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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"
Nick Lewycky9d523102011-12-26 20:37:40 +000017#include "llvm/DerivedTypes.h"
18#include "llvm/GlobalVariable.h"
Chris Lattner723c66d2004-02-11 03:36:04 +000019#include "llvm/Instructions.h"
Devang Patel383d7ed2009-02-03 22:12:02 +000020#include "llvm/IntrinsicInst.h"
Nick Lewycky06cc66f2011-12-27 04:31:52 +000021#include "llvm/LLVMContext.h"
22#include "llvm/Metadata.h"
Dan Gohman3b205172012-01-05 23:58:56 +000023#include "llvm/Operator.h"
Chris Lattner0d560082004-02-24 05:38:11 +000024#include "llvm/Type.h"
Chris Lattner302ba6f2010-12-14 06:17:25 +000025#include "llvm/Analysis/InstructionSimplify.h"
Benjamin Kramer10fcfb52011-05-14 15:57:25 +000026#include "llvm/Analysis/ValueTracking.h"
Jakob Stoklund Olesen58e9ee82010-02-05 22:03:18 +000027#include "llvm/Target/TargetData.h"
Chris Lattnereaba3a12005-09-19 23:49:37 +000028#include "llvm/Transforms/Utils/BasicBlockUtils.h"
Dan Gohman2c635662009-10-30 22:39:04 +000029#include "llvm/ADT/DenseMap.h"
Dan Gohman3b205172012-01-05 23:58:56 +000030#include "llvm/ADT/SetVector.h"
Chris Lattner93e985f2007-02-13 02:10:56 +000031#include "llvm/ADT/SmallVector.h"
Chris Lattnerc9951232007-04-02 01:44:59 +000032#include "llvm/ADT/SmallPtrSet.h"
Evan Cheng502a4f52008-06-12 21:15:59 +000033#include "llvm/ADT/Statistic.h"
Chris Lattner6d4d21e2010-12-13 02:00:58 +000034#include "llvm/ADT/STLExtras.h"
Chris Lattner302ba6f2010-12-14 06:17:25 +000035#include "llvm/Support/CFG.h"
Evan Chengc3f507f2011-01-29 04:46:23 +000036#include "llvm/Support/CommandLine.h"
Chris Lattnere27db742010-12-17 06:20:15 +000037#include "llvm/Support/ConstantRange.h"
Chris Lattner302ba6f2010-12-14 06:17:25 +000038#include "llvm/Support/Debug.h"
Devang Patel3e410c62011-05-18 18:01:27 +000039#include "llvm/Support/IRBuilder.h"
Devang Pateld3a17882011-05-19 20:52:46 +000040#include "llvm/Support/NoFolder.h"
Chris Lattner302ba6f2010-12-14 06:17:25 +000041#include "llvm/Support/raw_ostream.h"
Chris Lattner01d1ee32002-05-21 20:50:24 +000042#include <algorithm>
Chris Lattnerd52c2612004-02-24 07:23:58 +000043#include <set>
Chris Lattner698f96f2004-10-18 04:07:22 +000044#include <map>
Chris Lattnerf7703df2004-01-09 06:12:26 +000045using namespace llvm;
Brian Gaeked0fde302003-11-11 22:41:34 +000046
Peter Collingbourne57808b32011-04-29 18:47:38 +000047static cl::opt<unsigned>
48PHINodeFoldingThreshold("phi-node-folding-threshold", cl::Hidden, cl::init(1),
49 cl::desc("Control the amount of phi node folding to perform (default = 1)"));
50
Evan Chengc3f507f2011-01-29 04:46:23 +000051static cl::opt<bool>
52DupRet("simplifycfg-dup-ret", cl::Hidden, cl::init(false),
53 cl::desc("Duplicate return instructions into unconditional branches"));
54
Evan Cheng502a4f52008-06-12 21:15:59 +000055STATISTIC(NumSpeculations, "Number of speculative executed instructions");
56
Jakob Stoklund Olesen58e9ee82010-02-05 22:03:18 +000057namespace {
58class SimplifyCFGOpt {
59 const TargetData *const TD;
60
Jakob Stoklund Olesen58e9ee82010-02-05 22:03:18 +000061 Value *isValueEqualityComparison(TerminatorInst *TI);
62 BasicBlock *GetValueEqualityComparisonCases(TerminatorInst *TI,
63 std::vector<std::pair<ConstantInt*, BasicBlock*> > &Cases);
64 bool SimplifyEqualityComparisonWithOnlyPredecessor(TerminatorInst *TI,
Devang Patel007349d2011-05-18 20:35:38 +000065 BasicBlock *Pred,
66 IRBuilder<> &Builder);
Devang Patelb55d9242011-05-18 20:53:17 +000067 bool FoldValueComparisonIntoPredecessors(TerminatorInst *TI,
68 IRBuilder<> &Builder);
Jakob Stoklund Olesen58e9ee82010-02-05 22:03:18 +000069
Duncan Sandsad99ef82011-09-05 12:57:57 +000070 bool SimplifyResume(ResumeInst *RI, IRBuilder<> &Builder);
Devang Patel176ec402011-05-18 21:33:11 +000071 bool SimplifyReturn(ReturnInst *RI, IRBuilder<> &Builder);
Devang Pateld46ba262011-05-18 20:01:18 +000072 bool SimplifyUnwind(UnwindInst *UI, IRBuilder<> &Builder);
Chris Lattner3d512132010-12-13 06:25:44 +000073 bool SimplifyUnreachable(UnreachableInst *UI);
Devang Patel007349d2011-05-18 20:35:38 +000074 bool SimplifySwitch(SwitchInst *SI, IRBuilder<> &Builder);
Chris Lattner3d512132010-12-13 06:25:44 +000075 bool SimplifyIndirectBr(IndirectBrInst *IBI);
Devang Patela23812c2011-05-18 18:28:48 +000076 bool SimplifyUncondBranch(BranchInst *BI, IRBuilder <> &Builder);
Devang Patel007349d2011-05-18 20:35:38 +000077 bool SimplifyCondBranch(BranchInst *BI, IRBuilder <>&Builder);
Chris Lattner3d512132010-12-13 06:25:44 +000078
Jakob Stoklund Olesen58e9ee82010-02-05 22:03:18 +000079public:
80 explicit SimplifyCFGOpt(const TargetData *td) : TD(td) {}
81 bool run(BasicBlock *BB);
82};
83}
84
Chris Lattner2bdcb562005-08-03 00:19:45 +000085/// SafeToMergeTerminators - Return true if it is safe to merge these two
86/// terminator instructions together.
87///
88static bool SafeToMergeTerminators(TerminatorInst *SI1, TerminatorInst *SI2) {
89 if (SI1 == SI2) return false; // Can't merge with self!
90
91 // It is not safe to merge these two switch instructions if they have a common
92 // successor, and if that successor has a PHI node, and if *that* PHI node has
93 // conflicting incoming values from the two switch blocks.
94 BasicBlock *SI1BB = SI1->getParent();
95 BasicBlock *SI2BB = SI2->getParent();
Chris Lattnerc9951232007-04-02 01:44:59 +000096 SmallPtrSet<BasicBlock*, 16> SI1Succs(succ_begin(SI1BB), succ_end(SI1BB));
Chris Lattner2bdcb562005-08-03 00:19:45 +000097
98 for (succ_iterator I = succ_begin(SI2BB), E = succ_end(SI2BB); I != E; ++I)
99 if (SI1Succs.count(*I))
100 for (BasicBlock::iterator BBI = (*I)->begin();
101 isa<PHINode>(BBI); ++BBI) {
102 PHINode *PN = cast<PHINode>(BBI);
103 if (PN->getIncomingValueForBlock(SI1BB) !=
104 PN->getIncomingValueForBlock(SI2BB))
105 return false;
106 }
107
108 return true;
109}
110
111/// AddPredecessorToBlock - Update PHI nodes in Succ to indicate that there will
112/// now be entries in it from the 'NewPred' block. The values that will be
113/// flowing into the PHI nodes will be the same as those coming in from
114/// ExistPred, an existing predecessor of Succ.
115static void AddPredecessorToBlock(BasicBlock *Succ, BasicBlock *NewPred,
116 BasicBlock *ExistPred) {
Chris Lattner2bdcb562005-08-03 00:19:45 +0000117 if (!isa<PHINode>(Succ->begin())) return; // Quick exit if nothing to do
118
Chris Lattner093a4382008-07-13 22:23:11 +0000119 PHINode *PN;
120 for (BasicBlock::iterator I = Succ->begin();
121 (PN = dyn_cast<PHINode>(I)); ++I)
122 PN->addIncoming(PN->getIncomingValueForBlock(ExistPred), NewPred);
Chris Lattner2bdcb562005-08-03 00:19:45 +0000123}
124
Chris Lattner7e663482005-08-03 00:11:16 +0000125
Chris Lattner73c50a62010-12-14 07:00:00 +0000126/// GetIfCondition - Given a basic block (BB) with two predecessors (and at
127/// least one PHI node in it), check to see if the merge at this block is due
Chris Lattner723c66d2004-02-11 03:36:04 +0000128/// to an "if condition". If so, return the boolean condition that determines
129/// which entry into BB will be taken. Also, return by references the block
130/// that will be entered from if the condition is true, and the block that will
131/// be entered if the condition is false.
Misha Brukmanfd939082005-04-21 23:48:37 +0000132///
Chris Lattner995ba1b2010-12-14 07:15:21 +0000133/// This does no checking to see if the true/false blocks have large or unsavory
134/// instructions in them.
Chris Lattner73c50a62010-12-14 07:00:00 +0000135static Value *GetIfCondition(BasicBlock *BB, BasicBlock *&IfTrue,
136 BasicBlock *&IfFalse) {
137 PHINode *SomePHI = cast<PHINode>(BB->begin());
138 assert(SomePHI->getNumIncomingValues() == 2 &&
Chris Lattner723c66d2004-02-11 03:36:04 +0000139 "Function can only handle blocks with 2 predecessors!");
Chris Lattner73c50a62010-12-14 07:00:00 +0000140 BasicBlock *Pred1 = SomePHI->getIncomingBlock(0);
141 BasicBlock *Pred2 = SomePHI->getIncomingBlock(1);
Chris Lattner723c66d2004-02-11 03:36:04 +0000142
143 // We can only handle branches. Other control flow will be lowered to
144 // branches if possible anyway.
Chris Lattner995ba1b2010-12-14 07:15:21 +0000145 BranchInst *Pred1Br = dyn_cast<BranchInst>(Pred1->getTerminator());
146 BranchInst *Pred2Br = dyn_cast<BranchInst>(Pred2->getTerminator());
147 if (Pred1Br == 0 || Pred2Br == 0)
Chris Lattner723c66d2004-02-11 03:36:04 +0000148 return 0;
Chris Lattner723c66d2004-02-11 03:36:04 +0000149
150 // Eliminate code duplication by ensuring that Pred1Br is conditional if
151 // either are.
152 if (Pred2Br->isConditional()) {
153 // If both branches are conditional, we don't have an "if statement". In
154 // reality, we could transform this case, but since the condition will be
155 // required anyway, we stand no chance of eliminating it, so the xform is
156 // probably not profitable.
157 if (Pred1Br->isConditional())
158 return 0;
159
160 std::swap(Pred1, Pred2);
161 std::swap(Pred1Br, Pred2Br);
162 }
163
164 if (Pred1Br->isConditional()) {
Chris Lattner995ba1b2010-12-14 07:15:21 +0000165 // The only thing we have to watch out for here is to make sure that Pred2
166 // doesn't have incoming edges from other blocks. If it does, the condition
167 // doesn't dominate BB.
168 if (Pred2->getSinglePredecessor() == 0)
169 return 0;
170
Chris Lattner723c66d2004-02-11 03:36:04 +0000171 // If we found a conditional branch predecessor, make sure that it branches
172 // to BB and Pred2Br. If it doesn't, this isn't an "if statement".
173 if (Pred1Br->getSuccessor(0) == BB &&
174 Pred1Br->getSuccessor(1) == Pred2) {
175 IfTrue = Pred1;
176 IfFalse = Pred2;
177 } else if (Pred1Br->getSuccessor(0) == Pred2 &&
178 Pred1Br->getSuccessor(1) == BB) {
179 IfTrue = Pred2;
180 IfFalse = Pred1;
181 } else {
182 // We know that one arm of the conditional goes to BB, so the other must
183 // go somewhere unrelated, and this must not be an "if statement".
184 return 0;
185 }
186
Chris Lattner723c66d2004-02-11 03:36:04 +0000187 return Pred1Br->getCondition();
188 }
189
190 // Ok, if we got here, both predecessors end with an unconditional branch to
191 // BB. Don't panic! If both blocks only have a single (identical)
192 // predecessor, and THAT is a conditional branch, then we're all ok!
Chris Lattner995ba1b2010-12-14 07:15:21 +0000193 BasicBlock *CommonPred = Pred1->getSinglePredecessor();
194 if (CommonPred == 0 || CommonPred != Pred2->getSinglePredecessor())
Chris Lattner723c66d2004-02-11 03:36:04 +0000195 return 0;
196
197 // Otherwise, if this is a conditional branch, then we can use it!
Chris Lattner995ba1b2010-12-14 07:15:21 +0000198 BranchInst *BI = dyn_cast<BranchInst>(CommonPred->getTerminator());
199 if (BI == 0) return 0;
200
201 assert(BI->isConditional() && "Two successors but not conditional?");
202 if (BI->getSuccessor(0) == Pred1) {
203 IfTrue = Pred1;
204 IfFalse = Pred2;
205 } else {
206 IfTrue = Pred2;
207 IfFalse = Pred1;
Chris Lattner723c66d2004-02-11 03:36:04 +0000208 }
Chris Lattner995ba1b2010-12-14 07:15:21 +0000209 return BI->getCondition();
Chris Lattner723c66d2004-02-11 03:36:04 +0000210}
211
Dan Gohman3b205172012-01-05 23:58:56 +0000212/// ComputeSpeculuationCost - Compute an abstract "cost" of speculating the
213/// given instruction, which is assumed to be safe to speculate. 1 means
214/// cheap, 2 means less cheap, and UINT_MAX means prohibitively expensive.
215static unsigned ComputeSpeculationCost(const User *I) {
216 assert(isSafeToSpeculativelyExecute(I) &&
217 "Instruction is not safe to speculatively execute!");
218 switch (Operator::getOpcode(I)) {
219 default:
220 // In doubt, be conservative.
221 return UINT_MAX;
222 case Instruction::GetElementPtr:
223 // GEPs are cheap if all indices are constant.
224 if (!cast<GEPOperator>(I)->hasAllConstantIndices())
225 return UINT_MAX;
226 return 1;
227 case Instruction::Load:
228 case Instruction::Add:
229 case Instruction::Sub:
230 case Instruction::And:
231 case Instruction::Or:
232 case Instruction::Xor:
233 case Instruction::Shl:
234 case Instruction::LShr:
235 case Instruction::AShr:
236 case Instruction::ICmp:
237 case Instruction::Trunc:
238 case Instruction::ZExt:
239 case Instruction::SExt:
240 return 1; // These are all cheap.
241
242 case Instruction::Call:
243 case Instruction::Select:
244 return 2;
245 }
246}
247
Bill Wendling5049fa62009-01-19 23:43:56 +0000248/// DominatesMergePoint - If we have a merge point of an "if condition" as
249/// accepted above, return true if the specified value dominates the block. We
250/// don't handle the true generality of domination here, just a special case
251/// which works well enough for us.
252///
253/// If AggressiveInsts is non-null, and if V does not dominate BB, we check to
Peter Collingbournef15907f2011-04-29 18:47:31 +0000254/// see if V (which must be an instruction) and its recursive operands
255/// that do not dominate BB have a combined cost lower than CostRemaining and
256/// are non-trapping. If both are true, the instruction is inserted into the
257/// set and true is returned.
258///
259/// The cost for most non-trapping instructions is defined as 1 except for
260/// Select whose cost is 2.
261///
262/// After this function returns, CostRemaining is decreased by the cost of
263/// V plus its non-dominating operands. If that cost is greater than
264/// CostRemaining, false is returned and CostRemaining is undefined.
Chris Lattner9c078662004-10-14 05:13:36 +0000265static bool DominatesMergePoint(Value *V, BasicBlock *BB,
Peter Collingbournef15907f2011-04-29 18:47:31 +0000266 SmallPtrSet<Instruction*, 4> *AggressiveInsts,
267 unsigned &CostRemaining) {
Chris Lattner570751c2004-04-09 22:50:22 +0000268 Instruction *I = dyn_cast<Instruction>(V);
Chris Lattnerb74b1812006-10-20 00:42:07 +0000269 if (!I) {
270 // Non-instructions all dominate instructions, but not all constantexprs
271 // can be executed unconditionally.
272 if (ConstantExpr *C = dyn_cast<ConstantExpr>(V))
273 if (C->canTrap())
274 return false;
275 return true;
276 }
Chris Lattner570751c2004-04-09 22:50:22 +0000277 BasicBlock *PBB = I->getParent();
Chris Lattner723c66d2004-02-11 03:36:04 +0000278
Chris Lattnerda895d62005-02-27 06:18:25 +0000279 // We don't want to allow weird loops that might have the "if condition" in
Chris Lattner570751c2004-04-09 22:50:22 +0000280 // the bottom of this block.
281 if (PBB == BB) return false;
Chris Lattner723c66d2004-02-11 03:36:04 +0000282
Chris Lattner570751c2004-04-09 22:50:22 +0000283 // If this instruction is defined in a block that contains an unconditional
284 // branch to BB, then it must be in the 'conditional' part of the "if
Chris Lattner44da7ca2010-12-14 07:41:39 +0000285 // statement". If not, it definitely dominates the region.
286 BranchInst *BI = dyn_cast<BranchInst>(PBB->getTerminator());
287 if (BI == 0 || BI->isConditional() || BI->getSuccessor(0) != BB)
288 return true;
Eli Friedman0b79a772009-07-17 04:28:42 +0000289
Chris Lattner44da7ca2010-12-14 07:41:39 +0000290 // If we aren't allowing aggressive promotion anymore, then don't consider
291 // instructions in the 'if region'.
292 if (AggressiveInsts == 0) return false;
293
Peter Collingbournef15907f2011-04-29 18:47:31 +0000294 // If we have seen this instruction before, don't count it again.
295 if (AggressiveInsts->count(I)) return true;
296
Chris Lattner44da7ca2010-12-14 07:41:39 +0000297 // Okay, it looks like the instruction IS in the "condition". Check to
298 // see if it's a cheap instruction to unconditionally compute, and if it
299 // only uses stuff defined outside of the condition. If so, hoist it out.
Dan Gohmanf0426602011-12-14 23:49:11 +0000300 if (!isSafeToSpeculativelyExecute(I))
Chris Lattner44da7ca2010-12-14 07:41:39 +0000301 return false;
Misha Brukmanfd939082005-04-21 23:48:37 +0000302
Dan Gohman3b205172012-01-05 23:58:56 +0000303 unsigned Cost = ComputeSpeculationCost(I);
Chris Lattner570751c2004-04-09 22:50:22 +0000304
Peter Collingbournef15907f2011-04-29 18:47:31 +0000305 if (Cost > CostRemaining)
306 return false;
307
308 CostRemaining -= Cost;
309
310 // Okay, we can only really hoist these out if their operands do
311 // not take us over the cost threshold.
Chris Lattner44da7ca2010-12-14 07:41:39 +0000312 for (User::op_iterator i = I->op_begin(), e = I->op_end(); i != e; ++i)
Peter Collingbournef15907f2011-04-29 18:47:31 +0000313 if (!DominatesMergePoint(*i, BB, AggressiveInsts, CostRemaining))
Chris Lattner44da7ca2010-12-14 07:41:39 +0000314 return false;
315 // Okay, it's safe to do this! Remember this instruction.
316 AggressiveInsts->insert(I);
Chris Lattner723c66d2004-02-11 03:36:04 +0000317 return true;
318}
Chris Lattner01d1ee32002-05-21 20:50:24 +0000319
Jakob Stoklund Olesen58e9ee82010-02-05 22:03:18 +0000320/// GetConstantInt - Extract ConstantInt from value, looking through IntToPtr
321/// and PointerNullValue. Return NULL if value is not a constant int.
Chris Lattner28acc132010-12-13 03:30:12 +0000322static ConstantInt *GetConstantInt(Value *V, const TargetData *TD) {
Jakob Stoklund Olesen58e9ee82010-02-05 22:03:18 +0000323 // Normal constant int.
324 ConstantInt *CI = dyn_cast<ConstantInt>(V);
Duncan Sands1df98592010-02-16 11:11:14 +0000325 if (CI || !TD || !isa<Constant>(V) || !V->getType()->isPointerTy())
Jakob Stoklund Olesen58e9ee82010-02-05 22:03:18 +0000326 return CI;
327
328 // This is some kind of pointer constant. Turn it into a pointer-sized
329 // ConstantInt if possible.
Chris Lattnerdb125cf2011-07-18 04:54:35 +0000330 IntegerType *PtrTy = TD->getIntPtrType(V->getContext());
Jakob Stoklund Olesen58e9ee82010-02-05 22:03:18 +0000331
332 // Null pointer means 0, see SelectionDAGBuilder::getValue(const Value*).
333 if (isa<ConstantPointerNull>(V))
334 return ConstantInt::get(PtrTy, 0);
335
336 // IntToPtr const int.
337 if (ConstantExpr *CE = dyn_cast<ConstantExpr>(V))
338 if (CE->getOpcode() == Instruction::IntToPtr)
339 if (ConstantInt *CI = dyn_cast<ConstantInt>(CE->getOperand(0))) {
340 // The constant is very likely to have the right type already.
341 if (CI->getType() == PtrTy)
342 return CI;
343 else
344 return cast<ConstantInt>
345 (ConstantExpr::getIntegerCast(CI, PtrTy, /*isSigned=*/false));
346 }
347 return 0;
348}
349
Chris Lattner0aa749b2010-12-13 04:26:26 +0000350/// GatherConstantCompares - Given a potentially 'or'd or 'and'd together
351/// collection of icmp eq/ne instructions that compare a value against a
352/// constant, return the value being compared, and stick the constant into the
353/// Values vector.
Chris Lattner28acc132010-12-13 03:30:12 +0000354static Value *
Chris Lattner0aa749b2010-12-13 04:26:26 +0000355GatherConstantCompares(Value *V, std::vector<ConstantInt*> &Vals, Value *&Extra,
Benjamin Kramer33828bc2011-02-07 22:37:28 +0000356 const TargetData *TD, bool isEQ, unsigned &UsedICmps) {
Chris Lattner0aa749b2010-12-13 04:26:26 +0000357 Instruction *I = dyn_cast<Instruction>(V);
358 if (I == 0) return 0;
Chris Lattner9a2b72a2010-12-13 01:47:07 +0000359
Chris Lattner7312a222010-12-13 04:50:38 +0000360 // If this is an icmp against a constant, handle this as one of the cases.
Chris Lattner0aa749b2010-12-13 04:26:26 +0000361 if (ICmpInst *ICI = dyn_cast<ICmpInst>(I)) {
Chris Lattnere27db742010-12-17 06:20:15 +0000362 if (ConstantInt *C = GetConstantInt(I->getOperand(1), TD)) {
363 if (ICI->getPredicate() == (isEQ ? ICmpInst::ICMP_EQ:ICmpInst::ICMP_NE)) {
Benjamin Kramer33828bc2011-02-07 22:37:28 +0000364 UsedICmps++;
Chris Lattner0aa749b2010-12-13 04:26:26 +0000365 Vals.push_back(C);
366 return I->getOperand(0);
367 }
Chris Lattnere27db742010-12-17 06:20:15 +0000368
369 // If we have "x ult 3" comparison, for example, then we can add 0,1,2 to
370 // the set.
