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Chris Lattner159b98f2008-12-05 07:49:08 +00001//===- GVN.cpp - Eliminate redundant values and loads ---------------------===//
Owen Anderson85c40642007-07-24 17:55:58 +00002//
3// The LLVM Compiler Infrastructure
4//
Chris Lattner081ce942007-12-29 20:36:04 +00005// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
Owen Anderson85c40642007-07-24 17:55:58 +00007//
8//===----------------------------------------------------------------------===//
9//
10// This pass performs global value numbering to eliminate fully redundant
11// instructions. It also performs simple dead load elimination.
12//
John Criswell6e0aa282009-03-10 15:04:53 +000013// Note that this pass does the value numbering itself; it does not use the
Matthijs Kooijman9aac1db2008-06-05 07:55:49 +000014// ValueNumbering analysis passes.
15//
Owen Anderson85c40642007-07-24 17:55:58 +000016//===----------------------------------------------------------------------===//
17
18#define DEBUG_TYPE "gvn"
Owen Anderson85c40642007-07-24 17:55:58 +000019#include "llvm/Transforms/Scalar.h"
Owen Anderson5d72a422007-07-25 19:57:03 +000020#include "llvm/BasicBlock.h"
Owen Andersonacfa3ad2007-07-26 18:26:51 +000021#include "llvm/Constants.h"
Owen Anderson85c40642007-07-24 17:55:58 +000022#include "llvm/DerivedTypes.h"
Owen Andersonacfa3ad2007-07-26 18:26:51 +000023#include "llvm/Function.h"
Devang Patela7379552009-03-06 02:59:27 +000024#include "llvm/IntrinsicInst.h"
Owen Anderson24be4c12009-07-03 00:17:18 +000025#include "llvm/LLVMContext.h"
Chris Lattner0907b522009-09-21 05:57:11 +000026#include "llvm/Operator.h"
Owen Andersonacfa3ad2007-07-26 18:26:51 +000027#include "llvm/Value.h"
Owen Anderson85c40642007-07-24 17:55:58 +000028#include "llvm/ADT/DenseMap.h"
29#include "llvm/ADT/DepthFirstIterator.h"
Owen Andersona03e7862008-12-15 02:03:00 +000030#include "llvm/ADT/PostOrderIterator.h"
Owen Anderson85c40642007-07-24 17:55:58 +000031#include "llvm/ADT/SmallPtrSet.h"
32#include "llvm/ADT/SmallVector.h"
33#include "llvm/ADT/Statistic.h"
Owen Anderson5e9366f2007-10-18 19:39:33 +000034#include "llvm/Analysis/AliasAnalysis.h"
Chris Lattner4bb632f2009-12-06 05:29:56 +000035#include "llvm/Analysis/ConstantFolding.h"
36#include "llvm/Analysis/Dominators.h"
Victor Hernandez28f4d2f2009-10-27 20:05:49 +000037#include "llvm/Analysis/MemoryBuiltins.h"
Owen Anderson85c40642007-07-24 17:55:58 +000038#include "llvm/Analysis/MemoryDependenceAnalysis.h"
Chris Lattnerefff3222009-12-09 01:59:31 +000039#include "llvm/Analysis/PHITransAddr.h"
Owen Anderson85c40642007-07-24 17:55:58 +000040#include "llvm/Support/CFG.h"
Owen Andersona2bf7662008-06-19 19:57:25 +000041#include "llvm/Support/CommandLine.h"
Chris Lattner9c5be3c2008-03-29 04:36:18 +000042#include "llvm/Support/Debug.h"
Edwin Török675d5622009-07-11 20:10:48 +000043#include "llvm/Support/ErrorHandling.h"
Chris Lattner0907b522009-09-21 05:57:11 +000044#include "llvm/Support/GetElementPtrTypeIterator.h"
Chris Lattnercb00f732009-12-06 01:57:02 +000045#include "llvm/Support/IRBuilder.h"
Daniel Dunbar005975c2009-07-25 00:23:56 +000046#include "llvm/Support/raw_ostream.h"
Chris Lattner7741aa52009-09-20 19:03:47 +000047#include "llvm/Target/TargetData.h"
Owen Andersonec747c42008-06-19 19:54:19 +000048#include "llvm/Transforms/Utils/BasicBlockUtils.h"
Dale Johannesena19b67f2009-06-17 20:48:23 +000049#include "llvm/Transforms/Utils/Local.h"
Chris Lattner6e5ea272009-10-10 23:50:30 +000050#include "llvm/Transforms/Utils/SSAUpdater.h"
Duncan Sands05f68372008-10-08 07:23:46 +000051#include <cstdio>
Owen Anderson85c40642007-07-24 17:55:58 +000052using namespace llvm;
53
Bill Wendling3858cae2008-12-22 22:14:07 +000054STATISTIC(NumGVNInstr, "Number of instructions deleted");
55STATISTIC(NumGVNLoad, "Number of loads deleted");
56STATISTIC(NumGVNPRE, "Number of instructions PRE'd");
Owen Anderson7558f202008-07-15 16:28:06 +000057STATISTIC(NumGVNBlocks, "Number of blocks merged");
Bill Wendling3858cae2008-12-22 22:14:07 +000058STATISTIC(NumPRELoad, "Number of loads PRE'd");
Chris Lattner1be83222008-03-22 04:13:49 +000059
Evan Cheng019a2e12008-06-20 01:01:07 +000060static cl::opt<bool> EnablePRE("enable-pre",
Owen Anderson3a053612008-07-17 19:41:00 +000061 cl::init(true), cl::Hidden);
Dan Gohman828f89f2009-06-15 18:30:15 +000062static cl::opt<bool> EnableLoadPRE("enable-load-pre", cl::init(true));
Owen Andersona2bf7662008-06-19 19:57:25 +000063
Owen Anderson85c40642007-07-24 17:55:58 +000064//===----------------------------------------------------------------------===//
65// ValueTable Class
66//===----------------------------------------------------------------------===//
67
68/// This class holds the mapping between values and value numbers. It is used
69/// as an efficient mechanism to determine the expression-wise equivalence of
70/// two values.
71namespace {
Chris Lattnerfa2d1ba2009-09-02 06:11:42 +000072 struct Expression {
Dan Gohman7ce405e2009-06-04 22:49:04 +000073 enum ExpressionOpcode { ADD, FADD, SUB, FSUB, MUL, FMUL,
74 UDIV, SDIV, FDIV, UREM, SREM,
Daniel Dunbar3be44e62009-09-20 02:20:51 +000075 FREM, SHL, LSHR, ASHR, AND, OR, XOR, ICMPEQ,
76 ICMPNE, ICMPUGT, ICMPUGE, ICMPULT, ICMPULE,
77 ICMPSGT, ICMPSGE, ICMPSLT, ICMPSLE, FCMPOEQ,
78 FCMPOGT, FCMPOGE, FCMPOLT, FCMPOLE, FCMPONE,
79 FCMPORD, FCMPUNO, FCMPUEQ, FCMPUGT, FCMPUGE,
Owen Anderson85c40642007-07-24 17:55:58 +000080 FCMPULT, FCMPULE, FCMPUNE, EXTRACT, INSERT,
81 SHUFFLE, SELECT, TRUNC, ZEXT, SEXT, FPTOUI,
Daniel Dunbar3be44e62009-09-20 02:20:51 +000082 FPTOSI, UITOFP, SITOFP, FPTRUNC, FPEXT,
Owen Anderson771d1122008-05-13 08:17:22 +000083 PTRTOINT, INTTOPTR, BITCAST, GEP, CALL, CONSTANT,
Owen Andersona7d4c7c2009-10-19 22:14:22 +000084 INSERTVALUE, EXTRACTVALUE, EMPTY, TOMBSTONE };
Owen Anderson85c40642007-07-24 17:55:58 +000085
86 ExpressionOpcode opcode;
87 const Type* type;
Owen Anderson85c40642007-07-24 17:55:58 +000088 SmallVector<uint32_t, 4> varargs;
Chris Lattnerff36c952009-09-21 02:42:51 +000089 Value *function;
Daniel Dunbar3be44e62009-09-20 02:20:51 +000090
Owen Anderson85c40642007-07-24 17:55:58 +000091 Expression() { }
92 Expression(ExpressionOpcode o) : opcode(o) { }
Daniel Dunbar3be44e62009-09-20 02:20:51 +000093
Owen Anderson85c40642007-07-24 17:55:58 +000094 bool operator==(const Expression &other) const {
95 if (opcode != other.opcode)
96 return false;
97 else if (opcode == EMPTY || opcode == TOMBSTONE)
98 return true;
99 else if (type != other.type)
100 return false;
Owen Anderson5e9366f2007-10-18 19:39:33 +0000101 else if (function != other.function)
102 return false;
Owen Anderson85c40642007-07-24 17:55:58 +0000103 else {
104 if (varargs.size() != other.varargs.size())
105 return false;
Daniel Dunbar3be44e62009-09-20 02:20:51 +0000106
Owen Anderson85c40642007-07-24 17:55:58 +0000107 for (size_t i = 0; i < varargs.size(); ++i)
108 if (varargs[i] != other.varargs[i])
109 return false;
Daniel Dunbar3be44e62009-09-20 02:20:51 +0000110
Owen Anderson85c40642007-07-24 17:55:58 +0000111 return true;
112 }
113 }
Daniel Dunbar3be44e62009-09-20 02:20:51 +0000114
Owen Anderson85c40642007-07-24 17:55:58 +0000115 bool operator!=(const Expression &other) const {
Bill Wendling9b5d4b72008-12-22 22:16:31 +0000116 return !(*this == other);
Owen Anderson85c40642007-07-24 17:55:58 +0000117 }
118 };
Daniel Dunbar3be44e62009-09-20 02:20:51 +0000119
Chris Lattnerfa2d1ba2009-09-02 06:11:42 +0000120 class ValueTable {
Owen Anderson85c40642007-07-24 17:55:58 +0000121 private:
122 DenseMap<Value*, uint32_t> valueNumbering;
123 DenseMap<Expression, uint32_t> expressionNumbering;
Owen Andersonbcf2bd52008-05-12 20:15:55 +0000124 AliasAnalysis* AA;
125 MemoryDependenceAnalysis* MD;
126 DominatorTree* DT;
Daniel Dunbar3be44e62009-09-20 02:20:51 +0000127
Owen Anderson85c40642007-07-24 17:55:58 +0000128 uint32_t nextValueNumber;
Daniel Dunbar3be44e62009-09-20 02:20:51 +0000129
Owen Anderson85c40642007-07-24 17:55:58 +0000130 Expression::ExpressionOpcode getOpcode(BinaryOperator* BO);
131 Expression::ExpressionOpcode getOpcode(CmpInst* C);
132 Expression::ExpressionOpcode getOpcode(CastInst* C);
133 Expression create_expression(BinaryOperator* BO);
134 Expression create_expression(CmpInst* C);
135 Expression create_expression(ShuffleVectorInst* V);
136 Expression create_expression(ExtractElementInst* C);
137 Expression create_expression(InsertElementInst* V);
138 Expression create_expression(SelectInst* V);
139 Expression create_expression(CastInst* C);
140 Expression create_expression(GetElementPtrInst* G);
Owen Anderson5e9366f2007-10-18 19:39:33 +0000141 Expression create_expression(CallInst* C);
