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Chris Lattnerd76efa02002-09-24 00:08:39 +00001//===- BreakCriticalEdges.cpp - Critical Edge Elimination Pass ------------===//
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 Lattnerd76efa02002-09-24 00:08:39 +00009//
10// BreakCriticalEdges pass - Break all of the critical edges in the CFG by
11// inserting a dummy basic block. This pass may be "required" by passes that
12// cannot deal with critical edges. For this usage, the structure type is
13// forward declared. This pass obviously invalidates the CFG, but can update
Cameron Zwarich30127872011-01-18 04:11:31 +000014// dominator trees.
Chris Lattnerd76efa02002-09-24 00:08:39 +000015//
16//===----------------------------------------------------------------------===//
17
Chris Lattnerd216e8b2006-12-19 22:17:40 +000018#define DEBUG_TYPE "break-crit-edges"
Chris Lattnerd76efa02002-09-24 00:08:39 +000019#include "llvm/Transforms/Scalar.h"
Chris Lattnerd23520c2003-11-10 04:10:50 +000020#include "llvm/Transforms/Utils/BasicBlockUtils.h"
Cameron Zwarich30127872011-01-18 04:11:31 +000021#include "llvm/Analysis/Dominators.h"
Chris Lattner0ae380a2005-08-13 01:38:43 +000022#include "llvm/Analysis/LoopInfo.h"
Andreas Neustifterff5dfdf2009-09-09 17:53:39 +000023#include "llvm/Analysis/ProfileInfo.h"
Chris Lattnerd76efa02002-09-24 00:08:39 +000024#include "llvm/Function.h"
Misha Brukman47b14a42004-07-29 17:30:56 +000025#include "llvm/Instructions.h"
Chris Lattner5b3a4552005-03-17 15:38:16 +000026#include "llvm/Type.h"
Chris Lattnereb0456c2002-09-24 15:51:56 +000027#include "llvm/Support/CFG.h"
Torok Edwinc25e7582009-07-11 20:10:48 +000028#include "llvm/Support/ErrorHandling.h"
Chris Lattner86f7b212006-10-03 07:02:02 +000029#include "llvm/ADT/SmallVector.h"
Reid Spencer551ccae2004-09-01 22:55:40 +000030#include "llvm/ADT/Statistic.h"
Chris Lattnerf7703df2004-01-09 06:12:26 +000031using namespace llvm;
Brian Gaeked0fde302003-11-11 22:41:34 +000032
Chris Lattnerd216e8b2006-12-19 22:17:40 +000033STATISTIC(NumBroken, "Number of blocks inserted");
Chris Lattnerd76efa02002-09-24 00:08:39 +000034
Chris Lattnerd216e8b2006-12-19 22:17:40 +000035namespace {
Nick Lewycky6726b6d2009-10-25 06:33:48 +000036 struct BreakCriticalEdges : public FunctionPass {
Nick Lewyckyecd94c82007-05-06 13:37:16 +000037 static char ID; // Pass identification, replacement for typeid
Owen Anderson081c34b2010-10-19 17:21:58 +000038 BreakCriticalEdges() : FunctionPass(ID) {
39 initializeBreakCriticalEdgesPass(*PassRegistry::getPassRegistry());
40 }
Devang Patel794fd752007-05-01 21:15:47 +000041
Chris Lattner6de302b2002-09-24 15:43:12 +000042 virtual bool runOnFunction(Function &F);
Misha Brukmanfd939082005-04-21 23:48:37 +000043
Chris Lattner6de302b2002-09-24 15:43:12 +000044 virtual void getAnalysisUsage(AnalysisUsage &AU) const {
Owen Andersona3ca0b62007-04-07 05:57:09 +000045 AU.addPreserved<DominatorTree>();
Chris Lattner0ae380a2005-08-13 01:38:43 +000046 AU.addPreserved<LoopInfo>();
Andreas Neustifterff5dfdf2009-09-09 17:53:39 +000047 AU.addPreserved<ProfileInfo>();
Chris Lattner98bf4362003-10-12 21:52:28 +000048
49 // No loop canonicalization guarantees are broken by this pass.
