris Lattner16d0db22005-05-14 12:21:56 +00002115 CI->setCallingConv(II->getCallingConv());
Devang Patel05988662008-09-25 21:00:45 +00002116 CI->setAttributes(II->getAttributes());
Chris Lattner698f96f2004-10-18 04:07:22 +00002117 // If the invoke produced a value, the Call does now instead.
2118 II->replaceAllUsesWith(CI);
2119 delete II;
2120 Changed = true;
2121 }
2122 }
2123 }
2124
2125 // If this block is now dead, remove it.
2126 if (pred_begin(BB) == pred_end(BB)) {
2127 // We know there are no successors, so just nuke the block.
2128 M->getBasicBlockList().erase(BB);
2129 return true;
2130 }
2131 }
Chris Lattner19831ec2004-02-16 06:35:48 +00002132 }
2133
Chris Lattner01d1ee32002-05-21 20:50:24 +00002134 // Merge basic blocks into their predecessor if there is only one distinct
2135 // pred, and if there is only one distinct successor of the predecessor, and
2136 // if there are no PHI nodes.
2137 //
Owen Andersoncfa94192008-07-18 17:49:43 +00002138 if (MergeBlockIntoPredecessor(BB))
2139 return true;
2140
2141 // Otherwise, if this block only has a single predecessor, and if that block
2142 // is a conditional branch, see if we can hoist any code from this block up
2143 // into our predecessor.
Chris Lattner2355f942004-02-11 01:17:07 +00002144 pred_iterator PI(pred_begin(BB)), PE(pred_end(BB));
2145 BasicBlock *OnlyPred = *PI++;
2146 for (; PI != PE; ++PI) // Search all predecessors, see if they are all same
2147 if (*PI != OnlyPred) {
2148 OnlyPred = 0; // There are multiple different predecessors...
2149 break;
2150 }
Owen Andersoncfa94192008-07-18 17:49:43 +00002151
Chris Lattner37dc9382004-11-30 00:29:14 +00002152 if (OnlyPred)
Chris Lattner76134372004-12-10 17:42:31 +00002153 if (BranchInst *BI = dyn_cast<BranchInst>(OnlyPred->getTerminator()))
2154 if (BI->isConditional()) {
2155 // Get the other block.
2156 BasicBlock *OtherBB = BI->getSuccessor(BI->getSuccessor(0) == BB);
2157 PI = pred_begin(OtherBB);
2158 ++PI;
Owen Andersoncfa94192008-07-18 17:49:43 +00002159
Chris Lattner76134372004-12-10 17:42:31 +00002160 if (PI == pred_end(OtherBB)) {
2161 // We have a conditional branch to two blocks that are only reachable
2162 // from the condbr. We know that the condbr dominates the two blocks,
2163 // so see if there is any identical code in the "then" and "else"
2164 // blocks. If so, we can hoist it up to the branching block.
2165 Changed |= HoistThenElseCodeToIf(BI);
Evan Cheng4d09efd2008-06-07 08:52:29 +00002166 } else {
Owen Andersoncfa94192008-07-18 17:49:43 +00002167 BasicBlock* OnlySucc = NULL;
Evan Cheng4d09efd2008-06-07 08:52:29 +00002168 for (succ_iterator SI = succ_begin(BB), SE = succ_end(BB);
2169 SI != SE; ++SI) {
2170 if (!OnlySucc)
2171 OnlySucc = *SI;
2172 else if (*SI != OnlySucc) {
2173 OnlySucc = 0; // There are multiple distinct successors!
2174 break;
2175 }
2176 }
2177
2178 if (OnlySucc == OtherBB) {
2179 // If BB's only successor is the other successor of the predecessor,
2180 // i.e. a triangle, see if we can hoist any code from this block up
2181 // to the "if" block.
