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Chris Lattner55d47882003-10-12 21:44:18 +00001//===- LoopSimplify.cpp - Loop Canonicalization Pass ----------------------===//
Misha Brukmanb1c93172005-04-21 23:48:37 +00002//
John Criswell482202a2003-10-20 19:43:21 +00003// The LLVM Compiler Infrastructure
4//
5// This file was developed by the LLVM research group and is distributed under
6// the University of Illinois Open Source License. See LICENSE.TXT for details.
Misha Brukmanb1c93172005-04-21 23:48:37 +00007//
John Criswell482202a2003-10-20 19:43:21 +00008//===----------------------------------------------------------------------===//
Chris Lattner61992f62002-09-26 16:17:31 +00009//
Chris Lattner154e4d52003-10-12 21:43:28 +000010// This pass performs several transformations to transform natural loops into a
11// simpler form, which makes subsequent analyses and transformations simpler and
12// more effective.
Chris Lattner650096a2003-02-27 20:27:08 +000013//
14// Loop pre-header insertion guarantees that there is a single, non-critical
15// entry edge from outside of the loop to the loop header. This simplifies a
16// number of analyses and transformations, such as LICM.
17//
18// Loop exit-block insertion guarantees that all exit blocks from the loop
19// (blocks which are outside of the loop that have predecessors inside of the
Chris Lattner7710f2f2003-12-10 17:20:35 +000020// loop) only have predecessors from inside of the loop (and are thus dominated
21// by the loop header). This simplifies transformations such as store-sinking
22// that are built into LICM.
Chris Lattner650096a2003-02-27 20:27:08 +000023//
Chris Lattnerc4622a62003-10-13 00:37:13 +000024// This pass also guarantees that loops will have exactly one backedge.
25//
Chris Lattner650096a2003-02-27 20:27:08 +000026// Note that the simplifycfg pass will clean up blocks which are split out but
Chris Lattner154e4d52003-10-12 21:43:28 +000027// end up being unnecessary, so usage of this pass should not pessimize
28// generated code.
29//
30// This pass obviously modifies the CFG, but updates loop information and
31// dominator information.
Chris Lattner61992f62002-09-26 16:17:31 +000032//
33//===----------------------------------------------------------------------===//
34
35#include "llvm/Transforms/Scalar.h"
Chris Lattnerd0788122004-03-14 03:59:22 +000036#include "llvm/Constant.h"
Misha Brukman63b38bd2004-07-29 17:30:56 +000037#include "llvm/Instructions.h"
Chris Lattnerd0788122004-03-14 03:59:22 +000038#include "llvm/Function.h"
39#include "llvm/Type.h"
Chris Lattner514e8432005-03-25 06:37:22 +000040#include "llvm/Analysis/AliasAnalysis.h"
Chris Lattner031a3f82003-12-19 06:27:08 +000041#include "llvm/Analysis/Dominators.h"
42#include "llvm/Analysis/LoopInfo.h"
Chris Lattner61992f62002-09-26 16:17:31 +000043#include "llvm/Support/CFG.h"
Reid Spencer7c16caa2004-09-01 22:55:40 +000044#include "llvm/ADT/SetOperations.h"
45#include "llvm/ADT/SetVector.h"
46#include "llvm/ADT/Statistic.h"
47#include "llvm/ADT/DepthFirstIterator.h"
Chris Lattner7710f2f2003-12-10 17:20:35 +000048using namespace llvm;
Brian Gaeke960707c2003-11-11 22:41:34 +000049
Chris Lattner61992f62002-09-26 16:17:31 +000050namespace {
Chris Lattner154e4d52003-10-12 21:43:28 +000051 Statistic<>
Chris Lattner7710f2f2003-12-10 17:20:35 +000052 NumInserted("loopsimplify", "Number of pre-header or exit blocks inserted");
Chris Lattner84170522004-04-13 05:05:33 +000053 Statistic<>
54 NumNested("loopsimplify", "Number of nested loops split out");
Chris Lattner61992f62002-09-26 16:17:31 +000055
Chris Lattner154e4d52003-10-12 21:43:28 +000056 struct LoopSimplify : public FunctionPass {
Chris Lattner514e8432005-03-25 06:37:22 +000057 // AA - If we have an alias analysis object to update, this is it, otherwise
58 // this is null.
59 AliasAnalysis *AA;
Chris Lattnercffbbee2006-02-14 22:34:08 +000060 LoopInfo *LI;
Chris Lattner514e8432005-03-25 06:37:22 +000061
Chris Lattner61992f62002-09-26 16:17:31 +000062 virtual bool runOnFunction(Function &F);
Misha Brukmanb1c93172005-04-21 23:48:37 +000063
Chris Lattner61992f62002-09-26 16:17:31 +000064 virtual void getAnalysisUsage(AnalysisUsage &AU) const {
65 // We need loop information to identify the loops...
66 AU.addRequired<LoopInfo>();
Chris Lattner650096a2003-02-27 20:27:08 +000067 AU.addRequired<DominatorSet>();
Chris Lattner797cb2f2004-03-13 22:01:26 +000068 AU.addRequired<DominatorTree>();
Chris Lattner61992f62002-09-26 16:17:31 +000069
70 AU.addPreserved<LoopInfo>();
71 AU.addPreserved<DominatorSet>();
72 AU.addPreserved<ImmediateDominators>();
Chris Lattnercda4aa62006-01-09 08:03:08 +000073 AU.addPreserved<ETForest>();
Chris Lattner61992f62002-09-26 16:17:31 +000074 AU.addPreserved<DominatorTree>();
Chris Lattner650096a2003-02-27 20:27:08 +000075 AU.addPreserved<DominanceFrontier>();
Chris Lattnerf83ce5f2005-08-10 02:07:32 +000076 AU.addPreservedID(BreakCriticalEdgesID); // No critical edges added.
Chris Lattner61992f62002-09-26 16:17:31 +000077 }
78 private:
79 bool ProcessLoop(Loop *L);
Chris Lattner650096a2003-02-27 20:27:08 +000080 BasicBlock *SplitBlockPredecessors(BasicBlock *BB, const char *Suffix,
81 const std::vector<BasicBlock*> &Preds);
Chris Lattner82782632004-04-18 22:27:10 +000082 BasicBlock *RewriteLoopExitBlock(Loop *L, BasicBlock *Exit);
Chris Lattner61992f62002-09-26 16:17:31 +000083 void InsertPreheaderForLoop(Loop *L);
Chris Lattner84170522004-04-13 05:05:33 +000084 Loop *SeparateNestedLoop(Loop *L);
Chris Lattnerc4622a62003-10-13 00:37:13 +000085 void InsertUniqueBackedgeBlock(Loop *L);
86
87 void UpdateDomInfoForRevectoredPreds(BasicBlock *NewBB,
88 std::vector<BasicBlock*> &PredBlocks);
Chris Lattner61992f62002-09-26 16:17:31 +000089 };
90
Chris Lattner154e4d52003-10-12 21:43:28 +000091 RegisterOpt<LoopSimplify>
92 X("loopsimplify", "Canonicalize natural loops", true);
Chris Lattner61992f62002-09-26 16:17:31 +000093}
94
95// Publically exposed interface to pass...
Chris Lattner7710f2f2003-12-10 17:20:35 +000096const PassInfo *llvm::LoopSimplifyID = X.getPassInfo();
Chris Lattner3e860842004-09-20 04:43:15 +000097FunctionPass *llvm::createLoopSimplifyPass() { return new LoopSimplify(); }
Chris Lattner61992f62002-09-26 16:17:31 +000098
Chris Lattner61992f62002-09-26 16:17:31 +000099/// runOnFunction - Run down all loops in the CFG (recursively, but we could do
100/// it in any convenient order) inserting preheaders...
