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Chris Lattnerc1496bda2002-05-07 22:11:39 +00001//===- ADCE.cpp - Code to perform aggressive dead code elimination --------===//
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 Lattnerb28986f2001-06-30 06:39:11 +00009//
Chris Lattnerc1496bda2002-05-07 22:11:39 +000010// This file implements "aggressive" dead code elimination. ADCE is DCe where
Misha Brukmanb1c93172005-04-21 23:48:37 +000011// values are assumed to be dead until proven otherwise. This is similar to
Chris Lattnerb28986f2001-06-30 06:39:11 +000012// SCCP, except applied to the liveness of values.
13//
14//===----------------------------------------------------------------------===//
15
Chris Lattnerb4cfa7f2002-05-07 20:03:00 +000016#include "llvm/Transforms/Scalar.h"
Chris Lattner14d07db2004-12-12 23:40:17 +000017#include "llvm/Constants.h"
Chris Lattnercfa1adc2004-04-10 06:53:09 +000018#include "llvm/Instructions.h"
Chris Lattnercfa1adc2004-04-10 06:53:09 +000019#include "llvm/Analysis/AliasAnalysis.h"
20#include "llvm/Analysis/PostDominators.h"
Chris Lattner60a65912002-02-12 21:07:25 +000021#include "llvm/Support/CFG.h"
Chris Lattnerfc7bdac2003-12-19 09:08:34 +000022#include "llvm/Transforms/Utils/BasicBlockUtils.h"
23#include "llvm/Transforms/Utils/Local.h"
24#include "llvm/Transforms/Utils/UnifyFunctionExitNodes.h"
Reid Spencer7c16caa2004-09-01 22:55:40 +000025#include "llvm/Support/Debug.h"
26#include "llvm/ADT/DepthFirstIterator.h"
27#include "llvm/ADT/Statistic.h"
28#include "llvm/ADT/STLExtras.h"
Chris Lattnerfb8ed0c2001-07-08 18:38:36 +000029#include <algorithm>
Chris Lattnerfc7bdac2003-12-19 09:08:34 +000030using namespace llvm;
Brian Gaeke960707c2003-11-11 22:41:34 +000031
Chris Lattner019f3642002-05-06 17:27:57 +000032namespace {
Chris Lattnerbf3a0992002-10-01 22:38:41 +000033 Statistic<> NumBlockRemoved("adce", "Number of basic blocks removed");
34 Statistic<> NumInstRemoved ("adce", "Number of instructions removed");
Chris Lattnercfa1adc2004-04-10 06:53:09 +000035 Statistic<> NumCallRemoved ("adce", "Number of calls and invokes removed");
Chris Lattner019f3642002-05-06 17:27:57 +000036
Chris Lattnerb28986f2001-06-30 06:39:11 +000037//===----------------------------------------------------------------------===//
38// ADCE Class
39//
Chris Lattnerc1496bda2002-05-07 22:11:39 +000040// This class does all of the work of Aggressive Dead Code Elimination.
Chris Lattnerb28986f2001-06-30 06:39:11 +000041// It's public interface consists of a constructor and a doADCE() method.
42//
Chris Lattner019f3642002-05-06 17:27:57 +000043class ADCE : public FunctionPass {
44 Function *Func; // The function that we are working on
Chris Lattner7f74a562002-01-20 22:54:45 +000045 std::vector<Instruction*> WorkList; // Instructions that just became live
46 std::set<Instruction*> LiveSet; // The set of live instructions
Chris Lattnerb28986f2001-06-30 06:39:11 +000047
48 //===--------------------------------------------------------------------===//
49 // The public interface for this class
50 //
51public:
Chris Lattner559f0ee2002-05-22 21:32:16 +000052 // Execute the Aggressive Dead Code Elimination Algorithm
Chris Lattner019f3642002-05-06 17:27:57 +000053 //
Chris Lattner113f4f42002-06-25 16:13:24 +000054 virtual bool runOnFunction(Function &F) {
55 Func = &F;
Chris Lattner559f0ee2002-05-22 21:32:16 +000056 bool Changed = doADCE();
Chris Lattner019f3642002-05-06 17:27:57 +000057 assert(WorkList.empty());
58 LiveSet.clear();
Chris Lattner559f0ee2002-05-22 21:32:16 +000059 return Changed;
Chris Lattner019f3642002-05-06 17:27:57 +000060 }
61 // getAnalysisUsage - We require post dominance frontiers (aka Control
62 // Dependence Graph)
63 virtual void getAnalysisUsage(AnalysisUsage &AU) const {
Chris Lattnerfc7bdac2003-12-19 09:08:34 +000064 // We require that all function nodes are unified, because otherwise code
65 // can be marked live that wouldn't necessarily be otherwise.
