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Justin Bogner0638b7ba2015-09-25 21:03:46 +00001//===- ADCE.cpp - Code to perform dead code elimination -------------------===//
Misha Brukmanb1c93172005-04-21 23:48:37 +00002//
John Criswell482202a2003-10-20 19:43:21 +00003// The LLVM Compiler Infrastructure
4//
Chris Lattnerf3ebc3f2007-12-29 20:36:04 +00005// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
Misha Brukmanb1c93172005-04-21 23:48:37 +00007//
John Criswell482202a2003-10-20 19:43:21 +00008//===----------------------------------------------------------------------===//
Chris Lattnerb28986f2001-06-30 06:39:11 +00009//
Owen Anderson7686b552008-05-29 08:45:13 +000010// This file implements the Aggressive Dead Code Elimination pass. This pass
11// optimistically assumes that all instructions are dead until proven otherwise,
Nadav Rotem465834c2012-07-24 10:51:42 +000012// allowing it to eliminate dead computations that other DCE passes do not
Owen Anderson7686b552008-05-29 08:45:13 +000013// catch, particularly involving loop computations.
Chris Lattnerb28986f2001-06-30 06:39:11 +000014//
15//===----------------------------------------------------------------------===//
16
Justin Bogner19b67992015-10-30 23:13:18 +000017#include "llvm/Transforms/Scalar/ADCE.h"
David Callahancc5cd4d2016-08-03 04:28:39 +000018
Chandler Carruthed0881b2012-12-03 16:50:05 +000019#include "llvm/ADT/DepthFirstIterator.h"
David Callahanebcf9162016-12-13 16:42:18 +000020#include "llvm/ADT/PostOrderIterator.h"
Chandler Carruthed0881b2012-12-03 16:50:05 +000021#include "llvm/ADT/SmallPtrSet.h"
22#include "llvm/ADT/SmallVector.h"
23#include "llvm/ADT/Statistic.h"
James Molloyefbba722015-09-10 10:22:12 +000024#include "llvm/Analysis/GlobalsModRef.h"
David Callahan012d1c02016-08-24 00:10:06 +000025#include "llvm/Analysis/IteratedDominanceFrontier.h"
26#include "llvm/Analysis/PostDominators.h"
Chandler Carruth9fb823b2013-01-02 11:36:10 +000027#include "llvm/IR/BasicBlock.h"
Chandler Carruth1305dc32014-03-04 11:45:46 +000028#include "llvm/IR/CFG.h"
Duncan P. N. Exon Smithe8eb94a2016-03-29 22:57:12 +000029#include "llvm/IR/DebugInfoMetadata.h"
David Callahanebcf9162016-12-13 16:42:18 +000030#include "llvm/IR/IRBuilder.h"
Chandler Carruth83948572014-03-04 10:30:26 +000031#include "llvm/IR/InstIterator.h"
Chandler Carruth9fb823b2013-01-02 11:36:10 +000032#include "llvm/IR/Instructions.h"
33#include "llvm/IR/IntrinsicInst.h"
Owen Anderson7686b552008-05-29 08:45:13 +000034#include "llvm/Pass.h"
Betul Buyukkurtbf8554c2016-04-13 18:52:19 +000035#include "llvm/ProfileData/InstrProf.h"
Justin Bogner19b67992015-10-30 23:13:18 +000036#include "llvm/Transforms/Scalar.h"
Chris Lattnerfc7bdac2003-12-19 09:08:34 +000037using namespace llvm;
Brian Gaeke960707c2003-11-11 22:41:34 +000038
Chandler Carruth964daaa2014-04-22 02:55:47 +000039#define DEBUG_TYPE "adce"
40
Owen Anderson7686b552008-05-29 08:45:13 +000041STATISTIC(NumRemoved, "Number of instructions removed");
David Callahanebcf9162016-12-13 16:42:18 +000042STATISTIC(NumBranchesRemoved, "Number of branch instructions removed");
Chris Lattner019f3642002-05-06 17:27:57 +000043
Tobias Grosser335b6bf2017-03-14 10:18:11 +000044// This is a temporary option until we change the interface to this pass based
45// on optimization level.
David Callahan947be0f2016-08-16 14:31:51 +000046static cl::opt<bool> RemoveControlFlowFlag("adce-remove-control-flow",
David Callahanebcf9162016-12-13 16:42:18 +000047 cl::init(true), cl::Hidden);
48
49// This option enables removing of may-be-infinite loops which have no other
50// effect.
51static cl::opt<bool> RemoveLoops("adce-remove-loops", cl::init(false),
52 cl::Hidden);
David Callahan947be0f2016-08-16 14:31:51 +000053
David Callahancc5cd4d2016-08-03 04:28:39 +000054namespace {
David Callahan947be0f2016-08-16 14:31:51 +000055/// Information about Instructions
56struct InstInfoType {
57 /// True if the associated instruction is live.