Owen Anderson771d1122008-05-13 08:17:22 +0000142 Expression create_expression(Constant* C);
Owen Andersona7d4c7c2009-10-19 22:14:22 +0000143 Expression create_expression(ExtractValueInst* C);
144 Expression create_expression(InsertValueInst* C);
145
146 uint32_t lookup_or_add_call(CallInst* C);
Owen Anderson85c40642007-07-24 17:55:58 +0000147 public:
Dan Gohman936a6522009-04-01 16:37:47 +0000148 ValueTable() : nextValueNumber(1) { }
Chris Lattnerff36c952009-09-21 02:42:51 +0000149 uint32_t lookup_or_add(Value *V);
150 uint32_t lookup(Value *V) const;
151 void add(Value *V, uint32_t num);
Owen Anderson85c40642007-07-24 17:55:58 +0000152 void clear();
Chris Lattnerff36c952009-09-21 02:42:51 +0000153 void erase(Value *v);
Owen Anderson85c40642007-07-24 17:55:58 +0000154 unsigned size();
Owen Andersonbcf2bd52008-05-12 20:15:55 +0000155 void setAliasAnalysis(AliasAnalysis* A) { AA = A; }
Chris Lattner02ca4422008-12-01 00:40:32 +0000156 AliasAnalysis *getAliasAnalysis() const { return AA; }
Owen Andersonbcf2bd52008-05-12 20:15:55 +0000157 void setMemDep(MemoryDependenceAnalysis* M) { MD = M; }
158 void setDomTree(DominatorTree* D) { DT = D; }
Owen Anderson8a8d13c2008-07-03 17:44:33 +0000159 uint32_t getNextUnusedValueNumber() { return nextValueNumber; }
Bill Wendling2a023742008-12-22 21:36:08 +0000160 void verifyRemoved(const Value *) const;
Owen Anderson85c40642007-07-24 17:55:58 +0000161 };
162}
163
164namespace llvm {
Chris Lattner92eea072007-09-17 18:34:04 +0000165template <> struct DenseMapInfo<Expression> {
Owen Andersonbf8a3eb2007-08-02 18:16:06 +0000166 static inline Expression getEmptyKey() {
167 return Expression(Expression::EMPTY);
168 }
Daniel Dunbar3be44e62009-09-20 02:20:51 +0000169
Owen Andersonbf8a3eb2007-08-02 18:16:06 +0000170 static inline Expression getTombstoneKey() {
171 return Expression(Expression::TOMBSTONE);
172 }
Daniel Dunbar3be44e62009-09-20 02:20:51 +0000173
Owen Anderson85c40642007-07-24 17:55:58 +0000174 static unsigned getHashValue(const Expression e) {
175 unsigned hash = e.opcode;
Daniel Dunbar3be44e62009-09-20 02:20:51 +0000176
Anton Korobeynikov8522e1c2008-02-20 11:26:25 +0000177 hash = ((unsigned)((uintptr_t)e.type >> 4) ^
Owen Andersona7d4c7c2009-10-19 22:14:22 +0000178 (unsigned)((uintptr_t)e.type >> 9));
Daniel Dunbar3be44e62009-09-20 02:20:51 +0000179
Owen Andersonbf8a3eb2007-08-02 18:16:06 +0000180 for (SmallVector<uint32_t, 4>::const_iterator I = e.varargs.begin(),
181 E = e.varargs.end(); I != E; ++I)
Owen Anderson85c40642007-07-24 17:55:58 +0000182 hash = *I + hash * 37;
Daniel Dunbar3be44e62009-09-20 02:20:51 +0000183
Anton Korobeynikov8522e1c2008-02-20 11:26:25 +0000184 hash = ((unsigned)((uintptr_t)e.function >> 4) ^
185 (unsigned)((uintptr_t)e.function >> 9)) +
186 hash * 37;
Daniel Dunbar3be44e62009-09-20 02:20:51 +0000187
Owen Anderson85c40642007-07-24 17:55:58 +0000188 return hash;
189 }
Chris Lattner92eea072007-09-17 18:34:04 +0000190 static bool isEqual(const Expression &LHS, const Expression &RHS) {
191 return LHS == RHS;
192 }
Owen Anderson85c40642007-07-24 17:55:58 +0000193 static bool isPod() { return true; }
194};
195}
196
197//===----------------------------------------------------------------------===//
198// ValueTable Internal Functions
199//===----------------------------------------------------------------------===//
Chris Lattner3d7103e2008-03-21 21:14:38 +0000200Expression::ExpressionOpcode ValueTable::getOpcode(BinaryOperator* BO) {
Owen Anderson85c40642007-07-24 17:55:58 +0000201 switch(BO->getOpcode()) {
Chris Lattner3d7103e2008-03-21 21:14:38 +0000202 default: // THIS SHOULD NEVER HAPPEN
Edwin Törökbd448e32009-07-14 16:55:14 +0000203 llvm_unreachable("Binary operator with unknown opcode?");
Chris Lattner3d7103e2008-03-21 21:14:38 +0000204 case Instruction::Add: return Expression::ADD;
Dan Gohman7ce405e2009-06-04 22:49:04 +0000205 case Instruction::FAdd: return Expression::FADD;
Chris Lattner3d7103e2008-03-21 21:14:38 +0000206 case Instruction::Sub: return Expression::SUB;
Dan Gohman7ce405e2009-06-04 22:49:04 +0000207 case Instruction::FSub: return Expression::FSUB;
Chris Lattner3d7103e2008-03-21 21:14:38 +0000208 case Instruction::Mul: return Expression::MUL;
Dan Gohman7ce405e2009-06-04 22:49:04 +0000209 case Instruction::FMul: return Expression::FMUL;
Chris Lattner3d7103e2008-03-21 21:14:38 +0000210 case Instruction::UDiv: return Expression::UDIV;
211 case Instruction::SDiv: return Expression::SDIV;
212 case Instruction::FDiv: return Expression::FDIV;
213 case Instruction::URem: return Expression::UREM;
214 case Instruction::SRem: return Expression::SREM;
215 case Instruction::FRem: return Expression::FREM;
216 case Instruction::Shl: return Expression::SHL;
217 case Instruction::LShr: return Expression::LSHR;
218 case Instruction::AShr: return Expression::ASHR;
219 case Instruction::And: return Expression::AND;
220 case Instruction::Or: return Expression::OR;
221 case Instruction::Xor: return Expression::XOR;
Owen Anderson85c40642007-07-24 17:55:58 +0000222 }
223}
224
225Expression::ExpressionOpcode ValueTable::getOpcode(CmpInst* C) {
Nick Lewycky8f5253b2009-07-08 03:04:38 +0000226 if (isa<ICmpInst>(C)) {
Owen Anderson85c40642007-07-24 17:55:58 +0000227 switch (C->getPredicate()) {
Chris Lattner3d7103e2008-03-21 21:14:38 +0000228 default: // THIS SHOULD NEVER HAPPEN
Edwin Törökbd448e32009-07-14 16:55:14 +0000229 llvm_unreachable("Comparison with unknown predicate?");
Chris Lattner3d7103e2008-03-21 21:14:38 +0000230 case ICmpInst::ICMP_EQ: return Expression::ICMPEQ;
231 case ICmpInst::ICMP_NE: return Expression::ICMPNE;
232 case ICmpInst::ICMP_UGT: return Expression::ICMPUGT;
233 case ICmpInst::ICMP_UGE: return Expression::ICMPUGE;
234 case ICmpInst::ICMP_ULT: return Expression::ICMPULT;
235 case ICmpInst::ICMP_ULE: return Expression::ICMPULE;
236 case ICmpInst::ICMP_SGT: return Expression::ICMPSGT;
237 case ICmpInst::ICMP_SGE: return Expression::ICMPSGE;
238 case ICmpInst::ICMP_SLT: return Expression::ICMPSLT;
239 case ICmpInst::ICMP_SLE: return Expression::ICMPSLE;
Owen Anderson85c40642007-07-24 17:55:58 +0000240 }
Nick Lewycky8f5253b2009-07-08 03:04:38 +0000241 } else {
242 switch (C->getPredicate()) {
243 default: // THIS SHOULD NEVER HAPPEN
Edwin Törökbd448e32009-07-14 16:55:14 +0000244 llvm_unreachable("Comparison with unknown predicate?");
Nick Lewycky8f5253b2009-07-08 03:04:38 +0000245 case FCmpInst::FCMP_OEQ: return Expression::FCMPOEQ;
246 case FCmpInst::FCMP_OGT: return Expression::FCMPOGT;
247 case FCmpInst::FCMP_OGE: return Expression::FCMPOGE;
248 case FCmpInst::FCMP_OLT: return Expression::FCMPOLT;
249 case FCmpInst::FCMP_OLE: return Expression::FCMPOLE;
250 case FCmpInst::FCMP_ONE: return Expression::FCMPONE;
251 case FCmpInst::FCMP_ORD: return Expression::FCMPORD;
252 case FCmpInst::FCMP_UNO: return Expression::FCMPUNO;
253 case FCmpInst::FCMP_UEQ: return Expression::FCMPUEQ;
254 case FCmpInst::FCMP_UGT: return Expression::FCMPUGT;
255 case FCmpInst::FCMP_UGE: return Expression::FCMPUGE;
256 case FCmpInst::FCMP_ULT: return Expression::FCMPULT;
257 case FCmpInst::FCMP_ULE: return Expression::FCMPULE;
258 case FCmpInst::FCMP_UNE: return Expression::FCMPUNE;
259 }
Owen Anderson85c40642007-07-24 17:55:58 +0000260 }
261}
262
Chris Lattner3d7103e2008-03-21 21:14:38 +0000263Expression::ExpressionOpcode ValueTable::getOpcode(CastInst* C) {
Owen Anderson85c40642007-07-24 17:55:58 +0000264 switch(C->getOpcode()) {
Chris Lattner3d7103e2008-03-21 21:14:38 +0000265 default: // THIS SHOULD NEVER HAPPEN
Edwin Törökbd448e32009-07-14 16:55:14 +0000266 llvm_unreachable("Cast operator with unknown opcode?");
Chris Lattner3d7103e2008-03-21 21:14:38 +0000267 case Instruction::Trunc: return Expression::TRUNC;
268 case Instruction::ZExt: return Expression::ZEXT;
269 case Instruction::SExt: return Expression::SEXT;
270 case Instruction::FPToUI: return Expression::FPTOUI;
271 case Instruction::FPToSI: return Expression::FPTOSI;
272 case Instruction::UIToFP: return Expression::UITOFP;
273 case Instruction::SIToFP: return Expression::SITOFP;
274 case Instruction::FPTrunc: return Expression::FPTRUNC;
275 case Instruction::FPExt: return Expression::FPEXT;
276 case Instruction::PtrToInt: return Expression::PTRTOINT;
277 case Instruction::IntToPtr: return Expression::INTTOPTR;
278 case Instruction::BitCast: return Expression::BITCAST;
Owen Anderson85c40642007-07-24 17:55:58 +0000279 }
280}
281
Owen Anderson5e9366f2007-10-18 19:39:33 +0000282Expression ValueTable::create_expression(CallInst* C) {
283 Expression e;
Daniel Dunbar3be44e62009-09-20 02:20:51 +0000284