50 AU.addPreservedID(LoopSimplifyID);
Chris Lattner6de302b2002-09-24 15:43:12 +000051 }
52 };
Chris Lattner6de302b2002-09-24 15:43:12 +000053}
Chris Lattnerd76efa02002-09-24 00:08:39 +000054
Dan Gohman844731a2008-05-13 00:00:25 +000055char BreakCriticalEdges::ID = 0;
Owen Anderson02dd53e2010-08-23 17:52:01 +000056INITIALIZE_PASS(BreakCriticalEdges, "break-crit-edges",
Owen Andersonce665bd2010-10-07 22:25:06 +000057 "Break critical edges in CFG", false, false)
Dan Gohman844731a2008-05-13 00:00:25 +000058
Chris Lattner7a2bdde2011-04-15 05:18:47 +000059// Publicly exposed interface to pass...
Owen Anderson90c579d2010-08-06 18:33:48 +000060char &llvm::BreakCriticalEdgesID = BreakCriticalEdges::ID;
Chris Lattner1e5fdf82004-07-31 10:01:58 +000061FunctionPass *llvm::createBreakCriticalEdgesPass() {
62 return new BreakCriticalEdges();
63}
Chris Lattnerd76efa02002-09-24 00:08:39 +000064
Chris Lattner363ca612003-11-10 04:42:42 +000065// runOnFunction - Loop over all of the edges in the CFG, breaking critical
66// edges as they are found.
67//
68bool BreakCriticalEdges::runOnFunction(Function &F) {
69 bool Changed = false;
70 for (Function::iterator I = F.begin(), E = F.end(); I != E; ++I) {
71 TerminatorInst *TI = I->getTerminator();
Chris Lattner1b98ff32009-10-31 21:51:10 +000072 if (TI->getNumSuccessors() > 1 && !isa<IndirectBrInst>(TI))
Chris Lattner363ca612003-11-10 04:42:42 +000073 for (unsigned i = 0, e = TI->getNumSuccessors(); i != e; ++i)
74 if (SplitCriticalEdge(TI, i, this)) {
75 ++NumBroken;
76 Changed = true;
77 }
78 }
79
80 return Changed;
81}
82
83//===----------------------------------------------------------------------===//
84// Implementation of the external critical edge manipulation functions
85//===----------------------------------------------------------------------===//
Chris Lattnereb0456c2002-09-24 15:51:56 +000086
87// isCriticalEdge - Return true if the specified edge is a critical edge.
88// Critical edges are edges from a block with multiple successors to a block
89// with multiple predecessors.
90//
Chris Lattnerb57de332006-10-28 06:58:17 +000091bool llvm::isCriticalEdge(const TerminatorInst *TI, unsigned SuccNum,
92 bool AllowIdenticalEdges) {
Chris Lattnereb0456c2002-09-24 15:51:56 +000093 assert(SuccNum < TI->getNumSuccessors() && "Illegal edge specification!");
Chris Lattnere802a022002-10-08 21:06:27 +000094 if (TI->getNumSuccessors() == 1) return false;
Chris Lattnereb0456c2002-09-24 15:51:56 +000095
96 const BasicBlock *Dest = TI->getSuccessor(SuccNum);
Gabor Greif44424642010-03-25 23:25:28 +000097 const_pred_iterator I = pred_begin(Dest), E = pred_end(Dest);
Chris Lattnereb0456c2002-09-24 15:51:56 +000098
99 // If there is more than one predecessor, this is a critical edge...
100 assert(I != E && "No preds, but we have an edge to the block?");
Chris Lattnerb57de332006-10-28 06:58:17 +0000101 const BasicBlock *FirstPred = *I;
Chris Lattnereb0456c2002-09-24 15:51:56 +0000102 ++I; // Skip one edge due to the incoming arc from TI.
Chris Lattnerb57de332006-10-28 06:58:17 +0000103 if (!AllowIdenticalEdges)
104 return I != E;
105
106 // If AllowIdenticalEdges is true, then we allow this edge to be considered
107 // non-critical iff all preds come from TI's block.