58 bool Live = false;
59 /// Quick access to information for block containing associated Instruction.
60 struct BlockInfoType *Block = nullptr;
61};
62
63/// Information about basic blocks relevant to dead code elimination.
64struct BlockInfoType {
65 /// True when this block contains a live instructions.
66 bool Live = false;
67 /// True when this block ends in an unconditional branch.
68 bool UnconditionalBranch = false;
David Callahanc165a4e2016-09-19 23:17:58 +000069 /// True when this block is known to have live PHI nodes.
70 bool HasLivePhiNodes = false;
71 /// Control dependence sources need to be live for this block.
72 bool CFLive = false;
David Callahan947be0f2016-08-16 14:31:51 +000073
74 /// Quick access to the LiveInfo for the terminator,
75 /// holds the value &InstInfo[Terminator]
76 InstInfoType *TerminatorLiveInfo = nullptr;
77
78 bool terminatorIsLive() const { return TerminatorLiveInfo->Live; }
79
80 /// Corresponding BasicBlock.
81 BasicBlock *BB = nullptr;
82
David Callahanebcf9162016-12-13 16:42:18 +000083 /// Cache of BB->getTerminator().
David Callahan947be0f2016-08-16 14:31:51 +000084 TerminatorInst *Terminator = nullptr;
David Callahanebcf9162016-12-13 16:42:18 +000085
86 /// Post-order numbering of reverse control flow graph.
87 unsigned PostOrder;
David Callahan947be0f2016-08-16 14:31:51 +000088};
89
David Callahan45e442e2016-08-05 19:38:11 +000090class AggressiveDeadCodeElimination {
David Callahancc5cd4d2016-08-03 04:28:39 +000091 Function &F;
David Callahan012d1c02016-08-24 00:10:06 +000092 PostDominatorTree &PDT;
David Callahan947be0f2016-08-16 14:31:51 +000093
94 /// Mapping of blocks to associated information, an element in BlockInfoVec.
95 DenseMap<BasicBlock *, BlockInfoType> BlockInfo;
96 bool isLive(BasicBlock *BB) { return BlockInfo[BB].Live; }
97
98 /// Mapping of instructions to associated information.
99 DenseMap<Instruction *, InstInfoType> InstInfo;
100 bool isLive(Instruction *I) { return InstInfo[I].Live; }
101
David Callahan45e442e2016-08-05 19:38:11 +0000102 /// Instructions known to be live where we need to mark
103 /// reaching definitions as live.
David Callahancc5cd4d2016-08-03 04:28:39 +0000104 SmallVector<Instruction *, 128> Worklist;
David Callahan45e442e2016-08-05 19:38:11 +0000105 /// Debug info scopes around a live instruction.
David Callahancc5cd4d2016-08-03 04:28:39 +0000106 SmallPtrSet<const Metadata *, 32> AliveScopes;
David Callahan45e442e2016-08-05 19:38:11 +0000107
David Callahan947be0f2016-08-16 14:31:51 +0000108 /// Set of blocks with not known to have live terminators.
109 SmallPtrSet<BasicBlock *, 16> BlocksWithDeadTerminators;
110
David Callahanebcf9162016-12-13 16:42:18 +0000111 /// The set of blocks which we have determined whose control
112 /// dependence sources must be live and which have not had
Tobias Grosser335b6bf2017-03-14 10:18:11 +0000113 /// those dependences analyzed.
David Callahan947be0f2016-08-16 14:31:51 +0000114 SmallPtrSet<BasicBlock *, 16> NewLiveBlocks;
115
116 /// Set up auxiliary data structures for Instructions and BasicBlocks and
117 /// initialize the Worklist to the set of must-be-live Instruscions.
David Callahan45e442e2016-08-05 19:38:11 +0000118 void initialize();
David Callahan947be0f2016-08-16 14:31:51 +0000119 /// Return true for operations which are always treated as live.
David Callahan45e442e2016-08-05 19:38:11 +0000120 bool isAlwaysLive(Instruction &I);
David Callahan947be0f2016-08-16 14:31:51 +0000121 /// Return true for instrumentation instructions for value profiling.
David Callahan45e442e2016-08-05 19:38:11 +0000122 bool isInstrumentsConstant(Instruction &I);
David Callahan45e442e2016-08-05 19:38:11 +0000123
124 /// Propagate liveness to reaching definitions.
125 void markLiveInstructions();
126 /// Mark an instruction as live.
David Callahan947be0f2016-08-16 14:31:51 +0000127 void markLive(Instruction *I);
David Callahanebcf9162016-12-13 16:42:18 +0000128 /// Mark a block as live.
129 void markLive(BlockInfoType &BB);
130 void markLive(BasicBlock *BB) { markLive(BlockInfo[BB]); }
131
David Callahanc165a4e2016-09-19 23:17:58 +0000132 /// Mark terminators of control predecessors of a PHI node live.