2182 Changed |= SpeculativelyExecuteBB(BI, BB);
2183 }
Chris Lattner76134372004-12-10 17:42:31 +00002184 }
Chris Lattner37dc9382004-11-30 00:29:14 +00002185 }
Chris Lattner37dc9382004-11-30 00:29:14 +00002186
Chris Lattner0d560082004-02-24 05:38:11 +00002187 for (pred_iterator PI = pred_begin(BB), E = pred_end(BB); PI != E; ++PI)
2188 if (BranchInst *BI = dyn_cast<BranchInst>((*PI)->getTerminator()))
2189 // Change br (X == 0 | X == 1), T, F into a switch instruction.
2190 if (BI->isConditional() && isa<Instruction>(BI->getCondition())) {
2191 Instruction *Cond = cast<Instruction>(BI->getCondition());
2192 // If this is a bunch of seteq's or'd together, or if it's a bunch of
2193 // 'setne's and'ed together, collect them.
2194 Value *CompVal = 0;
Chris Lattner1654cff2004-06-19 07:02:14 +00002195 std::vector<ConstantInt*> Values;
Chris Lattner0d560082004-02-24 05:38:11 +00002196 bool TrueWhenEqual = GatherValueComparisons(Cond, CompVal, Values);
Chris Lattner42a75512007-01-15 02:27:26 +00002197 if (CompVal && CompVal->getType()->isInteger()) {
Chris Lattner0d560082004-02-24 05:38:11 +00002198 // There might be duplicate constants in the list, which the switch
2199 // instruction can't handle, remove them now.
Chris Lattner1654cff2004-06-19 07:02:14 +00002200 std::sort(Values.begin(), Values.end(), ConstantIntOrdering());
Chris Lattner0d560082004-02-24 05:38:11 +00002201 Values.erase(std::unique(Values.begin(), Values.end()), Values.end());
Misha Brukmanfd939082005-04-21 23:48:37 +00002202
Chris Lattner0d560082004-02-24 05:38:11 +00002203 // Figure out which block is which destination.
2204 BasicBlock *DefaultBB = BI->getSuccessor(1);
2205 BasicBlock *EdgeBB = BI->getSuccessor(0);
2206 if (!TrueWhenEqual) std::swap(DefaultBB, EdgeBB);
Misha Brukmanfd939082005-04-21 23:48:37 +00002207
Chris Lattner0d560082004-02-24 05:38:11 +00002208 // Create the new switch instruction now.
Gabor Greifb1dbcd82008-05-15 10:04:30 +00002209 SwitchInst *New = SwitchInst::Create(CompVal, DefaultBB,
2210 Values.size(), BI);
Misha Brukmanfd939082005-04-21 23:48:37 +00002211
Chris Lattner0d560082004-02-24 05:38:11 +00002212 // Add all of the 'cases' to the switch instruction.
2213 for (unsigned i = 0, e = Values.size(); i != e; ++i)
2214 New->addCase(Values[i], EdgeBB);
Misha Brukmanfd939082005-04-21 23:48:37 +00002215
Chris Lattner0d560082004-02-24 05:38:11 +00002216 // We added edges from PI to the EdgeBB. As such, if there were any
2217 // PHI nodes in EdgeBB, they need entries to be added corresponding to
2218 // the number of edges added.
2219 for (BasicBlock::iterator BBI = EdgeBB->begin();
Reid Spencer2da5c3d2004-09-15 17:06:42 +00002220 isa<PHINode>(BBI); ++BBI) {
2221 PHINode *PN = cast<PHINode>(BBI);
Chris Lattner0d560082004-02-24 05:38:11 +00002222 Value *InVal = PN->getIncomingValueForBlock(*PI);
2223 for (unsigned i = 0, e = Values.size()-1; i != e; ++i)
2224 PN->addIncoming(InVal, *PI);
2225 }
2226
2227 // Erase the old branch instruction.
Eli Friedman080efb82008-12-16 20:54:32 +00002228 EraseTerminatorInstAndDCECond(BI);
Chris Lattner0d560082004-02-24 05:38:11 +00002229 return true;
2230 }
2231 }
2232
Chris Lattner694e37f2003-08-17 19:41:53 +00002233 return Changed;
Chris Lattner01d1ee32002-05-21 20:50:24 +00002234}