Owen Anderson5e9366f2007-10-18 19:39:33 +0000285 e.type = C->getType();
Owen Anderson5e9366f2007-10-18 19:39:33 +0000286 e.function = C->getCalledFunction();
287 e.opcode = Expression::CALL;
Daniel Dunbar3be44e62009-09-20 02:20:51 +0000288
Owen Anderson5e9366f2007-10-18 19:39:33 +0000289 for (CallInst::op_iterator I = C->op_begin()+1, E = C->op_end();
290 I != E; ++I)
Owen Anderson07f478f2008-04-11 05:11:49 +0000291 e.varargs.push_back(lookup_or_add(*I));
Daniel Dunbar3be44e62009-09-20 02:20:51 +0000292
Owen Anderson5e9366f2007-10-18 19:39:33 +0000293 return e;
294}
295
Owen Anderson85c40642007-07-24 17:55:58 +0000296Expression ValueTable::create_expression(BinaryOperator* BO) {
297 Expression e;
Owen Andersona7d4c7c2009-10-19 22:14:22 +0000298 e.varargs.push_back(lookup_or_add(BO->getOperand(0)));
299 e.varargs.push_back(lookup_or_add(BO->getOperand(1)));
Owen Anderson5e9366f2007-10-18 19:39:33 +0000300 e.function = 0;
Owen Anderson85c40642007-07-24 17:55:58 +0000301 e.type = BO->getType();
302 e.opcode = getOpcode(BO);
Daniel Dunbar3be44e62009-09-20 02:20:51 +0000303
Owen Anderson85c40642007-07-24 17:55:58 +0000304 return e;
305}
306
307Expression ValueTable::create_expression(CmpInst* C) {
308 Expression e;
Daniel Dunbar3be44e62009-09-20 02:20:51 +0000309
Owen Andersona7d4c7c2009-10-19 22:14:22 +0000310 e.varargs.push_back(lookup_or_add(C->getOperand(0)));
311 e.varargs.push_back(lookup_or_add(C->getOperand(1)));
Owen Anderson5e9366f2007-10-18 19:39:33 +0000312 e.function = 0;
Owen Anderson85c40642007-07-24 17:55:58 +0000313 e.type = C->getType();
314 e.opcode = getOpcode(C);
Daniel Dunbar3be44e62009-09-20 02:20:51 +0000315
Owen Anderson85c40642007-07-24 17:55:58 +0000316 return e;
317}
318
319Expression ValueTable::create_expression(CastInst* C) {
320 Expression e;
Daniel Dunbar3be44e62009-09-20 02:20:51 +0000321
Owen Andersona7d4c7c2009-10-19 22:14:22 +0000322 e.varargs.push_back(lookup_or_add(C->getOperand(0)));
Owen Anderson5e9366f2007-10-18 19:39:33 +0000323 e.function = 0;
Owen Anderson85c40642007-07-24 17:55:58 +0000324 e.type = C->getType();
325 e.opcode = getOpcode(C);
Daniel Dunbar3be44e62009-09-20 02:20:51 +0000326
Owen Anderson85c40642007-07-24 17:55:58 +0000327 return e;
328}
329
330Expression ValueTable::create_expression(ShuffleVectorInst* S) {
331 Expression e;
Daniel Dunbar3be44e62009-09-20 02:20:51 +0000332
Owen Andersona7d4c7c2009-10-19 22:14:22 +0000333 e.varargs.push_back(lookup_or_add(S->getOperand(0)));
334 e.varargs.push_back(lookup_or_add(S->getOperand(1)));
335 e.varargs.push_back(lookup_or_add(S->getOperand(2)));
Owen Anderson5e9366f2007-10-18 19:39:33 +0000336 e.function = 0;
Owen Anderson85c40642007-07-24 17:55:58 +0000337 e.type = S->getType();
338 e.opcode = Expression::SHUFFLE;
Daniel Dunbar3be44e62009-09-20 02:20:51 +0000339
Owen Anderson85c40642007-07-24 17:55:58 +0000340 return e;
341}
342
343Expression ValueTable::create_expression(ExtractElementInst* E) {
344 Expression e;
Daniel Dunbar3be44e62009-09-20 02:20:51 +0000345
Owen Andersona7d4c7c2009-10-19 22:14:22 +0000346 e.varargs.push_back(lookup_or_add(E->getOperand(0)));
347 e.varargs.push_back(lookup_or_add(E->getOperand(1)));
Owen Anderson5e9366f2007-10-18 19:39:33 +0000348 e.function = 0;
Owen Anderson85c40642007-07-24 17:55:58 +0000349 e.type = E->getType();
350 e.opcode = Expression::EXTRACT;
Daniel Dunbar3be44e62009-09-20 02:20:51 +0000351
Owen Anderson85c40642007-07-24 17:55:58 +0000352 return e;
353}
354
355Expression ValueTable::create_expression(InsertElementInst* I) {
356 Expression e;
Daniel Dunbar3be44e62009-09-20 02:20:51 +0000357
Owen Andersona7d4c7c2009-10-19 22:14:22 +0000358 e.varargs.push_back(lookup_or_add(I->getOperand(0)));
359 e.varargs.push_back(lookup_or_add(I->getOperand(1)));
360 e.varargs.push_back(lookup_or_add(I->getOperand(2)));
Owen Anderson5e9366f2007-10-18 19:39:33 +0000361 e.function = 0;
Owen Anderson85c40642007-07-24 17:55:58 +0000362 e.type = I->getType();
363 e.opcode = Expression::INSERT;
Daniel Dunbar3be44e62009-09-20 02:20:51 +0000364
Owen Anderson85c40642007-07-24 17:55:58 +0000365 return e;
366}
367
368Expression ValueTable::create_expression(SelectInst* I) {
369 Expression e;
Daniel Dunbar3be44e62009-09-20 02:20:51 +0000370
Owen Andersona7d4c7c2009-10-19 22:14:22 +0000371 e.varargs.push_back(lookup_or_add(I->getCondition()));
372 e.varargs.push_back(lookup_or_add(I->getTrueValue()));
373 e.varargs.push_back(lookup_or_add(I->getFalseValue()));
Owen Anderson5e9366f2007-10-18 19:39:33 +0000374 e.function = 0;
Owen Anderson85c40642007-07-24 17:55:58 +0000375 e.type = I->getType();
376 e.opcode = Expression::SELECT;
Daniel Dunbar3be44e62009-09-20 02:20:51 +0000377
Owen Anderson85c40642007-07-24 17:55:58 +0000378 return e;
379}
380
381Expression ValueTable::create_expression(GetElementPtrInst* G) {
382 Expression e;
Daniel Dunbar3be44e62009-09-20 02:20:51 +0000383
Owen Andersona7d4c7c2009-10-19 22:14:22 +0000384 e.varargs.push_back(lookup_or_add(G->getPointerOperand()));
Owen Anderson5e9366f2007-10-18 19:39:33 +0000385 e.function = 0;
Owen Anderson85c40642007-07-24 17:55:58 +0000386 e.type = G->getType();
387 e.opcode = Expression::GEP;
Daniel Dunbar3be44e62009-09-20 02:20:51 +0000388
Owen Anderson85c40642007-07-24 17:55:58 +0000389 for (GetElementPtrInst::op_iterator I = G->idx_begin(), E = G->idx_end();
390 I != E; ++I)
Owen Anderson07f478f2008-04-11 05:11:49 +0000391 e.varargs.push_back(lookup_or_add(*I));
Daniel Dunbar3be44e62009-09-20 02:20:51 +0000392
Owen Anderson85c40642007-07-24 17:55:58 +0000393 return e;
394}
395
Owen Andersona7d4c7c2009-10-19 22:14:22 +0000396Expression ValueTable::create_expression(ExtractValueInst* E) {
397 Expression e;
398
399 e.varargs.push_back(lookup_or_add(E->getAggregateOperand()));
400 for (ExtractValueInst::idx_iterator II = E->idx_begin(), IE = E->idx_end();
401 II != IE; ++II)
402 e.varargs.push_back(*II);
403 e.function = 0;
404 e.type = E->getType();
405 e.opcode = Expression::EXTRACTVALUE;
406
407 return e;
408}
409
410Expression ValueTable::create_expression(InsertValueInst* E) {
411 Expression e;
412
413 e.varargs.push_back(lookup_or_add(E->getAggregateOperand()));
414 e.varargs.push_back(lookup_or_add(E->getInsertedValueOperand()));
415 for (InsertValueInst::idx_iterator II = E->idx_begin(), IE = E->idx_end();
416 II != IE; ++II)
417 e.varargs.push_back(*II);
418 e.function = 0;
419 e.type = E->getType();
420 e.opcode = Expression::INSERTVALUE;
421
422 return e;
423}
424
Owen Anderson85c40642007-07-24 17:55:58 +0000425//===----------------------------------------------------------------------===//
426// ValueTable External Functions
427//===----------------------------------------------------------------------===//
428
Owen Andersone6b4ff82008-06-18 21:41:49 +0000429/// add - Insert a value into the table with a specified value number.
Chris Lattnerff36c952009-09-21 02:42:51 +0000430void ValueTable::add(Value *V, uint32_t num) {
Owen Andersone6b4ff82008-06-18 21:41:49 +0000431 valueNumbering.insert(std::make_pair(V, num));
432}
433
Owen Andersona7d4c7c2009-10-19 22:14:22 +0000434uint32_t ValueTable::lookup_or_add_call(CallInst* C) {
435 if (AA->doesNotAccessMemory(C)) {
436 Expression exp = create_expression(C);
437 uint32_t& e = expressionNumbering[exp];
438 if (!e) e = nextValueNumber++;
439 valueNumbering[C] = e;
440 return e;
441 } else if (AA->onlyReadsMemory(C)) {
442 Expression exp = create_expression(C);
443 uint32_t& e = expressionNumbering[exp];
444 if (!e) {
445 e = nextValueNumber++;
446 valueNumbering[C] = e;
447 return e;
448 }
Dan Gohmanc8d26652009-11-14 02:27:51 +0000449 if (!MD) {
450 e = nextValueNumber++;
451 valueNumbering[C] = e;
452 return e;
453 }
Owen Andersona7d4c7c2009-10-19 22:14:22 +0000454
455 MemDepResult local_dep = MD->getDependency(C);
456
457 if (!local_dep.isDef() && !local_dep.isNonLocal()) {
458 valueNumbering[C] = nextValueNumber;
459 return nextValueNumber++;
460 }
461
462 if (local_dep.isDef()) {
463 CallInst* local_cdep = cast<CallInst>(local_dep.getInst());
464
465 if (local_cdep->getNumOperands() != C->getNumOperands()) {
466 valueNumbering[C] = nextValueNumber;
467 return nextValueNumber++;
468 }
469
470 for (unsigned i = 1; i < C->getNumOperands(); ++i) {
471 uint32_t c_vn = lookup_or_add(C->getOperand(i));
472 uint32_t cd_vn = lookup_or_add(local_cdep->getOperand(i));
473 if (c_vn != cd_vn) {
474 valueNumbering[C] = nextValueNumber;
475 return nextValueNumber++;
476 }
477 }
478
479 uint32_t v = lookup_or_add(local_cdep);
480 valueNumbering[C] = v;
481 return v;
482 }
483
484 // Non-local case.