133 void markPhiLive(PHINode *PN);
David Callahan947be0f2016-08-16 14:31:51 +0000134
135 /// Record the Debug Scopes which surround live debug information.
David Callahancc5cd4d2016-08-03 04:28:39 +0000136 void collectLiveScopes(const DILocalScope &LS);
137 void collectLiveScopes(const DILocation &DL);
David Callahan947be0f2016-08-16 14:31:51 +0000138
139 /// Analyze dead branches to find those whose branches are the sources
140 /// of control dependences impacting a live block. Those branches are
141 /// marked live.
142 void markLiveBranchesFromControlDependences();
David Callahan45e442e2016-08-05 19:38:11 +0000143
144 /// Remove instructions not marked live, return if any any instruction
145 /// was removed.
146 bool removeDeadInstructions();
147
Tobias Grosser335b6bf2017-03-14 10:18:11 +0000148 /// Identify connected sections of the control flow graph which have
David Callahanebcf9162016-12-13 16:42:18 +0000149 /// dead terminators and rewrite the control flow graph to remove them.
150 void updateDeadRegions();
151
152 /// Set the BlockInfo::PostOrder field based on a post-order
153 /// numbering of the reverse control flow graph.
154 void computeReversePostOrder();
155
156 /// Make the terminator of this block an unconditional branch to \p Target.
157 void makeUnconditional(BasicBlock *BB, BasicBlock *Target);
158
David Callahancc5cd4d2016-08-03 04:28:39 +0000159public:
David Callahan012d1c02016-08-24 00:10:06 +0000160 AggressiveDeadCodeElimination(Function &F, PostDominatorTree &PDT)
161 : F(F), PDT(PDT) {}
David Callahan45e442e2016-08-05 19:38:11 +0000162 bool performDeadCodeElimination();
David Callahancc5cd4d2016-08-03 04:28:39 +0000163};
164}
165
David Callahan45e442e2016-08-05 19:38:11 +0000166bool AggressiveDeadCodeElimination::performDeadCodeElimination() {
167 initialize();
168 markLiveInstructions();
169 return removeDeadInstructions();
Duncan P. N. Exon Smithe8eb94a2016-03-29 22:57:12 +0000170}
171
David Callahan947be0f2016-08-16 14:31:51 +0000172static bool isUnconditionalBranch(TerminatorInst *Term) {
David Callahanebcf9162016-12-13 16:42:18 +0000173 auto *BR = dyn_cast<BranchInst>(Term);
David Callahan947be0f2016-08-16 14:31:51 +0000174 return BR && BR->isUnconditional();
175}
176
David Callahan45e442e2016-08-05 19:38:11 +0000177void AggressiveDeadCodeElimination::initialize() {
David Callahan947be0f2016-08-16 14:31:51 +0000178
179 auto NumBlocks = F.size();
180
181 // We will have an entry in the map for each block so we grow the
182 // structure to twice that size to keep the load factor low in the hash table.
183 BlockInfo.reserve(NumBlocks);
184 size_t NumInsts = 0;
David Callahan012d1c02016-08-24 00:10:06 +0000185
David Callahan947be0f2016-08-16 14:31:51 +0000186 // Iterate over blocks and initialize BlockInfoVec entries, count
187 // instructions to size the InstInfo hash table.
188 for (auto &BB : F) {
189 NumInsts += BB.size();
190 auto &Info = BlockInfo[&BB];
191 Info.BB = &BB;
192 Info.Terminator = BB.getTerminator();
193 Info.UnconditionalBranch = isUnconditionalBranch(Info.Terminator);
194 }
195
196 // Initialize instruction map and set pointers to block info.
197 InstInfo.reserve(NumInsts);
198 for (auto &BBInfo : BlockInfo)
199 for (Instruction &I : *BBInfo.second.BB)
200 InstInfo[&I].Block = &BBInfo.second;
201
202 // Since BlockInfoVec holds pointers into InstInfo and vice-versa, we may not
203 // add any more elements to either after this point.
204 for (auto &BBInfo : BlockInfo)
205 BBInfo.second.TerminatorLiveInfo = &InstInfo[BBInfo.second.Terminator];
206
David Callahan45e442e2016-08-05 19:38:11 +0000207 // Collect the set of "root" instructions that are known live.
208 for (Instruction &I : instructions(F))
209 if (isAlwaysLive(I))
David Callahan947be0f2016-08-16 14:31:51 +0000210 markLive(&I);
211
212 if (!RemoveControlFlowFlag)
213 return;
214
David Callahanebcf9162016-12-13 16:42:18 +0000215 if (!RemoveLoops) {
216 // This stores state for the depth-first iterator. In addition
217 // to recording which nodes have been visited we also record whether
218 // a node is currently on the "stack" of active ancestors of the current
219 // node.
