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Chris Lattner4d1e46e2002-05-07 18:07:59 +00001//===-- BasicBlockUtils.cpp - BasicBlock Utilities -------------------------==//
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 Lattner4d1e46e2002-05-07 18:07:59 +00009//
10// This family of functions perform manipulations on basic blocks, and
11// instructions contained within basic blocks.
12//
13//===----------------------------------------------------------------------===//
14
15#include "llvm/Transforms/Utils/BasicBlockUtils.h"
Chris Lattner54b9c3b2008-04-21 01:28:02 +000016#include "llvm/Analysis/AliasAnalysis.h"
Nick Lewycky81e48042013-07-27 01:24:00 +000017#include "llvm/Analysis/CFG.h"
Chris Lattnerb5b79972011-01-11 08:13:40 +000018#include "llvm/Analysis/LoopInfo.h"
19#include "llvm/Analysis/MemoryDependenceAnalysis.h"
Chandler Carruth0b8c9a82013-01-02 11:36:10 +000020#include "llvm/IR/Constant.h"
21#include "llvm/IR/DataLayout.h"
Stephen Hines36b56882014-04-23 16:57:46 -070022#include "llvm/IR/Dominators.h"
Chandler Carruth0b8c9a82013-01-02 11:36:10 +000023#include "llvm/IR/Function.h"
24#include "llvm/IR/Instructions.h"
25#include "llvm/IR/IntrinsicInst.h"
26#include "llvm/IR/Type.h"
Stephen Hines36b56882014-04-23 16:57:46 -070027#include "llvm/IR/ValueHandle.h"
Torok Edwin7d696d82009-07-11 13:10:19 +000028#include "llvm/Support/ErrorHandling.h"
Chandler Carruthd04a8d42012-12-03 16:50:05 +000029#include "llvm/Transforms/Scalar.h"
30#include "llvm/Transforms/Utils/Local.h"
Chris Lattner4d1e46e2002-05-07 18:07:59 +000031#include <algorithm>
Chris Lattnerf7703df2004-01-09 06:12:26 +000032using namespace llvm;
Brian Gaeked0fde302003-11-11 22:41:34 +000033
Chris Lattner71af9b02008-12-03 06:40:52 +000034/// DeleteDeadBlock - Delete the specified block, which must have no
35/// predecessors.
36void llvm::DeleteDeadBlock(BasicBlock *BB) {
Chris Lattner2973a252008-12-03 07:45:15 +000037 assert((pred_begin(BB) == pred_end(BB) ||
38 // Can delete self loop.
39 BB->getSinglePredecessor() == BB) && "Block is not dead!");
Chris Lattner2b1ba242008-12-03 06:37:44 +000040 TerminatorInst *BBTerm = BB->getTerminator();
Jakub Staszake673b542013-01-14 23:16:36 +000041
Chris Lattner2b1ba242008-12-03 06:37:44 +000042 // Loop through all of our successors and make sure they know that one
43 // of their predecessors is going away.
44 for (unsigned i = 0, e = BBTerm->getNumSuccessors(); i != e; ++i)
45 BBTerm->getSuccessor(i)->removePredecessor(BB);
Jakub Staszake673b542013-01-14 23:16:36 +000046
Chris Lattner2b1ba242008-12-03 06:37:44 +000047 // Zap all the instructions in the block.
48 while (!BB->empty()) {
49 Instruction &I = BB->back();
50 // If this instruction is used, replace uses with an arbitrary value.
51 // Because control flow can't get here, we don't care what we replace the
52 // value with. Note that since this block is unreachable, and all values
53 // contained within it must dominate their uses, that all uses will
54 // eventually be removed (they are themselves dead).
55 if (!I.use_empty())
Owen Anderson9e9a0d52009-07-30 23:03:37 +000056 I.replaceAllUsesWith(UndefValue::get(I.getType()));
Chris Lattner2b1ba242008-12-03 06:37:44 +000057 BB->getInstList().pop_back();
58 }
Jakub Staszake673b542013-01-14 23:16:36 +000059
Chris Lattner2b1ba242008-12-03 06:37:44 +000060 // Zap the block!
61 BB->eraseFromParent();
Chris Lattner2b1ba242008-12-03 06:37:44 +000062}
63
Chris Lattner29874e02008-12-03 19:44:02 +000064/// FoldSingleEntryPHINodes - We know that BB has one predecessor. If there are
65/// any single-entry PHI nodes in it, fold them away. This handles the case
66/// when all entries to the PHI nodes in a block are guaranteed equal, such as
67/// when the block has exactly one predecessor.
Chris Lattnerb5b79972011-01-11 08:13:40 +000068void llvm::FoldSingleEntryPHINodes(BasicBlock *BB, Pass *P) {
69 if (!isa<PHINode>(BB->begin())) return;
Jakub Staszake673b542013-01-14 23:16:36 +000070
Chris Lattnerb5b79972011-01-11 08:13:40 +000071 AliasAnalysis *AA = 0;
72 MemoryDependenceAnalysis *MemDep = 0;
73 if (P) {
74 AA = P->getAnalysisIfAvailable<AliasAnalysis>();
75 MemDep = P->getAnalysisIfAvailable<MemoryDependenceAnalysis>();
76 }
Jakub Staszake673b542013-01-14 23:16:36 +000077
Chris Lattner29874e02008-12-03 19:44:02 +000078 while (PHINode *PN = dyn_cast<PHINode>(BB->begin())) {
79 if (PN->getIncomingValue(0) != PN)
80 PN->replaceAllUsesWith(PN->getIncomingValue(0));
81 else
Owen Anderson9e9a0d52009-07-30 23:03:37 +000082 PN->replaceAllUsesWith(UndefValue::get(PN->getType()));
Jakub Staszake673b542013-01-14 23:16:36 +000083
Chris Lattnerb5b79972011-01-11 08:13:40 +000084 if (MemDep)
85 MemDep->removeInstruction(PN); // Memdep updates AA itself.
86 else if (AA && isa<PointerType>(PN->getType()))
87 AA->deleteValue(PN);
Jakub Staszake673b542013-01-14 23:16:36 +000088
Chris Lattner29874e02008-12-03 19:44:02 +000089 PN->eraseFromParent();
90 }
91}
92
93
Dan Gohmanafc36a92009-05-02 18:29:22 +000094/// DeleteDeadPHIs - Examine each PHI in the given block and delete it if it
95/// is dead. Also recursively delete any operands that become dead as
96/// a result. This includes tracing the def-use list from the PHI to see if
Dan Gohman35738ac2009-05-04 22:30:44 +000097/// it is ultimately unused or if it reaches an unused cycle.