485 const MemoryDependenceAnalysis::NonLocalDepInfo &deps =
486 MD->getNonLocalCallDependency(CallSite(C));
487 // FIXME: call/call dependencies for readonly calls should return def, not
488 // clobber! Move the checking logic to MemDep!
489 CallInst* cdep = 0;
490
491 // Check to see if we have a single dominating call instruction that is
492 // identical to C.
493 for (unsigned i = 0, e = deps.size(); i != e; ++i) {
Chris Lattner1a957962009-12-09 07:08:01 +0000494 const NonLocalDepEntry *I = &deps[i];
Owen Andersona7d4c7c2009-10-19 22:14:22 +0000495 // Ignore non-local dependencies.
Chris Lattner1a957962009-12-09 07:08:01 +0000496 if (I->getResult().isNonLocal())
Owen Andersona7d4c7c2009-10-19 22:14:22 +0000497 continue;
498
499 // We don't handle non-depedencies. If we already have a call, reject
500 // instruction dependencies.
Chris Lattner1a957962009-12-09 07:08:01 +0000501 if (I->getResult().isClobber() || cdep != 0) {
Owen Andersona7d4c7c2009-10-19 22:14:22 +0000502 cdep = 0;
503 break;
504 }
505
Chris Lattner1a957962009-12-09 07:08:01 +0000506 CallInst *NonLocalDepCall = dyn_cast<CallInst>(I->getResult().getInst());
Owen Andersona7d4c7c2009-10-19 22:14:22 +0000507 // FIXME: All duplicated with non-local case.
Chris Lattner1a957962009-12-09 07:08:01 +0000508 if (NonLocalDepCall && DT->properlyDominates(I->getBB(), C->getParent())){
Owen Andersona7d4c7c2009-10-19 22:14:22 +0000509 cdep = NonLocalDepCall;
510 continue;
511 }
512
513 cdep = 0;
514 break;
515 }
516
517 if (!cdep) {
518 valueNumbering[C] = nextValueNumber;
519 return nextValueNumber++;
520 }
521
522 if (cdep->getNumOperands() != C->getNumOperands()) {
523 valueNumbering[C] = nextValueNumber;
524 return nextValueNumber++;
525 }
526 for (unsigned i = 1; i < C->getNumOperands(); ++i) {
527 uint32_t c_vn = lookup_or_add(C->getOperand(i));
528 uint32_t cd_vn = lookup_or_add(cdep->getOperand(i));
529 if (c_vn != cd_vn) {
530 valueNumbering[C] = nextValueNumber;
531 return nextValueNumber++;
532 }
533 }
534
535 uint32_t v = lookup_or_add(cdep);
536 valueNumbering[C] = v;
537 return v;
538
539 } else {
540 valueNumbering[C] = nextValueNumber;
541 return nextValueNumber++;
542 }
543}
544
Owen Anderson85c40642007-07-24 17:55:58 +0000545/// lookup_or_add - Returns the value number for the specified value, assigning
546/// it a new number if it did not have one before.
Chris Lattnerff36c952009-09-21 02:42:51 +0000547uint32_t ValueTable::lookup_or_add(Value *V) {
Owen Anderson85c40642007-07-24 17:55:58 +0000548 DenseMap<Value*, uint32_t>::iterator VI = valueNumbering.find(V);
549 if (VI != valueNumbering.end())
550 return VI->second;
Daniel Dunbar3be44e62009-09-20 02:20:51 +0000551
Owen Andersona7d4c7c2009-10-19 22:14:22 +0000552 if (!isa<Instruction>(V)) {
Owen Andersonb472cd82009-10-19 21:14:57 +0000553 valueNumbering[V] = nextValueNumber;
Owen Anderson85c40642007-07-24 17:55:58 +0000554 return nextValueNumber++;
555 }
Owen Andersona7d4c7c2009-10-19 22:14:22 +0000556
557 Instruction* I = cast<Instruction>(V);
558 Expression exp;
559 switch (I->getOpcode()) {
560 case Instruction::Call:
561 return lookup_or_add_call(cast<CallInst>(I));
562 case Instruction::Add:
563 case Instruction::FAdd:
564 case Instruction::Sub:
565 case Instruction::FSub:
566 case Instruction::Mul:
567 case Instruction::FMul:
568 case Instruction::UDiv:
569 case Instruction::SDiv:
570 case Instruction::FDiv:
571 case Instruction::URem:
572 case Instruction::SRem:
573 case Instruction::FRem:
574 case Instruction::Shl:
575 case Instruction::LShr:
576 case Instruction::AShr:
577 case Instruction::And:
578 case Instruction::Or :
579 case Instruction::Xor:
580 exp = create_expression(cast<BinaryOperator>(I));
581 break;
582 case Instruction::ICmp:
583 case Instruction::FCmp:
584 exp = create_expression(cast<CmpInst>(I));
585 break;
586 case Instruction::Trunc:
587 case Instruction::ZExt:
588 case Instruction::SExt:
589 case Instruction::FPToUI:
590 case Instruction::FPToSI:
591 case Instruction::UIToFP:
592 case Instruction::SIToFP:
593 case Instruction::FPTrunc:
594 case Instruction::FPExt:
595 case Instruction::PtrToInt:
596 case Instruction::IntToPtr:
597 case Instruction::BitCast:
598 exp = create_expression(cast<CastInst>(I));
599 break;
600 case Instruction::Select:
601 exp = create_expression(cast<SelectInst>(I));
602 break;
603 case Instruction::ExtractElement:
604 exp = create_expression(cast<ExtractElementInst>(I));
605 break;
606 case Instruction::InsertElement:
607 exp = create_expression(cast<InsertElementInst>(I));
608 break;
609 case Instruction::ShuffleVector:
610 exp = create_expression(cast<ShuffleVectorInst>(I));
611 break;
612 case Instruction::ExtractValue:
613 exp = create_expression(cast<ExtractValueInst>(I));
614 break;
615 case Instruction::InsertValue:
616 exp = create_expression(cast<InsertValueInst>(I));
617 break;
618 case Instruction::GetElementPtr:
619 exp = create_expression(cast<GetElementPtrInst>(I));
620 break;
621 default:
622 valueNumbering[V] = nextValueNumber;
623 return nextValueNumber++;
624 }
625
626 uint32_t& e = expressionNumbering[exp];
627 if (!e) e = nextValueNumber++;
628 valueNumbering[V] = e;
629 return e;
Owen Anderson85c40642007-07-24 17:55:58 +0000630}
631
632/// lookup - Returns the value number of the specified value. Fails if
633/// the value has not yet been numbered.
Chris Lattnerff36c952009-09-21 02:42:51 +0000634uint32_t ValueTable::lookup(Value *V) const {
Jeffrey Yasskin8154d2e2009-11-10 01:02:17 +0000635 DenseMap<Value*, uint32_t>::const_iterator VI = valueNumbering.find(V);
Chris Lattner3d7103e2008-03-21 21:14:38 +0000636 assert(VI != valueNumbering.end() && "Value not numbered?");
637 return VI->second;
Owen Anderson85c40642007-07-24 17:55:58 +0000638}
639
640/// clear - Remove all entries from the ValueTable
641void ValueTable::clear() {
642 valueNumbering.clear();
643 expressionNumbering.clear();
644 nextValueNumber = 1;
645}
646
Owen Anderson5aff8002007-07-31 23:27:13 +0000647/// erase - Remove a value from the value numbering
Chris Lattnerff36c952009-09-21 02:42:51 +0000648void ValueTable::erase(Value *V) {
Owen Anderson5aff8002007-07-31 23:27:13 +0000649 valueNumbering.erase(V);
650}
651
Bill Wendling2a023742008-12-22 21:36:08 +0000652/// verifyRemoved - Verify that the value is removed from all internal data
653/// structures.
