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Chris Lattner704541b2011-01-02 21:47:05 +00001//===- EarlyCSE.cpp - Simple and fast CSE pass ----------------------------===//
2//
3// The LLVM Compiler Infrastructure
4//
5// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
9//
10// This pass performs a simple dominator tree walk that eliminates trivially
11// redundant instructions.
12//
13//===----------------------------------------------------------------------===//
14
Chandler Carruthe8c686a2015-02-01 10:51:23 +000015#include "llvm/Transforms/Scalar/EarlyCSE.h"
Michael Ilseman336cb792012-10-09 16:57:38 +000016#include "llvm/ADT/Hashing.h"
Chris Lattner18ae5432011-01-02 23:04:14 +000017#include "llvm/ADT/ScopedHashTable.h"
Chris Lattner8fac5db2011-01-02 23:19:45 +000018#include "llvm/ADT/Statistic.h"
James Molloyefbba722015-09-10 10:22:12 +000019#include "llvm/Analysis/GlobalsModRef.h"
Chandler Carruth66b31302015-01-04 12:03:27 +000020#include "llvm/Analysis/AssumptionCache.h"
Chandler Carruthed0881b2012-12-03 16:50:05 +000021#include "llvm/Analysis/InstructionSimplify.h"
Benjamin Kramer799003b2015-03-23 19:32:43 +000022#include "llvm/Analysis/TargetLibraryInfo.h"
Chad Rosierf9327d62015-01-26 22:51:15 +000023#include "llvm/Analysis/TargetTransformInfo.h"
Chandler Carruth9fb823b2013-01-02 11:36:10 +000024#include "llvm/IR/DataLayout.h"
Chandler Carruth5ad5f152014-01-13 09:26:24 +000025#include "llvm/IR/Dominators.h"
Chandler Carruth9fb823b2013-01-02 11:36:10 +000026#include "llvm/IR/Instructions.h"
Hal Finkel1e16fa32014-11-03 20:21:32 +000027#include "llvm/IR/IntrinsicInst.h"
Andrew Kaylorf0f27922016-04-21 17:58:54 +000028#include "llvm/IR/OptBisect.h"
Hal Finkel1e16fa32014-11-03 20:21:32 +000029#include "llvm/IR/PatternMatch.h"
Chandler Carruthed0881b2012-12-03 16:50:05 +000030#include "llvm/Pass.h"
31#include "llvm/Support/Debug.h"
32#include "llvm/Support/RecyclingAllocator.h"
Benjamin Kramer799003b2015-03-23 19:32:43 +000033#include "llvm/Support/raw_ostream.h"
Chandler Carruthe8c686a2015-02-01 10:51:23 +000034#include "llvm/Transforms/Scalar.h"
Chandler Carruthed0881b2012-12-03 16:50:05 +000035#include "llvm/Transforms/Utils/Local.h"
Lenny Maiorani9eefc812014-09-20 13:29:20 +000036#include <deque>
Chris Lattner704541b2011-01-02 21:47:05 +000037using namespace llvm;
Hal Finkel1e16fa32014-11-03 20:21:32 +000038using namespace llvm::PatternMatch;
Chris Lattner704541b2011-01-02 21:47:05 +000039
Chandler Carruth964daaa2014-04-22 02:55:47 +000040#define DEBUG_TYPE "early-cse"
41
Chris Lattner4cb36542011-01-03 03:28:23 +000042STATISTIC(NumSimplify, "Number of instructions simplified or DCE'd");
43STATISTIC(NumCSE, "Number of instructions CSE'd");
Chris Lattner92bb0f92011-01-03 03:41:27 +000044STATISTIC(NumCSELoad, "Number of load instructions CSE'd");
45STATISTIC(NumCSECall, "Number of call instructions CSE'd");
Chris Lattner9e5e9ed2011-01-03 04:17:24 +000046STATISTIC(NumDSE, "Number of trivial dead stores removed");
Chris Lattnerb9a8efc2011-01-03 03:18:43 +000047
Chris Lattner79d83062011-01-03 02:20:48 +000048//===----------------------------------------------------------------------===//
Nadav Rotem465834c2012-07-24 10:51:42 +000049// SimpleValue
Chris Lattner79d83062011-01-03 02:20:48 +000050//===----------------------------------------------------------------------===//
51
Chris Lattner704541b2011-01-02 21:47:05 +000052namespace {
Chandler Carruth9dea5cd2015-01-24 11:44:32 +000053/// \brief Struct representing the available values in the scoped hash table.
Chandler Carruth7253bba2015-01-24 11:33:55 +000054struct SimpleValue {
55 Instruction *Inst;
Nadav Rotem465834c2012-07-24 10:51:42 +000056
Chandler Carruth7253bba2015-01-24 11:33:55 +000057 SimpleValue(Instruction *I) : Inst(I) {
58 assert((isSentinel() || canHandle(I)) && "Inst can't be handled!");
59 }
Nadav Rotem465834c2012-07-24 10:51:42 +000060
Chandler Carruth7253bba2015-01-24 11:33:55 +000061 bool isSentinel() const {
62 return Inst == DenseMapInfo<Instruction *>::getEmptyKey() ||
63 Inst == DenseMapInfo<Instruction *>::getTombstoneKey();
64 }
Nadav Rotem465834c2012-07-24 10:51:42 +000065
Chandler Carruth7253bba2015-01-24 11:33:55 +000066 static bool canHandle(Instruction *Inst) {
67 // This can only handle non-void readnone functions.
68 if (CallInst *CI = dyn_cast<CallInst>(Inst))
69 return CI->doesNotAccessMemory() && !CI->getType()->isVoidTy();
70 return isa<CastInst>(Inst) || isa<BinaryOperator>(Inst) ||
71 isa<GetElementPtrInst>(Inst) || isa<CmpInst>(Inst) ||
72 isa<SelectInst>(Inst) || isa<ExtractElementInst>(Inst) ||
73 isa<InsertElementInst>(Inst) || isa<ShuffleVectorInst>(Inst) ||
74 isa<ExtractValueInst>(Inst) || isa<InsertValueInst>(Inst);
75 }
76};
Alexander Kornienkof00654e2015-06-23 09:49:53 +000077}
Chris Lattner18ae5432011-01-02 23:04:14 +000078
79namespace llvm {
Chandler Carruth7253bba2015-01-24 11:33:55 +000080template <> struct DenseMapInfo<SimpleValue> {
Chris Lattner79d83062011-01-03 02:20:48 +000081 static inline SimpleValue getEmptyKey() {
Chandler Carruth7253bba2015-01-24 11:33:55 +000082 return DenseMapInfo<Instruction *>::getEmptyKey();
Chris Lattner18ae5432011-01-02 23:04:14 +000083 }
Chris Lattner79d83062011-01-03 02:20:48 +000084 static inline SimpleValue getTombstoneKey() {
Chandler Carruth7253bba2015-01-24 11:33:55 +000085 return DenseMapInfo<Instruction *>::getTombstoneKey();
Chris Lattner18ae5432011-01-02 23:04:14 +000086 }
Chris Lattner79d83062011-01-03 02:20:48 +000087 static unsigned getHashValue(SimpleValue Val);
88 static bool isEqual(SimpleValue LHS, SimpleValue RHS);
Chris Lattner18ae5432011-01-02 23:04:14 +000089};
Alexander Kornienkof00654e2015-06-23 09:49:53 +000090}
Chris Lattner18ae5432011-01-02 23:04:14 +000091
Chris Lattner79d83062011-01-03 02:20:48 +000092unsigned DenseMapInfo<SimpleValue>::getHashValue(SimpleValue Val) {
Chris Lattner18ae5432011-01-02 23:04:14 +000093 Instruction *Inst = Val.Inst;
Chris Lattner02a97762011-01-03 01:10:08 +000094 // Hash in all of the operands as pointers.