101///
Chris Lattner154e4d52003-10-12 21:43:28 +0000102bool LoopSimplify::runOnFunction(Function &F) {
Chris Lattner61992f62002-09-26 16:17:31 +0000103 bool Changed = false;
Chris Lattnercffbbee2006-02-14 22:34:08 +0000104 LI = &getAnalysis<LoopInfo>();
Chris Lattner514e8432005-03-25 06:37:22 +0000105 AA = getAnalysisToUpdate<AliasAnalysis>();
Chris Lattner61992f62002-09-26 16:17:31 +0000106
Chris Lattnercffbbee2006-02-14 22:34:08 +0000107 for (LoopInfo::iterator I = LI->begin(), E = LI->end(); I != E; ++I)
Chris Lattner59d2d7f2004-01-08 00:09:44 +0000108 Changed |= ProcessLoop(*I);
Chris Lattner61992f62002-09-26 16:17:31 +0000109
110 return Changed;
111}
112
Chris Lattner61992f62002-09-26 16:17:31 +0000113/// ProcessLoop - Walk the loop structure in depth first order, ensuring that
114/// all loops have preheaders.
115///
Chris Lattner154e4d52003-10-12 21:43:28 +0000116bool LoopSimplify::ProcessLoop(Loop *L) {
Chris Lattner61992f62002-09-26 16:17:31 +0000117 bool Changed = false;
118
Chris Lattnerd0788122004-03-14 03:59:22 +0000119 // Check to see that no blocks (other than the header) in the loop have
120 // predecessors that are not in the loop. This is not valid for natural
121 // loops, but can occur if the blocks are unreachable. Since they are
122 // unreachable we can just shamelessly destroy their terminators to make them
123 // not branch into the loop!
124 assert(L->getBlocks()[0] == L->getHeader() &&
125 "Header isn't first block in loop?");
126 for (unsigned i = 1, e = L->getBlocks().size(); i != e; ++i) {
127 BasicBlock *LoopBB = L->getBlocks()[i];
128 Retry:
129 for (pred_iterator PI = pred_begin(LoopBB), E = pred_end(LoopBB);
130 PI != E; ++PI)
131 if (!L->contains(*PI)) {
132 // This predecessor is not in the loop. Kill its terminator!
133 BasicBlock *DeadBlock = *PI;
134 for (succ_iterator SI = succ_begin(DeadBlock), E = succ_end(DeadBlock);
135 SI != E; ++SI)
136 (*SI)->removePredecessor(DeadBlock); // Remove PHI node entries
137
138 // Delete the dead terminator.
Chris Lattner514e8432005-03-25 06:37:22 +0000139 if (AA) AA->deleteValue(&DeadBlock->back());
Chris Lattnerd0788122004-03-14 03:59:22 +0000140 DeadBlock->getInstList().pop_back();
141
142 Value *RetVal = 0;
143 if (LoopBB->getParent()->getReturnType() != Type::VoidTy)
144 RetVal = Constant::getNullValue(LoopBB->getParent()->getReturnType());
145 new ReturnInst(RetVal, DeadBlock);
146 goto Retry; // We just invalidated the pred_iterator. Retry.
147 }
148 }
149
Chris Lattner61992f62002-09-26 16:17:31 +0000150 // Does the loop already have a preheader? If so, don't modify the loop...
151 if (L->getLoopPreheader() == 0) {
152 InsertPreheaderForLoop(L);
153 NumInserted++;
154 Changed = true;
155 }
156
Chris Lattner7710f2f2003-12-10 17:20:35 +0000157 // Next, check to make sure that all exit nodes of the loop only have
158 // predecessors that are inside of the loop. This check guarantees that the
159 // loop preheader/header will dominate the exit blocks. If the exit block has
Chris Lattner02f53ad2006-02-12 01:59:10 +0000160 // predecessors from outside of the loop, split the edge now.
161 std::vector<BasicBlock*> ExitBlocks;
162 L->getExitBlocks(ExitBlocks);
Chris Lattnercffbbee2006-02-14 22:34:08 +0000163
Chris Lattner02f53ad2006-02-12 01:59:10 +0000164 SetVector<BasicBlock*> ExitBlockSet(ExitBlocks.begin(), ExitBlocks.end());
Chris Lattnerf2c018c2004-07-15 08:20:22 +0000165 for (SetVector<BasicBlock*>::iterator I = ExitBlockSet.begin(),
166 E = ExitBlockSet.end(); I != E; ++I) {
167 BasicBlock *ExitBlock = *I;
Chris Lattnerdaa12132004-07-15 05:36:31 +0000168 for (pred_iterator PI = pred_begin(ExitBlock), PE = pred_end(ExitBlock);
169 PI != PE; ++PI)
Chris Lattner05bf90d2006-02-11 02:13:17 +0000170 // Must be exactly this loop: no subloops, parent loops, or non-loop preds
171 // allowed.
Chris Lattner02f53ad2006-02-12 01:59:10 +0000172 if (!L->contains(*PI)) {
Chris Lattnerf2c018c2004-07-15 08:20:22 +0000173 RewriteLoopExitBlock(L, ExitBlock);
Chris Lattnerdaa12132004-07-15 05:36:31 +0000174 NumInserted++;
175 Changed = true;
176 break;
177 }
Chris Lattnerf2c018c2004-07-15 08:20:22 +0000178 }
Chris Lattner650096a2003-02-27 20:27:08 +0000179
Chris Lattner84170522004-04-13 05:05:33 +0000180 // If the header has more than two predecessors at this point (from the
181 // preheader and from multiple backedges), we must adjust the loop.
Chris Lattnerc4622a62003-10-13 00:37:13 +0000182 if (L->getNumBackEdges() != 1) {
Chris Lattner05bf90d2006-02-11 02:13:17 +0000183
Chris Lattner84170522004-04-13 05:05:33 +0000184 // If this is really a nested loop, rip it out into a child loop.
185 if (Loop *NL = SeparateNestedLoop(L)) {
186 ++NumNested;
187 // This is a big restructuring change, reprocess the whole loop.
188 ProcessLoop(NL);
189 return true;
190 }
191
Chris Lattnerc4622a62003-10-13 00:37:13 +0000192 InsertUniqueBackedgeBlock(L);
193 NumInserted++;
194 Changed = true;
195 }
196
Chris Lattnerf83ce5f2005-08-10 02:07:32 +0000197 // Scan over the PHI nodes in the loop header. Since they now have only two
198 // incoming values (the loop is canonicalized), we may have simplified the PHI
199 // down to 'X = phi [X, Y]', which should be replaced with 'Y'.
200 PHINode *PN;
Chris Lattnerf83ce5f2005-08-10 02:07:32 +0000201 for (BasicBlock::iterator I = L->getHeader()->begin();
202 (PN = dyn_cast<PHINode>(I++)); )
Chris Lattner62df7982005-08-10 17:15:20 +0000203 if (Value *V = PN->hasConstantValue()) {
Chris Lattnerf83ce5f2005-08-10 02:07:32 +0000204 PN->replaceAllUsesWith(V);
205 PN->eraseFromParent();
206 }
207
Chris Lattner59d2d7f2004-01-08 00:09:44 +0000208 for (Loop::iterator I = L->begin(), E = L->end(); I != E; ++I)
209 Changed |= ProcessLoop(*I);
Chris Lattnerf83ce5f2005-08-10 02:07:32 +0000210
Chris Lattner61992f62002-09-26 16:17:31 +0000211 return Changed;
212}
213
Chris Lattner650096a2003-02-27 20:27:08 +0000214/// SplitBlockPredecessors - Split the specified block into two blocks. We want
215/// to move the predecessors specified in the Preds list to point to the new
216/// block, leaving the remaining predecessors pointing to BB. This method
217/// updates the SSA PHINode's, but no other analyses.