220 typedef DenseMap<BasicBlock *, bool> StatusMap ;
221 class DFState : public StatusMap {
222 public:
223 std::pair<StatusMap::iterator, bool> insert(BasicBlock *BB) {
224 return StatusMap::insert(std::make_pair(BB, true));
225 }
David Callahan947be0f2016-08-16 14:31:51 +0000226
David Callahanebcf9162016-12-13 16:42:18 +0000227 // Invoked after we have visited all children of a node.
228 void completed(BasicBlock *BB) { (*this)[BB] = false; }
229
230 // Return true if \p BB is currently on the active stack
231 // of ancestors.
232 bool onStack(BasicBlock *BB) {
233 auto Iter = find(BB);
234 return Iter != end() && Iter->second;
235 }
236 } State;
Taewook Ohd3f1ec92017-01-26 04:32:40 +0000237
David Callahanebcf9162016-12-13 16:42:18 +0000238 State.reserve(F.size());
239 // Iterate over blocks in depth-first pre-order and
240 // treat all edges to a block already seen as loop back edges
241 // and mark the branch live it if there is a back edge.
242 for (auto *BB: depth_first_ext(&F.getEntryBlock(), State)) {
243 TerminatorInst *Term = BB->getTerminator();
244 if (isLive(Term))
245 continue;
246
247 for (auto *Succ : successors(BB))
248 if (State.onStack(Succ)) {
249 // back edge....
250 markLive(Term);
251 break;
252 }
253 }
254 }
255
Tobias Grosserf818c332017-03-02 21:08:37 +0000256 // Mark blocks live if there is no path from the block to the
257 // return of the function or a successor for which this is true.
258 // This protects IDFCalculator which cannot handle such blocks.
259 for (auto &BBInfoPair : BlockInfo) {
260 auto &BBInfo = BBInfoPair.second;
261 if (BBInfo.terminatorIsLive())
262 continue;
263 auto *BB = BBInfo.BB;
264 if (!PDT.getNode(BB)) {
Tobias Grosserf818c332017-03-02 21:08:37 +0000265 DEBUG(dbgs() << "Not post-dominated by return: " << BB->getName()
266 << '\n';);
267 markLive(BBInfo.Terminator);
268 continue;
269 }
270 for (auto *Succ : successors(BB))
271 if (!PDT.getNode(Succ)) {
272 DEBUG(dbgs() << "Successor not post-dominated by return: "
273 << BB->getName() << '\n';);
274 markLive(BBInfo.Terminator);
275 break;
276 }
David Callahan012d1c02016-08-24 00:10:06 +0000277 }
David Callahan947be0f2016-08-16 14:31:51 +0000278
279 // Treat the entry block as always live
280 auto *BB = &F.getEntryBlock();
281 auto &EntryInfo = BlockInfo[BB];
282 EntryInfo.Live = true;
283 if (EntryInfo.UnconditionalBranch)
284 markLive(EntryInfo.Terminator);
285
286 // Build initial collection of blocks with dead terminators
287 for (auto &BBInfo : BlockInfo)
288 if (!BBInfo.second.terminatorIsLive())
289 BlocksWithDeadTerminators.insert(BBInfo.second.BB);
David Callahan45e442e2016-08-05 19:38:11 +0000290}
Duncan P. N. Exon Smithe8eb94a2016-03-29 22:57:12 +0000291
David Callahan45e442e2016-08-05 19:38:11 +0000292bool AggressiveDeadCodeElimination::isAlwaysLive(Instruction &I) {
David Callahan45e442e2016-08-05 19:38:11 +0000293 // TODO -- use llvm::isInstructionTriviallyDead
David Callahan947be0f2016-08-16 14:31:51 +0000294 if (I.isEHPad() || I.mayHaveSideEffects()) {
David Callahan45e442e2016-08-05 19:38:11 +0000295 // Skip any value profile instrumentation calls if they are
296 // instrumenting constants.
David Callahan947be0f2016-08-16 14:31:51 +0000297 if (isInstrumentsConstant(I))
298 return false;
299 return true;
David Callahan45e442e2016-08-05 19:38:11 +0000300 }
David Callahan947be0f2016-08-16 14:31:51 +0000301 if (!isa<TerminatorInst>(I))
302 return false;
303 if (RemoveControlFlowFlag && (isa<BranchInst>(I) || isa<SwitchInst>(I)))
304 return false;
305 return true;
Duncan P. N. Exon Smithe8eb94a2016-03-29 22:57:12 +0000306}
307
Betul Buyukkurtbf8554c2016-04-13 18:52:19 +0000308// Check if this instruction is a runtime call for value profiling and
309// if it's instrumenting a constant.