371 ConstantRange Span =
Chris Lattnera37029c2010-12-18 20:22:49 +0000372 ConstantRange::makeICmpRegion(ICI->getPredicate(), C->getValue());
Chris Lattnere27db742010-12-17 06:20:15 +0000373
374 // If this is an and/!= check then we want to optimize "x ugt 2" into
375 // x != 0 && x != 1.
376 if (!isEQ)
377 Span = Span.inverse();
378
379 // If there are a ton of values, we don't want to make a ginormous switch.
Benjamin Kramer14c09872010-12-17 10:48:14 +0000380 if (Span.getSetSize().ugt(8) || Span.isEmptySet() ||
Chris Lattnere27db742010-12-17 06:20:15 +0000381 // We don't handle wrapped sets yet.
382 Span.isWrappedSet())
383 return 0;
384
385 for (APInt Tmp = Span.getLower(); Tmp != Span.getUpper(); ++Tmp)
386 Vals.push_back(ConstantInt::get(V->getContext(), Tmp));
Benjamin Kramer33828bc2011-02-07 22:37:28 +0000387 UsedICmps++;
Chris Lattnere27db742010-12-17 06:20:15 +0000388 return I->getOperand(0);
389 }
Chris Lattner662269d2010-12-13 04:18:32 +0000390 return 0;
391 }
392
Chris Lattner7312a222010-12-13 04:50:38 +0000393 // Otherwise, we can only handle an | or &, depending on isEQ.
Chris Lattner0aa749b2010-12-13 04:26:26 +0000394 if (I->getOpcode() != (isEQ ? Instruction::Or : Instruction::And))
Chris Lattner662269d2010-12-13 04:18:32 +0000395 return 0;
Chris Lattner662269d2010-12-13 04:18:32 +0000396
Chris Lattner7312a222010-12-13 04:50:38 +0000397 unsigned NumValsBeforeLHS = Vals.size();
Benjamin Kramer33828bc2011-02-07 22:37:28 +0000398 unsigned UsedICmpsBeforeLHS = UsedICmps;
Chris Lattner0aa749b2010-12-13 04:26:26 +0000399 if (Value *LHS = GatherConstantCompares(I->getOperand(0), Vals, Extra, TD,
Benjamin Kramer33828bc2011-02-07 22:37:28 +0000400 isEQ, UsedICmps)) {
Chris Lattner7312a222010-12-13 04:50:38 +0000401 unsigned NumVals = Vals.size();
Benjamin Kramer33828bc2011-02-07 22:37:28 +0000402 unsigned UsedICmpsBeforeRHS = UsedICmps;
Chris Lattner0aa749b2010-12-13 04:26:26 +0000403 if (Value *RHS = GatherConstantCompares(I->getOperand(1), Vals, Extra, TD,
Benjamin Kramer33828bc2011-02-07 22:37:28 +0000404 isEQ, UsedICmps)) {
Chris Lattner0aa749b2010-12-13 04:26:26 +0000405 if (LHS == RHS)
406 return LHS;
Chris Lattner92407e52010-12-13 07:41:29 +0000407 Vals.resize(NumVals);
Benjamin Kramer33828bc2011-02-07 22:37:28 +0000408 UsedICmps = UsedICmpsBeforeRHS;
Chris Lattner0aa749b2010-12-13 04:26:26 +0000409 }
Chris Lattner7312a222010-12-13 04:50:38 +0000410
411 // The RHS of the or/and can't be folded in and we haven't used "Extra" yet,
412 // set it and return success.
413 if (Extra == 0 || Extra == I->getOperand(1)) {
414 Extra = I->getOperand(1);
415 return LHS;
416 }
417
418 Vals.resize(NumValsBeforeLHS);
Benjamin Kramer33828bc2011-02-07 22:37:28 +0000419 UsedICmps = UsedICmpsBeforeLHS;
Chris Lattner7312a222010-12-13 04:50:38 +0000420 return 0;
Anton Korobeynikov07e6e562008-02-20 11:26:25 +0000421 }
Chris Lattner7312a222010-12-13 04:50:38 +0000422
423 // If the LHS can't be folded in, but Extra is available and RHS can, try to
424 // use LHS as Extra.
425 if (Extra == 0 || Extra == I->getOperand(0)) {
Chris Lattner92407e52010-12-13 07:41:29 +0000426 Value *OldExtra = Extra;
Chris Lattner7312a222010-12-13 04:50:38 +0000427 Extra = I->getOperand(0);
428 if (Value *RHS = GatherConstantCompares(I->getOperand(1), Vals, Extra, TD,
Benjamin Kramer33828bc2011-02-07 22:37:28 +0000429 isEQ, UsedICmps))
Chris Lattner7312a222010-12-13 04:50:38 +0000430 return RHS;
Chris Lattner92407e52010-12-13 07:41:29 +0000431 assert(Vals.size() == NumValsBeforeLHS);
432 Extra = OldExtra;
Chris Lattner7312a222010-12-13 04:50:38 +0000433 }
434
Chris Lattner0d560082004-02-24 05:38:11 +0000435 return 0;
436}
Nick Lewycky9d523102011-12-26 20:37:40 +0000437
Eli Friedman080efb82008-12-16 20:54:32 +0000438static void EraseTerminatorInstAndDCECond(TerminatorInst *TI) {
Nick Lewycky9d523102011-12-26 20:37:40 +0000439 Instruction *Cond = 0;
Eli Friedman080efb82008-12-16 20:54:32 +0000440 if (SwitchInst *SI = dyn_cast<SwitchInst>(TI)) {
441 Cond = dyn_cast<Instruction>(SI->getCondition());
442 } else if (BranchInst *BI = dyn_cast<BranchInst>(TI)) {
443 if (BI->isConditional())
444 Cond = dyn_cast<Instruction>(BI->getCondition());
Frits van Bommel7ac40c32010-12-05 18:29:03 +0000445 } else if (IndirectBrInst *IBI = dyn_cast<IndirectBrInst>(TI)) {
446 Cond = dyn_cast<Instruction>(IBI->getAddress());
Eli Friedman080efb82008-12-16 20:54:32 +0000447 }
448
449 TI->eraseFromParent();
450 if (Cond) RecursivelyDeleteTriviallyDeadInstructions(Cond);
451}
452
Chris Lattner9fd49552008-11-27 23:25:44 +0000453/// isValueEqualityComparison - Return true if the specified terminator checks
454/// to see if a value is equal to constant integer value.
Jakob Stoklund Olesen58e9ee82010-02-05 22:03:18 +0000455Value *SimplifyCFGOpt::isValueEqualityComparison(TerminatorInst *TI) {
456 Value *CV = 0;
Chris Lattner4bebf082004-03-16 19:45:22 +0000457 if (SwitchInst *SI = dyn_cast<SwitchInst>(TI)) {
458 // Do not permit merging of large switch instructions into their
459 // predecessors unless there is only one predecessor.
Jakob Stoklund Olesen58e9ee82010-02-05 22:03:18 +0000460 if (SI->getNumSuccessors()*std::distance(pred_begin(SI->getParent()),
461 pred_end(SI->getParent())) <= 128)
462 CV = SI->getCondition();
463 } else if (BranchInst *BI = dyn_cast<BranchInst>(TI))
Chris Lattner542f1492004-02-28 21:28:10 +0000464 if (BI->isConditional() && BI->getCondition()->hasOneUse())
Reid Spencere4d87aa2006-12-23 06:05:41 +0000465 if (ICmpInst *ICI = dyn_cast<ICmpInst>(BI->getCondition()))
466 if ((ICI->getPredicate() == ICmpInst::ICMP_EQ ||
467 ICI->getPredicate() == ICmpInst::ICMP_NE) &&
Chris Lattner28acc132010-12-13 03:30:12 +0000468 GetConstantInt(ICI->getOperand(1), TD))
Jakob Stoklund Olesen58e9ee82010-02-05 22:03:18 +0000469 CV = ICI->getOperand(0);
470
471 // Unwrap any lossless ptrtoint cast.
472 if (TD && CV && CV->getType() == TD->getIntPtrType(CV->getContext()))
473 if (PtrToIntInst *PTII = dyn_cast<PtrToIntInst>(CV))
474 CV = PTII->getOperand(0);
475 return CV;
Chris Lattner542f1492004-02-28 21:28:10 +0000476}
477
Bill Wendling5049fa62009-01-19 23:43:56 +0000478/// GetValueEqualityComparisonCases - Given a value comparison instruction,
479/// decode all of the 'cases' that it represents and return the 'default' block.
Jakob Stoklund Olesen58e9ee82010-02-05 22:03:18 +0000480BasicBlock *SimplifyCFGOpt::
Misha Brukmanfd939082005-04-21 23:48:37 +0000481GetValueEqualityComparisonCases(TerminatorInst *TI,
Chris Lattner542f1492004-02-28 21:28:10 +0000482 std::vector<std::pair<ConstantInt*,
483 BasicBlock*> > &Cases) {
484 if (SwitchInst *SI = dyn_cast<SwitchInst>(TI)) {
485 Cases.reserve(SI->getNumCases());
486 for (unsigned i = 1, e = SI->getNumCases(); i != e; ++i)
Chris Lattnerbe54dcc2005-02-26 18:33:28 +0000487 Cases.push_back(std::make_pair(SI->getCaseValue(i), SI->getSuccessor(i)));
Chris Lattner542f1492004-02-28 21:28:10 +0000488 return SI->getDefaultDest();
489 }
490
491 BranchInst *BI = cast<BranchInst>(TI);
Reid Spencere4d87aa2006-12-23 06:05:41 +0000492 ICmpInst *ICI = cast<ICmpInst>(BI->getCondition());
Chris Lattner28acc132010-12-13 03:30:12 +0000493 Cases.push_back(std::make_pair(GetConstantInt(ICI->getOperand(1), TD),
Reid Spencere4d87aa2006-12-23 06:05:41 +0000494 BI->getSuccessor(ICI->getPredicate() ==
495 ICmpInst::ICMP_NE)));
496 return BI->getSuccessor(ICI->getPredicate() == ICmpInst::ICMP_EQ);
Chris Lattner542f1492004-02-28 21:28:10 +0000497}
498
499
Bill Wendling5049fa62009-01-19 23:43:56 +0000500/// EliminateBlockCases - Given a vector of bb/value pairs, remove any entries
501/// in the list that match the specified block.
Misha Brukmanfd939082005-04-21 23:48:37 +0000502static void EliminateBlockCases(BasicBlock *BB,
Chris Lattner623369a2005-02-24 06:17:52 +0000503 std::vector<std::pair<ConstantInt*, BasicBlock*> > &Cases) {
504 for (unsigned i = 0, e = Cases.size(); i != e; ++i)
505 if (Cases[i].second == BB) {
506 Cases.erase(Cases.begin()+i);
507 --i; --e;
508 }
509}
510
Bill Wendling5049fa62009-01-19 23:43:56 +0000511/// ValuesOverlap - Return true if there are any keys in C1 that exist in C2 as
512/// well.
Chris Lattner623369a2005-02-24 06:17:52 +0000513static bool
514ValuesOverlap(std::vector<std::pair<ConstantInt*, BasicBlock*> > &C1,
515 std::vector<std::pair<ConstantInt*, BasicBlock*> > &C2) {
516 std::vector<std::pair<ConstantInt*, BasicBlock*> > *V1 = &C1, *V2 = &C2;
517
518 // Make V1 be smaller than V2.
519 if (V1->size() > V2->size())
520 std::swap(V1, V2);
521
522 if (V1->size() == 0) return false;
523 if (V1->size() == 1) {
524 // Just scan V2.
525 ConstantInt *TheVal = (*V1)[0].first;
526 for (unsigned i = 0, e = V2->size(); i != e; ++i)
527 if (TheVal == (*V2)[i].first)
528 return true;
529 }
530
531 // Otherwise, just sort both lists and compare element by element.
Chris Lattnerfca20f52010-12-13 03:24:30 +0000532 array_pod_sort(V1->begin(), V1->end());
533 array_pod_sort(V2->begin(), V2->end());
Chris Lattner623369a2005-02-24 06:17:52 +0000534 unsigned i1 = 0, i2 = 0, e1 = V1->size(), e2 = V2->size();
535 while (i1 != e1 && i2 != e2) {
536 if ((*V1)[i1].first == (*V2)[i2].first)
537 return true;
538 if ((*V1)[i1].first < (*V2)[i2].first)
539 ++i1;
540 else
541 ++i2;
542 }
543 return false;
544}
545
Bill Wendling5049fa62009-01-19 23:43:56 +0000546/// SimplifyEqualityComparisonWithOnlyPredecessor - If TI is known to be a
547/// terminator instruction and its block is known to only have a single
548/// predecessor block, check to see if that predecessor is also a value
549/// comparison with the same value, and if that comparison determines the
550/// outcome of this comparison. If so, simplify TI. This does a very limited
551/// form of jump threading.
Jakob Stoklund Olesen58e9ee82010-02-05 22:03:18 +0000552bool SimplifyCFGOpt::
553SimplifyEqualityComparisonWithOnlyPredecessor(TerminatorInst *TI,
Devang Patel007349d2011-05-18 20:35:38 +0000554 BasicBlock *Pred,
555 IRBuilder<> &Builder) {
Chris Lattner623369a2005-02-24 06:17:52 +0000556 Value *PredVal = isValueEqualityComparison(Pred->getTerminator());
557 if (!PredVal) return false; // Not a value comparison in predecessor.
558
559 Value *ThisVal = isValueEqualityComparison(TI);
560 assert(ThisVal && "This isn't a value comparison!!");
561 if (ThisVal != PredVal) return false; // Different predicates.
562
563 // Find out information about when control will move from Pred to TI's block.
564 std::vector<std::pair<ConstantInt*, BasicBlock*> > PredCases;
565 BasicBlock *PredDef = GetValueEqualityComparisonCases(Pred->getTerminator(),
566 PredCases);
567 EliminateBlockCases(PredDef, PredCases); // Remove default from cases.
Misha Brukmanfd939082005-04-21 23:48:37 +0000568
Chris Lattner623369a2005-02-24 06:17:52 +0000569 // Find information about how control leaves this block.
570 std::vector<std::pair<ConstantInt*, BasicBlock*> > ThisCases;
571 BasicBlock *ThisDef = GetValueEqualityComparisonCases(TI, ThisCases);
572 EliminateBlockCases(ThisDef, ThisCases); // Remove default from cases.
573
574 // If TI's block is the default block from Pred's comparison, potentially
575 // simplify TI based on this knowledge.
576 if (PredDef == TI->getParent()) {
577 // If we are here, we know that the value is none of those cases listed in
578 // PredCases. If there are any cases in ThisCases that are in PredCases, we
579 // can simplify TI.
Chris Lattner9a2b72a2010-12-13 01:47:07 +0000580 if (!ValuesOverlap(PredCases, ThisCases))
581 return false;
582
583 if (isa<BranchInst>(TI)) {
584 // Okay, one of the successors of this condbr is dead. Convert it to a
585 // uncond br.
586 assert(ThisCases.size() == 1 && "Branch can only have one case!");
587 // Insert the new branch.
Devang Patel007349d2011-05-18 20:35:38 +0000588 Instruction *NI = Builder.CreateBr(ThisDef);
Chris Lattner9a2b72a2010-12-13 01:47:07 +0000589 (void) NI;
Chris Lattner623369a2005-02-24 06:17:52 +0000590
Chris Lattner9a2b72a2010-12-13 01:47:07 +0000591 // Remove PHI node entries for the dead edge.
592 ThisCases[0].second->removePredecessor(TI->getParent());
Chris Lattner623369a2005-02-24 06:17:52 +0000593
Chris Lattner9a2b72a2010-12-13 01:47:07 +0000594 DEBUG(dbgs() << "Threading pred instr: " << *Pred->getTerminator()
595 << "Through successor TI: " << *TI << "Leaving: " << *NI << "\n");
Chris Lattner623369a2005-02-24 06:17:52 +0000596
Chris Lattner9a2b72a2010-12-13 01:47:07 +0000597 EraseTerminatorInstAndDCECond(TI);
598 return true;
Chris Lattner623369a2005-02-24 06:17:52 +0000599 }
Chris Lattner9a2b72a2010-12-13 01:47:07 +0000600
601 SwitchInst *SI = cast<SwitchInst>(TI);
602 // Okay, TI has cases that are statically dead, prune them away.
603 SmallPtrSet<Constant*, 16> DeadCases;
Chris Lattner623369a2005-02-24 06:17:52 +0000604 for (unsigned i = 0, e = PredCases.size(); i != e; ++i)
Chris Lattner9a2b72a2010-12-13 01:47:07 +0000605 DeadCases.insert(PredCases[i].first);
Chris Lattner623369a2005-02-24 06:17:52 +0000606
David Greene89d6fd32010-01-05 01:26:52 +0000607 DEBUG(dbgs() << "Threading pred instr: " << *Pred->getTerminator()
Chris Lattner9a2b72a2010-12-13 01:47:07 +0000608 << "Through successor TI: " << *TI);
Chris Lattner623369a2005-02-24 06:17:52 +0000609
Chris Lattner9a2b72a2010-12-13 01:47:07 +0000610 for (unsigned i = SI->getNumCases()-1; i != 0; --i)
611 if (DeadCases.count(SI->getCaseValue(i))) {
612 SI->getSuccessor(i)->removePredecessor(TI->getParent());
613 SI->removeCase(i);
614 }
615
616 DEBUG(dbgs() << "Leaving: " << *TI << "\n");
Chris Lattner623369a2005-02-24 06:17:52 +0000617 return true;
618 }
Chris Lattner9a2b72a2010-12-13 01:47:07 +0000619
620 // Otherwise, TI's block must correspond to some matched value. Find out
621 // which value (or set of values) this is.
622 ConstantInt *TIV = 0;
623 BasicBlock *TIBB = TI->getParent();
624 for (unsigned i = 0, e = PredCases.size(); i != e; ++i)
625 if (PredCases[i].second == TIBB) {
626 if (TIV != 0)
627 return false; // Cannot handle multiple values coming to this block.
628 TIV = PredCases[i].first;
629 }
630 assert(TIV && "No edge from pred to succ?");
631
632 // Okay, we found the one constant that our value can be if we get into TI's
633 // BB. Find out which successor will unconditionally be branched to.
634 BasicBlock *TheRealDest = 0;
635 for (unsigned i = 0, e = ThisCases.size(); i != e; ++i)
636 if (ThisCases[i].first == TIV) {
637 TheRealDest = ThisCases[i].second;
638 break;
639 }
640
641 // If not handled by any explicit cases, it is handled by the default case.
642 if (TheRealDest == 0) TheRealDest = ThisDef;
643
644 // Remove PHI node entries for dead edges.
645 BasicBlock *CheckEdge = TheRealDest;
646 for (succ_iterator SI = succ_begin(TIBB), e = succ_end(TIBB); SI != e; ++SI)
647 if (*SI != CheckEdge)
648 (*SI)->removePredecessor(TIBB);
649 else
650 CheckEdge = 0;
651
652 // Insert the new branch.
Devang Patel007349d2011-05-18 20:35:38 +0000653 Instruction *NI = Builder.CreateBr(TheRealDest);
Chris Lattner9a2b72a2010-12-13 01:47:07 +0000654 (void) NI;
655
656 DEBUG(dbgs() << "Threading pred instr: " << *Pred->getTerminator()
657 << "Through successor TI: " << *TI << "Leaving: " << *NI << "\n");
658
659 EraseTerminatorInstAndDCECond(TI);
660 return true;
Chris Lattner623369a2005-02-24 06:17:52 +0000661}
662
Dale Johannesenc81f5442009-03-12 21:01:11 +0000663namespace {
664 /// ConstantIntOrdering - This class implements a stable ordering of constant
665 /// integers that does not depend on their address. This is important for
666 /// applications that sort ConstantInt's to ensure uniqueness.
667 struct ConstantIntOrdering {
668 bool operator()(const ConstantInt *LHS, const ConstantInt *RHS) const {
669 return LHS->getValue().ult(RHS->getValue());
670 }
671 };
672}
Dale Johannesena9537cf2009-03-12 01:00:26 +0000673
Chris Lattner6d4d21e2010-12-13 02:00:58 +0000674static int ConstantIntSortPredicate(const void *P1, const void *P2) {
675 const ConstantInt *LHS = *(const ConstantInt**)P1;
676 const ConstantInt *RHS = *(const ConstantInt**)P2;
Chris Lattnerba3c8152010-12-15 04:52:41 +0000677 if (LHS->getValue().ult(RHS->getValue()))
678 return 1;
679 if (LHS->getValue() == RHS->getValue())
680 return 0;
681 return -1;
Chris Lattner6d4d21e2010-12-13 02:00:58 +0000682}
683
Bill Wendling5049fa62009-01-19 23:43:56 +0000684/// FoldValueComparisonIntoPredecessors - The specified terminator is a value
685/// equality comparison instruction (either a switch or a branch on "X == c").
686/// See if any of the predecessors of the terminator block are value comparisons
687/// on the same value. If so, and if safe to do so, fold them together.
Devang Patelb55d9242011-05-18 20:53:17 +0000688bool SimplifyCFGOpt::FoldValueComparisonIntoPredecessors(TerminatorInst *TI,
689 IRBuilder<> &Builder) {
Chris Lattner542f1492004-02-28 21:28:10 +0000690 BasicBlock *BB = TI->getParent();
691 Value *CV = isValueEqualityComparison(TI); // CondVal
692 assert(CV && "Not a comparison?");
693 bool Changed = false;
694
Chris Lattner82442432008-02-18 07:42:56 +0000695 SmallVector<BasicBlock*, 16> Preds(pred_begin(BB), pred_end(BB));
Chris Lattner542f1492004-02-28 21:28:10 +0000696 while (!Preds.empty()) {
Dan Gohmane9d87f42009-05-06 17:22:41 +0000697 BasicBlock *Pred = Preds.pop_back_val();
Misha Brukmanfd939082005-04-21 23:48:37 +0000698
Chris Lattner542f1492004-02-28 21:28:10 +0000699 // See if the predecessor is a comparison with the same value.
700 TerminatorInst *PTI = Pred->getTerminator();
701 Value *PCV = isValueEqualityComparison(PTI); // PredCondVal
702
703 if (PCV == CV && SafeToMergeTerminators(TI, PTI)) {
704 // Figure out which 'cases' to copy from SI to PSI.
705 std::vector<std::pair<ConstantInt*, BasicBlock*> > BBCases;
706 BasicBlock *BBDefault = GetValueEqualityComparisonCases(TI, BBCases);
707
708 std::vector<std::pair<ConstantInt*, BasicBlock*> > PredCases;
709 BasicBlock *PredDefault = GetValueEqualityComparisonCases(PTI, PredCases);
710
711 // Based on whether the default edge from PTI goes to BB or not, fill in
712 // PredCases and PredDefault with the new switch cases we would like to
713 // build.
Chris Lattner82442432008-02-18 07:42:56 +0000714 SmallVector<BasicBlock*, 8> NewSuccessors;
Chris Lattner542f1492004-02-28 21:28:10 +0000715
716 if (PredDefault == BB) {
717 // If this is the default destination from PTI, only the edges in TI
718 // that don't occur in PTI, or that branch to BB will be activated.
Dale Johannesenc81f5442009-03-12 21:01:11 +0000719 std::set<ConstantInt*, ConstantIntOrdering> PTIHandled;
Chris Lattner542f1492004-02-28 21:28:10 +0000720 for (unsigned i = 0, e = PredCases.size(); i != e; ++i)
721 if (PredCases[i].second != BB)
722 PTIHandled.insert(PredCases[i].first);
723 else {
724 // The default destination is BB, we don't need explicit targets.
725 std::swap(PredCases[i], PredCases.back());
726 PredCases.pop_back();
727 --i; --e;
728 }
729
730 // Reconstruct the new switch statement we will be building.