218///
Chris Lattner154e4d52003-10-12 21:43:28 +0000219BasicBlock *LoopSimplify::SplitBlockPredecessors(BasicBlock *BB,
220 const char *Suffix,
Chris Lattner650096a2003-02-27 20:27:08 +0000221 const std::vector<BasicBlock*> &Preds) {
Misha Brukmanb1c93172005-04-21 23:48:37 +0000222
Chris Lattner650096a2003-02-27 20:27:08 +0000223 // Create new basic block, insert right before the original block...
Chris Lattner8d414ad2004-02-04 03:58:28 +0000224 BasicBlock *NewBB = new BasicBlock(BB->getName()+Suffix, BB->getParent(), BB);
Chris Lattner650096a2003-02-27 20:27:08 +0000225
226 // The preheader first gets an unconditional branch to the loop header...
Chris Lattnera2960002003-11-21 16:52:05 +0000227 BranchInst *BI = new BranchInst(BB, NewBB);
Misha Brukmanb1c93172005-04-21 23:48:37 +0000228
Chris Lattner650096a2003-02-27 20:27:08 +0000229 // For every PHI node in the block, insert a PHI node into NewBB where the
230 // incoming values from the out of loop edges are moved to NewBB. We have two
231 // possible cases here. If the loop is dead, we just insert dummy entries
232 // into the PHI nodes for the new edge. If the loop is not dead, we move the
233 // incoming edges in BB into new PHI nodes in NewBB.
234 //
235 if (!Preds.empty()) { // Is the loop not obviously dead?
Chris Lattner031a3f82003-12-19 06:27:08 +0000236 // Check to see if the values being merged into the new block need PHI
237 // nodes. If so, insert them.
Alkis Evlogimenos3ce42ec2004-09-28 02:40:37 +0000238 for (BasicBlock::iterator I = BB->begin(); isa<PHINode>(I); ) {
239 PHINode *PN = cast<PHINode>(I);
Chris Lattner84170522004-04-13 05:05:33 +0000240 ++I;
241
Chris Lattner031a3f82003-12-19 06:27:08 +0000242 // Check to see if all of the values coming in are the same. If so, we
243 // don't need to create a new PHI node.
244 Value *InVal = PN->getIncomingValueForBlock(Preds[0]);
245 for (unsigned i = 1, e = Preds.size(); i != e; ++i)
246 if (InVal != PN->getIncomingValueForBlock(Preds[i])) {
247 InVal = 0;
248 break;
249 }
Misha Brukmanb1c93172005-04-21 23:48:37 +0000250
Chris Lattner031a3f82003-12-19 06:27:08 +0000251 // If the values coming into the block are not the same, we need a PHI.
252 if (InVal == 0) {
Chris Lattner6c237bc2003-12-09 23:12:55 +0000253 // Create the new PHI node, insert it into NewBB at the end of the block
254 PHINode *NewPHI = new PHINode(PN->getType(), PN->getName()+".ph", BI);
Chris Lattner514e8432005-03-25 06:37:22 +0000255 if (AA) AA->copyValue(PN, NewPHI);
Misha Brukmanb1c93172005-04-21 23:48:37 +0000256
Chris Lattner6c237bc2003-12-09 23:12:55 +0000257 // Move all of the edges from blocks outside the loop to the new PHI
258 for (unsigned i = 0, e = Preds.size(); i != e; ++i) {
Chris Lattner84170522004-04-13 05:05:33 +0000259 Value *V = PN->removeIncomingValue(Preds[i], false);
Chris Lattner6c237bc2003-12-09 23:12:55 +0000260 NewPHI->addIncoming(V, Preds[i]);
261 }
Chris Lattner031a3f82003-12-19 06:27:08 +0000262 InVal = NewPHI;
263 } else {
264 // Remove all of the edges coming into the PHI nodes from outside of the
265 // block.
266 for (unsigned i = 0, e = Preds.size(); i != e; ++i)
267 PN->removeIncomingValue(Preds[i], false);
Chris Lattner6c237bc2003-12-09 23:12:55 +0000268 }
Chris Lattner031a3f82003-12-19 06:27:08 +0000269
270 // Add an incoming value to the PHI node in the loop for the preheader
271 // edge.
272 PN->addIncoming(InVal, NewBB);
Chris Lattner84170522004-04-13 05:05:33 +0000273
274 // Can we eliminate this phi node now?
Chris Lattner257efb22005-08-05 00:57:45 +0000275 if (Value *V = PN->hasConstantValue(true)) {
Chris Lattnere29d6342004-10-17 21:22:38 +0000276 if (!isa<Instruction>(V) ||
277 getAnalysis<DominatorSet>().dominates(cast<Instruction>(V), PN)) {
278 PN->replaceAllUsesWith(V);
Chris Lattner514e8432005-03-25 06:37:22 +0000279 if (AA) AA->deleteValue(PN);
Chris Lattnere29d6342004-10-17 21:22:38 +0000280 BB->getInstList().erase(PN);
281 }
Chris Lattner84170522004-04-13 05:05:33 +0000282 }
Chris Lattner650096a2003-02-27 20:27:08 +0000283 }
Misha Brukmanb1c93172005-04-21 23:48:37 +0000284
Chris Lattner650096a2003-02-27 20:27:08 +0000285 // Now that the PHI nodes are updated, actually move the edges from
286 // Preds to point to NewBB instead of BB.
287 //
288 for (unsigned i = 0, e = Preds.size(); i != e; ++i) {
289 TerminatorInst *TI = Preds[i]->getTerminator();
290 for (unsigned s = 0, e = TI->getNumSuccessors(); s != e; ++s)
291 if (TI->getSuccessor(s) == BB)
292 TI->setSuccessor(s, NewBB);
293 }
Misha Brukmanb1c93172005-04-21 23:48:37 +0000294
Chris Lattner650096a2003-02-27 20:27:08 +0000295 } else { // Otherwise the loop is dead...
Alkis Evlogimenos3ce42ec2004-09-28 02:40:37 +0000296 for (BasicBlock::iterator I = BB->begin(); isa<PHINode>(I); ++I) {
297 PHINode *PN = cast<PHINode>(I);
Chris Lattner650096a2003-02-27 20:27:08 +0000298 // Insert dummy values as the incoming value...
299 PN->addIncoming(Constant::getNullValue(PN->getType()), NewBB);
Alkis Evlogimenos3ce42ec2004-09-28 02:40:37 +0000300 }
Misha Brukmanb1c93172005-04-21 23:48:37 +0000301 }
Chris Lattner650096a2003-02-27 20:27:08 +0000302 return NewBB;
303}
304
Chris Lattner61992f62002-09-26 16:17:31 +0000305/// InsertPreheaderForLoop - Once we discover that a loop doesn't have a
306/// preheader, this method is called to insert one. This method has two phases:
307/// preheader insertion and analysis updating.
308///
Chris Lattner154e4d52003-10-12 21:43:28 +0000309void LoopSimplify::InsertPreheaderForLoop(Loop *L) {
Chris Lattner61992f62002-09-26 16:17:31 +0000310 BasicBlock *Header = L->getHeader();
311
312 // Compute the set of predecessors of the loop that are not in the loop.