David Callahan45e442e2016-08-05 19:38:11 +0000310bool AggressiveDeadCodeElimination::isInstrumentsConstant(Instruction &I) {
311 // TODO -- move this test into llvm::isInstructionTriviallyDead
Betul Buyukkurtbf8554c2016-04-13 18:52:19 +0000312 if (CallInst *CI = dyn_cast<CallInst>(&I))
313 if (Function *Callee = CI->getCalledFunction())
314 if (Callee->getName().equals(getInstrProfValueProfFuncName()))
315 if (isa<Constant>(CI->getArgOperand(0)))
316 return true;
317 return false;
318}
319
David Callahan45e442e2016-08-05 19:38:11 +0000320void AggressiveDeadCodeElimination::markLiveInstructions() {
Nadav Rotem465834c2012-07-24 10:51:42 +0000321
David Callahan947be0f2016-08-16 14:31:51 +0000322 // Propagate liveness backwards to operands.
323 do {
324 // Worklist holds newly discovered live instructions
325 // where we need to mark the inputs as live.
326 while (!Worklist.empty()) {
327 Instruction *LiveInst = Worklist.pop_back_val();
David Callahanc165a4e2016-09-19 23:17:58 +0000328 DEBUG(dbgs() << "work live: "; LiveInst->dump(););
Duncan P. N. Exon Smithe8eb94a2016-03-29 22:57:12 +0000329
David Callahan947be0f2016-08-16 14:31:51 +0000330 for (Use &OI : LiveInst->operands())
331 if (Instruction *Inst = dyn_cast<Instruction>(OI))
332 markLive(Inst);
David Callahanebcf9162016-12-13 16:42:18 +0000333
David Callahanc165a4e2016-09-19 23:17:58 +0000334 if (auto *PN = dyn_cast<PHINode>(LiveInst))
335 markPhiLive(PN);
Hal Finkel8626ed22015-02-15 15:51:25 +0000336 }
David Callahanebcf9162016-12-13 16:42:18 +0000337
338 // After data flow liveness has been identified, examine which branch
339 // decisions are required to determine live instructions are executed.
David Callahan947be0f2016-08-16 14:31:51 +0000340 markLiveBranchesFromControlDependences();
David Callahan012d1c02016-08-24 00:10:06 +0000341
David Callahan947be0f2016-08-16 14:31:51 +0000342 } while (!Worklist.empty());
David Callahan947be0f2016-08-16 14:31:51 +0000343}
344
345void AggressiveDeadCodeElimination::markLive(Instruction *I) {
346
347 auto &Info = InstInfo[I];
348 if (Info.Live)
349 return;
350
351 DEBUG(dbgs() << "mark live: "; I->dump());
352 Info.Live = true;
353 Worklist.push_back(I);
354
David Callahanebcf9162016-12-13 16:42:18 +0000355 // Collect the live debug info scopes attached to this instruction.
356 if (const DILocation *DL = I->getDebugLoc())
357 collectLiveScopes(*DL);
358
David Callahan947be0f2016-08-16 14:31:51 +0000359 // Mark the containing block live
360 auto &BBInfo = *Info.Block;
David Callahanebcf9162016-12-13 16:42:18 +0000361 if (BBInfo.Terminator == I) {
David Callahan947be0f2016-08-16 14:31:51 +0000362 BlocksWithDeadTerminators.erase(BBInfo.BB);
David Callahanebcf9162016-12-13 16:42:18 +0000363 // For live terminators, mark destination blocks
364 // live to preserve this control flow edges.
365 if (!BBInfo.UnconditionalBranch)
366 for (auto *BB : successors(I->getParent()))
367 markLive(BB);
368 }
369 markLive(BBInfo);
370}
371
372void AggressiveDeadCodeElimination::markLive(BlockInfoType &BBInfo) {
David Callahan947be0f2016-08-16 14:31:51 +0000373 if (BBInfo.Live)
374 return;
David Callahan947be0f2016-08-16 14:31:51 +0000375 DEBUG(dbgs() << "mark block live: " << BBInfo.BB->getName() << '\n');
376 BBInfo.Live = true;
David Callahanc165a4e2016-09-19 23:17:58 +0000377 if (!BBInfo.CFLive) {
378 BBInfo.CFLive = true;
379 NewLiveBlocks.insert(BBInfo.BB);
380 }
David Callahan947be0f2016-08-16 14:31:51 +0000381
382 // Mark unconditional branches at the end of live
383 // blocks as live since there is no work to do for them later
David Callahanebcf9162016-12-13 16:42:18 +0000384 if (BBInfo.UnconditionalBranch)
David Callahan012d1c02016-08-24 00:10:06 +0000385 markLive(BBInfo.Terminator);
David Callahan45e442e2016-08-05 19:38:11 +0000386}
387
388void AggressiveDeadCodeElimination::collectLiveScopes(const DILocalScope &LS) {
389 if (!AliveScopes.insert(&LS).second)
390 return;
David Callahan947be0f2016-08-16 14:31:51 +0000391
David Callahan45e442e2016-08-05 19:38:11 +0000392 if (isa<DISubprogram>(LS))
393 return;
David Callahan947be0f2016-08-16 14:31:51 +0000394
David Callahan45e442e2016-08-05 19:38:11 +0000395 // Tail-recurse through the scope chain.