731 if (PredDefault != BBDefault) {
732 PredDefault->removePredecessor(Pred);
733 PredDefault = BBDefault;
734 NewSuccessors.push_back(BBDefault);
735 }
736 for (unsigned i = 0, e = BBCases.size(); i != e; ++i)
737 if (!PTIHandled.count(BBCases[i].first) &&
738 BBCases[i].second != BBDefault) {
739 PredCases.push_back(BBCases[i]);
740 NewSuccessors.push_back(BBCases[i].second);
741 }
742
743 } else {
744 // If this is not the default destination from PSI, only the edges
745 // in SI that occur in PSI with a destination of BB will be
746 // activated.
Dale Johannesenc81f5442009-03-12 21:01:11 +0000747 std::set<ConstantInt*, ConstantIntOrdering> PTIHandled;
Chris Lattner542f1492004-02-28 21:28:10 +0000748 for (unsigned i = 0, e = PredCases.size(); i != e; ++i)
749 if (PredCases[i].second == BB) {
750 PTIHandled.insert(PredCases[i].first);
751 std::swap(PredCases[i], PredCases.back());
752 PredCases.pop_back();
753 --i; --e;
754 }
755
756 // Okay, now we know which constants were sent to BB from the
757 // predecessor. Figure out where they will all go now.
758 for (unsigned i = 0, e = BBCases.size(); i != e; ++i)
759 if (PTIHandled.count(BBCases[i].first)) {
760 // If this is one we are capable of getting...
761 PredCases.push_back(BBCases[i]);
762 NewSuccessors.push_back(BBCases[i].second);
763 PTIHandled.erase(BBCases[i].first);// This constant is taken care of
764 }
765
766 // If there are any constants vectored to BB that TI doesn't handle,
767 // they must go to the default destination of TI.
Dale Johannesenc81f5442009-03-12 21:01:11 +0000768 for (std::set<ConstantInt*, ConstantIntOrdering>::iterator I =
769 PTIHandled.begin(),
Chris Lattner542f1492004-02-28 21:28:10 +0000770 E = PTIHandled.end(); I != E; ++I) {
771 PredCases.push_back(std::make_pair(*I, BBDefault));
772 NewSuccessors.push_back(BBDefault);
773 }
774 }
775
776 // Okay, at this point, we know which new successor Pred will get. Make
777 // sure we update the number of entries in the PHI nodes for these
778 // successors.
779 for (unsigned i = 0, e = NewSuccessors.size(); i != e; ++i)
780 AddPredecessorToBlock(NewSuccessors[i], Pred, BB);
781
Devang Patelb55d9242011-05-18 20:53:17 +0000782 Builder.SetInsertPoint(PTI);
Jakob Stoklund Olesen58e9ee82010-02-05 22:03:18 +0000783 // Convert pointer to int before we switch.
Duncan Sands1df98592010-02-16 11:11:14 +0000784 if (CV->getType()->isPointerTy()) {
Jakob Stoklund Olesen58e9ee82010-02-05 22:03:18 +0000785 assert(TD && "Cannot switch on pointer without TargetData");
Devang Patelb55d9242011-05-18 20:53:17 +0000786 CV = Builder.CreatePtrToInt(CV, TD->getIntPtrType(CV->getContext()),
787 "magicptr");
Jakob Stoklund Olesen58e9ee82010-02-05 22:03:18 +0000788 }
789
Chris Lattner542f1492004-02-28 21:28:10 +0000790 // Now that the successors are updated, create the new Switch instruction.
Devang Patelb55d9242011-05-18 20:53:17 +0000791 SwitchInst *NewSI = Builder.CreateSwitch(CV, PredDefault,
792 PredCases.size());
Devang Pateld80e8ed2011-05-17 23:29:05 +0000793 NewSI->setDebugLoc(PTI->getDebugLoc());
Chris Lattner542f1492004-02-28 21:28:10 +0000794 for (unsigned i = 0, e = PredCases.size(); i != e; ++i)
795 NewSI->addCase(PredCases[i].first, PredCases[i].second);
Chris Lattner13b2f762005-01-01 16:02:12 +0000796
Eli Friedman080efb82008-12-16 20:54:32 +0000797 EraseTerminatorInstAndDCECond(PTI);
Chris Lattner13b2f762005-01-01 16:02:12 +0000798
Chris Lattner542f1492004-02-28 21:28:10 +0000799 // Okay, last check. If BB is still a successor of PSI, then we must
800 // have an infinite loop case. If so, add an infinitely looping block
801 // to handle the case to preserve the behavior of the code.
802 BasicBlock *InfLoopBlock = 0;
803 for (unsigned i = 0, e = NewSI->getNumSuccessors(); i != e; ++i)
804 if (NewSI->getSuccessor(i) == BB) {
805 if (InfLoopBlock == 0) {
Chris Lattner093a4382008-07-13 22:23:11 +0000806 // Insert it at the end of the function, because it's either code,
Chris Lattner542f1492004-02-28 21:28:10 +0000807 // or it won't matter if it's hot. :)
Owen Anderson1d0be152009-08-13 21:58:54 +0000808 InfLoopBlock = BasicBlock::Create(BB->getContext(),
809 "infloop", BB->getParent());
Gabor Greif051a9502008-04-06 20:25:17 +0000810 BranchInst::Create(InfLoopBlock, InfLoopBlock);
Chris Lattner542f1492004-02-28 21:28:10 +0000811 }
812 NewSI->setSuccessor(i, InfLoopBlock);
813 }
Misha Brukmanfd939082005-04-21 23:48:37 +0000814
Chris Lattner542f1492004-02-28 21:28:10 +0000815 Changed = true;
816 }
817 }
818 return Changed;
819}
820
Dale Johannesenc1f10402009-06-15 20:59:27 +0000821// isSafeToHoistInvoke - If we would need to insert a select that uses the
822// value of this invoke (comments in HoistThenElseCodeToIf explain why we
823// would need to do this), we can't hoist the invoke, as there is nowhere
824// to put the select in this case.
825static bool isSafeToHoistInvoke(BasicBlock *BB1, BasicBlock *BB2,
826 Instruction *I1, Instruction *I2) {
827 for (succ_iterator SI = succ_begin(BB1), E = succ_end(BB1); SI != E; ++SI) {
828 PHINode *PN;
829 for (BasicBlock::iterator BBI = SI->begin();
830 (PN = dyn_cast<PHINode>(BBI)); ++BBI) {
831 Value *BB1V = PN->getIncomingValueForBlock(BB1);
832 Value *BB2V = PN->getIncomingValueForBlock(BB2);
833 if (BB1V != BB2V && (BB1V==I1 || BB2V==I2)) {
834 return false;
835 }
836 }
837 }
838 return true;
839}
840
Chris Lattner6306d072005-08-03 17:59:45 +0000841/// HoistThenElseCodeToIf - Given a conditional branch that goes to BB1 and
Chris Lattner37dc9382004-11-30 00:29:14 +0000842/// BB2, hoist any common code in the two blocks up into the branch block. The
843/// caller of this function guarantees that BI's block dominates BB1 and BB2.
Rafael Espindola216dde92011-05-19 02:26:30 +0000844static bool HoistThenElseCodeToIf(BranchInst *BI) {
Chris Lattner37dc9382004-11-30 00:29:14 +0000845 // This does very trivial matching, with limited scanning, to find identical
846 // instructions in the two blocks. In particular, we don't want to get into
847 // O(M*N) situations here where M and N are the sizes of BB1 and BB2. As
848 // such, we currently just scan for obviously identical instructions in an
849 // identical order.
850 BasicBlock *BB1 = BI->getSuccessor(0); // The true destination.
851 BasicBlock *BB2 = BI->getSuccessor(1); // The false destination
852
Devang Patel65085cf2009-02-04 00:03:08 +0000853 BasicBlock::iterator BB1_Itr = BB1->begin();
854 BasicBlock::iterator BB2_Itr = BB2->begin();
855
856 Instruction *I1 = BB1_Itr++, *I2 = BB2_Itr++;
Devang Patel949666e2011-04-07 17:27:36 +0000857 // Skip debug info if it is not identical.
858 DbgInfoIntrinsic *DBI1 = dyn_cast<DbgInfoIntrinsic>(I1);
859 DbgInfoIntrinsic *DBI2 = dyn_cast<DbgInfoIntrinsic>(I2);
860 if (!DBI1 || !DBI2 || !DBI1->isIdenticalToWhenDefined(DBI2)) {
861 while (isa<DbgInfoIntrinsic>(I1))
862 I1 = BB1_Itr++;
863 while (isa<DbgInfoIntrinsic>(I2))
864 I2 = BB2_Itr++;
865 }
Devang Patelae6c95b2011-04-07 00:30:15 +0000866 if (isa<PHINode>(I1) || !I1->isIdenticalToWhenDefined(I2) ||
Dale Johannesenc1f10402009-06-15 20:59:27 +0000867 (isa<InvokeInst>(I1) && !isSafeToHoistInvoke(BB1, BB2, I1, I2)))
Chris Lattner37dc9382004-11-30 00:29:14 +0000868 return false;
869
870 // If we get here, we can hoist at least one instruction.
871 BasicBlock *BIParent = BI->getParent();
Chris Lattner37dc9382004-11-30 00:29:14 +0000872
873 do {
874 // If we are hoisting the terminator instruction, don't move one (making a
875 // broken BB), instead clone it, and remove BI.
876 if (isa<TerminatorInst>(I1))
877 goto HoistTerminator;
Misha Brukmanfd939082005-04-21 23:48:37 +0000878
Chris Lattner37dc9382004-11-30 00:29:14 +0000879 // For a normal instruction, we just move one to right before the branch,
880 // then replace all uses of the other with the first. Finally, we remove
881 // the now redundant second instruction.
882 BIParent->getInstList().splice(BI, BB1->getInstList(), I1);
883 if (!I2->use_empty())
884 I2->replaceAllUsesWith(I1);
Dan Gohman58cfa3b2009-08-25 22:11:20 +0000885 I1->intersectOptionalDataWith(I2);
Chris Lattner302ba6f2010-12-14 06:17:25 +0000886 I2->eraseFromParent();
Misha Brukmanfd939082005-04-21 23:48:37 +0000887
Devang Patel65085cf2009-02-04 00:03:08 +0000888 I1 = BB1_Itr++;
Devang Patel65085cf2009-02-04 00:03:08 +0000889 I2 = BB2_Itr++;
Devang Patel949666e2011-04-07 17:27:36 +0000890 // Skip debug info if it is not identical.
891 DbgInfoIntrinsic *DBI1 = dyn_cast<DbgInfoIntrinsic>(I1);
892 DbgInfoIntrinsic *DBI2 = dyn_cast<DbgInfoIntrinsic>(I2);
893 if (!DBI1 || !DBI2 || !DBI1->isIdenticalToWhenDefined(DBI2)) {
894 while (isa<DbgInfoIntrinsic>(I1))
895 I1 = BB1_Itr++;
896 while (isa<DbgInfoIntrinsic>(I2))
897 I2 = BB2_Itr++;
898 }
Devang Patelae6c95b2011-04-07 00:30:15 +0000899 } while (I1->isIdenticalToWhenDefined(I2));
Chris Lattner37dc9382004-11-30 00:29:14 +0000900
901 return true;
902
903HoistTerminator:
Dale Johannesenc1f10402009-06-15 20:59:27 +0000904 // It may not be possible to hoist an invoke.
905 if (isa<InvokeInst>(I1) && !isSafeToHoistInvoke(BB1, BB2, I1, I2))
906 return true;
907
Chris Lattner37dc9382004-11-30 00:29:14 +0000908 // Okay, it is safe to hoist the terminator.
Nick Lewycky67760642009-09-27 07:38:41 +0000909 Instruction *NT = I1->clone();
Chris Lattner37dc9382004-11-30 00:29:14 +0000910 BIParent->getInstList().insert(BI, NT);
Benjamin Kramerf0127052010-01-05 13:12:22 +0000911 if (!NT->getType()->isVoidTy()) {
Chris Lattner37dc9382004-11-30 00:29:14 +0000912 I1->replaceAllUsesWith(NT);
913 I2->replaceAllUsesWith(NT);
Chris Lattner86cc4232007-02-11 01:37:51 +0000914 NT->takeName(I1);
Chris Lattner37dc9382004-11-30 00:29:14 +0000915 }
916
Devang Pateld3a17882011-05-19 20:52:46 +0000917 IRBuilder<true, NoFolder> Builder(NT);
Chris Lattner37dc9382004-11-30 00:29:14 +0000918 // Hoisting one of the terminators from our successor is a great thing.
919 // Unfortunately, the successors of the if/else blocks may have PHI nodes in
920 // them. If they do, all PHI entries for BB1/BB2 must agree for all PHI
921 // nodes, so we insert select instruction to compute the final result.
922 std::map<std::pair<Value*,Value*>, SelectInst*> InsertedSelects;
923 for (succ_iterator SI = succ_begin(BB1), E = succ_end(BB1); SI != E; ++SI) {
924 PHINode *PN;
925 for (BasicBlock::iterator BBI = SI->begin();
Chris Lattner0f535c62004-11-30 07:47:34 +0000926 (PN = dyn_cast<PHINode>(BBI)); ++BBI) {
Chris Lattner37dc9382004-11-30 00:29:14 +0000927 Value *BB1V = PN->getIncomingValueForBlock(BB1);
928 Value *BB2V = PN->getIncomingValueForBlock(BB2);
Chris Lattner9a2b72a2010-12-13 01:47:07 +0000929 if (BB1V == BB2V) continue;
930
931 // These values do not agree. Insert a select instruction before NT
932 // that determines the right value.
933 SelectInst *&SI = InsertedSelects[std::make_pair(BB1V, BB2V)];
Devang Pateld3a17882011-05-19 20:52:46 +0000934 if (SI == 0)
935 SI = cast<SelectInst>
936 (Builder.CreateSelect(BI->getCondition(), BB1V, BB2V,
937 BB1V->getName()+"."+BB2V->getName()));
938
Chris Lattner9a2b72a2010-12-13 01:47:07 +0000939 // Make the PHI node use the select for all incoming values for BB1/BB2
940 for (unsigned i = 0, e = PN->getNumIncomingValues(); i != e; ++i)
941 if (PN->getIncomingBlock(i) == BB1 || PN->getIncomingBlock(i) == BB2)
942 PN->setIncomingValue(i, SI);
Chris Lattner37dc9382004-11-30 00:29:14 +0000943 }
944 }
945
946 // Update any PHI nodes in our new successors.
947 for (succ_iterator SI = succ_begin(BB1), E = succ_end(BB1); SI != E; ++SI)
948 AddPredecessorToBlock(*SI, BIParent, BB1);
Misha Brukmanfd939082005-04-21 23:48:37 +0000949
Eli Friedman080efb82008-12-16 20:54:32 +0000950 EraseTerminatorInstAndDCECond(BI);
Chris Lattner37dc9382004-11-30 00:29:14 +0000951 return true;
952}
953
Evan Cheng4d09efd2008-06-07 08:52:29 +0000954/// SpeculativelyExecuteBB - Given a conditional branch that goes to BB1
955/// and an BB2 and the only successor of BB1 is BB2, hoist simple code
956/// (for now, restricted to a single instruction that's side effect free) from
957/// the BB1 into the branch block to speculatively execute it.
Dan Gohman3b205172012-01-05 23:58:56 +0000958///
959/// Turn
960/// BB:
961/// %t1 = icmp
962/// br i1 %t1, label %BB1, label %BB2
963/// BB1:
964/// %t3 = add %t2, c
965/// br label BB2
966/// BB2:
967/// =>
968/// BB:
969/// %t1 = icmp
970/// %t4 = add %t2, c
971/// %t3 = select i1 %t1, %t2, %t3
Rafael Espindola216dde92011-05-19 02:26:30 +0000972static bool SpeculativelyExecuteBB(BranchInst *BI, BasicBlock *BB1) {
Evan Cheng4d09efd2008-06-07 08:52:29 +0000973 // Only speculatively execution a single instruction (not counting the
974 // terminator) for now.
Devang Patel06b1e672009-03-06 06:00:17 +0000975 Instruction *HInst = NULL;
976 Instruction *Term = BB1->getTerminator();
977 for (BasicBlock::iterator BBI = BB1->begin(), BBE = BB1->end();
978 BBI != BBE; ++BBI) {
979 Instruction *I = BBI;
980 // Skip debug info.
Chris Lattner9a2b72a2010-12-13 01:47:07 +0000981 if (isa<DbgInfoIntrinsic>(I)) continue;
982 if (I == Term) break;
Devang Patel06b1e672009-03-06 06:00:17 +0000983
Chris Lattner9a2b72a2010-12-13 01:47:07 +0000984 if (HInst)
Devang Patel06b1e672009-03-06 06:00:17 +0000985 return false;
Chris Lattner9a2b72a2010-12-13 01:47:07 +0000986 HInst = I;
Devang Patel06b1e672009-03-06 06:00:17 +0000987 }
Dan Gohman3b205172012-01-05 23:58:56 +0000988
989 BasicBlock *BIParent = BI->getParent();
990
991 // Check the instruction to be hoisted, if there is one.
992 if (HInst) {
993 // Don't hoist the instruction if it's unsafe or expensive.
994 if (!isSafeToSpeculativelyExecute(HInst))
995 return false;
996 if (ComputeSpeculationCost(HInst) > PHINodeFoldingThreshold)
997 return false;
998
999 // Do not hoist the instruction if any of its operands are defined but not
1000 // used in this BB. The transformation will prevent the operand from
1001 // being sunk into the use block.
1002 for (User::op_iterator i = HInst->op_begin(), e = HInst->op_end();
1003 i != e; ++i) {
1004 Instruction *OpI = dyn_cast<Instruction>(*i);
1005 if (OpI && OpI->getParent() == BIParent &&
1006 !OpI->mayHaveSideEffects() &&
1007 !OpI->isUsedInBasicBlock(BIParent))
1008 return false;
1009 }
1010 }
Evan Cheng4d09efd2008-06-07 08:52:29 +00001011
Evan Cheng797d9512008-06-11 19:18:20 +00001012 // Be conservative for now. FP select instruction can often be expensive.
1013 Value *BrCond = BI->getCondition();
Chris Lattner9a2b72a2010-12-13 01:47:07 +00001014 if (isa<FCmpInst>(BrCond))
Evan Cheng797d9512008-06-11 19:18:20 +00001015 return false;
1016
Evan Cheng4d09efd2008-06-07 08:52:29 +00001017 // If BB1 is actually on the false edge of the conditional branch, remember
1018 // to swap the select operands later.
1019 bool Invert = false;
1020 if (BB1 != BI->getSuccessor(0)) {
1021 assert(BB1 == BI->getSuccessor(1) && "No edge from 'if' block?");
1022 Invert = true;
1023 }
1024
Dan Gohman3b205172012-01-05 23:58:56 +00001025 // Collect interesting PHIs, and scan for hazards.
1026 SmallSetVector<std::pair<Value *, Value *>, 4> PHIs;
Chris Lattner6fe73bb2009-01-19 00:36:37 +00001027 BasicBlock *BB2 = BB1->getTerminator()->getSuccessor(0);
Dan Gohman3b205172012-01-05 23:58:56 +00001028 for (BasicBlock::iterator I = BB2->begin();
1029 PHINode *PN = dyn_cast<PHINode>(I); ++I) {
1030 Value *BB1V = PN->getIncomingValueForBlock(BB1);
1031 Value *BIParentV = PN->getIncomingValueForBlock(BIParent);
1032
1033 // Skip PHIs which are trivial.
1034 if (BB1V == BIParentV)
1035 continue;
1036
1037 // Check for saftey.
1038 if (ConstantExpr *CE = dyn_cast<ConstantExpr>(BB1V)) {
1039 // An unfolded ConstantExpr could end up getting expanded into
1040 // Instructions. Don't speculate this and another instruction at
1041 // the same time.
1042 if (HInst)
1043 return false;
1044 if (!isSafeToSpeculativelyExecute(CE))
1045 return false;
1046 if (ComputeSpeculationCost(CE) > PHINodeFoldingThreshold)
1047 return false;
1048 }
1049
1050 // Ok, we may insert a select for this PHI.
1051 PHIs.insert(std::make_pair(BB1V, BIParentV));
Evan Cheng4d09efd2008-06-07 08:52:29 +00001052 }
Dan Gohman3b205172012-01-05 23:58:56 +00001053
1054 // If there are no PHIs to process, bail early. This helps ensure idempotence
1055 // as well.
1056 if (PHIs.empty())
1057 return false;
Chris Lattner6fe73bb2009-01-19 00:36:37 +00001058
Dan Gohman3b205172012-01-05 23:58:56 +00001059 // If we get here, we can hoist the instruction and if-convert.
1060 DEBUG(dbgs() << "SPECULATIVELY EXECUTING BB" << *BB1 << "\n";);
Evan Cheng4d09efd2008-06-07 08:52:29 +00001061
Dan Gohman3b205172012-01-05 23:58:56 +00001062 // Hoist the instruction.
1063 if (HInst)
1064 BIParent->getInstList().splice(BI, BB1->getInstList(), HInst);
Evan Cheng502a4f52008-06-12 21:15:59 +00001065
Dan Gohman3b205172012-01-05 23:58:56 +00001066 // Insert selects and rewrite the PHI operands.
Devang Pateld3a17882011-05-19 20:52:46 +00001067 IRBuilder<true, NoFolder> Builder(BI);
Dan Gohman3b205172012-01-05 23:58:56 +00001068 for (unsigned i = 0, e = PHIs.size(); i != e; ++i) {
1069 Value *TrueV = PHIs[i].first;
1070 Value *FalseV = PHIs[i].second;
Evan Cheng4d09efd2008-06-07 08:52:29 +00001071
Dan Gohman3b205172012-01-05 23:58:56 +00001072 // Create a select whose true value is the speculatively executed value and
1073 // false value is the previously determined FalseV.
1074 SelectInst *SI;
1075 if (Invert)
1076 SI = cast<SelectInst>
1077 (Builder.CreateSelect(BrCond, FalseV, TrueV,
1078 FalseV->getName() + "." + TrueV->getName()));
1079 else
1080 SI = cast<SelectInst>
1081 (Builder.CreateSelect(BrCond, TrueV, FalseV,
1082 TrueV->getName() + "." + FalseV->getName()));
1083
1084 // Make the PHI node use the select for all incoming values for "then" and
1085 // "if" blocks.
1086 for (BasicBlock::iterator I = BB2->begin();
1087 PHINode *PN = dyn_cast<PHINode>(I); ++I) {
1088 unsigned BB1I = PN->getBasicBlockIndex(BB1);
1089 unsigned BIParentI = PN->getBasicBlockIndex(BIParent);
1090 Value *BB1V = PN->getIncomingValue(BB1I);
1091 Value *BIParentV = PN->getIncomingValue(BIParentI);
1092 if (TrueV == BB1V && FalseV == BIParentV) {
1093 PN->setIncomingValue(BB1I, SI);
1094 PN->setIncomingValue(BIParentI, SI);
1095 }
1096 }
Evan Cheng4d09efd2008-06-07 08:52:29 +00001097 }
1098
Evan Cheng502a4f52008-06-12 21:15:59 +00001099 ++NumSpeculations;
Evan Cheng4d09efd2008-06-07 08:52:29 +00001100 return true;
1101}
1102
Chris Lattner2e42e362005-09-20 00:43:16 +00001103/// BlockIsSimpleEnoughToThreadThrough - Return true if we can thread a branch
1104/// across this block.