Scott Michel4bf393a2008-04-16 23:46:39 +0000108 while (I != E) {
Gabor Greife80ba4f2010-07-09 16:17:52 +0000109 const BasicBlock *P = *I;
110 if (P != FirstPred)
Scott Michel4bf393a2008-04-16 23:46:39 +0000111 return true;
112 // Note: leave this as is until no one ever compiles with either gcc 4.0.1
113 // or Xcode 2. This seems to work around the pred_iterator assert in PR 2207
Gabor Greife80ba4f2010-07-09 16:17:52 +0000114 E = pred_end(P);
Scott Michel4bf393a2008-04-16 23:46:39 +0000115 ++I;
116 }
Chris Lattnerb57de332006-10-28 06:58:17 +0000117 return false;
Chris Lattnereb0456c2002-09-24 15:51:56 +0000118}
119
Dan Gohmanc292caf2009-09-09 18:18:18 +0000120/// CreatePHIsForSplitLoopExit - When a loop exit edge is split, LCSSA form
121/// may require new PHIs in the new exit block. This function inserts the
122/// new PHIs, as needed. Preds is a list of preds inside the loop, SplitBB
123/// is the new loop exit block, and DestBB is the old loop exit, now the
124/// successor of SplitBB.
125static void CreatePHIsForSplitLoopExit(SmallVectorImpl<BasicBlock *> &Preds,
126 BasicBlock *SplitBB,
127 BasicBlock *DestBB) {
128 // SplitBB shouldn't have anything non-trivial in it yet.
129 assert(SplitBB->getFirstNonPHI() == SplitBB->getTerminator() &&
130 "SplitBB has non-PHI nodes!");
131
132 // For each PHI in the destination block...
133 for (BasicBlock::iterator I = DestBB->begin();
134 PHINode *PN = dyn_cast<PHINode>(I); ++I) {
135 unsigned Idx = PN->getBasicBlockIndex(SplitBB);
136 Value *V = PN->getIncomingValue(Idx);
137 // If the input is a PHI which already satisfies LCSSA, don't create
138 // a new one.
139 if (const PHINode *VP = dyn_cast<PHINode>(V))
140 if (VP->getParent() == SplitBB)
141 continue;
142 // Otherwise a new PHI is needed. Create one and populate it.
Jay Foad3ecfc862011-03-30 11:28:46 +0000143 PHINode *NewPN = PHINode::Create(PN->getType(), Preds.size(), "split",
Dan Gohmanc292caf2009-09-09 18:18:18 +0000144 SplitBB->getTerminator());
145 for (unsigned i = 0, e = Preds.size(); i != e; ++i)
146 NewPN->addIncoming(V, Preds[i]);
147 // Update the original PHI.
148 PN->setIncomingValue(Idx, NewPN);
149 }
150}
151
Chris Lattner862f27e2008-04-21 00:19:16 +0000152/// SplitCriticalEdge - If this edge is a critical edge, insert a new node to
Cameron Zwarich30127872011-01-18 04:11:31 +0000153/// split the critical edge. This will update DominatorTree information if it
154/// is available, thus calling this pass will not invalidate either of them.
155/// This returns the new block if the edge was split, null otherwise.
Chris Lattner1b98ff32009-10-31 21:51:10 +0000156///
157/// If MergeIdenticalEdges is true (not the default), *all* edges from TI to the
158/// specified successor will be merged into the same critical edge block.
159/// This is most commonly interesting with switch instructions, which may
160/// have many edges to any one destination. This ensures that all edges to that
161/// dest go to one block instead of each going to a different block, but isn't
162/// the standard definition of a "critical edge".
163///
164/// It is invalid to call this function on a critical edge that starts at an
165/// IndirectBrInst. Splitting these edges will almost always create an invalid
Chris Lattner280f3fe2009-11-01 18:17:37 +0000166/// program because the address of the new block won't be the one that is jumped
Chris Lattner1b98ff32009-10-31 21:51:10 +0000167/// to.
168///
Dan Gohman5c89b522009-09-08 15:45:00 +0000169BasicBlock *llvm::SplitCriticalEdge(TerminatorInst *TI, unsigned SuccNum,
170 Pass *P, bool MergeIdenticalEdges) {
171 if (!isCriticalEdge(TI, SuccNum, MergeIdenticalEdges)) return 0;
Chris Lattner1b98ff32009-10-31 21:51:10 +0000172
173 assert(!isa<IndirectBrInst>(TI) &&
174 "Cannot split critical edge from IndirectBrInst");
175
Chris Lattnereb0456c2002-09-24 15:51:56 +0000176 BasicBlock *TIBB = TI->getParent();
Chris Lattner6918c072002-10-31 02:44:36 +0000177 BasicBlock *DestBB = TI->getSuccessor(SuccNum);
Chris Lattnereb0456c2002-09-24 15:51:56 +0000178
179 // Create a new basic block, linking it into the CFG.