Chandler Carruth7253bba2015-01-24 11:33:55 +000095 if (BinaryOperator *BinOp = dyn_cast<BinaryOperator>(Inst)) {
Michael Ilseman336cb792012-10-09 16:57:38 +000096 Value *LHS = BinOp->getOperand(0);
97 Value *RHS = BinOp->getOperand(1);
98 if (BinOp->isCommutative() && BinOp->getOperand(0) > BinOp->getOperand(1))
99 std::swap(LHS, RHS);
Chris Lattner02a97762011-01-03 01:10:08 +0000100
Michael Ilseman336cb792012-10-09 16:57:38 +0000101 if (isa<OverflowingBinaryOperator>(BinOp)) {
102 // Hash the overflow behavior
103 unsigned Overflow =
Chandler Carruth7253bba2015-01-24 11:33:55 +0000104 BinOp->hasNoSignedWrap() * OverflowingBinaryOperator::NoSignedWrap |
105 BinOp->hasNoUnsignedWrap() *
106 OverflowingBinaryOperator::NoUnsignedWrap;
Michael Ilseman336cb792012-10-09 16:57:38 +0000107 return hash_combine(BinOp->getOpcode(), Overflow, LHS, RHS);
108 }
109
110 return hash_combine(BinOp->getOpcode(), LHS, RHS);
Chris Lattner02a97762011-01-03 01:10:08 +0000111 }
112
Michael Ilseman336cb792012-10-09 16:57:38 +0000113 if (CmpInst *CI = dyn_cast<CmpInst>(Inst)) {
114 Value *LHS = CI->getOperand(0);
115 Value *RHS = CI->getOperand(1);
116 CmpInst::Predicate Pred = CI->getPredicate();
117 if (Inst->getOperand(0) > Inst->getOperand(1)) {
118 std::swap(LHS, RHS);
119 Pred = CI->getSwappedPredicate();
120 }
121 return hash_combine(Inst->getOpcode(), Pred, LHS, RHS);
122 }
123
124 if (CastInst *CI = dyn_cast<CastInst>(Inst))
125 return hash_combine(CI->getOpcode(), CI->getType(), CI->getOperand(0));
126
127 if (const ExtractValueInst *EVI = dyn_cast<ExtractValueInst>(Inst))
128 return hash_combine(EVI->getOpcode(), EVI->getOperand(0),
129 hash_combine_range(EVI->idx_begin(), EVI->idx_end()));
130
131 if (const InsertValueInst *IVI = dyn_cast<InsertValueInst>(Inst))
132 return hash_combine(IVI->getOpcode(), IVI->getOperand(0),
133 IVI->getOperand(1),
134 hash_combine_range(IVI->idx_begin(), IVI->idx_end()));
135
136 assert((isa<CallInst>(Inst) || isa<BinaryOperator>(Inst) ||
137 isa<GetElementPtrInst>(Inst) || isa<SelectInst>(Inst) ||
138 isa<ExtractElementInst>(Inst) || isa<InsertElementInst>(Inst) ||
Chandler Carruth7253bba2015-01-24 11:33:55 +0000139 isa<ShuffleVectorInst>(Inst)) &&
140 "Invalid/unknown instruction");
Michael Ilseman336cb792012-10-09 16:57:38 +0000141
Chris Lattner02a97762011-01-03 01:10:08 +0000142 // Mix in the opcode.
Chandler Carruth7253bba2015-01-24 11:33:55 +0000143 return hash_combine(
144 Inst->getOpcode(),
145 hash_combine_range(Inst->value_op_begin(), Inst->value_op_end()));
Chris Lattner18ae5432011-01-02 23:04:14 +0000146}
147
Chris Lattner79d83062011-01-03 02:20:48 +0000148bool DenseMapInfo<SimpleValue>::isEqual(SimpleValue LHS, SimpleValue RHS) {
Chris Lattner18ae5432011-01-02 23:04:14 +0000149 Instruction *LHSI = LHS.Inst, *RHSI = RHS.Inst;
150
151 if (LHS.isSentinel() || RHS.isSentinel())
152 return LHSI == RHSI;
Nadav Rotem465834c2012-07-24 10:51:42 +0000153
Chandler Carruth7253bba2015-01-24 11:33:55 +0000154 if (LHSI->getOpcode() != RHSI->getOpcode())
155 return false;
156 if (LHSI->isIdenticalTo(RHSI))
157 return true;
Michael Ilseman336cb792012-10-09 16:57:38 +0000158
159 // If we're not strictly identical, we still might be a commutable instruction
160 if (BinaryOperator *LHSBinOp = dyn_cast<BinaryOperator>(LHSI)) {
161 if (!LHSBinOp->isCommutative())
162 return false;
163
Chandler Carruth7253bba2015-01-24 11:33:55 +0000164 assert(isa<BinaryOperator>(RHSI) &&
165 "same opcode, but different instruction type?");
Michael Ilseman336cb792012-10-09 16:57:38 +0000166 BinaryOperator *RHSBinOp = cast<BinaryOperator>(RHSI);
167
168 // Check overflow attributes
169 if (isa<OverflowingBinaryOperator>(LHSBinOp)) {
Chandler Carruth7253bba2015-01-24 11:33:55 +0000170 assert(isa<OverflowingBinaryOperator>(RHSBinOp) &&
171 "same opcode, but different operator type?");
Michael Ilseman336cb792012-10-09 16:57:38 +0000172 if (LHSBinOp->hasNoUnsignedWrap() != RHSBinOp->hasNoUnsignedWrap() ||
173 LHSBinOp->hasNoSignedWrap() != RHSBinOp->hasNoSignedWrap())
174 return false;
175 }
176
177 // Commuted equality
178 return LHSBinOp->getOperand(0) == RHSBinOp->getOperand(1) &&
Chandler Carruth7253bba2015-01-24 11:33:55 +0000179 LHSBinOp->getOperand(1) == RHSBinOp->getOperand(0);
Michael Ilseman336cb792012-10-09 16:57:38 +0000180 }
181 if (CmpInst *LHSCmp = dyn_cast<CmpInst>(LHSI)) {
Chandler Carruth7253bba2015-01-24 11:33:55 +0000182 assert(isa<CmpInst>(RHSI) &&
183 "same opcode, but different instruction type?");
Michael Ilseman336cb792012-10-09 16:57:38 +0000184 CmpInst *RHSCmp = cast<CmpInst>(RHSI);
185 // Commuted equality
186 return LHSCmp->getOperand(0) == RHSCmp->getOperand(1) &&
Chandler Carruth7253bba2015-01-24 11:33:55 +0000187 LHSCmp->getOperand(1) == RHSCmp->getOperand(0) &&
188 LHSCmp->getSwappedPredicate() == RHSCmp->getPredicate();
Michael Ilseman336cb792012-10-09 16:57:38 +0000189 }
190
191 return false;
Chris Lattner18ae5432011-01-02 23:04:14 +0000192}
193
Chris Lattnerb9a8efc2011-01-03 03:18:43 +0000194//===----------------------------------------------------------------------===//
Nadav Rotem465834c2012-07-24 10:51:42 +0000195// CallValue
Chris Lattnerb9a8efc2011-01-03 03:18:43 +0000196//===----------------------------------------------------------------------===//
197
198namespace {
Chandler Carruth9dea5cd2015-01-24 11:44:32 +0000199/// \brief Struct representing the available call values in the scoped hash
200/// table.
Chandler Carruth7253bba2015-01-24 11:33:55 +0000201struct CallValue {
202 Instruction *Inst;
Nadav Rotem465834c2012-07-24 10:51:42 +0000203
Chandler Carruth7253bba2015-01-24 11:33:55 +0000204 CallValue(Instruction *I) : Inst(I) {
205 assert((isSentinel() || canHandle(I)) && "Inst can't be handled!");
206 }
Nadav Rotem465834c2012-07-24 10:51:42 +0000207
Chandler Carruth7253bba2015-01-24 11:33:55 +0000208 bool isSentinel() const {
209 return Inst == DenseMapInfo<Instruction *>::getEmptyKey() ||
210 Inst == DenseMapInfo<Instruction *>::getTombstoneKey();
211 }
Nadav Rotem465834c2012-07-24 10:51:42 +0000212
Chandler Carruth7253bba2015-01-24 11:33:55 +0000213 static bool canHandle(Instruction *Inst) {
214 // Don't value number anything that returns void.