1105static bool BlockIsSimpleEnoughToThreadThrough(BasicBlock *BB) {
1106 BranchInst *BI = cast<BranchInst>(BB->getTerminator());
Chris Lattnere9487f02005-09-20 01:48:40 +00001107 unsigned Size = 0;
1108
Devang Patel9200c892009-03-10 18:00:05 +00001109 for (BasicBlock::iterator BBI = BB->begin(); &*BBI != BI; ++BBI) {
Dale Johannesen8483e542009-03-12 23:18:09 +00001110 if (isa<DbgInfoIntrinsic>(BBI))
1111 continue;
Chris Lattnere9487f02005-09-20 01:48:40 +00001112 if (Size > 10) return false; // Don't clone large BB's.
Dale Johannesen8483e542009-03-12 23:18:09 +00001113 ++Size;
Chris Lattner2e42e362005-09-20 00:43:16 +00001114
Dale Johannesen8483e542009-03-12 23:18:09 +00001115 // We can only support instructions that do not define values that are
Chris Lattnere9487f02005-09-20 01:48:40 +00001116 // live outside of the current basic block.
1117 for (Value::use_iterator UI = BBI->use_begin(), E = BBI->use_end();
1118 UI != E; ++UI) {
1119 Instruction *U = cast<Instruction>(*UI);
1120 if (U->getParent() != BB || isa<PHINode>(U)) return false;
1121 }
Chris Lattner2e42e362005-09-20 00:43:16 +00001122
1123 // Looks ok, continue checking.
1124 }
Chris Lattnere9487f02005-09-20 01:48:40 +00001125
Chris Lattner2e42e362005-09-20 00:43:16 +00001126 return true;
1127}
1128
Chris Lattnereaba3a12005-09-19 23:49:37 +00001129/// FoldCondBranchOnPHI - If we have a conditional branch on a PHI node value
1130/// that is defined in the same block as the branch and if any PHI entries are
1131/// constants, thread edges corresponding to that entry to be branches to their
1132/// ultimate destination.
Chris Lattner302ba6f2010-12-14 06:17:25 +00001133static bool FoldCondBranchOnPHI(BranchInst *BI, const TargetData *TD) {
Chris Lattnereaba3a12005-09-19 23:49:37 +00001134 BasicBlock *BB = BI->getParent();
1135 PHINode *PN = dyn_cast<PHINode>(BI->getCondition());
Chris Lattner9c88d982005-09-19 23:57:04 +00001136 // NOTE: we currently cannot transform this case if the PHI node is used
1137 // outside of the block.
Chris Lattner2e42e362005-09-20 00:43:16 +00001138 if (!PN || PN->getParent() != BB || !PN->hasOneUse())
1139 return false;
Chris Lattnereaba3a12005-09-19 23:49:37 +00001140
1141 // Degenerate case of a single entry PHI.
1142 if (PN->getNumIncomingValues() == 1) {
Chris Lattner29874e02008-12-03 19:44:02 +00001143 FoldSingleEntryPHINodes(PN->getParent());
Chris Lattnereaba3a12005-09-19 23:49:37 +00001144 return true;
1145 }
1146
1147 // Now we know that this block has multiple preds and two succs.
Chris Lattner2e42e362005-09-20 00:43:16 +00001148 if (!BlockIsSimpleEnoughToThreadThrough(BB)) return false;
Chris Lattnereaba3a12005-09-19 23:49:37 +00001149
1150 // Okay, this is a simple enough basic block. See if any phi values are
1151 // constants.
Zhou Sheng6b6b6ef2007-01-11 12:24:14 +00001152 for (unsigned i = 0, e = PN->getNumIncomingValues(); i != e; ++i) {
Chris Lattner9a2b72a2010-12-13 01:47:07 +00001153 ConstantInt *CB = dyn_cast<ConstantInt>(PN->getIncomingValue(i));
1154 if (CB == 0 || !CB->getType()->isIntegerTy(1)) continue;
1155
1156 // Okay, we now know that all edges from PredBB should be revectored to
1157 // branch to RealDest.
1158 BasicBlock *PredBB = PN->getIncomingBlock(i);
1159 BasicBlock *RealDest = BI->getSuccessor(!CB->getZExtValue());
1160
1161 if (RealDest == BB) continue; // Skip self loops.
Bill Wendling6a648b82011-06-04 09:42:04 +00001162 // Skip if the predecessor's terminator is an indirect branch.
1163 if (isa<IndirectBrInst>(PredBB->getTerminator())) continue;
Chris Lattner9a2b72a2010-12-13 01:47:07 +00001164
1165 // The dest block might have PHI nodes, other predecessors and other
1166 // difficult cases. Instead of being smart about this, just insert a new
1167 // block that jumps to the destination block, effectively splitting
1168 // the edge we are about to create.
1169 BasicBlock *EdgeBB = BasicBlock::Create(BB->getContext(),
1170 RealDest->getName()+".critedge",
1171 RealDest->getParent(), RealDest);
1172 BranchInst::Create(RealDest, EdgeBB);
Chris Lattner6de0a282010-12-14 07:09:42 +00001173
1174 // Update PHI nodes.
1175 AddPredecessorToBlock(RealDest, EdgeBB, BB);
Chris Lattner9a2b72a2010-12-13 01:47:07 +00001176
1177 // BB may have instructions that are being threaded over. Clone these
1178 // instructions into EdgeBB. We know that there will be no uses of the
1179 // cloned instructions outside of EdgeBB.
1180 BasicBlock::iterator InsertPt = EdgeBB->begin();
1181 DenseMap<Value*, Value*> TranslateMap; // Track translated values.
1182 for (BasicBlock::iterator BBI = BB->begin(); &*BBI != BI; ++BBI) {
1183 if (PHINode *PN = dyn_cast<PHINode>(BBI)) {
1184 TranslateMap[PN] = PN->getIncomingValueForBlock(PredBB);
1185 continue;
1186 }
1187 // Clone the instruction.
1188 Instruction *N = BBI->clone();
1189 if (BBI->hasName()) N->setName(BBI->getName()+".c");
1190
1191 // Update operands due to translation.
1192 for (User::op_iterator i = N->op_begin(), e = N->op_end();
1193 i != e; ++i) {
1194 DenseMap<Value*, Value*>::iterator PI = TranslateMap.find(*i);
1195 if (PI != TranslateMap.end())
1196 *i = PI->second;
1197 }
1198
1199 // Check for trivial simplification.
Chris Lattner302ba6f2010-12-14 06:17:25 +00001200 if (Value *V = SimplifyInstruction(N, TD)) {
1201 TranslateMap[BBI] = V;
1202 delete N; // Instruction folded away, don't need actual inst
Chris Lattner9a2b72a2010-12-13 01:47:07 +00001203 } else {
1204 // Insert the new instruction into its new home.
1205 EdgeBB->getInstList().insert(InsertPt, N);
1206 if (!BBI->use_empty())
1207 TranslateMap[BBI] = N;
1208 }
1209 }
1210
1211 // Loop over all of the edges from PredBB to BB, changing them to branch
1212 // to EdgeBB instead.
1213 TerminatorInst *PredBBTI = PredBB->getTerminator();
1214 for (unsigned i = 0, e = PredBBTI->getNumSuccessors(); i != e; ++i)
1215 if (PredBBTI->getSuccessor(i) == BB) {
1216 BB->removePredecessor(PredBB);
1217 PredBBTI->setSuccessor(i, EdgeBB);
1218 }
Bill Wendling6a648b82011-06-04 09:42:04 +00001219
Chris Lattner9a2b72a2010-12-13 01:47:07 +00001220 // Recurse, simplifying any other constants.
Chris Lattner302ba6f2010-12-14 06:17:25 +00001221 return FoldCondBranchOnPHI(BI, TD) | true;
Zhou Sheng6b6b6ef2007-01-11 12:24:14 +00001222 }
Chris Lattnereaba3a12005-09-19 23:49:37 +00001223
1224 return false;
1225}
1226
Chris Lattnerf58c1a52005-09-23 06:39:30 +00001227/// FoldTwoEntryPHINode - Given a BB that starts with the specified two-entry
1228/// PHI node, see if we can eliminate it.
Devang Pateld3a17882011-05-19 20:52:46 +00001229static bool FoldTwoEntryPHINode(PHINode *PN, const TargetData *TD) {
Chris Lattnerf58c1a52005-09-23 06:39:30 +00001230 // Ok, this is a two entry PHI node. Check to see if this is a simple "if
1231 // statement", which has a very simple dominance structure. Basically, we
1232 // are trying to find the condition that is being branched on, which
1233 // subsequently causes this merge to happen. We really want control
1234 // dependence information for this check, but simplifycfg can't keep it up
1235 // to date, and this catches most of the cases we care about anyway.
Chris Lattnerf58c1a52005-09-23 06:39:30 +00001236 BasicBlock *BB = PN->getParent();
1237 BasicBlock *IfTrue, *IfFalse;
1238 Value *IfCond = GetIfCondition(BB, IfTrue, IfFalse);
Chris Lattner60d410d2010-12-14 08:01:53 +00001239 if (!IfCond ||
1240 // Don't bother if the branch will be constant folded trivially.
1241 isa<ConstantInt>(IfCond))
1242 return false;
Chris Lattnerf58c1a52005-09-23 06:39:30 +00001243
Chris Lattner822a8792006-11-18 19:19:36 +00001244 // Okay, we found that we can merge this two-entry phi node into a select.
1245 // Doing so would require us to fold *all* two entry phi nodes in this block.
1246 // At some point this becomes non-profitable (particularly if the target
1247 // doesn't support cmov's). Only do this transformation if there are two or
1248 // fewer PHI nodes in this block.
1249 unsigned NumPhis = 0;
1250 for (BasicBlock::iterator I = BB->begin(); isa<PHINode>(I); ++NumPhis, ++I)
1251 if (NumPhis > 2)
1252 return false;
1253
Chris Lattnerf58c1a52005-09-23 06:39:30 +00001254 // Loop over the PHI's seeing if we can promote them all to select
1255 // instructions. While we are at it, keep track of the instructions
1256 // that need to be moved to the dominating block.
Chris Lattner44da7ca2010-12-14 07:41:39 +00001257 SmallPtrSet<Instruction*, 4> AggressiveInsts;
Peter Collingbourne57808b32011-04-29 18:47:38 +00001258 unsigned MaxCostVal0 = PHINodeFoldingThreshold,
1259 MaxCostVal1 = PHINodeFoldingThreshold;
Chris Lattnerf58c1a52005-09-23 06:39:30 +00001260
Chris Lattner3aff13b2010-12-14 08:46:09 +00001261 for (BasicBlock::iterator II = BB->begin(); isa<PHINode>(II);) {
1262 PHINode *PN = cast<PHINode>(II++);
Chris Lattner07ff3532010-12-14 07:20:29 +00001263 if (Value *V = SimplifyInstruction(PN, TD)) {
1264 PN->replaceAllUsesWith(V);
Chris Lattner3aff13b2010-12-14 08:46:09 +00001265 PN->eraseFromParent();
Chris Lattner07ff3532010-12-14 07:20:29 +00001266 continue;
Chris Lattnerf58c1a52005-09-23 06:39:30 +00001267 }
Chris Lattner07ff3532010-12-14 07:20:29 +00001268
Peter Collingbournef15907f2011-04-29 18:47:31 +00001269 if (!DominatesMergePoint(PN->getIncomingValue(0), BB, &AggressiveInsts,
1270 MaxCostVal0) ||
1271 !DominatesMergePoint(PN->getIncomingValue(1), BB, &AggressiveInsts,
1272 MaxCostVal1))
Chris Lattner07ff3532010-12-14 07:20:29 +00001273 return false;
Chris Lattnerf58c1a52005-09-23 06:39:30 +00001274 }
1275
Chris Lattner44da7ca2010-12-14 07:41:39 +00001276 // If we folded the the first phi, PN dangles at this point. Refresh it. If
1277 // we ran out of PHIs then we simplified them all.
1278 PN = dyn_cast<PHINode>(BB->begin());
1279 if (PN == 0) return true;
1280
Chris Lattner3aff13b2010-12-14 08:46:09 +00001281 // Don't fold i1 branches on PHIs which contain binary operators. These can
1282 // often be turned into switches and other things.
1283 if (PN->getType()->isIntegerTy(1) &&
1284 (isa<BinaryOperator>(PN->getIncomingValue(0)) ||
1285 isa<BinaryOperator>(PN->getIncomingValue(1)) ||
1286 isa<BinaryOperator>(IfCond)))
1287 return false;
1288
Chris Lattnerf58c1a52005-09-23 06:39:30 +00001289 // If we all PHI nodes are promotable, check to make sure that all
1290 // instructions in the predecessor blocks can be promoted as well. If
1291 // not, we won't be able to get rid of the control flow, so it's not
1292 // worth promoting to select instructions.
Chris Lattner44da7ca2010-12-14 07:41:39 +00001293 BasicBlock *DomBlock = 0;
1294 BasicBlock *IfBlock1 = PN->getIncomingBlock(0);
1295 BasicBlock *IfBlock2 = PN->getIncomingBlock(1);
1296 if (cast<BranchInst>(IfBlock1->getTerminator())->isConditional()) {
1297 IfBlock1 = 0;
1298 } else {
1299 DomBlock = *pred_begin(IfBlock1);
1300 for (BasicBlock::iterator I = IfBlock1->begin();!isa<TerminatorInst>(I);++I)
Devang Patel383d7ed2009-02-03 22:12:02 +00001301 if (!AggressiveInsts.count(I) && !isa<DbgInfoIntrinsic>(I)) {
Chris Lattnerf58c1a52005-09-23 06:39:30 +00001302 // This is not an aggressive instruction that we can promote.
1303 // Because of this, we won't be able to get rid of the control
1304 // flow, so the xform is not worth it.
1305 return false;
1306 }
1307 }
1308
Chris Lattner44da7ca2010-12-14 07:41:39 +00001309 if (cast<BranchInst>(IfBlock2->getTerminator())->isConditional()) {
1310 IfBlock2 = 0;
1311 } else {
1312 DomBlock = *pred_begin(IfBlock2);
1313 for (BasicBlock::iterator I = IfBlock2->begin();!isa<TerminatorInst>(I);++I)
Devang Patel383d7ed2009-02-03 22:12:02 +00001314 if (!AggressiveInsts.count(I) && !isa<DbgInfoIntrinsic>(I)) {
Chris Lattnerf58c1a52005-09-23 06:39:30 +00001315 // This is not an aggressive instruction that we can promote.
1316 // Because of this, we won't be able to get rid of the control
1317 // flow, so the xform is not worth it.
1318 return false;
1319 }
1320 }
Chris Lattnere0b18e52010-12-14 07:23:10 +00001321
1322 DEBUG(dbgs() << "FOUND IF CONDITION! " << *IfCond << " T: "
Chris Lattner44da7ca2010-12-14 07:41:39 +00001323 << IfTrue->getName() << " F: " << IfFalse->getName() << "\n");
Chris Lattnerf58c1a52005-09-23 06:39:30 +00001324
1325 // If we can still promote the PHI nodes after this gauntlet of tests,
1326 // do all of the PHI's now.
Chris Lattner3aff13b2010-12-14 08:46:09 +00001327 Instruction *InsertPt = DomBlock->getTerminator();
Devang Pateld3a17882011-05-19 20:52:46 +00001328 IRBuilder<true, NoFolder> Builder(InsertPt);
Chris Lattner3aff13b2010-12-14 08:46:09 +00001329
Chris Lattnerf58c1a52005-09-23 06:39:30 +00001330 // Move all 'aggressive' instructions, which are defined in the
1331 // conditional parts of the if's up to the dominating block.
Chris Lattner9a2b72a2010-12-13 01:47:07 +00001332 if (IfBlock1)
Chris Lattner3aff13b2010-12-14 08:46:09 +00001333 DomBlock->getInstList().splice(InsertPt,
Chris Lattner9a2b72a2010-12-13 01:47:07 +00001334 IfBlock1->getInstList(), IfBlock1->begin(),
Chris Lattnerf58c1a52005-09-23 06:39:30 +00001335 IfBlock1->getTerminator());
Chris Lattner9a2b72a2010-12-13 01:47:07 +00001336 if (IfBlock2)
Chris Lattner3aff13b2010-12-14 08:46:09 +00001337 DomBlock->getInstList().splice(InsertPt,
Chris Lattner9a2b72a2010-12-13 01:47:07 +00001338 IfBlock2->getInstList(), IfBlock2->begin(),
Chris Lattnerf58c1a52005-09-23 06:39:30 +00001339 IfBlock2->getTerminator());
Chris Lattnerf58c1a52005-09-23 06:39:30 +00001340
1341 while (PHINode *PN = dyn_cast<PHINode>(BB->begin())) {
1342 // Change the PHI node into a select instruction.
Chris Lattner9a2b72a2010-12-13 01:47:07 +00001343 Value *TrueVal = PN->getIncomingValue(PN->getIncomingBlock(0) == IfFalse);
1344 Value *FalseVal = PN->getIncomingValue(PN->getIncomingBlock(0) == IfTrue);
Chris Lattnerf58c1a52005-09-23 06:39:30 +00001345
Devang Patelf60364d2011-05-18 18:16:44 +00001346 SelectInst *NV =
1347 cast<SelectInst>(Builder.CreateSelect(IfCond, TrueVal, FalseVal, ""));
Chris Lattner86cc4232007-02-11 01:37:51 +00001348 PN->replaceAllUsesWith(NV);
1349 NV->takeName(PN);
Chris Lattner302ba6f2010-12-14 06:17:25 +00001350 PN->eraseFromParent();
Chris Lattnerf58c1a52005-09-23 06:39:30 +00001351 }
Chris Lattner60d410d2010-12-14 08:01:53 +00001352
1353 // At this point, IfBlock1 and IfBlock2 are both empty, so our if statement
1354 // has been flattened. Change DomBlock to jump directly to our new block to
1355 // avoid other simplifycfg's kicking in on the diamond.
1356 TerminatorInst *OldTI = DomBlock->getTerminator();
Devang Patelf60364d2011-05-18 18:16:44 +00001357 Builder.SetInsertPoint(OldTI);
1358 Builder.CreateBr(BB);
Chris Lattner60d410d2010-12-14 08:01:53 +00001359 OldTI->eraseFromParent();
Chris Lattnerf58c1a52005-09-23 06:39:30 +00001360 return true;
1361}
Chris Lattnereaba3a12005-09-19 23:49:37 +00001362
Chris Lattnerc9e495c2008-04-24 00:01:19 +00001363/// SimplifyCondBranchToTwoReturns - If we found a conditional branch that goes
1364/// to two returning blocks, try to merge them together into one return,
1365/// introducing a select if the return values disagree.
Devang Patel176ec402011-05-18 21:33:11 +00001366static bool SimplifyCondBranchToTwoReturns(BranchInst *BI,
1367 IRBuilder<> &Builder) {
Chris Lattnerc9e495c2008-04-24 00:01:19 +00001368 assert(BI->isConditional() && "Must be a conditional branch");
1369 BasicBlock *TrueSucc = BI->getSuccessor(0);
1370 BasicBlock *FalseSucc = BI->getSuccessor(1);
1371 ReturnInst *TrueRet = cast<ReturnInst>(TrueSucc->getTerminator());
1372 ReturnInst *FalseRet = cast<ReturnInst>(FalseSucc->getTerminator());
1373
1374 // Check to ensure both blocks are empty (just a return) or optionally empty
1375 // with PHI nodes. If there are other instructions, merging would cause extra
1376 // computation on one path or the other.
Chris Lattner9a2b72a2010-12-13 01:47:07 +00001377 if (!TrueSucc->getFirstNonPHIOrDbg()->isTerminator())
Devang Patel2cc86a12009-02-05 00:30:42 +00001378 return false;
Chris Lattner9a2b72a2010-12-13 01:47:07 +00001379 if (!FalseSucc->getFirstNonPHIOrDbg()->isTerminator())
Devang Patel2cc86a12009-02-05 00:30:42 +00001380 return false;
Chris Lattnerc9e495c2008-04-24 00:01:19 +00001381
Devang Patel176ec402011-05-18 21:33:11 +00001382 Builder.SetInsertPoint(BI);
Chris Lattnerc9e495c2008-04-24 00:01:19 +00001383 // Okay, we found a branch that is going to two return nodes. If
1384 // there is no return value for this function, just change the
1385 // branch into a return.
1386 if (FalseRet->getNumOperands() == 0) {
1387 TrueSucc->removePredecessor(BI->getParent());
1388 FalseSucc->removePredecessor(BI->getParent());
Devang Patel176ec402011-05-18 21:33:11 +00001389 Builder.CreateRetVoid();
Eli Friedman080efb82008-12-16 20:54:32 +00001390 EraseTerminatorInstAndDCECond(BI);
Chris Lattnerc9e495c2008-04-24 00:01:19 +00001391 return true;
1392 }
1393
Dan Gohmanfc74abf2008-07-23 00:34:11 +00001394 // Otherwise, figure out what the true and false return values are
1395 // so we can insert a new select instruction.
1396 Value *TrueValue = TrueRet->getReturnValue();
1397 Value *FalseValue = FalseRet->getReturnValue();
Chris Lattnerc9e495c2008-04-24 00:01:19 +00001398
Dan Gohmanfc74abf2008-07-23 00:34:11 +00001399 // Unwrap any PHI nodes in the return blocks.
1400 if (PHINode *TVPN = dyn_cast_or_null<PHINode>(TrueValue))
1401 if (TVPN->getParent() == TrueSucc)
1402 TrueValue = TVPN->getIncomingValueForBlock(BI->getParent());
1403 if (PHINode *FVPN = dyn_cast_or_null<PHINode>(FalseValue))
1404 if (FVPN->getParent() == FalseSucc)
1405 FalseValue = FVPN->getIncomingValueForBlock(BI->getParent());
1406
1407 // In order for this transformation to be safe, we must be able to
1408 // unconditionally execute both operands to the return. This is
1409 // normally the case, but we could have a potentially-trapping
1410 // constant expression that prevents this transformation from being
1411 // safe.
1412 if (ConstantExpr *TCV = dyn_cast_or_null<ConstantExpr>(TrueValue))
1413 if (TCV->canTrap())
1414 return false;
1415 if (ConstantExpr *FCV = dyn_cast_or_null<ConstantExpr>(FalseValue))
1416 if (FCV->canTrap())
1417 return false;
1418
Chris Lattnerc9e495c2008-04-24 00:01:19 +00001419 // Okay, we collected all the mapped values and checked them for sanity, and
1420 // defined to really do this transformation. First, update the CFG.
1421 TrueSucc->removePredecessor(BI->getParent());
1422 FalseSucc->removePredecessor(BI->getParent());
1423
1424 // Insert select instructions where needed.
1425 Value *BrCond = BI->getCondition();
Dan Gohmanfc74abf2008-07-23 00:34:11 +00001426 if (TrueValue) {
Chris Lattnerc9e495c2008-04-24 00:01:19 +00001427 // Insert a select if the results differ.
Dan Gohmanfc74abf2008-07-23 00:34:11 +00001428 if (TrueValue == FalseValue || isa<UndefValue>(FalseValue)) {
1429 } else if (isa<UndefValue>(TrueValue)) {
1430 TrueValue = FalseValue;
1431 } else {
Devang Patel176ec402011-05-18 21:33:11 +00001432 TrueValue = Builder.CreateSelect(BrCond, TrueValue,
1433 FalseValue, "retval");
Chris Lattnerc9e495c2008-04-24 00:01:19 +00001434 }
Chris Lattnerc9e495c2008-04-24 00:01:19 +00001435 }
1436
Devang Patel176ec402011-05-18 21:33:11 +00001437 Value *RI = !TrueValue ?
