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Chris Lattner28537df2002-05-07 18:07:59 +00001//===-- Local.cpp - Functions to perform local transformations ------------===//
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 Lattner28537df2002-05-07 18:07:59 +00009//
10// This family of functions perform various local transformations to the
11// program.
12//
13//===----------------------------------------------------------------------===//
14
15#include "llvm/Transforms/Utils/Local.h"
Chandler Carruthed0881b2012-12-03 16:50:05 +000016#include "llvm/ADT/DenseMap.h"
Benjamin Kramer2b2cdd72015-06-18 16:01:00 +000017#include "llvm/ADT/DenseSet.h"
18#include "llvm/ADT/Hashing.h"
Evgeniy Stepanov4fbc0d082012-12-21 11:18:49 +000019#include "llvm/ADT/STLExtras.h"
Fiona Glaserf74cc402015-09-28 18:56:07 +000020#include "llvm/ADT/SetVector.h"
Chandler Carruthbe810232013-01-02 10:22:59 +000021#include "llvm/ADT/SmallPtrSet.h"
Peter Collingbourne8d642de2013-08-12 22:38:43 +000022#include "llvm/ADT/Statistic.h"
David Majnemer70497c62015-12-02 23:06:39 +000023#include "llvm/Analysis/EHPersonalities.h"
Chandler Carruthed0881b2012-12-03 16:50:05 +000024#include "llvm/Analysis/InstructionSimplify.h"
David Majnemerd9833ea2016-01-10 07:13:04 +000025#include "llvm/Analysis/LazyValueInfo.h"
Chandler Carruth6bda14b2017-06-06 11:49:48 +000026#include "llvm/Analysis/MemoryBuiltins.h"
Chandler Carruthed0881b2012-12-03 16:50:05 +000027#include "llvm/Analysis/ValueTracking.h"
Chandler Carruth1305dc32014-03-04 11:45:46 +000028#include "llvm/IR/CFG.h"
Chandler Carruth2abb65a2017-06-26 03:31:31 +000029#include "llvm/IR/ConstantRange.h"
Chandler Carruth9fb823b2013-01-02 11:36:10 +000030#include "llvm/IR/Constants.h"
Chandler Carruth12664a02014-03-06 00:22:06 +000031#include "llvm/IR/DIBuilder.h"
Chandler Carruth9fb823b2013-01-02 11:36:10 +000032#include "llvm/IR/DataLayout.h"
Chandler Carruth9a4c9e52014-03-06 00:46:21 +000033#include "llvm/IR/DebugInfo.h"
Chandler Carruth9fb823b2013-01-02 11:36:10 +000034#include "llvm/IR/DerivedTypes.h"
Chandler Carruth5ad5f152014-01-13 09:26:24 +000035#include "llvm/IR/Dominators.h"
Chandler Carruth03eb0de2014-03-04 10:40:04 +000036#include "llvm/IR/GetElementPtrTypeIterator.h"
Chandler Carruth9fb823b2013-01-02 11:36:10 +000037#include "llvm/IR/GlobalAlias.h"
38#include "llvm/IR/GlobalVariable.h"
39#include "llvm/IR/IRBuilder.h"
40#include "llvm/IR/Instructions.h"
41#include "llvm/IR/IntrinsicInst.h"
42#include "llvm/IR/Intrinsics.h"
43#include "llvm/IR/MDBuilder.h"
44#include "llvm/IR/Metadata.h"
45#include "llvm/IR/Operator.h"
David Majnemer9f506252016-06-25 08:34:38 +000046#include "llvm/IR/PatternMatch.h"
Chandler Carruth4220e9c2014-03-04 11:17:44 +000047#include "llvm/IR/ValueHandle.h"
Chris Lattnercbd18fc2009-11-10 05:59:26 +000048#include "llvm/Support/Debug.h"
Craig Topperb45eabc2017-04-26 16:39:58 +000049#include "llvm/Support/KnownBits.h"
Chris Lattnerc13c7b92005-09-26 05:27:10 +000050#include "llvm/Support/MathExtras.h"
Chris Lattnercbd18fc2009-11-10 05:59:26 +000051#include "llvm/Support/raw_ostream.h"
Chris Lattner04efa4b2003-12-19 05:56:28 +000052using namespace llvm;
David Majnemer9f506252016-06-25 08:34:38 +000053using namespace llvm::PatternMatch;
Brian Gaeke960707c2003-11-11 22:41:34 +000054
Chandler Carruthe96dd892014-04-21 22:55:11 +000055#define DEBUG_TYPE "local"
56
Peter Collingbourne8d642de2013-08-12 22:38:43 +000057STATISTIC(NumRemoved, "Number of unreachable basic blocks removed");
58
Chris Lattner28537df2002-05-07 18:07:59 +000059//===----------------------------------------------------------------------===//
Chris Lattnerc6c481c2008-11-27 22:57:53 +000060// Local constant propagation.
Chris Lattner28537df2002-05-07 18:07:59 +000061//
62
Frits van Bommelad964552011-05-22 16:24:18 +000063/// ConstantFoldTerminator - If a terminator instruction is predicated on a
64/// constant value, convert it into an unconditional branch to the constant
65/// destination. This is a nontrivial operation because the successors of this
66/// basic block must have their PHI nodes updated.
67/// Also calls RecursivelyDeleteTriviallyDeadInstructions() on any branch/switch
68/// conditions and indirectbr addresses this might make dead if
69/// DeleteDeadConditions is true.
Benjamin Kramer8bcc9712012-08-29 15:32:21 +000070bool llvm::ConstantFoldTerminator(BasicBlock *BB, bool DeleteDeadConditions,
Daniel Jasper0a51ec22017-09-30 11:57:19 +000071 const TargetLibraryInfo *TLI) {
Chris Lattner4b009ad2002-05-21 20:04:50 +000072 TerminatorInst *T = BB->getTerminator();
Devang Patel1fabbe92011-05-18 17:26:46 +000073 IRBuilder<> Builder(T);
Misha Brukmanb1c93172005-04-21 23:48:37 +000074
Chris Lattner28537df2002-05-07 18:07:59 +000075 // Branch - See if we are conditional jumping on constant
76 if (BranchInst *BI = dyn_cast<BranchInst>(T)) {
77 if (BI->isUnconditional()) return false; // Can't optimize uncond branch
Gabor Greif97f17202009-01-30 18:21:13 +000078 BasicBlock *Dest1 = BI->getSuccessor(0);
79 BasicBlock *Dest2 = BI->getSuccessor(1);
Chris Lattner28537df2002-05-07 18:07:59 +000080
Zhou Sheng75b871f2007-01-11 12:24:14 +000081 if (ConstantInt *Cond = dyn_cast<ConstantInt>(BI->getCondition())) {
Chris Lattner28537df2002-05-07 18:07:59 +000082 // Are we branching on constant?
83 // YES. Change to unconditional branch...
Reid Spencercddc9df2007-01-12 04:24:46 +000084 BasicBlock *Destination = Cond->getZExtValue() ? Dest1 : Dest2;
85 BasicBlock *OldDest = Cond->getZExtValue() ? Dest2 : Dest1;
Chris Lattner28537df2002-05-07 18:07:59 +000086
Misha Brukmanb1c93172005-04-21 23:48:37 +000087 //cerr << "Function: " << T->getParent()->getParent()
88 // << "\nRemoving branch from " << T->getParent()
Chris Lattner28537df2002-05-07 18:07:59 +000089 // << "\n\nTo: " << OldDest << endl;
90
91 // Let the basic block know that we are letting go of it. Based on this,
92 // it will adjust it's PHI nodes.
Jay Foad6a85be22011-04-19 15:23:29 +000093 OldDest->removePredecessor(BB);
Chris Lattner28537df2002-05-07 18:07:59 +000094
Jay Foad89afb432011-01-07 20:25:56 +000095 // Replace the conditional branch with an unconditional one.
Devang Patel1fabbe92011-05-18 17:26:46 +000096 Builder.CreateBr(Destination);
Jay Foad89afb432011-01-07 20:25:56 +000097 BI->eraseFromParent();
Chris Lattner28537df2002-05-07 18:07:59 +000098 return true;
Chris Lattner54a4b842009-11-01 03:40:38 +000099 }
Jakub Staszak8e1a6e72013-07-22 23:16:36 +0000100
Chris Lattner54a4b842009-11-01 03:40:38 +0000101 if (Dest2 == Dest1) { // Conditional branch to same location?
Misha Brukmanb1c93172005-04-21 23:48:37 +0000102 // This branch matches something like this:
Chris Lattner28537df2002-05-07 18:07:59 +0000103 // br bool %cond, label %Dest, label %Dest
104 // and changes it into: br label %Dest
105
106 // Let the basic block know that we are letting go of one copy of it.
107 assert(BI->getParent() && "Terminator not inserted in block!");
108 Dest1->removePredecessor(BI->getParent());
109
Jay Foad89afb432011-01-07 20:25:56 +0000110 // Replace the conditional branch with an unconditional one.
Devang Patel1fabbe92011-05-18 17:26:46 +0000111 Builder.CreateBr(Dest1);
Frits van Bommelad964552011-05-22 16:24:18 +0000112 Value *Cond = BI->getCondition();
Jay Foad89afb432011-01-07 20:25:56 +0000113 BI->eraseFromParent();
Frits van Bommelad964552011-05-22 16:24:18 +0000114 if (DeleteDeadConditions)
Benjamin Kramer8bcc9712012-08-29 15:32:21 +0000115 RecursivelyDeleteTriviallyDeadInstructions(Cond, TLI);
Chris Lattner28537df2002-05-07 18:07:59 +0000116 return true;
117 }
Chris Lattner54a4b842009-11-01 03:40:38 +0000118 return false;
119 }
Jakub Staszak8e1a6e72013-07-22 23:16:36 +0000120
Chris Lattner54a4b842009-11-01 03:40:38 +0000121 if (SwitchInst *SI = dyn_cast<SwitchInst>(T)) {
Hans Wennborg90b827c2015-01-26 19:52:24 +0000122 // If we are switching on a constant, we can convert the switch to an
123 // unconditional branch.
Chris Lattner821deee2003-08-17 20:21:14 +0000124 ConstantInt *CI = dyn_cast<ConstantInt>(SI->getCondition());
Hans Wennborg90b827c2015-01-26 19:52:24 +0000125 BasicBlock *DefaultDest = SI->getDefaultDest();
126 BasicBlock *TheOnlyDest = DefaultDest;
127
128 // If the default is unreachable, ignore it when searching for TheOnlyDest.
129 if (isa<UnreachableInst>(DefaultDest->getFirstNonPHIOrDbg()) &&
130 SI->getNumCases() > 0) {
Chandler Carruth927d8e62017-04-12 07:27:28 +0000131 TheOnlyDest = SI->case_begin()->getCaseSuccessor();
Hans Wennborg90b827c2015-01-26 19:52:24 +0000132 }
Chris Lattner031340a2003-08-17 19:41:53 +0000133
Chris Lattner54a4b842009-11-01 03:40:38 +0000134 // Figure out which case it goes to.
Chandler Carruth0d256c02017-03-26 02:49:23 +0000135 for (auto i = SI->case_begin(), e = SI->case_end(); i != e;) {
Chris Lattner821deee2003-08-17 20:21:14 +0000136 // Found case matching a constant operand?
Chandler Carruth927d8e62017-04-12 07:27:28 +0000137 if (i->getCaseValue() == CI) {
138 TheOnlyDest = i->getCaseSuccessor();
Chris Lattner821deee2003-08-17 20:21:14 +0000139 break;
140 }
Chris Lattner031340a2003-08-17 19:41:53 +0000141
Chris Lattnerc54d6082003-08-23 23:18:19 +0000142 // Check to see if this branch is going to the same place as the default
143 // dest. If so, eliminate it as an explicit compare.
Chandler Carruth927d8e62017-04-12 07:27:28 +0000144 if (i->getCaseSuccessor() == DefaultDest) {
Duncan P. N. Exon Smithde36e802014-11-11 21:30:22 +0000145 MDNode *MD = SI->getMetadata(LLVMContext::MD_prof);
Justin Bognera41a7b32013-12-10 00:13:41 +0000146 unsigned NCases = SI->getNumCases();
147 // Fold the case metadata into the default if there will be any branches
148 // left, unless the metadata doesn't match the switch.
149 if (NCases > 1 && MD && MD->getNumOperands() == 2 + NCases) {
Manman Ren49dbe252012-09-12 17:04:11 +0000150 // Collect branch weights into a vector.
151 SmallVector<uint32_t, 8> Weights;
152 for (unsigned MD_i = 1, MD_e = MD->getNumOperands(); MD_i < MD_e;
153 ++MD_i) {
David Majnemer9f506252016-06-25 08:34:38 +0000154 auto *CI = mdconst::extract<ConstantInt>(MD->getOperand(MD_i));
Manman Ren49dbe252012-09-12 17:04:11 +0000155 Weights.push_back(CI->getValue().getZExtValue());
156 }
157 // Merge weight of this case to the default weight.
Chandler Carruth927d8e62017-04-12 07:27:28 +0000158 unsigned idx = i->getCaseIndex();
Manman Ren49dbe252012-09-12 17:04:11 +0000159 Weights[0] += Weights[idx+1];
160 // Remove weight for this case.
161 std::swap(Weights[idx+1], Weights.back());
162 Weights.pop_back();
163 SI->setMetadata(LLVMContext::MD_prof,
164 MDBuilder(BB->getContext()).
165 createBranchWeights(Weights));
166 }
Chris Lattner54a4b842009-11-01 03:40:38 +0000167 // Remove this entry.
Daniel Jasper0a51ec22017-09-30 11:57:19 +0000168 DefaultDest->removePredecessor(SI->getParent());
Chandler Carruth0d256c02017-03-26 02:49:23 +0000169 i = SI->removeCase(i);
170 e = SI->case_end();
Chris Lattnerc54d6082003-08-23 23:18:19 +0000171 continue;
172 }
173
Chris Lattner821deee2003-08-17 20:21:14 +0000174 // Otherwise, check to see if the switch only branches to one destination.
175 // We do this by reseting "TheOnlyDest" to null when we find two non-equal
176 // destinations.
Chandler Carruth927d8e62017-04-12 07:27:28 +0000177 if (i->getCaseSuccessor() != TheOnlyDest)
178 TheOnlyDest = nullptr;
Chandler Carruth0d256c02017-03-26 02:49:23 +0000179
180 // Increment this iterator as we haven't removed the case.
181 ++i;
Chris Lattner031340a2003-08-17 19:41:53 +0000182 }
183
Chris Lattner821deee2003-08-17 20:21:14 +0000184 if (CI && !TheOnlyDest) {
185 // Branching on a constant, but not any of the cases, go to the default
186 // successor.
187 TheOnlyDest = SI->getDefaultDest();
188 }
189
190 // If we found a single destination that we can fold the switch into, do so
191 // now.
192 if (TheOnlyDest) {
Chris Lattner54a4b842009-11-01 03:40:38 +0000193 // Insert the new branch.
Devang Patel1fabbe92011-05-18 17:26:46 +0000194 Builder.CreateBr(TheOnlyDest);
Chris Lattner821deee2003-08-17 20:21:14 +0000195 BasicBlock *BB = SI->getParent();
196
197 // Remove entries from PHI nodes which we no longer branch to...
Pete Cooperebcd7482015-08-06 20:22:46 +0000198 for (BasicBlock *Succ : SI->successors()) {
Chris Lattner821deee2003-08-17 20:21:14 +0000199 // Found case matching a constant operand?
Daniel Jasper0a51ec22017-09-30 11:57:19 +0000200 if (Succ == TheOnlyDest)
Craig Topperf40110f2014-04-25 05:29:35 +0000201 TheOnlyDest = nullptr; // Don't modify the first branch to TheOnlyDest
Daniel Jasper0a51ec22017-09-30 11:57:19 +0000202 else
Chris Lattner821deee2003-08-17 20:21:14 +0000203 Succ->removePredecessor(BB);
204 }
205
Chris Lattner54a4b842009-11-01 03:40:38 +0000206 // Delete the old switch.
Frits van Bommelad964552011-05-22 16:24:18 +0000207 Value *Cond = SI->getCondition();
208 SI->eraseFromParent();
209 if (DeleteDeadConditions)
Benjamin Kramer8bcc9712012-08-29 15:32:21 +0000210 RecursivelyDeleteTriviallyDeadInstructions(Cond, TLI);
Chris Lattner821deee2003-08-17 20:21:14 +0000211 return true;
Chris Lattner54a4b842009-11-01 03:40:38 +0000212 }
Jakub Staszak8e1a6e72013-07-22 23:16:36 +0000213
Stepan Dyatkovskiy513aaa52012-02-01 07:49:51 +0000214 if (SI->getNumCases() == 1) {
Chris Lattner821deee2003-08-17 20:21:14 +0000215 // Otherwise, we can fold this switch into a conditional branch
216 // instruction if it has only one non-default destination.
Chandler Carruth927d8e62017-04-12 07:27:28 +0000217 auto FirstCase = *SI->case_begin();
Bob Wilsone4077362013-09-09 19:14:35 +0000218 Value *Cond = Builder.CreateICmpEQ(SI->getCondition(),
219 FirstCase.getCaseValue(), "cond");
Devang Patel1fabbe92011-05-18 17:26:46 +0000220
Bob Wilsone4077362013-09-09 19:14:35 +0000221 // Insert the new branch.
222 BranchInst *NewBr = Builder.CreateCondBr(Cond,
223 FirstCase.getCaseSuccessor(),
224 SI->getDefaultDest());
Duncan P. N. Exon Smithde36e802014-11-11 21:30:22 +0000225 MDNode *MD = SI->getMetadata(LLVMContext::MD_prof);
Bob Wilsone4077362013-09-09 19:14:35 +0000226 if (MD && MD->getNumOperands() == 3) {
Duncan P. N. Exon Smith5bf8fef2014-12-09 18:38:53 +0000227 ConstantInt *SICase =
228 mdconst::dyn_extract<ConstantInt>(MD->getOperand(2));
229 ConstantInt *SIDef =
230 mdconst::dyn_extract<ConstantInt>(MD->getOperand(1));
Bob Wilsone4077362013-09-09 19:14:35 +0000231 assert(SICase && SIDef);
232 // The TrueWeight should be the weight for the single case of SI.