Benjamin Kramer8e0d1c02012-08-29 15:32:21 +000098bool llvm::DeleteDeadPHIs(BasicBlock *BB, const TargetLibraryInfo *TLI) {
Dan Gohmanafc36a92009-05-02 18:29:22 +000099 // Recursively deleting a PHI may cause multiple PHIs to be deleted
100 // or RAUW'd undef, so use an array of WeakVH for the PHIs to delete.
101 SmallVector<WeakVH, 8> PHIs;
102 for (BasicBlock::iterator I = BB->begin();
103 PHINode *PN = dyn_cast<PHINode>(I); ++I)
104 PHIs.push_back(PN);
105
Dan Gohman90fe0bd2010-01-05 15:45:31 +0000106 bool Changed = false;
Dan Gohmanafc36a92009-05-02 18:29:22 +0000107 for (unsigned i = 0, e = PHIs.size(); i != e; ++i)
108 if (PHINode *PN = dyn_cast_or_null<PHINode>(PHIs[i].operator Value*()))
Benjamin Kramer8e0d1c02012-08-29 15:32:21 +0000109 Changed |= RecursivelyDeleteDeadPHINode(PN, TLI);
Dan Gohman90fe0bd2010-01-05 15:45:31 +0000110
111 return Changed;
Dan Gohmanafc36a92009-05-02 18:29:22 +0000112}
113
Dan Gohman438b5832009-10-31 17:33:01 +0000114/// MergeBlockIntoPredecessor - Attempts to merge a block into its predecessor,
115/// if possible. The return value indicates success or failure.
Chris Lattner88202922009-11-01 04:57:33 +0000116bool llvm::MergeBlockIntoPredecessor(BasicBlock *BB, Pass *P) {
Dan Gohman1c034dc2010-08-17 17:07:02 +0000117 // Don't merge away blocks who have their address taken.
118 if (BB->hasAddressTaken()) return false;
Jakub Staszake673b542013-01-14 23:16:36 +0000119
Dan Gohman1c034dc2010-08-17 17:07:02 +0000120 // Can't merge if there are multiple predecessors, or no predecessors.
121 BasicBlock *PredBB = BB->getUniquePredecessor();
Dan Gohman438b5832009-10-31 17:33:01 +0000122 if (!PredBB) return false;
Dan Gohman1c034dc2010-08-17 17:07:02 +0000123
Dan Gohman438b5832009-10-31 17:33:01 +0000124 // Don't break self-loops.
125 if (PredBB == BB) return false;
126 // Don't break invokes.
127 if (isa<InvokeInst>(PredBB->getTerminator())) return false;
Jakub Staszake673b542013-01-14 23:16:36 +0000128
Dan Gohman438b5832009-10-31 17:33:01 +0000129 succ_iterator SI(succ_begin(PredBB)), SE(succ_end(PredBB));
Chris Lattnerdc85f8a2011-01-08 19:08:40 +0000130 BasicBlock *OnlySucc = BB;
Dan Gohman438b5832009-10-31 17:33:01 +0000131 for (; SI != SE; ++SI)
132 if (*SI != OnlySucc) {
133 OnlySucc = 0; // There are multiple distinct successors!
134 break;
135 }
Jakub Staszake673b542013-01-14 23:16:36 +0000136
Dan Gohman438b5832009-10-31 17:33:01 +0000137 // Can't merge if there are multiple successors.
138 if (!OnlySucc) return false;
Devang Patele435a5d2008-09-09 01:06:56 +0000139
Dan Gohman438b5832009-10-31 17:33:01 +0000140 // Can't merge if there is PHI loop.
141 for (BasicBlock::iterator BI = BB->begin(), BE = BB->end(); BI != BE; ++BI) {
142 if (PHINode *PN = dyn_cast<PHINode>(BI)) {
143 for (unsigned i = 0, e = PN->getNumIncomingValues(); i != e; ++i)
144 if (PN->getIncomingValue(i) == PN)
145 return false;
146 } else
147 break;
148 }
149
150 // Begin by getting rid of unneeded PHIs.
Chris Lattnerdc85f8a2011-01-08 19:08:40 +0000151 if (isa<PHINode>(BB->front()))
Chris Lattnerb5b79972011-01-11 08:13:40 +0000152 FoldSingleEntryPHINodes(BB, P);
Jakub Staszake673b542013-01-14 23:16:36 +0000153
Owen Andersonb31b06d2008-07-17 00:01:40 +0000154 // Delete the unconditional branch from the predecessor...
155 PredBB->getInstList().pop_back();
Jakub Staszake673b542013-01-14 23:16:36 +0000156
Owen Andersonb31b06d2008-07-17 00:01:40 +0000157 // Make all PHI nodes that referred to BB now refer to Pred as their
158 // source...
159 BB->replaceAllUsesWith(PredBB);
Jakub Staszake673b542013-01-14 23:16:36 +0000160
Jay Foad95c3e482011-06-23 09:09:15 +0000161 // Move all definitions in the successor to the predecessor...
162 PredBB->getInstList().splice(PredBB->end(), BB->getInstList());
Jakub Staszake673b542013-01-14 23:16:36 +0000163
Dan Gohman438b5832009-10-31 17:33:01 +0000164 // Inherit predecessors name if it exists.
Owen Anderson11f2ec82008-07-17 19:42:29 +0000165 if (!PredBB->hasName())
166 PredBB->takeName(BB);
Jakub Staszake673b542013-01-14 23:16:36 +0000167
Owen Andersonb31b06d2008-07-17 00:01:40 +0000168 // Finally, erase the old block and update dominator info.
169 if (P) {
Stephen Hines36b56882014-04-23 16:57:46 -0700170 if (DominatorTreeWrapperPass *DTWP =
171 P->getAnalysisIfAvailable<DominatorTreeWrapperPass>()) {
172 DominatorTree &DT = DTWP->getDomTree();
173 if (DomTreeNode *DTN = DT.getNode(BB)) {
174 DomTreeNode *PredDTN = DT.getNode(PredBB);
Jakob Stoklund Olesenfbbd4ab2011-01-11 22:54:38 +0000175 SmallVector<DomTreeNode*, 8> Children(DTN->begin(), DTN->end());
Craig Topper6227d5c2013-07-04 01:31:24 +0000176 for (SmallVectorImpl<DomTreeNode *>::iterator DI = Children.begin(),
Owen Andersonb31b06d2008-07-17 00:01:40 +0000177 DE = Children.end(); DI != DE; ++DI)
Stephen Hines36b56882014-04-23 16:57:46 -0700178 DT.changeImmediateDominator(*DI, PredDTN);
Owen Andersonb31b06d2008-07-17 00:01:40 +0000179
Stephen Hines36b56882014-04-23 16:57:46 -0700180 DT.eraseNode(BB);
Owen Andersonb31b06d2008-07-17 00:01:40 +0000181 }
Jakub Staszake673b542013-01-14 23:16:36 +0000182
Chris Lattnerdc85f8a2011-01-08 19:08:40 +0000183 if (LoopInfo *LI = P->getAnalysisIfAvailable<LoopInfo>())
184 LI->removeBlock(BB);
Jakub Staszake673b542013-01-14 23:16:36 +0000185
Chris Lattnerb6810992011-01-11 08:16:49 +0000186 if (MemoryDependenceAnalysis *MD =
187 P->getAnalysisIfAvailable<MemoryDependenceAnalysis>())
188 MD->invalidateCachedPredecessors();
Owen Andersonb31b06d2008-07-17 00:01:40 +0000189 }
190 }
Jakub Staszake673b542013-01-14 23:16:36 +0000191
Owen Andersonb31b06d2008-07-17 00:01:40 +0000192 BB->eraseFromParent();
Dan Gohman438b5832009-10-31 17:33:01 +0000193 return true;
Owen Andersonb31b06d2008-07-17 00:01:40 +0000194}
195
Chris Lattner0f67dd62005-04-21 16:04:49 +0000196/// ReplaceInstWithValue - Replace all uses of an instruction (specified by BI)
197/// with a value, then remove and delete the original instruction.