66 AU.addRequired<UnifyFunctionExitNodes>();
Chris Lattnercfa1adc2004-04-10 06:53:09 +000067 AU.addRequired<AliasAnalysis>();
Chris Lattnerf0ed55d2002-08-08 19:01:30 +000068 AU.addRequired<PostDominatorTree>();
69 AU.addRequired<PostDominanceFrontier>();
Chris Lattner019f3642002-05-06 17:27:57 +000070 }
Chris Lattnerb28986f2001-06-30 06:39:11 +000071
Chris Lattnerb28986f2001-06-30 06:39:11 +000072
73 //===--------------------------------------------------------------------===//
74 // The implementation of this class
75 //
76private:
Chris Lattnerc1496bda2002-05-07 22:11:39 +000077 // doADCE() - Run the Aggressive Dead Code Elimination algorithm, returning
Chris Lattner019f3642002-05-06 17:27:57 +000078 // true if the function was modified.
79 //
Chris Lattner559f0ee2002-05-22 21:32:16 +000080 bool doADCE();
81
82 void markBlockAlive(BasicBlock *BB);
Chris Lattner019f3642002-05-06 17:27:57 +000083
Chris Lattner33fca9762002-07-30 00:22:34 +000084
Chris Lattner14d07db2004-12-12 23:40:17 +000085 // deleteDeadInstructionsInLiveBlock - Loop over all of the instructions in
86 // the specified basic block, deleting ones that are dead according to
87 // LiveSet.
88 bool deleteDeadInstructionsInLiveBlock(BasicBlock *BB);
Chris Lattner33fca9762002-07-30 00:22:34 +000089
Chris Lattneree967712003-06-24 23:02:45 +000090 TerminatorInst *convertToUnconditionalBranch(TerminatorInst *TI);
91
Chris Lattnerb28986f2001-06-30 06:39:11 +000092 inline void markInstructionLive(Instruction *I) {
Chris Lattnera5384392004-12-12 22:16:13 +000093 if (!LiveSet.insert(I).second) return;
Chris Lattner9a63520b2004-07-15 01:50:47 +000094 DEBUG(std::cerr << "Insn Live: " << *I);
Chris Lattnerb28986f2001-06-30 06:39:11 +000095 WorkList.push_back(I);
96 }
97
Chris Lattnerfb8ed0c2001-07-08 18:38:36 +000098 inline void markTerminatorLive(const BasicBlock *BB) {
Chris Lattner9a63520b2004-07-15 01:50:47 +000099 DEBUG(std::cerr << "Terminator Live: " << *BB->getTerminator());
Chris Lattner21580522003-09-10 20:38:14 +0000100 markInstructionLive(const_cast<TerminatorInst*>(BB->getTerminator()));
Chris Lattnerfb8ed0c2001-07-08 18:38:36 +0000101 }
Chris Lattnerb28986f2001-06-30 06:39:11 +0000102};
103
Chris Lattnerc8b70922002-07-26 21:12:46 +0000104 RegisterOpt<ADCE> X("adce", "Aggressive Dead Code Elimination");
Chris Lattner019f3642002-05-06 17:27:57 +0000105} // End of anonymous namespace
106
Chris Lattner3e860842004-09-20 04:43:15 +0000107FunctionPass *llvm::createAggressiveDCEPass() { return new ADCE(); }
Chris Lattner559f0ee2002-05-22 21:32:16 +0000108
Chris Lattner559f0ee2002-05-22 21:32:16 +0000109void ADCE::markBlockAlive(BasicBlock *BB) {
110 // Mark the basic block as being newly ALIVE... and mark all branches that
Misha Brukmanbe372b92003-08-21 22:14:26 +0000111 // this block is control dependent on as being alive also...