233 NewBr->setMetadata(LLVMContext::MD_prof,
234 MDBuilder(BB->getContext()).
235 createBranchWeights(SICase->getValue().getZExtValue(),
236 SIDef->getValue().getZExtValue()));
Stepan Dyatkovskiy7a501552012-05-23 08:18:26 +0000237 }
Bob Wilsone4077362013-09-09 19:14:35 +0000238
Chen Lieafbc9d2015-08-07 19:30:12 +0000239 // Update make.implicit metadata to the newly-created conditional branch.
240 MDNode *MakeImplicitMD = SI->getMetadata(LLVMContext::MD_make_implicit);
241 if (MakeImplicitMD)
242 NewBr->setMetadata(LLVMContext::MD_make_implicit, MakeImplicitMD);
243
Bob Wilsone4077362013-09-09 19:14:35 +0000244 // Delete the old switch.
245 SI->eraseFromParent();
246 return true;
Chris Lattner821deee2003-08-17 20:21:14 +0000247 }
Chris Lattner54a4b842009-11-01 03:40:38 +0000248 return false;
Chris Lattner28537df2002-05-07 18:07:59 +0000249 }
Chris Lattner54a4b842009-11-01 03:40:38 +0000250
251 if (IndirectBrInst *IBI = dyn_cast<IndirectBrInst>(T)) {
252 // indirectbr blockaddress(@F, @BB) -> br label @BB
253 if (BlockAddress *BA =
254 dyn_cast<BlockAddress>(IBI->getAddress()->stripPointerCasts())) {
255 BasicBlock *TheOnlyDest = BA->getBasicBlock();
256 // Insert the new branch.
Devang Patel1fabbe92011-05-18 17:26:46 +0000257 Builder.CreateBr(TheOnlyDest);
Jakub Staszak8e1a6e72013-07-22 23:16:36 +0000258
Chris Lattner54a4b842009-11-01 03:40:38 +0000259 for (unsigned i = 0, e = IBI->getNumDestinations(); i != e; ++i) {
Daniel Jasper0a51ec22017-09-30 11:57:19 +0000260 if (IBI->getDestination(i) == TheOnlyDest)
Craig Topperf40110f2014-04-25 05:29:35 +0000261 TheOnlyDest = nullptr;
Daniel Jasper0a51ec22017-09-30 11:57:19 +0000262 else
263 IBI->getDestination(i)->removePredecessor(IBI->getParent());
Chris Lattner54a4b842009-11-01 03:40:38 +0000264 }
Frits van Bommelad964552011-05-22 16:24:18 +0000265 Value *Address = IBI->getAddress();
Chris Lattner54a4b842009-11-01 03:40:38 +0000266 IBI->eraseFromParent();
Frits van Bommelad964552011-05-22 16:24:18 +0000267 if (DeleteDeadConditions)
Benjamin Kramer8bcc9712012-08-29 15:32:21 +0000268 RecursivelyDeleteTriviallyDeadInstructions(Address, TLI);
Jakub Staszak8e1a6e72013-07-22 23:16:36 +0000269
Chris Lattner54a4b842009-11-01 03:40:38 +0000270 // If we didn't find our destination in the IBI successor list, then we
271 // have undefined behavior. Replace the unconditional branch with an
272 // 'unreachable' instruction.
273 if (TheOnlyDest) {
274 BB->getTerminator()->eraseFromParent();
275 new UnreachableInst(BB->getContext(), BB);
276 }
Jakub Staszak8e1a6e72013-07-22 23:16:36 +0000277
Chris Lattner54a4b842009-11-01 03:40:38 +0000278 return true;
279 }
280 }
Jakub Staszak8e1a6e72013-07-22 23:16:36 +0000281
Chris Lattner28537df2002-05-07 18:07:59 +0000282 return false;
283}
284
Chris Lattner28537df2002-05-07 18:07:59 +0000285
286//===----------------------------------------------------------------------===//
Chris Lattner852d6d62009-11-10 22:26:15 +0000287// Local dead code elimination.
Chris Lattner28537df2002-05-07 18:07:59 +0000288//
289
Chris Lattnerc6c481c2008-11-27 22:57:53 +0000290/// isInstructionTriviallyDead - Return true if the result produced by the
291/// instruction is not used, and the instruction has no side effects.
292///
Benjamin Kramer8bcc9712012-08-29 15:32:21 +0000293bool llvm::isInstructionTriviallyDead(Instruction *I,
294 const TargetLibraryInfo *TLI) {
Daniel Berline3e69e12017-03-10 00:32:33 +0000295 if (!I->use_empty())
296 return false;
297 return wouldInstructionBeTriviallyDead(I, TLI);
298}
299
300bool llvm::wouldInstructionBeTriviallyDead(Instruction *I,
301 const TargetLibraryInfo *TLI) {
302 if (isa<TerminatorInst>(I))
303 return false;
Jeff Cohen5f4ef3c2005-07-27 06:12:32 +0000304
David Majnemer654e1302015-07-31 17:58:14 +0000305 // We don't want the landingpad-like instructions removed by anything this
306 // general.
307 if (I->isEHPad())
Bill Wendlingd9fb4702011-08-15 20:10:51 +0000308 return false;
309
Devang Patelc1431e62011-03-18 23:28:02 +0000310 // We don't want debug info removed by anything this general, unless
311 // debug info is empty.
312 if (DbgDeclareInst *DDI = dyn_cast<DbgDeclareInst>(I)) {
Nick Lewycky99890a22011-08-02 21:19:27 +0000313 if (DDI->getAddress())
Devang Patelc1431e62011-03-18 23:28:02 +0000314 return false;
Devang Patel17bbd7f2011-03-21 22:04:45 +0000315 return true;
Nick Lewycky99890a22011-08-02 21:19:27 +0000316 }
Devang Patel17bbd7f2011-03-21 22:04:45 +0000317 if (DbgValueInst *DVI = dyn_cast<DbgValueInst>(I)) {
Devang Patelc1431e62011-03-18 23:28:02 +0000318 if (DVI->getValue())
319 return false;
Devang Patel17bbd7f2011-03-21 22:04:45 +0000320 return true;
Devang Patelc1431e62011-03-18 23:28:02 +0000321 }
322
Daniel Berline3e69e12017-03-10 00:32:33 +0000323 if (!I->mayHaveSideEffects())
324 return true;
Duncan Sands1efabaa2009-05-06 06:49:50 +0000325
326 // Special case intrinsics that "may have side effects" but can be deleted
327 // when dead.
Nick Lewycky99890a22011-08-02 21:19:27 +0000328 if (IntrinsicInst *II = dyn_cast<IntrinsicInst>(I)) {
Chris Lattnere9665832007-12-29 00:59:12 +0000329 // Safe to delete llvm.stacksave if dead.
330 if (II->getIntrinsicID() == Intrinsic::stacksave)
331 return true;
Nick Lewycky99890a22011-08-02 21:19:27 +0000332
333 // Lifetime intrinsics are dead when their right-hand is undef.
334 if (II->getIntrinsicID() == Intrinsic::lifetime_start ||
335 II->getIntrinsicID() == Intrinsic::lifetime_end)
336 return isa<UndefValue>(II->getArgOperand(1));
Hal Finkel93046912014-07-25 21:13:35 +0000337
Sanjoy Das107aefc2016-04-29 22:23:16 +0000338 // Assumptions are dead if their condition is trivially true. Guards on
339 // true are operationally no-ops. In the future we can consider more
340 // sophisticated tradeoffs for guards considering potential for check
341 // widening, but for now we keep things simple.
342 if (II->getIntrinsicID() == Intrinsic::assume ||
343 II->getIntrinsicID() == Intrinsic::experimental_guard) {
Hal Finkel93046912014-07-25 21:13:35 +0000344 if (ConstantInt *Cond = dyn_cast<ConstantInt>(II->getArgOperand(0)))
345 return !Cond->isZero();
346
347 return false;
348 }
Nick Lewycky99890a22011-08-02 21:19:27 +0000349 }
Nick Lewyckydd1d3df2011-10-24 04:35:36 +0000350
Daniel Berline3e69e12017-03-10 00:32:33 +0000351 if (isAllocLikeFn(I, TLI))
352 return true;
Nick Lewyckydd1d3df2011-10-24 04:35:36 +0000353
Benjamin Kramer8bcc9712012-08-29 15:32:21 +0000354 if (CallInst *CI = isFreeCall(I, TLI))
Nick Lewyckydd1d3df2011-10-24 04:35:36 +0000355 if (Constant *C = dyn_cast<Constant>(CI->getArgOperand(0)))
356 return C->isNullValue() || isa<UndefValue>(C);
357
Eli Friedmanb6befc32016-11-02 20:48:11 +0000358 if (CallSite CS = CallSite(I))
359 if (isMathLibCallNoop(CS, TLI))
360 return true;
361
Chris Lattnera36d5252005-05-06 05:27:34 +0000362 return false;
Chris Lattner28537df2002-05-07 18:07:59 +0000363}
364
Chris Lattnerc6c481c2008-11-27 22:57:53 +0000365/// RecursivelyDeleteTriviallyDeadInstructions - If the specified value is a
366/// trivially dead instruction, delete it. If that makes any of its operands
Dan Gohmancb99fe92010-01-05 15:45:31 +0000367/// trivially dead, delete them too, recursively. Return true if any
368/// instructions were deleted.
Benjamin Kramer8bcc9712012-08-29 15:32:21 +0000369bool
370llvm::RecursivelyDeleteTriviallyDeadInstructions(Value *V,
371 const TargetLibraryInfo *TLI) {
Chris Lattnerc6c481c2008-11-27 22:57:53 +0000372 Instruction *I = dyn_cast<Instruction>(V);
Benjamin Kramer8bcc9712012-08-29 15:32:21 +0000373 if (!I || !I->use_empty() || !isInstructionTriviallyDead(I, TLI))
Dan Gohmancb99fe92010-01-05 15:45:31 +0000374 return false;
Jakub Staszak8e1a6e72013-07-22 23:16:36 +0000375
Chris Lattnere9f6c352008-11-28 01:20:46 +0000376 SmallVector<Instruction*, 16> DeadInsts;
377 DeadInsts.push_back(I);
Jakub Staszak8e1a6e72013-07-22 23:16:36 +0000378
Dan Gohman28943872010-01-05 16:27:25 +0000379 do {
Dan Gohman9a6fef02009-05-06 17:22:41 +0000380 I = DeadInsts.pop_back_val();
Chris Lattnerd4b5ba62008-11-28 00:58:15 +0000381
Chris Lattnere9f6c352008-11-28 01:20:46 +0000382 // Null out all of the instruction's operands to see if any operand becomes
383 // dead as we go.
384 for (unsigned i = 0, e = I->getNumOperands(); i != e; ++i) {
385 Value *OpV = I->getOperand(i);
Craig Topperf40110f2014-04-25 05:29:35 +0000386 I->setOperand(i, nullptr);
Jakub Staszak8e1a6e72013-07-22 23:16:36 +0000387
Chris Lattnere9f6c352008-11-28 01:20:46 +0000388 if (!OpV->use_empty()) continue;
Jakub Staszak8e1a6e72013-07-22 23:16:36 +0000389
Chris Lattnere9f6c352008-11-28 01:20:46 +0000390 // If the operand is an instruction that became dead as we nulled out the
391 // operand, and if it is 'trivially' dead, delete it in a future loop
392 // iteration.
393 if (Instruction *OpI = dyn_cast<Instruction>(OpV))
Benjamin Kramer8bcc9712012-08-29 15:32:21 +0000394 if (isInstructionTriviallyDead(OpI, TLI))
Chris Lattnere9f6c352008-11-28 01:20:46 +0000395 DeadInsts.push_back(OpI);
396 }
Jakub Staszak8e1a6e72013-07-22 23:16:36 +0000397
Chris Lattnere9f6c352008-11-28 01:20:46 +0000398 I->eraseFromParent();
Dan Gohman28943872010-01-05 16:27:25 +0000399 } while (!DeadInsts.empty());
Dan Gohmancb99fe92010-01-05 15:45:31 +0000400
401 return true;
Chris Lattner28537df2002-05-07 18:07:59 +0000402}
Chris Lattner99d68092008-11-27 07:43:12 +0000403
Nick Lewyckyc8a15692011-02-20 08:38:20 +0000404/// areAllUsesEqual - Check whether the uses of a value are all the same.
405/// This is similar to Instruction::hasOneUse() except this will also return
Duncan Sands6dcd49b2011-02-21 16:27:36 +0000406/// true when there are no uses or multiple uses that all refer to the same
407/// value.
Nick Lewyckyc8a15692011-02-20 08:38:20 +0000408static bool areAllUsesEqual(Instruction *I) {
Chandler Carruthcdf47882014-03-09 03:16:01 +0000409 Value::user_iterator UI = I->user_begin();
410 Value::user_iterator UE = I->user_end();
Nick Lewyckyc8a15692011-02-20 08:38:20 +0000411 if (UI == UE)
Duncan Sands6dcd49b2011-02-21 16:27:36 +0000412 return true;
Nick Lewyckyc8a15692011-02-20 08:38:20 +0000413
414 User *TheUse = *UI;
415 for (++UI; UI != UE; ++UI) {
416 if (*UI != TheUse)
417 return false;
418 }
419 return true;
420}
421
Dan Gohmanff089952009-05-02 18:29:22 +0000422/// RecursivelyDeleteDeadPHINode - If the specified value is an effectively
423/// dead PHI node, due to being a def-use chain of single-use nodes that
424/// either forms a cycle or is terminated by a trivially dead instruction,
425/// delete it. If that makes any of its operands trivially dead, delete them
Duncan Sandsecbbf082011-02-21 17:32:05 +0000426/// too, recursively. Return true if a change was made.
Benjamin Kramer8bcc9712012-08-29 15:32:21 +0000427bool llvm::RecursivelyDeleteDeadPHINode(PHINode *PN,
428 const TargetLibraryInfo *TLI) {
Duncan Sands6dcd49b2011-02-21 16:27:36 +0000429 SmallPtrSet<Instruction*, 4> Visited;
430 for (Instruction *I = PN; areAllUsesEqual(I) && !I->mayHaveSideEffects();
Chandler Carruthcdf47882014-03-09 03:16:01 +0000431 I = cast<Instruction>(*I->user_begin())) {
Duncan Sands6dcd49b2011-02-21 16:27:36 +0000432 if (I->use_empty())
Benjamin Kramer8bcc9712012-08-29 15:32:21 +0000433 return RecursivelyDeleteTriviallyDeadInstructions(I, TLI);
Nick Lewycky183c24c2011-02-20 18:05:56 +0000434
Duncan Sands6dcd49b2011-02-21 16:27:36 +0000435 // If we find an instruction more than once, we're on a cycle that
Dan Gohmanff089952009-05-02 18:29:22 +0000436 // won't prove fruitful.
David Blaikie70573dc2014-11-19 07:49:26 +0000437 if (!Visited.insert(I).second) {
Duncan Sands6dcd49b2011-02-21 16:27:36 +0000438 // Break the cycle and delete the instruction and its operands.
439 I->replaceAllUsesWith(UndefValue::get(I->getType()));
Benjamin Kramer8bcc9712012-08-29 15:32:21 +0000440 (void)RecursivelyDeleteTriviallyDeadInstructions(I, TLI);
Duncan Sandsecbbf082011-02-21 17:32:05 +0000441 return true;
Duncan Sands6dcd49b2011-02-21 16:27:36 +0000442 }
443 }
444 return false;
Dan Gohmanff089952009-05-02 18:29:22 +0000445}
Chris Lattnerc6c481c2008-11-27 22:57:53 +0000446
Fiona Glaserf74cc402015-09-28 18:56:07 +0000447static bool
448simplifyAndDCEInstruction(Instruction *I,
449 SmallSetVector<Instruction *, 16> &WorkList,
450 const DataLayout &DL,
451 const TargetLibraryInfo *TLI) {
452 if (isInstructionTriviallyDead(I, TLI)) {
453 // Null out all of the instruction's operands to see if any operand becomes
454 // dead as we go.
455 for (unsigned i = 0, e = I->getNumOperands(); i != e; ++i) {
456 Value *OpV = I->getOperand(i);
457 I->setOperand(i, nullptr);
458
459 if (!OpV->use_empty() || I == OpV)
460 continue;
461
462 // If the operand is an instruction that became dead as we nulled out the
463 // operand, and if it is 'trivially' dead, delete it in a future loop
464 // iteration.
465 if (Instruction *OpI = dyn_cast<Instruction>(OpV))
466 if (isInstructionTriviallyDead(OpI, TLI))
467 WorkList.insert(OpI);
468 }
469
470 I->eraseFromParent();
471
472 return true;
473 }
474
475 if (Value *SimpleV = SimplifyInstruction(I, DL)) {
476 // Add the users to the worklist. CAREFUL: an instruction can use itself,
477 // in the case of a phi node.
David Majnemerb8da3a22016-06-25 00:04:10 +0000478 for (User *U : I->users()) {
479 if (U != I) {
Fiona Glaserf74cc402015-09-28 18:56:07 +0000480 WorkList.insert(cast<Instruction>(U));
David Majnemerb8da3a22016-06-25 00:04:10 +0000481 }
482 }
Fiona Glaserf74cc402015-09-28 18:56:07 +0000483
484 // Replace the instruction with its simplified value.
David Majnemerb8da3a22016-06-25 00:04:10 +0000485 bool Changed = false;
486 if (!I->use_empty()) {
487 I->replaceAllUsesWith(SimpleV);
488 Changed = true;
489 }
490 if (isInstructionTriviallyDead(I, TLI)) {
491 I->eraseFromParent();
492 Changed = true;
493 }
494 return Changed;
Fiona Glaserf74cc402015-09-28 18:56:07 +0000495 }
496 return false;
497}
498
Chris Lattner7c743f22010-01-12 19:40:54 +0000499/// SimplifyInstructionsInBlock - Scan the specified basic block and try to
500/// simplify any instructions in it and recursively delete dead instructions.
501///
502/// This returns true if it changed the code, note that it can delete
503/// instructions in other blocks as well in this block.