215 if (Inst->getType()->isVoidTy())
216 return false;
Nadav Rotem465834c2012-07-24 10:51:42 +0000217
Chandler Carruth7253bba2015-01-24 11:33:55 +0000218 CallInst *CI = dyn_cast<CallInst>(Inst);
219 if (!CI || !CI->onlyReadsMemory())
220 return false;
221 return true;
222 }
223};
Alexander Kornienkof00654e2015-06-23 09:49:53 +0000224}
Chris Lattnerb9a8efc2011-01-03 03:18:43 +0000225
226namespace llvm {
Chandler Carruth7253bba2015-01-24 11:33:55 +0000227template <> struct DenseMapInfo<CallValue> {
228 static inline CallValue getEmptyKey() {
229 return DenseMapInfo<Instruction *>::getEmptyKey();
230 }
231 static inline CallValue getTombstoneKey() {
232 return DenseMapInfo<Instruction *>::getTombstoneKey();
233 }
234 static unsigned getHashValue(CallValue Val);
235 static bool isEqual(CallValue LHS, CallValue RHS);
236};
Alexander Kornienkof00654e2015-06-23 09:49:53 +0000237}
Chandler Carruth7253bba2015-01-24 11:33:55 +0000238
Chris Lattner92bb0f92011-01-03 03:41:27 +0000239unsigned DenseMapInfo<CallValue>::getHashValue(CallValue Val) {
Chris Lattnerb9a8efc2011-01-03 03:18:43 +0000240 Instruction *Inst = Val.Inst;
Benjamin Kramer6ab86b12015-02-01 12:30:59 +0000241 // Hash all of the operands as pointers and mix in the opcode.
242 return hash_combine(
243 Inst->getOpcode(),
244 hash_combine_range(Inst->value_op_begin(), Inst->value_op_end()));
Chris Lattnerb9a8efc2011-01-03 03:18:43 +0000245}
246
Chris Lattner92bb0f92011-01-03 03:41:27 +0000247bool DenseMapInfo<CallValue>::isEqual(CallValue LHS, CallValue RHS) {
Chris Lattnerb9a8efc2011-01-03 03:18:43 +0000248 Instruction *LHSI = LHS.Inst, *RHSI = RHS.Inst;
Chris Lattnerb9a8efc2011-01-03 03:18:43 +0000249 if (LHS.isSentinel() || RHS.isSentinel())
250 return LHSI == RHSI;
Chris Lattnerb9a8efc2011-01-03 03:18:43 +0000251 return LHSI->isIdenticalTo(RHSI);
252}
253
Chris Lattner79d83062011-01-03 02:20:48 +0000254//===----------------------------------------------------------------------===//
Chandler Carruthd649c0a2015-01-27 01:34:14 +0000255// EarlyCSE implementation
Chris Lattner79d83062011-01-03 02:20:48 +0000256//===----------------------------------------------------------------------===//
257
Chris Lattner18ae5432011-01-02 23:04:14 +0000258namespace {
Chandler Carruth9dea5cd2015-01-24 11:44:32 +0000259/// \brief A simple and fast domtree-based CSE pass.
260///
261/// This pass does a simple depth-first walk over the dominator tree,
262/// eliminating trivially redundant instructions and using instsimplify to
263/// canonicalize things as it goes. It is intended to be fast and catch obvious
264/// cases so that instcombine and other passes are more effective. It is
265/// expected that a later pass of GVN will catch the interesting/hard cases.
Chandler Carruthd649c0a2015-01-27 01:34:14 +0000266class EarlyCSE {
Chris Lattner704541b2011-01-02 21:47:05 +0000267public:
Chandler Carruthd649c0a2015-01-27 01:34:14 +0000268 const TargetLibraryInfo &TLI;
269 const TargetTransformInfo &TTI;
270 DominatorTree &DT;
271 AssumptionCache &AC;
Chandler Carruth7253bba2015-01-24 11:33:55 +0000272 typedef RecyclingAllocator<
273 BumpPtrAllocator, ScopedHashTableVal<SimpleValue, Value *>> AllocatorTy;
274 typedef ScopedHashTable<SimpleValue, Value *, DenseMapInfo<SimpleValue>,
Chris Lattnerd815f692011-01-03 01:42:46 +0000275 AllocatorTy> ScopedHTType;
Nadav Rotem465834c2012-07-24 10:51:42 +0000276
Chandler Carruth9dea5cd2015-01-24 11:44:32 +0000277 /// \brief A scoped hash table of the current values of all of our simple
278 /// scalar expressions.
279 ///
280 /// As we walk down the domtree, we look to see if instructions are in this:
281 /// if so, we replace them with what we find, otherwise we insert them so
282 /// that dominated values can succeed in their lookup.
Chandler Carruthd649c0a2015-01-27 01:34:14 +0000283 ScopedHTType AvailableValues;
Nadav Rotem465834c2012-07-24 10:51:42 +0000284
Philip Reames8fc2cbf2015-12-08 21:45:41 +0000285 /// A scoped hash table of the current values of previously encounted memory
286 /// locations.
Chandler Carruth9dea5cd2015-01-24 11:44:32 +0000287 ///
Philip Reames8fc2cbf2015-12-08 21:45:41 +0000288 /// This allows us to get efficient access to dominating loads or stores when
289 /// we have a fully redundant load. In addition to the most recent load, we
290 /// keep track of a generation count of the read, which is compared against
291 /// the current generation count. The current generation count is incremented
Chandler Carruth9dea5cd2015-01-24 11:44:32 +0000292 /// after every possibly writing memory operation, which ensures that we only
Philip Reames8fc2cbf2015-12-08 21:45:41 +0000293 /// CSE loads with other loads that have no intervening store. Ordering
294 /// events (such as fences or atomic instructions) increment the generation
295 /// count as well; essentially, we model these as writes to all possible
296 /// locations. Note that atomic and/or volatile loads and stores can be
297 /// present the table; it is the responsibility of the consumer to inspect
298 /// the atomicity/volatility if needed.
Arnaud A. de Grandmaisona6178a12015-10-07 07:41:29 +0000299 struct LoadValue {
Arnaud A. de Grandmaison859b2ac2015-10-09 09:23:01 +0000300 Value *Data;
301 unsigned Generation;
302 int MatchingId;
Philip Reames8fc2cbf2015-12-08 21:45:41 +0000303 bool IsAtomic;
304 LoadValue()
305 : Data(nullptr), Generation(0), MatchingId(-1), IsAtomic(false) {}
306 LoadValue(Value *Data, unsigned Generation, unsigned MatchingId,
307 bool IsAtomic)
308 : Data(Data), Generation(Generation), MatchingId(MatchingId),
309 IsAtomic(IsAtomic) {}
Arnaud A. de Grandmaisona6178a12015-10-07 07:41:29 +0000310 };
311 typedef RecyclingAllocator<BumpPtrAllocator,
312 ScopedHashTableVal<Value *, LoadValue>>
Chandler Carruth7253bba2015-01-24 11:33:55 +0000313 LoadMapAllocator;
Arnaud A. de Grandmaisona6178a12015-10-07 07:41:29 +0000314 typedef ScopedHashTable<Value *, LoadValue, DenseMapInfo<Value *>,
315 LoadMapAllocator> LoadHTType;
Chandler Carruthd649c0a2015-01-27 01:34:14 +0000316 LoadHTType AvailableLoads;
Nadav Rotem465834c2012-07-24 10:51:42 +0000317
Chandler Carruth9dea5cd2015-01-24 11:44:32 +0000318 /// \brief A scoped hash table of the current values of read-only call
319 /// values.