198///
Chris Lattnerf7703df2004-01-09 06:12:26 +0000199void llvm::ReplaceInstWithValue(BasicBlock::InstListType &BIL,
200 BasicBlock::iterator &BI, Value *V) {
Chris Lattner18961502002-06-25 16:12:52 +0000201 Instruction &I = *BI;
Chris Lattner4d1e46e2002-05-07 18:07:59 +0000202 // Replaces all of the uses of the instruction with uses of the value
Chris Lattner18961502002-06-25 16:12:52 +0000203 I.replaceAllUsesWith(V);
Chris Lattner4d1e46e2002-05-07 18:07:59 +0000204
Chris Lattner86cc4232007-02-11 01:37:51 +0000205 // Make sure to propagate a name if there is one already.
206 if (I.hasName() && !V->hasName())
207 V->takeName(&I);
Misha Brukmanfd939082005-04-21 23:48:37 +0000208
Misha Brukman5560c9d2003-08-18 14:43:39 +0000209 // Delete the unnecessary instruction now...
Chris Lattner18961502002-06-25 16:12:52 +0000210 BI = BIL.erase(BI);
Chris Lattner4d1e46e2002-05-07 18:07:59 +0000211}
212
213
Chris Lattner0f67dd62005-04-21 16:04:49 +0000214/// ReplaceInstWithInst - Replace the instruction specified by BI with the
215/// instruction specified by I. The original instruction is deleted and BI is
216/// updated to point to the new instruction.
217///
Chris Lattnerf7703df2004-01-09 06:12:26 +0000218void llvm::ReplaceInstWithInst(BasicBlock::InstListType &BIL,
219 BasicBlock::iterator &BI, Instruction *I) {
Chris Lattner4d1e46e2002-05-07 18:07:59 +0000220 assert(I->getParent() == 0 &&
221 "ReplaceInstWithInst: Instruction already inserted into basic block!");
222
223 // Insert the new instruction into the basic block...
Chris Lattner18961502002-06-25 16:12:52 +0000224 BasicBlock::iterator New = BIL.insert(BI, I);
Chris Lattner4d1e46e2002-05-07 18:07:59 +0000225
226 // Replace all uses of the old instruction, and delete it.
227 ReplaceInstWithValue(BIL, BI, I);
228
229 // Move BI back to point to the newly inserted instruction
Chris Lattner18961502002-06-25 16:12:52 +0000230 BI = New;
Chris Lattner4d1e46e2002-05-07 18:07:59 +0000231}
232
Chris Lattner0f67dd62005-04-21 16:04:49 +0000233/// ReplaceInstWithInst - Replace the instruction specified by From with the
234/// instruction specified by To.
235///
Chris Lattnerf7703df2004-01-09 06:12:26 +0000236void llvm::ReplaceInstWithInst(Instruction *From, Instruction *To) {
Chris Lattner18961502002-06-25 16:12:52 +0000237 BasicBlock::iterator BI(From);
238 ReplaceInstWithInst(From->getParent()->getInstList(), BI, To);
Chris Lattner4d1e46e2002-05-07 18:07:59 +0000239}
Chris Lattnerb0f0ef82002-07-29 22:32:08 +0000240
Jakub Staszake673b542013-01-14 23:16:36 +0000241/// SplitEdge - Split the edge connecting specified block. Pass P must
242/// not be NULL.
Bob Wilsonadb6f222010-02-16 19:49:17 +0000243BasicBlock *llvm::SplitEdge(BasicBlock *BB, BasicBlock *Succ, Pass *P) {
Bob Wilsonae23daf2010-02-16 21:06:42 +0000244 unsigned SuccNum = GetSuccessorNumber(BB, Succ);
Jakub Staszake673b542013-01-14 23:16:36 +0000245
Devang Patel80198932007-07-06 21:39:20 +0000246 // If this is a critical edge, let SplitCriticalEdge do it.
Bob Wilsonadb6f222010-02-16 19:49:17 +0000247 TerminatorInst *LatchTerm = BB->getTerminator();
248 if (SplitCriticalEdge(LatchTerm, SuccNum, P))
Devang Patel80198932007-07-06 21:39:20 +0000249 return LatchTerm->getSuccessor(SuccNum);
250
251 // If the edge isn't critical, then BB has a single successor or Succ has a
252 // single pred. Split the block.
Devang Patel80198932007-07-06 21:39:20 +0000253 if (BasicBlock *SP = Succ->getSinglePredecessor()) {
254 // If the successor only has a single pred, split the top of the successor
255 // block.
256 assert(SP == BB && "CFG broken");
Devang Patel8a88a142008-11-03 23:14:09 +0000257 SP = NULL;
Devang Patel80198932007-07-06 21:39:20 +0000258 return SplitBlock(Succ, Succ->begin(), P);
Devang Patel80198932007-07-06 21:39:20 +0000259 }
Jakub Staszake673b542013-01-14 23:16:36 +0000260
Chris Lattnerb0433d42011-01-08 18:47:43 +0000261 // Otherwise, if BB has a single successor, split it at the bottom of the
262 // block.
263 assert(BB->getTerminator()->getNumSuccessors() == 1 &&
Jakub Staszake673b542013-01-14 23:16:36 +0000264 "Should have a single succ!");
Chris Lattnerb0433d42011-01-08 18:47:43 +0000265 return SplitBlock(BB, BB->getTerminator(), P);
Devang Patel80198932007-07-06 21:39:20 +0000266}
267
268/// SplitBlock - Split the specified block at the specified instruction - every
269/// thing before SplitPt stays in Old and everything starting with SplitPt moves
270/// to a new block. The two blocks are joined by an unconditional branch and
271/// the loop info is updated.