Chris Lattner559f0ee2002-05-22 21:32:16 +0000112 //
Chris Lattner64eea742002-07-26 18:40:14 +0000113 PostDominanceFrontier &CDG = getAnalysis<PostDominanceFrontier>();
Chris Lattner559f0ee2002-05-22 21:32:16 +0000114
Chris Lattner64eea742002-07-26 18:40:14 +0000115 PostDominanceFrontier::const_iterator It = CDG.find(BB);
Chris Lattner559f0ee2002-05-22 21:32:16 +0000116 if (It != CDG.end()) {
Misha Brukmanbe372b92003-08-21 22:14:26 +0000117 // Get the blocks that this node is control dependent on...
Chris Lattner64eea742002-07-26 18:40:14 +0000118 const PostDominanceFrontier::DomSetType &CDB = It->second;
Misha Brukmanb1c93172005-04-21 23:48:37 +0000119 for (PostDominanceFrontier::DomSetType::const_iterator I =
Chris Lattner52e931b2005-02-22 23:22:58 +0000120 CDB.begin(), E = CDB.end(); I != E; ++I)
121 markTerminatorLive(*I); // Mark all their terminators as live
Chris Lattner559f0ee2002-05-22 21:32:16 +0000122 }
Misha Brukmanb1c93172005-04-21 23:48:37 +0000123
Chris Lattner83410552003-06-24 21:49:45 +0000124 // If this basic block is live, and it ends in an unconditional branch, then
125 // the branch is alive as well...
126 if (BranchInst *BI = dyn_cast<BranchInst>(BB->getTerminator()))
127 if (BI->isUnconditional())
128 markTerminatorLive(BB);
Chris Lattner019f3642002-05-06 17:27:57 +0000129}
Chris Lattnerb28986f2001-06-30 06:39:11 +0000130
Chris Lattner14d07db2004-12-12 23:40:17 +0000131// deleteDeadInstructionsInLiveBlock - Loop over all of the instructions in the
132// specified basic block, deleting ones that are dead according to LiveSet.
133bool ADCE::deleteDeadInstructionsInLiveBlock(BasicBlock *BB) {
Chris Lattner33fca9762002-07-30 00:22:34 +0000134 bool Changed = false;
Chris Lattner14d07db2004-12-12 23:40:17 +0000135 for (BasicBlock::iterator II = BB->begin(), E = --BB->end(); II != E; ) {
136 Instruction *I = II++;
Chris Lattner33fca9762002-07-30 00:22:34 +0000137 if (!LiveSet.count(I)) { // Is this instruction alive?
Chris Lattner14d07db2004-12-12 23:40:17 +0000138 if (!I->use_empty())
139 I->replaceAllUsesWith(UndefValue::get(I->getType()));
Chris Lattner6149ac82004-04-10 07:02:02 +0000140
Chris Lattner14d07db2004-12-12 23:40:17 +0000141 // Nope... remove the instruction from it's basic block...
142 if (isa<CallInst>(I))
143 ++NumCallRemoved;
144 else
Chris Lattner50932132004-04-10 07:27:48 +0000145 ++NumInstRemoved;
Chris Lattner14d07db2004-12-12 23:40:17 +0000146 BB->getInstList().erase(I);
147 Changed = true;
Chris Lattner33fca9762002-07-30 00:22:34 +0000148 }
Chris Lattner14d07db2004-12-12 23:40:17 +0000149 }
Chris Lattner33fca9762002-07-30 00:22:34 +0000150 return Changed;
151}
152
Chris Lattnerb28986f2001-06-30 06:39:11 +0000153
Chris Lattneree967712003-06-24 23:02:45 +0000154/// convertToUnconditionalBranch - Transform this conditional terminator
155/// instruction into an unconditional branch because we don't care which of the
156/// successors it goes to. This eliminate a use of the condition as well.
157///
158TerminatorInst *ADCE::convertToUnconditionalBranch(TerminatorInst *TI) {
159 BranchInst *NB = new BranchInst(TI->getSuccessor(0), TI);
160 BasicBlock *BB = TI->getParent();
161
162 // Remove entries from PHI nodes to avoid confusing ourself later...
163 for (unsigned i = 1, e = TI->getNumSuccessors(); i != e; ++i)
164 TI->getSuccessor(i)->removePredecessor(BB);
Misha Brukmanb1c93172005-04-21 23:48:37 +0000165
Chris Lattneree967712003-06-24 23:02:45 +0000166 // Delete the old branch itself...