Owen Anderson1d0be152009-08-13 21:58:54 +0000180 BasicBlock *NewBB = BasicBlock::Create(TI->getContext(),
181 TIBB->getName() + "." + DestBB->getName() + "_crit_edge");
Chris Lattner277cccc2010-02-13 04:24:19 +0000182 // Create our unconditional branch.
Devang Patelc9ea7712011-05-17 19:43:06 +0000183 BranchInst *NewBI = BranchInst::Create(DestBB, NewBB);
184 NewBI->setDebugLoc(TI->getDebugLoc());
Misha Brukmanfd939082005-04-21 23:48:37 +0000185
Chris Lattner27e1f902006-10-28 06:44:56 +0000186 // Branch to the new block, breaking the edge.
Chris Lattnereb0456c2002-09-24 15:51:56 +0000187 TI->setSuccessor(SuccNum, NewBB);
188
189 // Insert the block into the function... right after the block TI lives in.
190 Function &F = *TIBB->getParent();
Chris Lattner261cdfb2007-04-17 18:09:47 +0000191 Function::iterator FBBI = TIBB;
192 F.getBasicBlockList().insert(++FBBI, NewBB);
Chris Lattner27e1f902006-10-28 06:44:56 +0000193
Chris Lattnereb0456c2002-09-24 15:51:56 +0000194 // If there are any PHI nodes in DestBB, we need to update them so that they
195 // merge incoming values from NewBB instead of from TIBB.
Chris Lattner6686c6b2010-02-13 05:01:14 +0000196 if (PHINode *APHI = dyn_cast<PHINode>(DestBB->begin())) {
197 // This conceptually does:
198 // foreach (PHINode *PN in DestBB)
199 // PN->setIncomingBlock(PN->getIncomingBlock(TIBB), NewBB);
200 // but is optimized for two cases.
Chris Lattner277cccc2010-02-13 04:24:19 +0000201
Chris Lattner6686c6b2010-02-13 05:01:14 +0000202 if (APHI->getNumIncomingValues() <= 8) { // Small # preds case.
203 unsigned BBIdx = 0;
204 for (BasicBlock::iterator I = DestBB->begin(); isa<PHINode>(I); ++I) {
205 // We no longer enter through TIBB, now we come in through NewBB.
206 // Revector exactly one entry in the PHI node that used to come from
207 // TIBB to come from NewBB.
208 PHINode *PN = cast<PHINode>(I);
209
210 // Reuse the previous value of BBIdx if it lines up. In cases where we
211 // have multiple phi nodes with *lots* of predecessors, this is a speed
212 // win because we don't have to scan the PHI looking for TIBB. This
213 // happens because the BB list of PHI nodes are usually in the same
214 // order.
215 if (PN->getIncomingBlock(BBIdx) != TIBB)
216 BBIdx = PN->getBasicBlockIndex(TIBB);
217 PN->setIncomingBlock(BBIdx, NewBB);
218 }
219 } else {
220 // However, the foreach loop is slow for blocks with lots of predecessors
221 // because PHINode::getIncomingBlock is O(n) in # preds. Instead, walk
222 // the user list of TIBB to find the PHI nodes.
223 SmallPtrSet<PHINode*, 16> UpdatedPHIs;
224
225 for (Value::use_iterator UI = TIBB->use_begin(), E = TIBB->use_end();
226 UI != E; ) {
227 Value::use_iterator Use = UI++;
Gabor Greif96f1d8e2010-07-22 13:36:47 +0000228 if (PHINode *PN = dyn_cast<PHINode>(*Use)) {
Chris Lattner6686c6b2010-02-13 05:01:14 +0000229 // Remove one entry from each PHI.
