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Owen Anderson0396cd32008-04-29 20:06:54 +00001//===- LoopDeletion.cpp - Dead Loop Deletion Pass ---------------===//
Owen Anderson0ff77082008-04-29 00:38:34 +00002//
3// The LLVM Compiler Infrastructure
4//
5// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
9//
Gordon Henriksena8a118b2008-05-08 17:46:35 +000010// This file implements the Dead Loop Deletion Pass. This pass is responsible
11// for eliminating loops with non-infinite computable trip counts that have no
12// side effects or volatile instructions, and do not contribute to the
13// computation of the function's return value.
Owen Anderson0ff77082008-04-29 00:38:34 +000014//
15//===----------------------------------------------------------------------===//
16
Owen Anderson0396cd32008-04-29 20:06:54 +000017#define DEBUG_TYPE "loop-delete"
Owen Anderson0ff77082008-04-29 00:38:34 +000018
19#include "llvm/Transforms/Scalar.h"
Owen Anderson0ff77082008-04-29 00:38:34 +000020#include "llvm/Analysis/LoopPass.h"
Owen Anderson0db198d2008-05-16 04:32:45 +000021#include "llvm/Analysis/ScalarEvolution.h"
Owen Anderson0ff77082008-04-29 00:38:34 +000022#include "llvm/ADT/Statistic.h"
23#include "llvm/ADT/SmallVector.h"
24
25using namespace llvm;
26
27STATISTIC(NumDeleted, "Number of loops deleted");
28
29namespace {
Owen Anderson0396cd32008-04-29 20:06:54 +000030 class VISIBILITY_HIDDEN LoopDeletion : public LoopPass {
Owen Anderson0ff77082008-04-29 00:38:34 +000031 public:
32 static char ID; // Pass ID, replacement for typeid
Dan Gohmanae73dc12008-09-04 17:05:41 +000033 LoopDeletion() : LoopPass(&ID) {}
Owen Anderson0ff77082008-04-29 00:38:34 +000034
35 // Possibly eliminate loop L if it is dead.
36 bool runOnLoop(Loop* L, LPPassManager& LPM);
37
Owen Anderson9862f312008-04-29 20:59:33 +000038 bool SingleDominatingExit(Loop* L,
39 SmallVector<BasicBlock*, 4>& exitingBlocks);
40 bool IsLoopDead(Loop* L, SmallVector<BasicBlock*, 4>& exitingBlocks,
Dan Gohmanbdc017e2009-07-15 01:25:43 +000041 SmallVector<BasicBlock*, 4>& exitBlocks,
42 bool &Changed, BasicBlock *Preheader);
43
Owen Anderson0ff77082008-04-29 00:38:34 +000044 virtual void getAnalysisUsage(AnalysisUsage& AU) const {
Owen Anderson0db198d2008-05-16 04:32:45 +000045 AU.addRequired<ScalarEvolution>();
Owen Anderson0ff77082008-04-29 00:38:34 +000046 AU.addRequired<DominatorTree>();
47 AU.addRequired<LoopInfo>();
48 AU.addRequiredID(LoopSimplifyID);
49 AU.addRequiredID(LCSSAID);
50
Owen Anderson0db198d2008-05-16 04:32:45 +000051 AU.addPreserved<ScalarEvolution>();
Owen Anderson0ff77082008-04-29 00:38:34 +000052 AU.addPreserved<DominatorTree>();
53 AU.addPreserved<LoopInfo>();
54 AU.addPreservedID(LoopSimplifyID);
55 AU.addPreservedID(LCSSAID);
Dan Gohmand0a90b92009-02-24 01:21:53 +000056 AU.addPreserved<DominanceFrontier>();
Owen Anderson0ff77082008-04-29 00:38:34 +000057 }
58 };
Owen Anderson0ff77082008-04-29 00:38:34 +000059}
Dan Gohman844731a2008-05-13 00:00:25 +000060
61char LoopDeletion::ID = 0;
62static RegisterPass<LoopDeletion> X("loop-deletion", "Delete dead loops");
Owen Anderson0ff77082008-04-29 00:38:34 +000063
Daniel Dunbar394f0442008-10-22 23:32:42 +000064Pass* llvm::createLoopDeletionPass() {
Owen Anderson0396cd32008-04-29 20:06:54 +000065 return new LoopDeletion();
Owen Anderson0ff77082008-04-29 00:38:34 +000066}
67
Owen Anderson9862f312008-04-29 20:59:33 +000068/// SingleDominatingExit - Checks that there is only a single blocks that
Owen Anderson0db198d2008-05-16 04:32:45 +000069/// branches out of the loop, and that it also g the latch block. Loops
Owen Anderson9862f312008-04-29 20:59:33 +000070/// with multiple or non-latch-dominating exiting blocks could be dead, but we'd
71/// have to do more extensive analysis to make sure, for instance, that the
Owen Anderson0db198d2008-05-16 04:32:45 +000072/// control flow logic involved was or could be made loop-invariant.