167 BB->getInstList().erase(TI);
168 return NB;
169}
170
171
Chris Lattnerc1496bda2002-05-07 22:11:39 +0000172// doADCE() - Run the Aggressive Dead Code Elimination algorithm, returning
Chris Lattnerc8e66542002-04-27 06:56:12 +0000173// true if the function was modified.
Chris Lattnerb28986f2001-06-30 06:39:11 +0000174//
Chris Lattner559f0ee2002-05-22 21:32:16 +0000175bool ADCE::doADCE() {
176 bool MadeChanges = false;
Chris Lattneracfd27d2001-09-09 22:26:47 +0000177
Chris Lattnerd95ef7e2004-04-10 18:06:21 +0000178 AliasAnalysis &AA = getAnalysis<AliasAnalysis>();
179
180
181 // Iterate over all invokes in the function, turning invokes into calls if
182 // they cannot throw.
183 for (Function::iterator BB = Func->begin(), E = Func->end(); BB != E; ++BB)
184 if (InvokeInst *II = dyn_cast<InvokeInst>(BB->getTerminator()))
185 if (Function *F = II->getCalledFunction())
186 if (AA.onlyReadsMemory(F)) {
187 // The function cannot unwind. Convert it to a call with a branch
188 // after it to the normal destination.
189 std::vector<Value*> Args(II->op_begin()+3, II->op_end());
190 std::string Name = II->getName(); II->setName("");
191 Instruction *NewCall = new CallInst(F, Args, Name, II);
192 II->replaceAllUsesWith(NewCall);
193 new BranchInst(II->getNormalDest(), II);
194
195 // Update PHI nodes in the unwind destination
196 II->getUnwindDest()->removePredecessor(BB);
197 BB->getInstList().erase(II);
198
199 if (NewCall->use_empty()) {
200 BB->getInstList().erase(NewCall);
201 ++NumCallRemoved;
202 }
203 }
204
Chris Lattnerc8e66542002-04-27 06:56:12 +0000205 // Iterate over all of the instructions in the function, eliminating trivially
Misha Brukmanb1c93172005-04-21 23:48:37 +0000206 // dead instructions, and marking instructions live that are known to be
Chris Lattneracfd27d2001-09-09 22:26:47 +0000207 // needed. Perform the walk in depth first order so that we avoid marking any
208 // instructions live in basic blocks that are unreachable. These blocks will
209 // be eliminated later, along with the instructions inside.
210 //
Chris Lattner94908492004-05-04 17:00:46 +0000211 std::set<BasicBlock*> ReachableBBs;
212 for (df_ext_iterator<BasicBlock*>
213 BBI = df_ext_begin(&Func->front(), ReachableBBs),
214 BBE = df_ext_end(&Func->front(), ReachableBBs); BBI != BBE; ++BBI) {
Chris Lattneracfd27d2001-09-09 22:26:47 +0000215 BasicBlock *BB = *BBI;
216 for (BasicBlock::iterator II = BB->begin(), EI = BB->end(); II != EI; ) {
Chris Lattnercfa1adc2004-04-10 06:53:09 +0000217 Instruction *I = II++;
218 if (CallInst *CI = dyn_cast<CallInst>(I)) {
219 Function *F = CI->getCalledFunction();
Chris Lattnerd95ef7e2004-04-10 18:06:21 +0000220 if (F && AA.onlyReadsMemory(F)) {
Chris Lattnercfa1adc2004-04-10 06:53:09 +0000221 if (CI->use_empty()) {
222 BB->getInstList().erase(CI);
223 ++NumCallRemoved;
224 }
225 } else {
226 markInstructionLive(I);
227 }
Chris Lattnercfa1adc2004-04-10 06:53:09 +0000228 } else if (I->mayWriteToMemory() || isa<ReturnInst>(I) ||
Chris Lattner6a792fe2004-10-17 23:45:06 +0000229 isa<UnwindInst>(I) || isa<UnreachableInst>(I)) {
230 // FIXME: Unreachable instructions should not be marked intrinsically
231 // live here.
Chris Lattnercfa1adc2004-04-10 06:53:09 +0000232 markInstructionLive(I);
233 } else if (isInstructionTriviallyDead(I)) {
Chris Lattnerc1496bda2002-05-07 22:11:39 +0000234 // Remove the instruction from it's basic block...