Mehdi Aminia28d91d2015-03-10 02:37:25 +0000504bool llvm::SimplifyInstructionsInBlock(BasicBlock *BB,
Benjamin Kramer8bcc9712012-08-29 15:32:21 +0000505 const TargetLibraryInfo *TLI) {
Chris Lattner7c743f22010-01-12 19:40:54 +0000506 bool MadeChange = false;
Fiona Glaserf74cc402015-09-28 18:56:07 +0000507 const DataLayout &DL = BB->getModule()->getDataLayout();
Chandler Carruth0c72e3f2012-03-25 03:29:25 +0000508
509#ifndef NDEBUG
510 // In debug builds, ensure that the terminator of the block is never replaced
511 // or deleted by these simplifications. The idea of simplification is that it
512 // cannot introduce new instructions, and there is no way to replace the
513 // terminator of a block without introducing a new instruction.
Duncan P. N. Exon Smith5b4c8372015-10-13 02:39:05 +0000514 AssertingVH<Instruction> TerminatorVH(&BB->back());
Chandler Carruth0c72e3f2012-03-25 03:29:25 +0000515#endif
516
Fiona Glaserf74cc402015-09-28 18:56:07 +0000517 SmallSetVector<Instruction *, 16> WorkList;
518 // Iterate over the original function, only adding insts to the worklist
519 // if they actually need to be revisited. This avoids having to pre-init
520 // the worklist with the entire function's worth of instructions.
Chad Rosier56def252016-05-21 21:12:06 +0000521 for (BasicBlock::iterator BI = BB->begin(), E = std::prev(BB->end());
522 BI != E;) {
Chandler Carruth17fc6ef2012-03-24 23:03:27 +0000523 assert(!BI->isTerminator());
Fiona Glaserf74cc402015-09-28 18:56:07 +0000524 Instruction *I = &*BI;
525 ++BI;
Chandler Carruthcf1b5852012-03-24 21:11:24 +0000526
Fiona Glaserf74cc402015-09-28 18:56:07 +0000527 // We're visiting this instruction now, so make sure it's not in the
528 // worklist from an earlier visit.
529 if (!WorkList.count(I))
530 MadeChange |= simplifyAndDCEInstruction(I, WorkList, DL, TLI);
531 }
Eli Friedman17bf4922011-04-02 22:45:17 +0000532
Fiona Glaserf74cc402015-09-28 18:56:07 +0000533 while (!WorkList.empty()) {
534 Instruction *I = WorkList.pop_back_val();
535 MadeChange |= simplifyAndDCEInstruction(I, WorkList, DL, TLI);
Chris Lattner7c743f22010-01-12 19:40:54 +0000536 }
537 return MadeChange;
538}
539
Chris Lattner99d68092008-11-27 07:43:12 +0000540//===----------------------------------------------------------------------===//
Chris Lattner852d6d62009-11-10 22:26:15 +0000541// Control Flow Graph Restructuring.
Chris Lattner99d68092008-11-27 07:43:12 +0000542//
543
Chris Lattner852d6d62009-11-10 22:26:15 +0000544
545/// RemovePredecessorAndSimplify - Like BasicBlock::removePredecessor, this
546/// method is called when we're about to delete Pred as a predecessor of BB. If
547/// BB contains any PHI nodes, this drops the entries in the PHI nodes for Pred.
548///
549/// Unlike the removePredecessor method, this attempts to simplify uses of PHI
550/// nodes that collapse into identity values. For example, if we have:
551/// x = phi(1, 0, 0, 0)
552/// y = and x, z
553///
554/// .. and delete the predecessor corresponding to the '1', this will attempt to
555/// recursively fold the and to 0.
Daniel Jasper0a51ec22017-09-30 11:57:19 +0000556void llvm::RemovePredecessorAndSimplify(BasicBlock *BB, BasicBlock *Pred) {
Chris Lattner852d6d62009-11-10 22:26:15 +0000557 // This only adjusts blocks with PHI nodes.
558 if (!isa<PHINode>(BB->begin()))
559 return;
Jakub Staszak8e1a6e72013-07-22 23:16:36 +0000560
Chris Lattner852d6d62009-11-10 22:26:15 +0000561 // Remove the entries for Pred from the PHI nodes in BB, but do not simplify
562 // them down. This will leave us with single entry phi nodes and other phis
563 // that can be removed.
564 BB->removePredecessor(Pred, true);
Jakub Staszak8e1a6e72013-07-22 23:16:36 +0000565
Sanjoy Dase6bca0e2017-05-01 17:07:49 +0000566 WeakTrackingVH PhiIt = &BB->front();
Chris Lattner852d6d62009-11-10 22:26:15 +0000567 while (PHINode *PN = dyn_cast<PHINode>(PhiIt)) {
568 PhiIt = &*++BasicBlock::iterator(cast<Instruction>(PhiIt));
Chris Lattnere41ab072010-07-15 06:06:04 +0000569 Value *OldPhiIt = PhiIt;
Chandler Carruthcf1b5852012-03-24 21:11:24 +0000570
Mehdi Aminia28d91d2015-03-10 02:37:25 +0000571 if (!recursivelySimplifyInstruction(PN))
Chandler Carruthcf1b5852012-03-24 21:11:24 +0000572 continue;
573
Chris Lattner852d6d62009-11-10 22:26:15 +0000574 // If recursive simplification ended up deleting the next PHI node we would
575 // iterate to, then our iterator is invalid, restart scanning from the top
576 // of the block.
Chris Lattnere41ab072010-07-15 06:06:04 +0000577 if (PhiIt != OldPhiIt) PhiIt = &BB->front();
Chris Lattner852d6d62009-11-10 22:26:15 +0000578 }
579}
580
581
Chris Lattner99d68092008-11-27 07:43:12 +0000582/// MergeBasicBlockIntoOnlyPred - DestBB is a block with one predecessor and its
583/// predecessor is known to have one successor (DestBB!). Eliminate the edge
584/// between them, moving the instructions in the predecessor into DestBB and
585/// deleting the predecessor block.
586///
Chandler Carruth10f28f22015-01-20 01:37:09 +0000587void llvm::MergeBasicBlockIntoOnlyPred(BasicBlock *DestBB, DominatorTree *DT) {
Chris Lattner99d68092008-11-27 07:43:12 +0000588 // If BB has single-entry PHI nodes, fold them.
589 while (PHINode *PN = dyn_cast<PHINode>(DestBB->begin())) {
590 Value *NewVal = PN->getIncomingValue(0);
591 // Replace self referencing PHI with undef, it must be dead.
Owen Andersonb292b8c2009-07-30 23:03:37 +0000592 if (NewVal == PN) NewVal = UndefValue::get(PN->getType());
Chris Lattner99d68092008-11-27 07:43:12 +0000593 PN->replaceAllUsesWith(NewVal);
594 PN->eraseFromParent();
595 }
Jakub Staszak8e1a6e72013-07-22 23:16:36 +0000596
Chris Lattner99d68092008-11-27 07:43:12 +0000597 BasicBlock *PredBB = DestBB->getSinglePredecessor();
598 assert(PredBB && "Block doesn't have a single predecessor!");
Jakub Staszak8e1a6e72013-07-22 23:16:36 +0000599
Chris Lattner6fbfe582010-02-15 20:47:49 +0000600 // Zap anything that took the address of DestBB. Not doing this will give the
601 // address an invalid value.
602 if (DestBB->hasAddressTaken()) {
603 BlockAddress *BA = BlockAddress::get(DestBB);
604 Constant *Replacement =
605 ConstantInt::get(llvm::Type::getInt32Ty(BA->getContext()), 1);
606 BA->replaceAllUsesWith(ConstantExpr::getIntToPtr(Replacement,
607 BA->getType()));
608 BA->destroyConstant();
609 }
Jakub Staszak8e1a6e72013-07-22 23:16:36 +0000610
Chris Lattner99d68092008-11-27 07:43:12 +0000611 // Anything that branched to PredBB now branches to DestBB.
612 PredBB->replaceAllUsesWith(DestBB);
Jakub Staszak8e1a6e72013-07-22 23:16:36 +0000613
Jay Foad61ea0e42011-06-23 09:09:15 +0000614 // Splice all the instructions from PredBB to DestBB.
615 PredBB->getTerminator()->eraseFromParent();
Bill Wendling90dd90a2013-10-21 04:09:17 +0000616 DestBB->getInstList().splice(DestBB->begin(), PredBB->getInstList());
Jay Foad61ea0e42011-06-23 09:09:15 +0000617
Owen Andersona8d1c3e2014-07-12 07:12:47 +0000618 // If the PredBB is the entry block of the function, move DestBB up to
619 // become the entry block after we erase PredBB.
Daniel Jasper0a51ec22017-09-30 11:57:19 +0000620 if (PredBB == &DestBB->getParent()->getEntryBlock())
Owen Andersona8d1c3e2014-07-12 07:12:47 +0000621 DestBB->moveAfter(PredBB);
Evandro Menezes3701df52017-09-28 17:24:40 +0000622
Daniel Jasper0a51ec22017-09-30 11:57:19 +0000623 if (DT) {
624 BasicBlock *PredBBIDom = DT->getNode(PredBB)->getIDom()->getBlock();
625 DT->changeImmediateDominator(DestBB, PredBBIDom);
626 DT->eraseNode(PredBB);
Evandro Menezes3701df52017-09-28 17:24:40 +0000627 }
Chris Lattner99d68092008-11-27 07:43:12 +0000628 // Nuke BB.
629 PredBB->eraseFromParent();
630}
Devang Patelcaf44852009-02-10 07:00:59 +0000631
Duncan Sandse773c082013-07-11 08:28:20 +0000632/// CanMergeValues - Return true if we can choose one of these values to use
633/// in place of the other. Note that we will always choose the non-undef
634/// value to keep.
635static bool CanMergeValues(Value *First, Value *Second) {
636 return First == Second || isa<UndefValue>(First) || isa<UndefValue>(Second);
637}
638
Chris Lattnercbd18fc2009-11-10 05:59:26 +0000639/// CanPropagatePredecessorsForPHIs - Return true if we can fold BB, an
Mark Laceya2626552013-08-14 22:11:42 +0000640/// almost-empty BB ending in an unconditional branch to Succ, into Succ.
Chris Lattnercbd18fc2009-11-10 05:59:26 +0000641///
642/// Assumption: Succ is the single successor for BB.
643///
644static bool CanPropagatePredecessorsForPHIs(BasicBlock *BB, BasicBlock *Succ) {
645 assert(*succ_begin(BB) == Succ && "Succ is not successor of BB!");
646
Jakub Staszak8e1a6e72013-07-22 23:16:36 +0000647 DEBUG(dbgs() << "Looking to fold " << BB->getName() << " into "
Chris Lattnercbd18fc2009-11-10 05:59:26 +0000648 << Succ->getName() << "\n");
649 // Shortcut, if there is only a single predecessor it must be BB and merging
650 // is always safe
651 if (Succ->getSinglePredecessor()) return true;
652
653 // Make a list of the predecessors of BB
Benjamin Kramerb5188f12011-12-06 16:14:29 +0000654 SmallPtrSet<BasicBlock*, 16> BBPreds(pred_begin(BB), pred_end(BB));
Chris Lattnercbd18fc2009-11-10 05:59:26 +0000655
Chris Lattnercbd18fc2009-11-10 05:59:26 +0000656 // Look at all the phi nodes in Succ, to see if they present a conflict when
657 // merging these blocks
658 for (BasicBlock::iterator I = Succ->begin(); isa<PHINode>(I); ++I) {
659 PHINode *PN = cast<PHINode>(I);
660
661 // If the incoming value from BB is again a PHINode in
662 // BB which has the same incoming value for *PI as PN does, we can
663 // merge the phi nodes and then the blocks can still be merged
664 PHINode *BBPN = dyn_cast<PHINode>(PN->getIncomingValueForBlock(BB));
665 if (BBPN && BBPN->getParent() == BB) {
Benjamin Kramerb5188f12011-12-06 16:14:29 +0000666 for (unsigned PI = 0, PE = PN->getNumIncomingValues(); PI != PE; ++PI) {
667 BasicBlock *IBB = PN->getIncomingBlock(PI);
668 if (BBPreds.count(IBB) &&
Duncan Sandse773c082013-07-11 08:28:20 +0000669 !CanMergeValues(BBPN->getIncomingValueForBlock(IBB),
670 PN->getIncomingValue(PI))) {
Jakub Staszak8e1a6e72013-07-22 23:16:36 +0000671 DEBUG(dbgs() << "Can't fold, phi node " << PN->getName() << " in "
672 << Succ->getName() << " is conflicting with "
Chris Lattnercbd18fc2009-11-10 05:59:26 +0000673 << BBPN->getName() << " with regard to common predecessor "
Benjamin Kramerb5188f12011-12-06 16:14:29 +0000674 << IBB->getName() << "\n");
Chris Lattnercbd18fc2009-11-10 05:59:26 +0000675 return false;
676 }
677 }
678 } else {
679 Value* Val = PN->getIncomingValueForBlock(BB);
Benjamin Kramerb5188f12011-12-06 16:14:29 +0000680 for (unsigned PI = 0, PE = PN->getNumIncomingValues(); PI != PE; ++PI) {
Chris Lattnercbd18fc2009-11-10 05:59:26 +0000681 // See if the incoming value for the common predecessor is equal to the
682 // one for BB, in which case this phi node will not prevent the merging
683 // of the block.
Benjamin Kramerb5188f12011-12-06 16:14:29 +0000684 BasicBlock *IBB = PN->getIncomingBlock(PI);
Duncan Sandse773c082013-07-11 08:28:20 +0000685 if (BBPreds.count(IBB) &&
686 !CanMergeValues(Val, PN->getIncomingValue(PI))) {
Jakub Staszak8e1a6e72013-07-22 23:16:36 +0000687 DEBUG(dbgs() << "Can't fold, phi node " << PN->getName() << " in "
Chris Lattnercbd18fc2009-11-10 05:59:26 +0000688 << Succ->getName() << " is conflicting with regard to common "
Benjamin Kramerb5188f12011-12-06 16:14:29 +0000689 << "predecessor " << IBB->getName() << "\n");
Chris Lattnercbd18fc2009-11-10 05:59:26 +0000690 return false;
691 }
692 }
693 }
694 }
695
696 return true;
697}
698
Duncan Sandse773c082013-07-11 08:28:20 +0000699typedef SmallVector<BasicBlock *, 16> PredBlockVector;
700typedef DenseMap<BasicBlock *, Value *> IncomingValueMap;
701
702/// \brief Determines the value to use as the phi node input for a block.
703///
704/// Select between \p OldVal any value that we know flows from \p BB
705/// to a particular phi on the basis of which one (if either) is not
706/// undef. Update IncomingValues based on the selected value.
707///
708/// \param OldVal The value we are considering selecting.
709/// \param BB The block that the value flows in from.
710/// \param IncomingValues A map from block-to-value for other phi inputs
711/// that we have examined.
712///
713/// \returns the selected value.
714static Value *selectIncomingValueForBlock(Value *OldVal, BasicBlock *BB,
715 IncomingValueMap &IncomingValues) {
716 if (!isa<UndefValue>(OldVal)) {
717 assert((!IncomingValues.count(BB) ||
718 IncomingValues.find(BB)->second == OldVal) &&
719 "Expected OldVal to match incoming value from BB!");
720
721 IncomingValues.insert(std::make_pair(BB, OldVal));
722 return OldVal;
723 }
724
725 IncomingValueMap::const_iterator It = IncomingValues.find(BB);
726 if (It != IncomingValues.end()) return It->second;
727
728 return OldVal;
729}
730
731/// \brief Create a map from block to value for the operands of a
732/// given phi.
733///
734/// Create a map from block to value for each non-undef value flowing
735/// into \p PN.
736///
737/// \param PN The phi we are collecting the map for.
738/// \param IncomingValues [out] The map from block to value for this phi.
739static void gatherIncomingValuesToPhi(PHINode *PN,
740 IncomingValueMap &IncomingValues) {
741 for (unsigned i = 0, e = PN->getNumIncomingValues(); i != e; ++i) {
742 BasicBlock *BB = PN->getIncomingBlock(i);
743 Value *V = PN->getIncomingValue(i);
744
745 if (!isa<UndefValue>(V))
746 IncomingValues.insert(std::make_pair(BB, V));
747 }
748}
749
750/// \brief Replace the incoming undef values to a phi with the values
751/// from a block-to-value map.
752///
753/// \param PN The phi we are replacing the undefs in.
754/// \param IncomingValues A map from block to value.
755static void replaceUndefValuesInPhi(PHINode *PN,
756 const IncomingValueMap &IncomingValues) {
757 for (unsigned i = 0, e = PN->getNumIncomingValues(); i != e; ++i) {
758 Value *V = PN->getIncomingValue(i);
759
760 if (!isa<UndefValue>(V)) continue;
761
762 BasicBlock *BB = PN->getIncomingBlock(i);
763 IncomingValueMap::const_iterator It = IncomingValues.find(BB);
764 if (It == IncomingValues.end()) continue;
765
766 PN->setIncomingValue(i, It->second);
767 }
768}
769
770/// \brief Replace a value flowing from a block to a phi with
771/// potentially multiple instances of that value flowing from the
772/// block's predecessors to the phi.
773///
774/// \param BB The block with the value flowing into the phi.
775/// \param BBPreds The predecessors of BB.
776/// \param PN The phi that we are updating.
777static void redirectValuesFromPredecessorsToPhi(BasicBlock *BB,
778 const PredBlockVector &BBPreds,
779 PHINode *PN) {
780 Value *OldVal = PN->removeIncomingValue(BB, false);
781 assert(OldVal && "No entry in PHI for Pred BB!");
782
783 IncomingValueMap IncomingValues;
784
785 // We are merging two blocks - BB, and the block containing PN - and
786 // as a result we need to redirect edges from the predecessors of BB
787 // to go to the block containing PN, and update PN
788 // accordingly. Since we allow merging blocks in the case where the
789 // predecessor and successor blocks both share some predecessors,
790 // and where some of those common predecessors might have undef
791 // values flowing into PN, we want to rewrite those values to be
792 // consistent with the non-undef values.
793
794 gatherIncomingValuesToPhi(PN, IncomingValues);
795
796 // If this incoming value is one of the PHI nodes in BB, the new entries
797 // in the PHI node are the entries from the old PHI.
798 if (isa<PHINode>(OldVal) && cast<PHINode>(OldVal)->getParent() == BB) {
799 PHINode *OldValPN = cast<PHINode>(OldVal);
800 for (unsigned i = 0, e = OldValPN->getNumIncomingValues(); i != e; ++i) {
801 // Note that, since we are merging phi nodes and BB and Succ might
802 // have common predecessors, we could end up with a phi node with
803 // identical incoming branches. This will be cleaned up later (and
804 // will trigger asserts if we try to clean it up now, without also
805 // simplifying the corresponding conditional branch).