396 collectLiveScopes(cast<DILocalScope>(*LS.getScope()));
397}
398
399void AggressiveDeadCodeElimination::collectLiveScopes(const DILocation &DL) {
400 // Even though DILocations are not scopes, shove them into AliveScopes so we
401 // don't revisit them.
402 if (!AliveScopes.insert(&DL).second)
403 return;
David Callahan947be0f2016-08-16 14:31:51 +0000404
David Callahan45e442e2016-08-05 19:38:11 +0000405 // Collect live scopes from the scope chain.
406 collectLiveScopes(*DL.getScope());
David Callahan947be0f2016-08-16 14:31:51 +0000407
David Callahan45e442e2016-08-05 19:38:11 +0000408 // Tail-recurse through the inlined-at chain.
409 if (const DILocation *IA = DL.getInlinedAt())
410 collectLiveScopes(*IA);
411}
412
David Callahanc165a4e2016-09-19 23:17:58 +0000413void AggressiveDeadCodeElimination::markPhiLive(PHINode *PN) {
414 auto &Info = BlockInfo[PN->getParent()];
415 // Only need to check this once per block.
416 if (Info.HasLivePhiNodes)
417 return;
418 Info.HasLivePhiNodes = true;
419
420 // If a predecessor block is not live, mark it as control-flow live
421 // which will trigger marking live branches upon which
422 // that block is control dependent.
423 for (auto *PredBB : predecessors(Info.BB)) {
424 auto &Info = BlockInfo[PredBB];
425 if (!Info.CFLive) {
426 Info.CFLive = true;
427 NewLiveBlocks.insert(PredBB);
428 }
429 }
430}
431
David Callahan947be0f2016-08-16 14:31:51 +0000432void AggressiveDeadCodeElimination::markLiveBranchesFromControlDependences() {
433
David Callahan012d1c02016-08-24 00:10:06 +0000434 if (BlocksWithDeadTerminators.empty())
435 return;
436
437 DEBUG({
438 dbgs() << "new live blocks:\n";
439 for (auto *BB : NewLiveBlocks)
440 dbgs() << "\t" << BB->getName() << '\n';
441 dbgs() << "dead terminator blocks:\n";
442 for (auto *BB : BlocksWithDeadTerminators)
443 dbgs() << "\t" << BB->getName() << '\n';
444 });
445
446 // The dominance frontier of a live block X in the reverse
447 // control graph is the set of blocks upon which X is control
448 // dependent. The following sequence computes the set of blocks
449 // which currently have dead terminators that are control
450 // dependence sources of a block which is in NewLiveBlocks.
451
452 SmallVector<BasicBlock *, 32> IDFBlocks;
453 ReverseIDFCalculator IDFs(PDT);
454 IDFs.setDefiningBlocks(NewLiveBlocks);
455 IDFs.setLiveInBlocks(BlocksWithDeadTerminators);
456 IDFs.calculate(IDFBlocks);
David Callahan947be0f2016-08-16 14:31:51 +0000457 NewLiveBlocks.clear();
David Callahan012d1c02016-08-24 00:10:06 +0000458
459 // Dead terminators which control live blocks are now marked live.
David Callahanebcf9162016-12-13 16:42:18 +0000460 for (auto *BB : IDFBlocks) {
David Callahan012d1c02016-08-24 00:10:06 +0000461 DEBUG(dbgs() << "live control in: " << BB->getName() << '\n');
462 markLive(BB->getTerminator());
463 }
David Callahan45e442e2016-08-05 19:38:11 +0000464}
465
David Callahanc165a4e2016-09-19 23:17:58 +0000466//===----------------------------------------------------------------------===//
467//
468// Routines to update the CFG and SSA information before removing dead code.
469//
470//===----------------------------------------------------------------------===//
David Callahan45e442e2016-08-05 19:38:11 +0000471bool AggressiveDeadCodeElimination::removeDeadInstructions() {
Nadav Rotem465834c2012-07-24 10:51:42 +0000472
David Callahanebcf9162016-12-13 16:42:18 +0000473 // Updates control and dataflow around dead blocks
474 updateDeadRegions();
Duncan P. N. Exon Smithe8eb94a2016-03-29 22:57:12 +0000475
David Callahanebcf9162016-12-13 16:42:18 +0000476 DEBUG({
477 for (Instruction &I : instructions(F)) {
478 // Check if the instruction is alive.
479 if (isLive(&I))
Duncan P. N. Exon Smithe8eb94a2016-03-29 22:57:12 +0000480 continue;
481
David Callahanebcf9162016-12-13 16:42:18 +0000482 if (auto *DII = dyn_cast<DbgInfoIntrinsic>(&I)) {
483 // Check if the scope of this variable location is alive.
484 if (AliveScopes.count(DII->getDebugLoc()->getScope()))
485 continue;
486
Duncan P. N. Exon Smithe8eb94a2016-03-29 22:57:12 +0000487 // If intrinsic is pointing at a live SSA value, there may be an
488 // earlier optimization bug: if we know the location of the variable,
489 // why isn't the scope of the location alive?