272///
273BasicBlock *llvm::SplitBlock(BasicBlock *Old, Instruction *SplitPt, Pass *P) {
Devang Patel80198932007-07-06 21:39:20 +0000274 BasicBlock::iterator SplitIt = SplitPt;
Bill Wendlingab82fd92011-08-17 21:21:31 +0000275 while (isa<PHINode>(SplitIt) || isa<LandingPadInst>(SplitIt))
Devang Patel80198932007-07-06 21:39:20 +0000276 ++SplitIt;
277 BasicBlock *New = Old->splitBasicBlock(SplitIt, Old->getName()+".split");
278
Dan Gohman5c89b522009-09-08 15:45:00 +0000279 // The new block lives in whichever loop the old one did. This preserves
280 // LCSSA as well, because we force the split point to be after any PHI nodes.
Chris Lattnerdc85f8a2011-01-08 19:08:40 +0000281 if (LoopInfo *LI = P->getAnalysisIfAvailable<LoopInfo>())
Owen Andersona90793b2008-10-03 06:55:35 +0000282 if (Loop *L = LI->getLoopFor(Old))
283 L->addBasicBlockToLoop(New, LI->getBase());
Devang Patel80198932007-07-06 21:39:20 +0000284
Stephen Hines36b56882014-04-23 16:57:46 -0700285 if (DominatorTreeWrapperPass *DTWP =
286 P->getAnalysisIfAvailable<DominatorTreeWrapperPass>()) {
287 DominatorTree &DT = DTWP->getDomTree();
Gabor Greife2d50042010-09-10 22:25:58 +0000288 // Old dominates New. New node dominates all other nodes dominated by Old.
Stephen Hines36b56882014-04-23 16:57:46 -0700289 if (DomTreeNode *OldNode = DT.getNode(Old)) {
Rafael Espindola605e2b52011-08-24 18:07:01 +0000290 std::vector<DomTreeNode *> Children;
291 for (DomTreeNode::iterator I = OldNode->begin(), E = OldNode->end();
Jakub Staszake673b542013-01-14 23:16:36 +0000292 I != E; ++I)
Rafael Espindola605e2b52011-08-24 18:07:01 +0000293 Children.push_back(*I);
Devang Patela8a8a362007-07-19 02:29:24 +0000294
Stephen Hines36b56882014-04-23 16:57:46 -0700295 DomTreeNode *NewNode = DT.addNewBlock(New, Old);
Devang Patela8a8a362007-07-19 02:29:24 +0000296 for (std::vector<DomTreeNode *>::iterator I = Children.begin(),
Jakub Staszake673b542013-01-14 23:16:36 +0000297 E = Children.end(); I != E; ++I)
Stephen Hines36b56882014-04-23 16:57:46 -0700298 DT.changeImmediateDominator(*I, NewNode);
Rafael Espindola605e2b52011-08-24 18:07:01 +0000299 }
Evan Cheng0f1666b2010-04-05 21:16:25 +0000300 }
Devang Patel80198932007-07-06 21:39:20 +0000301
Devang Patel80198932007-07-06 21:39:20 +0000302 return New;
303}
Chris Lattner54b9c3b2008-04-21 01:28:02 +0000304
Bill Wendlinga644b332011-08-18 05:25:23 +0000305/// UpdateAnalysisInformation - Update DominatorTree, LoopInfo, and LCCSA
306/// analysis information.
Bill Wendlingd4770142011-08-18 17:57:57 +0000307static void UpdateAnalysisInformation(BasicBlock *OldBB, BasicBlock *NewBB,
Bill Wendling9210e842011-08-18 20:39:32 +0000308 ArrayRef<BasicBlock *> Preds,
309 Pass *P, bool &HasLoopExit) {
Bill Wendlinga644b332011-08-18 05:25:23 +0000310 if (!P) return;
311
312 LoopInfo *LI = P->getAnalysisIfAvailable<LoopInfo>();
313 Loop *L = LI ? LI->getLoopFor(OldBB) : 0;
Bill Wendlinga644b332011-08-18 05:25:23 +0000314
315 // If we need to preserve loop analyses, collect some information about how
316 // this split will affect loops.
317 bool IsLoopEntry = !!L;
318 bool SplitMakesNewLoopHeader = false;
319 if (LI) {
Bill Wendling7e8840c2011-08-19 00:05:40 +0000320 bool PreserveLCSSA = P->mustPreserveAnalysisID(LCSSAID);
Bill Wendling9210e842011-08-18 20:39:32 +0000321 for (ArrayRef<BasicBlock*>::iterator
322 i = Preds.begin(), e = Preds.end(); i != e; ++i) {
323 BasicBlock *Pred = *i;
Bill Wendling7e8840c2011-08-19 00:05:40 +0000324
Bill Wendlinga644b332011-08-18 05:25:23 +0000325 // If we need to preserve LCSSA, determine if any of the preds is a loop
326 // exit.
327 if (PreserveLCSSA)
Bill Wendling9210e842011-08-18 20:39:32 +0000328 if (Loop *PL = LI->getLoopFor(Pred))
Bill Wendlinga644b332011-08-18 05:25:23 +0000329 if (!PL->contains(OldBB))
330 HasLoopExit = true;
331
332 // If we need to preserve LoopInfo, note whether any of the preds crosses
333 // an interesting loop boundary.
334 if (!L) continue;
Bill Wendling9210e842011-08-18 20:39:32 +0000335 if (L->contains(Pred))
Bill Wendlinga644b332011-08-18 05:25:23 +0000336 IsLoopEntry = false;
337 else
338 SplitMakesNewLoopHeader = true;
339 }
340 }
341
342 // Update dominator tree if available.
Stephen Hines36b56882014-04-23 16:57:46 -0700343 if (DominatorTreeWrapperPass *DTWP =
344 P->getAnalysisIfAvailable<DominatorTreeWrapperPass>())
345 DTWP->getDomTree().splitBlock(NewBB);
Bill Wendlinga644b332011-08-18 05:25:23 +0000346
347 if (!L) return;
348
349 if (IsLoopEntry) {
350 // Add the new block to the nearest enclosing loop (and not an adjacent
351 // loop). To find this, examine each of the predecessors and determine which
352 // loops enclose them, and select the most-nested loop which contains the
353 // loop containing the block being split.
354 Loop *InnermostPredLoop = 0;
Bill Wendling9210e842011-08-18 20:39:32 +0000355 for (ArrayRef<BasicBlock*>::iterator
356 i = Preds.begin(), e = Preds.end(); i != e; ++i) {
357 BasicBlock *Pred = *i;
358 if (Loop *PredLoop = LI->getLoopFor(Pred)) {
Bill Wendlinga644b332011-08-18 05:25:23 +0000359 // Seek a loop which actually contains the block being split (to avoid
360 // adjacent loops).