806 BasicBlock *PredBB = OldValPN->getIncomingBlock(i);
807 Value *PredVal = OldValPN->getIncomingValue(i);
808 Value *Selected = selectIncomingValueForBlock(PredVal, PredBB,
809 IncomingValues);
810
811 // And add a new incoming value for this predecessor for the
812 // newly retargeted branch.
813 PN->addIncoming(Selected, PredBB);
814 }
815 } else {
816 for (unsigned i = 0, e = BBPreds.size(); i != e; ++i) {
817 // Update existing incoming values in PN for this
818 // predecessor of BB.
819 BasicBlock *PredBB = BBPreds[i];
820 Value *Selected = selectIncomingValueForBlock(OldVal, PredBB,
821 IncomingValues);
822
823 // And add a new incoming value for this predecessor for the
824 // newly retargeted branch.
825 PN->addIncoming(Selected, PredBB);
826 }
827 }
828
829 replaceUndefValuesInPhi(PN, IncomingValues);
830}
831
Chris Lattnercbd18fc2009-11-10 05:59:26 +0000832/// TryToSimplifyUncondBranchFromEmptyBlock - BB is known to contain an
833/// unconditional branch, and contains no instructions other than PHI nodes,
Rafael Espindolab10a0f22011-06-30 20:14:24 +0000834/// potential side-effect free intrinsics and the branch. If possible,
835/// eliminate BB by rewriting all the predecessors to branch to the successor
836/// block and return true. If we can't transform, return false.
Daniel Jasper0a51ec22017-09-30 11:57:19 +0000837bool llvm::TryToSimplifyUncondBranchFromEmptyBlock(BasicBlock *BB) {
Dan Gohman4a63fad2010-08-14 00:29:42 +0000838 assert(BB != &BB->getParent()->getEntryBlock() &&
839 "TryToSimplifyUncondBranchFromEmptyBlock called on entry block!");
840
Chris Lattnercbd18fc2009-11-10 05:59:26 +0000841 // We can't eliminate infinite loops.
842 BasicBlock *Succ = cast<BranchInst>(BB->getTerminator())->getSuccessor(0);
843 if (BB == Succ) return false;
Jakub Staszak8e1a6e72013-07-22 23:16:36 +0000844
Reid Klecknerbca59d22016-05-02 19:43:22 +0000845 // Check to see if merging these blocks would cause conflicts for any of the
846 // phi nodes in BB or Succ. If not, we can safely merge.
847 if (!CanPropagatePredecessorsForPHIs(BB, Succ)) return false;
Chris Lattnercbd18fc2009-11-10 05:59:26 +0000848
Reid Klecknerbca59d22016-05-02 19:43:22 +0000849 // Check for cases where Succ has multiple predecessors and a PHI node in BB
850 // has uses which will not disappear when the PHI nodes are merged. It is
851 // possible to handle such cases, but difficult: it requires checking whether
852 // BB dominates Succ, which is non-trivial to calculate in the case where
853 // Succ has multiple predecessors. Also, it requires checking whether
854 // constructing the necessary self-referential PHI node doesn't introduce any
855 // conflicts; this isn't too difficult, but the previous code for doing this
856 // was incorrect.
857 //
858 // Note that if this check finds a live use, BB dominates Succ, so BB is
859 // something like a loop pre-header (or rarely, a part of an irreducible CFG);
860 // folding the branch isn't profitable in that case anyway.
861 if (!Succ->getSinglePredecessor()) {
862 BasicBlock::iterator BBI = BB->begin();
863 while (isa<PHINode>(*BBI)) {
864 for (Use &U : BBI->uses()) {
865 if (PHINode* PN = dyn_cast<PHINode>(U.getUser())) {
866 if (PN->getIncomingBlock(U) != BB)
Hans Wennborgb7599322016-05-02 17:22:54 +0000867 return false;
Reid Klecknerbca59d22016-05-02 19:43:22 +0000868 } else {
869 return false;
Hans Wennborgb7599322016-05-02 17:22:54 +0000870 }
Hans Wennborgb7599322016-05-02 17:22:54 +0000871 }
Reid Klecknerbca59d22016-05-02 19:43:22 +0000872 ++BBI;
Hans Wennborgb7599322016-05-02 17:22:54 +0000873 }
Hans Wennborgb7599322016-05-02 17:22:54 +0000874 }
Reid Klecknerbca59d22016-05-02 19:43:22 +0000875
876 DEBUG(dbgs() << "Killing Trivial BB: \n" << *BB);
877
878 if (isa<PHINode>(Succ->begin())) {
879 // If there is more than one pred of succ, and there are PHI nodes in
880 // the successor, then we need to add incoming edges for the PHI nodes
881 //
882 const PredBlockVector BBPreds(pred_begin(BB), pred_end(BB));
883
884 // Loop over all of the PHI nodes in the successor of BB.
885 for (BasicBlock::iterator I = Succ->begin(); isa<PHINode>(I); ++I) {
886 PHINode *PN = cast<PHINode>(I);
887
888 redirectValuesFromPredecessorsToPhi(BB, BBPreds, PN);
889 }
890 }
891
892 if (Succ->getSinglePredecessor()) {
893 // BB is the only predecessor of Succ, so Succ will end up with exactly
894 // the same predecessors BB had.
895
896 // Copy over any phi, debug or lifetime instruction.
897 BB->getTerminator()->eraseFromParent();
898 Succ->getInstList().splice(Succ->getFirstNonPHI()->getIterator(),
899 BB->getInstList());
900 } else {
901 while (PHINode *PN = dyn_cast<PHINode>(&BB->front())) {
902 // We explicitly check for such uses in CanPropagatePredecessorsForPHIs.
903 assert(PN->use_empty() && "There shouldn't be any uses here!");
904 PN->eraseFromParent();
905 }
906 }
907
Florian Hahn77382be2016-11-18 13:12:07 +0000908 // If the unconditional branch we replaced contains llvm.loop metadata, we
909 // add the metadata to the branch instructions in the predecessors.
910 unsigned LoopMDKind = BB->getContext().getMDKindID("llvm.loop");
911 Instruction *TI = BB->getTerminator();
Daniel Jasper0a51ec22017-09-30 11:57:19 +0000912 if (TI)
Florian Hahn77382be2016-11-18 13:12:07 +0000913 if (MDNode *LoopMD = TI->getMetadata(LoopMDKind))
914 for (pred_iterator PI = pred_begin(BB), E = pred_end(BB); PI != E; ++PI) {
915 BasicBlock *Pred = *PI;
916 Pred->getTerminator()->setMetadata(LoopMDKind, LoopMD);
917 }
918
Reid Klecknerbca59d22016-05-02 19:43:22 +0000919 // Everything that jumped to BB now goes to Succ.
920 BB->replaceAllUsesWith(Succ);
921 if (!Succ->hasName()) Succ->takeName(BB);
922 BB->eraseFromParent(); // Delete the old basic block.
923 return true;
Chris Lattnercbd18fc2009-11-10 05:59:26 +0000924}
925
Jim Grosbachd831ef42009-12-02 17:06:45 +0000926/// EliminateDuplicatePHINodes - Check for and eliminate duplicate PHI
927/// nodes in this block. This doesn't try to be clever about PHI nodes
928/// which differ only in the order of the incoming values, but instcombine
929/// orders them so it usually won't matter.
930///
931bool llvm::EliminateDuplicatePHINodes(BasicBlock *BB) {
Jim Grosbachd831ef42009-12-02 17:06:45 +0000932 // This implementation doesn't currently consider undef operands
Nick Lewyckyfa44dc62011-06-28 03:57:31 +0000933 // specially. Theoretically, two phis which are identical except for
Jim Grosbachd831ef42009-12-02 17:06:45 +0000934 // one having an undef where the other doesn't could be collapsed.
935
Benjamin Kramer2b2cdd72015-06-18 16:01:00 +0000936 struct PHIDenseMapInfo {
937 static PHINode *getEmptyKey() {
938 return DenseMapInfo<PHINode *>::getEmptyKey();
939 }
940 static PHINode *getTombstoneKey() {
941 return DenseMapInfo<PHINode *>::getTombstoneKey();
942 }
943 static unsigned getHashValue(PHINode *PN) {
944 // Compute a hash value on the operands. Instcombine will likely have
945 // sorted them, which helps expose duplicates, but we have to check all
946 // the operands to be safe in case instcombine hasn't run.
947 return static_cast<unsigned>(hash_combine(
948 hash_combine_range(PN->value_op_begin(), PN->value_op_end()),
949 hash_combine_range(PN->block_begin(), PN->block_end())));
950 }
951 static bool isEqual(PHINode *LHS, PHINode *RHS) {
952 if (LHS == getEmptyKey() || LHS == getTombstoneKey() ||
953 RHS == getEmptyKey() || RHS == getTombstoneKey())
954 return LHS == RHS;
955 return LHS->isIdenticalTo(RHS);
956 }
957 };
Jim Grosbachd831ef42009-12-02 17:06:45 +0000958
Benjamin Kramer2b2cdd72015-06-18 16:01:00 +0000959 // Set of unique PHINodes.
960 DenseSet<PHINode *, PHIDenseMapInfo> PHISet;
Jim Grosbachd831ef42009-12-02 17:06:45 +0000961
962 // Examine each PHI.
Benjamin Kramer2b2cdd72015-06-18 16:01:00 +0000963 bool Changed = false;
964 for (auto I = BB->begin(); PHINode *PN = dyn_cast<PHINode>(I++);) {
965 auto Inserted = PHISet.insert(PN);
966 if (!Inserted.second) {
967 // A duplicate. Replace this PHI with its duplicate.
968 PN->replaceAllUsesWith(*Inserted.first);
969 PN->eraseFromParent();
970 Changed = true;
Benjamin Kramerf175e042015-09-02 19:52:23 +0000971
972 // The RAUW can change PHIs that we already visited. Start over from the
973 // beginning.
974 PHISet.clear();
975 I = BB->begin();
Jim Grosbachd831ef42009-12-02 17:06:45 +0000976 }
977 }
978
979 return Changed;
980}
Chris Lattner6fcd32e2010-12-25 20:37:57 +0000981
982/// enforceKnownAlignment - If the specified pointer points to an object that
983/// we control, modify the object's alignment to PrefAlign. This isn't
984/// often possible though. If alignment is important, a more reliable approach
985/// is to simply align all global variables and allocation instructions to
986/// their preferred alignment from the beginning.
987///
Benjamin Kramer570dd782010-12-30 22:34:44 +0000988static unsigned enforceKnownAlignment(Value *V, unsigned Align,
Mehdi Aminia28d91d2015-03-10 02:37:25 +0000989 unsigned PrefAlign,
990 const DataLayout &DL) {
James Y Knightac03dca2016-01-15 16:33:06 +0000991 assert(PrefAlign > Align);
992
Eli Friedman19ace4c2011-06-15 21:08:25 +0000993 V = V->stripPointerCasts();
Chris Lattner6fcd32e2010-12-25 20:37:57 +0000994
Eli Friedman19ace4c2011-06-15 21:08:25 +0000995 if (AllocaInst *AI = dyn_cast<AllocaInst>(V)) {
James Y Knightac03dca2016-01-15 16:33:06 +0000996 // TODO: ideally, computeKnownBits ought to have used
997 // AllocaInst::getAlignment() in its computation already, making
998 // the below max redundant. But, as it turns out,
999 // stripPointerCasts recurses through infinite layers of bitcasts,
1000 // while computeKnownBits is not allowed to traverse more than 6
1001 // levels.
1002 Align = std::max(AI->getAlignment(), Align);
1003 if (PrefAlign <= Align)
1004 return Align;
1005
Lang Hamesde7ab802011-10-10 23:42:08 +00001006 // If the preferred alignment is greater than the natural stack alignment
1007 // then don't round up. This avoids dynamic stack realignment.
Mehdi Aminia28d91d2015-03-10 02:37:25 +00001008 if (DL.exceedsNaturalStackAlignment(PrefAlign))
Lang Hamesde7ab802011-10-10 23:42:08 +00001009 return Align;
Chris Lattner6fcd32e2010-12-25 20:37:57 +00001010 AI->setAlignment(PrefAlign);
1011 return PrefAlign;
1012 }
Chris Lattner6fcd32e2010-12-25 20:37:57 +00001013
Rafael Espindola99e05cf2014-05-13 18:45:48 +00001014 if (auto *GO = dyn_cast<GlobalObject>(V)) {
James Y Knightac03dca2016-01-15 16:33:06 +00001015 // TODO: as above, this shouldn't be necessary.
1016 Align = std::max(GO->getAlignment(), Align);
1017 if (PrefAlign <= Align)
1018 return Align;
1019
Chris Lattner6fcd32e2010-12-25 20:37:57 +00001020 // If there is a large requested alignment and we can, bump up the alignment
Reid Kleckner486fa392015-07-14 00:11:08 +00001021 // of the global. If the memory we set aside for the global may not be the
1022 // memory used by the final program then it is impossible for us to reliably
1023 // enforce the preferred alignment.
James Y Knightac03dca2016-01-15 16:33:06 +00001024 if (!GO->canIncreaseAlignment())
Rafael Espindolafc13db42014-05-09 16:01:06 +00001025 return Align;
Jakub Staszak8e1a6e72013-07-22 23:16:36 +00001026
James Y Knightac03dca2016-01-15 16:33:06 +00001027 GO->setAlignment(PrefAlign);
1028 return PrefAlign;
Chris Lattner6fcd32e2010-12-25 20:37:57 +00001029 }
1030
1031 return Align;
1032}
1033
Chris Lattner6fcd32e2010-12-25 20:37:57 +00001034unsigned llvm::getOrEnforceKnownAlignment(Value *V, unsigned PrefAlign,
Mehdi Aminia28d91d2015-03-10 02:37:25 +00001035 const DataLayout &DL,
Hal Finkel60db0582014-09-07 18:57:58 +00001036 const Instruction *CxtI,
Daniel Jasperaec2fa32016-12-19 08:22:17 +00001037 AssumptionCache *AC,
Hal Finkel60db0582014-09-07 18:57:58 +00001038 const DominatorTree *DT) {
Chris Lattner6fcd32e2010-12-25 20:37:57 +00001039 assert(V->getType()->isPointerTy() &&
1040 "getOrEnforceKnownAlignment expects a pointer!");
Matt Arsenault87dc6072013-08-01 22:42:18 +00001041
Craig Topper8205a1a2017-05-24 16:53:07 +00001042 KnownBits Known = computeKnownBits(V, DL, 0, AC, CxtI, DT);
Craig Topper8df66c62017-05-12 17:20:30 +00001043 unsigned TrailZ = Known.countMinTrailingZeros();
Jakub Staszak8e1a6e72013-07-22 23:16:36 +00001044
Matt Arsenaultf64212b2013-07-23 22:20:57 +00001045 // Avoid trouble with ridiculously large TrailZ values, such as
Chris Lattner6fcd32e2010-12-25 20:37:57 +00001046 // those computed from a null pointer.
1047 TrailZ = std::min(TrailZ, unsigned(sizeof(unsigned) * CHAR_BIT - 1));
Jakub Staszak8e1a6e72013-07-22 23:16:36 +00001048
Craig Topper8205a1a2017-05-24 16:53:07 +00001049 unsigned Align = 1u << std::min(Known.getBitWidth() - 1, TrailZ);
Jakub Staszak8e1a6e72013-07-22 23:16:36 +00001050
Chris Lattner6fcd32e2010-12-25 20:37:57 +00001051 // LLVM doesn't support alignments larger than this currently.
1052 Align = std::min(Align, +Value::MaximumAlignment);
Jakub Staszak8e1a6e72013-07-22 23:16:36 +00001053
Chris Lattner6fcd32e2010-12-25 20:37:57 +00001054 if (PrefAlign > Align)
Matt Arsenault87dc6072013-08-01 22:42:18 +00001055 Align = enforceKnownAlignment(V, Align, PrefAlign, DL);
Jakub Staszak8e1a6e72013-07-22 23:16:36 +00001056
Chris Lattner6fcd32e2010-12-25 20:37:57 +00001057 // We don't need to make any adjustment.
1058 return Align;
1059}
1060
Devang Patel8c0b16b2011-03-17 21:58:19 +00001061///===---------------------------------------------------------------------===//
1062/// Dbg Intrinsic utilities
1063///
1064
Adrian Prantl29b9de72013-04-26 17:48:33 +00001065/// See if there is a dbg.value intrinsic for DIVar before I.
Adrian Prantla5b2a642016-02-17 20:02:25 +00001066static bool LdStHasDebugValue(DILocalVariable *DIVar, DIExpression *DIExpr,
1067 Instruction *I) {
Adrian Prantl29b9de72013-04-26 17:48:33 +00001068 // Since we can't guarantee that the original dbg.declare instrinsic
1069 // is removed by LowerDbgDeclare(), we need to make sure that we are
1070 // not inserting the same dbg.value intrinsic over and over.
1071 llvm::BasicBlock::InstListType::iterator PrevI(I);
1072 if (PrevI != I->getParent()->getInstList().begin()) {
1073 --PrevI;
1074 if (DbgValueInst *DVI = dyn_cast<DbgValueInst>(PrevI))
1075 if (DVI->getValue() == I->getOperand(0) &&
Adrian Prantla5b2a642016-02-17 20:02:25 +00001076 DVI->getVariable() == DIVar &&
1077 DVI->getExpression() == DIExpr)
Adrian Prantl29b9de72013-04-26 17:48:33 +00001078 return true;
1079 }
1080 return false;
1081}
1082
Keith Walkerba159892016-09-22 14:13:25 +00001083/// See if there is a dbg.value intrinsic for DIVar for the PHI node.
Chandler Carruth2abb65a2017-06-26 03:31:31 +00001084static bool PhiHasDebugValue(DILocalVariable *DIVar,
Keith Walkerba159892016-09-22 14:13:25 +00001085 DIExpression *DIExpr,
1086 PHINode *APN) {
1087 // Since we can't guarantee that the original dbg.declare instrinsic
1088 // is removed by LowerDbgDeclare(), we need to make sure that we are
1089 // not inserting the same dbg.value intrinsic over and over.