Owen Anderson9862f312008-04-29 20:59:33 +000073bool LoopDeletion::SingleDominatingExit(Loop* L,
74 SmallVector<BasicBlock*, 4>& exitingBlocks) {
Owen Anderson0ff77082008-04-29 00:38:34 +000075
76 if (exitingBlocks.size() != 1)
Owen Anderson9862f312008-04-29 20:59:33 +000077 return false;
Owen Anderson0ff77082008-04-29 00:38:34 +000078
79 BasicBlock* latch = L->getLoopLatch();
80 if (!latch)
Owen Anderson9862f312008-04-29 20:59:33 +000081 return false;
Owen Anderson0ff77082008-04-29 00:38:34 +000082
83 DominatorTree& DT = getAnalysis<DominatorTree>();
Owen Anderson0db198d2008-05-16 04:32:45 +000084 return DT.dominates(exitingBlocks[0], latch);
Owen Anderson0ff77082008-04-29 00:38:34 +000085}
86
Owen Anderson9862f312008-04-29 20:59:33 +000087/// IsLoopDead - Determined if a loop is dead. This assumes that we've already
88/// checked for unique exit and exiting blocks, and that the code is in LCSSA
89/// form.
90bool LoopDeletion::IsLoopDead(Loop* L,
91 SmallVector<BasicBlock*, 4>& exitingBlocks,
Dan Gohmanbdc017e2009-07-15 01:25:43 +000092 SmallVector<BasicBlock*, 4>& exitBlocks,
93 bool &Changed, BasicBlock *Preheader) {
Owen Anderson0ff77082008-04-29 00:38:34 +000094 BasicBlock* exitingBlock = exitingBlocks[0];
Owen Anderson0ff77082008-04-29 00:38:34 +000095 BasicBlock* exitBlock = exitBlocks[0];
96
97 // Make sure that all PHI entries coming from the loop are loop invariant.
Owen Anderson9862f312008-04-29 20:59:33 +000098 // Because the code is in LCSSA form, any values used outside of the loop
99 // must pass through a PHI in the exit block, meaning that this check is
100 // sufficient to guarantee that no loop-variant values are used outside
101 // of the loop.
Owen Anderson0ff77082008-04-29 00:38:34 +0000102 BasicBlock::iterator BI = exitBlock->begin();
103 while (PHINode* P = dyn_cast<PHINode>(BI)) {
104 Value* incoming = P->getIncomingValueForBlock(exitingBlock);
105 if (Instruction* I = dyn_cast<Instruction>(incoming))
Dan Gohmanbdc017e2009-07-15 01:25:43 +0000106 if (!L->makeLoopInvariant(I, Changed, Preheader->getTerminator()))
Owen Anderson0ff77082008-04-29 00:38:34 +0000107 return false;
108
109 BI++;
110 }
111
112 // Make sure that no instructions in the block have potential side-effects.
Owen Anderson9862f312008-04-29 20:59:33 +0000113 // This includes instructions that could write to memory, and loads that are
114 // marked volatile. This could be made more aggressive by using aliasing
115 // information to identify readonly and readnone calls.
Owen Anderson0ff77082008-04-29 00:38:34 +0000116 for (Loop::block_iterator LI = L->block_begin(), LE = L->block_end();
117 LI != LE; ++LI) {
118 for (BasicBlock::iterator BI = (*LI)->begin(), BE = (*LI)->end();
119 BI != BE; ++BI) {
Duncan Sands7af1c782009-05-06 06:49:50 +0000120 if (BI->mayHaveSideEffects())
Owen Anderson0ff77082008-04-29 00:38:34 +0000121 return false;
122 }
123 }
124
125 return true;
126}
127
Owen Anderson5f8b3442008-04-29 06:34:55 +0000128/// runOnLoop - Remove dead loops, by which we mean loops that do not impact the
129/// observable behavior of the program other than finite running time. Note
130/// we do ensure that this never remove a loop that might be infinite, as doing
131/// so could change the halting/non-halting nature of a program.
Owen Anderson9862f312008-04-29 20:59:33 +0000132/// NOTE: This entire process relies pretty heavily on LoopSimplify and LCSSA
133/// in order to make various safety checks work.