1438 Builder.CreateRetVoid() : Builder.CreateRet(TrueValue);
1439
Daniel Dunbare317bcc2009-08-23 10:29:55 +00001440 (void) RI;
Chris Lattnerc9e495c2008-04-24 00:01:19 +00001441
David Greene89d6fd32010-01-05 01:26:52 +00001442 DEBUG(dbgs() << "\nCHANGING BRANCH TO TWO RETURNS INTO SELECT:"
Chris Lattnerbdff5482009-08-23 04:37:46 +00001443 << "\n " << *BI << "NewRet = " << *RI
1444 << "TRUEBLOCK: " << *TrueSucc << "FALSEBLOCK: "<< *FalseSucc);
Chris Lattnerc9e495c2008-04-24 00:01:19 +00001445
Eli Friedman080efb82008-12-16 20:54:32 +00001446 EraseTerminatorInstAndDCECond(BI);
1447
Chris Lattnerc9e495c2008-04-24 00:01:19 +00001448 return true;
1449}
1450
Nick Lewycky06cc66f2011-12-27 04:31:52 +00001451/// ExtractBranchMetadata - Given a conditional BranchInstruction, retrieve the
1452/// probabilities of the branch taking each edge. Fills in the two APInt
1453/// parameters and return true, or returns false if no or invalid metadata was
1454/// found.
1455static bool ExtractBranchMetadata(BranchInst *BI,
1456 APInt &ProbTrue, APInt &ProbFalse) {
1457 assert(BI->isConditional() &&
1458 "Looking for probabilities on unconditional branch?");
1459 MDNode *ProfileData = BI->getMetadata(LLVMContext::MD_prof);
Nick Lewycky91968482011-12-27 18:27:22 +00001460 if (!ProfileData || ProfileData->getNumOperands() != 3) return false;
Nick Lewycky06cc66f2011-12-27 04:31:52 +00001461 ConstantInt *CITrue = dyn_cast<ConstantInt>(ProfileData->getOperand(1));
1462 ConstantInt *CIFalse = dyn_cast<ConstantInt>(ProfileData->getOperand(2));
Nick Lewycky91968482011-12-27 18:27:22 +00001463 if (!CITrue || !CIFalse) return false;
Nick Lewycky06cc66f2011-12-27 04:31:52 +00001464 ProbTrue = CITrue->getValue();
1465 ProbFalse = CIFalse->getValue();
1466 assert(ProbTrue.getBitWidth() == 32 && ProbFalse.getBitWidth() == 32 &&
1467 "Branch probability metadata must be 32-bit integers");
1468 return true;
1469}
1470
Chris Lattnerc8fbc342011-04-11 23:24:57 +00001471/// FoldBranchToCommonDest - If this basic block is simple enough, and if a
1472/// predecessor branches to us and one of our successors, fold the block into
1473/// the predecessor and use logical operations to pick the right destination.
Dan Gohman4b35f832009-06-27 21:30:38 +00001474bool llvm::FoldBranchToCommonDest(BranchInst *BI) {
Chris Lattner093a4382008-07-13 22:23:11 +00001475 BasicBlock *BB = BI->getParent();
Devang Pateld3a17882011-05-19 20:52:46 +00001476
Chris Lattner1347e872008-07-13 21:12:01 +00001477 Instruction *Cond = dyn_cast<Instruction>(BI->getCondition());
Owen Andersone84178a2010-07-14 19:52:16 +00001478 if (Cond == 0 || (!isa<CmpInst>(Cond) && !isa<BinaryOperator>(Cond)) ||
1479 Cond->getParent() != BB || !Cond->hasOneUse())
1480 return false;
Devang Pateld4181942011-04-06 22:37:20 +00001481
Chris Lattner1347e872008-07-13 21:12:01 +00001482 // Only allow this if the condition is a simple instruction that can be
1483 // executed unconditionally. It must be in the same block as the branch, and
1484 // must be at the front of the block.
Devang Pateld0a203d2009-02-04 21:39:48 +00001485 BasicBlock::iterator FrontIt = BB->front();
Chris Lattner3c6e7462011-04-14 02:44:53 +00001486
Devang Pateld0a203d2009-02-04 21:39:48 +00001487 // Ignore dbg intrinsics.
Chris Lattner3c6e7462011-04-14 02:44:53 +00001488 while (isa<DbgInfoIntrinsic>(FrontIt)) ++FrontIt;
Nick Lewycky9d523102011-12-26 20:37:40 +00001489
Owen Andersone84178a2010-07-14 19:52:16 +00001490 // Allow a single instruction to be hoisted in addition to the compare
1491 // that feeds the branch. We later ensure that any values that _it_ uses
1492 // were also live in the predecessor, so that we don't unnecessarily create
1493 // register pressure or inhibit out-of-order execution.
1494 Instruction *BonusInst = 0;
1495 if (&*FrontIt != Cond &&
Owen Anderson2722dfa2010-07-15 16:38:22 +00001496 FrontIt->hasOneUse() && *FrontIt->use_begin() == Cond &&
Dan Gohmanf0426602011-12-14 23:49:11 +00001497 isSafeToSpeculativelyExecute(FrontIt)) {
Owen Andersone84178a2010-07-14 19:52:16 +00001498 BonusInst = &*FrontIt;
1499 ++FrontIt;
Chris Lattner3c6e7462011-04-14 02:44:53 +00001500
1501 // Ignore dbg intrinsics.
1502 while (isa<DbgInfoIntrinsic>(FrontIt)) ++FrontIt;
Devang Patel60d490c2011-04-07 23:11:25 +00001503 }
1504
Owen Andersone84178a2010-07-14 19:52:16 +00001505 // Only a single bonus inst is allowed.
1506 if (&*FrontIt != Cond)
1507 return false;
1508
Chris Lattner1347e872008-07-13 21:12:01 +00001509 // Make sure the instruction after the condition is the cond branch.
1510 BasicBlock::iterator CondIt = Cond; ++CondIt;
Chris Lattner3c6e7462011-04-14 02:44:53 +00001511
Devang Pateld0a203d2009-02-04 21:39:48 +00001512 // Ingore dbg intrinsics.
Chris Lattner3c6e7462011-04-14 02:44:53 +00001513 while (isa<DbgInfoIntrinsic>(CondIt)) ++CondIt;
1514
1515 if (&*CondIt != BI)
Chris Lattner1347e872008-07-13 21:12:01 +00001516 return false;
Chris Lattner6ff645b2009-01-19 23:03:13 +00001517
1518 // Cond is known to be a compare or binary operator. Check to make sure that
1519 // neither operand is a potentially-trapping constant expression.
1520 if (ConstantExpr *CE = dyn_cast<ConstantExpr>(Cond->getOperand(0)))
1521 if (CE->canTrap())
1522 return false;
1523 if (ConstantExpr *CE = dyn_cast<ConstantExpr>(Cond->getOperand(1)))
1524 if (CE->canTrap())
1525 return false;
1526
Chris Lattner1347e872008-07-13 21:12:01 +00001527 // Finally, don't infinitely unroll conditional loops.
1528 BasicBlock *TrueDest = BI->getSuccessor(0);
1529 BasicBlock *FalseDest = BI->getSuccessor(1);
1530 if (TrueDest == BB || FalseDest == BB)
1531 return false;
Devang Pateld4181942011-04-06 22:37:20 +00001532
Chris Lattner1347e872008-07-13 21:12:01 +00001533 for (pred_iterator PI = pred_begin(BB), E = pred_end(BB); PI != E; ++PI) {
1534 BasicBlock *PredBlock = *PI;
1535 BranchInst *PBI = dyn_cast<BranchInst>(PredBlock->getTerminator());
Chris Lattner6ff645b2009-01-19 23:03:13 +00001536
Chris Lattner093a4382008-07-13 22:23:11 +00001537 // Check that we have two conditional branches. If there is a PHI node in
1538 // the common successor, verify that the same value flows in from both
1539 // blocks.
Chris Lattner3c6e7462011-04-14 02:44:53 +00001540 if (PBI == 0 || PBI->isUnconditional() || !SafeToMergeTerminators(BI, PBI))
Chris Lattner1347e872008-07-13 21:12:01 +00001541 continue;
1542
Chris Lattner3c6e7462011-04-14 02:44:53 +00001543 // Determine if the two branches share a common destination.
1544 Instruction::BinaryOps Opc;
1545 bool InvertPredCond = false;
1546
1547 if (PBI->getSuccessor(0) == TrueDest)
1548 Opc = Instruction::Or;
1549 else if (PBI->getSuccessor(1) == FalseDest)
1550 Opc = Instruction::And;
1551 else if (PBI->getSuccessor(0) == FalseDest)
1552 Opc = Instruction::And, InvertPredCond = true;
1553 else if (PBI->getSuccessor(1) == TrueDest)
1554 Opc = Instruction::Or, InvertPredCond = true;
1555 else
1556 continue;
1557
Owen Andersone84178a2010-07-14 19:52:16 +00001558 // Ensure that any values used in the bonus instruction are also used
1559 // by the terminator of the predecessor. This means that those values
1560 // must already have been resolved, so we won't be inhibiting the
1561 // out-of-order core by speculating them earlier.
1562 if (BonusInst) {
1563 // Collect the values used by the bonus inst
1564 SmallPtrSet<Value*, 4> UsedValues;
1565 for (Instruction::op_iterator OI = BonusInst->op_begin(),
1566 OE = BonusInst->op_end(); OI != OE; ++OI) {
Nick Lewycky9d523102011-12-26 20:37:40 +00001567 Value *V = *OI;
Owen Andersone84178a2010-07-14 19:52:16 +00001568 if (!isa<Constant>(V))
1569 UsedValues.insert(V);
1570 }
1571
1572 SmallVector<std::pair<Value*, unsigned>, 4> Worklist;
1573 Worklist.push_back(std::make_pair(PBI->getOperand(0), 0));
1574
1575 // Walk up to four levels back up the use-def chain of the predecessor's
1576 // terminator to see if all those values were used. The choice of four
1577 // levels is arbitrary, to provide a compile-time-cost bound.
1578 while (!Worklist.empty()) {
1579 std::pair<Value*, unsigned> Pair = Worklist.back();
1580 Worklist.pop_back();
1581
1582 if (Pair.second >= 4) continue;
1583 UsedValues.erase(Pair.first);
1584 if (UsedValues.empty()) break;
1585
Chris Lattnerdaa02ab2010-12-13 07:00:06 +00001586 if (Instruction *I = dyn_cast<Instruction>(Pair.first)) {
Owen Andersone84178a2010-07-14 19:52:16 +00001587 for (Instruction::op_iterator OI = I->op_begin(), OE = I->op_end();
1588 OI != OE; ++OI)
1589 Worklist.push_back(std::make_pair(OI->get(), Pair.second+1));
1590 }
1591 }
1592
1593 if (!UsedValues.empty()) return false;
1594 }
Chris Lattner36989092008-07-13 21:20:19 +00001595
David Greene89d6fd32010-01-05 01:26:52 +00001596 DEBUG(dbgs() << "FOLDING BRANCH TO COMMON DEST:\n" << *PBI << *BB);
Devang Pateld3a17882011-05-19 20:52:46 +00001597 IRBuilder<> Builder(PBI);
1598
Chris Lattner36989092008-07-13 21:20:19 +00001599 // If we need to invert the condition in the pred block to match, do so now.
1600 if (InvertPredCond) {
Chris Lattnerdaa02ab2010-12-13 07:00:06 +00001601 Value *NewCond = PBI->getCondition();
1602
1603 if (NewCond->hasOneUse() && isa<CmpInst>(NewCond)) {
1604 CmpInst *CI = cast<CmpInst>(NewCond);
1605 CI->setPredicate(CI->getInversePredicate());
1606 } else {
Devang Pateld3a17882011-05-19 20:52:46 +00001607 NewCond = Builder.CreateNot(NewCond,
1608 PBI->getCondition()->getName()+".not");
Chris Lattnerdaa02ab2010-12-13 07:00:06 +00001609 }
1610
Chris Lattner1347e872008-07-13 21:12:01 +00001611 PBI->setCondition(NewCond);
Nick Lewyckyc9a1aed2011-12-26 20:54:14 +00001612 PBI->swapSuccessors();
Chris Lattner1347e872008-07-13 21:12:01 +00001613 }
Chris Lattner70087f32008-07-13 21:15:11 +00001614
Owen Andersone84178a2010-07-14 19:52:16 +00001615 // If we have a bonus inst, clone it into the predecessor block.
1616 Instruction *NewBonus = 0;
1617 if (BonusInst) {
1618 NewBonus = BonusInst->clone();
1619 PredBlock->getInstList().insert(PBI, NewBonus);
1620 NewBonus->takeName(BonusInst);
1621 BonusInst->setName(BonusInst->getName()+".old");
1622 }
1623
Chris Lattner36989092008-07-13 21:20:19 +00001624 // Clone Cond into the predecessor basic block, and or/and the
1625 // two conditions together.
Nick Lewycky67760642009-09-27 07:38:41 +00001626 Instruction *New = Cond->clone();
Owen Andersone84178a2010-07-14 19:52:16 +00001627 if (BonusInst) New->replaceUsesOfWith(BonusInst, NewBonus);
Chris Lattner36989092008-07-13 21:20:19 +00001628 PredBlock->getInstList().insert(PBI, New);
1629 New->takeName(Cond);
1630 Cond->setName(New->getName()+".old");
Chris Lattner70087f32008-07-13 21:15:11 +00001631
Devang Pateld3a17882011-05-19 20:52:46 +00001632 Instruction *NewCond =
1633 cast<Instruction>(Builder.CreateBinOp(Opc, PBI->getCondition(),
1634 New, "or.cond"));
Chris Lattner36989092008-07-13 21:20:19 +00001635 PBI->setCondition(NewCond);
1636 if (PBI->getSuccessor(0) == BB) {
1637 AddPredecessorToBlock(TrueDest, PredBlock, BB);
1638 PBI->setSuccessor(0, TrueDest);
Chris Lattner1347e872008-07-13 21:12:01 +00001639 }
Chris Lattner36989092008-07-13 21:20:19 +00001640 if (PBI->getSuccessor(1) == BB) {
1641 AddPredecessorToBlock(FalseDest, PredBlock, BB);
1642 PBI->setSuccessor(1, FalseDest);
1643 }
Devang Pateld4181942011-04-06 22:37:20 +00001644
Nick Lewycky06cc66f2011-12-27 04:31:52 +00001645 // TODO: If BB is reachable from all paths through PredBlock, then we
1646 // could replace PBI's branch probabilities with BI's.
1647
1648 // Merge probability data into PredBlock's branch.
1649 APInt A, B, C, D;
1650 if (ExtractBranchMetadata(PBI, C, D) && ExtractBranchMetadata(BI, A, B)) {
Nick Lewycky8da7ddf2011-12-28 06:57:32 +00001651 // Given IR which does:
1652 // bbA:
1653 // br i1 %x, label %bbB, label %bbC
1654 // bbB:
1655 // br i1 %y, label %bbD, label %bbC
1656 // Let's call the probability that we take the edge from %bbA to %bbB
1657 // 'a', from %bbA to %bbC, 'b', from %bbB to %bbD 'c' and from %bbB to
1658 // %bbC probability 'd'.
Nick Lewycky06cc66f2011-12-27 04:31:52 +00001659 //
Nick Lewycky8da7ddf2011-12-28 06:57:32 +00001660 // We transform the IR into:
1661 // bbA:
1662 // br i1 %z, label %bbD, label %bbC
1663 // where the probability of going to %bbD is (a*c) and going to bbC is
1664 // (b+a*d).
1665 //
1666 // Probabilities aren't stored as ratios directly. Using branch weights,
1667 // we get:
Nick Lewycky06cc66f2011-12-27 04:31:52 +00001668 // (a*c)% = A*C, (b+(a*d))% = A*D+B*C+B*D.
1669
1670 bool Overflow1 = false, Overflow2 = false, Overflow3 = false;
1671 bool Overflow4 = false, Overflow5 = false, Overflow6 = false;
1672 APInt ProbTrue = A.umul_ov(C, Overflow1);
1673
1674 APInt Tmp1 = A.umul_ov(D, Overflow2);
1675 APInt Tmp2 = B.umul_ov(C, Overflow3);
1676 APInt Tmp3 = B.umul_ov(D, Overflow4);
1677 APInt Tmp4 = Tmp1.uadd_ov(Tmp2, Overflow5);
1678 APInt ProbFalse = Tmp4.uadd_ov(Tmp3, Overflow6);
1679
1680 APInt GCD = APIntOps::GreatestCommonDivisor(ProbTrue, ProbFalse);
1681 ProbTrue = ProbTrue.udiv(GCD);
1682 ProbFalse = ProbFalse.udiv(GCD);
1683
1684 if (Overflow1 || Overflow2 || Overflow3 || Overflow4 || Overflow5 ||
1685 Overflow6) {
1686 DEBUG(dbgs() << "Overflow recomputing branch weight on: " << *PBI
1687 << "when merging with: " << *BI);
1688 PBI->setMetadata(LLVMContext::MD_prof, NULL);
1689 } else {
1690 LLVMContext &Context = BI->getContext();
1691 Value *Ops[3];
1692 Ops[0] = BI->getMetadata(LLVMContext::MD_prof)->getOperand(0);
1693 Ops[1] = ConstantInt::get(Context, ProbTrue);
1694 Ops[2] = ConstantInt::get(Context, ProbFalse);
1695 PBI->setMetadata(LLVMContext::MD_prof, MDNode::get(Context, Ops));
1696 }
1697 } else {
1698 PBI->setMetadata(LLVMContext::MD_prof, NULL);
1699 }
1700
Chris Lattner3c6e7462011-04-14 02:44:53 +00001701 // Copy any debug value intrinsics into the end of PredBlock.
1702 for (BasicBlock::iterator I = BB->begin(), E = BB->end(); I != E; ++I)
1703 if (isa<DbgInfoIntrinsic>(*I))
1704 I->clone()->insertBefore(PBI);
1705
Chris Lattner117f8cf2010-12-14 05:57:30 +00001706 return true;
Chris Lattner1347e872008-07-13 21:12:01 +00001707 }
1708 return false;
1709}
1710
Chris Lattner867661a2008-07-13 21:53:26 +00001711/// SimplifyCondBranchToCondBranch - If we have a conditional branch as a
1712/// predecessor of another block, this function tries to simplify it. We know
1713/// that PBI and BI are both conditional branches, and BI is in one of the
1714/// successor blocks of PBI - PBI branches to BI.
1715static bool SimplifyCondBranchToCondBranch(BranchInst *PBI, BranchInst *BI) {
1716 assert(PBI->isConditional() && BI->isConditional());
1717 BasicBlock *BB = BI->getParent();
Dan Gohman4ae51262009-08-12 16:23:25 +00001718
Chris Lattner867661a2008-07-13 21:53:26 +00001719 // If this block ends with a branch instruction, and if there is a
1720 // predecessor that ends on a branch of the same condition, make
1721 // this conditional branch redundant.
1722 if (PBI->getCondition() == BI->getCondition() &&
1723 PBI->getSuccessor(0) != PBI->getSuccessor(1)) {
1724 // Okay, the outcome of this conditional branch is statically
1725 // knowable. If this block had a single pred, handle specially.
1726 if (BB->getSinglePredecessor()) {
1727 // Turn this into a branch on constant.
1728 bool CondIsTrue = PBI->getSuccessor(0) == BB;
Owen Anderson1d0be152009-08-13 21:58:54 +00001729 BI->setCondition(ConstantInt::get(Type::getInt1Ty(BB->getContext()),
1730 CondIsTrue));
Chris Lattner867661a2008-07-13 21:53:26 +00001731 return true; // Nuke the branch on constant.
1732 }
1733
1734 // Otherwise, if there are multiple predecessors, insert a PHI that merges
1735 // in the constant and simplify the block result. Subsequent passes of
1736 // simplifycfg will thread the block.
1737 if (BlockIsSimpleEnoughToThreadThrough(BB)) {
Jay Foadd8b4fb42011-03-30 11:19:20 +00001738 pred_iterator PB = pred_begin(BB), PE = pred_end(BB);
Owen Anderson1d0be152009-08-13 21:58:54 +00001739 PHINode *NewPN = PHINode::Create(Type::getInt1Ty(BB->getContext()),
Jay Foad3ecfc862011-03-30 11:28:46 +00001740 std::distance(PB, PE),
Chris Lattner867661a2008-07-13 21:53:26 +00001741 BI->getCondition()->getName() + ".pr",
1742 BB->begin());
Chris Lattnereb388af2008-07-13 21:55:46 +00001743 // Okay, we're going to insert the PHI node. Since PBI is not the only
1744 // predecessor, compute the PHI'd conditional value for all of the preds.
1745 // Any predecessor where the condition is not computable we keep symbolic.
Jay Foadd8b4fb42011-03-30 11:19:20 +00001746 for (pred_iterator PI = PB; PI != PE; ++PI) {
Gabor Greif62539832010-07-12 10:59:23 +00001747 BasicBlock *P = *PI;
1748 if ((PBI = dyn_cast<BranchInst>(P->getTerminator())) &&
Chris Lattner867661a2008-07-13 21:53:26 +00001749 PBI != BI && PBI->isConditional() &&
1750 PBI->getCondition() == BI->getCondition() &&
1751 PBI->getSuccessor(0) != PBI->getSuccessor(1)) {
1752 bool CondIsTrue = PBI->getSuccessor(0) == BB;
Owen Anderson1d0be152009-08-13 21:58:54 +00001753 NewPN->addIncoming(ConstantInt::get(Type::getInt1Ty(BB->getContext()),
Gabor Greif62539832010-07-12 10:59:23 +00001754 CondIsTrue), P);
Chris Lattner867661a2008-07-13 21:53:26 +00001755 } else {
Gabor Greif62539832010-07-12 10:59:23 +00001756 NewPN->addIncoming(BI->getCondition(), P);
Chris Lattner867661a2008-07-13 21:53:26 +00001757 }
Gabor Greif62539832010-07-12 10:59:23 +00001758 }
Chris Lattner867661a2008-07-13 21:53:26 +00001759
1760 BI->setCondition(NewPN);
Chris Lattner867661a2008-07-13 21:53:26 +00001761 return true;
1762 }
1763 }
1764
1765 // If this is a conditional branch in an empty block, and if any
1766 // predecessors is a conditional branch to one of our destinations,
1767 // fold the conditions into logical ops and one cond br.
Zhou Shenga8d57fe2009-02-26 06:56:37 +00001768 BasicBlock::iterator BBI = BB->begin();
1769 // Ignore dbg intrinsics.
1770 while (isa<DbgInfoIntrinsic>(BBI))
1771 ++BBI;
1772 if (&*BBI != BI)
Chris Lattnerb8245122008-07-13 22:04:41 +00001773 return false;
Chris Lattner63bf29b2009-01-20 01:15:41 +00001774
1775
1776 if (ConstantExpr *CE = dyn_cast<ConstantExpr>(BI->getCondition()))
1777 if (CE->canTrap())
1778 return false;
Chris Lattnerb8245122008-07-13 22:04:41 +00001779
1780 int PBIOp, BIOp;
1781 if (PBI->getSuccessor(0) == BI->getSuccessor(0))
1782 PBIOp = BIOp = 0;
1783 else if (PBI->getSuccessor(0) == BI->getSuccessor(1))
1784 PBIOp = 0, BIOp = 1;
1785 else if (PBI->getSuccessor(1) == BI->getSuccessor(0))
1786 PBIOp = 1, BIOp = 0;
1787 else if (PBI->getSuccessor(1) == BI->getSuccessor(1))
1788 PBIOp = BIOp = 1;
1789 else
1790 return false;
Chris Lattner867661a2008-07-13 21:53:26 +00001791
Chris Lattnerb8245122008-07-13 22:04:41 +00001792 // Check to make sure that the other destination of this branch
1793 // isn't BB itself. If so, this is an infinite loop that will
1794 // keep getting unwound.