Adrian Prantlfa9e84e2017-03-16 20:11:54 +00001090 SmallVector<DbgValueInst *, 1> DbgValues;
1091 findDbgValues(DbgValues, APN);
1092 for (auto *DVI : DbgValues) {
1093 assert(DVI->getValue() == APN);
Adrian Prantlfa9e84e2017-03-16 20:11:54 +00001094 if ((DVI->getVariable() == DIVar) && (DVI->getExpression() == DIExpr))
1095 return true;
1096 }
1097 return false;
Keith Walkerba159892016-09-22 14:13:25 +00001098}
1099
Adrian Prantld00333a2013-04-26 18:10:50 +00001100/// Inserts a llvm.dbg.value intrinsic before a store to an alloca'd value
Reid Kleckner0fe506b2017-09-21 19:52:03 +00001101/// that has an associated llvm.dbg.declare or llvm.dbg.addr intrinsic.
1102void llvm::ConvertDebugDeclareToDebugValue(DbgInfoIntrinsic *DII,
Devang Patel8c0b16b2011-03-17 21:58:19 +00001103 StoreInst *SI, DIBuilder &Builder) {
Reid Kleckner0fe506b2017-09-21 19:52:03 +00001104 assert(DII->isAddressOfVariable());
1105 auto *DIVar = DII->getVariable();
Duncan P. N. Exon Smithd4a19a32015-04-21 18:24:23 +00001106 assert(DIVar && "Missing variable");
Reid Kleckner0fe506b2017-09-21 19:52:03 +00001107 auto *DIExpr = DII->getExpression();
David Blaikie441cfee2017-05-15 21:34:01 +00001108 Value *DV = SI->getOperand(0);
Devang Patel8c0b16b2011-03-17 21:58:19 +00001109
Devang Patel8e60ff12011-05-16 21:24:05 +00001110 // If an argument is zero extended then use argument directly. The ZExt
1111 // may be zapped by an optimization pass in future.
Craig Topperf40110f2014-04-25 05:29:35 +00001112 Argument *ExtendedArg = nullptr;
Devang Patel8e60ff12011-05-16 21:24:05 +00001113 if (ZExtInst *ZExt = dyn_cast<ZExtInst>(SI->getOperand(0)))
1114 ExtendedArg = dyn_cast<Argument>(ZExt->getOperand(0));
1115 if (SExtInst *SExt = dyn_cast<SExtInst>(SI->getOperand(0)))
1116 ExtendedArg = dyn_cast<Argument>(SExt->getOperand(0));
Keno Fischer9aae4452016-01-12 22:46:09 +00001117 if (ExtendedArg) {
Reid Kleckner0fe506b2017-09-21 19:52:03 +00001118 // If this DII was already describing only a fragment of a variable, ensure
David Blaikie441cfee2017-05-15 21:34:01 +00001119 // that fragment is appropriately narrowed here.
1120 // But if a fragment wasn't used, describe the value as the original
1121 // argument (rather than the zext or sext) so that it remains described even
1122 // if the sext/zext is optimized away. This widens the variable description,
1123 // leaving it up to the consumer to know how the smaller value may be
1124 // represented in a larger register.
1125 if (auto Fragment = DIExpr->getFragmentInfo()) {
1126 unsigned FragmentOffset = Fragment->OffsetInBits;
1127 SmallVector<uint64_t, 3> Ops(DIExpr->elements_begin(),
1128 DIExpr->elements_end() - 3);
1129 Ops.push_back(dwarf::DW_OP_LLVM_fragment);
1130 Ops.push_back(FragmentOffset);
Reid Kleckner0fe506b2017-09-21 19:52:03 +00001131 const DataLayout &DL = DII->getModule()->getDataLayout();
David Blaikie441cfee2017-05-15 21:34:01 +00001132 Ops.push_back(DL.getTypeSizeInBits(ExtendedArg->getType()));
1133 DIExpr = Builder.createExpression(Ops);
Keno Fischer9aae4452016-01-12 22:46:09 +00001134 }
David Blaikie441cfee2017-05-15 21:34:01 +00001135 DV = ExtendedArg;
1136 }
1137 if (!LdStHasDebugValue(DIVar, DIExpr, SI))
Reid Kleckner0fe506b2017-09-21 19:52:03 +00001138 Builder.insertDbgValueIntrinsic(DV, DIVar, DIExpr, DII->getDebugLoc(),
David Blaikie441cfee2017-05-15 21:34:01 +00001139 SI);
Devang Patel8c0b16b2011-03-17 21:58:19 +00001140}
1141
Adrian Prantld00333a2013-04-26 18:10:50 +00001142/// Inserts a llvm.dbg.value intrinsic before a load of an alloca'd value
Reid Kleckner0fe506b2017-09-21 19:52:03 +00001143/// that has an associated llvm.dbg.declare or llvm.dbg.addr intrinsic.
1144void llvm::ConvertDebugDeclareToDebugValue(DbgInfoIntrinsic *DII,
Devang Patel2c7ee272011-03-18 23:45:43 +00001145 LoadInst *LI, DIBuilder &Builder) {
Reid Kleckner0fe506b2017-09-21 19:52:03 +00001146 auto *DIVar = DII->getVariable();
1147 auto *DIExpr = DII->getExpression();
Duncan P. N. Exon Smithd4a19a32015-04-21 18:24:23 +00001148 assert(DIVar && "Missing variable");
Devang Patel2c7ee272011-03-18 23:45:43 +00001149
Adrian Prantla5b2a642016-02-17 20:02:25 +00001150 if (LdStHasDebugValue(DIVar, DIExpr, LI))
Keith Walkerba159892016-09-22 14:13:25 +00001151 return;
Adrian Prantl29b9de72013-04-26 17:48:33 +00001152
Keno Fischer00cbf9a2015-12-19 02:02:44 +00001153 // We are now tracking the loaded value instead of the address. In the
1154 // future if multi-location support is added to the IR, it might be
1155 // preferable to keep tracking both the loaded value and the original
1156 // address in case the alloca can not be elided.
1157 Instruction *DbgValue = Builder.insertDbgValueIntrinsic(
Reid Kleckner0fe506b2017-09-21 19:52:03 +00001158 LI, DIVar, DIExpr, DII->getDebugLoc(), (Instruction *)nullptr);
Keno Fischer00cbf9a2015-12-19 02:02:44 +00001159 DbgValue->insertAfter(LI);
Keith Walkerba159892016-09-22 14:13:25 +00001160}
1161
Reid Kleckner0fe506b2017-09-21 19:52:03 +00001162/// Inserts a llvm.dbg.value intrinsic after a phi that has an associated
1163/// llvm.dbg.declare or llvm.dbg.addr intrinsic.
1164void llvm::ConvertDebugDeclareToDebugValue(DbgInfoIntrinsic *DII,
Keith Walkerba159892016-09-22 14:13:25 +00001165 PHINode *APN, DIBuilder &Builder) {
Reid Kleckner0fe506b2017-09-21 19:52:03 +00001166 auto *DIVar = DII->getVariable();
1167 auto *DIExpr = DII->getExpression();
Keith Walkerba159892016-09-22 14:13:25 +00001168 assert(DIVar && "Missing variable");
1169
1170 if (PhiHasDebugValue(DIVar, DIExpr, APN))
1171 return;
1172
Reid Kleckner64818222016-09-27 18:45:31 +00001173 BasicBlock *BB = APN->getParent();
Keith Walkerba159892016-09-22 14:13:25 +00001174 auto InsertionPt = BB->getFirstInsertionPt();
Reid Kleckner64818222016-09-27 18:45:31 +00001175
1176 // The block may be a catchswitch block, which does not have a valid
1177 // insertion point.
1178 // FIXME: Insert dbg.value markers in the successors when appropriate.
1179 if (InsertionPt != BB->end())
Reid Kleckner0fe506b2017-09-21 19:52:03 +00001180 Builder.insertDbgValueIntrinsic(APN, DIVar, DIExpr, DII->getDebugLoc(),
Reid Kleckner64818222016-09-27 18:45:31 +00001181 &*InsertionPt);
Keith Walkerc9412522016-09-19 09:49:30 +00001182}
1183
Adrian Prantl232897f2014-04-25 23:00:25 +00001184/// Determine whether this alloca is either a VLA or an array.
1185static bool isArray(AllocaInst *AI) {
1186 return AI->isArrayAllocation() ||
1187 AI->getType()->getElementType()->isArrayTy();
1188}
1189
Devang Patelaad34d82011-03-17 22:18:16 +00001190/// LowerDbgDeclare - Lowers llvm.dbg.declare intrinsics into appropriate set
1191/// of llvm.dbg.value intrinsics.
1192bool llvm::LowerDbgDeclare(Function &F) {
Duncan P. N. Exon Smith5bf8fef2014-12-09 18:38:53 +00001193 DIBuilder DIB(*F.getParent(), /*AllowUnresolved*/ false);
Devang Patelaad34d82011-03-17 22:18:16 +00001194 SmallVector<DbgDeclareInst *, 4> Dbgs;
Adrian Prantl79c8e8f2014-03-27 23:30:04 +00001195 for (auto &FI : F)
Duncan P. N. Exon Smith5b4c8372015-10-13 02:39:05 +00001196 for (Instruction &BI : FI)
1197 if (auto DDI = dyn_cast<DbgDeclareInst>(&BI))
Devang Patelaad34d82011-03-17 22:18:16 +00001198 Dbgs.push_back(DDI);
Adrian Prantl79c8e8f2014-03-27 23:30:04 +00001199
Devang Patelaad34d82011-03-17 22:18:16 +00001200 if (Dbgs.empty())
1201 return false;
1202
Adrian Prantl79c8e8f2014-03-27 23:30:04 +00001203 for (auto &I : Dbgs) {
1204 DbgDeclareInst *DDI = I;
Adrian Prantl8e10fdb2013-11-18 23:04:38 +00001205 AllocaInst *AI = dyn_cast_or_null<AllocaInst>(DDI->getAddress());
1206 // If this is an alloca for a scalar variable, insert a dbg.value
1207 // at each load and store to the alloca and erase the dbg.declare.
Adrian Prantl32da8892014-04-25 20:49:25 +00001208 // The dbg.values allow tracking a variable even if it is not
1209 // stored on the stack, while the dbg.declare can only describe
1210 // the stack slot (and at a lexical-scope granularity). Later
1211 // passes will attempt to elide the stack slot.
Adrian Prantl232897f2014-04-25 23:00:25 +00001212 if (AI && !isArray(AI)) {
Keno Fischer1dd319f2016-01-14 19:12:27 +00001213 for (auto &AIUse : AI->uses()) {
1214 User *U = AIUse.getUser();
1215 if (StoreInst *SI = dyn_cast<StoreInst>(U)) {
1216 if (AIUse.getOperandNo() == 1)
1217 ConvertDebugDeclareToDebugValue(DDI, SI, DIB);
1218 } else if (LoadInst *LI = dyn_cast<LoadInst>(U)) {
Devang Patel2c7ee272011-03-18 23:45:43 +00001219 ConvertDebugDeclareToDebugValue(DDI, LI, DIB);
Keno Fischer1dd319f2016-01-14 19:12:27 +00001220 } else if (CallInst *CI = dyn_cast<CallInst>(U)) {
NAKAMURA Takumi335a7bc2014-10-28 11:53:30 +00001221 // This is a call by-value or some other instruction that
1222 // takes a pointer to the variable. Insert a *value*
1223 // intrinsic that describes the alloca.
Adrian Prantlabe04752017-07-28 20:21:02 +00001224 DIB.insertDbgValueIntrinsic(AI, DDI->getVariable(),
Adrian Prantl6825fb62017-04-18 01:21:53 +00001225 DDI->getExpression(), DDI->getDebugLoc(),
1226 CI);
Adrian Prantl87b7eb92014-10-01 18:55:02 +00001227 }
Keno Fischer1dd319f2016-01-14 19:12:27 +00001228 }
Adrian Prantl32da8892014-04-25 20:49:25 +00001229 DDI->eraseFromParent();
Devang Patelaad34d82011-03-17 22:18:16 +00001230 }
Devang Patelaad34d82011-03-17 22:18:16 +00001231 }
1232 return true;
1233}
Cameron Zwarich843bc7d2011-05-24 03:10:43 +00001234
Reid Kleckner0fe506b2017-09-21 19:52:03 +00001235/// Finds all intrinsics declaring local variables as living in the memory that
1236/// 'V' points to. This may include a mix of dbg.declare and
1237/// dbg.addr intrinsics.
1238TinyPtrVector<DbgInfoIntrinsic *> llvm::FindDbgAddrUses(Value *V) {
1239 auto *L = LocalAsMetadata::getIfExists(V);
1240 if (!L)
1241 return {};
1242 auto *MDV = MetadataAsValue::getIfExists(V->getContext(), L);
1243 if (!MDV)
1244 return {};
Cameron Zwarich843bc7d2011-05-24 03:10:43 +00001245
Reid Kleckner0fe506b2017-09-21 19:52:03 +00001246 TinyPtrVector<DbgInfoIntrinsic *> Declares;
1247 for (User *U : MDV->users()) {
1248 if (auto *DII = dyn_cast<DbgInfoIntrinsic>(U))
1249 if (DII->isAddressOfVariable())
1250 Declares.push_back(DII);
1251 }
1252
1253 return Declares;
Cameron Zwarich843bc7d2011-05-24 03:10:43 +00001254}
Alexey Samsonov3d43b632012-12-12 14:31:53 +00001255
Adrian Prantlfa9e84e2017-03-16 20:11:54 +00001256void llvm::findDbgValues(SmallVectorImpl<DbgValueInst *> &DbgValues, Value *V) {
Keith Walkerba159892016-09-22 14:13:25 +00001257 if (auto *L = LocalAsMetadata::getIfExists(V))
1258 if (auto *MDV = MetadataAsValue::getIfExists(V->getContext(), L))
1259 for (User *U : MDV->users())
1260 if (DbgValueInst *DVI = dyn_cast<DbgValueInst>(U))
Adrian Prantlfa9e84e2017-03-16 20:11:54 +00001261 DbgValues.push_back(DVI);
Keith Walkerba159892016-09-22 14:13:25 +00001262}
1263
Evgeniy Stepanov42f3b122015-12-01 00:40:05 +00001264bool llvm::replaceDbgDeclare(Value *Address, Value *NewAddress,
1265 Instruction *InsertBefore, DIBuilder &Builder,
1266 bool Deref, int Offset) {
Reid Kleckner0fe506b2017-09-21 19:52:03 +00001267 auto DbgAddrs = FindDbgAddrUses(Address);
1268 for (DbgInfoIntrinsic *DII : DbgAddrs) {
1269 DebugLoc Loc = DII->getDebugLoc();
1270 auto *DIVar = DII->getVariable();
1271 auto *DIExpr = DII->getExpression();
1272 assert(DIVar && "Missing variable");
1273 DIExpr = DIExpression::prepend(DIExpr, Deref, Offset);
1274 // Insert llvm.dbg.declare immediately after InsertBefore, and remove old
1275 // llvm.dbg.declare.
1276 Builder.insertDeclare(NewAddress, DIVar, DIExpr, Loc, InsertBefore);
1277 if (DII == InsertBefore)
1278 InsertBefore = &*std::next(InsertBefore->getIterator());
1279 DII->eraseFromParent();
1280 }
1281 return !DbgAddrs.empty();
Alexey Samsonov3d43b632012-12-12 14:31:53 +00001282}
Evgeniy Stepanov4fbc0d082012-12-21 11:18:49 +00001283
Evgeniy Stepanov42f3b122015-12-01 00:40:05 +00001284bool llvm::replaceDbgDeclareForAlloca(AllocaInst *AI, Value *NewAllocaAddress,
1285 DIBuilder &Builder, bool Deref, int Offset) {
1286 return replaceDbgDeclare(AI, NewAllocaAddress, AI->getNextNode(), Builder,
1287 Deref, Offset);
1288}
1289
Evgeniy Stepanov72d961a2016-06-16 22:34:00 +00001290static void replaceOneDbgValueForAlloca(DbgValueInst *DVI, Value *NewAddress,
1291 DIBuilder &Builder, int Offset) {
1292 DebugLoc Loc = DVI->getDebugLoc();
1293 auto *DIVar = DVI->getVariable();
1294 auto *DIExpr = DVI->getExpression();
1295 assert(DIVar && "Missing variable");
1296
1297 // This is an alloca-based llvm.dbg.value. The first thing it should do with
1298 // the alloca pointer is dereference it. Otherwise we don't know how to handle
1299 // it and give up.
1300 if (!DIExpr || DIExpr->getNumElements() < 1 ||
1301 DIExpr->getElement(0) != dwarf::DW_OP_deref)
1302 return;
1303
1304 // Insert the offset immediately after the first deref.
1305 // We could just change the offset argument of dbg.value, but it's unsigned...
1306 if (Offset) {
Adrian Prantl47ea6472017-03-16 21:14:09 +00001307 SmallVector<uint64_t, 4> Ops;
1308 Ops.push_back(dwarf::DW_OP_deref);
Andrew Ng03e35b62017-04-28 08:44:30 +00001309 DIExpression::appendOffset(Ops, Offset);
Adrian Prantl47ea6472017-03-16 21:14:09 +00001310 Ops.append(DIExpr->elements_begin() + 1, DIExpr->elements_end());
1311 DIExpr = Builder.createExpression(Ops);
Evgeniy Stepanov72d961a2016-06-16 22:34:00 +00001312 }
1313
Adrian Prantlabe04752017-07-28 20:21:02 +00001314 Builder.insertDbgValueIntrinsic(NewAddress, DIVar, DIExpr, Loc, DVI);
Evgeniy Stepanov72d961a2016-06-16 22:34:00 +00001315 DVI->eraseFromParent();
1316}
1317
1318void llvm::replaceDbgValueForAlloca(AllocaInst *AI, Value *NewAllocaAddress,
1319 DIBuilder &Builder, int Offset) {
1320 if (auto *L = LocalAsMetadata::getIfExists(AI))
1321 if (auto *MDV = MetadataAsValue::getIfExists(AI->getContext(), L))
1322 for (auto UI = MDV->use_begin(), UE = MDV->use_end(); UI != UE;) {
1323 Use &U = *UI++;
1324 if (auto *DVI = dyn_cast<DbgValueInst>(U.getUser()))
1325 replaceOneDbgValueForAlloca(DVI, NewAllocaAddress, Builder, Offset);
1326 }
1327}
1328
Adrian Prantl47ea6472017-03-16 21:14:09 +00001329void llvm::salvageDebugInfo(Instruction &I) {
1330 SmallVector<DbgValueInst *, 1> DbgValues;
1331 auto &M = *I.getModule();
1332
1333 auto MDWrap = [&](Value *V) {
1334 return MetadataAsValue::get(I.getContext(), ValueAsMetadata::get(V));
1335 };
1336
Adrian Prantl6d80a262017-03-20 16:39:41 +00001337 if (isa<BitCastInst>(&I)) {
1338 findDbgValues(DbgValues, &I);
Adrian Prantl47ea6472017-03-16 21:14:09 +00001339 for (auto *DVI : DbgValues) {
1340 // Bitcasts are entirely irrelevant for debug info. Rewrite the dbg.value
1341 // to use the cast's source.