361 while (PredLoop && !PredLoop->contains(OldBB))
362 PredLoop = PredLoop->getParentLoop();
363
364 // Select the most-nested of these loops which contains the block.
365 if (PredLoop && PredLoop->contains(OldBB) &&
366 (!InnermostPredLoop ||
367 InnermostPredLoop->getLoopDepth() < PredLoop->getLoopDepth()))
368 InnermostPredLoop = PredLoop;
369 }
Bill Wendling9210e842011-08-18 20:39:32 +0000370 }
Bill Wendlinga644b332011-08-18 05:25:23 +0000371
372 if (InnermostPredLoop)
373 InnermostPredLoop->addBasicBlockToLoop(NewBB, LI->getBase());
374 } else {
375 L->addBasicBlockToLoop(NewBB, LI->getBase());
376 if (SplitMakesNewLoopHeader)
377 L->moveToHeader(NewBB);
378 }
379}
380
Bill Wendling1c44d862011-08-18 20:51:04 +0000381/// UpdatePHINodes - Update the PHI nodes in OrigBB to include the values coming
382/// from NewBB. This also updates AliasAnalysis, if available.
383static void UpdatePHINodes(BasicBlock *OrigBB, BasicBlock *NewBB,
384 ArrayRef<BasicBlock*> Preds, BranchInst *BI,
385 Pass *P, bool HasLoopExit) {
386 // Otherwise, create a new PHI node in NewBB for each PHI node in OrigBB.
387 AliasAnalysis *AA = P ? P->getAnalysisIfAvailable<AliasAnalysis>() : 0;
388 for (BasicBlock::iterator I = OrigBB->begin(); isa<PHINode>(I); ) {
389 PHINode *PN = cast<PHINode>(I++);
390
391 // Check to see if all of the values coming in are the same. If so, we
392 // don't need to create a new PHI node, unless it's needed for LCSSA.
393 Value *InVal = 0;
394 if (!HasLoopExit) {
395 InVal = PN->getIncomingValueForBlock(Preds[0]);
396 for (unsigned i = 1, e = Preds.size(); i != e; ++i)
397 if (InVal != PN->getIncomingValueForBlock(Preds[i])) {
398 InVal = 0;
399 break;
400 }
401 }
402
403 if (InVal) {
404 // If all incoming values for the new PHI would be the same, just don't
405 // make a new PHI. Instead, just remove the incoming values from the old
406 // PHI.
Hal Finkelfc3b7bb2013-10-04 23:41:05 +0000407 for (unsigned i = 0, e = Preds.size(); i != e; ++i) {
408 // Explicitly check the BB index here to handle duplicates in Preds.
409 int Idx = PN->getBasicBlockIndex(Preds[i]);
410 if (Idx >= 0)
411 PN->removeIncomingValue(Idx, false);
412 }
Bill Wendling1c44d862011-08-18 20:51:04 +0000413 } else {
414 // If the values coming into the block are not the same, we need a PHI.
415 // Create the new PHI node, insert it into NewBB at the end of the block
416 PHINode *NewPHI =
417 PHINode::Create(PN->getType(), Preds.size(), PN->getName() + ".ph", BI);
418 if (AA) AA->copyValue(PN, NewPHI);
Jakub Staszake673b542013-01-14 23:16:36 +0000419
Bill Wendling1c44d862011-08-18 20:51:04 +0000420 // Move all of the PHI values for 'Preds' to the new PHI.
421 for (unsigned i = 0, e = Preds.size(); i != e; ++i) {
422 Value *V = PN->removeIncomingValue(Preds[i], false);
423 NewPHI->addIncoming(V, Preds[i]);
424 }
425
426 InVal = NewPHI;
427 }
428
429 // Add an incoming value to the PHI node in the loop for the preheader
430 // edge.
431 PN->addIncoming(InVal, NewBB);
432 }
433}
434
Chris Lattner54b9c3b2008-04-21 01:28:02 +0000435/// SplitBlockPredecessors - This method transforms BB by introducing a new
436/// basic block into the function, and moving some of the predecessors of BB to
437/// be predecessors of the new block. The new predecessors are indicated by the
438/// Preds array, which has NumPreds elements in it. The new block is given a
439/// suffix of 'Suffix'.
440///
Dan Gohman5c89b522009-09-08 15:45:00 +0000441/// This currently updates the LLVM IR, AliasAnalysis, DominatorTree,
Cameron Zwarich30127872011-01-18 04:11:31 +0000442/// LoopInfo, and LCCSA but no other analyses. In particular, it does not
443/// preserve LoopSimplify (because it's complicated to handle the case where one
444/// of the edges being split is an exit of a loop with other exits).
Dan Gohman5c89b522009-09-08 15:45:00 +0000445///
Jakub Staszake673b542013-01-14 23:16:36 +0000446BasicBlock *llvm::SplitBlockPredecessors(BasicBlock *BB,
Jakub Staszak2fac1d52011-12-09 21:19:53 +0000447 ArrayRef<BasicBlock*> Preds,
448 const char *Suffix, Pass *P) {
Chris Lattner54b9c3b2008-04-21 01:28:02 +0000449 // Create new basic block, insert right before the original block.
Owen Anderson1d0be152009-08-13 21:58:54 +0000450 BasicBlock *NewBB = BasicBlock::Create(BB->getContext(), BB->getName()+Suffix,
451 BB->getParent(), BB);
Jakub Staszake673b542013-01-14 23:16:36 +0000452
Chris Lattner54b9c3b2008-04-21 01:28:02 +0000453 // The new block unconditionally branches to the old block.
454 BranchInst *BI = BranchInst::Create(BB, NewBB);
Jakub Staszake673b542013-01-14 23:16:36 +0000455
Chris Lattner54b9c3b2008-04-21 01:28:02 +0000456 // Move the edges from Preds to point to NewBB instead of BB.
Jakub Staszak2fac1d52011-12-09 21:19:53 +0000457 for (unsigned i = 0, e = Preds.size(); i != e; ++i) {
Dan Gohmanb8eb17c2009-11-05 18:25:44 +0000458 // This is slightly more strict than necessary; the minimum requirement
459 // is that there be no more than one indirectbr branching to BB. And
460 // all BlockAddress uses would need to be updated.
461 assert(!isa<IndirectBrInst>(Preds[i]->getTerminator()) &&
462 "Cannot split an edge from an IndirectBrInst");
Chris Lattner54b9c3b2008-04-21 01:28:02 +0000463 Preds[i]->getTerminator()->replaceUsesOfWith(BB, NewBB);
Dan Gohman5c89b522009-09-08 15:45:00 +0000464 }
465
Chris Lattner54b9c3b2008-04-21 01:28:02 +0000466 // Insert a new PHI node into NewBB for every PHI node in BB and that new PHI
467 // node becomes an incoming value for BB's phi node. However, if the Preds
468 // list is empty, we need to insert dummy entries into the PHI nodes in BB to
469 // account for the newly created predecessor.