1795 if (PBI->getSuccessor(PBIOp) == BB)
1796 return false;
Chris Lattner867661a2008-07-13 21:53:26 +00001797
Chris Lattnerb8245122008-07-13 22:04:41 +00001798 // Do not perform this transformation if it would require
1799 // insertion of a large number of select instructions. For targets
1800 // without predication/cmovs, this is a big pessimization.
1801 BasicBlock *CommonDest = PBI->getSuccessor(PBIOp);
Chris Lattner867661a2008-07-13 21:53:26 +00001802
Chris Lattnerb8245122008-07-13 22:04:41 +00001803 unsigned NumPhis = 0;
1804 for (BasicBlock::iterator II = CommonDest->begin();
1805 isa<PHINode>(II); ++II, ++NumPhis)
1806 if (NumPhis > 2) // Disable this xform.
1807 return false;
Chris Lattner867661a2008-07-13 21:53:26 +00001808
Chris Lattnerb8245122008-07-13 22:04:41 +00001809 // Finally, if everything is ok, fold the branches to logical ops.
1810 BasicBlock *OtherDest = BI->getSuccessor(BIOp ^ 1);
1811
David Greene89d6fd32010-01-05 01:26:52 +00001812 DEBUG(dbgs() << "FOLDING BRs:" << *PBI->getParent()
Chris Lattnerbdff5482009-08-23 04:37:46 +00001813 << "AND: " << *BI->getParent());
Chris Lattnerb8245122008-07-13 22:04:41 +00001814
Chris Lattner093a4382008-07-13 22:23:11 +00001815
1816 // If OtherDest *is* BB, then BB is a basic block with a single conditional
1817 // branch in it, where one edge (OtherDest) goes back to itself but the other
1818 // exits. We don't *know* that the program avoids the infinite loop
1819 // (even though that seems likely). If we do this xform naively, we'll end up
1820 // recursively unpeeling the loop. Since we know that (after the xform is
1821 // done) that the block *is* infinite if reached, we just make it an obviously
1822 // infinite loop with no cond branch.
1823 if (OtherDest == BB) {
1824 // Insert it at the end of the function, because it's either code,
1825 // or it won't matter if it's hot. :)
Owen Anderson1d0be152009-08-13 21:58:54 +00001826 BasicBlock *InfLoopBlock = BasicBlock::Create(BB->getContext(),
1827 "infloop", BB->getParent());
Chris Lattner093a4382008-07-13 22:23:11 +00001828 BranchInst::Create(InfLoopBlock, InfLoopBlock);
1829 OtherDest = InfLoopBlock;
1830 }
1831
David Greene89d6fd32010-01-05 01:26:52 +00001832 DEBUG(dbgs() << *PBI->getParent()->getParent());
Devang Pateld3a17882011-05-19 20:52:46 +00001833
Chris Lattnerb8245122008-07-13 22:04:41 +00001834 // BI may have other predecessors. Because of this, we leave
1835 // it alone, but modify PBI.
1836
1837 // Make sure we get to CommonDest on True&True directions.
1838 Value *PBICond = PBI->getCondition();
Devang Pateld3a17882011-05-19 20:52:46 +00001839 IRBuilder<true, NoFolder> Builder(PBI);
Chris Lattnerb8245122008-07-13 22:04:41 +00001840 if (PBIOp)
Devang Pateld3a17882011-05-19 20:52:46 +00001841 PBICond = Builder.CreateNot(PBICond, PBICond->getName()+".not");
1842
Chris Lattnerb8245122008-07-13 22:04:41 +00001843 Value *BICond = BI->getCondition();
1844 if (BIOp)
Devang Pateld3a17882011-05-19 20:52:46 +00001845 BICond = Builder.CreateNot(BICond, BICond->getName()+".not");
1846
Chris Lattnerb8245122008-07-13 22:04:41 +00001847 // Merge the conditions.
Devang Pateld3a17882011-05-19 20:52:46 +00001848 Value *Cond = Builder.CreateOr(PBICond, BICond, "brmerge");
Chris Lattnerb8245122008-07-13 22:04:41 +00001849
1850 // Modify PBI to branch on the new condition to the new dests.
1851 PBI->setCondition(Cond);
1852 PBI->setSuccessor(0, CommonDest);
1853 PBI->setSuccessor(1, OtherDest);
1854
1855 // OtherDest may have phi nodes. If so, add an entry from PBI's
1856 // block that are identical to the entries for BI's block.
Chris Lattner6de0a282010-12-14 07:09:42 +00001857 AddPredecessorToBlock(OtherDest, PBI->getParent(), BB);
Chris Lattnerb8245122008-07-13 22:04:41 +00001858
1859 // We know that the CommonDest already had an edge from PBI to
1860 // it. If it has PHIs though, the PHIs may have different
1861 // entries for BB and PBI's BB. If so, insert a select to make
1862 // them agree.
Chris Lattner6de0a282010-12-14 07:09:42 +00001863 PHINode *PN;
Chris Lattnerb8245122008-07-13 22:04:41 +00001864 for (BasicBlock::iterator II = CommonDest->begin();
1865 (PN = dyn_cast<PHINode>(II)); ++II) {
1866 Value *BIV = PN->getIncomingValueForBlock(BB);
1867 unsigned PBBIdx = PN->getBasicBlockIndex(PBI->getParent());
1868 Value *PBIV = PN->getIncomingValue(PBBIdx);
1869 if (BIV != PBIV) {
1870 // Insert a select in PBI to pick the right value.
Devang Pateld3a17882011-05-19 20:52:46 +00001871 Value *NV = cast<SelectInst>
1872 (Builder.CreateSelect(PBICond, PBIV, BIV, PBIV->getName()+".mux"));
Chris Lattnerb8245122008-07-13 22:04:41 +00001873 PN->setIncomingValue(PBBIdx, NV);
Chris Lattner867661a2008-07-13 21:53:26 +00001874 }
1875 }
Chris Lattnerb8245122008-07-13 22:04:41 +00001876
David Greene89d6fd32010-01-05 01:26:52 +00001877 DEBUG(dbgs() << "INTO: " << *PBI->getParent());
1878 DEBUG(dbgs() << *PBI->getParent()->getParent());
Chris Lattnerb8245122008-07-13 22:04:41 +00001879
1880 // This basic block is probably dead. We know it has at least
1881 // one fewer predecessor.
1882 return true;
Chris Lattner867661a2008-07-13 21:53:26 +00001883}
1884
Frits van Bommel65fdded2011-01-11 12:52:11 +00001885// SimplifyTerminatorOnSelect - Simplifies a terminator by replacing it with a
1886// branch to TrueBB if Cond is true or to FalseBB if Cond is false.
1887// Takes care of updating the successors and removing the old terminator.
1888// Also makes sure not to introduce new successors by assuming that edges to
1889// non-successor TrueBBs and FalseBBs aren't reachable.
1890static bool SimplifyTerminatorOnSelect(TerminatorInst *OldTerm, Value *Cond,
1891 BasicBlock *TrueBB, BasicBlock *FalseBB){
1892 // Remove any superfluous successor edges from the CFG.
1893 // First, figure out which successors to preserve.
1894 // If TrueBB and FalseBB are equal, only try to preserve one copy of that
1895 // successor.
1896 BasicBlock *KeepEdge1 = TrueBB;
1897 BasicBlock *KeepEdge2 = TrueBB != FalseBB ? FalseBB : 0;
1898
1899 // Then remove the rest.
1900 for (unsigned I = 0, E = OldTerm->getNumSuccessors(); I != E; ++I) {
1901 BasicBlock *Succ = OldTerm->getSuccessor(I);
1902 // Make sure only to keep exactly one copy of each edge.
1903 if (Succ == KeepEdge1)
1904 KeepEdge1 = 0;
1905 else if (Succ == KeepEdge2)
1906 KeepEdge2 = 0;
1907 else
1908 Succ->removePredecessor(OldTerm->getParent());
1909 }
1910
Devang Pateld3372b82011-05-18 18:43:31 +00001911 IRBuilder<> Builder(OldTerm);
1912 Builder.SetCurrentDebugLocation(OldTerm->getDebugLoc());
1913
Frits van Bommel65fdded2011-01-11 12:52:11 +00001914 // Insert an appropriate new terminator.
1915 if ((KeepEdge1 == 0) && (KeepEdge2 == 0)) {
1916 if (TrueBB == FalseBB)
1917 // We were only looking for one successor, and it was present.
1918 // Create an unconditional branch to it.
Devang Pateld3372b82011-05-18 18:43:31 +00001919 Builder.CreateBr(TrueBB);
Frits van Bommel65fdded2011-01-11 12:52:11 +00001920 else
1921 // We found both of the successors we were looking for.
1922 // Create a conditional branch sharing the condition of the select.
Devang Pateld3372b82011-05-18 18:43:31 +00001923 Builder.CreateCondBr(Cond, TrueBB, FalseBB);
Frits van Bommel65fdded2011-01-11 12:52:11 +00001924 } else if (KeepEdge1 && (KeepEdge2 || TrueBB == FalseBB)) {
1925 // Neither of the selected blocks were successors, so this
1926 // terminator must be unreachable.
1927 new UnreachableInst(OldTerm->getContext(), OldTerm);
1928 } else {
1929 // One of the selected values was a successor, but the other wasn't.
1930 // Insert an unconditional branch to the one that was found;
1931 // the edge to the one that wasn't must be unreachable.
1932 if (KeepEdge1 == 0)
1933 // Only TrueBB was found.
Devang Pateld3372b82011-05-18 18:43:31 +00001934 Builder.CreateBr(TrueBB);
Frits van Bommel65fdded2011-01-11 12:52:11 +00001935 else
1936 // Only FalseBB was found.
Devang Pateld3372b82011-05-18 18:43:31 +00001937 Builder.CreateBr(FalseBB);
Frits van Bommel65fdded2011-01-11 12:52:11 +00001938 }
1939
1940 EraseTerminatorInstAndDCECond(OldTerm);
1941 return true;
1942}
1943
Frits van Bommelf7b2a9d2011-02-28 09:44:07 +00001944// SimplifySwitchOnSelect - Replaces
1945// (switch (select cond, X, Y)) on constant X, Y
1946// with a branch - conditional if X and Y lead to distinct BBs,
1947// unconditional otherwise.
1948static bool SimplifySwitchOnSelect(SwitchInst *SI, SelectInst *Select) {
1949 // Check for constant integer values in the select.
1950 ConstantInt *TrueVal = dyn_cast<ConstantInt>(Select->getTrueValue());
1951 ConstantInt *FalseVal = dyn_cast<ConstantInt>(Select->getFalseValue());
1952 if (!TrueVal || !FalseVal)
1953 return false;
1954
1955 // Find the relevant condition and destinations.
1956 Value *Condition = Select->getCondition();
1957 BasicBlock *TrueBB = SI->getSuccessor(SI->findCaseValue(TrueVal));
1958 BasicBlock *FalseBB = SI->getSuccessor(SI->findCaseValue(FalseVal));
1959
1960 // Perform the actual simplification.
1961 return SimplifyTerminatorOnSelect(SI, Condition, TrueBB, FalseBB);
1962}
1963
Frits van Bommel7ac40c32010-12-05 18:29:03 +00001964// SimplifyIndirectBrOnSelect - Replaces
1965// (indirectbr (select cond, blockaddress(@fn, BlockA),
1966// blockaddress(@fn, BlockB)))
1967// with
1968// (br cond, BlockA, BlockB).
1969static bool SimplifyIndirectBrOnSelect(IndirectBrInst *IBI, SelectInst *SI) {
1970 // Check that both operands of the select are block addresses.
1971 BlockAddress *TBA = dyn_cast<BlockAddress>(SI->getTrueValue());
1972 BlockAddress *FBA = dyn_cast<BlockAddress>(SI->getFalseValue());
1973 if (!TBA || !FBA)
1974 return false;
1975
1976 // Extract the actual blocks.
1977 BasicBlock *TrueBB = TBA->getBasicBlock();
1978 BasicBlock *FalseBB = FBA->getBasicBlock();
1979
Frits van Bommel65fdded2011-01-11 12:52:11 +00001980 // Perform the actual simplification.
1981 return SimplifyTerminatorOnSelect(IBI, SI->getCondition(), TrueBB, FalseBB);
Frits van Bommel7ac40c32010-12-05 18:29:03 +00001982}
1983
Chris Lattner61c77442010-12-13 03:18:54 +00001984/// TryToSimplifyUncondBranchWithICmpInIt - This is called when we find an icmp
1985/// instruction (a seteq/setne with a constant) as the only instruction in a
1986/// block that ends with an uncond branch. We are looking for a very specific
1987/// pattern that occurs when "A == 1 || A == 2 || A == 3" gets simplified. In
1988/// this case, we merge the first two "or's of icmp" into a switch, but then the
1989/// default value goes to an uncond block with a seteq in it, we get something
1990/// like:
1991///
1992/// switch i8 %A, label %DEFAULT [ i8 1, label %end i8 2, label %end ]
1993/// DEFAULT:
1994/// %tmp = icmp eq i8 %A, 92
1995/// br label %end
1996/// end:
1997/// ... = phi i1 [ true, %entry ], [ %tmp, %DEFAULT ], [ true, %entry ]
1998///
1999/// We prefer to split the edge to 'end' so that there is a true/false entry to
2000/// the PHI, merging the third icmp into the switch.
Chris Lattner302ba6f2010-12-14 06:17:25 +00002001static bool TryToSimplifyUncondBranchWithICmpInIt(ICmpInst *ICI,
Devang Patela23812c2011-05-18 18:28:48 +00002002 const TargetData *TD,
2003 IRBuilder<> &Builder) {
Chris Lattner61c77442010-12-13 03:18:54 +00002004 BasicBlock *BB = ICI->getParent();
Devang Patela23812c2011-05-18 18:28:48 +00002005
Chris Lattner61c77442010-12-13 03:18:54 +00002006 // If the block has any PHIs in it or the icmp has multiple uses, it is too
2007 // complex.
2008 if (isa<PHINode>(BB->begin()) || !ICI->hasOneUse()) return false;
2009
2010 Value *V = ICI->getOperand(0);
2011 ConstantInt *Cst = cast<ConstantInt>(ICI->getOperand(1));
2012
2013 // The pattern we're looking for is where our only predecessor is a switch on
2014 // 'V' and this block is the default case for the switch. In this case we can
2015 // fold the compared value into the switch to simplify things.
2016 BasicBlock *Pred = BB->getSinglePredecessor();
2017 if (Pred == 0 || !isa<SwitchInst>(Pred->getTerminator())) return false;
2018
2019 SwitchInst *SI = cast<SwitchInst>(Pred->getTerminator());
2020 if (SI->getCondition() != V)
2021 return false;
2022
2023 // If BB is reachable on a non-default case, then we simply know the value of
2024 // V in this block. Substitute it and constant fold the icmp instruction
2025 // away.
2026 if (SI->getDefaultDest() != BB) {
2027 ConstantInt *VVal = SI->findCaseDest(BB);
2028 assert(VVal && "Should have a unique destination value");
2029 ICI->setOperand(0, VVal);
2030
Chris Lattner302ba6f2010-12-14 06:17:25 +00002031 if (Value *V = SimplifyInstruction(ICI, TD)) {
2032 ICI->replaceAllUsesWith(V);
Chris Lattner61c77442010-12-13 03:18:54 +00002033 ICI->eraseFromParent();
2034 }
2035 // BB is now empty, so it is likely to simplify away.
2036 return SimplifyCFG(BB) | true;
2037 }
2038
Chris Lattnerabf70672010-12-13 03:43:57 +00002039 // Ok, the block is reachable from the default dest. If the constant we're
2040 // comparing exists in one of the other edges, then we can constant fold ICI
2041 // and zap it.
2042 if (SI->findCaseValue(Cst) != 0) {
2043 Value *V;
2044 if (ICI->getPredicate() == ICmpInst::ICMP_EQ)
2045 V = ConstantInt::getFalse(BB->getContext());
2046 else
2047 V = ConstantInt::getTrue(BB->getContext());
2048
2049 ICI->replaceAllUsesWith(V);
2050 ICI->eraseFromParent();
2051 // BB is now empty, so it is likely to simplify away.
2052 return SimplifyCFG(BB) | true;
2053 }
2054
Chris Lattner61c77442010-12-13 03:18:54 +00002055 // The use of the icmp has to be in the 'end' block, by the only PHI node in
2056 // the block.
2057 BasicBlock *SuccBlock = BB->getTerminator()->getSuccessor(0);
2058 PHINode *PHIUse = dyn_cast<PHINode>(ICI->use_back());
2059 if (PHIUse == 0 || PHIUse != &SuccBlock->front() ||
2060 isa<PHINode>(++BasicBlock::iterator(PHIUse)))
2061 return false;
2062
2063 // If the icmp is a SETEQ, then the default dest gets false, the new edge gets
2064 // true in the PHI.
2065 Constant *DefaultCst = ConstantInt::getTrue(BB->getContext());
2066 Constant *NewCst = ConstantInt::getFalse(BB->getContext());
2067
2068 if (ICI->getPredicate() == ICmpInst::ICMP_EQ)
2069 std::swap(DefaultCst, NewCst);
2070
2071 // Replace ICI (which is used by the PHI for the default value) with true or
2072 // false depending on if it is EQ or NE.
2073 ICI->replaceAllUsesWith(DefaultCst);
2074 ICI->eraseFromParent();
2075
2076 // Okay, the switch goes to this block on a default value. Add an edge from
2077 // the switch to the merge point on the compared value.
2078 BasicBlock *NewBB = BasicBlock::Create(BB->getContext(), "switch.edge",
2079 BB->getParent(), BB);
2080 SI->addCase(Cst, NewBB);
2081
2082 // NewBB branches to the phi block, add the uncond branch and the phi entry.
Devang Patela23812c2011-05-18 18:28:48 +00002083 Builder.SetInsertPoint(NewBB);
2084 Builder.SetCurrentDebugLocation(SI->getDebugLoc());
2085 Builder.CreateBr(SuccBlock);
Chris Lattner61c77442010-12-13 03:18:54 +00002086 PHIUse->addIncoming(NewCst, NewBB);
2087 return true;
2088}
2089
Chris Lattner97fdb892010-12-13 05:03:41 +00002090/// SimplifyBranchOnICmpChain - The specified branch is a conditional branch.
2091/// Check to see if it is branching on an or/and chain of icmp instructions, and
2092/// fold it into a switch instruction if so.
Devang Patel02dd5412011-05-18 23:18:47 +00002093static bool SimplifyBranchOnICmpChain(BranchInst *BI, const TargetData *TD,
2094 IRBuilder<> &Builder) {
Chris Lattner97fdb892010-12-13 05:03:41 +00002095 Instruction *Cond = dyn_cast<Instruction>(BI->getCondition());
2096 if (Cond == 0) return false;
2097
2098
2099 // Change br (X == 0 | X == 1), T, F into a switch instruction.
2100 // If this is a bunch of seteq's or'd together, or if it's a bunch of
2101 // 'setne's and'ed together, collect them.
2102 Value *CompVal = 0;
2103 std::vector<ConstantInt*> Values;
2104 bool TrueWhenEqual = true;
2105 Value *ExtraCase = 0;
Benjamin Kramer33828bc2011-02-07 22:37:28 +00002106 unsigned UsedICmps = 0;
Chris Lattner97fdb892010-12-13 05:03:41 +00002107
2108 if (Cond->getOpcode() == Instruction::Or) {
Benjamin Kramer33828bc2011-02-07 22:37:28 +00002109 CompVal = GatherConstantCompares(Cond, Values, ExtraCase, TD, true,
2110 UsedICmps);
Chris Lattner97fdb892010-12-13 05:03:41 +00002111 } else if (Cond->getOpcode() == Instruction::And) {
Benjamin Kramer33828bc2011-02-07 22:37:28 +00002112 CompVal = GatherConstantCompares(Cond, Values, ExtraCase, TD, false,
2113 UsedICmps);
Chris Lattner97fdb892010-12-13 05:03:41 +00002114 TrueWhenEqual = false;
2115 }
2116
2117 // If we didn't have a multiply compared value, fail.
2118 if (CompVal == 0) return false;
2119
Benjamin Kramer33828bc2011-02-07 22:37:28 +00002120 // Avoid turning single icmps into a switch.
2121 if (UsedICmps <= 1)
2122 return false;
2123
Chris Lattner97fdb892010-12-13 05:03:41 +00002124 // There might be duplicate constants in the list, which the switch
2125 // instruction can't handle, remove them now.
2126 array_pod_sort(Values.begin(), Values.end(), ConstantIntSortPredicate);
2127 Values.erase(std::unique(Values.begin(), Values.end()), Values.end());
2128
2129 // If Extra was used, we require at least two switch values to do the
2130 // transformation. A switch with one value is just an cond branch.
2131 if (ExtraCase && Values.size() < 2) return false;
2132
2133 // Figure out which block is which destination.
2134 BasicBlock *DefaultBB = BI->getSuccessor(1);
2135 BasicBlock *EdgeBB = BI->getSuccessor(0);
2136 if (!TrueWhenEqual) std::swap(DefaultBB, EdgeBB);
2137
2138 BasicBlock *BB = BI->getParent();
2139
Chris Lattner302ba6f2010-12-14 06:17:25 +00002140 DEBUG(dbgs() << "Converting 'icmp' chain with " << Values.size()
Chris Lattner117f8cf2010-12-14 05:57:30 +00002141 << " cases into SWITCH. BB is:\n" << *BB);
2142
Chris Lattner97fdb892010-12-13 05:03:41 +00002143 // If there are any extra values that couldn't be folded into the switch
2144 // then we evaluate them with an explicit branch first. Split the block
2145 // right before the condbr to handle it.
2146 if (ExtraCase) {
2147 BasicBlock *NewBB = BB->splitBasicBlock(BI, "switch.early.test");
2148 // Remove the uncond branch added to the old block.
2149 TerminatorInst *OldTI = BB->getTerminator();
Devang Patel02dd5412011-05-18 23:18:47 +00002150 Builder.SetInsertPoint(OldTI);
2151
Chris Lattner117f8cf2010-12-14 05:57:30 +00002152 if (TrueWhenEqual)
Devang Patel02dd5412011-05-18 23:18:47 +00002153 Builder.CreateCondBr(ExtraCase, EdgeBB, NewBB);
Chris Lattner117f8cf2010-12-14 05:57:30 +00002154 else
Devang Patel02dd5412011-05-18 23:18:47 +00002155 Builder.CreateCondBr(ExtraCase, NewBB, EdgeBB);
Chris Lattner117f8cf2010-12-14 05:57:30 +00002156
Chris Lattner97fdb892010-12-13 05:03:41 +00002157 OldTI->eraseFromParent();
Chris Lattner97bd89e2010-12-13 05:34:18 +00002158
2159 // If there are PHI nodes in EdgeBB, then we need to add a new entry to them
2160 // for the edge we just added.
Chris Lattner6de0a282010-12-14 07:09:42 +00002161 AddPredecessorToBlock(EdgeBB, BB, NewBB);
Chris Lattner302ba6f2010-12-14 06:17:25 +00002162
2163 DEBUG(dbgs() << " ** 'icmp' chain unhandled condition: " << *ExtraCase
2164 << "\nEXTRABB = " << *BB);
Chris Lattner97fdb892010-12-13 05:03:41 +00002165 BB = NewBB;
2166 }
Devang Patel02dd5412011-05-18 23:18:47 +00002167
2168 Builder.SetInsertPoint(BI);
Chris Lattner97fdb892010-12-13 05:03:41 +00002169 // Convert pointer to int before we switch.
2170 if (CompVal->getType()->isPointerTy()) {
2171 assert(TD && "Cannot switch on pointer without TargetData");
Devang Patel02dd5412011-05-18 23:18:47 +00002172 CompVal = Builder.CreatePtrToInt(CompVal,
2173 TD->getIntPtrType(CompVal->getContext()),
2174 "magicptr");
Chris Lattner97fdb892010-12-13 05:03:41 +00002175 }
2176
2177 // Create the new switch instruction now.