320 ///
321 /// It uses the same generation count as loads.
Chandler Carruth7253bba2015-01-24 11:33:55 +0000322 typedef ScopedHashTable<CallValue, std::pair<Value *, unsigned>> CallHTType;
Chandler Carruthd649c0a2015-01-27 01:34:14 +0000323 CallHTType AvailableCalls;
Nadav Rotem465834c2012-07-24 10:51:42 +0000324
Chandler Carruth9dea5cd2015-01-24 11:44:32 +0000325 /// \brief This is the current generation of the memory value.
Chris Lattnerb9a8efc2011-01-03 03:18:43 +0000326 unsigned CurrentGeneration;
Nadav Rotem465834c2012-07-24 10:51:42 +0000327
Chandler Carruthd649c0a2015-01-27 01:34:14 +0000328 /// \brief Set up the EarlyCSE runner for a particular function.
Benjamin Kramer6db33382015-10-15 15:08:58 +0000329 EarlyCSE(const TargetLibraryInfo &TLI, const TargetTransformInfo &TTI,
330 DominatorTree &DT, AssumptionCache &AC)
331 : TLI(TLI), TTI(TTI), DT(DT), AC(AC), CurrentGeneration(0) {}
Chris Lattner704541b2011-01-02 21:47:05 +0000332
Chandler Carruthd649c0a2015-01-27 01:34:14 +0000333 bool run();
Chris Lattner704541b2011-01-02 21:47:05 +0000334
335private:
Chandler Carruth9dea5cd2015-01-24 11:44:32 +0000336 // Almost a POD, but needs to call the constructors for the scoped hash
337 // tables so that a new scope gets pushed on. These are RAII so that the
338 // scope gets popped when the NodeScope is destroyed.
Lenny Maiorani8d670b82012-01-31 23:14:41 +0000339 class NodeScope {
Chandler Carruth7253bba2015-01-24 11:33:55 +0000340 public:
Chandler Carruthd649c0a2015-01-27 01:34:14 +0000341 NodeScope(ScopedHTType &AvailableValues, LoadHTType &AvailableLoads,
342 CallHTType &AvailableCalls)
343 : Scope(AvailableValues), LoadScope(AvailableLoads),
344 CallScope(AvailableCalls) {}
Lenny Maiorani8d670b82012-01-31 23:14:41 +0000345
Chandler Carruth7253bba2015-01-24 11:33:55 +0000346 private:
Aaron Ballmanf9a18972015-02-15 22:54:22 +0000347 NodeScope(const NodeScope &) = delete;
348 void operator=(const NodeScope &) = delete;
Lenny Maiorani8d670b82012-01-31 23:14:41 +0000349
350 ScopedHTType::ScopeTy Scope;
351 LoadHTType::ScopeTy LoadScope;
352 CallHTType::ScopeTy CallScope;
353 };
354
Chandler Carruth9dea5cd2015-01-24 11:44:32 +0000355 // Contains all the needed information to create a stack for doing a depth
356 // first tranversal of the tree. This includes scopes for values, loads, and
357 // calls as well as the generation. There is a child iterator so that the
358 // children do not need to be store spearately.
Lenny Maiorani8d670b82012-01-31 23:14:41 +0000359 class StackNode {
Chandler Carruth7253bba2015-01-24 11:33:55 +0000360 public:
Chandler Carruthd649c0a2015-01-27 01:34:14 +0000361 StackNode(ScopedHTType &AvailableValues, LoadHTType &AvailableLoads,
362 CallHTType &AvailableCalls, unsigned cg, DomTreeNode *n,
Chandler Carruth7253bba2015-01-24 11:33:55 +0000363 DomTreeNode::iterator child, DomTreeNode::iterator end)
364 : CurrentGeneration(cg), ChildGeneration(cg), Node(n), ChildIter(child),
Chandler Carruthd649c0a2015-01-27 01:34:14 +0000365 EndIter(end), Scopes(AvailableValues, AvailableLoads, AvailableCalls),
Chandler Carruth7253bba2015-01-24 11:33:55 +0000366 Processed(false) {}
Lenny Maiorani8d670b82012-01-31 23:14:41 +0000367
368 // Accessors.
369 unsigned currentGeneration() { return CurrentGeneration; }
370 unsigned childGeneration() { return ChildGeneration; }
371 void childGeneration(unsigned generation) { ChildGeneration = generation; }
372 DomTreeNode *node() { return Node; }
373 DomTreeNode::iterator childIter() { return ChildIter; }
374 DomTreeNode *nextChild() {
375 DomTreeNode *child = *ChildIter;
376 ++ChildIter;
377 return child;
378 }
379 DomTreeNode::iterator end() { return EndIter; }
380 bool isProcessed() { return Processed; }
381 void process() { Processed = true; }
382
Chandler Carruth7253bba2015-01-24 11:33:55 +0000383 private:
Aaron Ballmanf9a18972015-02-15 22:54:22 +0000384 StackNode(const StackNode &) = delete;
385 void operator=(const StackNode &) = delete;
Lenny Maiorani8d670b82012-01-31 23:14:41 +0000386
387 // Members.
388 unsigned CurrentGeneration;
389 unsigned ChildGeneration;
390 DomTreeNode *Node;
391 DomTreeNode::iterator ChildIter;
392 DomTreeNode::iterator EndIter;
393 NodeScope Scopes;
394 bool Processed;
395 };
396
Chad Rosierf9327d62015-01-26 22:51:15 +0000397 /// \brief Wrapper class to handle memory instructions, including loads,
398 /// stores and intrinsic loads and stores defined by the target.
399 class ParseMemoryInst {
400 public:
Chandler Carruthd649c0a2015-01-27 01:34:14 +0000401 ParseMemoryInst(Instruction *Inst, const TargetTransformInfo &TTI)
Philip Reames9e5e2d62015-12-07 22:41:23 +0000402 : IsTargetMemInst(false), Inst(Inst) {
403 if (IntrinsicInst *II = dyn_cast<IntrinsicInst>(Inst))
404 if (TTI.getTgtMemIntrinsic(II, Info) && Info.NumMemRefs == 1)
405 IsTargetMemInst = true;
406 }
407 bool isLoad() const {
408 if (IsTargetMemInst) return Info.ReadMem;
409 return isa<LoadInst>(Inst);
410 }
411 bool isStore() const {
412 if (IsTargetMemInst) return Info.WriteMem;
413 return isa<StoreInst>(Inst);
414 }
Philip Reames8fc2cbf2015-12-08 21:45:41 +0000415 bool isAtomic() const {
416 if (IsTargetMemInst) {
417 assert(Info.IsSimple && "need to refine IsSimple in TTI");
418 return false;
419 }
420 return Inst->isAtomic();
421 }
422 bool isUnordered() const {
423 if (IsTargetMemInst) {
424 assert(Info.IsSimple && "need to refine IsSimple in TTI");
425 return true;
426 }
427 if (LoadInst *LI = dyn_cast<LoadInst>(Inst)) {
428 return LI->isUnordered();
429 } else if (StoreInst *SI = dyn_cast<StoreInst>(Inst)) {
430 return SI->isUnordered();
431 }
432 // Conservative answer
433 return !Inst->isAtomic();
434 }
435
436 bool isVolatile() const {
437 if (IsTargetMemInst) {
438 assert(Info.IsSimple && "need to refine IsSimple in TTI");
439 return false;
440 }
441 if (LoadInst *LI = dyn_cast<LoadInst>(Inst)) {
442 return LI->isVolatile();
443 } else if (StoreInst *SI = dyn_cast<StoreInst>(Inst)) {
444 return SI->isVolatile();
445 }
446 // Conservative answer
447 return true;
448 }
449
Junmo Park80440eb2016-02-18 10:09:20 +0000450
Arnaud A. de Grandmaison6fd488b2015-10-06 13:35:30 +0000451 bool isMatchingMemLoc(const ParseMemoryInst &Inst) const {
Philip Reames9e5e2d62015-12-07 22:41:23 +0000452 return (getPointerOperand() == Inst.getPointerOperand() &&
453 getMatchingId() == Inst.getMatchingId());
Chad Rosierf9327d62015-01-26 22:51:15 +0000454 }
Philip Reames9e5e2d62015-12-07 22:41:23 +0000455 bool isValid() const { return getPointerOperand() != nullptr; }
Chad Rosierf9327d62015-01-26 22:51:15 +0000456
Chad Rosierf9327d62015-01-26 22:51:15 +0000457 // For regular (non-intrinsic) loads/stores, this is set to -1. For
458 // intrinsic loads/stores, the id is retrieved from the corresponding
459 // field in the MemIntrinsicInfo structure. That field contains
460 // non-negative values only.