Chris Lattnercfa1adc2004-04-10 06:53:09 +0000235 BB->getInstList().erase(I);
Chris Lattner559f0ee2002-05-22 21:32:16 +0000236 ++NumInstRemoved;
Chris Lattneracfd27d2001-09-09 22:26:47 +0000237 }
Chris Lattneracfd27d2001-09-09 22:26:47 +0000238 }
239 }
240
Chris Lattnerdc62f1e2003-06-16 12:10:45 +0000241 // Check to ensure we have an exit node for this CFG. If we don't, we won't
242 // have any post-dominance information, thus we cannot perform our
243 // transformations safely.
244 //
245 PostDominatorTree &DT = getAnalysis<PostDominatorTree>();
Chris Lattner5dac64f2003-09-20 14:39:18 +0000246 if (DT[&Func->getEntryBlock()] == 0) {
Chris Lattnerdc62f1e2003-06-16 12:10:45 +0000247 WorkList.clear();
248 return MadeChanges;
249 }
250
Chris Lattner841dd532003-11-16 21:39:27 +0000251 // Scan the function marking blocks without post-dominance information as
252 // live. Blocks without post-dominance information occur when there is an
253 // infinite loop in the program. Because the infinite loop could contain a
254 // function which unwinds, exits or has side-effects, we don't want to delete
255 // the infinite loop or those blocks leading up to it.
256 for (Function::iterator I = Func->begin(), E = Func->end(); I != E; ++I)
Chris Lattner7b5d9e22005-02-17 19:28:49 +0000257 if (DT[I] == 0 && ReachableBBs.count(I))
Chris Lattner841dd532003-11-16 21:39:27 +0000258 for (pred_iterator PI = pred_begin(I), E = pred_end(I); PI != E; ++PI)
259 markInstructionLive((*PI)->getTerminator());
260
Chris Lattner8d0a71a2003-05-22 22:00:07 +0000261 DEBUG(std::cerr << "Processing work list\n");
Chris Lattnerb28986f2001-06-30 06:39:11 +0000262
Chris Lattnerfb8ed0c2001-07-08 18:38:36 +0000263 // AliveBlocks - Set of basic blocks that we know have instructions that are
264 // alive in them...
265 //
Chris Lattner7f74a562002-01-20 22:54:45 +0000266 std::set<BasicBlock*> AliveBlocks;
Chris Lattnerfb8ed0c2001-07-08 18:38:36 +0000267
Chris Lattnerb28986f2001-06-30 06:39:11 +0000268 // Process the work list of instructions that just became live... if they
Misha Brukman7eb05a12003-08-18 14:43:39 +0000269 // became live, then that means that all of their operands are necessary as
Chris Lattnerb28986f2001-06-30 06:39:11 +0000270 // well... make them live as well.
271 //
272 while (!WorkList.empty()) {
Chris Lattnerfb8ed0c2001-07-08 18:38:36 +0000273 Instruction *I = WorkList.back(); // Get an instruction that became live...
Chris Lattnerb28986f2001-06-30 06:39:11 +0000274 WorkList.pop_back();
275
Chris Lattnerfb8ed0c2001-07-08 18:38:36 +0000276 BasicBlock *BB = I->getParent();
Chris Lattner94908492004-05-04 17:00:46 +0000277 if (!ReachableBBs.count(BB)) continue;
Chris Lattnerd4298782004-12-12 22:22:18 +0000278 if (AliveBlocks.insert(BB).second) // Basic block not alive yet.
Chris Lattner559f0ee2002-05-22 21:32:16 +0000279 markBlockAlive(BB); // Make it so now!
Chris Lattnerfb8ed0c2001-07-08 18:38:36 +0000280
Chris Lattner559f0ee2002-05-22 21:32:16 +0000281 // PHI nodes are a special case, because the incoming values are actually
282 // defined in the predecessor nodes of this block, meaning that the PHI
283 // makes the predecessors alive.
284 //
Chris Lattner7b5d9e22005-02-17 19:28:49 +0000285 if (PHINode *PN = dyn_cast<PHINode>(I)) {
286 for (unsigned i = 0, e = PN->getNumIncomingValues(); i != e; ++i) {
287 // If the incoming edge is clearly dead, it won't have control
288 // dependence information. Do not mark it live.