Devang Patel02dd5412011-05-18 23:18:47 +00002178 SwitchInst *New = Builder.CreateSwitch(CompVal, DefaultBB, Values.size());
Devang Pateld80e8ed2011-05-17 23:29:05 +00002179
Chris Lattner97fdb892010-12-13 05:03:41 +00002180 // Add all of the 'cases' to the switch instruction.
2181 for (unsigned i = 0, e = Values.size(); i != e; ++i)
2182 New->addCase(Values[i], EdgeBB);
2183
2184 // We added edges from PI to the EdgeBB. As such, if there were any
2185 // PHI nodes in EdgeBB, they need entries to be added corresponding to
2186 // the number of edges added.
2187 for (BasicBlock::iterator BBI = EdgeBB->begin();
2188 isa<PHINode>(BBI); ++BBI) {
2189 PHINode *PN = cast<PHINode>(BBI);
2190 Value *InVal = PN->getIncomingValueForBlock(BB);
2191 for (unsigned i = 0, e = Values.size()-1; i != e; ++i)
2192 PN->addIncoming(InVal, BB);
2193 }
2194
2195 // Erase the old branch instruction.
2196 EraseTerminatorInstAndDCECond(BI);
Chris Lattner117f8cf2010-12-14 05:57:30 +00002197
Chris Lattner302ba6f2010-12-14 06:17:25 +00002198 DEBUG(dbgs() << " ** 'icmp' chain result is:\n" << *BB << '\n');
Chris Lattner97fdb892010-12-13 05:03:41 +00002199 return true;
2200}
2201
Duncan Sandsad99ef82011-09-05 12:57:57 +00002202bool SimplifyCFGOpt::SimplifyResume(ResumeInst *RI, IRBuilder<> &Builder) {
2203 // If this is a trivial landing pad that just continues unwinding the caught
2204 // exception then zap the landing pad, turning its invokes into calls.
2205 BasicBlock *BB = RI->getParent();
2206 LandingPadInst *LPInst = dyn_cast<LandingPadInst>(BB->getFirstNonPHI());
2207 if (RI->getValue() != LPInst)
2208 // Not a landing pad, or the resume is not unwinding the exception that
2209 // caused control to branch here.
2210 return false;
2211
2212 // Check that there are no other instructions except for debug intrinsics.
2213 BasicBlock::iterator I = LPInst, E = RI;
2214 while (++I != E)
2215 if (!isa<DbgInfoIntrinsic>(I))
2216 return false;
2217
2218 // Turn all invokes that unwind here into calls and delete the basic block.
2219 for (pred_iterator PI = pred_begin(BB), PE = pred_end(BB); PI != PE;) {
2220 InvokeInst *II = cast<InvokeInst>((*PI++)->getTerminator());
2221 SmallVector<Value*, 8> Args(II->op_begin(), II->op_end() - 3);
2222 // Insert a call instruction before the invoke.
2223 CallInst *Call = CallInst::Create(II->getCalledValue(), Args, "", II);
2224 Call->takeName(II);
2225 Call->setCallingConv(II->getCallingConv());
2226 Call->setAttributes(II->getAttributes());
2227 Call->setDebugLoc(II->getDebugLoc());
2228
2229 // Anything that used the value produced by the invoke instruction now uses
2230 // the value produced by the call instruction. Note that we do this even
2231 // for void functions and calls with no uses so that the callgraph edge is
2232 // updated.
2233 II->replaceAllUsesWith(Call);
2234 BB->removePredecessor(II->getParent());
2235
2236 // Insert a branch to the normal destination right before the invoke.
2237 BranchInst::Create(II->getNormalDest(), II);
2238
2239 // Finally, delete the invoke instruction!
2240 II->eraseFromParent();
2241 }
2242
2243 // The landingpad is now unreachable. Zap it.
2244 BB->eraseFromParent();
2245 return true;
2246}
2247
Devang Patel176ec402011-05-18 21:33:11 +00002248bool SimplifyCFGOpt::SimplifyReturn(ReturnInst *RI, IRBuilder<> &Builder) {
Chris Lattner3d512132010-12-13 06:25:44 +00002249 BasicBlock *BB = RI->getParent();
2250 if (!BB->getFirstNonPHIOrDbg()->isTerminator()) return false;
2251
2252 // Find predecessors that end with branches.
2253 SmallVector<BasicBlock*, 8> UncondBranchPreds;
2254 SmallVector<BranchInst*, 8> CondBranchPreds;
2255 for (pred_iterator PI = pred_begin(BB), E = pred_end(BB); PI != E; ++PI) {
2256 BasicBlock *P = *PI;
2257 TerminatorInst *PTI = P->getTerminator();
2258 if (BranchInst *BI = dyn_cast<BranchInst>(PTI)) {
2259 if (BI->isUnconditional())
2260 UncondBranchPreds.push_back(P);
2261 else
2262 CondBranchPreds.push_back(BI);
2263 }
2264 }
2265
2266 // If we found some, do the transformation!
Evan Chengc3f507f2011-01-29 04:46:23 +00002267 if (!UncondBranchPreds.empty() && DupRet) {
Chris Lattner3d512132010-12-13 06:25:44 +00002268 while (!UncondBranchPreds.empty()) {
2269 BasicBlock *Pred = UncondBranchPreds.pop_back_val();
2270 DEBUG(dbgs() << "FOLDING: " << *BB
2271 << "INTO UNCOND BRANCH PRED: " << *Pred);
Evan Chengc3f507f2011-01-29 04:46:23 +00002272 (void)FoldReturnIntoUncondBranch(RI, BB, Pred);
Chris Lattner3d512132010-12-13 06:25:44 +00002273 }
2274
2275 // If we eliminated all predecessors of the block, delete the block now.
2276 if (pred_begin(BB) == pred_end(BB))
2277 // We know there are no successors, so just nuke the block.
2278 BB->eraseFromParent();
2279
2280 return true;
2281 }
2282
2283 // Check out all of the conditional branches going to this return
2284 // instruction. If any of them just select between returns, change the
2285 // branch itself into a select/return pair.
2286 while (!CondBranchPreds.empty()) {
2287 BranchInst *BI = CondBranchPreds.pop_back_val();
2288
2289 // Check to see if the non-BB successor is also a return block.
2290 if (isa<ReturnInst>(BI->getSuccessor(0)->getTerminator()) &&
2291 isa<ReturnInst>(BI->getSuccessor(1)->getTerminator()) &&
Devang Patel176ec402011-05-18 21:33:11 +00002292 SimplifyCondBranchToTwoReturns(BI, Builder))
Chris Lattner3d512132010-12-13 06:25:44 +00002293 return true;
2294 }
2295 return false;
2296}
2297
Devang Pateld46ba262011-05-18 20:01:18 +00002298bool SimplifyCFGOpt::SimplifyUnwind(UnwindInst *UI, IRBuilder<> &Builder) {
Chris Lattner3d512132010-12-13 06:25:44 +00002299 // Check to see if the first instruction in this block is just an unwind.
2300 // If so, replace any invoke instructions which use this as an exception
2301 // destination with call instructions.
2302 BasicBlock *BB = UI->getParent();
2303 if (!BB->getFirstNonPHIOrDbg()->isTerminator()) return false;
2304
2305 bool Changed = false;
2306 SmallVector<BasicBlock*, 8> Preds(pred_begin(BB), pred_end(BB));
2307 while (!Preds.empty()) {
2308 BasicBlock *Pred = Preds.back();
2309 InvokeInst *II = dyn_cast<InvokeInst>(Pred->getTerminator());
2310 if (II && II->getUnwindDest() == BB) {
2311 // Insert a new branch instruction before the invoke, because this
2312 // is now a fall through.
Devang Pateld46ba262011-05-18 20:01:18 +00002313 Builder.SetInsertPoint(II);
2314 BranchInst *BI = Builder.CreateBr(II->getNormalDest());
Chris Lattner3d512132010-12-13 06:25:44 +00002315 Pred->getInstList().remove(II); // Take out of symbol table
2316
2317 // Insert the call now.
2318 SmallVector<Value*,8> Args(II->op_begin(), II->op_end()-3);
Devang Pateld46ba262011-05-18 20:01:18 +00002319 Builder.SetInsertPoint(BI);
2320 CallInst *CI = Builder.CreateCall(II->getCalledValue(),
Jay Foada3efbb12011-07-15 08:37:34 +00002321 Args, II->getName());
Chris Lattner3d512132010-12-13 06:25:44 +00002322 CI->setCallingConv(II->getCallingConv());
2323 CI->setAttributes(II->getAttributes());
2324 // If the invoke produced a value, the Call now does instead.
2325 II->replaceAllUsesWith(CI);
2326 delete II;
2327 Changed = true;
2328 }
2329
2330 Preds.pop_back();
2331 }
2332
2333 // If this block is now dead (and isn't the entry block), remove it.
2334 if (pred_begin(BB) == pred_end(BB) &&
2335 BB != &BB->getParent()->getEntryBlock()) {
2336 // We know there are no successors, so just nuke the block.
2337 BB->eraseFromParent();
2338 return true;
2339 }
2340
2341 return Changed;
2342}
2343
2344bool SimplifyCFGOpt::SimplifyUnreachable(UnreachableInst *UI) {
2345 BasicBlock *BB = UI->getParent();
2346
2347 bool Changed = false;
2348
2349 // If there are any instructions immediately before the unreachable that can
2350 // be removed, do so.
2351 while (UI != BB->begin()) {
2352 BasicBlock::iterator BBI = UI;
2353 --BBI;
Eli Friedman81763882011-08-15 23:59:28 +00002354 // Do not delete instructions that can have side effects which might cause
2355 // the unreachable to not be reachable; specifically, calls and volatile
2356 // operations may have this effect.
Chris Lattner3d512132010-12-13 06:25:44 +00002357 if (isa<CallInst>(BBI) && !isa<DbgInfoIntrinsic>(BBI)) break;
Eli Friedman81763882011-08-15 23:59:28 +00002358
2359 if (BBI->mayHaveSideEffects()) {
2360 if (StoreInst *SI = dyn_cast<StoreInst>(BBI)) {
2361 if (SI->isVolatile())
2362 break;
2363 } else if (LoadInst *LI = dyn_cast<LoadInst>(BBI)) {
2364 if (LI->isVolatile())
2365 break;
2366 } else if (AtomicRMWInst *RMWI = dyn_cast<AtomicRMWInst>(BBI)) {
2367 if (RMWI->isVolatile())
2368 break;
2369 } else if (AtomicCmpXchgInst *CXI = dyn_cast<AtomicCmpXchgInst>(BBI)) {
2370 if (CXI->isVolatile())
2371 break;
2372 } else if (!isa<FenceInst>(BBI) && !isa<VAArgInst>(BBI) &&
2373 !isa<LandingPadInst>(BBI)) {
Chris Lattner3d512132010-12-13 06:25:44 +00002374 break;
Eli Friedman81763882011-08-15 23:59:28 +00002375 }
Bill Wendling23b49ba2011-08-16 20:41:17 +00002376 // Note that deleting LandingPad's here is in fact okay, although it
2377 // involves a bit of subtle reasoning. If this inst is a LandingPad,
2378 // all the predecessors of this block will be the unwind edges of Invokes,
2379 // and we can therefore guarantee this block will be erased.
Eli Friedman81763882011-08-15 23:59:28 +00002380 }
2381
Eli Friedman2adc5b62011-03-09 00:48:33 +00002382 // Delete this instruction (any uses are guaranteed to be dead)
2383 if (!BBI->use_empty())
2384 BBI->replaceAllUsesWith(UndefValue::get(BBI->getType()));
Chris Lattner302ba6f2010-12-14 06:17:25 +00002385 BBI->eraseFromParent();
Chris Lattner3d512132010-12-13 06:25:44 +00002386 Changed = true;
2387 }
2388
2389 // If the unreachable instruction is the first in the block, take a gander
2390 // at all of the predecessors of this instruction, and simplify them.
2391 if (&BB->front() != UI) return Changed;
2392
2393 SmallVector<BasicBlock*, 8> Preds(pred_begin(BB), pred_end(BB));
2394 for (unsigned i = 0, e = Preds.size(); i != e; ++i) {
2395 TerminatorInst *TI = Preds[i]->getTerminator();
Devang Patel1aa89a22011-05-19 00:09:21 +00002396 IRBuilder<> Builder(TI);
Chris Lattner3d512132010-12-13 06:25:44 +00002397 if (BranchInst *BI = dyn_cast<BranchInst>(TI)) {
2398 if (BI->isUnconditional()) {
2399 if (BI->getSuccessor(0) == BB) {
2400 new UnreachableInst(TI->getContext(), TI);
2401 TI->eraseFromParent();
2402 Changed = true;
2403 }
2404 } else {
2405 if (BI->getSuccessor(0) == BB) {
Devang Patel1aa89a22011-05-19 00:09:21 +00002406 Builder.CreateBr(BI->getSuccessor(1));
Chris Lattner3d512132010-12-13 06:25:44 +00002407 EraseTerminatorInstAndDCECond(BI);
2408 } else if (BI->getSuccessor(1) == BB) {
Devang Patel1aa89a22011-05-19 00:09:21 +00002409 Builder.CreateBr(BI->getSuccessor(0));
Chris Lattner3d512132010-12-13 06:25:44 +00002410 EraseTerminatorInstAndDCECond(BI);
2411 Changed = true;
2412 }
2413 }
2414 } else if (SwitchInst *SI = dyn_cast<SwitchInst>(TI)) {
2415 for (unsigned i = 1, e = SI->getNumCases(); i != e; ++i)
2416 if (SI->getSuccessor(i) == BB) {
2417 BB->removePredecessor(SI->getParent());
2418 SI->removeCase(i);
2419 --i; --e;
2420 Changed = true;
2421 }
2422 // If the default value is unreachable, figure out the most popular
2423 // destination and make it the default.
2424 if (SI->getSuccessor(0) == BB) {
Eli Friedmanb1a6eab2011-03-15 02:23:35 +00002425 std::map<BasicBlock*, std::pair<unsigned, unsigned> > Popularity;
2426 for (unsigned i = 1, e = SI->getNumCases(); i != e; ++i) {
Nick Lewycky9d523102011-12-26 20:37:40 +00002427 std::pair<unsigned, unsigned> &entry =
Eli Friedmanb1a6eab2011-03-15 02:23:35 +00002428 Popularity[SI->getSuccessor(i)];
2429 if (entry.first == 0) {
2430 entry.first = 1;
2431 entry.second = i;
2432 } else {
2433 entry.first++;
2434 }
2435 }
2436
Chris Lattner3d512132010-12-13 06:25:44 +00002437 // Find the most popular block.
2438 unsigned MaxPop = 0;
Eli Friedmanb1a6eab2011-03-15 02:23:35 +00002439 unsigned MaxIndex = 0;
Chris Lattner3d512132010-12-13 06:25:44 +00002440 BasicBlock *MaxBlock = 0;
Eli Friedmanb1a6eab2011-03-15 02:23:35 +00002441 for (std::map<BasicBlock*, std::pair<unsigned, unsigned> >::iterator
Chris Lattner3d512132010-12-13 06:25:44 +00002442 I = Popularity.begin(), E = Popularity.end(); I != E; ++I) {
Eli Friedmanb1a6eab2011-03-15 02:23:35 +00002443 if (I->second.first > MaxPop ||
2444 (I->second.first == MaxPop && MaxIndex > I->second.second)) {
2445 MaxPop = I->second.first;
2446 MaxIndex = I->second.second;
Chris Lattner3d512132010-12-13 06:25:44 +00002447 MaxBlock = I->first;
2448 }
2449 }
2450 if (MaxBlock) {
2451 // Make this the new default, allowing us to delete any explicit
2452 // edges to it.
2453 SI->setSuccessor(0, MaxBlock);
2454 Changed = true;
2455
2456 // If MaxBlock has phinodes in it, remove MaxPop-1 entries from
2457 // it.
2458 if (isa<PHINode>(MaxBlock->begin()))
2459 for (unsigned i = 0; i != MaxPop-1; ++i)
2460 MaxBlock->removePredecessor(SI->getParent());
2461
2462 for (unsigned i = 1, e = SI->getNumCases(); i != e; ++i)
2463 if (SI->getSuccessor(i) == MaxBlock) {
2464 SI->removeCase(i);
2465 --i; --e;
2466 }
2467 }
2468 }
2469 } else if (InvokeInst *II = dyn_cast<InvokeInst>(TI)) {
2470 if (II->getUnwindDest() == BB) {
2471 // Convert the invoke to a call instruction. This would be a good
2472 // place to note that the call does not throw though.
Devang Patel1aa89a22011-05-19 00:09:21 +00002473 BranchInst *BI = Builder.CreateBr(II->getNormalDest());
Chris Lattner3d512132010-12-13 06:25:44 +00002474 II->removeFromParent(); // Take out of symbol table
2475
2476 // Insert the call now...
2477 SmallVector<Value*, 8> Args(II->op_begin(), II->op_end()-3);
Devang Patel1aa89a22011-05-19 00:09:21 +00002478 Builder.SetInsertPoint(BI);
2479 CallInst *CI = Builder.CreateCall(II->getCalledValue(),
Jay Foada3efbb12011-07-15 08:37:34 +00002480 Args, II->getName());
Chris Lattner3d512132010-12-13 06:25:44 +00002481 CI->setCallingConv(II->getCallingConv());
2482 CI->setAttributes(II->getAttributes());
2483 // If the invoke produced a value, the call does now instead.
2484 II->replaceAllUsesWith(CI);
2485 delete II;
2486 Changed = true;
2487 }
2488 }
2489 }
2490
2491 // If this block is now dead, remove it.
2492 if (pred_begin(BB) == pred_end(BB) &&
2493 BB != &BB->getParent()->getEntryBlock()) {
2494 // We know there are no successors, so just nuke the block.
2495 BB->eraseFromParent();
2496 return true;
2497 }
2498
2499 return Changed;
2500}
2501
Benjamin Kramer56442df2011-02-02 15:56:22 +00002502/// TurnSwitchRangeIntoICmp - Turns a switch with that contains only a
2503/// integer range comparison into a sub, an icmp and a branch.
Devang Patel007349d2011-05-18 20:35:38 +00002504static bool TurnSwitchRangeIntoICmp(SwitchInst *SI, IRBuilder<> &Builder) {
Benjamin Kramer56442df2011-02-02 15:56:22 +00002505 assert(SI->getNumCases() > 2 && "Degenerate switch?");
Benjamin Kramer56442df2011-02-02 15:56:22 +00002506
Benjamin Kramer042b27f2011-02-03 22:51:41 +00002507 // Make sure all cases point to the same destination and gather the values.
2508 SmallVector<ConstantInt *, 16> Cases;
2509 Cases.push_back(SI->getCaseValue(1));
2510 for (unsigned I = 2, E = SI->getNumCases(); I != E; ++I) {
2511 if (SI->getSuccessor(I-1) != SI->getSuccessor(I))
2512 return false;
2513 Cases.push_back(SI->getCaseValue(I));
2514 }
2515 assert(Cases.size() == SI->getNumCases()-1 && "Not all cases gathered");
2516
2517 // Sort the case values, then check if they form a range we can transform.
2518 array_pod_sort(Cases.begin(), Cases.end(), ConstantIntSortPredicate);
2519 for (unsigned I = 1, E = Cases.size(); I != E; ++I) {
2520 if (Cases[I-1]->getValue() != Cases[I]->getValue()+1)
2521 return false;
2522 }
2523
2524 Constant *Offset = ConstantExpr::getNeg(Cases.back());
Benjamin Kramer56442df2011-02-02 15:56:22 +00002525 Constant *NumCases = ConstantInt::get(Offset->getType(), SI->getNumCases()-1);
2526
Benjamin Kramer33828bc2011-02-07 22:37:28 +00002527 Value *Sub = SI->getCondition();
2528 if (!Offset->isNullValue())
Devang Patel1f5812b2011-05-19 00:13:33 +00002529 Sub = Builder.CreateAdd(Sub, Offset, Sub->getName()+".off");
2530 Value *Cmp = Builder.CreateICmpULT(Sub, NumCases, "switch");
Devang Patel007349d2011-05-18 20:35:38 +00002531 Builder.CreateCondBr(Cmp, SI->getSuccessor(1), SI->getDefaultDest());
Benjamin Kramer56442df2011-02-02 15:56:22 +00002532
2533 // Prune obsolete incoming values off the successor's PHI nodes.
2534 for (BasicBlock::iterator BBI = SI->getSuccessor(1)->begin();
2535 isa<PHINode>(BBI); ++BBI) {
2536 for (unsigned I = 0, E = SI->getNumCases()-2; I != E; ++I)
2537 cast<PHINode>(BBI)->removeIncomingValue(SI->getParent());
2538 }
2539 SI->eraseFromParent();
2540
2541 return true;
2542}
Chris Lattner3d512132010-12-13 06:25:44 +00002543
Benjamin Kramer10fcfb52011-05-14 15:57:25 +00002544/// EliminateDeadSwitchCases - Compute masked bits for the condition of a switch
2545/// and use it to remove dead cases.
2546static bool EliminateDeadSwitchCases(SwitchInst *SI) {
2547 Value *Cond = SI->getCondition();
2548 unsigned Bits = cast<IntegerType>(Cond->getType())->getBitWidth();
2549 APInt KnownZero(Bits, 0), KnownOne(Bits, 0);
2550 ComputeMaskedBits(Cond, APInt::getAllOnesValue(Bits), KnownZero, KnownOne);
2551
2552 // Gather dead cases.
2553 SmallVector<ConstantInt*, 8> DeadCases;
2554 for (unsigned I = 1, E = SI->getNumCases(); I != E; ++I) {
2555 if ((SI->getCaseValue(I)->getValue() & KnownZero) != 0 ||
2556 (SI->getCaseValue(I)->getValue() & KnownOne) != KnownOne) {
2557 DeadCases.push_back(SI->getCaseValue(I));
2558 DEBUG(dbgs() << "SimplifyCFG: switch case '"
2559 << SI->getCaseValue(I)->getValue() << "' is dead.\n");
2560 }
2561 }
2562
2563 // Remove dead cases from the switch.
2564 for (unsigned I = 0, E = DeadCases.size(); I != E; ++I) {
2565 unsigned Case = SI->findCaseValue(DeadCases[I]);
2566 // Prune unused values from PHI nodes.
2567 SI->getSuccessor(Case)->removePredecessor(SI->getParent());
2568 SI->removeCase(Case);
2569 }
2570
2571 return !DeadCases.empty();
2572}
2573
Hans Wennborg448da512011-06-18 10:28:47 +00002574/// FindPHIForConditionForwarding - If BB would be eligible for simplification
2575/// by TryToSimplifyUncondBranchFromEmptyBlock (i.e. it is empty and terminated
2576/// by an unconditional branch), look at the phi node for BB in the successor
2577/// block and see if the incoming value is equal to CaseValue. If so, return
2578/// the phi node, and set PhiIndex to BB's index in the phi node.
2579static PHINode *FindPHIForConditionForwarding(ConstantInt *CaseValue,
2580 BasicBlock *BB,
2581 int *PhiIndex) {
2582 if (BB->getFirstNonPHIOrDbg() != BB->getTerminator())
2583 return NULL; // BB must be empty to be a candidate for simplification.
2584 if (!BB->getSinglePredecessor())
2585 return NULL; // BB must be dominated by the switch.
2586
2587 BranchInst *Branch = dyn_cast<BranchInst>(BB->getTerminator());
2588 if (!Branch || !Branch->isUnconditional())
2589 return NULL; // Terminator must be unconditional branch.