Jakub Staszak2fac1d52011-12-09 21:19:53 +0000470 if (Preds.size() == 0) {
Chris Lattner54b9c3b2008-04-21 01:28:02 +0000471 // Insert dummy values as the incoming value.
472 for (BasicBlock::iterator I = BB->begin(); isa<PHINode>(I); ++I)
Owen Anderson9e9a0d52009-07-30 23:03:37 +0000473 cast<PHINode>(I)->addIncoming(UndefValue::get(I->getType()), NewBB);
Chris Lattner54b9c3b2008-04-21 01:28:02 +0000474 return NewBB;
475 }
Dan Gohman5c89b522009-09-08 15:45:00 +0000476
Bill Wendlinga644b332011-08-18 05:25:23 +0000477 // Update DominatorTree, LoopInfo, and LCCSA analysis information.
478 bool HasLoopExit = false;
Jakub Staszak2fac1d52011-12-09 21:19:53 +0000479 UpdateAnalysisInformation(BB, NewBB, Preds, P, HasLoopExit);
Dan Gohman5c89b522009-09-08 15:45:00 +0000480
Bill Wendling1c44d862011-08-18 20:51:04 +0000481 // Update the PHI nodes in BB with the values coming from NewBB.
Jakub Staszak2fac1d52011-12-09 21:19:53 +0000482 UpdatePHINodes(BB, NewBB, Preds, BI, P, HasLoopExit);
Chris Lattner54b9c3b2008-04-21 01:28:02 +0000483 return NewBB;
484}
Chris Lattner52c95852008-11-27 08:10:05 +0000485
Bill Wendling7e8840c2011-08-19 00:05:40 +0000486/// SplitLandingPadPredecessors - This method transforms the landing pad,
487/// OrigBB, by introducing two new basic blocks into the function. One of those
488/// new basic blocks gets the predecessors listed in Preds. The other basic
489/// block gets the remaining predecessors of OrigBB. The landingpad instruction
490/// OrigBB is clone into both of the new basic blocks. The new blocks are given
491/// the suffixes 'Suffix1' and 'Suffix2', and are returned in the NewBBs vector.
Jakub Staszake673b542013-01-14 23:16:36 +0000492///
Bill Wendling7e8840c2011-08-19 00:05:40 +0000493/// This currently updates the LLVM IR, AliasAnalysis, DominatorTree,
494/// DominanceFrontier, LoopInfo, and LCCSA but no other analyses. In particular,
495/// it does not preserve LoopSimplify (because it's complicated to handle the
496/// case where one of the edges being split is an exit of a loop with other
497/// exits).
Jakub Staszake673b542013-01-14 23:16:36 +0000498///
Bill Wendling7e8840c2011-08-19 00:05:40 +0000499void llvm::SplitLandingPadPredecessors(BasicBlock *OrigBB,
500 ArrayRef<BasicBlock*> Preds,
501 const char *Suffix1, const char *Suffix2,
502 Pass *P,
503 SmallVectorImpl<BasicBlock*> &NewBBs) {
504 assert(OrigBB->isLandingPad() && "Trying to split a non-landing pad!");
505
506 // Create a new basic block for OrigBB's predecessors listed in Preds. Insert
507 // it right before the original block.
508 BasicBlock *NewBB1 = BasicBlock::Create(OrigBB->getContext(),
509 OrigBB->getName() + Suffix1,
510 OrigBB->getParent(), OrigBB);
511 NewBBs.push_back(NewBB1);
512
513 // The new block unconditionally branches to the old block.
514 BranchInst *BI1 = BranchInst::Create(OrigBB, NewBB1);
515
516 // Move the edges from Preds to point to NewBB1 instead of OrigBB.
517 for (unsigned i = 0, e = Preds.size(); i != e; ++i) {
518 // This is slightly more strict than necessary; the minimum requirement
519 // is that there be no more than one indirectbr branching to BB. And
520 // all BlockAddress uses would need to be updated.
521 assert(!isa<IndirectBrInst>(Preds[i]->getTerminator()) &&
522 "Cannot split an edge from an IndirectBrInst");
523 Preds[i]->getTerminator()->replaceUsesOfWith(OrigBB, NewBB1);
524 }
525
526 // Update DominatorTree, LoopInfo, and LCCSA analysis information.
527 bool HasLoopExit = false;
528 UpdateAnalysisInformation(OrigBB, NewBB1, Preds, P, HasLoopExit);
529
530 // Update the PHI nodes in OrigBB with the values coming from NewBB1.
531 UpdatePHINodes(OrigBB, NewBB1, Preds, BI1, P, HasLoopExit);
532
Bill Wendling7e8840c2011-08-19 00:05:40 +0000533 // Move the remaining edges from OrigBB to point to NewBB2.
534 SmallVector<BasicBlock*, 8> NewBB2Preds;
535 for (pred_iterator i = pred_begin(OrigBB), e = pred_end(OrigBB);
536 i != e; ) {
537 BasicBlock *Pred = *i++;
Bill Wendling94657b92011-08-19 23:46:30 +0000538 if (Pred == NewBB1) continue;
Bill Wendling7e8840c2011-08-19 00:05:40 +0000539 assert(!isa<IndirectBrInst>(Pred->getTerminator()) &&
540 "Cannot split an edge from an IndirectBrInst");
Bill Wendling7e8840c2011-08-19 00:05:40 +0000541 NewBB2Preds.push_back(Pred);
542 e = pred_end(OrigBB);
543 }
544
Bill Wendling94657b92011-08-19 23:46:30 +0000545 BasicBlock *NewBB2 = 0;
546 if (!NewBB2Preds.empty()) {
547 // Create another basic block for the rest of OrigBB's predecessors.
548 NewBB2 = BasicBlock::Create(OrigBB->getContext(),
549 OrigBB->getName() + Suffix2,
550 OrigBB->getParent(), OrigBB);
551 NewBBs.push_back(NewBB2);
Bill Wendling7e8840c2011-08-19 00:05:40 +0000552
Bill Wendling94657b92011-08-19 23:46:30 +0000553 // The new block unconditionally branches to the old block.
554 BranchInst *BI2 = BranchInst::Create(OrigBB, NewBB2);
555
556 // Move the remaining edges from OrigBB to point to NewBB2.
557 for (SmallVectorImpl<BasicBlock*>::iterator
558 i = NewBB2Preds.begin(), e = NewBB2Preds.end(); i != e; ++i)
559 (*i)->getTerminator()->replaceUsesOfWith(OrigBB, NewBB2);
560
561 // Update DominatorTree, LoopInfo, and LCCSA analysis information.