289 BasicBlock *PredBB = PN->getIncomingBlock(i);
290 if (ReachableBBs.count(PredBB)) {
291 // FIXME: This should mark the control dependent edge as live, not
292 // necessarily the predecessor itself!
293 if (AliveBlocks.insert(PredBB).second)
294 markBlockAlive(PN->getIncomingBlock(i)); // Block is newly ALIVE!
295 if (Instruction *Op = dyn_cast<Instruction>(PN->getIncomingValue(i)))
296 markInstructionLive(Op);
297 }
298 }
299 } else {
300 // Loop over all of the operands of the live instruction, making sure that
301 // they are known to be alive as well.
302 //
303 for (unsigned op = 0, End = I->getNumOperands(); op != End; ++op)
304 if (Instruction *Operand = dyn_cast<Instruction>(I->getOperand(op)))
305 markInstructionLive(Operand);
306 }
Chris Lattnerb28986f2001-06-30 06:39:11 +0000307 }
308
Chris Lattner8d0a71a2003-05-22 22:00:07 +0000309 DEBUG(
310 std::cerr << "Current Function: X = Live\n";
Chris Lattnerdc62f1e2003-06-16 12:10:45 +0000311 for (Function::iterator I = Func->begin(), E = Func->end(); I != E; ++I){
312 std::cerr << I->getName() << ":\t"
313 << (AliveBlocks.count(I) ? "LIVE\n" : "DEAD\n");
Chris Lattner113f4f42002-06-25 16:13:24 +0000314 for (BasicBlock::iterator BI = I->begin(), BE = I->end(); BI != BE; ++BI){
Chris Lattner8d0a71a2003-05-22 22:00:07 +0000315 if (LiveSet.count(BI)) std::cerr << "X ";
316 std::cerr << *BI;
Chris Lattner71cbd422002-05-22 17:17:27 +0000317 }
Chris Lattnerdc62f1e2003-06-16 12:10:45 +0000318 });
Chris Lattneracfd27d2001-09-09 22:26:47 +0000319
Chris Lattnera199e3c2004-12-12 23:49:37 +0000320 // All blocks being live is a common case, handle it specially.
Chris Lattner33fca9762002-07-30 00:22:34 +0000321 if (AliveBlocks.size() == Func->size()) { // No dead blocks?
Chris Lattneree967712003-06-24 23:02:45 +0000322 for (Function::iterator I = Func->begin(), E = Func->end(); I != E; ++I) {
Chris Lattner14d07db2004-12-12 23:40:17 +0000323 // Loop over all of the instructions in the function deleting instructions
324 // to drop their references.
325 deleteDeadInstructionsInLiveBlock(I);
Chris Lattneree967712003-06-24 23:02:45 +0000326
327 // Check to make sure the terminator instruction is live. If it isn't,
328 // this means that the condition that it branches on (we know it is not an
329 // unconditional branch), is not needed to make the decision of where to
330 // go to, because all outgoing edges go to the same place. We must remove
331 // the use of the condition (because it's probably dead), so we convert
Chris Lattnera199e3c2004-12-12 23:49:37 +0000332 // the terminator to an unconditional branch.
Chris Lattneree967712003-06-24 23:02:45 +0000333 //
334 TerminatorInst *TI = I->getTerminator();
335 if (!LiveSet.count(TI))
336 convertToUnconditionalBranch(TI);
337 }
Chris Lattnera199e3c2004-12-12 23:49:37 +0000338
339 return MadeChanges;
340 }
Misha Brukmanb1c93172005-04-21 23:48:37 +0000341
Chris Lattnera199e3c2004-12-12 23:49:37 +0000342
343 // If the entry node is dead, insert a new entry node to eliminate the entry
344 // node as a special case.
345 //
346 if (!AliveBlocks.count(&Func->front())) {
347 BasicBlock *NewEntry = new BasicBlock();
348 new BranchInst(&Func->front(), NewEntry);
349 Func->getBasicBlockList().push_front(NewEntry);
350 AliveBlocks.insert(NewEntry); // This block is always alive!
351 LiveSet.insert(NewEntry->getTerminator()); // The branch is live
352 }
Misha Brukmanb1c93172005-04-21 23:48:37 +0000353
Chris Lattnera199e3c2004-12-12 23:49:37 +0000354 // Loop over all of the alive blocks in the function. If any successor
355 // blocks are not alive, we adjust the outgoing branches to branch to the
356 // first live postdominator of the live block, adjusting any PHI nodes in
357 // the block to reflect this.