230 if (PN->getParent() == DestBB && UpdatedPHIs.insert(PN))
231 PN->setOperand(Use.getOperandNo(), NewBB);
232 }
233 }
234 }
Chris Lattnereb0456c2002-09-24 15:51:56 +0000235 }
Chris Lattner6686c6b2010-02-13 05:01:14 +0000236
Chris Lattner27e1f902006-10-28 06:44:56 +0000237 // If there are any other edges from TIBB to DestBB, update those to go
238 // through the split block, making those edges non-critical as well (and
239 // reducing the number of phi entries in the DestBB if relevant).
240 if (MergeIdenticalEdges) {
241 for (unsigned i = SuccNum+1, e = TI->getNumSuccessors(); i != e; ++i) {
242 if (TI->getSuccessor(i) != DestBB) continue;
243
244 // Remove an entry for TIBB from DestBB phi nodes.
245 DestBB->removePredecessor(TIBB);
246
247 // We found another edge to DestBB, go to NewBB instead.
248 TI->setSuccessor(i, NewBB);
249 }
250 }
251
252
Chris Lattnereb0456c2002-09-24 15:51:56 +0000253
Chris Lattnere802a022002-10-08 21:06:27 +0000254 // If we don't have a pass object, we can't update anything...
Dan Gohman5c89b522009-09-08 15:45:00 +0000255 if (P == 0) return NewBB;
Chris Lattner6686c6b2010-02-13 05:01:14 +0000256
257 DominatorTree *DT = P->getAnalysisIfAvailable<DominatorTree>();
Chris Lattner6686c6b2010-02-13 05:01:14 +0000258 LoopInfo *LI = P->getAnalysisIfAvailable<LoopInfo>();
259 ProfileInfo *PI = P->getAnalysisIfAvailable<ProfileInfo>();
260
261 // If we have nothing to update, just return.
Cameron Zwarich30127872011-01-18 04:11:31 +0000262 if (DT == 0 && LI == 0 && PI == 0)
Chris Lattner6686c6b2010-02-13 05:01:14 +0000263 return NewBB;
Chris Lattnere802a022002-10-08 21:06:27 +0000264
Chris Lattner86f7b212006-10-03 07:02:02 +0000265 // Now update analysis information. Since the only predecessor of NewBB is
266 // the TIBB, TIBB clearly dominates NewBB. TIBB usually doesn't dominate
267 // anything, as there are other successors of DestBB. However, if all other
268 // predecessors of DestBB are already dominated by DestBB (e.g. DestBB is a
269 // loop header) then NewBB dominates DestBB.
270 SmallVector<BasicBlock*, 8> OtherPreds;
Chris Lattnereb0456c2002-09-24 15:51:56 +0000271
Chris Lattner2f36ea82010-02-13 04:15:26 +0000272 // If there is a PHI in the block, loop over predecessors with it, which is
273 // faster than iterating pred_begin/end.
274 if (PHINode *PN = dyn_cast<PHINode>(DestBB->begin())) {
275 for (unsigned i = 0, e = PN->getNumIncomingValues(); i != e; ++i)
276 if (PN->getIncomingBlock(i) != NewBB)
277 OtherPreds.push_back(PN->getIncomingBlock(i));
278 } else {
279 for (pred_iterator I = pred_begin(DestBB), E = pred_end(DestBB);
Gabor Greif7556cf52010-07-09 15:25:42 +0000280 I != E; ++I) {
281 BasicBlock *P = *I;
282 if (P != NewBB)
Chris Lattner70e5e222011-01-14 04:23:53 +0000283 OtherPreds.push_back(P);
Gabor Greif7556cf52010-07-09 15:25:42 +0000284 }
Chris Lattner2f36ea82010-02-13 04:15:26 +0000285 }
Gabor Greif7556cf52010-07-09 15:25:42 +0000286
Chris Lattner86f7b212006-10-03 07:02:02 +0000287 bool NewBBDominatesDestBB = true;
288
Chris Lattnerc178d942002-09-26 16:18:51 +0000289 // Should we update DominatorTree information?
Chris Lattner6686c6b2010-02-13 05:01:14 +0000290 if (DT) {
Devang Patel26042422007-06-04 00:32:22 +0000291 DomTreeNode *TINode = DT->getNode(TIBB);
Misha Brukmanfd939082005-04-21 23:48:37 +0000292
Chris Lattnerc178d942002-09-26 16:18:51 +0000293 // The new block is not the immediate dominator for any other nodes, but
294 // TINode is the immediate dominator for the new node.