Owen Anderson0396cd32008-04-29 20:06:54 +0000134bool LoopDeletion::runOnLoop(Loop* L, LPPassManager& LPM) {
Owen Anderson0ff77082008-04-29 00:38:34 +0000135 // We can only remove the loop if there is a preheader that we can
136 // branch from after removing it.
137 BasicBlock* preheader = L->getLoopPreheader();
138 if (!preheader)
139 return false;
140
141 // We can't remove loops that contain subloops. If the subloops were dead,
142 // they would already have been removed in earlier executions of this pass.
143 if (L->begin() != L->end())
144 return false;
145
Owen Anderson0db198d2008-05-16 04:32:45 +0000146 SmallVector<BasicBlock*, 4> exitingBlocks;
147 L->getExitingBlocks(exitingBlocks);
148
149 SmallVector<BasicBlock*, 4> exitBlocks;
150 L->getUniqueExitBlocks(exitBlocks);
151
152 // We require that the loop only have a single exit block. Otherwise, we'd
153 // be in the situation of needing to be able to solve statically which exit
154 // block will be branched to, or trying to preserve the branching logic in
155 // a loop invariant manner.
156 if (exitBlocks.size() != 1)
Owen Anderson9862f312008-04-29 20:59:33 +0000157 return false;
158
Owen Anderson0ff77082008-04-29 00:38:34 +0000159 // Loops with multiple exits or exits that don't dominate the latch
160 // are too complicated to handle correctly.
Owen Anderson9862f312008-04-29 20:59:33 +0000161 if (!SingleDominatingExit(L, exitingBlocks))
Owen Anderson0ff77082008-04-29 00:38:34 +0000162 return false;
163
164 // Finally, we have to check that the loop really is dead.
Dan Gohmanbdc017e2009-07-15 01:25:43 +0000165 bool Changed = false;
166 if (!IsLoopDead(L, exitingBlocks, exitBlocks, Changed, preheader))
167 return Changed;
Owen Anderson0ff77082008-04-29 00:38:34 +0000168
Owen Anderson0db198d2008-05-16 04:32:45 +0000169 // Don't remove loops for which we can't solve the trip count.
170 // They could be infinite, in which case we'd be changing program behavior.
171 ScalarEvolution& SE = getAnalysis<ScalarEvolution>();
Dan Gohman0bba49c2009-07-07 17:06:11 +0000172 const SCEV *S = SE.getBackedgeTakenCount(L);
Owen Anderson0db198d2008-05-16 04:32:45 +0000173 if (isa<SCEVCouldNotCompute>(S))
Dan Gohmanbdc017e2009-07-15 01:25:43 +0000174 return Changed;
Owen Anderson0db198d2008-05-16 04:32:45 +0000175
Owen Anderson9862f312008-04-29 20:59:33 +0000176 // Now that we know the removal is safe, remove the loop by changing the
Owen Anderson8b23bb72008-05-06 20:55:16 +0000177 // branch from the preheader to go to the single exit block.
Owen Anderson0ff77082008-04-29 00:38:34 +0000178 BasicBlock* exitBlock = exitBlocks[0];
Owen Anderson8b23bb72008-05-06 20:55:16 +0000179 BasicBlock* exitingBlock = exitingBlocks[0];
Owen Anderson0ff77082008-04-29 00:38:34 +0000180
Owen Andersone54cfdb2008-04-29 00:45:15 +0000181 // Because we're deleting a large chunk of code at once, the sequence in which
182 // we remove things is very important to avoid invalidation issues. Don't
183 // mess with this unless you have good reason and know what you're doing.
Dan Gohman85ebb0f2009-07-08 19:14:29 +0000184
185 // Tell ScalarEvolution that the loop is deleted. Do this before
186 // deleting the loop so that ScalarEvolution can look at the loop
187 // to determine what it needs to clean up.
188 SE.forgetLoopBackedgeTakenCount(L);
189
Owen Andersone54cfdb2008-04-29 00:45:15 +0000190 // Connect the preheader directly to the exit block.
Owen Anderson0ff77082008-04-29 00:38:34 +0000191 TerminatorInst* TI = preheader->getTerminator();
Owen Anderson9862f312008-04-29 20:59:33 +0000192 TI->replaceUsesOfWith(L->getHeader(), exitBlock);
193
Owen Andersone54cfdb2008-04-29 00:45:15 +0000194 // Rewrite phis in the exit block to get their inputs from
195 // the preheader instead of the exiting block.