1342 DVI->setOperand(0, MDWrap(I.getOperand(0)));
1343 DEBUG(dbgs() << "SALVAGE: " << *DVI << '\n');
1344 }
1345 } else if (auto *GEP = dyn_cast<GetElementPtrInst>(&I)) {
Adrian Prantl6d80a262017-03-20 16:39:41 +00001346 findDbgValues(DbgValues, &I);
Adrian Prantl47ea6472017-03-16 21:14:09 +00001347 for (auto *DVI : DbgValues) {
1348 unsigned BitWidth =
1349 M.getDataLayout().getPointerSizeInBits(GEP->getPointerAddressSpace());
1350 APInt Offset(BitWidth, 0);
Adrian Prantlf2c79972017-04-24 18:11:42 +00001351 // Rewrite a constant GEP into a DIExpression. Since we are performing
1352 // arithmetic to compute the variable's *value* in the DIExpression, we
1353 // need to mark the expression with a DW_OP_stack_value.
Adrian Prantl47ea6472017-03-16 21:14:09 +00001354 if (GEP->accumulateConstantOffset(M.getDataLayout(), Offset)) {
1355 auto *DIExpr = DVI->getExpression();
1356 DIBuilder DIB(M, /*AllowUnresolved*/ false);
Adrian Prantl1a18f1a2017-04-21 20:06:41 +00001357 // GEP offsets are i32 and thus always fit into an int64_t.
Adrian Prantl109b2362017-04-28 17:51:05 +00001358 DIExpr = DIExpression::prepend(DIExpr, DIExpression::NoDeref,
1359 Offset.getSExtValue(),
1360 DIExpression::WithStackValue);
Adrian Prantl47ea6472017-03-16 21:14:09 +00001361 DVI->setOperand(0, MDWrap(I.getOperand(0)));
Adrian Prantlabe04752017-07-28 20:21:02 +00001362 DVI->setOperand(2, MetadataAsValue::get(I.getContext(), DIExpr));
Adrian Prantl47ea6472017-03-16 21:14:09 +00001363 DEBUG(dbgs() << "SALVAGE: " << *DVI << '\n');
1364 }
1365 }
Adrian Prantl6d80a262017-03-20 16:39:41 +00001366 } else if (isa<LoadInst>(&I)) {
1367 findDbgValues(DbgValues, &I);
Adrian Prantl47ea6472017-03-16 21:14:09 +00001368 for (auto *DVI : DbgValues) {
1369 // Rewrite the load into DW_OP_deref.
1370 auto *DIExpr = DVI->getExpression();
1371 DIBuilder DIB(M, /*AllowUnresolved*/ false);
Adrian Prantl109b2362017-04-28 17:51:05 +00001372 DIExpr = DIExpression::prepend(DIExpr, DIExpression::WithDeref);
Adrian Prantl47ea6472017-03-16 21:14:09 +00001373 DVI->setOperand(0, MDWrap(I.getOperand(0)));
Adrian Prantlabe04752017-07-28 20:21:02 +00001374 DVI->setOperand(2, MetadataAsValue::get(I.getContext(), DIExpr));
Adrian Prantl47ea6472017-03-16 21:14:09 +00001375 DEBUG(dbgs() << "SALVAGE: " << *DVI << '\n');
1376 }
1377 }
1378}
1379
David Majnemer35c46d32016-01-24 05:26:18 +00001380unsigned llvm::removeAllNonTerminatorAndEHPadInstructions(BasicBlock *BB) {
1381 unsigned NumDeadInst = 0;
1382 // Delete the instructions backwards, as it has a reduced likelihood of
1383 // having to update as many def-use and use-def chains.
1384 Instruction *EndInst = BB->getTerminator(); // Last not to be deleted.
Duncan P. N. Exon Smithe9bc5792016-02-21 20:39:50 +00001385 while (EndInst != &BB->front()) {
David Majnemer35c46d32016-01-24 05:26:18 +00001386 // Delete the next to last instruction.
1387 Instruction *Inst = &*--EndInst->getIterator();
1388 if (!Inst->use_empty() && !Inst->getType()->isTokenTy())
1389 Inst->replaceAllUsesWith(UndefValue::get(Inst->getType()));
1390 if (Inst->isEHPad() || Inst->getType()->isTokenTy()) {
1391 EndInst = Inst;
1392 continue;
1393 }
1394 if (!isa<DbgInfoIntrinsic>(Inst))
1395 ++NumDeadInst;
1396 Inst->eraseFromParent();
1397 }
1398 return NumDeadInst;
1399}
1400
Michael Zolotukhin5020c992016-11-18 21:01:12 +00001401unsigned llvm::changeToUnreachable(Instruction *I, bool UseLLVMTrap,
Daniel Jasper0a51ec22017-09-30 11:57:19 +00001402 bool PreserveLCSSA) {
Peter Collingbourne8d642de2013-08-12 22:38:43 +00001403 BasicBlock *BB = I->getParent();
1404 // Loop over all of the successors, removing BB's entry from any PHI
1405 // nodes.
Daniel Jasper0a51ec22017-09-30 11:57:19 +00001406 for (BasicBlock *Successor : successors(BB))
Michael Zolotukhin5020c992016-11-18 21:01:12 +00001407 Successor->removePredecessor(BB, PreserveLCSSA);
Daniel Jasper0a51ec22017-09-30 11:57:19 +00001408
David Majnemere14e7bc2016-06-25 08:19:55 +00001409 // Insert a call to llvm.trap right before this. This turns the undefined
1410 // behavior into a hard fail instead of falling through into random code.
1411 if (UseLLVMTrap) {
1412 Function *TrapFn =
1413 Intrinsic::getDeclaration(BB->getParent()->getParent(), Intrinsic::trap);
1414 CallInst *CallTrap = CallInst::Create(TrapFn, "", I);
1415 CallTrap->setDebugLoc(I->getDebugLoc());
1416 }
Peter Collingbourne8d642de2013-08-12 22:38:43 +00001417 new UnreachableInst(I->getContext(), I);
1418
1419 // All instructions after this are dead.
David Majnemer88542a02016-01-24 06:26:47 +00001420 unsigned NumInstrsRemoved = 0;
Duncan P. N. Exon Smith5b4c8372015-10-13 02:39:05 +00001421 BasicBlock::iterator BBI = I->getIterator(), BBE = BB->end();
Peter Collingbourne8d642de2013-08-12 22:38:43 +00001422 while (BBI != BBE) {
1423 if (!BBI->use_empty())
1424 BBI->replaceAllUsesWith(UndefValue::get(BBI->getType()));
1425 BB->getInstList().erase(BBI++);
David Majnemer88542a02016-01-24 06:26:47 +00001426 ++NumInstrsRemoved;
Peter Collingbourne8d642de2013-08-12 22:38:43 +00001427 }
David Majnemer88542a02016-01-24 06:26:47 +00001428 return NumInstrsRemoved;
Peter Collingbourne8d642de2013-08-12 22:38:43 +00001429}
1430
1431/// changeToCall - Convert the specified invoke into a normal call.
Daniel Jasper0a51ec22017-09-30 11:57:19 +00001432static void changeToCall(InvokeInst *II) {
Sanjoy Dasccd14562015-12-10 06:39:02 +00001433 SmallVector<Value*, 8> Args(II->arg_begin(), II->arg_end());
Sanjoy Das8a954a02015-12-08 22:26:08 +00001434 SmallVector<OperandBundleDef, 1> OpBundles;
1435 II->getOperandBundlesAsDefs(OpBundles);
1436 CallInst *NewCall = CallInst::Create(II->getCalledValue(), Args, OpBundles,
1437 "", II);
Peter Collingbourne8d642de2013-08-12 22:38:43 +00001438 NewCall->takeName(II);
1439 NewCall->setCallingConv(II->getCallingConv());
1440 NewCall->setAttributes(II->getAttributes());
1441 NewCall->setDebugLoc(II->getDebugLoc());
1442 II->replaceAllUsesWith(NewCall);
1443
1444 // Follow the call by a branch to the normal destination.
Daniel Jasper0a51ec22017-09-30 11:57:19 +00001445 BranchInst::Create(II->getNormalDest(), II);
Peter Collingbourne8d642de2013-08-12 22:38:43 +00001446
1447 // Update PHI nodes in the unwind destination
Daniel Jasper0a51ec22017-09-30 11:57:19 +00001448 II->getUnwindDest()->removePredecessor(II->getParent());
Peter Collingbourne8d642de2013-08-12 22:38:43 +00001449 II->eraseFromParent();
1450}
1451
Kuba Breckaddfdba32016-11-14 21:41:13 +00001452BasicBlock *llvm::changeToInvokeAndSplitBasicBlock(CallInst *CI,
1453 BasicBlock *UnwindEdge) {
1454 BasicBlock *BB = CI->getParent();
1455
1456 // Convert this function call into an invoke instruction. First, split the
1457 // basic block.
1458 BasicBlock *Split =
1459 BB->splitBasicBlock(CI->getIterator(), CI->getName() + ".noexc");
1460
1461 // Delete the unconditional branch inserted by splitBasicBlock
1462 BB->getInstList().pop_back();
1463
1464 // Create the new invoke instruction.
1465 SmallVector<Value *, 8> InvokeArgs(CI->arg_begin(), CI->arg_end());
1466 SmallVector<OperandBundleDef, 1> OpBundles;
1467
1468 CI->getOperandBundlesAsDefs(OpBundles);
1469
1470 // Note: we're round tripping operand bundles through memory here, and that
1471 // can potentially be avoided with a cleverer API design that we do not have
1472 // as of this time.
1473
1474 InvokeInst *II = InvokeInst::Create(CI->getCalledValue(), Split, UnwindEdge,
1475 InvokeArgs, OpBundles, CI->getName(), BB);
1476 II->setDebugLoc(CI->getDebugLoc());
1477 II->setCallingConv(CI->getCallingConv());
1478 II->setAttributes(CI->getAttributes());
1479
1480 // Make sure that anything using the call now uses the invoke! This also
Sanjoy Dase6bca0e2017-05-01 17:07:49 +00001481 // updates the CallGraph if present, because it uses a WeakTrackingVH.
Kuba Breckaddfdba32016-11-14 21:41:13 +00001482 CI->replaceAllUsesWith(II);
1483
1484 // Delete the original call
1485 Split->getInstList().pop_front();
1486 return Split;
1487}
1488
David Majnemer7fddecc2015-06-17 20:52:32 +00001489static bool markAliveBlocks(Function &F,
Daniel Jasper0a51ec22017-09-30 11:57:19 +00001490 SmallPtrSetImpl<BasicBlock*> &Reachable) {
Peter Collingbourne8d642de2013-08-12 22:38:43 +00001491
Evgeniy Stepanov4fbc0d082012-12-21 11:18:49 +00001492 SmallVector<BasicBlock*, 128> Worklist;
Duncan P. N. Exon Smith5b4c8372015-10-13 02:39:05 +00001493 BasicBlock *BB = &F.front();
Peter Collingbourne8d642de2013-08-12 22:38:43 +00001494 Worklist.push_back(BB);
1495 Reachable.insert(BB);
1496 bool Changed = false;
Evgeniy Stepanov4fbc0d082012-12-21 11:18:49 +00001497 do {
Peter Collingbourne8d642de2013-08-12 22:38:43 +00001498 BB = Worklist.pop_back_val();
1499
1500 // Do a quick scan of the basic block, turning any obviously unreachable
1501 // instructions into LLVM unreachable insts. The instruction combining pass
1502 // canonicalizes unreachable insts into stores to null or undef.
David Majnemer9f506252016-06-25 08:34:38 +00001503 for (Instruction &I : *BB) {
Hal Finkel93046912014-07-25 21:13:35 +00001504 // Assumptions that are known to be false are equivalent to unreachable.
1505 // Also, if the condition is undefined, then we make the choice most
1506 // beneficial to the optimizer, and choose that to also be unreachable.
David Majnemer9f506252016-06-25 08:34:38 +00001507 if (auto *II = dyn_cast<IntrinsicInst>(&I)) {
Hal Finkel93046912014-07-25 21:13:35 +00001508 if (II->getIntrinsicID() == Intrinsic::assume) {
David Majnemer9f506252016-06-25 08:34:38 +00001509 if (match(II->getArgOperand(0), m_CombineOr(m_Zero(), m_Undef()))) {
David Majnemere14e7bc2016-06-25 08:19:55 +00001510 // Don't insert a call to llvm.trap right before the unreachable.
Daniel Jasper0a51ec22017-09-30 11:57:19 +00001511 changeToUnreachable(II, false);
Hal Finkel93046912014-07-25 21:13:35 +00001512 Changed = true;
1513 break;
1514 }
1515 }
1516
Sanjoy Das54a3a002016-04-21 05:09:12 +00001517 if (II->getIntrinsicID() == Intrinsic::experimental_guard) {
1518 // A call to the guard intrinsic bails out of the current compilation
1519 // unit if the predicate passed to it is false. If the predicate is a
1520 // constant false, then we know the guard will bail out of the current
1521 // compile unconditionally, so all code following it is dead.
1522 //
1523 // Note: unlike in llvm.assume, it is not "obviously profitable" for
1524 // guards to treat `undef` as `false` since a guard on `undef` can
1525 // still be useful for widening.
David Majnemer9f506252016-06-25 08:34:38 +00001526 if (match(II->getArgOperand(0), m_Zero()))
1527 if (!isa<UnreachableInst>(II->getNextNode())) {
Daniel Jasper0a51ec22017-09-30 11:57:19 +00001528 changeToUnreachable(II->getNextNode(), /*UseLLVMTrap=*/ false);
Sanjoy Das54a3a002016-04-21 05:09:12 +00001529 Changed = true;
1530 break;
1531 }
1532 }
1533 }
1534
David Majnemer9f506252016-06-25 08:34:38 +00001535 if (auto *CI = dyn_cast<CallInst>(&I)) {
David Majnemer1fea77c2016-06-25 07:37:27 +00001536 Value *Callee = CI->getCalledValue();
1537 if (isa<ConstantPointerNull>(Callee) || isa<UndefValue>(Callee)) {
Daniel Jasper0a51ec22017-09-30 11:57:19 +00001538 changeToUnreachable(CI, /*UseLLVMTrap=*/false);
David Majnemer1fea77c2016-06-25 07:37:27 +00001539 Changed = true;
1540 break;
1541 }
Peter Collingbourne8d642de2013-08-12 22:38:43 +00001542 if (CI->doesNotReturn()) {
1543 // If we found a call to a no-return function, insert an unreachable
1544 // instruction after it. Make sure there isn't *already* one there
1545 // though.
David Majnemer9f506252016-06-25 08:34:38 +00001546 if (!isa<UnreachableInst>(CI->getNextNode())) {
David Majnemere14e7bc2016-06-25 08:19:55 +00001547 // Don't insert a call to llvm.trap right before the unreachable.
Daniel Jasper0a51ec22017-09-30 11:57:19 +00001548 changeToUnreachable(CI->getNextNode(), false);
Peter Collingbourne8d642de2013-08-12 22:38:43 +00001549 Changed = true;
1550 }
1551 break;
1552 }
1553 }
1554
1555 // Store to undef and store to null are undefined and used to signal that
1556 // they should be changed to unreachable by passes that can't modify the
1557 // CFG.
David Majnemer9f506252016-06-25 08:34:38 +00001558 if (auto *SI = dyn_cast<StoreInst>(&I)) {
Peter Collingbourne8d642de2013-08-12 22:38:43 +00001559 // Don't touch volatile stores.
1560 if (SI->isVolatile()) continue;
1561
1562 Value *Ptr = SI->getOperand(1);
1563
1564 if (isa<UndefValue>(Ptr) ||
1565 (isa<ConstantPointerNull>(Ptr) &&
1566 SI->getPointerAddressSpace() == 0)) {
Daniel Jasper0a51ec22017-09-30 11:57:19 +00001567 changeToUnreachable(SI, true);
Peter Collingbourne8d642de2013-08-12 22:38:43 +00001568 Changed = true;
1569 break;
1570 }
1571 }
1572 }
1573
David Majnemer2fa86512016-01-05 06:27:50 +00001574 TerminatorInst *Terminator = BB->getTerminator();
1575 if (auto *II = dyn_cast<InvokeInst>(Terminator)) {
1576 // Turn invokes that call 'nounwind' functions into ordinary calls.
Peter Collingbourne8d642de2013-08-12 22:38:43 +00001577 Value *Callee = II->getCalledValue();
1578 if (isa<ConstantPointerNull>(Callee) || isa<UndefValue>(Callee)) {
Daniel Jasper0a51ec22017-09-30 11:57:19 +00001579 changeToUnreachable(II, true);
Peter Collingbourne8d642de2013-08-12 22:38:43 +00001580 Changed = true;
David Majnemer7fddecc2015-06-17 20:52:32 +00001581 } else if (II->doesNotThrow() && canSimplifyInvokeNoUnwind(&F)) {
Peter Collingbourne8d642de2013-08-12 22:38:43 +00001582 if (II->use_empty() && II->onlyReadsMemory()) {
1583 // jump to the normal destination branch.
1584 BranchInst::Create(II->getNormalDest(), II);
Daniel Jasper0a51ec22017-09-30 11:57:19 +00001585 II->getUnwindDest()->removePredecessor(II->getParent());
Peter Collingbourne8d642de2013-08-12 22:38:43 +00001586 II->eraseFromParent();
1587 } else
Daniel Jasper0a51ec22017-09-30 11:57:19 +00001588 changeToCall(II);
Peter Collingbourne8d642de2013-08-12 22:38:43 +00001589 Changed = true;
1590 }
David Majnemer2fa86512016-01-05 06:27:50 +00001591 } else if (auto *CatchSwitch = dyn_cast<CatchSwitchInst>(Terminator)) {
1592 // Remove catchpads which cannot be reached.