Philip Reames9e5e2d62015-12-07 22:41:23 +0000461 int getMatchingId() const {
462 if (IsTargetMemInst) return Info.MatchingId;
463 return -1;
464 }
465 Value *getPointerOperand() const {
466 if (IsTargetMemInst) return Info.PtrVal;
467 if (LoadInst *LI = dyn_cast<LoadInst>(Inst)) {
468 return LI->getPointerOperand();
469 } else if (StoreInst *SI = dyn_cast<StoreInst>(Inst)) {
470 return SI->getPointerOperand();
471 }
472 return nullptr;
473 }
474 bool mayReadFromMemory() const {
475 if (IsTargetMemInst) return Info.ReadMem;
476 return Inst->mayReadFromMemory();
477 }
478 bool mayWriteToMemory() const {
479 if (IsTargetMemInst) return Info.WriteMem;
480 return Inst->mayWriteToMemory();
481 }
482
483 private:
484 bool IsTargetMemInst;
485 MemIntrinsicInfo Info;
486 Instruction *Inst;
Chad Rosierf9327d62015-01-26 22:51:15 +0000487 };
488
Chris Lattner18ae5432011-01-02 23:04:14 +0000489 bool processNode(DomTreeNode *Node);
Nadav Rotem465834c2012-07-24 10:51:42 +0000490
Chad Rosierf9327d62015-01-26 22:51:15 +0000491 Value *getOrCreateResult(Value *Inst, Type *ExpectedType) const {
492 if (LoadInst *LI = dyn_cast<LoadInst>(Inst))
493 return LI;
494 else if (StoreInst *SI = dyn_cast<StoreInst>(Inst))
495 return SI->getValueOperand();
496 assert(isa<IntrinsicInst>(Inst) && "Instruction not supported");
Chandler Carruthd649c0a2015-01-27 01:34:14 +0000497 return TTI.getOrCreateResultFromMemIntrinsic(cast<IntrinsicInst>(Inst),
498 ExpectedType);
Chad Rosierf9327d62015-01-26 22:51:15 +0000499 }
Chris Lattner704541b2011-01-02 21:47:05 +0000500};
Alexander Kornienkof00654e2015-06-23 09:49:53 +0000501}
Chris Lattner704541b2011-01-02 21:47:05 +0000502
Chris Lattner18ae5432011-01-02 23:04:14 +0000503bool EarlyCSE::processNode(DomTreeNode *Node) {
Chris Lattner18ae5432011-01-02 23:04:14 +0000504 BasicBlock *BB = Node->getBlock();
Nadav Rotem465834c2012-07-24 10:51:42 +0000505
Chris Lattnerb9a8efc2011-01-03 03:18:43 +0000506 // If this block has a single predecessor, then the predecessor is the parent
507 // of the domtree node and all of the live out memory values are still current
508 // in this block. If this block has multiple predecessors, then they could
509 // have invalidated the live-out memory values of our parent value. For now,
510 // just be conservative and invalidate memory if this block has multiple
511 // predecessors.
Craig Topperf40110f2014-04-25 05:29:35 +0000512 if (!BB->getSinglePredecessor())
Chris Lattnerb9a8efc2011-01-03 03:18:43 +0000513 ++CurrentGeneration;
Nadav Rotem465834c2012-07-24 10:51:42 +0000514
Philip Reames7c78ef72015-05-22 23:53:24 +0000515 // If this node has a single predecessor which ends in a conditional branch,
516 // we can infer the value of the branch condition given that we took this
Chad Rosierb346dcb2016-04-20 19:16:23 +0000517 // path. We need the single predecessor to ensure there's not another path
Philip Reames7c78ef72015-05-22 23:53:24 +0000518 // which reaches this block where the condition might hold a different
519 // value. Since we're adding this to the scoped hash table (like any other
520 // def), it will have been popped if we encounter a future merge block.
521 if (BasicBlock *Pred = BB->getSinglePredecessor())
522 if (auto *BI = dyn_cast<BranchInst>(Pred->getTerminator()))
523 if (BI->isConditional())
524 if (auto *CondInst = dyn_cast<Instruction>(BI->getCondition()))
525 if (SimpleValue::canHandle(CondInst)) {
526 assert(BI->getSuccessor(0) == BB || BI->getSuccessor(1) == BB);
527 auto *ConditionalConstant = (BI->getSuccessor(0) == BB) ?
528 ConstantInt::getTrue(BB->getContext()) :
529 ConstantInt::getFalse(BB->getContext());
530 AvailableValues.insert(CondInst, ConditionalConstant);
531 DEBUG(dbgs() << "EarlyCSE CVP: Add conditional value for '"
532 << CondInst->getName() << "' as " << *ConditionalConstant
533 << " in " << BB->getName() << "\n");
534 // Replace all dominated uses with the known value
535 replaceDominatedUsesWith(CondInst, ConditionalConstant, DT,
536 BasicBlockEdge(Pred, BB));
537 }
538
Chris Lattner9e5e9ed2011-01-03 04:17:24 +0000539 /// LastStore - Keep track of the last non-volatile store that we saw... for
540 /// as long as there in no instruction that reads memory. If we see a store
541 /// to the same location, we delete the dead store. This zaps trivial dead
542 /// stores which can occur in bitfield code among other things.
Chad Rosierf9327d62015-01-26 22:51:15 +0000543 Instruction *LastStore = nullptr;
Nadav Rotem465834c2012-07-24 10:51:42 +0000544
Chris Lattner18ae5432011-01-02 23:04:14 +0000545 bool Changed = false;
Mehdi Aminia28d91d2015-03-10 02:37:25 +0000546 const DataLayout &DL = BB->getModule()->getDataLayout();
Chris Lattner18ae5432011-01-02 23:04:14 +0000547
548 // See if any instructions in the block can be eliminated. If so, do it. If
549 // not, add them to AvailableValues.
Chandler Carruth7253bba2015-01-24 11:33:55 +0000550 for (BasicBlock::iterator I = BB->begin(), E = BB->end(); I != E;) {
Duncan P. N. Exon Smith3a9c9e32015-10-13 18:26:00 +0000551 Instruction *Inst = &*I++;
Nadav Rotem465834c2012-07-24 10:51:42 +0000552
Chris Lattner18ae5432011-01-02 23:04:14 +0000553 // Dead instructions should just be removed.
Chandler Carruthd649c0a2015-01-27 01:34:14 +0000554 if (isInstructionTriviallyDead(Inst, &TLI)) {
Chris Lattner8fac5db2011-01-02 23:19:45 +0000555 DEBUG(dbgs() << "EarlyCSE DCE: " << *Inst << '\n');
Chris Lattner18ae5432011-01-02 23:04:14 +0000556 Inst->eraseFromParent();
557 Changed = true;
Chris Lattner8fac5db2011-01-02 23:19:45 +0000558 ++NumSimplify;
Chris Lattner18ae5432011-01-02 23:04:14 +0000559 continue;
560 }
Nadav Rotem465834c2012-07-24 10:51:42 +0000561
Hal Finkel1e16fa32014-11-03 20:21:32 +0000562 // Skip assume intrinsics, they don't really have side effects (although
563 // they're marked as such to ensure preservation of control dependencies),
564 // and this pass will not disturb any of the assumption's control
565 // dependencies.