654void ValueTable::verifyRemoved(const Value *V) const {
Jeffrey Yasskin8154d2e2009-11-10 01:02:17 +0000655 for (DenseMap<Value*, uint32_t>::const_iterator
Bill Wendling2a023742008-12-22 21:36:08 +0000656 I = valueNumbering.begin(), E = valueNumbering.end(); I != E; ++I) {
657 assert(I->first != V && "Inst still occurs in value numbering map!");
658 }
659}
660
Owen Anderson85c40642007-07-24 17:55:58 +0000661//===----------------------------------------------------------------------===//
Bill Wendling42f17f62008-12-22 22:32:22 +0000662// GVN Pass
Owen Anderson85c40642007-07-24 17:55:58 +0000663//===----------------------------------------------------------------------===//
664
665namespace {
Chris Lattnerfa2d1ba2009-09-02 06:11:42 +0000666 struct ValueNumberScope {
Owen Anderson2a412722008-06-20 01:15:47 +0000667 ValueNumberScope* parent;
668 DenseMap<uint32_t, Value*> table;
Daniel Dunbar3be44e62009-09-20 02:20:51 +0000669
Owen Anderson2a412722008-06-20 01:15:47 +0000670 ValueNumberScope(ValueNumberScope* p) : parent(p) { }
671 };
672}
673
674namespace {
Owen Anderson85c40642007-07-24 17:55:58 +0000675
Chris Lattnerfa2d1ba2009-09-02 06:11:42 +0000676 class GVN : public FunctionPass {
Owen Anderson85c40642007-07-24 17:55:58 +0000677 bool runOnFunction(Function &F);
678 public:
679 static char ID; // Pass identification, replacement for typeid
Dan Gohmanc8d26652009-11-14 02:27:51 +0000680 explicit GVN(bool nopre = false, bool noloads = false)
681 : FunctionPass(&ID), NoPRE(nopre), NoLoads(noloads), MD(0) { }
Owen Anderson85c40642007-07-24 17:55:58 +0000682
683 private:
Evan Chengf036e552009-10-30 20:12:24 +0000684 bool NoPRE;
Dan Gohmanc8d26652009-11-14 02:27:51 +0000685 bool NoLoads;
Chris Lattner02ca4422008-12-01 00:40:32 +0000686 MemoryDependenceAnalysis *MD;
687 DominatorTree *DT;
688
Owen Anderson85c40642007-07-24 17:55:58 +0000689 ValueTable VN;
Owen Anderson2a412722008-06-20 01:15:47 +0000690 DenseMap<BasicBlock*, ValueNumberScope*> localAvail;
Daniel Dunbar3be44e62009-09-20 02:20:51 +0000691
Owen Anderson85c40642007-07-24 17:55:58 +0000692 // This transformation requires dominator postdominator info
693 virtual void getAnalysisUsage(AnalysisUsage &AU) const {
Owen Anderson85c40642007-07-24 17:55:58 +0000694 AU.addRequired<DominatorTree>();
Dan Gohmanc8d26652009-11-14 02:27:51 +0000695 if (!NoLoads)
696 AU.addRequired<MemoryDependenceAnalysis>();
Owen Anderson5e9366f2007-10-18 19:39:33 +0000697 AU.addRequired<AliasAnalysis>();
Daniel Dunbar3be44e62009-09-20 02:20:51 +0000698
Owen Andersonaef6a922008-06-23 17:49:45 +0000699 AU.addPreserved<DominatorTree>();
Owen Anderson5e9366f2007-10-18 19:39:33 +0000700 AU.addPreserved<AliasAnalysis>();
Owen Anderson85c40642007-07-24 17:55:58 +0000701 }
Daniel Dunbar3be44e62009-09-20 02:20:51 +0000702
Owen Anderson85c40642007-07-24 17:55:58 +0000703 // Helper fuctions
704 // FIXME: eliminate or document these better
Owen Anderson85c40642007-07-24 17:55:58 +0000705 bool processLoad(LoadInst* L,
Chris Lattner7de20452008-03-21 22:01:16 +0000706 SmallVectorImpl<Instruction*> &toErase);
Chris Lattnerff36c952009-09-21 02:42:51 +0000707 bool processInstruction(Instruction *I,
Chris Lattner7de20452008-03-21 22:01:16 +0000708 SmallVectorImpl<Instruction*> &toErase);
Owen Andersonbf8a3eb2007-08-02 18:16:06 +0000709 bool processNonLocalLoad(LoadInst* L,
Chris Lattner7de20452008-03-21 22:01:16 +0000710 SmallVectorImpl<Instruction*> &toErase);
Chris Lattnerff36c952009-09-21 02:42:51 +0000711 bool processBlock(BasicBlock *BB);
Owen Andersone6b4ff82008-06-18 21:41:49 +0000712 void dump(DenseMap<uint32_t, Value*>& d);
Owen Andersonbe168b32007-08-14 18:04:11 +0000713 bool iterateOnFunction(Function &F);
Chris Lattnerff36c952009-09-21 02:42:51 +0000714 Value *CollapsePhi(PHINode* p);
Owen Andersone6b4ff82008-06-18 21:41:49 +0000715 bool performPRE(Function& F);
Chris Lattnerff36c952009-09-21 02:42:51 +0000716 Value *lookupNumber(BasicBlock *BB, uint32_t num);
Nuno Lopes274474b2008-10-10 16:25:50 +0000717 void cleanupGlobalSets();
Bill Wendling2a023742008-12-22 21:36:08 +0000718 void verifyRemoved(const Instruction *I) const;
Owen Anderson85c40642007-07-24 17:55:58 +0000719 };
Daniel Dunbar3be44e62009-09-20 02:20:51 +0000720
Owen Anderson85c40642007-07-24 17:55:58 +0000721 char GVN::ID = 0;
Owen Anderson85c40642007-07-24 17:55:58 +0000722}
723
724// createGVNPass - The public interface to this file...
Dan Gohmanc8d26652009-11-14 02:27:51 +0000725FunctionPass *llvm::createGVNPass(bool NoPRE, bool NoLoads) {
726 return new GVN(NoPRE, NoLoads);
727}
Owen Anderson85c40642007-07-24 17:55:58 +0000728
729static RegisterPass<GVN> X("gvn",
730 "Global Value Numbering");
731
Owen Andersone6b4ff82008-06-18 21:41:49 +0000732void GVN::dump(DenseMap<uint32_t, Value*>& d) {
Owen Anderson5d72a422007-07-25 19:57:03 +0000733 printf("{\n");
Owen Andersone6b4ff82008-06-18 21:41:49 +0000734 for (DenseMap<uint32_t, Value*>::iterator I = d.begin(),
Owen Anderson5d72a422007-07-25 19:57:03 +0000735 E = d.end(); I != E; ++I) {
Owen Andersone6b4ff82008-06-18 21:41:49 +0000736 printf("%d\n", I->first);
Owen Anderson5d72a422007-07-25 19:57:03 +0000737 I->second->dump();
738 }
739 printf("}\n");
740}
741
Chris Lattnerff36c952009-09-21 02:42:51 +0000742static bool isSafeReplacement(PHINode* p, Instruction *inst) {
Owen Andersond68b1af2009-08-26 22:55:11 +0000743 if (!isa<PHINode>(inst))
744 return true;
Daniel Dunbar3be44e62009-09-20 02:20:51 +0000745
Owen Andersond68b1af2009-08-26 22:55:11 +0000746 for (Instruction::use_iterator UI = p->use_begin(), E = p->use_end();
747 UI != E; ++UI)
748 if (PHINode* use_phi = dyn_cast<PHINode>(UI))
749 if (use_phi->getParent() == inst->getParent())
750 return false;
Daniel Dunbar3be44e62009-09-20 02:20:51 +0000751
Owen Andersond68b1af2009-08-26 22:55:11 +0000752 return true;
753}
754
Chris Lattnerff36c952009-09-21 02:42:51 +0000755Value *GVN::CollapsePhi(PHINode *PN) {
756 Value *ConstVal = PN->hasConstantValue(DT);
757 if (!ConstVal) return 0;
Daniel Dunbar3be44e62009-09-20 02:20:51 +0000758
Chris Lattnerff36c952009-09-21 02:42:51 +0000759 Instruction *Inst = dyn_cast<Instruction>(ConstVal);
760 if (!Inst)
761 return ConstVal;
Daniel Dunbar3be44e62009-09-20 02:20:51 +0000762
Chris Lattnerff36c952009-09-21 02:42:51 +0000763 if (DT->dominates(Inst, PN))
764 if (isSafeReplacement(PN, Inst))
765 return Inst;
Owen Andersone02ad522007-08-16 22:51:56 +0000766 return 0;
767}
Owen Anderson5d72a422007-07-25 19:57:03 +0000768
Chris Lattnerdcded152008-12-02 08:16:11 +0000769/// IsValueFullyAvailableInBlock - Return true if we can prove that the value
770/// we're analyzing is fully available in the specified block. As we go, keep
Chris Lattner159b98f2008-12-05 07:49:08 +0000771/// track of which blocks we know are fully alive in FullyAvailableBlocks. This
772/// map is actually a tri-state map with the following values:
773/// 0) we know the block *is not* fully available.
774/// 1) we know the block *is* fully available.
775/// 2) we do not know whether the block is fully available or not, but we are
776/// currently speculating that it will be.
777/// 3) we are speculating for this block and have used that to speculate for
778/// other blocks.
Daniel Dunbar3be44e62009-09-20 02:20:51 +0000779static bool IsValueFullyAvailableInBlock(BasicBlock *BB,
Chris Lattner159b98f2008-12-05 07:49:08 +0000780 DenseMap<BasicBlock*, char> &FullyAvailableBlocks) {
Chris Lattnerdcded152008-12-02 08:16:11 +0000781 // Optimistically assume that the block is fully available and check to see
782 // if we already know about this block in one lookup.
Daniel Dunbar3be44e62009-09-20 02:20:51 +0000783 std::pair<DenseMap<BasicBlock*, char>::iterator, char> IV =
Chris Lattner159b98f2008-12-05 07:49:08 +0000784 FullyAvailableBlocks.insert(std::make_pair(BB, 2));
Chris Lattnerdcded152008-12-02 08:16:11 +0000785
786 // If the entry already existed for this block, return the precomputed value.
Chris Lattner159b98f2008-12-05 07:49:08 +0000787 if (!IV.second) {
788 // If this is a speculative "available" value, mark it as being used for
789 // speculation of other blocks.
790 if (IV.first->second == 2)
791 IV.first->second = 3;
792 return IV.first->second != 0;
793 }
Daniel Dunbar3be44e62009-09-20 02:20:51 +0000794
Chris Lattnerdcded152008-12-02 08:16:11 +0000795 // Otherwise, see if it is fully available in all predecessors.
796 pred_iterator PI = pred_begin(BB), PE = pred_end(BB);
Daniel Dunbar3be44e62009-09-20 02:20:51 +0000797
Chris Lattnerdcded152008-12-02 08:16:11 +0000798 // If this block has no predecessors, it isn't live-in here.
799 if (PI == PE)
Chris Lattner159b98f2008-12-05 07:49:08 +0000800 goto SpeculationFailure;
Daniel Dunbar3be44e62009-09-20 02:20:51 +0000801
Chris Lattnerdcded152008-12-02 08:16:11 +0000802 for (; PI != PE; ++PI)
803 // If the value isn't fully available in one of our predecessors, then it
804 // isn't fully available in this block either. Undo our previous
805 // optimistic assumption and bail out.
806 if (!IsValueFullyAvailableInBlock(*PI, FullyAvailableBlocks))
Chris Lattner159b98f2008-12-05 07:49:08 +0000807 goto SpeculationFailure;
Daniel Dunbar3be44e62009-09-20 02:20:51 +0000808
Chris Lattnerdcded152008-12-02 08:16:11 +0000809 return true;
Daniel Dunbar3be44e62009-09-20 02:20:51 +0000810
Chris Lattner159b98f2008-12-05 07:49:08 +0000811// SpeculationFailure - If we get here, we found out that this is not, after
812// all, a fully-available block. We have a problem if we speculated on this and
813// used the speculation to mark other blocks as available.
814SpeculationFailure:
815 char &BBVal = FullyAvailableBlocks[BB];
Daniel Dunbar3be44e62009-09-20 02:20:51 +0000816
Chris Lattner159b98f2008-12-05 07:49:08 +0000817 // If we didn't speculate on this, just return with it set to false.
818 if (BBVal == 2) {
819 BBVal = 0;
820 return false;
821 }
822
823 // If we did speculate on this value, we could have blocks set to 1 that are
824 // incorrect. Walk the (transitive) successors of this block and mark them as
825 // 0 if set to one.
826 SmallVector<BasicBlock*, 32> BBWorklist;
827 BBWorklist.push_back(BB);
Daniel Dunbar3be44e62009-09-20 02:20:51 +0000828
Chris Lattner159b98f2008-12-05 07:49:08 +0000829 while (!BBWorklist.empty()) {
830 BasicBlock *Entry = BBWorklist.pop_back_val();
831 // Note that this sets blocks to 0 (unavailable) if they happen to not
832 // already be in FullyAvailableBlocks. This is safe.
833 char &EntryVal = FullyAvailableBlocks[Entry];
834 if (EntryVal == 0) continue; // Already unavailable.
835
836 // Mark as unavailable.