313 std::vector<BasicBlock*> OutsideBlocks;
314 for (pred_iterator PI = pred_begin(Header), PE = pred_end(Header);
315 PI != PE; ++PI)
Chris Lattner05bf90d2006-02-11 02:13:17 +0000316 if (!L->contains(*PI)) // Coming in from outside the loop?
317 OutsideBlocks.push_back(*PI); // Keep track of it...
Misha Brukmanb1c93172005-04-21 23:48:37 +0000318
Chris Lattner650096a2003-02-27 20:27:08 +0000319 // Split out the loop pre-header
320 BasicBlock *NewBB =
321 SplitBlockPredecessors(Header, ".preheader", OutsideBlocks);
Misha Brukmanb1c93172005-04-21 23:48:37 +0000322
Chris Lattner61992f62002-09-26 16:17:31 +0000323 //===--------------------------------------------------------------------===//
Misha Brukman8b2bd4e2003-10-10 17:57:28 +0000324 // Update analysis results now that we have performed the transformation
Chris Lattner61992f62002-09-26 16:17:31 +0000325 //
Misha Brukmanb1c93172005-04-21 23:48:37 +0000326
Chris Lattner61992f62002-09-26 16:17:31 +0000327 // We know that we have loop information to update... update it now.
328 if (Loop *Parent = L->getParentLoop())
Chris Lattnercffbbee2006-02-14 22:34:08 +0000329 Parent->addBasicBlockToLoop(NewBB, *LI);
Chris Lattnerf2d9f942003-02-27 22:48:57 +0000330
Chris Lattner650096a2003-02-27 20:27:08 +0000331 DominatorSet &DS = getAnalysis<DominatorSet>(); // Update dominator info
Chris Lattner797cb2f2004-03-13 22:01:26 +0000332 DominatorTree &DT = getAnalysis<DominatorTree>();
Misha Brukmanb1c93172005-04-21 23:48:37 +0000333
Chris Lattnerdb5b8f42004-03-16 06:00:15 +0000334
335 // Update the dominator tree information.
336 // The immediate dominator of the preheader is the immediate dominator of
337 // the old header.
338 DominatorTree::Node *PHDomTreeNode =
339 DT.createNewNode(NewBB, DT.getNode(Header)->getIDom());
Chris Lattnercda4aa62006-01-09 08:03:08 +0000340 BasicBlock *oldHeaderIDom = DT.getNode(Header)->getIDom()->getBlock();
Chris Lattnerdb5b8f42004-03-16 06:00:15 +0000341
342 // Change the header node so that PNHode is the new immediate dominator
343 DT.changeImmediateDominator(DT.getNode(Header), PHDomTreeNode);
Chris Lattner797cb2f2004-03-13 22:01:26 +0000344
Chris Lattner650096a2003-02-27 20:27:08 +0000345 {
Chris Lattner61992f62002-09-26 16:17:31 +0000346 // The blocks that dominate NewBB are the blocks that dominate Header,
347 // minus Header, plus NewBB.
Chris Lattner650096a2003-02-27 20:27:08 +0000348 DominatorSet::DomSetType DomSet = DS.getDominators(Header);
Chris Lattner61992f62002-09-26 16:17:31 +0000349 DomSet.erase(Header); // Header does not dominate us...
Chris Lattner650096a2003-02-27 20:27:08 +0000350 DS.addBasicBlock(NewBB, DomSet);
Chris Lattner03a9e152002-09-29 21:41:38 +0000351
352 // The newly created basic block dominates all nodes dominated by Header.
Chris Lattnerdb5b8f42004-03-16 06:00:15 +0000353 for (df_iterator<DominatorTree::Node*> DFI = df_begin(PHDomTreeNode),
354 E = df_end(PHDomTreeNode); DFI != E; ++DFI)
355 DS.addDominator((*DFI)->getBlock(), NewBB);
Chris Lattner61992f62002-09-26 16:17:31 +0000356 }
Misha Brukmanb1c93172005-04-21 23:48:37 +0000357
Chris Lattner61992f62002-09-26 16:17:31 +0000358 // Update immediate dominator information if we have it...
359 if (ImmediateDominators *ID = getAnalysisToUpdate<ImmediateDominators>()) {
360 // Whatever i-dominated the header node now immediately dominates NewBB
361 ID->addNewBlock(NewBB, ID->get(Header));
Misha Brukmanb1c93172005-04-21 23:48:37 +0000362
Chris Lattner61992f62002-09-26 16:17:31 +0000363 // The preheader now is the immediate dominator for the header node...
364 ID->setImmediateDominator(Header, NewBB);
365 }
Chris Lattnercda4aa62006-01-09 08:03:08 +0000366
367 // Update ET Forest information if we have it...
368 if (ETForest *EF = getAnalysisToUpdate<ETForest>()) {
369 // Whatever i-dominated the header node now immediately dominates NewBB
370 EF->addNewBlock(NewBB, oldHeaderIDom);
371
372 // The preheader now is the immediate dominator for the header node...
373 EF->setImmediateDominator(Header, NewBB);
374 }
Misha Brukmanb1c93172005-04-21 23:48:37 +0000375
Chris Lattner650096a2003-02-27 20:27:08 +0000376 // Update dominance frontier information...
377 if (DominanceFrontier *DF = getAnalysisToUpdate<DominanceFrontier>()) {
378 // The DF(NewBB) is just (DF(Header)-Header), because NewBB dominates
379 // everything that Header does, and it strictly dominates Header in
380 // addition.
381 assert(DF->find(Header) != DF->end() && "Header node doesn't have DF set?");
382 DominanceFrontier::DomSetType NewDFSet = DF->find(Header)->second;
383 NewDFSet.erase(Header);
384 DF->addBasicBlock(NewBB, NewDFSet);
385
386 // Now we must loop over all of the dominance frontiers in the function,
Misha Brukman4ace48e2003-09-09 21:54:45 +0000387 // replacing occurrences of Header with NewBB in some cases. If a block
Chris Lattner650096a2003-02-27 20:27:08 +0000388 // dominates a (now) predecessor of NewBB, but did not strictly dominate
389 // Header, it will have Header in it's DF set, but should now have NewBB in
390 // its set.
391 for (unsigned i = 0, e = OutsideBlocks.size(); i != e; ++i) {
392 // Get all of the dominators of the predecessor...
393 const DominatorSet::DomSetType &PredDoms =
394 DS.getDominators(OutsideBlocks[i]);
395 for (DominatorSet::DomSetType::const_iterator PDI = PredDoms.begin(),
396 PDE = PredDoms.end(); PDI != PDE; ++PDI) {
397 BasicBlock *PredDom = *PDI;
398 // If the loop header is in DF(PredDom), then PredDom didn't dominate
399 // the header but did dominate a predecessor outside of the loop. Now
400 // we change this entry to include the preheader in the DF instead of
401 // the header.
402 DominanceFrontier::iterator DFI = DF->find(PredDom);
403 assert(DFI != DF->end() && "No dominance frontier for node?");
404 if (DFI->second.count(Header)) {
405 DF->removeFromFrontier(DFI, Header);
406 DF->addToFrontier(DFI, NewBB);
407 }
408 }
409 }
410 }
411}
412
Chris Lattner84170522004-04-13 05:05:33 +0000413/// RewriteLoopExitBlock - Ensure that the loop preheader dominates all exit
414/// blocks. This method is used to split exit blocks that have predecessors
415/// outside of the loop.