562 HasLoopExit = false;
563 UpdateAnalysisInformation(OrigBB, NewBB2, NewBB2Preds, P, HasLoopExit);
564
565 // Update the PHI nodes in OrigBB with the values coming from NewBB2.
566 UpdatePHINodes(OrigBB, NewBB2, NewBB2Preds, BI2, P, HasLoopExit);
567 }
Bill Wendling7e8840c2011-08-19 00:05:40 +0000568
569 LandingPadInst *LPad = OrigBB->getLandingPadInst();
570 Instruction *Clone1 = LPad->clone();
571 Clone1->setName(Twine("lpad") + Suffix1);
572 NewBB1->getInstList().insert(NewBB1->getFirstInsertionPt(), Clone1);
573
Bill Wendling94657b92011-08-19 23:46:30 +0000574 if (NewBB2) {
575 Instruction *Clone2 = LPad->clone();
576 Clone2->setName(Twine("lpad") + Suffix2);
577 NewBB2->getInstList().insert(NewBB2->getFirstInsertionPt(), Clone2);
Bill Wendling7e8840c2011-08-19 00:05:40 +0000578
Bill Wendling94657b92011-08-19 23:46:30 +0000579 // Create a PHI node for the two cloned landingpad instructions.
580 PHINode *PN = PHINode::Create(LPad->getType(), 2, "lpad.phi", LPad);
581 PN->addIncoming(Clone1, NewBB1);
582 PN->addIncoming(Clone2, NewBB2);
583 LPad->replaceAllUsesWith(PN);
584 LPad->eraseFromParent();
585 } else {
586 // There is no second clone. Just replace the landing pad with the first
587 // clone.
588 LPad->replaceAllUsesWith(Clone1);
589 LPad->eraseFromParent();
590 }
Bill Wendling7e8840c2011-08-19 00:05:40 +0000591}
592
Evan Chengc3f507f2011-01-29 04:46:23 +0000593/// FoldReturnIntoUncondBranch - This method duplicates the specified return
594/// instruction into a predecessor which ends in an unconditional branch. If
595/// the return instruction returns a value defined by a PHI, propagate the
596/// right value into the return. It returns the new return instruction in the
597/// predecessor.
598ReturnInst *llvm::FoldReturnIntoUncondBranch(ReturnInst *RI, BasicBlock *BB,
599 BasicBlock *Pred) {
600 Instruction *UncondBranch = Pred->getTerminator();
601 // Clone the return and add it to the end of the predecessor.
602 Instruction *NewRet = RI->clone();
603 Pred->getInstList().push_back(NewRet);
Jakub Staszake673b542013-01-14 23:16:36 +0000604
Evan Chengc3f507f2011-01-29 04:46:23 +0000605 // If the return instruction returns a value, and if the value was a
606 // PHI node in "BB", propagate the right value into the return.
607 for (User::op_iterator i = NewRet->op_begin(), e = NewRet->op_end();
Evan Cheng9c777a42012-07-27 21:21:26 +0000608 i != e; ++i) {
609 Value *V = *i;
610 Instruction *NewBC = 0;
611 if (BitCastInst *BCI = dyn_cast<BitCastInst>(V)) {
612 // Return value might be bitcasted. Clone and insert it before the
613 // return instruction.
614 V = BCI->getOperand(0);
615 NewBC = BCI->clone();
616 Pred->getInstList().insert(NewRet, NewBC);
617 *i = NewBC;
618 }
619 if (PHINode *PN = dyn_cast<PHINode>(V)) {
620 if (PN->getParent() == BB) {
621 if (NewBC)
622 NewBC->setOperand(0, PN->getIncomingValueForBlock(Pred));
623 else
624 *i = PN->getIncomingValueForBlock(Pred);
625 }
626 }
627 }
Jakub Staszake673b542013-01-14 23:16:36 +0000628
Evan Chengc3f507f2011-01-29 04:46:23 +0000629 // Update any PHI nodes in the returning block to realize that we no
630 // longer branch to them.
631 BB->removePredecessor(Pred);
632 UncondBranch->eraseFromParent();
633 return cast<ReturnInst>(NewRet);
Mike Stumpfe095f32009-05-04 18:40:41 +0000634}
Devang Patel40348e82011-04-29 22:28:59 +0000635
Evgeniy Stepanov4a2dec02012-10-19 10:48:31 +0000636/// SplitBlockAndInsertIfThen - Split the containing block at the
Stephen Hines36b56882014-04-23 16:57:46 -0700637/// specified instruction - everything before and including SplitBefore stays
638/// in the old basic block, and everything after SplitBefore is moved to a
Evgeniy Stepanov4a2dec02012-10-19 10:48:31 +0000639/// new block. The two blocks are connected by a conditional branch
640/// (with value of Cmp being the condition).
641/// Before:
642/// Head
Stephen Hines36b56882014-04-23 16:57:46 -0700643/// SplitBefore
Evgeniy Stepanov4a2dec02012-10-19 10:48:31 +0000644/// Tail
645/// After:
646/// Head
Stephen Hines36b56882014-04-23 16:57:46 -0700647/// if (Cond)
Evgeniy Stepanov4a2dec02012-10-19 10:48:31 +0000648/// ThenBlock
Stephen Hines36b56882014-04-23 16:57:46 -0700649/// SplitBefore
Evgeniy Stepanov4a2dec02012-10-19 10:48:31 +0000650/// Tail
651///
652/// If Unreachable is true, then ThenBlock ends with
653/// UnreachableInst, otherwise it branches to Tail.
654/// Returns the NewBasicBlock's terminator.
655
Stephen Hines36b56882014-04-23 16:57:46 -0700656TerminatorInst *llvm::SplitBlockAndInsertIfThen(Value *Cond,
657 Instruction *SplitBefore,
658 bool Unreachable,
659 MDNode *BranchWeights) {
Evgeniy Stepanov4a2dec02012-10-19 10:48:31 +0000660 BasicBlock *Head = SplitBefore->getParent();
661 BasicBlock *Tail = Head->splitBasicBlock(SplitBefore);
662 TerminatorInst *HeadOldTerm = Head->getTerminator();
663 LLVMContext &C = Head->getContext();
664 BasicBlock *ThenBlock = BasicBlock::Create(C, "", Head->getParent(), Tail);
665 TerminatorInst *CheckTerm;
666 if (Unreachable)
667 CheckTerm = new UnreachableInst(C, ThenBlock);
668 else
669 CheckTerm = BranchInst::Create(Tail, ThenBlock);
Stephen Hines36b56882014-04-23 16:57:46 -0700670 CheckTerm->setDebugLoc(SplitBefore->getDebugLoc());
Evgeniy Stepanov4a2dec02012-10-19 10:48:31 +0000671 BranchInst *HeadNewTerm =
Stephen Hines36b56882014-04-23 16:57:46 -0700672 BranchInst::Create(/*ifTrue*/ThenBlock, /*ifFalse*/Tail, Cond);
673 HeadNewTerm->setDebugLoc(SplitBefore->getDebugLoc());
Evgeniy Stepanov4a2dec02012-10-19 10:48:31 +0000674 HeadNewTerm->setMetadata(LLVMContext::MD_prof, BranchWeights);
675 ReplaceInstWithInst(HeadOldTerm, HeadNewTerm);
676 return CheckTerm;
677}
Tom Stellard01d72032013-08-06 02:43:45 +0000678
Stephen Hines36b56882014-04-23 16:57:46 -0700679/// SplitBlockAndInsertIfThenElse is similar to SplitBlockAndInsertIfThen,
680/// but also creates the ElseBlock.