490 if (Value *V = DII->getVariableLocation())
491 if (Instruction *II = dyn_cast<Instruction>(V))
David Callahan947be0f2016-08-16 14:31:51 +0000492 if (isLive(II))
Duncan P. N. Exon Smithe8eb94a2016-03-29 22:57:12 +0000493 dbgs() << "Dropping debug info for " << *DII << "\n";
David Callahanebcf9162016-12-13 16:42:18 +0000494 }
495 }
496 });
497
498 // The inverse of the live set is the dead set. These are those instructions
499 // that have no side effects and do not influence the control flow or return
500 // value of the function, and may therefore be deleted safely.
501 // NOTE: We reuse the Worklist vector here for memory efficiency.
502 for (Instruction &I : instructions(F)) {
503 // Check if the instruction is alive.
504 if (isLive(&I))
505 continue;
506
507 if (auto *DII = dyn_cast<DbgInfoIntrinsic>(&I)) {
508 // Check if the scope of this variable location is alive.
509 if (AliveScopes.count(DII->getDebugLoc()->getScope()))
510 continue;
511
512 // Fallthrough and drop the intrinsic.
Chris Lattneracfd27d2001-09-09 22:26:47 +0000513 }
Duncan P. N. Exon Smithe8eb94a2016-03-29 22:57:12 +0000514
515 // Prepare to delete.
516 Worklist.push_back(&I);
517 I.dropAllReferences();
Hal Finkel92fb2d32015-02-15 15:51:23 +0000518 }
Nadav Rotem465834c2012-07-24 10:51:42 +0000519
Hal Finkel92fb2d32015-02-15 15:51:23 +0000520 for (Instruction *&I : Worklist) {
Dan Gohmand2d1ae12010-06-22 15:08:57 +0000521 ++NumRemoved;
Hal Finkel92fb2d32015-02-15 15:51:23 +0000522 I->eraseFromParent();
Chris Lattneracfd27d2001-09-09 22:26:47 +0000523 }
Devang Patel53b39b52008-11-11 00:54:10 +0000524
Hal Finkel75901292015-02-15 15:45:28 +0000525 return !Worklist.empty();
Chris Lattnerb28986f2001-06-30 06:39:11 +0000526}
Owen Anderson7686b552008-05-29 08:45:13 +0000527
David Callahanebcf9162016-12-13 16:42:18 +0000528// A dead region is the set of dead blocks with a common live post-dominator.
529void AggressiveDeadCodeElimination::updateDeadRegions() {
530
531 DEBUG({
532 dbgs() << "final dead terminator blocks: " << '\n';
533 for (auto *BB : BlocksWithDeadTerminators)
534 dbgs() << '\t' << BB->getName()
535 << (BlockInfo[BB].Live ? " LIVE\n" : "\n");
536 });
537
538 // Don't compute the post ordering unless we needed it.
539 bool HavePostOrder = false;
540
541 for (auto *BB : BlocksWithDeadTerminators) {
542 auto &Info = BlockInfo[BB];
543 if (Info.UnconditionalBranch) {
544 InstInfo[Info.Terminator].Live = true;
545 continue;
546 }
547
548 if (!HavePostOrder) {
549 computeReversePostOrder();
550 HavePostOrder = true;
551 }
552
553 // Add an unconditional branch to the successor closest to the
554 // end of the function which insures a path to the exit for each
555 // live edge.
556 BlockInfoType *PreferredSucc = nullptr;
557 for (auto *Succ : successors(BB)) {
558 auto *Info = &BlockInfo[Succ];
559 if (!PreferredSucc || PreferredSucc->PostOrder < Info->PostOrder)
560 PreferredSucc = Info;
561 }
562 assert((PreferredSucc && PreferredSucc->PostOrder > 0) &&
Tobias Grosser335b6bf2017-03-14 10:18:11 +0000563 "Failed to find safe successor for dead branch");
David Callahanebcf9162016-12-13 16:42:18 +0000564 bool First = true;
565 for (auto *Succ : successors(BB)) {
566 if (!First || Succ != PreferredSucc->BB)
567 Succ->removePredecessor(BB);
568 else
569 First = false;
570 }
571 makeUnconditional(BB, PreferredSucc->BB);
572 NumBranchesRemoved += 1;
573 }
574}
575
576// reverse top-sort order
577void AggressiveDeadCodeElimination::computeReversePostOrder() {
Taewook Ohd3f1ec92017-01-26 04:32:40 +0000578
Tobias Grosser335b6bf2017-03-14 10:18:11 +0000579 // This provides a post-order numbering of the reverse control flow graph
David Callahanebcf9162016-12-13 16:42:18 +0000580 // Note that it is incomplete in the presence of infinite loops but we don't
581 // need numbers blocks which don't reach the end of the functions since
582 // all branches in those blocks are forced live.