566 if (match(Inst, m_Intrinsic<Intrinsic::assume>())) {
567 DEBUG(dbgs() << "EarlyCSE skipping assumption: " << *Inst << '\n');
568 continue;
569 }
570
Chris Lattner18ae5432011-01-02 23:04:14 +0000571 // If the instruction can be simplified (e.g. X+0 = X) then replace it with
572 // its simpler value.
Chandler Carruthd649c0a2015-01-27 01:34:14 +0000573 if (Value *V = SimplifyInstruction(Inst, DL, &TLI, &DT, &AC)) {
Chris Lattner8fac5db2011-01-02 23:19:45 +0000574 DEBUG(dbgs() << "EarlyCSE Simplify: " << *Inst << " to: " << *V << '\n');
Chris Lattner18ae5432011-01-02 23:04:14 +0000575 Inst->replaceAllUsesWith(V);
576 Inst->eraseFromParent();
577 Changed = true;
Chris Lattner8fac5db2011-01-02 23:19:45 +0000578 ++NumSimplify;
Chris Lattner18ae5432011-01-02 23:04:14 +0000579 continue;
580 }
Nadav Rotem465834c2012-07-24 10:51:42 +0000581
Chris Lattnerb9a8efc2011-01-03 03:18:43 +0000582 // If this is a simple instruction that we can value number, process it.
583 if (SimpleValue::canHandle(Inst)) {
584 // See if the instruction has an available value. If so, use it.
Chandler Carruthd649c0a2015-01-27 01:34:14 +0000585 if (Value *V = AvailableValues.lookup(Inst)) {
Chris Lattnerb9a8efc2011-01-03 03:18:43 +0000586 DEBUG(dbgs() << "EarlyCSE CSE: " << *Inst << " to: " << *V << '\n');
587 Inst->replaceAllUsesWith(V);
588 Inst->eraseFromParent();
589 Changed = true;
590 ++NumCSE;
591 continue;
592 }
Nadav Rotem465834c2012-07-24 10:51:42 +0000593
Chris Lattnerb9a8efc2011-01-03 03:18:43 +0000594 // Otherwise, just remember that this value is available.
Chandler Carruthd649c0a2015-01-27 01:34:14 +0000595 AvailableValues.insert(Inst, Inst);
Chris Lattner18ae5432011-01-02 23:04:14 +0000596 continue;
597 }
Nadav Rotem465834c2012-07-24 10:51:42 +0000598
Chad Rosierf9327d62015-01-26 22:51:15 +0000599 ParseMemoryInst MemInst(Inst, TTI);
Chris Lattner92bb0f92011-01-03 03:41:27 +0000600 // If this is a non-volatile load, process it.
Chad Rosierf9327d62015-01-26 22:51:15 +0000601 if (MemInst.isValid() && MemInst.isLoad()) {
Philip Reames8fc2cbf2015-12-08 21:45:41 +0000602 // (conservatively) we can't peak past the ordering implied by this
603 // operation, but we can add this load to our set of available values
604 if (MemInst.isVolatile() || !MemInst.isUnordered()) {
Craig Topperf40110f2014-04-25 05:29:35 +0000605 LastStore = nullptr;
Philip Reames8fc2cbf2015-12-08 21:45:41 +0000606 ++CurrentGeneration;
Chris Lattner9e5e9ed2011-01-03 04:17:24 +0000607 }
Nadav Rotem465834c2012-07-24 10:51:42 +0000608
Chris Lattner92bb0f92011-01-03 03:41:27 +0000609 // If we have an available version of this load, and if it is the right
Chris Lattnerb9a8efc2011-01-03 03:18:43 +0000610 // generation, replace this instruction.
Philip Reames9e5e2d62015-12-07 22:41:23 +0000611 LoadValue InVal = AvailableLoads.lookup(MemInst.getPointerOperand());
Arnaud A. de Grandmaison859b2ac2015-10-09 09:23:01 +0000612 if (InVal.Data != nullptr && InVal.Generation == CurrentGeneration &&
Philip Reames8fc2cbf2015-12-08 21:45:41 +0000613 InVal.MatchingId == MemInst.getMatchingId() &&
614 // We don't yet handle removing loads with ordering of any kind.
615 !MemInst.isVolatile() && MemInst.isUnordered() &&
616 // We can't replace an atomic load with one which isn't also atomic.
617 InVal.IsAtomic >= MemInst.isAtomic()) {
Arnaud A. de Grandmaison859b2ac2015-10-09 09:23:01 +0000618 Value *Op = getOrCreateResult(InVal.Data, Inst->getType());
Chad Rosierf9327d62015-01-26 22:51:15 +0000619 if (Op != nullptr) {
620 DEBUG(dbgs() << "EarlyCSE CSE LOAD: " << *Inst
Arnaud A. de Grandmaison859b2ac2015-10-09 09:23:01 +0000621 << " to: " << *InVal.Data << '\n');
Chad Rosierf9327d62015-01-26 22:51:15 +0000622 if (!Inst->use_empty())
623 Inst->replaceAllUsesWith(Op);
624 Inst->eraseFromParent();
625 Changed = true;
626 ++NumCSELoad;
627 continue;
628 }
Chris Lattnerb9a8efc2011-01-03 03:18:43 +0000629 }
Nadav Rotem465834c2012-07-24 10:51:42 +0000630
Chris Lattnerb9a8efc2011-01-03 03:18:43 +0000631 // Otherwise, remember that we have this instruction.
Arnaud A. de Grandmaisona6178a12015-10-07 07:41:29 +0000632 AvailableLoads.insert(
Philip Reames9e5e2d62015-12-07 22:41:23 +0000633 MemInst.getPointerOperand(),
Philip Reames8fc2cbf2015-12-08 21:45:41 +0000634 LoadValue(Inst, CurrentGeneration, MemInst.getMatchingId(),
635 MemInst.isAtomic()));
Craig Topperf40110f2014-04-25 05:29:35 +0000636 LastStore = nullptr;
Chris Lattner92bb0f92011-01-03 03:41:27 +0000637 continue;
638 }
Nadav Rotem465834c2012-07-24 10:51:42 +0000639
Chris Lattner9e5e9ed2011-01-03 04:17:24 +0000640 // If this instruction may read from memory, forget LastStore.
Chad Rosierf9327d62015-01-26 22:51:15 +0000641 // Load/store intrinsics will indicate both a read and a write to
642 // memory. The target may override this (e.g. so that a store intrinsic
643 // does not read from memory, and thus will be treated the same as a
644 // regular store for commoning purposes).
645 if (Inst->mayReadFromMemory() &&
646 !(MemInst.isValid() && !MemInst.mayReadFromMemory()))
Craig Topperf40110f2014-04-25 05:29:35 +0000647 LastStore = nullptr;
Nadav Rotem465834c2012-07-24 10:51:42 +0000648
Chris Lattner92bb0f92011-01-03 03:41:27 +0000649 // If this is a read-only call, process it.
650 if (CallValue::canHandle(Inst)) {
651 // If we have an available version of this call, and if it is the right
652 // generation, replace this instruction.
Chandler Carruthd649c0a2015-01-27 01:34:14 +0000653 std::pair<Value *, unsigned> InVal = AvailableCalls.lookup(Inst);
Craig Topperf40110f2014-04-25 05:29:35 +0000654 if (InVal.first != nullptr && InVal.second == CurrentGeneration) {
Chandler Carruth7253bba2015-01-24 11:33:55 +0000655 DEBUG(dbgs() << "EarlyCSE CSE CALL: " << *Inst
656 << " to: " << *InVal.first << '\n');
657 if (!Inst->use_empty())
658 Inst->replaceAllUsesWith(InVal.first);
Chris Lattner92bb0f92011-01-03 03:41:27 +0000659 Inst->eraseFromParent();
660 Changed = true;
661 ++NumCSECall;
662 continue;
663 }
Nadav Rotem465834c2012-07-24 10:51:42 +0000664
Chris Lattner92bb0f92011-01-03 03:41:27 +0000665 // Otherwise, remember that we have this instruction.