Chris Lattner82782632004-04-18 22:27:10 +0000416BasicBlock *LoopSimplify::RewriteLoopExitBlock(Loop *L, BasicBlock *Exit) {
Chris Lattner650096a2003-02-27 20:27:08 +0000417 std::vector<BasicBlock*> LoopBlocks;
418 for (pred_iterator I = pred_begin(Exit), E = pred_end(Exit); I != E; ++I)
419 if (L->contains(*I))
420 LoopBlocks.push_back(*I);
421
Chris Lattner10b2b052003-02-27 22:31:07 +0000422 assert(!LoopBlocks.empty() && "No edges coming in from outside the loop?");
423 BasicBlock *NewBB = SplitBlockPredecessors(Exit, ".loopexit", LoopBlocks);
424
Chris Lattnercffbbee2006-02-14 22:34:08 +0000425 // Update Loop Information - we know that the new block will be in whichever
426 // loop the Exit block is in. Note that it may not be in that immediate loop,
427 // if the successor is some other loop header. In that case, we continue
428 // walking up the loop tree to find a loop that contains both the successor
429 // block and the predecessor block.
430 Loop *SuccLoop = LI->getLoopFor(Exit);
431 while (SuccLoop && !SuccLoop->contains(L->getHeader()))
432 SuccLoop = SuccLoop->getParentLoop();
433 if (SuccLoop)
434 SuccLoop->addBasicBlockToLoop(NewBB, *LI);
Chris Lattner32a39c22003-02-28 03:07:54 +0000435
Chris Lattnerc4622a62003-10-13 00:37:13 +0000436 // Update dominator information (set, immdom, domtree, and domfrontier)
437 UpdateDomInfoForRevectoredPreds(NewBB, LoopBlocks);
Chris Lattner82782632004-04-18 22:27:10 +0000438 return NewBB;
Chris Lattnerc4622a62003-10-13 00:37:13 +0000439}
440
Chris Lattner84170522004-04-13 05:05:33 +0000441/// AddBlockAndPredsToSet - Add the specified block, and all of its
442/// predecessors, to the specified set, if it's not already in there. Stop
443/// predecessor traversal when we reach StopBlock.
444static void AddBlockAndPredsToSet(BasicBlock *BB, BasicBlock *StopBlock,
445 std::set<BasicBlock*> &Blocks) {
446 if (!Blocks.insert(BB).second) return; // already processed.
447 if (BB == StopBlock) return; // Stop here!
448
449 for (pred_iterator I = pred_begin(BB), E = pred_end(BB); I != E; ++I)
450 AddBlockAndPredsToSet(*I, StopBlock, Blocks);
451}
452
Chris Lattnera6e22812004-04-13 15:21:18 +0000453/// FindPHIToPartitionLoops - The first part of loop-nestification is to find a
454/// PHI node that tells us how to partition the loops.
Chris Lattner514e8432005-03-25 06:37:22 +0000455static PHINode *FindPHIToPartitionLoops(Loop *L, DominatorSet &DS,
456 AliasAnalysis *AA) {
Alkis Evlogimenos3ce42ec2004-09-28 02:40:37 +0000457 for (BasicBlock::iterator I = L->getHeader()->begin(); isa<PHINode>(I); ) {
458 PHINode *PN = cast<PHINode>(I);
Chris Lattnera6e22812004-04-13 15:21:18 +0000459 ++I;
Nate Begemanb3923212005-08-04 23:24:19 +0000460 if (Value *V = PN->hasConstantValue())
Chris Lattnere29d6342004-10-17 21:22:38 +0000461 if (!isa<Instruction>(V) || DS.dominates(cast<Instruction>(V), PN)) {
462 // This is a degenerate PHI already, don't modify it!
463 PN->replaceAllUsesWith(V);
Chris Lattner514e8432005-03-25 06:37:22 +0000464 if (AA) AA->deleteValue(PN);
Chris Lattnerdd3ec922005-03-06 21:35:38 +0000465 PN->eraseFromParent();
Chris Lattnere29d6342004-10-17 21:22:38 +0000466 continue;
467 }
468
469 // Scan this PHI node looking for a use of the PHI node by itself.
470 for (unsigned i = 0, e = PN->getNumIncomingValues(); i != e; ++i)
471 if (PN->getIncomingValue(i) == PN &&
472 L->contains(PN->getIncomingBlock(i)))
473 // We found something tasty to remove.
474 return PN;
Chris Lattnera6e22812004-04-13 15:21:18 +0000475 }
476 return 0;
477}
478
Chris Lattner84170522004-04-13 05:05:33 +0000479/// SeparateNestedLoop - If this loop has multiple backedges, try to pull one of
480/// them out into a nested loop. This is important for code that looks like
481/// this:
482///
483/// Loop:
484/// ...
485/// br cond, Loop, Next
486/// ...
487/// br cond2, Loop, Out
488///
489/// To identify this common case, we look at the PHI nodes in the header of the
490/// loop. PHI nodes with unchanging values on one backedge correspond to values
491/// that change in the "outer" loop, but not in the "inner" loop.
492///
493/// If we are able to separate out a loop, return the new outer loop that was
494/// created.
495///
496Loop *LoopSimplify::SeparateNestedLoop(Loop *L) {
Chris Lattner514e8432005-03-25 06:37:22 +0000497 PHINode *PN = FindPHIToPartitionLoops(L, getAnalysis<DominatorSet>(), AA);
Chris Lattnera6e22812004-04-13 15:21:18 +0000498 if (PN == 0) return 0; // No known way to partition.
Chris Lattner84170522004-04-13 05:05:33 +0000499
Chris Lattnera6e22812004-04-13 15:21:18 +0000500 // Pull out all predecessors that have varying values in the loop. This
501 // handles the case when a PHI node has multiple instances of itself as
502 // arguments.
Chris Lattner84170522004-04-13 05:05:33 +0000503 std::vector<BasicBlock*> OuterLoopPreds;
Chris Lattnera6e22812004-04-13 15:21:18 +0000504 for (unsigned i = 0, e = PN->getNumIncomingValues(); i != e; ++i)
505 if (PN->getIncomingValue(i) != PN ||
506 !L->contains(PN->getIncomingBlock(i)))
507 OuterLoopPreds.push_back(PN->getIncomingBlock(i));
Chris Lattner84170522004-04-13 05:05:33 +0000508
Chris Lattner89e959b2004-04-13 16:23:25 +0000509 BasicBlock *Header = L->getHeader();
Chris Lattner84170522004-04-13 05:05:33 +0000510 BasicBlock *NewBB = SplitBlockPredecessors(Header, ".outer", OuterLoopPreds);
511
512 // Update dominator information (set, immdom, domtree, and domfrontier)
513 UpdateDomInfoForRevectoredPreds(NewBB, OuterLoopPreds);
514
515 // Create the new outer loop.
516 Loop *NewOuter = new Loop();
517
Chris Lattner84170522004-04-13 05:05:33 +0000518 // Change the parent loop to use the outer loop as its child now.
519 if (Loop *Parent = L->getParentLoop())
520 Parent->replaceChildLoopWith(L, NewOuter);
521 else
Chris Lattnercffbbee2006-02-14 22:34:08 +0000522 LI->changeTopLevelLoop(L, NewOuter);
Chris Lattner84170522004-04-13 05:05:33 +0000523
524 // This block is going to be our new header block: add it to this loop and all
525 // parent loops.