Taewook Ohd3f1ec92017-01-26 04:32:40 +0000583
Tobias Grosser335b6bf2017-03-14 10:18:11 +0000584 // For each block without successors, extend the DFS from the block
David Callahanebcf9162016-12-13 16:42:18 +0000585 // backward through the graph
586 SmallPtrSet<BasicBlock*, 16> Visited;
587 unsigned PostOrder = 0;
588 for (auto &BB : F) {
589 if (succ_begin(&BB) != succ_end(&BB))
590 continue;
591 for (BasicBlock *Block : inverse_post_order_ext(&BB,Visited))
592 BlockInfo[Block].PostOrder = PostOrder++;
593 }
594}
595
596void AggressiveDeadCodeElimination::makeUnconditional(BasicBlock *BB,
597 BasicBlock *Target) {
598 TerminatorInst *PredTerm = BB->getTerminator();
599 // Collect the live debug info scopes attached to this instruction.
600 if (const DILocation *DL = PredTerm->getDebugLoc())
601 collectLiveScopes(*DL);
602
603 // Just mark live an existing unconditional branch
604 if (isUnconditionalBranch(PredTerm)) {
605 PredTerm->setSuccessor(0, Target);
606 InstInfo[PredTerm].Live = true;
607 return;
608 }
609 DEBUG(dbgs() << "making unconditional " << BB->getName() << '\n');
610 NumBranchesRemoved += 1;
611 IRBuilder<> Builder(PredTerm);
612 auto *NewTerm = Builder.CreateBr(Target);
613 InstInfo[NewTerm].Live = true;
614 if (const DILocation *DL = PredTerm->getDebugLoc())
615 NewTerm->setDebugLoc(DL);
616}
617
David Callahan012d1c02016-08-24 00:10:06 +0000618//===----------------------------------------------------------------------===//
619//
620// Pass Manager integration code
621//
622//===----------------------------------------------------------------------===//
623PreservedAnalyses ADCEPass::run(Function &F, FunctionAnalysisManager &FAM) {
624 auto &PDT = FAM.getResult<PostDominatorTreeAnalysis>(F);
625 if (!AggressiveDeadCodeElimination(F, PDT).performDeadCodeElimination())
Davide Italiano688616f2016-05-31 17:39:39 +0000626 return PreservedAnalyses::all();
627
Chandler Carruthca68a3e2017-01-15 06:32:49 +0000628 PreservedAnalyses PA;
629 PA.preserveSet<CFGAnalyses>();
Davide Italiano688616f2016-05-31 17:39:39 +0000630 PA.preserve<GlobalsAA>();
631 return PA;
Duncan Sands9e064a22008-05-29 14:38:23 +0000632}
Justin Bogner19b67992015-10-30 23:13:18 +0000633
634namespace {
635struct ADCELegacyPass : public FunctionPass {
636 static char ID; // Pass identification, replacement for typeid
637 ADCELegacyPass() : FunctionPass(ID) {
638 initializeADCELegacyPassPass(*PassRegistry::getPassRegistry());
639 }
640
David Callahancc5cd4d2016-08-03 04:28:39 +0000641 bool runOnFunction(Function &F) override {
Andrew Kayloraa641a52016-04-22 22:06:11 +0000642 if (skipFunction(F))
Justin Bogner19b67992015-10-30 23:13:18 +0000643 return false;
David Callahan012d1c02016-08-24 00:10:06 +0000644 auto &PDT = getAnalysis<PostDominatorTreeWrapperPass>().getPostDomTree();
645 return AggressiveDeadCodeElimination(F, PDT).performDeadCodeElimination();
Justin Bogner19b67992015-10-30 23:13:18 +0000646 }
647
David Callahancc5cd4d2016-08-03 04:28:39 +0000648 void getAnalysisUsage(AnalysisUsage &AU) const override {
David Callahan012d1c02016-08-24 00:10:06 +0000649 AU.addRequired<PostDominatorTreeWrapperPass>();
David Callahanebcf9162016-12-13 16:42:18 +0000650 if (!RemoveControlFlowFlag)
651 AU.setPreservesCFG();
Justin Bogner19b67992015-10-30 23:13:18 +0000652 AU.addPreserved<GlobalsAAWrapperPass>();
653 }
654};
655}
656
657char ADCELegacyPass::ID = 0;
David Callahan012d1c02016-08-24 00:10:06 +0000658INITIALIZE_PASS_BEGIN(ADCELegacyPass, "adce",
659 "Aggressive Dead Code Elimination", false, false)
660INITIALIZE_PASS_DEPENDENCY(PostDominatorTreeWrapperPass)
661INITIALIZE_PASS_END(ADCELegacyPass, "adce", "Aggressive Dead Code Elimination",
662 false, false)
Justin Bogner19b67992015-10-30 23:13:18 +0000663
664FunctionPass *llvm::createAggressiveDCEPass() { return new ADCELegacyPass(); }