295 //
Chris Lattner86f7b212006-10-03 07:02:02 +0000296 if (TINode) { // Don't break unreachable code!
Devang Patel83beaee2007-06-04 16:43:25 +0000297 DomTreeNode *NewBBNode = DT->addNewBlock(NewBB, TIBB);
Devang Patel26042422007-06-04 00:32:22 +0000298 DomTreeNode *DestBBNode = 0;
Chris Lattner86f7b212006-10-03 07:02:02 +0000299
300 // If NewBBDominatesDestBB hasn't been computed yet, do so with DT.
301 if (!OtherPreds.empty()) {
302 DestBBNode = DT->getNode(DestBB);
303 while (!OtherPreds.empty() && NewBBDominatesDestBB) {
Devang Patel26042422007-06-04 00:32:22 +0000304 if (DomTreeNode *OPNode = DT->getNode(OtherPreds.back()))
Devang Patel9a511572007-06-07 17:47:21 +0000305 NewBBDominatesDestBB = DT->dominates(DestBBNode, OPNode);
Chris Lattner86f7b212006-10-03 07:02:02 +0000306 OtherPreds.pop_back();
307 }
308 OtherPreds.clear();
309 }
310
311 // If NewBBDominatesDestBB, then NewBB dominates DestBB, otherwise it
312 // doesn't dominate anything.
313 if (NewBBDominatesDestBB) {
314 if (!DestBBNode) DestBBNode = DT->getNode(DestBB);
315 DT->changeImmediateDominator(DestBBNode, NewBBNode);
316 }
317 }
Chris Lattnereb0456c2002-09-24 15:51:56 +0000318 }
Chris Lattner6918c072002-10-31 02:44:36 +0000319
Chris Lattner0ae380a2005-08-13 01:38:43 +0000320 // Update LoopInfo if it is around.
Chris Lattner6686c6b2010-02-13 05:01:14 +0000321 if (LI) {
Dan Gohman5c89b522009-09-08 15:45:00 +0000322 if (Loop *TIL = LI->getLoopFor(TIBB)) {
323 // If one or the other blocks were not in a loop, the new block is not
324 // either, and thus LI doesn't need to be updated.
Chris Lattner0ae380a2005-08-13 01:38:43 +0000325 if (Loop *DestLoop = LI->getLoopFor(DestBB)) {
326 if (TIL == DestLoop) {
327 // Both in the same loop, the NewBB joins loop.
Owen Andersond735ee82007-11-27 03:43:35 +0000328 DestLoop->addBasicBlockToLoop(NewBB, LI->getBase());
Dan Gohman92329c72009-12-18 01:24:09 +0000329 } else if (TIL->contains(DestLoop)) {
Chris Lattner86f7b212006-10-03 07:02:02 +0000330 // Edge from an outer loop to an inner loop. Add to the outer loop.
Owen Andersond735ee82007-11-27 03:43:35 +0000331 TIL->addBasicBlockToLoop(NewBB, LI->getBase());
Dan Gohman92329c72009-12-18 01:24:09 +0000332 } else if (DestLoop->contains(TIL)) {
Chris Lattner86f7b212006-10-03 07:02:02 +0000333 // Edge from an inner loop to an outer loop. Add to the outer loop.
Owen Andersond735ee82007-11-27 03:43:35 +0000334 DestLoop->addBasicBlockToLoop(NewBB, LI->getBase());
Chris Lattner0ae380a2005-08-13 01:38:43 +0000335 } else {
336 // Edge from two loops with no containment relation. Because these
337 // are natural loops, we know that the destination block must be the
338 // header of its loop (adding a branch into a loop elsewhere would
339 // create an irreducible loop).
340 assert(DestLoop->getHeader() == DestBB &&
341 "Should not create irreducible loops!");
342 if (Loop *P = DestLoop->getParentLoop())
Owen Andersond735ee82007-11-27 03:43:35 +0000343 P->addBasicBlockToLoop(NewBB, LI->getBase());
Chris Lattner0ae380a2005-08-13 01:38:43 +0000344 }
345 }
Dan Gohman5c89b522009-09-08 15:45:00 +0000346 // If TIBB is in a loop and DestBB is outside of that loop, split the
347 // other exit blocks of the loop that also have predecessors outside
348 // the loop, to maintain a LoopSimplify guarantee.