Chandler Carruthd649c0a2015-01-27 01:34:14 +0000666 AvailableCalls.insert(
Chandler Carruth7253bba2015-01-24 11:33:55 +0000667 Inst, std::pair<Value *, unsigned>(Inst, CurrentGeneration));
Chris Lattnerb9a8efc2011-01-03 03:18:43 +0000668 continue;
669 }
Nadav Rotem465834c2012-07-24 10:51:42 +0000670
Philip Reamesdfd890d2015-08-27 01:32:33 +0000671 // A release fence requires that all stores complete before it, but does
672 // not prevent the reordering of following loads 'before' the fence. As a
673 // result, we don't need to consider it as writing to memory and don't need
674 // to advance the generation. We do need to prevent DSE across the fence,
675 // but that's handled above.
676 if (FenceInst *FI = dyn_cast<FenceInst>(Inst))
JF Bastien800f87a2016-04-06 21:19:33 +0000677 if (FI->getOrdering() == AtomicOrdering::Release) {
Philip Reamesdfd890d2015-08-27 01:32:33 +0000678 assert(Inst->mayReadFromMemory() && "relied on to prevent DSE above");
679 continue;
680 }
681
Philip Reamesae1f265b2015-12-16 01:01:30 +0000682 // write back DSE - If we write back the same value we just loaded from
683 // the same location and haven't passed any intervening writes or ordering
684 // operations, we can remove the write. The primary benefit is in allowing
685 // the available load table to remain valid and value forward past where
686 // the store originally was.
687 if (MemInst.isValid() && MemInst.isStore()) {
688 LoadValue InVal = AvailableLoads.lookup(MemInst.getPointerOperand());
689 if (InVal.Data &&
690 InVal.Data == getOrCreateResult(Inst, InVal.Data->getType()) &&
691 InVal.Generation == CurrentGeneration &&
692 InVal.MatchingId == MemInst.getMatchingId() &&
693 // We don't yet handle removing stores with ordering of any kind.
694 !MemInst.isVolatile() && MemInst.isUnordered()) {
695 assert((!LastStore ||
696 ParseMemoryInst(LastStore, TTI).getPointerOperand() ==
697 MemInst.getPointerOperand()) &&
698 "can't have an intervening store!");
699 DEBUG(dbgs() << "EarlyCSE DSE (writeback): " << *Inst << '\n');
700 Inst->eraseFromParent();
701 Changed = true;
702 ++NumDSE;
703 // We can avoid incrementing the generation count since we were able
704 // to eliminate this store.
705 continue;
706 }
707 }
708
Chris Lattnerb9a8efc2011-01-03 03:18:43 +0000709 // Okay, this isn't something we can CSE at all. Check to see if it is
710 // something that could modify memory. If so, our available memory values
711 // cannot be used so bump the generation count.
Chris Lattnere0e32a92011-01-03 03:46:34 +0000712 if (Inst->mayWriteToMemory()) {
Chris Lattnerb9a8efc2011-01-03 03:18:43 +0000713 ++CurrentGeneration;
Nadav Rotem465834c2012-07-24 10:51:42 +0000714
Chad Rosierf9327d62015-01-26 22:51:15 +0000715 if (MemInst.isValid() && MemInst.isStore()) {
Chris Lattner9e5e9ed2011-01-03 04:17:24 +0000716 // We do a trivial form of DSE if there are two stores to the same
Philip Reames15145fb2015-12-17 18:50:50 +0000717 // location with no intervening loads. Delete the earlier store.
718 // At the moment, we don't remove ordered stores, but do remove
719 // unordered atomic stores. There's no special requirement (for
720 // unordered atomics) about removing atomic stores only in favor of
721 // other atomic stores since we we're going to execute the non-atomic
722 // one anyway and the atomic one might never have become visible.
Chad Rosierf9327d62015-01-26 22:51:15 +0000723 if (LastStore) {
724 ParseMemoryInst LastStoreMemInst(LastStore, TTI);
Philip Reames15145fb2015-12-17 18:50:50 +0000725 assert(LastStoreMemInst.isUnordered() &&
726 !LastStoreMemInst.isVolatile() &&
727 "Violated invariant");
Chad Rosierf9327d62015-01-26 22:51:15 +0000728 if (LastStoreMemInst.isMatchingMemLoc(MemInst)) {
729 DEBUG(dbgs() << "EarlyCSE DEAD STORE: " << *LastStore
730 << " due to: " << *Inst << '\n');
731 LastStore->eraseFromParent();
732 Changed = true;
733 ++NumDSE;
734 LastStore = nullptr;
735 }
Philip Reames018dbf12014-11-18 17:46:32 +0000736 // fallthrough - we can exploit information about this store
Chris Lattner9e5e9ed2011-01-03 04:17:24 +0000737 }
Nadav Rotem465834c2012-07-24 10:51:42 +0000738
Chris Lattner9e5e9ed2011-01-03 04:17:24 +0000739 // Okay, we just invalidated anything we knew about loaded values. Try
740 // to salvage *something* by remembering that the stored value is a live
741 // version of the pointer. It is safe to forward from volatile stores
742 // to non-volatile loads, so we don't have to check for volatility of
743 // the store.
Arnaud A. de Grandmaisona6178a12015-10-07 07:41:29 +0000744 AvailableLoads.insert(
Philip Reames9e5e2d62015-12-07 22:41:23 +0000745 MemInst.getPointerOperand(),
Philip Reames8fc2cbf2015-12-08 21:45:41 +0000746 LoadValue(Inst, CurrentGeneration, MemInst.getMatchingId(),
747 MemInst.isAtomic()));
Nadav Rotem465834c2012-07-24 10:51:42 +0000748
Philip Reames15145fb2015-12-17 18:50:50 +0000749 // Remember that this was the last unordered store we saw for DSE. We
750 // don't yet handle DSE on ordered or volatile stores since we don't
751 // have a good way to model the ordering requirement for following
752 // passes once the store is removed. We could insert a fence, but
753 // since fences are slightly stronger than stores in their ordering,
754 // it's not clear this is a profitable transform. Another option would
755 // be to merge the ordering with that of the post dominating store.
756 if (MemInst.isUnordered() && !MemInst.isVolatile())
Chad Rosierf9327d62015-01-26 22:51:15 +0000757 LastStore = Inst;
Philip Reames8fc2cbf2015-12-08 21:45:41 +0000758 else
759 LastStore = nullptr;
Chris Lattnere0e32a92011-01-03 03:46:34 +0000760 }
761 }
Chris Lattner18ae5432011-01-02 23:04:14 +0000762 }
Lenny Maiorani8d670b82012-01-31 23:14:41 +0000763
Chris Lattner18ae5432011-01-02 23:04:14 +0000764 return Changed;
Chris Lattner704541b2011-01-02 21:47:05 +0000765}
Chris Lattner18ae5432011-01-02 23:04:14 +0000766
Chandler Carruthd649c0a2015-01-27 01:34:14 +0000767bool EarlyCSE::run() {
Chandler Carruth7253bba2015-01-24 11:33:55 +0000768 // Note, deque is being used here because there is significant performance
769 // gains over vector when the container becomes very large due to the
770 // specific access patterns. For more information see the mailing list
771 // discussion on this:
Tanya Lattner0d28f802015-08-05 03:51:17 +0000772 // http://lists.llvm.org/pipermail/llvm-commits/Week-of-Mon-20120116/135228.html
Lenny Maiorani9eefc812014-09-20 13:29:20 +0000773 std::deque<StackNode *> nodesToProcess;
Lenny Maiorani8d670b82012-01-31 23:14:41 +0000774
Lenny Maiorani8d670b82012-01-31 23:14:41 +0000775 bool Changed = false;
776
777 // Process the root node.