Owen Anderson0ff77082008-04-29 00:38:34 +0000196 BasicBlock::iterator BI = exitBlock->begin();
197 while (PHINode* P = dyn_cast<PHINode>(BI)) {
Owen Anderson8b23bb72008-05-06 20:55:16 +0000198 P->replaceUsesOfWith(exitingBlock, preheader);
Owen Anderson0ff77082008-04-29 00:38:34 +0000199 BI++;
200 }
201
Owen Anderson9862f312008-04-29 20:59:33 +0000202 // Update the dominator tree and remove the instructions and blocks that will
203 // be deleted from the reference counting scheme.
Owen Anderson0ff77082008-04-29 00:38:34 +0000204 DominatorTree& DT = getAnalysis<DominatorTree>();
Dan Gohmand0a90b92009-02-24 01:21:53 +0000205 DominanceFrontier* DF = getAnalysisIfAvailable<DominanceFrontier>();
Owen Anderson9862f312008-04-29 20:59:33 +0000206 SmallPtrSet<DomTreeNode*, 8> ChildNodes;
Owen Anderson0ff77082008-04-29 00:38:34 +0000207 for (Loop::block_iterator LI = L->block_begin(), LE = L->block_end();
208 LI != LE; ++LI) {
Owen Andersone54cfdb2008-04-29 00:45:15 +0000209 // Move all of the block's children to be children of the preheader, which
210 // allows us to remove the domtree entry for the block.
Owen Anderson9862f312008-04-29 20:59:33 +0000211 ChildNodes.insert(DT[*LI]->begin(), DT[*LI]->end());
212 for (SmallPtrSet<DomTreeNode*, 8>::iterator DI = ChildNodes.begin(),
Dan Gohmand0a90b92009-02-24 01:21:53 +0000213 DE = ChildNodes.end(); DI != DE; ++DI) {
Owen Anderson0ff77082008-04-29 00:38:34 +0000214 DT.changeImmediateDominator(*DI, DT[preheader]);
Dan Gohmand0a90b92009-02-24 01:21:53 +0000215 if (DF) DF->changeImmediateDominator((*DI)->getBlock(), preheader, &DT);
216 }
Owen Anderson0ff77082008-04-29 00:38:34 +0000217
Owen Anderson9862f312008-04-29 20:59:33 +0000218 ChildNodes.clear();
Owen Anderson0ff77082008-04-29 00:38:34 +0000219 DT.eraseNode(*LI);
Dan Gohmand0a90b92009-02-24 01:21:53 +0000220 if (DF) DF->removeBlock(*LI);
221
Owen Anderson0db198d2008-05-16 04:32:45 +0000222 // Remove the block from the reference counting scheme, so that we can
223 // delete it freely later.
Owen Anderson0ff77082008-04-29 00:38:34 +0000224 (*LI)->dropAllReferences();
225 }
226
Owen Andersone54cfdb2008-04-29 00:45:15 +0000227 // Erase the instructions and the blocks without having to worry
228 // about ordering because we already dropped the references.
Owen Anderson9862f312008-04-29 20:59:33 +0000229 // NOTE: This iteration is safe because erasing the block does not remove its
230 // entry from the loop's block list. We do that in the next section.
Owen Anderson0ff77082008-04-29 00:38:34 +0000231 for (Loop::block_iterator LI = L->block_begin(), LE = L->block_end();
Owen Andersoncd5e6dd2008-05-29 08:15:48 +0000232 LI != LE; ++LI)
Owen Anderson0ff77082008-04-29 00:38:34 +0000233 (*LI)->eraseFromParent();
Dan Gohmane2abdd32009-02-23 17:10:29 +0000234
Owen Andersone54cfdb2008-04-29 00:45:15 +0000235 // Finally, the blocks from loopinfo. This has to happen late because
236 // otherwise our loop iterators won't work.
Owen Anderson0ff77082008-04-29 00:38:34 +0000237 LoopInfo& loopInfo = getAnalysis<LoopInfo>();
238 SmallPtrSet<BasicBlock*, 8> blocks;
239 blocks.insert(L->block_begin(), L->block_end());
240 for (SmallPtrSet<BasicBlock*,8>::iterator I = blocks.begin(),
241 E = blocks.end(); I != E; ++I)
242 loopInfo.removeBlock(*I);
243
Owen Andersone54cfdb2008-04-29 00:45:15 +0000244 // The last step is to inform the loop pass manager that we've
245 // eliminated this loop.
Owen Anderson0ff77082008-04-29 00:38:34 +0000246 LPM.deleteLoopFromQueue(L);
Dan Gohmanbdc017e2009-07-15 01:25:43 +0000247 Changed = true;
Owen Anderson0ff77082008-04-29 00:38:34 +0000248
249 NumDeleted++;
250
Dan Gohmanbdc017e2009-07-15 01:25:43 +0000251 return Changed;
Owen Anderson0ff77082008-04-29 00:38:34 +0000252}