837 EntryVal = 0;
Daniel Dunbar3be44e62009-09-20 02:20:51 +0000838
Chris Lattner159b98f2008-12-05 07:49:08 +0000839 for (succ_iterator I = succ_begin(Entry), E = succ_end(Entry); I != E; ++I)
840 BBWorklist.push_back(*I);
841 }
Daniel Dunbar3be44e62009-09-20 02:20:51 +0000842
Chris Lattner159b98f2008-12-05 07:49:08 +0000843 return false;
Chris Lattnerdcded152008-12-02 08:16:11 +0000844}
845
Chris Lattnerd6b1d052009-09-20 20:09:34 +0000846
Chris Lattner012b3602009-09-21 17:24:04 +0000847/// CanCoerceMustAliasedValueToLoad - Return true if
848/// CoerceAvailableValueToLoadType will succeed.
849static bool CanCoerceMustAliasedValueToLoad(Value *StoredVal,
850 const Type *LoadTy,
851 const TargetData &TD) {
852 // If the loaded or stored value is an first class array or struct, don't try
853 // to transform them. We need to be able to bitcast to integer.
854 if (isa<StructType>(LoadTy) || isa<ArrayType>(LoadTy) ||
855 isa<StructType>(StoredVal->getType()) ||
856 isa<ArrayType>(StoredVal->getType()))
857 return false;
858
859 // The store has to be at least as big as the load.
860 if (TD.getTypeSizeInBits(StoredVal->getType()) <
861 TD.getTypeSizeInBits(LoadTy))
862 return false;
863
864 return true;
865}
866
867
Chris Lattnerd6b1d052009-09-20 20:09:34 +0000868/// CoerceAvailableValueToLoadType - If we saw a store of a value to memory, and
869/// then a load from a must-aliased pointer of a different type, try to coerce
870/// the stored value. LoadedTy is the type of the load we want to replace and
871/// InsertPt is the place to insert new instructions.
872///
873/// If we can't do it, return null.
874static Value *CoerceAvailableValueToLoadType(Value *StoredVal,
875 const Type *LoadedTy,
876 Instruction *InsertPt,
877 const TargetData &TD) {
Chris Lattner012b3602009-09-21 17:24:04 +0000878 if (!CanCoerceMustAliasedValueToLoad(StoredVal, LoadedTy, TD))
879 return 0;
880
Chris Lattnerd6b1d052009-09-20 20:09:34 +0000881 const Type *StoredValTy = StoredVal->getType();
882
883 uint64_t StoreSize = TD.getTypeSizeInBits(StoredValTy);
884 uint64_t LoadSize = TD.getTypeSizeInBits(LoadedTy);
885
886 // If the store and reload are the same size, we can always reuse it.
887 if (StoreSize == LoadSize) {
888 if (isa<PointerType>(StoredValTy) && isa<PointerType>(LoadedTy)) {
889 // Pointer to Pointer -> use bitcast.
890 return new BitCastInst(StoredVal, LoadedTy, "", InsertPt);
891 }
892
893 // Convert source pointers to integers, which can be bitcast.
894 if (isa<PointerType>(StoredValTy)) {
895 StoredValTy = TD.getIntPtrType(StoredValTy->getContext());
896 StoredVal = new PtrToIntInst(StoredVal, StoredValTy, "", InsertPt);
897 }
898
899 const Type *TypeToCastTo = LoadedTy;
900 if (isa<PointerType>(TypeToCastTo))
901 TypeToCastTo = TD.getIntPtrType(StoredValTy->getContext());
902
903 if (StoredValTy != TypeToCastTo)
904 StoredVal = new BitCastInst(StoredVal, TypeToCastTo, "", InsertPt);
905
906 // Cast to pointer if the load needs a pointer type.
907 if (isa<PointerType>(LoadedTy))
908 StoredVal = new IntToPtrInst(StoredVal, LoadedTy, "", InsertPt);
909
910 return StoredVal;
911 }
912
913 // If the loaded value is smaller than the available value, then we can
914 // extract out a piece from it. If the available value is too small, then we
915 // can't do anything.
Chris Lattner012b3602009-09-21 17:24:04 +0000916 assert(StoreSize >= LoadSize && "CanCoerceMustAliasedValueToLoad fail");
Chris Lattnerd6b1d052009-09-20 20:09:34 +0000917
918 // Convert source pointers to integers, which can be manipulated.
919 if (isa<PointerType>(StoredValTy)) {
920 StoredValTy = TD.getIntPtrType(StoredValTy->getContext());
921 StoredVal = new PtrToIntInst(StoredVal, StoredValTy, "", InsertPt);
922 }
923
924 // Convert vectors and fp to integer, which can be manipulated.
925 if (!isa<IntegerType>(StoredValTy)) {
926 StoredValTy = IntegerType::get(StoredValTy->getContext(), StoreSize);
927 StoredVal = new BitCastInst(StoredVal, StoredValTy, "", InsertPt);
928 }
929
930 // If this is a big-endian system, we need to shift the value down to the low
931 // bits so that a truncate will work.
932 if (TD.isBigEndian()) {
933 Constant *Val = ConstantInt::get(StoredVal->getType(), StoreSize-LoadSize);
934 StoredVal = BinaryOperator::CreateLShr(StoredVal, Val, "tmp", InsertPt);
935 }
936
937 // Truncate the integer to the right size now.
938 const Type *NewIntTy = IntegerType::get(StoredValTy->getContext(), LoadSize);
939 StoredVal = new TruncInst(StoredVal, NewIntTy, "trunc", InsertPt);
940
941 if (LoadedTy == NewIntTy)
942 return StoredVal;
943
944 // If the result is a pointer, inttoptr.
945 if (isa<PointerType>(LoadedTy))
946 return new IntToPtrInst(StoredVal, LoadedTy, "inttoptr", InsertPt);
947
948 // Otherwise, bitcast.
949 return new BitCastInst(StoredVal, LoadedTy, "bitcast", InsertPt);
950}
951
Chris Lattner8f912082009-09-21 06:24:16 +0000952/// GetBaseWithConstantOffset - Analyze the specified pointer to see if it can
953/// be expressed as a base pointer plus a constant offset. Return the base and
954/// offset to the caller.
955static Value *GetBaseWithConstantOffset(Value *Ptr, int64_t &Offset,
Chris Lattneraae7fcb2009-09-21 06:48:08 +0000956 const TargetData &TD) {
Chris Lattner8f912082009-09-21 06:24:16 +0000957 Operator *PtrOp = dyn_cast<Operator>(Ptr);
958 if (PtrOp == 0) return Ptr;
959
960 // Just look through bitcasts.
961 if (PtrOp->getOpcode() == Instruction::BitCast)
962 return GetBaseWithConstantOffset(PtrOp->getOperand(0), Offset, TD);
963
964 // If this is a GEP with constant indices, we can look through it.
965 GEPOperator *GEP = dyn_cast<GEPOperator>(PtrOp);
966 if (GEP == 0 || !GEP->hasAllConstantIndices()) return Ptr;
967
968 gep_type_iterator GTI = gep_type_begin(GEP);
969 for (User::op_iterator I = GEP->idx_begin(), E = GEP->idx_end(); I != E;
970 ++I, ++GTI) {
971 ConstantInt *OpC = cast<ConstantInt>(*I);
972 if (OpC->isZero()) continue;
973
974 // Handle a struct and array indices which add their offset to the pointer.
975 if (const StructType *STy = dyn_cast<StructType>(*GTI)) {
Chris Lattneraae7fcb2009-09-21 06:48:08 +0000976 Offset += TD.getStructLayout(STy)->getElementOffset(OpC->getZExtValue());
Chris Lattner8f912082009-09-21 06:24:16 +0000977 } else {
Chris Lattneraae7fcb2009-09-21 06:48:08 +0000978 uint64_t Size = TD.getTypeAllocSize(GTI.getIndexedType());
Chris Lattner8f912082009-09-21 06:24:16 +0000979 Offset += OpC->getSExtValue()*Size;
980 }
981 }
982
983 // Re-sign extend from the pointer size if needed to get overflow edge cases
984 // right.
Chris Lattneraae7fcb2009-09-21 06:48:08 +0000985 unsigned PtrSize = TD.getPointerSizeInBits();
Chris Lattner8f912082009-09-21 06:24:16 +0000986 if (PtrSize < 64)
987 Offset = (Offset << (64-PtrSize)) >> (64-PtrSize);
988
989 return GetBaseWithConstantOffset(GEP->getPointerOperand(), Offset, TD);
990}
991
992
Chris Lattnercb00f732009-12-06 01:57:02 +0000993/// AnalyzeLoadFromClobberingWrite - This function is called when we have a
994/// memdep query of a load that ends up being a clobbering memory write (store,
995/// memset, memcpy, memmove). This means that the write *may* provide bits used
996/// by the load but we can't be sure because the pointers don't mustalias.
997///
998/// Check this case to see if there is anything more we can do before we give
999/// up. This returns -1 if we have to give up, or a byte number in the stored
1000/// value of the piece that feeds the load.
Chris Lattner598abfd2009-12-09 07:34:10 +00001001static int AnalyzeLoadFromClobberingWrite(const Type *LoadTy, Value *LoadPtr,
1002 Value *WritePtr,
Chris Lattnercb00f732009-12-06 01:57:02 +00001003 uint64_t WriteSizeInBits,
Chris Lattneraae7fcb2009-09-21 06:48:08 +00001004 const TargetData &TD) {
Chris Lattner012b3602009-09-21 17:24:04 +00001005 // If the loaded or stored value is an first class array or struct, don't try
1006 // to transform them. We need to be able to bitcast to integer.
Chris Lattner598abfd2009-12-09 07:34:10 +00001007 if (isa<StructType>(LoadTy) || isa<ArrayType>(LoadTy))
Chris Lattner012b3602009-09-21 17:24:04 +00001008 return -1;
1009
Chris Lattner8f912082009-09-21 06:24:16 +00001010 int64_t StoreOffset = 0, LoadOffset = 0;
Chris Lattnercb00f732009-12-06 01:57:02 +00001011 Value *StoreBase = GetBaseWithConstantOffset(WritePtr, StoreOffset, TD);
Chris Lattner8f912082009-09-21 06:24:16 +00001012 Value *LoadBase =
Chris Lattner598abfd2009-12-09 07:34:10 +00001013 GetBaseWithConstantOffset(LoadPtr, LoadOffset, TD);
Chris Lattner8f912082009-09-21 06:24:16 +00001014 if (StoreBase != LoadBase)
1015 return -1;
1016
1017 // If the load and store are to the exact same address, they should have been
1018 // a must alias. AA must have gotten confused.
1019 // FIXME: Study to see if/when this happens.