David Majnemer59eb7332016-01-05 07:42:17 +00001593 struct CatchPadDenseMapInfo {
1594 static CatchPadInst *getEmptyKey() {
1595 return DenseMapInfo<CatchPadInst *>::getEmptyKey();
1596 }
1597 static CatchPadInst *getTombstoneKey() {
1598 return DenseMapInfo<CatchPadInst *>::getTombstoneKey();
1599 }
1600 static unsigned getHashValue(CatchPadInst *CatchPad) {
1601 return static_cast<unsigned>(hash_combine_range(
1602 CatchPad->value_op_begin(), CatchPad->value_op_end()));
1603 }
1604 static bool isEqual(CatchPadInst *LHS, CatchPadInst *RHS) {
1605 if (LHS == getEmptyKey() || LHS == getTombstoneKey() ||
1606 RHS == getEmptyKey() || RHS == getTombstoneKey())
1607 return LHS == RHS;
1608 return LHS->isIdenticalTo(RHS);
1609 }
1610 };
1611
1612 // Set of unique CatchPads.
1613 SmallDenseMap<CatchPadInst *, detail::DenseSetEmpty, 4,
1614 CatchPadDenseMapInfo, detail::DenseSetPair<CatchPadInst *>>
1615 HandlerSet;
1616 detail::DenseSetEmpty Empty;
David Majnemer2fa86512016-01-05 06:27:50 +00001617 for (CatchSwitchInst::handler_iterator I = CatchSwitch->handler_begin(),
1618 E = CatchSwitch->handler_end();
1619 I != E; ++I) {
1620 BasicBlock *HandlerBB = *I;
David Majnemer59eb7332016-01-05 07:42:17 +00001621 auto *CatchPad = cast<CatchPadInst>(HandlerBB->getFirstNonPHI());
1622 if (!HandlerSet.insert({CatchPad, Empty}).second) {
David Majnemer2fa86512016-01-05 06:27:50 +00001623 CatchSwitch->removeHandler(I);
1624 --I;
1625 --E;
1626 Changed = true;
1627 }
1628 }
Peter Collingbourne8d642de2013-08-12 22:38:43 +00001629 }
1630
Daniel Jasper0a51ec22017-09-30 11:57:19 +00001631 Changed |= ConstantFoldTerminator(BB, true);
David Majnemer9f506252016-06-25 08:34:38 +00001632 for (BasicBlock *Successor : successors(BB))
1633 if (Reachable.insert(Successor).second)
1634 Worklist.push_back(Successor);
Evgeniy Stepanov4fbc0d082012-12-21 11:18:49 +00001635 } while (!Worklist.empty());
Peter Collingbourne8d642de2013-08-12 22:38:43 +00001636 return Changed;
1637}
Evgeniy Stepanov4fbc0d082012-12-21 11:18:49 +00001638
Daniel Jasper0a51ec22017-09-30 11:57:19 +00001639void llvm::removeUnwindEdge(BasicBlock *BB) {
Joseph Tremoulet09af67a2015-09-27 01:47:46 +00001640 TerminatorInst *TI = BB->getTerminator();
1641
1642 if (auto *II = dyn_cast<InvokeInst>(TI)) {
Daniel Jasper0a51ec22017-09-30 11:57:19 +00001643 changeToCall(II);
Joseph Tremoulet09af67a2015-09-27 01:47:46 +00001644 return;
1645 }
1646
1647 TerminatorInst *NewTI;
1648 BasicBlock *UnwindDest;
1649
1650 if (auto *CRI = dyn_cast<CleanupReturnInst>(TI)) {
1651 NewTI = CleanupReturnInst::Create(CRI->getCleanupPad(), nullptr, CRI);
1652 UnwindDest = CRI->getUnwindDest();
David Majnemer8a1c45d2015-12-12 05:38:55 +00001653 } else if (auto *CatchSwitch = dyn_cast<CatchSwitchInst>(TI)) {
1654 auto *NewCatchSwitch = CatchSwitchInst::Create(
1655 CatchSwitch->getParentPad(), nullptr, CatchSwitch->getNumHandlers(),
1656 CatchSwitch->getName(), CatchSwitch);
1657 for (BasicBlock *PadBB : CatchSwitch->handlers())
1658 NewCatchSwitch->addHandler(PadBB);
1659
1660 NewTI = NewCatchSwitch;
1661 UnwindDest = CatchSwitch->getUnwindDest();
Joseph Tremoulet09af67a2015-09-27 01:47:46 +00001662 } else {
1663 llvm_unreachable("Could not find unwind successor");
1664 }
1665
1666 NewTI->takeName(TI);
1667 NewTI->setDebugLoc(TI->getDebugLoc());
1668 UnwindDest->removePredecessor(BB);
David Majnemer8a1c45d2015-12-12 05:38:55 +00001669 TI->replaceAllUsesWith(NewTI);
Joseph Tremoulet09af67a2015-09-27 01:47:46 +00001670 TI->eraseFromParent();
1671}
1672
Davide Italiano4eb210b2017-07-07 18:54:14 +00001673/// removeUnreachableBlocks - Remove blocks that are not reachable, even
Peter Collingbourne8d642de2013-08-12 22:38:43 +00001674/// if they are in a dead cycle. Return true if a change was made, false
Davide Italiano4eb210b2017-07-07 18:54:14 +00001675/// otherwise. If `LVI` is passed, this function preserves LazyValueInfo
1676/// after modifying the CFG.
Daniel Jasper0a51ec22017-09-30 11:57:19 +00001677bool llvm::removeUnreachableBlocks(Function &F, LazyValueInfo *LVI) {
Matthias Braunb30f2f512016-01-30 01:24:31 +00001678 SmallPtrSet<BasicBlock*, 16> Reachable;
Daniel Jasper0a51ec22017-09-30 11:57:19 +00001679 bool Changed = markAliveBlocks(F, Reachable);
Peter Collingbourne8d642de2013-08-12 22:38:43 +00001680
1681 // If there are unreachable blocks in the CFG...
Evgeniy Stepanov4fbc0d082012-12-21 11:18:49 +00001682 if (Reachable.size() == F.size())
Peter Collingbourne8d642de2013-08-12 22:38:43 +00001683 return Changed;
Evgeniy Stepanov4fbc0d082012-12-21 11:18:49 +00001684
1685 assert(Reachable.size() < F.size());
Peter Collingbourne8d642de2013-08-12 22:38:43 +00001686 NumRemoved += F.size()-Reachable.size();
1687
1688 // Loop over all of the basic blocks that are not reachable, dropping all of
1689 // their internal references...
1690 for (Function::iterator BB = ++F.begin(), E = F.end(); BB != E; ++BB) {
Duncan P. N. Exon Smith5b4c8372015-10-13 02:39:05 +00001691 if (Reachable.count(&*BB))
Evgeniy Stepanov4fbc0d082012-12-21 11:18:49 +00001692 continue;
1693
David Majnemer9f506252016-06-25 08:34:38 +00001694 for (BasicBlock *Successor : successors(&*BB))
Daniel Jasper0a51ec22017-09-30 11:57:19 +00001695 if (Reachable.count(Successor))
David Majnemer9f506252016-06-25 08:34:38 +00001696 Successor->removePredecessor(&*BB);
David Majnemerd9833ea2016-01-10 07:13:04 +00001697 if (LVI)
1698 LVI->eraseBlock(&*BB);
Peter Collingbourne8d642de2013-08-12 22:38:43 +00001699 BB->dropAllReferences();
Evgeniy Stepanov4fbc0d082012-12-21 11:18:49 +00001700 }
Evgeniy Stepanov2a066af2013-03-22 08:43:04 +00001701
Peter Collingbourne8d642de2013-08-12 22:38:43 +00001702 for (Function::iterator I = ++F.begin(); I != F.end();)
Duncan P. N. Exon Smith5b4c8372015-10-13 02:39:05 +00001703 if (!Reachable.count(&*I))
Evgeniy Stepanov2a066af2013-03-22 08:43:04 +00001704 I = F.getBasicBlockList().erase(I);
1705 else
1706 ++I;
1707
Evgeniy Stepanov4fbc0d082012-12-21 11:18:49 +00001708 return true;
1709}
Rafael Espindolaea46c322014-08-15 15:46:38 +00001710
Piotr Padlewskidc9b2cf2015-10-02 22:12:22 +00001711void llvm::combineMetadata(Instruction *K, const Instruction *J,
1712 ArrayRef<unsigned> KnownIDs) {
Duncan P. N. Exon Smithde36e802014-11-11 21:30:22 +00001713 SmallVector<std::pair<unsigned, MDNode *>, 4> Metadata;
Adrian Prantlcbdfdb72015-08-20 22:00:30 +00001714 K->dropUnknownNonDebugMetadata(KnownIDs);
Rafael Espindolaea46c322014-08-15 15:46:38 +00001715 K->getAllMetadataOtherThanDebugLoc(Metadata);
David Majnemer6f014d32016-07-25 02:21:19 +00001716 for (const auto &MD : Metadata) {
1717 unsigned Kind = MD.first;
Duncan P. N. Exon Smithde36e802014-11-11 21:30:22 +00001718 MDNode *JMD = J->getMetadata(Kind);
David Majnemer6f014d32016-07-25 02:21:19 +00001719 MDNode *KMD = MD.second;
Rafael Espindolaea46c322014-08-15 15:46:38 +00001720
1721 switch (Kind) {
1722 default:
1723 K->setMetadata(Kind, nullptr); // Remove unknown metadata
1724 break;
1725 case LLVMContext::MD_dbg:
1726 llvm_unreachable("getAllMetadataOtherThanDebugLoc returned a MD_dbg");
1727 case LLVMContext::MD_tbaa:
1728 K->setMetadata(Kind, MDNode::getMostGenericTBAA(JMD, KMD));
1729 break;
1730 case LLVMContext::MD_alias_scope:
Bjorn Steinbrink5ec75222015-02-08 17:07:14 +00001731 K->setMetadata(Kind, MDNode::getMostGenericAliasScope(JMD, KMD));
1732 break;
Rafael Espindolaea46c322014-08-15 15:46:38 +00001733 case LLVMContext::MD_noalias:
Hal Finkele4c0c162016-04-26 02:06:06 +00001734 case LLVMContext::MD_mem_parallel_loop_access:
Rafael Espindolaea46c322014-08-15 15:46:38 +00001735 K->setMetadata(Kind, MDNode::intersect(JMD, KMD));
1736 break;
1737 case LLVMContext::MD_range:
1738 K->setMetadata(Kind, MDNode::getMostGenericRange(JMD, KMD));
1739 break;
1740 case LLVMContext::MD_fpmath:
1741 K->setMetadata(Kind, MDNode::getMostGenericFPMath(JMD, KMD));
1742 break;
1743 case LLVMContext::MD_invariant_load:
1744 // Only set the !invariant.load if it is present in both instructions.
1745 K->setMetadata(Kind, JMD);
1746 break;
Philip Reamesd7c21362014-10-21 21:02:19 +00001747 case LLVMContext::MD_nonnull:
1748 // Only set the !nonnull if it is present in both instructions.
1749 K->setMetadata(Kind, JMD);
1750 break;
Piotr Padlewskidc9b2cf2015-10-02 22:12:22 +00001751 case LLVMContext::MD_invariant_group:
1752 // Preserve !invariant.group in K.
1753 break;
Artur Pilipenko5c5011d2015-11-02 17:53:51 +00001754 case LLVMContext::MD_align:
Chandler Carruth2abb65a2017-06-26 03:31:31 +00001755 K->setMetadata(Kind,
Artur Pilipenko5c5011d2015-11-02 17:53:51 +00001756 MDNode::getMostGenericAlignmentOrDereferenceable(JMD, KMD));
1757 break;
1758 case LLVMContext::MD_dereferenceable:
1759 case LLVMContext::MD_dereferenceable_or_null:
Chandler Carruth2abb65a2017-06-26 03:31:31 +00001760 K->setMetadata(Kind,
Artur Pilipenko5c5011d2015-11-02 17:53:51 +00001761 MDNode::getMostGenericAlignmentOrDereferenceable(JMD, KMD));
1762 break;
Rafael Espindolaea46c322014-08-15 15:46:38 +00001763 }
1764 }
Piotr Padlewskidc9b2cf2015-10-02 22:12:22 +00001765 // Set !invariant.group from J if J has it. If both instructions have it
1766 // then we will just pick it from J - even when they are different.
1767 // Also make sure that K is load or store - f.e. combining bitcast with load
1768 // could produce bitcast with invariant.group metadata, which is invalid.
1769 // FIXME: we should try to preserve both invariant.group md if they are
1770 // different, but right now instruction can only have one invariant.group.
1771 if (auto *JMD = J->getMetadata(LLVMContext::MD_invariant_group))
1772 if (isa<LoadInst>(K) || isa<StoreInst>(K))
1773 K->setMetadata(LLVMContext::MD_invariant_group, JMD);
Rafael Espindolaea46c322014-08-15 15:46:38 +00001774}
Philip Reames7c78ef72015-05-22 23:53:24 +00001775
Eli Friedman02419a92016-08-08 04:10:22 +00001776void llvm::combineMetadataForCSE(Instruction *K, const Instruction *J) {
1777 unsigned KnownIDs[] = {
1778 LLVMContext::MD_tbaa, LLVMContext::MD_alias_scope,
1779 LLVMContext::MD_noalias, LLVMContext::MD_range,
1780 LLVMContext::MD_invariant_load, LLVMContext::MD_nonnull,
1781 LLVMContext::MD_invariant_group, LLVMContext::MD_align,
1782 LLVMContext::MD_dereferenceable,
1783 LLVMContext::MD_dereferenceable_or_null};
1784 combineMetadata(K, J, KnownIDs);
1785}
1786
Piotr Padlewskid979c1f2017-05-09 19:39:44 +00001787template <typename RootType, typename DominatesFn>
1788static unsigned replaceDominatedUsesWith(Value *From, Value *To,
1789 const RootType &Root,
1790 const DominatesFn &Dominates) {
Piotr Padlewski28ffcbe2015-09-02 19:59:59 +00001791 assert(From->getType() == To->getType());
1792
1793 unsigned Count = 0;
1794 for (Value::use_iterator UI = From->use_begin(), UE = From->use_end();
1795 UI != UE;) {
1796 Use &U = *UI++;
Piotr Padlewskid979c1f2017-05-09 19:39:44 +00001797 if (!Dominates(Root, U))
1798 continue;
1799 U.set(To);
1800 DEBUG(dbgs() << "Replace dominated use of '" << From->getName() << "' as "
1801 << *To << " in " << *U << "\n");
1802 ++Count;
Piotr Padlewski28ffcbe2015-09-02 19:59:59 +00001803 }
1804 return Count;
1805}
Sanjoy Dasc21a05a2015-10-08 23:18:30 +00001806
Anna Thomasc07d5542017-05-23 13:36:25 +00001807unsigned llvm::replaceNonLocalUsesWith(Instruction *From, Value *To) {
1808 assert(From->getType() == To->getType());
1809 auto *BB = From->getParent();
1810 unsigned Count = 0;
1811
1812 for (Value::use_iterator UI = From->use_begin(), UE = From->use_end();
1813 UI != UE;) {
1814 Use &U = *UI++;
1815 auto *I = cast<Instruction>(U.getUser());
1816 if (I->getParent() == BB)
1817 continue;
1818 U.set(To);
1819 ++Count;
1820 }
1821 return Count;
1822}
1823
Piotr Padlewskid979c1f2017-05-09 19:39:44 +00001824unsigned llvm::replaceDominatedUsesWith(Value *From, Value *To,
1825 DominatorTree &DT,
1826 const BasicBlockEdge &Root) {
1827 auto Dominates = [&DT](const BasicBlockEdge &Root, const Use &U) {
1828 return DT.dominates(Root, U);
1829 };
1830 return ::replaceDominatedUsesWith(From, To, Root, Dominates);
1831}
1832
1833unsigned llvm::replaceDominatedUsesWith(Value *From, Value *To,
1834 DominatorTree &DT,
1835 const BasicBlock *BB) {
1836 auto ProperlyDominates = [&DT](const BasicBlock *BB, const Use &U) {
1837 auto *I = cast<Instruction>(U.getUser())->getParent();
1838 return DT.properlyDominates(BB, I);
1839 };
1840 return ::replaceDominatedUsesWith(From, To, BB, ProperlyDominates);
1841}
1842
Daniel Neilson2574d7c2017-07-27 16:49:39 +00001843bool llvm::callsGCLeafFunction(ImmutableCallSite CS,
1844 const TargetLibraryInfo &TLI) {
Sanjoy Dasc21a05a2015-10-08 23:18:30 +00001845 // Check if the function is specifically marked as a gc leaf function.
Manuel Jacob3eedd112016-01-05 23:59:08 +00001846 if (CS.hasFnAttr("gc-leaf-function"))
1847 return true;
Sanjoy Dasd4c78332016-03-25 20:12:13 +00001848 if (const Function *F = CS.getCalledFunction()) {
1849 if (F->hasFnAttribute("gc-leaf-function"))
1850 return true;
1851
1852 if (auto IID = F->getIntrinsicID())
1853 // Most LLVM intrinsics do not take safepoints.
1854 return IID != Intrinsic::experimental_gc_statepoint &&
1855 IID != Intrinsic::experimental_deoptimize;
1856 }
Sanjoy Dasc21a05a2015-10-08 23:18:30 +00001857
Daniel Neilson2574d7c2017-07-27 16:49:39 +00001858 // Lib calls can be materialized by some passes, and won't be
1859 // marked as 'gc-leaf-function.' All available Libcalls are
1860 // GC-leaf.
1861 LibFunc LF;
1862 if (TLI.getLibFunc(CS, LF)) {
1863 return TLI.has(LF);
1864 }
1865
Sanjoy Dasc21a05a2015-10-08 23:18:30 +00001866 return false;
1867}
James Molloyf01488e2016-01-15 09:20:19 +00001868
Chandler Carruth2abb65a2017-06-26 03:31:31 +00001869void llvm::copyNonnullMetadata(const LoadInst &OldLI, MDNode *N,
1870 LoadInst &NewLI) {
1871 auto *NewTy = NewLI.getType();
1872
1873 // This only directly applies if the new type is also a pointer.