Chris Lattnercffbbee2006-02-14 22:34:08 +0000526 NewOuter->addBasicBlockToLoop(NewBB, *LI);
Chris Lattner84170522004-04-13 05:05:33 +0000527
528 // L is now a subloop of our outer loop.
529 NewOuter->addChildLoop(L);
530
Chris Lattner84170522004-04-13 05:05:33 +0000531 for (unsigned i = 0, e = L->getBlocks().size(); i != e; ++i)
532 NewOuter->addBlockEntry(L->getBlocks()[i]);
533
534 // Determine which blocks should stay in L and which should be moved out to
535 // the Outer loop now.
536 DominatorSet &DS = getAnalysis<DominatorSet>();
537 std::set<BasicBlock*> BlocksInL;
538 for (pred_iterator PI = pred_begin(Header), E = pred_end(Header); PI!=E; ++PI)
539 if (DS.dominates(Header, *PI))
540 AddBlockAndPredsToSet(*PI, Header, BlocksInL);
541
542
543 // Scan all of the loop children of L, moving them to OuterLoop if they are
544 // not part of the inner loop.
545 for (Loop::iterator I = L->begin(); I != L->end(); )
546 if (BlocksInL.count((*I)->getHeader()))
547 ++I; // Loop remains in L
548 else
549 NewOuter->addChildLoop(L->removeChildLoop(I));
550
551 // Now that we know which blocks are in L and which need to be moved to
552 // OuterLoop, move any blocks that need it.
553 for (unsigned i = 0; i != L->getBlocks().size(); ++i) {
554 BasicBlock *BB = L->getBlocks()[i];
555 if (!BlocksInL.count(BB)) {
556 // Move this block to the parent, updating the exit blocks sets
557 L->removeBlockFromLoop(BB);
Chris Lattnercffbbee2006-02-14 22:34:08 +0000558 if ((*LI)[BB] == L)
559 LI->changeLoopFor(BB, NewOuter);
Chris Lattner84170522004-04-13 05:05:33 +0000560 --i;
561 }
562 }
563
Chris Lattner84170522004-04-13 05:05:33 +0000564 return NewOuter;
565}
566
567
568
Chris Lattnerc4622a62003-10-13 00:37:13 +0000569/// InsertUniqueBackedgeBlock - This method is called when the specified loop
570/// has more than one backedge in it. If this occurs, revector all of these
571/// backedges to target a new basic block and have that block branch to the loop
572/// header. This ensures that loops have exactly one backedge.
573///
574void LoopSimplify::InsertUniqueBackedgeBlock(Loop *L) {
575 assert(L->getNumBackEdges() > 1 && "Must have > 1 backedge!");
576
577 // Get information about the loop
578 BasicBlock *Preheader = L->getLoopPreheader();
579 BasicBlock *Header = L->getHeader();
580 Function *F = Header->getParent();
581
582 // Figure out which basic blocks contain back-edges to the loop header.
583 std::vector<BasicBlock*> BackedgeBlocks;
584 for (pred_iterator I = pred_begin(Header), E = pred_end(Header); I != E; ++I)
585 if (*I != Preheader) BackedgeBlocks.push_back(*I);
586
587 // Create and insert the new backedge block...
588 BasicBlock *BEBlock = new BasicBlock(Header->getName()+".backedge", F);
Chris Lattnera2960002003-11-21 16:52:05 +0000589 BranchInst *BETerminator = new BranchInst(Header, BEBlock);
Chris Lattnerc4622a62003-10-13 00:37:13 +0000590
591 // Move the new backedge block to right after the last backedge block.
592 Function::iterator InsertPos = BackedgeBlocks.back(); ++InsertPos;
593 F->getBasicBlockList().splice(InsertPos, F->getBasicBlockList(), BEBlock);
Misha Brukmanb1c93172005-04-21 23:48:37 +0000594
Chris Lattnerc4622a62003-10-13 00:37:13 +0000595 // Now that the block has been inserted into the function, create PHI nodes in
596 // the backedge block which correspond to any PHI nodes in the header block.
Alkis Evlogimenos3ce42ec2004-09-28 02:40:37 +0000597 for (BasicBlock::iterator I = Header->begin(); isa<PHINode>(I); ++I) {
598 PHINode *PN = cast<PHINode>(I);
Chris Lattnerc4622a62003-10-13 00:37:13 +0000599 PHINode *NewPN = new PHINode(PN->getType(), PN->getName()+".be",
600 BETerminator);
Chris Lattnerd8e20182005-01-29 00:39:08 +0000601 NewPN->reserveOperandSpace(BackedgeBlocks.size());
Chris Lattner514e8432005-03-25 06:37:22 +0000602 if (AA) AA->copyValue(PN, NewPN);
Chris Lattnerc4622a62003-10-13 00:37:13 +0000603
604 // Loop over the PHI node, moving all entries except the one for the
605 // preheader over to the new PHI node.
606 unsigned PreheaderIdx = ~0U;
607 bool HasUniqueIncomingValue = true;
608 Value *UniqueValue = 0;
609 for (unsigned i = 0, e = PN->getNumIncomingValues(); i != e; ++i) {
610 BasicBlock *IBB = PN->getIncomingBlock(i);
611 Value *IV = PN->getIncomingValue(i);
612 if (IBB == Preheader) {
613 PreheaderIdx = i;
614 } else {
615 NewPN->addIncoming(IV, IBB);
616 if (HasUniqueIncomingValue) {
617 if (UniqueValue == 0)
618 UniqueValue = IV;
619 else if (UniqueValue != IV)
620 HasUniqueIncomingValue = false;
621 }
622 }
623 }
Misha Brukmanb1c93172005-04-21 23:48:37 +0000624
Chris Lattnerc4622a62003-10-13 00:37:13 +0000625 // Delete all of the incoming values from the old PN except the preheader's
626 assert(PreheaderIdx != ~0U && "PHI has no preheader entry??");
627 if (PreheaderIdx != 0) {
628 PN->setIncomingValue(0, PN->getIncomingValue(PreheaderIdx));
629 PN->setIncomingBlock(0, PN->getIncomingBlock(PreheaderIdx));
630 }
Chris Lattnerd8e20182005-01-29 00:39:08 +0000631 // Nuke all entries except the zero'th.
632 for (unsigned i = 0, e = PN->getNumIncomingValues()-1; i != e; ++i)
633 PN->removeIncomingValue(e-i, false);
Chris Lattnerc4622a62003-10-13 00:37:13 +0000634
635 // Finally, add the newly constructed PHI node as the entry for the BEBlock.
636 PN->addIncoming(NewPN, BEBlock);
637
638 // As an optimization, if all incoming values in the new PhiNode (which is a
639 // subset of the incoming values of the old PHI node) have the same value,
640 // eliminate the PHI Node.
641 if (HasUniqueIncomingValue) {
642 NewPN->replaceAllUsesWith(UniqueValue);
Chris Lattner514e8432005-03-25 06:37:22 +0000643 if (AA) AA->deleteValue(NewPN);
Chris Lattnerc4622a62003-10-13 00:37:13 +0000644 BEBlock->getInstList().erase(NewPN);
645 }
646 }
647
648 // Now that all of the PHI nodes have been inserted and adjusted, modify the
649 // backedge blocks to just to the BEBlock instead of the header.
650 for (unsigned i = 0, e = BackedgeBlocks.size(); i != e; ++i) {
651 TerminatorInst *TI = BackedgeBlocks[i]->getTerminator();
652 for (unsigned Op = 0, e = TI->getNumSuccessors(); Op != e; ++Op)
653 if (TI->getSuccessor(Op) == Header)
654 TI->setSuccessor(Op, BEBlock);
655 }
656
657 //===--- Update all analyses which we must preserve now -----------------===//
658
659 // Update Loop Information - we know that this block is now in the current
660 // loop and all parent loops.