1020 if (LoadOffset == StoreOffset) {
1021#if 0
1022 errs() << "STORE/LOAD DEP WITH COMMON POINTER MISSED:\n"
1023 << "Base = " << *StoreBase << "\n"
Chris Lattnercb00f732009-12-06 01:57:02 +00001024 << "Store Ptr = " << *WritePtr << "\n"
1025 << "Store Offs = " << StoreOffset << "\n"
Chris Lattner598abfd2009-12-09 07:34:10 +00001026 << "Load Ptr = " << *LoadPtr << "\n"
Chris Lattner8f912082009-09-21 06:24:16 +00001027 << "Load Offs = " << LoadOffset << " - " << *L << "\n\n";
Chris Lattner4c619092009-12-09 02:41:54 +00001028 abort();
Chris Lattner8f912082009-09-21 06:24:16 +00001029#endif
1030 return -1;
1031 }
1032
1033 // If the load and store don't overlap at all, the store doesn't provide
1034 // anything to the load. In this case, they really don't alias at all, AA
1035 // must have gotten confused.
1036 // FIXME: Investigate cases where this bails out, e.g. rdar://7238614. Then
1037 // remove this check, as it is duplicated with what we have below.
Chris Lattner598abfd2009-12-09 07:34:10 +00001038 uint64_t LoadSize = TD.getTypeSizeInBits(LoadTy);
Chris Lattner8f912082009-09-21 06:24:16 +00001039
Chris Lattnercb00f732009-12-06 01:57:02 +00001040 if ((WriteSizeInBits & 7) | (LoadSize & 7))
Chris Lattner8f912082009-09-21 06:24:16 +00001041 return -1;
Chris Lattnercb00f732009-12-06 01:57:02 +00001042 uint64_t StoreSize = WriteSizeInBits >> 3; // Convert to bytes.
Chris Lattner8f912082009-09-21 06:24:16 +00001043 LoadSize >>= 3;
1044
1045
1046 bool isAAFailure = false;
1047 if (StoreOffset < LoadOffset) {
1048 isAAFailure = StoreOffset+int64_t(StoreSize) <= LoadOffset;
1049 } else {
1050 isAAFailure = LoadOffset+int64_t(LoadSize) <= StoreOffset;
1051 }
1052 if (isAAFailure) {
1053#if 0
1054 errs() << "STORE LOAD DEP WITH COMMON BASE:\n"
1055 << "Base = " << *StoreBase << "\n"
Chris Lattnercb00f732009-12-06 01:57:02 +00001056 << "Store Ptr = " << *WritePtr << "\n"
1057 << "Store Offs = " << StoreOffset << "\n"
Chris Lattner8f912082009-09-21 06:24:16 +00001058 << "Load Ptr = " << *L->getPointerOperand() << "\n"
1059 << "Load Offs = " << LoadOffset << " - " << *L << "\n\n";
1060 errs() << "'" << L->getParent()->getParent()->getName() << "'"
1061 << *L->getParent();
Chris Lattner4c619092009-12-09 02:41:54 +00001062 abort();
Chris Lattner8f912082009-09-21 06:24:16 +00001063#endif
1064 return -1;
1065 }
1066
1067 // If the Load isn't completely contained within the stored bits, we don't
1068 // have all the bits to feed it. We could do something crazy in the future
1069 // (issue a smaller load then merge the bits in) but this seems unlikely to be
1070 // valuable.
1071 if (StoreOffset > LoadOffset ||
1072 StoreOffset+StoreSize < LoadOffset+LoadSize)
1073 return -1;
1074
1075 // Okay, we can do this transformation. Return the number of bytes into the
1076 // store that the load is.
1077 return LoadOffset-StoreOffset;
1078}
1079
Chris Lattnercb00f732009-12-06 01:57:02 +00001080/// AnalyzeLoadFromClobberingStore - This function is called when we have a
1081/// memdep query of a load that ends up being a clobbering store.
Chris Lattnerfd9feaa2009-12-09 07:37:07 +00001082static int AnalyzeLoadFromClobberingStore(const Type *LoadTy, Value *LoadPtr,
1083 StoreInst *DepSI,
Chris Lattnercb00f732009-12-06 01:57:02 +00001084 const TargetData &TD) {
1085 // Cannot handle reading from store of first-class aggregate yet.
1086 if (isa<StructType>(DepSI->getOperand(0)->getType()) ||
1087 isa<ArrayType>(DepSI->getOperand(0)->getType()))
1088 return -1;
1089
1090 Value *StorePtr = DepSI->getPointerOperand();
1091 uint64_t StoreSize = TD.getTypeSizeInBits(StorePtr->getType());
Chris Lattnerfd9feaa2009-12-09 07:37:07 +00001092 return AnalyzeLoadFromClobberingWrite(LoadTy, LoadPtr,
Chris Lattner598abfd2009-12-09 07:34:10 +00001093 StorePtr, StoreSize, TD);
Chris Lattnercb00f732009-12-06 01:57:02 +00001094}
1095
Chris Lattnerfd9feaa2009-12-09 07:37:07 +00001096static int AnalyzeLoadFromClobberingMemInst(const Type *LoadTy, Value *LoadPtr,
1097 MemIntrinsic *MI,
Chris Lattnercb00f732009-12-06 01:57:02 +00001098 const TargetData &TD) {
1099 // If the mem operation is a non-constant size, we can't handle it.
1100 ConstantInt *SizeCst = dyn_cast<ConstantInt>(MI->getLength());
1101 if (SizeCst == 0) return -1;
1102 uint64_t MemSizeInBits = SizeCst->getZExtValue()*8;
Chris Lattner4bb632f2009-12-06 05:29:56 +00001103
1104 // If this is memset, we just need to see if the offset is valid in the size
1105 // of the memset..
Chris Lattnercb00f732009-12-06 01:57:02 +00001106 if (MI->getIntrinsicID() == Intrinsic::memset)
Chris Lattnerfd9feaa2009-12-09 07:37:07 +00001107 return AnalyzeLoadFromClobberingWrite(LoadTy, LoadPtr, MI->getDest(),
1108 MemSizeInBits, TD);
Chris Lattnercb00f732009-12-06 01:57:02 +00001109
Chris Lattner4bb632f2009-12-06 05:29:56 +00001110 // If we have a memcpy/memmove, the only case we can handle is if this is a
1111 // copy from constant memory. In that case, we can read directly from the
1112 // constant memory.
1113 MemTransferInst *MTI = cast<MemTransferInst>(MI);
1114
1115 Constant *Src = dyn_cast<Constant>(MTI->getSource());
1116 if (Src == 0) return -1;
1117
1118 GlobalVariable *GV = dyn_cast<GlobalVariable>(Src->getUnderlyingObject());
1119 if (GV == 0 || !GV->isConstant()) return -1;
1120
1121 // See if the access is within the bounds of the transfer.
Chris Lattnerfd9feaa2009-12-09 07:37:07 +00001122 int Offset = AnalyzeLoadFromClobberingWrite(LoadTy, LoadPtr,
1123 MI->getDest(), MemSizeInBits, TD);
Chris Lattner4bb632f2009-12-06 05:29:56 +00001124 if (Offset == -1)
1125 return Offset;
1126
1127 // Otherwise, see if we can constant fold a load from the constant with the
1128 // offset applied as appropriate.
1129 Src = ConstantExpr::getBitCast(Src,
1130 llvm::Type::getInt8PtrTy(Src->getContext()));
1131 Constant *OffsetCst =
1132 ConstantInt::get(Type::getInt64Ty(Src->getContext()), (unsigned)Offset);
1133 Src = ConstantExpr::getGetElementPtr(Src, &OffsetCst, 1);
Chris Lattnerfd9feaa2009-12-09 07:37:07 +00001134 Src = ConstantExpr::getBitCast(Src, PointerType::getUnqual(LoadTy));
Chris Lattner4bb632f2009-12-06 05:29:56 +00001135 if (ConstantFoldLoadFromConstPtr(Src, &TD))
1136 return Offset;
Chris Lattnercb00f732009-12-06 01:57:02 +00001137 return -1;
1138}
1139
Chris Lattner8f912082009-09-21 06:24:16 +00001140
1141/// GetStoreValueForLoad - This function is called when we have a
1142/// memdep query of a load that ends up being a clobbering store. This means
1143/// that the store *may* provide bits used by the load but we can't be sure
1144/// because the pointers don't mustalias. Check this case to see if there is
1145/// anything more we can do before we give up.
Chris Lattneraae7fcb2009-09-21 06:48:08 +00001146static Value *GetStoreValueForLoad(Value *SrcVal, unsigned Offset,
1147 const Type *LoadTy,
1148 Instruction *InsertPt, const TargetData &TD){
Chris Lattner8f912082009-09-21 06:24:16 +00001149 LLVMContext &Ctx = SrcVal->getType()->getContext();
1150
Chris Lattneraae7fcb2009-09-21 06:48:08 +00001151 uint64_t StoreSize = TD.getTypeSizeInBits(SrcVal->getType())/8;
1152 uint64_t LoadSize = TD.getTypeSizeInBits(LoadTy)/8;
Chris Lattner8f912082009-09-21 06:24:16 +00001153
Chris Lattner2737cb42009-12-09 18:13:28 +00001154 IRBuilder<> Builder(InsertPt->getParent(), InsertPt);
Chris Lattner8f912082009-09-21 06:24:16 +00001155
1156 // Compute which bits of the stored value are being used by the load. Convert
1157 // to an integer type to start with.
1158 if (isa<PointerType>(SrcVal->getType()))
Chris Lattner2737cb42009-12-09 18:13:28 +00001159 SrcVal = Builder.CreatePtrToInt(SrcVal, TD.getIntPtrType(Ctx), "tmp");
Chris Lattner8f912082009-09-21 06:24:16 +00001160 if (!isa<IntegerType>(SrcVal->getType()))
Chris Lattner2737cb42009-12-09 18:13:28 +00001161 SrcVal = Builder.CreateBitCast(SrcVal, IntegerType::get(Ctx, StoreSize*8),
1162 "tmp");
Chris Lattner8f912082009-09-21 06:24:16 +00001163
1164 // Shift the bits to the least significant depending on endianness.
1165 unsigned ShiftAmt;
Chris Lattnercb00f732009-12-06 01:57:02 +00001166 if (TD.isLittleEndian())
Chris Lattner8f912082009-09-21 06:24:16 +00001167 ShiftAmt = Offset*8;
Chris Lattnercb00f732009-12-06 01:57:02 +00001168 else
Chris Lattner1846fa02009-09-21 17:55:47 +00001169 ShiftAmt = (StoreSize-LoadSize-Offset)*8;
Chris Lattner8f912082009-09-21 06:24:16 +00001170
Chris Lattneraae7fcb2009-09-21 06:48:08 +00001171 if (ShiftAmt)
Chris Lattner2737cb42009-12-09 18:13:28 +00001172 SrcVal = Builder.CreateLShr(SrcVal, ShiftAmt, "tmp");
Chris Lattner8f912082009-09-21 06:24:16 +00001173
Chris Lattneraae7fcb2009-09-21 06:48:08 +00001174 if (LoadSize != StoreSize)
Chris Lattner2737cb42009-12-09 18:13:28 +00001175 SrcVal = Builder.CreateTrunc(SrcVal, IntegerType::get(Ctx, LoadSize*8),
1176 "tmp");
Chris Lattner8f912082009-09-21 06:24:16 +00001177
Chris Lattneraae7fcb2009-09-21 06:48:08 +00001178 return CoerceAvailableValueToLoadType(SrcVal, LoadTy, InsertPt, TD);
Chris Lattner8f912082009-09-21 06:24:16 +00001179}
1180
Chris Lattnercb00f732009-12-06 01:57:02 +00001181/// GetMemInstValueForLoad - This function is called when we have a
1182/// memdep query of a load that ends up being a clobbering mem intrinsic.