1874 if (NewTy->isPointerTy()) {
1875 NewLI.setMetadata(LLVMContext::MD_nonnull, N);
1876 return;
1877 }
1878
1879 // The only other translation we can do is to integral loads with !range
1880 // metadata.
1881 if (!NewTy->isIntegerTy())
1882 return;
1883
1884 MDBuilder MDB(NewLI.getContext());
1885 const Value *Ptr = OldLI.getPointerOperand();
1886 auto *ITy = cast<IntegerType>(NewTy);
1887 auto *NullInt = ConstantExpr::getPtrToInt(
1888 ConstantPointerNull::get(cast<PointerType>(Ptr->getType())), ITy);
1889 auto *NonNullInt = ConstantExpr::getAdd(NullInt, ConstantInt::get(ITy, 1));
1890 NewLI.setMetadata(LLVMContext::MD_range,
1891 MDB.createRange(NonNullInt, NullInt));
1892}
1893
1894void llvm::copyRangeMetadata(const DataLayout &DL, const LoadInst &OldLI,
1895 MDNode *N, LoadInst &NewLI) {
1896 auto *NewTy = NewLI.getType();
1897
1898 // Give up unless it is converted to a pointer where there is a single very
1899 // valuable mapping we can do reliably.
1900 // FIXME: It would be nice to propagate this in more ways, but the type
1901 // conversions make it hard.
1902 if (!NewTy->isPointerTy())
1903 return;
1904
1905 unsigned BitWidth = DL.getTypeSizeInBits(NewTy);
1906 if (!getConstantRangeFromMetadata(*N).contains(APInt(BitWidth, 0))) {
1907 MDNode *NN = MDNode::get(OldLI.getContext(), None);
1908 NewLI.setMetadata(LLVMContext::MD_nonnull, NN);
1909 }
1910}
1911
Benjamin Kramerb7d33112016-08-06 11:13:10 +00001912namespace {
James Molloyf01488e2016-01-15 09:20:19 +00001913/// A potential constituent of a bitreverse or bswap expression. See
1914/// collectBitParts for a fuller explanation.
1915struct BitPart {
1916 BitPart(Value *P, unsigned BW) : Provider(P) {
1917 Provenance.resize(BW);
1918 }
1919
1920 /// The Value that this is a bitreverse/bswap of.
1921 Value *Provider;
1922 /// The "provenance" of each bit. Provenance[A] = B means that bit A
1923 /// in Provider becomes bit B in the result of this expression.
1924 SmallVector<int8_t, 32> Provenance; // int8_t means max size is i128.
1925
1926 enum { Unset = -1 };
1927};
Benjamin Kramerb7d33112016-08-06 11:13:10 +00001928} // end anonymous namespace
James Molloyf01488e2016-01-15 09:20:19 +00001929
1930/// Analyze the specified subexpression and see if it is capable of providing
1931/// pieces of a bswap or bitreverse. The subexpression provides a potential
1932/// piece of a bswap or bitreverse if it can be proven that each non-zero bit in
1933/// the output of the expression came from a corresponding bit in some other
1934/// value. This function is recursive, and the end result is a mapping of
1935/// bitnumber to bitnumber. It is the caller's responsibility to validate that
1936/// the bitnumber to bitnumber mapping is correct for a bswap or bitreverse.
1937///
1938/// For example, if the current subexpression if "(shl i32 %X, 24)" then we know
1939/// that the expression deposits the low byte of %X into the high byte of the
1940/// result and that all other bits are zero. This expression is accepted and a
1941/// BitPart is returned with Provider set to %X and Provenance[24-31] set to
1942/// [0-7].
1943///
1944/// To avoid revisiting values, the BitPart results are memoized into the
1945/// provided map. To avoid unnecessary copying of BitParts, BitParts are
1946/// constructed in-place in the \c BPS map. Because of this \c BPS needs to
1947/// store BitParts objects, not pointers. As we need the concept of a nullptr
1948/// BitParts (Value has been analyzed and the analysis failed), we an Optional
1949/// type instead to provide the same functionality.
1950///
1951/// Because we pass around references into \c BPS, we must use a container that
1952/// does not invalidate internal references (std::map instead of DenseMap).
1953///
1954static const Optional<BitPart> &
1955collectBitParts(Value *V, bool MatchBSwaps, bool MatchBitReversals,
1956 std::map<Value *, Optional<BitPart>> &BPS) {
1957 auto I = BPS.find(V);
1958 if (I != BPS.end())
1959 return I->second;
1960
1961 auto &Result = BPS[V] = None;
1962 auto BitWidth = cast<IntegerType>(V->getType())->getBitWidth();
1963
1964 if (Instruction *I = dyn_cast<Instruction>(V)) {
1965 // If this is an or instruction, it may be an inner node of the bswap.
1966 if (I->getOpcode() == Instruction::Or) {
1967 auto &A = collectBitParts(I->getOperand(0), MatchBSwaps,
1968 MatchBitReversals, BPS);
1969 auto &B = collectBitParts(I->getOperand(1), MatchBSwaps,
1970 MatchBitReversals, BPS);
1971 if (!A || !B)
1972 return Result;
1973
1974 // Try and merge the two together.
1975 if (!A->Provider || A->Provider != B->Provider)
1976 return Result;
1977
1978 Result = BitPart(A->Provider, BitWidth);
1979 for (unsigned i = 0; i < A->Provenance.size(); ++i) {
1980 if (A->Provenance[i] != BitPart::Unset &&
1981 B->Provenance[i] != BitPart::Unset &&
1982 A->Provenance[i] != B->Provenance[i])
1983 return Result = None;
1984
1985 if (A->Provenance[i] == BitPart::Unset)
1986 Result->Provenance[i] = B->Provenance[i];
1987 else
1988 Result->Provenance[i] = A->Provenance[i];
1989 }
1990
1991 return Result;
1992 }
1993
1994 // If this is a logical shift by a constant, recurse then shift the result.
1995 if (I->isLogicalShift() && isa<ConstantInt>(I->getOperand(1))) {
1996 unsigned BitShift =
1997 cast<ConstantInt>(I->getOperand(1))->getLimitedValue(~0U);
1998 // Ensure the shift amount is defined.
1999 if (BitShift > BitWidth)
2000 return Result;
2001
2002 auto &Res = collectBitParts(I->getOperand(0), MatchBSwaps,
2003 MatchBitReversals, BPS);
2004 if (!Res)
2005 return Result;
2006 Result = Res;
2007
2008 // Perform the "shift" on BitProvenance.
2009 auto &P = Result->Provenance;
2010 if (I->getOpcode() == Instruction::Shl) {
2011 P.erase(std::prev(P.end(), BitShift), P.end());
2012 P.insert(P.begin(), BitShift, BitPart::Unset);
2013 } else {
2014 P.erase(P.begin(), std::next(P.begin(), BitShift));
2015 P.insert(P.end(), BitShift, BitPart::Unset);
2016 }
2017
2018 return Result;
2019 }
2020
2021 // If this is a logical 'and' with a mask that clears bits, recurse then
2022 // unset the appropriate bits.
2023 if (I->getOpcode() == Instruction::And &&
2024 isa<ConstantInt>(I->getOperand(1))) {
2025 APInt Bit(I->getType()->getPrimitiveSizeInBits(), 1);
2026 const APInt &AndMask = cast<ConstantInt>(I->getOperand(1))->getValue();
2027
2028 // Check that the mask allows a multiple of 8 bits for a bswap, for an
2029 // early exit.
2030 unsigned NumMaskedBits = AndMask.countPopulation();
2031 if (!MatchBitReversals && NumMaskedBits % 8 != 0)
2032 return Result;
Chandler Carruth2abb65a2017-06-26 03:31:31 +00002033
James Molloyf01488e2016-01-15 09:20:19 +00002034 auto &Res = collectBitParts(I->getOperand(0), MatchBSwaps,
2035 MatchBitReversals, BPS);
2036 if (!Res)
2037 return Result;
2038 Result = Res;
2039
2040 for (unsigned i = 0; i < BitWidth; ++i, Bit <<= 1)
2041 // If the AndMask is zero for this bit, clear the bit.
2042 if ((AndMask & Bit) == 0)
2043 Result->Provenance[i] = BitPart::Unset;
Chad Rosiere5819e22016-05-26 14:58:51 +00002044 return Result;
2045 }
James Molloyf01488e2016-01-15 09:20:19 +00002046
Chad Rosiere5819e22016-05-26 14:58:51 +00002047 // If this is a zext instruction zero extend the result.
2048 if (I->getOpcode() == Instruction::ZExt) {
2049 auto &Res = collectBitParts(I->getOperand(0), MatchBSwaps,
2050 MatchBitReversals, BPS);
2051 if (!Res)
2052 return Result;
2053
2054 Result = BitPart(Res->Provider, BitWidth);
2055 auto NarrowBitWidth =
2056 cast<IntegerType>(cast<ZExtInst>(I)->getSrcTy())->getBitWidth();
2057 for (unsigned i = 0; i < NarrowBitWidth; ++i)
2058 Result->Provenance[i] = Res->Provenance[i];
2059 for (unsigned i = NarrowBitWidth; i < BitWidth; ++i)
2060 Result->Provenance[i] = BitPart::Unset;
James Molloyf01488e2016-01-15 09:20:19 +00002061 return Result;
2062 }
2063 }
2064
2065 // Okay, we got to something that isn't a shift, 'or' or 'and'. This must be
2066 // the input value to the bswap/bitreverse.
2067 Result = BitPart(V, BitWidth);
2068 for (unsigned i = 0; i < BitWidth; ++i)
2069 Result->Provenance[i] = i;
2070 return Result;
2071}
2072
2073static bool bitTransformIsCorrectForBSwap(unsigned From, unsigned To,
2074 unsigned BitWidth) {
2075 if (From % 8 != To % 8)
2076 return false;
2077 // Convert from bit indices to byte indices and check for a byte reversal.
2078 From >>= 3;
2079 To >>= 3;
2080 BitWidth >>= 3;
2081 return From == BitWidth - To - 1;
2082}
2083
2084static bool bitTransformIsCorrectForBitReverse(unsigned From, unsigned To,
2085 unsigned BitWidth) {
2086 return From == BitWidth - To - 1;
2087}
2088
2089/// Given an OR instruction, check to see if this is a bitreverse
2090/// idiom. If so, insert the new intrinsic and return true.
Chad Rosiera00df492016-05-25 16:22:14 +00002091bool llvm::recognizeBSwapOrBitReverseIdiom(
James Molloyf01488e2016-01-15 09:20:19 +00002092 Instruction *I, bool MatchBSwaps, bool MatchBitReversals,
2093 SmallVectorImpl<Instruction *> &InsertedInsts) {
2094 if (Operator::getOpcode(I) != Instruction::Or)
2095 return false;
2096 if (!MatchBSwaps && !MatchBitReversals)
2097 return false;
2098 IntegerType *ITy = dyn_cast<IntegerType>(I->getType());
2099 if (!ITy || ITy->getBitWidth() > 128)
2100 return false; // Can't do vectors or integers > 128 bits.
2101 unsigned BW = ITy->getBitWidth();
2102
Chad Rosiere5819e22016-05-26 14:58:51 +00002103 unsigned DemandedBW = BW;
2104 IntegerType *DemandedTy = ITy;
2105 if (I->hasOneUse()) {
2106 if (TruncInst *Trunc = dyn_cast<TruncInst>(I->user_back())) {
2107 DemandedTy = cast<IntegerType>(Trunc->getType());
2108 DemandedBW = DemandedTy->getBitWidth();
2109 }
2110 }
2111
James Molloyf01488e2016-01-15 09:20:19 +00002112 // Try to find all the pieces corresponding to the bswap.
2113 std::map<Value *, Optional<BitPart>> BPS;
2114 auto Res = collectBitParts(I, MatchBSwaps, MatchBitReversals, BPS);
2115 if (!Res)
2116 return false;
2117 auto &BitProvenance = Res->Provenance;
2118
2119 // Now, is the bit permutation correct for a bswap or a bitreverse? We can
2120 // only byteswap values with an even number of bytes.
Chad Rosiere5819e22016-05-26 14:58:51 +00002121 bool OKForBSwap = DemandedBW % 16 == 0, OKForBitReverse = true;
2122 for (unsigned i = 0; i < DemandedBW; ++i) {
2123 OKForBSwap &=
2124 bitTransformIsCorrectForBSwap(BitProvenance[i], i, DemandedBW);
James Molloyf01488e2016-01-15 09:20:19 +00002125 OKForBitReverse &=
Chad Rosiere5819e22016-05-26 14:58:51 +00002126 bitTransformIsCorrectForBitReverse(BitProvenance[i], i, DemandedBW);
James Molloyf01488e2016-01-15 09:20:19 +00002127 }
2128
2129 Intrinsic::ID Intrin;
2130 if (OKForBSwap && MatchBSwaps)
2131 Intrin = Intrinsic::bswap;
2132 else if (OKForBitReverse && MatchBitReversals)
2133 Intrin = Intrinsic::bitreverse;
2134 else
2135 return false;
2136
Chad Rosiere5819e22016-05-26 14:58:51 +00002137 if (ITy != DemandedTy) {
2138 Function *F = Intrinsic::getDeclaration(I->getModule(), Intrin, DemandedTy);
2139 Value *Provider = Res->Provider;
2140 IntegerType *ProviderTy = cast<IntegerType>(Provider->getType());
2141 // We may need to truncate the provider.
2142 if (DemandedTy != ProviderTy) {
2143 auto *Trunc = CastInst::Create(Instruction::Trunc, Provider, DemandedTy,
2144 "trunc", I);
2145 InsertedInsts.push_back(Trunc);
2146 Provider = Trunc;
2147 }
2148 auto *CI = CallInst::Create(F, Provider, "rev", I);
2149 InsertedInsts.push_back(CI);
2150 auto *ExtInst = CastInst::Create(Instruction::ZExt, CI, ITy, "zext", I);
2151 InsertedInsts.push_back(ExtInst);
2152 return true;
2153 }
2154
James Molloyf01488e2016-01-15 09:20:19 +00002155 Function *F = Intrinsic::getDeclaration(I->getModule(), Intrin, ITy);
2156 InsertedInsts.push_back(CallInst::Create(F, Res->Provider, "rev", I));
2157 return true;
2158}
Marcin Koscielnicki3feda222016-06-18 10:10:37 +00002159
2160// CodeGen has special handling for some string functions that may replace
2161// them with target-specific intrinsics. Since that'd skip our interceptors
2162// in ASan/MSan/TSan/DFSan, and thus make us miss some memory accesses,
2163// we mark affected calls as NoBuiltin, which will disable optimization
2164// in CodeGen.
Evgeniy Stepanovd240a882016-07-28 23:45:15 +00002165void llvm::maybeMarkSanitizerLibraryCallNoBuiltin(
2166 CallInst *CI, const TargetLibraryInfo *TLI) {
Marcin Koscielnicki3feda222016-06-18 10:10:37 +00002167 Function *F = CI->getCalledFunction();
David L. Jonesd21529f2017-01-23 23:16:46 +00002168 LibFunc Func;
Evgeniy Stepanovd240a882016-07-28 23:45:15 +00002169 if (F && !F->hasLocalLinkage() && F->hasName() &&
2170 TLI->getLibFunc(F->getName(), Func) && TLI->hasOptimizedCodeGen(Func) &&
2171 !F->doesNotAccessMemory())
Reid Klecknerb5180542017-03-21 16:57:19 +00002172 CI->addAttribute(AttributeList::FunctionIndex, Attribute::NoBuiltin);
Marcin Koscielnicki3feda222016-06-18 10:10:37 +00002173}
James Molloya9290632017-05-25 12:51:11 +00002174
2175bool llvm::canReplaceOperandWithVariable(const Instruction *I, unsigned OpIdx) {
2176 // We can't have a PHI with a metadata type.
2177 if (I->getOperand(OpIdx)->getType()->isMetadataTy())
2178 return false;
2179
2180 // Early exit.
2181 if (!isa<Constant>(I->getOperand(OpIdx)))
2182 return true;
2183
2184 switch (I->getOpcode()) {
2185 default:
2186 return true;
2187 case Instruction::Call:
2188 case Instruction::Invoke:
Leo Li93abd7d2017-07-10 20:45:34 +00002189 // Can't handle inline asm. Skip it.
2190 if (isa<InlineAsm>(ImmutableCallSite(I).getCalledValue()))
2191 return false;
James Molloya9290632017-05-25 12:51:11 +00002192 // Many arithmetic intrinsics have no issue taking a
2193 // variable, however it's hard to distingish these from
2194 // specials such as @llvm.frameaddress that require a constant.
2195 if (isa<IntrinsicInst>(I))
2196 return false;
2197
2198 // Constant bundle operands may need to retain their constant-ness for
2199 // correctness.
2200 if (ImmutableCallSite(I).isBundleOperand(OpIdx))
2201 return false;
2202 return true;
2203 case Instruction::ShuffleVector:
2204 // Shufflevector masks are constant.
2205 return OpIdx != 2;
Leo Li5499b1b2017-07-06 18:47:05 +00002206 case Instruction::Switch:
James Molloya9290632017-05-25 12:51:11 +00002207 case Instruction::ExtractValue:
James Molloya9290632017-05-25 12:51:11 +00002208 // All operands apart from the first are constant.
2209 return OpIdx == 0;
Leo Li5499b1b2017-07-06 18:47:05 +00002210 case Instruction::InsertValue:
2211 // All operands apart from the first and the second are constant.
2212 return OpIdx < 2;
James Molloya9290632017-05-25 12:51:11 +00002213 case Instruction::Alloca:
Leo Li5499b1b2017-07-06 18:47:05 +00002214 // Static allocas (constant size in the entry block) are handled by
2215 // prologue/epilogue insertion so they're free anyway. We definitely don't
2216 // want to make them non-constant.
2217 return !dyn_cast<AllocaInst>(I)->isStaticAlloca();
James Molloya9290632017-05-25 12:51:11 +00002218 case Instruction::GetElementPtr:
2219 if (OpIdx == 0)
2220 return true;
2221 gep_type_iterator It = gep_type_begin(I);
2222 for (auto E = std::next(It, OpIdx); It != E; ++It)
2223 if (It.isStruct())
2224 return false;
2225 return true;
2226 }
2227}