349 if (!TIL->contains(DestBB) &&
350 P->mustPreserveAnalysisID(LoopSimplifyID)) {
Dan Gohmanc292caf2009-09-09 18:18:18 +0000351 assert(!TIL->contains(NewBB) &&
352 "Split point for loop exit is contained in loop!");
353
354 // Update LCSSA form in the newly created exit block.
355 if (P->mustPreserveAnalysisID(LCSSAID)) {
356 SmallVector<BasicBlock *, 1> OrigPred;
357 OrigPred.push_back(TIBB);
358 CreatePHIsForSplitLoopExit(OrigPred, NewBB, DestBB);
359 }
360
Dan Gohman5c89b522009-09-08 15:45:00 +0000361 // For each unique exit block...
362 SmallVector<BasicBlock *, 4> ExitBlocks;
363 TIL->getExitBlocks(ExitBlocks);
364 for (unsigned i = 0, e = ExitBlocks.size(); i != e; ++i) {
365 // Collect all the preds that are inside the loop, and note
366 // whether there are any preds outside the loop.
367 SmallVector<BasicBlock *, 4> Preds;
Dan Gohmanc292caf2009-09-09 18:18:18 +0000368 bool HasPredOutsideOfLoop = false;
Dan Gohman5c89b522009-09-08 15:45:00 +0000369 BasicBlock *Exit = ExitBlocks[i];
370 for (pred_iterator I = pred_begin(Exit), E = pred_end(Exit);
Gabor Greif9085fca2010-07-09 16:31:08 +0000371 I != E; ++I) {
372 BasicBlock *P = *I;
373 if (TIL->contains(P))
374 Preds.push_back(P);
Dan Gohman5c89b522009-09-08 15:45:00 +0000375 else
Dan Gohmanc292caf2009-09-09 18:18:18 +0000376 HasPredOutsideOfLoop = true;
Gabor Greif9085fca2010-07-09 16:31:08 +0000377 }
Dan Gohman5c89b522009-09-08 15:45:00 +0000378 // If there are any preds not in the loop, we'll need to split
379 // the edges. The Preds.empty() check is needed because a block
380 // may appear multiple times in the list. We can't use
381 // getUniqueExitBlocks above because that depends on LoopSimplify
382 // form, which we're in the process of restoring!
Dan Gohmanc292caf2009-09-09 18:18:18 +0000383 if (!Preds.empty() && HasPredOutsideOfLoop) {
384 BasicBlock *NewExitBB =
385 SplitBlockPredecessors(Exit, Preds.data(), Preds.size(),
386 "split", P);
387 if (P->mustPreserveAnalysisID(LCSSAID))
388 CreatePHIsForSplitLoopExit(Preds, NewExitBB, Exit);
389 }
Dan Gohman5c89b522009-09-08 15:45:00 +0000390 }
391 }
392 // LCSSA form was updated above for the case where LoopSimplify is
393 // available, which means that all predecessors of loop exit blocks
394 // are within the loop. Without LoopSimplify form, it would be
395 // necessary to insert a new phi.
396 assert((!P->mustPreserveAnalysisID(LCSSAID) ||
397 P->mustPreserveAnalysisID(LoopSimplifyID)) &&
398 "SplitCriticalEdge doesn't know how to update LCCSA form "
399 "without LoopSimplify!");
400 }
Chris Lattner0ae380a2005-08-13 01:38:43 +0000401 }
Dan Gohman5c89b522009-09-08 15:45:00 +0000402
Andreas Neustifterff5dfdf2009-09-09 17:53:39 +0000403 // Update ProfileInfo if it is around.
Chris Lattner6686c6b2010-02-13 05:01:14 +0000404 if (PI)
Chris Lattner2f36ea82010-02-13 04:15:26 +0000405 PI->splitEdge(TIBB, DestBB, NewBB, MergeIdenticalEdges);
Andreas Neustifterff5dfdf2009-09-09 17:53:39 +0000406
Dan Gohman5c89b522009-09-08 15:45:00 +0000407 return NewBB;
Chris Lattnereb0456c2002-09-24 15:51:56 +0000408}