Chris Lattnercffbbee2006-02-14 22:34:08 +0000661 L->addBasicBlockToLoop(BEBlock, *LI);
Chris Lattnerc4622a62003-10-13 00:37:13 +0000662
Chris Lattnerc4622a62003-10-13 00:37:13 +0000663 // Update dominator information (set, immdom, domtree, and domfrontier)
664 UpdateDomInfoForRevectoredPreds(BEBlock, BackedgeBlocks);
665}
666
667/// UpdateDomInfoForRevectoredPreds - This method is used to update the four
668/// different kinds of dominator information (dominator sets, immediate
669/// dominators, dominator trees, and dominance frontiers) after a new block has
670/// been added to the CFG.
671///
Chris Lattner14ab84a2004-02-05 21:12:24 +0000672/// This only supports the case when an existing block (known as "NewBBSucc"),
673/// had some of its predecessors factored into a new basic block. This
Chris Lattnerc4622a62003-10-13 00:37:13 +0000674/// transformation inserts a new basic block ("NewBB"), with a single
Chris Lattner14ab84a2004-02-05 21:12:24 +0000675/// unconditional branch to NewBBSucc, and moves some predecessors of
676/// "NewBBSucc" to now branch to NewBB. These predecessors are listed in
677/// PredBlocks, even though they are the same as
678/// pred_begin(NewBB)/pred_end(NewBB).
Chris Lattnerc4622a62003-10-13 00:37:13 +0000679///
680void LoopSimplify::UpdateDomInfoForRevectoredPreds(BasicBlock *NewBB,
681 std::vector<BasicBlock*> &PredBlocks) {
Chris Lattner14ab84a2004-02-05 21:12:24 +0000682 assert(!PredBlocks.empty() && "No predblocks??");
Chris Lattnerc4622a62003-10-13 00:37:13 +0000683 assert(succ_begin(NewBB) != succ_end(NewBB) &&
684 ++succ_begin(NewBB) == succ_end(NewBB) &&
685 "NewBB should have a single successor!");
Chris Lattner14ab84a2004-02-05 21:12:24 +0000686 BasicBlock *NewBBSucc = *succ_begin(NewBB);
Chris Lattnerc4622a62003-10-13 00:37:13 +0000687 DominatorSet &DS = getAnalysis<DominatorSet>();
688
Chris Lattner146d0df2004-04-01 19:06:07 +0000689 // Update dominator information... The blocks that dominate NewBB are the
690 // intersection of the dominators of predecessors, plus the block itself.
691 //
692 DominatorSet::DomSetType NewBBDomSet = DS.getDominators(PredBlocks[0]);
693 for (unsigned i = 1, e = PredBlocks.size(); i != e; ++i)
694 set_intersect(NewBBDomSet, DS.getDominators(PredBlocks[i]));
695 NewBBDomSet.insert(NewBB); // All blocks dominate themselves...
696 DS.addBasicBlock(NewBB, NewBBDomSet);
697
Chris Lattner14ab84a2004-02-05 21:12:24 +0000698 // The newly inserted basic block will dominate existing basic blocks iff the
699 // PredBlocks dominate all of the non-pred blocks. If all predblocks dominate
700 // the non-pred blocks, then they all must be the same block!
Chris Lattner146d0df2004-04-01 19:06:07 +0000701 //
Chris Lattner14ab84a2004-02-05 21:12:24 +0000702 bool NewBBDominatesNewBBSucc = true;
703 {
704 BasicBlock *OnePred = PredBlocks[0];
705 for (unsigned i = 1, e = PredBlocks.size(); i != e; ++i)
706 if (PredBlocks[i] != OnePred) {
707 NewBBDominatesNewBBSucc = false;
708 break;
709 }
710
711 if (NewBBDominatesNewBBSucc)
712 for (pred_iterator PI = pred_begin(NewBBSucc), E = pred_end(NewBBSucc);
713 PI != E; ++PI)
Chris Lattner2dd1c8d2004-02-05 23:20:59 +0000714 if (*PI != NewBB && !DS.dominates(NewBBSucc, *PI)) {
Chris Lattner14ab84a2004-02-05 21:12:24 +0000715 NewBBDominatesNewBBSucc = false;
716 break;
717 }
718 }
719
Chris Lattner146d0df2004-04-01 19:06:07 +0000720 // The other scenario where the new block can dominate its successors are when
721 // all predecessors of NewBBSucc that are not NewBB are dominated by NewBBSucc
722 // already.
723 if (!NewBBDominatesNewBBSucc) {
724 NewBBDominatesNewBBSucc = true;
725 for (pred_iterator PI = pred_begin(NewBBSucc), E = pred_end(NewBBSucc);
726 PI != E; ++PI)
727 if (*PI != NewBB && !DS.dominates(NewBBSucc, *PI)) {
728 NewBBDominatesNewBBSucc = false;
729 break;
730 }
731 }
Chris Lattner650096a2003-02-27 20:27:08 +0000732
Chris Lattner14ab84a2004-02-05 21:12:24 +0000733 // If NewBB dominates some blocks, then it will dominate all blocks that
Chris Lattnerc0c953f2004-02-05 22:33:26 +0000734 // NewBBSucc does.
Chris Lattner14ab84a2004-02-05 21:12:24 +0000735 if (NewBBDominatesNewBBSucc) {
736 BasicBlock *PredBlock = PredBlocks[0];
737 Function *F = NewBB->getParent();
738 for (Function::iterator I = F->begin(), E = F->end(); I != E; ++I)
Chris Lattnerc0c953f2004-02-05 22:33:26 +0000739 if (DS.dominates(NewBBSucc, I))
Chris Lattner14ab84a2004-02-05 21:12:24 +0000740 DS.addDominator(I, NewBB);
741 }
742
Chris Lattner650096a2003-02-27 20:27:08 +0000743 // Update immediate dominator information if we have it...
744 BasicBlock *NewBBIDom = 0;
745 if (ImmediateDominators *ID = getAnalysisToUpdate<ImmediateDominators>()) {
Chris Lattner14ab84a2004-02-05 21:12:24 +0000746 // To find the immediate dominator of the new exit node, we trace up the
747 // immediate dominators of a predecessor until we find a basic block that
748 // dominates the exit block.
Chris Lattner650096a2003-02-27 20:27:08 +0000749 //
Chris Lattnerc4622a62003-10-13 00:37:13 +0000750 BasicBlock *Dom = PredBlocks[0]; // Some random predecessor...
Chris Lattner650096a2003-02-27 20:27:08 +0000751 while (!NewBBDomSet.count(Dom)) { // Loop until we find a dominator...
752 assert(Dom != 0 && "No shared dominator found???");
753 Dom = ID->get(Dom);
754 }
755
756 // Set the immediate dominator now...
757 ID->addNewBlock(NewBB, Dom);
758 NewBBIDom = Dom; // Reuse this if calculating DominatorTree info...
Chris Lattner14ab84a2004-02-05 21:12:24 +0000759
760 // If NewBB strictly dominates other blocks, we need to update their idom's
761 // now. The only block that need adjustment is the NewBBSucc block, whose
762 // idom should currently be set to PredBlocks[0].
Chris Lattner59fdf742004-04-01 19:21:46 +0000763 if (NewBBDominatesNewBBSucc)
Chris Lattner14ab84a2004-02-05 21:12:24 +0000764 ID->setImmediateDominator(NewBBSucc, NewBB);
Chris Lattner650096a2003-02-27 20:27:08 +0000765 }
766
767 // Update DominatorTree information if it is active.