358 //
359 for (Function::iterator I = Func->begin(), E = Func->end(); I != E; ++I)
360 if (AliveBlocks.count(I)) {
361 BasicBlock *BB = I;
362 TerminatorInst *TI = BB->getTerminator();
Misha Brukmanb1c93172005-04-21 23:48:37 +0000363
Chris Lattnera199e3c2004-12-12 23:49:37 +0000364 // If the terminator instruction is alive, but the block it is contained
365 // in IS alive, this means that this terminator is a conditional branch on
366 // a condition that doesn't matter. Make it an unconditional branch to
367 // ONE of the successors. This has the side effect of dropping a use of
368 // the conditional value, which may also be dead.
369 if (!LiveSet.count(TI))
370 TI = convertToUnconditionalBranch(TI);
Chris Lattner83410552003-06-24 21:49:45 +0000371
Chris Lattnera199e3c2004-12-12 23:49:37 +0000372 // Loop over all of the successors, looking for ones that are not alive.
373 // We cannot save the number of successors in the terminator instruction
Chris Lattner7b5d9e22005-02-17 19:28:49 +0000374 // here because we may remove them if we don't have a postdominator.
Chris Lattnera199e3c2004-12-12 23:49:37 +0000375 //
376 for (unsigned i = 0; i != TI->getNumSuccessors(); ++i)
377 if (!AliveBlocks.count(TI->getSuccessor(i))) {
378 // Scan up the postdominator tree, looking for the first
379 // postdominator that is alive, and the last postdominator that is
380 // dead...
381 //
382 PostDominatorTree::Node *LastNode = DT[TI->getSuccessor(i)];
Chris Lattner7b5d9e22005-02-17 19:28:49 +0000383 PostDominatorTree::Node *NextNode = 0;
Chris Lattnera199e3c2004-12-12 23:49:37 +0000384
Chris Lattner7b5d9e22005-02-17 19:28:49 +0000385 if (LastNode) {
386 NextNode = LastNode->getIDom();
Chris Lattnera199e3c2004-12-12 23:49:37 +0000387 while (!AliveBlocks.count(NextNode->getBlock())) {
388 LastNode = NextNode;
389 NextNode = NextNode->getIDom();
Chris Lattner7b5d9e22005-02-17 19:28:49 +0000390 if (NextNode == 0) {
391 LastNode = 0;
392 break;
393 }
Chris Lattnera199e3c2004-12-12 23:49:37 +0000394 }
Misha Brukmanb1c93172005-04-21 23:48:37 +0000395 }
Chris Lattner7b5d9e22005-02-17 19:28:49 +0000396
397 // There is a special case here... if there IS no post-dominator for
398 // the block we have nowhere to point our branch to. Instead, convert
399 // it to a return. This can only happen if the code branched into an
400 // infinite loop. Note that this may not be desirable, because we
401 // _are_ altering the behavior of the code. This is a well known
402 // drawback of ADCE, so in the future if we choose to revisit the
403 // decision, this is where it should be.
404 //
405 if (LastNode == 0) { // No postdominator!
406 if (!isa<InvokeInst>(TI)) {
407 // Call RemoveSuccessor to transmogrify the terminator instruction
408 // to not contain the outgoing branch, or to create a new
409 // terminator if the form fundamentally changes (i.e.,
410 // unconditional branch to return). Note that this will change a
411 // branch into an infinite loop into a return instruction!
412 //
413 RemoveSuccessor(TI, i);
Misha Brukmanb1c93172005-04-21 23:48:37 +0000414
Chris Lattner7b5d9e22005-02-17 19:28:49 +0000415 // RemoveSuccessor may replace TI... make sure we have a fresh
416 // pointer.
417 //
418 TI = BB->getTerminator();
Misha Brukmanb1c93172005-04-21 23:48:37 +0000419
Chris Lattner7b5d9e22005-02-17 19:28:49 +0000420 // Rescan this successor...
421 --i;
422 } else {
423
424 }
425 } else {
Chris Lattnera199e3c2004-12-12 23:49:37 +0000426 // Get the basic blocks that we need...