681/// Before:
682/// Head
683/// SplitBefore
684/// Tail
685/// After:
686/// Head
687/// if (Cond)
688/// ThenBlock
689/// else
690/// ElseBlock
691/// SplitBefore
692/// Tail
693void llvm::SplitBlockAndInsertIfThenElse(Value *Cond, Instruction *SplitBefore,
694 TerminatorInst **ThenTerm,
695 TerminatorInst **ElseTerm,
696 MDNode *BranchWeights) {
697 BasicBlock *Head = SplitBefore->getParent();
698 BasicBlock *Tail = Head->splitBasicBlock(SplitBefore);
699 TerminatorInst *HeadOldTerm = Head->getTerminator();
700 LLVMContext &C = Head->getContext();
701 BasicBlock *ThenBlock = BasicBlock::Create(C, "", Head->getParent(), Tail);
702 BasicBlock *ElseBlock = BasicBlock::Create(C, "", Head->getParent(), Tail);
703 *ThenTerm = BranchInst::Create(Tail, ThenBlock);
704 (*ThenTerm)->setDebugLoc(SplitBefore->getDebugLoc());
705 *ElseTerm = BranchInst::Create(Tail, ElseBlock);
706 (*ElseTerm)->setDebugLoc(SplitBefore->getDebugLoc());
707 BranchInst *HeadNewTerm =
708 BranchInst::Create(/*ifTrue*/ThenBlock, /*ifFalse*/ElseBlock, Cond);
709 HeadNewTerm->setDebugLoc(SplitBefore->getDebugLoc());
710 HeadNewTerm->setMetadata(LLVMContext::MD_prof, BranchWeights);
711 ReplaceInstWithInst(HeadOldTerm, HeadNewTerm);
712}
713
714
Tom Stellard01d72032013-08-06 02:43:45 +0000715/// GetIfCondition - Given a basic block (BB) with two predecessors,
716/// check to see if the merge at this block is due
717/// to an "if condition". If so, return the boolean condition that determines
718/// which entry into BB will be taken. Also, return by references the block
719/// that will be entered from if the condition is true, and the block that will
720/// be entered if the condition is false.
721///
722/// This does no checking to see if the true/false blocks have large or unsavory
723/// instructions in them.
724Value *llvm::GetIfCondition(BasicBlock *BB, BasicBlock *&IfTrue,
725 BasicBlock *&IfFalse) {
726 PHINode *SomePHI = dyn_cast<PHINode>(BB->begin());
727 BasicBlock *Pred1 = NULL;
728 BasicBlock *Pred2 = NULL;
729
730 if (SomePHI) {
731 if (SomePHI->getNumIncomingValues() != 2)
732 return NULL;
733 Pred1 = SomePHI->getIncomingBlock(0);
734 Pred2 = SomePHI->getIncomingBlock(1);
735 } else {
736 pred_iterator PI = pred_begin(BB), PE = pred_end(BB);
737 if (PI == PE) // No predecessor
738 return NULL;
739 Pred1 = *PI++;
740 if (PI == PE) // Only one predecessor
741 return NULL;
742 Pred2 = *PI++;
743 if (PI != PE) // More than two predecessors
744 return NULL;
745 }
746
747 // We can only handle branches. Other control flow will be lowered to
748 // branches if possible anyway.
749 BranchInst *Pred1Br = dyn_cast<BranchInst>(Pred1->getTerminator());
750 BranchInst *Pred2Br = dyn_cast<BranchInst>(Pred2->getTerminator());
751 if (Pred1Br == 0 || Pred2Br == 0)
752 return 0;
753
754 // Eliminate code duplication by ensuring that Pred1Br is conditional if
755 // either are.
756 if (Pred2Br->isConditional()) {
757 // If both branches are conditional, we don't have an "if statement". In
758 // reality, we could transform this case, but since the condition will be
759 // required anyway, we stand no chance of eliminating it, so the xform is
760 // probably not profitable.
761 if (Pred1Br->isConditional())
762 return 0;
763
764 std::swap(Pred1, Pred2);
765 std::swap(Pred1Br, Pred2Br);
766 }
767
768 if (Pred1Br->isConditional()) {
769 // The only thing we have to watch out for here is to make sure that Pred2
770 // doesn't have incoming edges from other blocks. If it does, the condition
771 // doesn't dominate BB.
772 if (Pred2->getSinglePredecessor() == 0)
773 return 0;
774
775 // If we found a conditional branch predecessor, make sure that it branches
776 // to BB and Pred2Br. If it doesn't, this isn't an "if statement".
777 if (Pred1Br->getSuccessor(0) == BB &&
778 Pred1Br->getSuccessor(1) == Pred2) {
779 IfTrue = Pred1;
780 IfFalse = Pred2;
781 } else if (Pred1Br->getSuccessor(0) == Pred2 &&
782 Pred1Br->getSuccessor(1) == BB) {
783 IfTrue = Pred2;
784 IfFalse = Pred1;
785 } else {
786 // We know that one arm of the conditional goes to BB, so the other must
787 // go somewhere unrelated, and this must not be an "if statement".
788 return 0;
789 }
790
791 return Pred1Br->getCondition();
792 }
793
794 // Ok, if we got here, both predecessors end with an unconditional branch to
795 // BB. Don't panic! If both blocks only have a single (identical)
796 // predecessor, and THAT is a conditional branch, then we're all ok!
797 BasicBlock *CommonPred = Pred1->getSinglePredecessor();
798 if (CommonPred == 0 || CommonPred != Pred2->getSinglePredecessor())
799 return 0;
800
801 // Otherwise, if this is a conditional branch, then we can use it!
802 BranchInst *BI = dyn_cast<BranchInst>(CommonPred->getTerminator());
803 if (BI == 0) return 0;
804
805 assert(BI->isConditional() && "Two successors but not conditional?");
806 if (BI->getSuccessor(0) == Pred1) {
807 IfTrue = Pred1;
808 IfFalse = Pred2;
809 } else {
810 IfTrue = Pred2;
811 IfFalse = Pred1;
812 }
813 return BI->getCondition();
814}