768 if (DominatorTree *DT = getAnalysisToUpdate<DominatorTree>()) {
Chris Lattner14ab84a2004-02-05 21:12:24 +0000769 // If we don't have ImmediateDominator info around, calculate the idom as
770 // above.
Chris Lattner650096a2003-02-27 20:27:08 +0000771 DominatorTree::Node *NewBBIDomNode;
772 if (NewBBIDom) {
773 NewBBIDomNode = DT->getNode(NewBBIDom);
774 } else {
Chris Lattnerc4622a62003-10-13 00:37:13 +0000775 NewBBIDomNode = DT->getNode(PredBlocks[0]); // Random pred
Chris Lattnerbb9d03b2003-09-11 16:26:13 +0000776 while (!NewBBDomSet.count(NewBBIDomNode->getBlock())) {
Chris Lattner650096a2003-02-27 20:27:08 +0000777 NewBBIDomNode = NewBBIDomNode->getIDom();
778 assert(NewBBIDomNode && "No shared dominator found??");
779 }
Chris Lattnercda4aa62006-01-09 08:03:08 +0000780 NewBBIDom = NewBBIDomNode->getBlock();
Chris Lattner650096a2003-02-27 20:27:08 +0000781 }
782
Chris Lattner14ab84a2004-02-05 21:12:24 +0000783 // Create the new dominator tree node... and set the idom of NewBB.
784 DominatorTree::Node *NewBBNode = DT->createNewNode(NewBB, NewBBIDomNode);
785
786 // If NewBB strictly dominates other blocks, then it is now the immediate
787 // dominator of NewBBSucc. Update the dominator tree as appropriate.
788 if (NewBBDominatesNewBBSucc) {
789 DominatorTree::Node *NewBBSuccNode = DT->getNode(NewBBSucc);
Chris Lattner14ab84a2004-02-05 21:12:24 +0000790 DT->changeImmediateDominator(NewBBSuccNode, NewBBNode);
791 }
Chris Lattner650096a2003-02-27 20:27:08 +0000792 }
793
Chris Lattnercda4aa62006-01-09 08:03:08 +0000794 // Update ET-Forest information if it is active.
795 if (ETForest *EF = getAnalysisToUpdate<ETForest>()) {
796 EF->addNewBlock(NewBB, NewBBIDom);
797 if (NewBBDominatesNewBBSucc)
798 EF->setImmediateDominator(NewBBSucc, NewBB);
799 }
800
Chris Lattner650096a2003-02-27 20:27:08 +0000801 // Update dominance frontier information...
802 if (DominanceFrontier *DF = getAnalysisToUpdate<DominanceFrontier>()) {
Chris Lattner89e959b2004-04-13 16:23:25 +0000803 // If NewBB dominates NewBBSucc, then DF(NewBB) is now going to be the
804 // DF(PredBlocks[0]) without the stuff that the new block does not dominate
805 // a predecessor of.
Chris Lattner14ab84a2004-02-05 21:12:24 +0000806 if (NewBBDominatesNewBBSucc) {
807 DominanceFrontier::iterator DFI = DF->find(PredBlocks[0]);
808 if (DFI != DF->end()) {
809 DominanceFrontier::DomSetType Set = DFI->second;
810 // Filter out stuff in Set that we do not dominate a predecessor of.
811 for (DominanceFrontier::DomSetType::iterator SetI = Set.begin(),
812 E = Set.end(); SetI != E;) {
813 bool DominatesPred = false;
814 for (pred_iterator PI = pred_begin(*SetI), E = pred_end(*SetI);
815 PI != E; ++PI)
816 if (DS.dominates(NewBB, *PI))
817 DominatesPred = true;
818 if (!DominatesPred)
819 Set.erase(SetI++);
820 else
821 ++SetI;
822 }
Chris Lattner650096a2003-02-27 20:27:08 +0000823
Chris Lattner14ab84a2004-02-05 21:12:24 +0000824 DF->addBasicBlock(NewBB, Set);
825 }
826
827 } else {
828 // DF(NewBB) is {NewBBSucc} because NewBB does not strictly dominate
829 // NewBBSucc, but it does dominate itself (and there is an edge (NewBB ->
830 // NewBBSucc)). NewBBSucc is the single successor of NewBB.
831 DominanceFrontier::DomSetType NewDFSet;
832 NewDFSet.insert(NewBBSucc);
833 DF->addBasicBlock(NewBB, NewDFSet);
Chris Lattner89e959b2004-04-13 16:23:25 +0000834 }
Chris Lattnerc4622a62003-10-13 00:37:13 +0000835
Chris Lattner89e959b2004-04-13 16:23:25 +0000836 // Now we must loop over all of the dominance frontiers in the function,
837 // replacing occurrences of NewBBSucc with NewBB in some cases. All
838 // blocks that dominate a block in PredBlocks and contained NewBBSucc in
839 // their dominance frontier must be updated to contain NewBB instead.
840 //
841 for (unsigned i = 0, e = PredBlocks.size(); i != e; ++i) {
842 BasicBlock *Pred = PredBlocks[i];
843 // Get all of the dominators of the predecessor...
844 const DominatorSet::DomSetType &PredDoms = DS.getDominators(Pred);
845 for (DominatorSet::DomSetType::const_iterator PDI = PredDoms.begin(),
846 PDE = PredDoms.end(); PDI != PDE; ++PDI) {
847 BasicBlock *PredDom = *PDI;
Misha Brukmanb1c93172005-04-21 23:48:37 +0000848
Chris Lattner89e959b2004-04-13 16:23:25 +0000849 // If the NewBBSucc node is in DF(PredDom), then PredDom didn't
850 // dominate NewBBSucc but did dominate a predecessor of it. Now we
851 // change this entry to include NewBB in the DF instead of NewBBSucc.
852 DominanceFrontier::iterator DFI = DF->find(PredDom);
853 assert(DFI != DF->end() && "No dominance frontier for node?");
854 if (DFI->second.count(NewBBSucc)) {
855 // If NewBBSucc should not stay in our dominator frontier, remove it.
856 // We remove it unless there is a predecessor of NewBBSucc that we
857 // dominate, but we don't strictly dominate NewBBSucc.
858 bool ShouldRemove = true;
859 if (PredDom == NewBBSucc || !DS.dominates(PredDom, NewBBSucc)) {
860 // Okay, we know that PredDom does not strictly dominate NewBBSucc.
861 // Check to see if it dominates any predecessors of NewBBSucc.
862 for (pred_iterator PI = pred_begin(NewBBSucc),
863 E = pred_end(NewBBSucc); PI != E; ++PI)
864 if (DS.dominates(PredDom, *PI)) {
865 ShouldRemove = false;
866 break;
867 }
Chris Lattner650096a2003-02-27 20:27:08 +0000868 }
Misha Brukmanb1c93172005-04-21 23:48:37 +0000869
Chris Lattner89e959b2004-04-13 16:23:25 +0000870 if (ShouldRemove)
871 DF->removeFromFrontier(DFI, NewBBSucc);
872 DF->addToFrontier(DFI, NewBB);
Chris Lattner650096a2003-02-27 20:27:08 +0000873 }
874 }
875 }
Chris Lattner650096a2003-02-27 20:27:08 +0000876 }
Chris Lattner61992f62002-09-26 16:17:31 +0000877}
Brian Gaeke960707c2003-11-11 22:41:34 +0000878