Chandler Carruth7253bba2015-01-24 11:33:55 +0000778 nodesToProcess.push_back(new StackNode(
779 AvailableValues, AvailableLoads, AvailableCalls, CurrentGeneration,
Chandler Carruthd649c0a2015-01-27 01:34:14 +0000780 DT.getRootNode(), DT.getRootNode()->begin(), DT.getRootNode()->end()));
Lenny Maiorani8d670b82012-01-31 23:14:41 +0000781
782 // Save the current generation.
783 unsigned LiveOutGeneration = CurrentGeneration;
784
785 // Process the stack.
786 while (!nodesToProcess.empty()) {
787 // Grab the first item off the stack. Set the current generation, remove
788 // the node from the stack, and process it.
Michael Gottesman2bf01732013-12-05 18:42:12 +0000789 StackNode *NodeToProcess = nodesToProcess.back();
Lenny Maiorani8d670b82012-01-31 23:14:41 +0000790
791 // Initialize class members.
792 CurrentGeneration = NodeToProcess->currentGeneration();
793
794 // Check if the node needs to be processed.
795 if (!NodeToProcess->isProcessed()) {
796 // Process the node.
797 Changed |= processNode(NodeToProcess->node());
798 NodeToProcess->childGeneration(CurrentGeneration);
799 NodeToProcess->process();
800 } else if (NodeToProcess->childIter() != NodeToProcess->end()) {
801 // Push the next child onto the stack.
802 DomTreeNode *child = NodeToProcess->nextChild();
Michael Gottesman2bf01732013-12-05 18:42:12 +0000803 nodesToProcess.push_back(
Chandler Carruth7253bba2015-01-24 11:33:55 +0000804 new StackNode(AvailableValues, AvailableLoads, AvailableCalls,
805 NodeToProcess->childGeneration(), child, child->begin(),
806 child->end()));
Lenny Maiorani8d670b82012-01-31 23:14:41 +0000807 } else {
808 // It has been processed, and there are no more children to process,
809 // so delete it and pop it off the stack.
810 delete NodeToProcess;
Michael Gottesman2bf01732013-12-05 18:42:12 +0000811 nodesToProcess.pop_back();
Lenny Maiorani8d670b82012-01-31 23:14:41 +0000812 }
813 } // while (!nodes...)
814
815 // Reset the current generation.
816 CurrentGeneration = LiveOutGeneration;
817
818 return Changed;
Chris Lattner18ae5432011-01-02 23:04:14 +0000819}
Chandler Carruthd649c0a2015-01-27 01:34:14 +0000820
Chandler Carruthe8c686a2015-02-01 10:51:23 +0000821PreservedAnalyses EarlyCSEPass::run(Function &F,
Chandler Carruthb47f8012016-03-11 11:05:24 +0000822 AnalysisManager<Function> &AM) {
Andrew Kaylorf0f27922016-04-21 17:58:54 +0000823 if (skipPassForFunction(name(), F))
824 return PreservedAnalyses::all();
825
Chandler Carruthb47f8012016-03-11 11:05:24 +0000826 auto &TLI = AM.getResult<TargetLibraryAnalysis>(F);
827 auto &TTI = AM.getResult<TargetIRAnalysis>(F);
828 auto &DT = AM.getResult<DominatorTreeAnalysis>(F);
829 auto &AC = AM.getResult<AssumptionAnalysis>(F);
Chandler Carruthe8c686a2015-02-01 10:51:23 +0000830
Benjamin Kramer6db33382015-10-15 15:08:58 +0000831 EarlyCSE CSE(TLI, TTI, DT, AC);
Chandler Carruthe8c686a2015-02-01 10:51:23 +0000832
833 if (!CSE.run())
834 return PreservedAnalyses::all();
835
836 // CSE preserves the dominator tree because it doesn't mutate the CFG.
837 // FIXME: Bundle this with other CFG-preservation.
838 PreservedAnalyses PA;
839 PA.preserve<DominatorTreeAnalysis>();
840 return PA;
841}
842
Chandler Carruthd649c0a2015-01-27 01:34:14 +0000843namespace {
844/// \brief A simple and fast domtree-based CSE pass.
845///
846/// This pass does a simple depth-first walk over the dominator tree,
847/// eliminating trivially redundant instructions and using instsimplify to
848/// canonicalize things as it goes. It is intended to be fast and catch obvious
849/// cases so that instcombine and other passes are more effective. It is
850/// expected that a later pass of GVN will catch the interesting/hard cases.
851class EarlyCSELegacyPass : public FunctionPass {
852public:
853 static char ID;
854
855 EarlyCSELegacyPass() : FunctionPass(ID) {
856 initializeEarlyCSELegacyPassPass(*PassRegistry::getPassRegistry());
857 }
858
859 bool runOnFunction(Function &F) override {
Andrew Kaylorf0f27922016-04-21 17:58:54 +0000860 if (skipFunction(F))
Chandler Carruthd649c0a2015-01-27 01:34:14 +0000861 return false;
862
Chandler Carruthd649c0a2015-01-27 01:34:14 +0000863 auto &TLI = getAnalysis<TargetLibraryInfoWrapperPass>().getTLI();
Chandler Carruthfdb9c572015-02-01 12:01:35 +0000864 auto &TTI = getAnalysis<TargetTransformInfoWrapperPass>().getTTI(F);
Chandler Carruthd649c0a2015-01-27 01:34:14 +0000865 auto &DT = getAnalysis<DominatorTreeWrapperPass>().getDomTree();
866 auto &AC = getAnalysis<AssumptionCacheTracker>().getAssumptionCache(F);
867
Benjamin Kramer6db33382015-10-15 15:08:58 +0000868 EarlyCSE CSE(TLI, TTI, DT, AC);
Chandler Carruthd649c0a2015-01-27 01:34:14 +0000869
870 return CSE.run();
871 }
872
873 void getAnalysisUsage(AnalysisUsage &AU) const override {
874 AU.addRequired<AssumptionCacheTracker>();
875 AU.addRequired<DominatorTreeWrapperPass>();
876 AU.addRequired<TargetLibraryInfoWrapperPass>();
Chandler Carruth705b1852015-01-31 03:43:40 +0000877 AU.addRequired<TargetTransformInfoWrapperPass>();
James Molloyefbba722015-09-10 10:22:12 +0000878 AU.addPreserved<GlobalsAAWrapperPass>();
Chandler Carruthd649c0a2015-01-27 01:34:14 +0000879 AU.setPreservesCFG();
880 }
881};
Alexander Kornienkof00654e2015-06-23 09:49:53 +0000882}
Chandler Carruthd649c0a2015-01-27 01:34:14 +0000883
884char EarlyCSELegacyPass::ID = 0;
885
886FunctionPass *llvm::createEarlyCSEPass() { return new EarlyCSELegacyPass(); }
887
888INITIALIZE_PASS_BEGIN(EarlyCSELegacyPass, "early-cse", "Early CSE", false,
889 false)
Chandler Carruth705b1852015-01-31 03:43:40 +0000890INITIALIZE_PASS_DEPENDENCY(TargetTransformInfoWrapperPass)
Chandler Carruthd649c0a2015-01-27 01:34:14 +0000891INITIALIZE_PASS_DEPENDENCY(AssumptionCacheTracker)
892INITIALIZE_PASS_DEPENDENCY(DominatorTreeWrapperPass)
893INITIALIZE_PASS_DEPENDENCY(TargetLibraryInfoWrapperPass)
894INITIALIZE_PASS_END(EarlyCSELegacyPass, "early-cse", "Early CSE", false, false)