427 BasicBlock *LastDead = LastNode->getBlock();
428 BasicBlock *NextAlive = NextNode->getBlock();
Chris Lattneree420b72002-07-29 22:31:39 +0000429
Chris Lattnera199e3c2004-12-12 23:49:37 +0000430 // Make the conditional branch now go to the next alive block...
431 TI->getSuccessor(i)->removePredecessor(BB);
432 TI->setSuccessor(i, NextAlive);
Chris Lattneree420b72002-07-29 22:31:39 +0000433
Chris Lattnera199e3c2004-12-12 23:49:37 +0000434 // If there are PHI nodes in NextAlive, we need to add entries to
435 // the PHI nodes for the new incoming edge. The incoming values
436 // should be identical to the incoming values for LastDead.
437 //
438 for (BasicBlock::iterator II = NextAlive->begin();
439 isa<PHINode>(II); ++II) {
440 PHINode *PN = cast<PHINode>(II);
441 if (LiveSet.count(PN)) { // Only modify live phi nodes
442 // Get the incoming value for LastDead...
443 int OldIdx = PN->getBasicBlockIndex(LastDead);
444 assert(OldIdx != -1 &&"LastDead is not a pred of NextAlive!");
445 Value *InVal = PN->getIncomingValue(OldIdx);
Misha Brukmanb1c93172005-04-21 23:48:37 +0000446
Chris Lattnera199e3c2004-12-12 23:49:37 +0000447 // Add an incoming value for BB now...
448 PN->addIncoming(InVal, BB);
Reid Spencer66149462004-09-15 17:06:42 +0000449 }
Chris Lattner559f0ee2002-05-22 21:32:16 +0000450 }
451 }
Chris Lattnera199e3c2004-12-12 23:49:37 +0000452 }
Chris Lattnerbad1b4d2002-05-10 15:37:35 +0000453
Chris Lattnera199e3c2004-12-12 23:49:37 +0000454 // Now loop over all of the instructions in the basic block, deleting
455 // dead instructions. This is so that the next sweep over the program
456 // can safely delete dead instructions without other dead instructions
457 // still referring to them.
458 //
459 deleteDeadInstructionsInLiveBlock(BB);
460 }
Chris Lattneracfd27d2001-09-09 22:26:47 +0000461
Chris Lattner6fa16292003-01-23 02:12:18 +0000462 // Loop over all of the basic blocks in the function, dropping references of
463 // the dead basic blocks. We must do this after the previous step to avoid
464 // dropping references to PHIs which still have entries...
465 //
Chris Lattner14d07db2004-12-12 23:40:17 +0000466 std::vector<BasicBlock*> DeadBlocks;
Chris Lattner6fa16292003-01-23 02:12:18 +0000467 for (Function::iterator BB = Func->begin(), E = Func->end(); BB != E; ++BB)
Chris Lattner14d07db2004-12-12 23:40:17 +0000468 if (!AliveBlocks.count(BB)) {
469 // Remove PHI node entries for this block in live successor blocks.
470 for (succ_iterator SI = succ_begin(BB), E = succ_end(BB); SI != E; ++SI)
471 if (!SI->empty() && isa<PHINode>(SI->front()) && AliveBlocks.count(*SI))
472 (*SI)->removePredecessor(BB);
473
Chris Lattner6fa16292003-01-23 02:12:18 +0000474 BB->dropAllReferences();
Chris Lattner14d07db2004-12-12 23:40:17 +0000475 MadeChanges = true;
476 DeadBlocks.push_back(BB);
477 }
478
479 NumBlockRemoved += DeadBlocks.size();
Chris Lattnerbad1b4d2002-05-10 15:37:35 +0000480
Chris Lattner194138c2002-05-28 21:38:16 +0000481 // Now loop through all of the blocks and delete the dead ones. We can safely
482 // do this now because we know that there are no references to dead blocks
Chris Lattner14d07db2004-12-12 23:40:17 +0000483 // (because they have dropped all of their references).
484 for (std::vector<BasicBlock*>::iterator I = DeadBlocks.begin(),
485 E = DeadBlocks.end(); I != E; ++I)
486 Func->getBasicBlockList().erase(*I);
Chris Lattnerbad1b4d2002-05-10 15:37:35 +0000487
Chris Lattner559f0ee2002-05-22 21:32:16 +0000488 return MadeChanges;
Chris Lattnerb28986f2001-06-30 06:39:11 +0000489}