2590
2591 BasicBlock *Succ = Branch->getSuccessor(0);
2592
2593 BasicBlock::iterator I = Succ->begin();
2594 while (PHINode *PHI = dyn_cast<PHINode>(I++)) {
2595 int Idx = PHI->getBasicBlockIndex(BB);
2596 assert(Idx >= 0 && "PHI has no entry for predecessor?");
2597
2598 Value *InValue = PHI->getIncomingValue(Idx);
2599 if (InValue != CaseValue) continue;
2600
2601 *PhiIndex = Idx;
2602 return PHI;
2603 }
2604
2605 return NULL;
2606}
2607
2608/// ForwardSwitchConditionToPHI - Try to forward the condition of a switch
2609/// instruction to a phi node dominated by the switch, if that would mean that
2610/// some of the destination blocks of the switch can be folded away.
2611/// Returns true if a change is made.
2612static bool ForwardSwitchConditionToPHI(SwitchInst *SI) {
2613 typedef DenseMap<PHINode*, SmallVector<int,4> > ForwardingNodesMap;
2614 ForwardingNodesMap ForwardingNodes;
2615
2616 for (unsigned I = 1; I < SI->getNumCases(); ++I) { // 0 is the default case.
2617 ConstantInt *CaseValue = SI->getCaseValue(I);
2618 BasicBlock *CaseDest = SI->getSuccessor(I);
2619
2620 int PhiIndex;
2621 PHINode *PHI = FindPHIForConditionForwarding(CaseValue, CaseDest,
2622 &PhiIndex);
2623 if (!PHI) continue;
2624
2625 ForwardingNodes[PHI].push_back(PhiIndex);
2626 }
2627
2628 bool Changed = false;
2629
2630 for (ForwardingNodesMap::iterator I = ForwardingNodes.begin(),
2631 E = ForwardingNodes.end(); I != E; ++I) {
2632 PHINode *Phi = I->first;
2633 SmallVector<int,4> &Indexes = I->second;
2634
2635 if (Indexes.size() < 2) continue;
2636
2637 for (size_t I = 0, E = Indexes.size(); I != E; ++I)
2638 Phi->setIncomingValue(Indexes[I], SI->getCondition());
2639 Changed = true;
2640 }
2641
2642 return Changed;
2643}
2644
Devang Patel007349d2011-05-18 20:35:38 +00002645bool SimplifyCFGOpt::SimplifySwitch(SwitchInst *SI, IRBuilder<> &Builder) {
Chris Lattner3d512132010-12-13 06:25:44 +00002646 // If this switch is too complex to want to look at, ignore it.
2647 if (!isValueEqualityComparison(SI))
2648 return false;
2649
2650 BasicBlock *BB = SI->getParent();
2651
2652 // If we only have one predecessor, and if it is a branch on this value,
2653 // see if that predecessor totally determines the outcome of this switch.
2654 if (BasicBlock *OnlyPred = BB->getSinglePredecessor())
Devang Patel007349d2011-05-18 20:35:38 +00002655 if (SimplifyEqualityComparisonWithOnlyPredecessor(SI, OnlyPred, Builder))
Chris Lattner021c9d32010-12-13 06:36:51 +00002656 return SimplifyCFG(BB) | true;
Frits van Bommelf7b2a9d2011-02-28 09:44:07 +00002657
2658 Value *Cond = SI->getCondition();
2659 if (SelectInst *Select = dyn_cast<SelectInst>(Cond))
2660 if (SimplifySwitchOnSelect(SI, Select))
2661 return SimplifyCFG(BB) | true;
2662
Chris Lattner3d512132010-12-13 06:25:44 +00002663 // If the block only contains the switch, see if we can fold the block
2664 // away into any preds.
2665 BasicBlock::iterator BBI = BB->begin();
2666 // Ignore dbg intrinsics.
2667 while (isa<DbgInfoIntrinsic>(BBI))
2668 ++BBI;
2669 if (SI == &*BBI)
Devang Patelb55d9242011-05-18 20:53:17 +00002670 if (FoldValueComparisonIntoPredecessors(SI, Builder))
Chris Lattner021c9d32010-12-13 06:36:51 +00002671 return SimplifyCFG(BB) | true;
Benjamin Kramer56442df2011-02-02 15:56:22 +00002672
2673 // Try to transform the switch into an icmp and a branch.
Devang Patel007349d2011-05-18 20:35:38 +00002674 if (TurnSwitchRangeIntoICmp(SI, Builder))
Benjamin Kramer56442df2011-02-02 15:56:22 +00002675 return SimplifyCFG(BB) | true;
Benjamin Kramer10fcfb52011-05-14 15:57:25 +00002676
2677 // Remove unreachable cases.
2678 if (EliminateDeadSwitchCases(SI))
2679 return SimplifyCFG(BB) | true;
2680
Hans Wennborg448da512011-06-18 10:28:47 +00002681 if (ForwardSwitchConditionToPHI(SI))
2682 return SimplifyCFG(BB) | true;
2683
Chris Lattner3d512132010-12-13 06:25:44 +00002684 return false;
2685}
2686
2687bool SimplifyCFGOpt::SimplifyIndirectBr(IndirectBrInst *IBI) {
2688 BasicBlock *BB = IBI->getParent();
2689 bool Changed = false;
2690
2691 // Eliminate redundant destinations.
2692 SmallPtrSet<Value *, 8> Succs;
2693 for (unsigned i = 0, e = IBI->getNumDestinations(); i != e; ++i) {
2694 BasicBlock *Dest = IBI->getDestination(i);
2695 if (!Dest->hasAddressTaken() || !Succs.insert(Dest)) {
2696 Dest->removePredecessor(BB);
2697 IBI->removeDestination(i);
2698 --i; --e;
2699 Changed = true;
2700 }
2701 }
2702
2703 if (IBI->getNumDestinations() == 0) {
2704 // If the indirectbr has no successors, change it to unreachable.
2705 new UnreachableInst(IBI->getContext(), IBI);
2706 EraseTerminatorInstAndDCECond(IBI);
2707 return true;
2708 }
2709
2710 if (IBI->getNumDestinations() == 1) {
2711 // If the indirectbr has one successor, change it to a direct branch.
2712 BranchInst::Create(IBI->getDestination(0), IBI);
2713 EraseTerminatorInstAndDCECond(IBI);
2714 return true;
2715 }
2716
2717 if (SelectInst *SI = dyn_cast<SelectInst>(IBI->getAddress())) {
2718 if (SimplifyIndirectBrOnSelect(IBI, SI))
2719 return SimplifyCFG(BB) | true;
2720 }
2721 return Changed;
2722}
2723
Devang Patela23812c2011-05-18 18:28:48 +00002724bool SimplifyCFGOpt::SimplifyUncondBranch(BranchInst *BI, IRBuilder<> &Builder){
Chris Lattner3d512132010-12-13 06:25:44 +00002725 BasicBlock *BB = BI->getParent();
2726
2727 // If the Terminator is the only non-phi instruction, simplify the block.
Rafael Espindola77a2c372011-06-30 20:14:24 +00002728 BasicBlock::iterator I = BB->getFirstNonPHIOrDbgOrLifetime();
Chris Lattner3d512132010-12-13 06:25:44 +00002729 if (I->isTerminator() && BB != &BB->getParent()->getEntryBlock() &&
2730 TryToSimplifyUncondBranchFromEmptyBlock(BB))
2731 return true;
2732
2733 // If the only instruction in the block is a seteq/setne comparison
2734 // against a constant, try to simplify the block.
2735 if (ICmpInst *ICI = dyn_cast<ICmpInst>(I))
2736 if (ICI->isEquality() && isa<ConstantInt>(ICI->getOperand(1))) {
2737 for (++I; isa<DbgInfoIntrinsic>(I); ++I)
2738 ;
Nick Lewycky9d523102011-12-26 20:37:40 +00002739 if (I->isTerminator() &&
2740 TryToSimplifyUncondBranchWithICmpInIt(ICI, TD, Builder))
Chris Lattner3d512132010-12-13 06:25:44 +00002741 return true;
2742 }
2743
2744 return false;
2745}
2746
2747
Devang Patel007349d2011-05-18 20:35:38 +00002748bool SimplifyCFGOpt::SimplifyCondBranch(BranchInst *BI, IRBuilder<> &Builder) {
Chris Lattner3d512132010-12-13 06:25:44 +00002749 BasicBlock *BB = BI->getParent();
2750
2751 // Conditional branch
2752 if (isValueEqualityComparison(BI)) {
2753 // If we only have one predecessor, and if it is a branch on this value,
2754 // see if that predecessor totally determines the outcome of this
2755 // switch.
2756 if (BasicBlock *OnlyPred = BB->getSinglePredecessor())
Devang Patel007349d2011-05-18 20:35:38 +00002757 if (SimplifyEqualityComparisonWithOnlyPredecessor(BI, OnlyPred, Builder))
Chris Lattner3d512132010-12-13 06:25:44 +00002758 return SimplifyCFG(BB) | true;
2759
2760 // This block must be empty, except for the setcond inst, if it exists.
2761 // Ignore dbg intrinsics.
2762 BasicBlock::iterator I = BB->begin();
2763 // Ignore dbg intrinsics.
2764 while (isa<DbgInfoIntrinsic>(I))
2765 ++I;
2766 if (&*I == BI) {
Devang Patelb55d9242011-05-18 20:53:17 +00002767 if (FoldValueComparisonIntoPredecessors(BI, Builder))
Chris Lattner3d512132010-12-13 06:25:44 +00002768 return SimplifyCFG(BB) | true;
2769 } else if (&*I == cast<Instruction>(BI->getCondition())){
2770 ++I;
2771 // Ignore dbg intrinsics.
2772 while (isa<DbgInfoIntrinsic>(I))
2773 ++I;
Devang Patelb55d9242011-05-18 20:53:17 +00002774 if (&*I == BI && FoldValueComparisonIntoPredecessors(BI, Builder))
Chris Lattner3d512132010-12-13 06:25:44 +00002775 return SimplifyCFG(BB) | true;
2776 }
2777 }
2778
2779 // Try to turn "br (X == 0 | X == 1), T, F" into a switch instruction.
Devang Patel02dd5412011-05-18 23:18:47 +00002780 if (SimplifyBranchOnICmpChain(BI, TD, Builder))
Chris Lattner3d512132010-12-13 06:25:44 +00002781 return true;
2782
Dan Gohman3b205172012-01-05 23:58:56 +00002783 // If this basic block is ONLY a compare and a branch, and if a predecessor
2784 // branches to us and one of our successors, fold the comparison into the
2785 // predecessor and use logical operations to pick the right destination.
2786 if (FoldBranchToCommonDest(BI))
2787 return SimplifyCFG(BB) | true;
2788
Chris Lattner3d512132010-12-13 06:25:44 +00002789 // We have a conditional branch to two blocks that are only reachable
2790 // from BI. We know that the condbr dominates the two blocks, so see if
2791 // there is any identical code in the "then" and "else" blocks. If so, we
2792 // can hoist it up to the branching block.
2793 if (BI->getSuccessor(0)->getSinglePredecessor() != 0) {
2794 if (BI->getSuccessor(1)->getSinglePredecessor() != 0) {
Rafael Espindola216dde92011-05-19 02:26:30 +00002795 if (HoistThenElseCodeToIf(BI))
Chris Lattner3d512132010-12-13 06:25:44 +00002796 return SimplifyCFG(BB) | true;
2797 } else {
2798 // If Successor #1 has multiple preds, we may be able to conditionally
2799 // execute Successor #0 if it branches to successor #1.
2800 TerminatorInst *Succ0TI = BI->getSuccessor(0)->getTerminator();
2801 if (Succ0TI->getNumSuccessors() == 1 &&
2802 Succ0TI->getSuccessor(0) == BI->getSuccessor(1))
Rafael Espindola216dde92011-05-19 02:26:30 +00002803 if (SpeculativelyExecuteBB(BI, BI->getSuccessor(0)))
Chris Lattner3d512132010-12-13 06:25:44 +00002804 return SimplifyCFG(BB) | true;
2805 }
2806 } else if (BI->getSuccessor(1)->getSinglePredecessor() != 0) {
2807 // If Successor #0 has multiple preds, we may be able to conditionally
2808 // execute Successor #1 if it branches to successor #0.
2809 TerminatorInst *Succ1TI = BI->getSuccessor(1)->getTerminator();
2810 if (Succ1TI->getNumSuccessors() == 1 &&
2811 Succ1TI->getSuccessor(0) == BI->getSuccessor(0))
Rafael Espindola216dde92011-05-19 02:26:30 +00002812 if (SpeculativelyExecuteBB(BI, BI->getSuccessor(1)))
Chris Lattner3d512132010-12-13 06:25:44 +00002813 return SimplifyCFG(BB) | true;
2814 }
2815
2816 // If this is a branch on a phi node in the current block, thread control
2817 // through this block if any PHI node entries are constants.
2818 if (PHINode *PN = dyn_cast<PHINode>(BI->getCondition()))
2819 if (PN->getParent() == BI->getParent())
Chris Lattner302ba6f2010-12-14 06:17:25 +00002820 if (FoldCondBranchOnPHI(BI, TD))
Chris Lattner3d512132010-12-13 06:25:44 +00002821 return SimplifyCFG(BB) | true;
2822
Chris Lattner3d512132010-12-13 06:25:44 +00002823 // Scan predecessor blocks for conditional branches.
2824 for (pred_iterator PI = pred_begin(BB), E = pred_end(BB); PI != E; ++PI)
2825 if (BranchInst *PBI = dyn_cast<BranchInst>((*PI)->getTerminator()))
2826 if (PBI != BI && PBI->isConditional())
2827 if (SimplifyCondBranchToCondBranch(PBI, BI))
2828 return SimplifyCFG(BB) | true;
2829
2830 return false;
2831}
2832
Benjamin Kramer98d6d232011-08-26 01:22:29 +00002833/// Check if passing a value to an instruction will cause undefined behavior.
2834static bool passingValueIsAlwaysUndefined(Value *V, Instruction *I) {
2835 Constant *C = dyn_cast<Constant>(V);
2836 if (!C)
2837 return false;
2838
Benjamin Kramer9bb54882011-08-26 02:25:55 +00002839 if (!I->hasOneUse()) // Only look at single-use instructions, for compile time
Benjamin Kramer98d6d232011-08-26 01:22:29 +00002840 return false;
2841
2842 if (C->isNullValue()) {
2843 Instruction *Use = I->use_back();
2844
2845 // Now make sure that there are no instructions in between that can alter
2846 // control flow (eg. calls)
2847 for (BasicBlock::iterator i = ++BasicBlock::iterator(I); &*i != Use; ++i)
Benjamin Kramer9bb54882011-08-26 02:25:55 +00002848 if (i == I->getParent()->end() || i->mayHaveSideEffects())
Benjamin Kramer98d6d232011-08-26 01:22:29 +00002849 return false;
2850
2851 // Look through GEPs. A load from a GEP derived from NULL is still undefined
2852 if (GetElementPtrInst *GEP = dyn_cast<GetElementPtrInst>(Use))
2853 if (GEP->getPointerOperand() == I)
2854 return passingValueIsAlwaysUndefined(V, GEP);
2855
2856 // Look through bitcasts.
2857 if (BitCastInst *BC = dyn_cast<BitCastInst>(Use))
2858 return passingValueIsAlwaysUndefined(V, BC);
2859
Benjamin Kramer9bb54882011-08-26 02:25:55 +00002860 // Load from null is undefined.
2861 if (LoadInst *LI = dyn_cast<LoadInst>(Use))
2862 return LI->getPointerAddressSpace() == 0;
Benjamin Kramer98d6d232011-08-26 01:22:29 +00002863
Benjamin Kramer9bb54882011-08-26 02:25:55 +00002864 // Store to null is undefined.
2865 if (StoreInst *SI = dyn_cast<StoreInst>(Use))
2866 return SI->getPointerAddressSpace() == 0 && SI->getPointerOperand() == I;
Benjamin Kramer98d6d232011-08-26 01:22:29 +00002867 }
2868 return false;
2869}
2870
2871/// If BB has an incoming value that will always trigger undefined behavior
Nick Lewycky9d523102011-12-26 20:37:40 +00002872/// (eg. null pointer dereference), remove the branch leading here.
Benjamin Kramer98d6d232011-08-26 01:22:29 +00002873static bool removeUndefIntroducingPredecessor(BasicBlock *BB) {
2874 for (BasicBlock::iterator i = BB->begin();
2875 PHINode *PHI = dyn_cast<PHINode>(i); ++i)
2876 for (unsigned i = 0, e = PHI->getNumIncomingValues(); i != e; ++i)
2877 if (passingValueIsAlwaysUndefined(PHI->getIncomingValue(i), PHI)) {
2878 TerminatorInst *T = PHI->getIncomingBlock(i)->getTerminator();
2879 IRBuilder<> Builder(T);
2880 if (BranchInst *BI = dyn_cast<BranchInst>(T)) {
2881 BB->removePredecessor(PHI->getIncomingBlock(i));
2882 // Turn uncoditional branches into unreachables and remove the dead
2883 // destination from conditional branches.
2884 if (BI->isUnconditional())
2885 Builder.CreateUnreachable();
2886 else
2887 Builder.CreateBr(BI->getSuccessor(0) == BB ? BI->getSuccessor(1) :
2888 BI->getSuccessor(0));
2889 BI->eraseFromParent();
2890 return true;
2891 }
2892 // TODO: SwitchInst.
2893 }
2894
2895 return false;
2896}
2897
Jakob Stoklund Olesen58e9ee82010-02-05 22:03:18 +00002898bool SimplifyCFGOpt::run(BasicBlock *BB) {
Chris Lattnerdc3602b2003-08-24 18:36:16 +00002899 bool Changed = false;
Chris Lattner01d1ee32002-05-21 20:50:24 +00002900
Chris Lattner302ba6f2010-12-14 06:17:25 +00002901 assert(BB && BB->getParent() && "Block not embedded in function!");
Chris Lattner01d1ee32002-05-21 20:50:24 +00002902 assert(BB->getTerminator() && "Degenerate basic block encountered!");
Chris Lattner01d1ee32002-05-21 20:50:24 +00002903
Dan Gohmane2c6d132010-08-14 00:29:42 +00002904 // Remove basic blocks that have no predecessors (except the entry block)...
2905 // or that just have themself as a predecessor. These are unreachable.
Chris Lattner302ba6f2010-12-14 06:17:25 +00002906 if ((pred_begin(BB) == pred_end(BB) &&
2907 BB != &BB->getParent()->getEntryBlock()) ||
Dan Gohmane2c6d132010-08-14 00:29:42 +00002908 BB->getSinglePredecessor() == BB) {
David Greene89d6fd32010-01-05 01:26:52 +00002909 DEBUG(dbgs() << "Removing BB: \n" << *BB);
Chris Lattner71af9b02008-12-03 06:40:52 +00002910 DeleteDeadBlock(BB);
Chris Lattner01d1ee32002-05-21 20:50:24 +00002911 return true;
2912 }
2913
Chris Lattner694e37f2003-08-17 19:41:53 +00002914 // Check to see if we can constant propagate this terminator instruction
2915 // away...
Frits van Bommel5649ba72011-05-22 16:24:18 +00002916 Changed |= ConstantFoldTerminator(BB, true);
Chris Lattner694e37f2003-08-17 19:41:53 +00002917
Dan Gohman2c635662009-10-30 22:39:04 +00002918 // Check for and eliminate duplicate PHI nodes in this block.
2919 Changed |= EliminateDuplicatePHINodes(BB);
2920
Benjamin Kramer98d6d232011-08-26 01:22:29 +00002921 // Check for and remove branches that will always cause undefined behavior.
2922 Changed |= removeUndefIntroducingPredecessor(BB);
2923
Chris Lattnerddb97a22010-12-13 05:10:48 +00002924 // Merge basic blocks into their predecessor if there is only one distinct
2925 // pred, and if there is only one distinct successor of the predecessor, and
2926 // if there are no PHI nodes.
2927 //
2928 if (MergeBlockIntoPredecessor(BB))
2929 return true;
2930
Devang Patel3e410c62011-05-18 18:01:27 +00002931 IRBuilder<> Builder(BB);
2932
Dan Gohman882d87d2008-03-11 21:53:06 +00002933 // If there is a trivial two-entry PHI node in this basic block, and we can
2934 // eliminate it, do so now.
2935 if (PHINode *PN = dyn_cast<PHINode>(BB->begin()))
2936 if (PN->getNumIncomingValues() == 2)
Devang Pateld3a17882011-05-19 20:52:46 +00002937 Changed |= FoldTwoEntryPHINode(PN, TD);
Dan Gohman882d87d2008-03-11 21:53:06 +00002938
Devang Patel007349d2011-05-18 20:35:38 +00002939 Builder.SetInsertPoint(BB->getTerminator());
Chris Lattner3d512132010-12-13 06:25:44 +00002940 if (BranchInst *BI = dyn_cast<BranchInst>(BB->getTerminator())) {
Chris Lattner021c9d32010-12-13 06:36:51 +00002941 if (BI->isUnconditional()) {
Devang Patela23812c2011-05-18 18:28:48 +00002942 if (SimplifyUncondBranch(BI, Builder)) return true;
Chris Lattner021c9d32010-12-13 06:36:51 +00002943 } else {
Devang Patel007349d2011-05-18 20:35:38 +00002944 if (SimplifyCondBranch(BI, Builder)) return true;
Chris Lattner021c9d32010-12-13 06:36:51 +00002945 }
Duncan Sandsad99ef82011-09-05 12:57:57 +00002946 } else if (ResumeInst *RI = dyn_cast<ResumeInst>(BB->getTerminator())) {
2947 if (SimplifyResume(RI, Builder)) return true;
Chris Lattner021c9d32010-12-13 06:36:51 +00002948 } else if (ReturnInst *RI = dyn_cast<ReturnInst>(BB->getTerminator())) {
Devang Patel176ec402011-05-18 21:33:11 +00002949 if (SimplifyReturn(RI, Builder)) return true;
Chris Lattner021c9d32010-12-13 06:36:51 +00002950 } else if (SwitchInst *SI = dyn_cast<SwitchInst>(BB->getTerminator())) {
Devang Patel007349d2011-05-18 20:35:38 +00002951 if (SimplifySwitch(SI, Builder)) return true;
Chris Lattner021c9d32010-12-13 06:36:51 +00002952 } else if (UnreachableInst *UI =
2953 dyn_cast<UnreachableInst>(BB->getTerminator())) {
2954 if (SimplifyUnreachable(UI)) return true;
2955 } else if (UnwindInst *UI = dyn_cast<UnwindInst>(BB->getTerminator())) {
Devang Pateld46ba262011-05-18 20:01:18 +00002956 if (SimplifyUnwind(UI, Builder)) return true;
Chris Lattner021c9d32010-12-13 06:36:51 +00002957 } else if (IndirectBrInst *IBI =
2958 dyn_cast<IndirectBrInst>(BB->getTerminator())) {
2959 if (SimplifyIndirectBr(IBI)) return true;
Chris Lattner19831ec2004-02-16 06:35:48 +00002960 }
2961
Chris Lattner694e37f2003-08-17 19:41:53 +00002962 return Changed;
Chris Lattner01d1ee32002-05-21 20:50:24 +00002963}
Jakob Stoklund Olesen58e9ee82010-02-05 22:03:18 +00002964
2965/// SimplifyCFG - This function is used to do simplification of a CFG. For
2966/// example, it adjusts branches to branches to eliminate the extra hop, it
2967/// eliminates unreachable basic blocks, and does other "peephole" optimization
2968/// of the CFG. It returns true if a modification was made.
2969///
Jakob Stoklund Olesen58e9ee82010-02-05 22:03:18 +00002970bool llvm::SimplifyCFG(BasicBlock *BB, const TargetData *TD) {
2971 return SimplifyCFGOpt(TD).run(BB);
2972}