1183static Value *GetMemInstValueForLoad(MemIntrinsic *SrcInst, unsigned Offset,
1184 const Type *LoadTy, Instruction *InsertPt,
1185 const TargetData &TD){
1186 LLVMContext &Ctx = LoadTy->getContext();
1187 uint64_t LoadSize = TD.getTypeSizeInBits(LoadTy)/8;
1188
1189 IRBuilder<> Builder(InsertPt->getParent(), InsertPt);
1190
1191 // We know that this method is only called when the mem transfer fully
1192 // provides the bits for the load.
1193 if (MemSetInst *MSI = dyn_cast<MemSetInst>(SrcInst)) {
1194 // memset(P, 'x', 1234) -> splat('x'), even if x is a variable, and
1195 // independently of what the offset is.
1196 Value *Val = MSI->getValue();
1197 if (LoadSize != 1)
1198 Val = Builder.CreateZExt(Val, IntegerType::get(Ctx, LoadSize*8));
1199
1200 Value *OneElt = Val;
1201
1202 // Splat the value out to the right number of bits.
1203 for (unsigned NumBytesSet = 1; NumBytesSet != LoadSize; ) {
1204 // If we can double the number of bytes set, do it.
1205 if (NumBytesSet*2 <= LoadSize) {
1206 Value *ShVal = Builder.CreateShl(Val, NumBytesSet*8);
1207 Val = Builder.CreateOr(Val, ShVal);
1208 NumBytesSet <<= 1;
1209 continue;
1210 }
1211
1212 // Otherwise insert one byte at a time.
1213 Value *ShVal = Builder.CreateShl(Val, 1*8);
1214 Val = Builder.CreateOr(OneElt, ShVal);
1215 ++NumBytesSet;
1216 }
1217
1218 return CoerceAvailableValueToLoadType(Val, LoadTy, InsertPt, TD);
1219 }
Chris Lattner4bb632f2009-12-06 05:29:56 +00001220
1221 // Otherwise, this is a memcpy/memmove from a constant global.
1222 MemTransferInst *MTI = cast<MemTransferInst>(SrcInst);
1223 Constant *Src = cast<Constant>(MTI->getSource());
1224
1225 // Otherwise, see if we can constant fold a load from the constant with the
1226 // offset applied as appropriate.
1227 Src = ConstantExpr::getBitCast(Src,
1228 llvm::Type::getInt8PtrTy(Src->getContext()));
1229 Constant *OffsetCst =
1230 ConstantInt::get(Type::getInt64Ty(Src->getContext()), (unsigned)Offset);
1231 Src = ConstantExpr::getGetElementPtr(Src, &OffsetCst, 1);
1232 Src = ConstantExpr::getBitCast(Src, PointerType::getUnqual(LoadTy));
1233 return ConstantFoldLoadFromConstPtr(Src, &TD);
Chris Lattnercb00f732009-12-06 01:57:02 +00001234}
1235
1236
1237
Chris Lattner19b84b32009-09-21 06:30:24 +00001238struct AvailableValueInBlock {
1239 /// BB - The basic block in question.
1240 BasicBlock *BB;
Chris Lattnera96e53a2009-12-06 04:54:31 +00001241 enum ValType {
1242 SimpleVal, // A simple offsetted value that is accessed.
1243 MemIntrin // A memory intrinsic which is loaded from.
1244 };
1245
Chris Lattner19b84b32009-09-21 06:30:24 +00001246 /// V - The value that is live out of the block.
Chris Lattnera96e53a2009-12-06 04:54:31 +00001247 PointerIntPair<Value *, 1, ValType> Val;
1248
1249 /// Offset - The byte offset in Val that is interesting for the load query.
Chris Lattneraae7fcb2009-09-21 06:48:08 +00001250 unsigned Offset;
Chris Lattner19b84b32009-09-21 06:30:24 +00001251
Chris Lattneraae7fcb2009-09-21 06:48:08 +00001252 static AvailableValueInBlock get(BasicBlock *BB, Value *V,
1253 unsigned Offset = 0) {
Chris Lattner19b84b32009-09-21 06:30:24 +00001254 AvailableValueInBlock Res;
1255 Res.BB = BB;
Chris Lattnera96e53a2009-12-06 04:54:31 +00001256 Res.Val.setPointer(V);
1257 Res.Val.setInt(SimpleVal);
Chris Lattneraae7fcb2009-09-21 06:48:08 +00001258 Res.Offset = Offset;
Chris Lattner19b84b32009-09-21 06:30:24 +00001259 return Res;
1260 }
Chris Lattnera96e53a2009-12-06 04:54:31 +00001261
1262 static AvailableValueInBlock getMI(BasicBlock *BB, MemIntrinsic *MI,
1263 unsigned Offset = 0) {
1264 AvailableValueInBlock Res;
1265 Res.BB = BB;
1266 Res.Val.setPointer(MI);
1267 Res.Val.setInt(MemIntrin);
1268 Res.Offset = Offset;
1269 return Res;
1270 }
1271
1272 bool isSimpleValue() const { return Val.getInt() == SimpleVal; }
1273 Value *getSimpleValue() const {
1274 assert(isSimpleValue() && "Wrong accessor");
1275 return Val.getPointer();
1276 }
1277
1278 MemIntrinsic *getMemIntrinValue() const {
1279 assert(!isSimpleValue() && "Wrong accessor");
1280 return cast<MemIntrinsic>(Val.getPointer());
1281 }
Chris Lattner19b84b32009-09-21 06:30:24 +00001282};
1283
Chris Lattner6e5ea272009-10-10 23:50:30 +00001284/// ConstructSSAForLoadSet - Given a set of loads specified by ValuesPerBlock,
1285/// construct SSA form, allowing us to eliminate LI. This returns the value
1286/// that should be used at LI's definition site.
1287static Value *ConstructSSAForLoadSet(LoadInst *LI,
1288 SmallVectorImpl<AvailableValueInBlock> &ValuesPerBlock,
1289 const TargetData *TD,
1290 AliasAnalysis *AA) {
1291 SmallVector<PHINode*, 8> NewPHIs;
1292 SSAUpdater SSAUpdate(&NewPHIs);
1293 SSAUpdate.Initialize(LI);
1294
1295 const Type *LoadTy = LI->getType();
1296
Chris Lattnerd6b1d052009-09-20 20:09:34 +00001297 for (unsigned i = 0, e = ValuesPerBlock.size(); i != e; ++i) {
Chris Lattnera96e53a2009-12-06 04:54:31 +00001298 const AvailableValueInBlock &AV = ValuesPerBlock[i];
1299 BasicBlock *BB = AV.BB;
Chris Lattnerd6b1d052009-09-20 20:09:34 +00001300
Chris Lattner6e5ea272009-10-10 23:50:30 +00001301 if (SSAUpdate.HasValueForBlock(BB))
1302 continue;
Chris Lattnera96e53a2009-12-06 04:54:31 +00001303
1304 unsigned Offset = AV.Offset;
1305
1306 Value *AvailableVal;
1307 if (AV.isSimpleValue()) {
1308 AvailableVal = AV.getSimpleValue();
1309 if (AvailableVal->getType() != LoadTy) {
1310 assert(TD && "Need target data to handle type mismatch case");
1311 AvailableVal = GetStoreValueForLoad(AvailableVal, Offset, LoadTy,
1312 BB->getTerminator(), *TD);
1313
1314 DEBUG(errs() << "GVN COERCED NONLOCAL VAL:\nOffset: " << Offset << " "
1315 << *AV.getSimpleValue() << '\n'
Chris Lattner6e5ea272009-10-10 23:50:30 +00001316 << *AvailableVal << '\n' << "\n\n\n");
Chris Lattneraae7fcb2009-09-21 06:48:08 +00001317 }
Chris Lattnera96e53a2009-12-06 04:54:31 +00001318 } else {
1319 AvailableVal = GetMemInstValueForLoad(AV.getMemIntrinValue(), Offset,
1320 LoadTy, BB->getTerminator(), *TD);
1321 DEBUG(errs() << "GVN COERCED NONLOCAL MEM INTRIN:\nOffset: " << Offset
1322 << " " << *AV.getMemIntrinValue() << '\n'
Chris Lattner6e5ea272009-10-10 23:50:30 +00001323 << *AvailableVal << '\n' << "\n\n\n");
Chris Lattnerd6b1d052009-09-20 20:09:34 +00001324 }
Chris Lattner6e5ea272009-10-10 23:50:30 +00001325 SSAUpdate.AddAvailableValue(BB, AvailableVal);
Chris Lattnerd6b1d052009-09-20 20:09:34 +00001326 }
Chris Lattner6e5ea272009-10-10 23:50:30 +00001327
1328 // Perform PHI construction.
1329 Value *V = SSAUpdate.GetValueInMiddleOfBlock(LI->getParent());
1330
1331 // If new PHI nodes were created, notify alias analysis.
1332 if (isa<PointerType>(V->getType()))
1333 for (unsigned i = 0, e = NewPHIs.size(); i != e; ++i)
1334 AA->copyValue(LI, NewPHIs[i]);
1335
1336 return V;
Chris Lattnerd6b1d052009-09-20 20:09:34 +00001337}
1338
Owen Andersonf187daf2009-12-02 07:35:19 +00001339static bool isLifetimeStart(Instruction *Inst) {
Chris Lattnerbc6fccc2009-12-02 06:44:58 +00001340 if (IntrinsicInst* II = dyn_cast<IntrinsicInst>(Inst))
Owen Andersonf187daf2009-12-02 07:35:19 +00001341 return II->getIntrinsicID() == Intrinsic::lifetime_start;
Chris Lattnerbc6fccc2009-12-02 06:44:58 +00001342 return false;
1343}
1344
Owen Andersone0143452007-08-16 22:02:55 +00001345/// processNonLocalLoad - Attempt to eliminate a load whose dependencies are
1346/// non-local by performing PHI construction.
Chris Lattnerdcded152008-12-02 08:16:11 +00001347bool GVN::processNonLocalLoad(LoadInst *LI,
Chris Lattner7de20452008-03-21 22:01:16 +00001348 SmallVectorImpl<Instruction*> &toErase) {
Chris Lattnerdcded152008-12-02 08:16:11 +00001349 // Find the non-local dependencies of the load.
Chris Lattner1a957962009-12-09 07:08:01 +00001350 SmallVector<NonLocalDepEntry, 64> Deps;
Chris Lattneraf713862008-12-09 19:25:07 +00001351 MD->getNonLocalPointerDependency(LI->getOperand(0), true, LI->getParent(),
1352 Deps);
Dan Gohman7e124382009-07-31 20:24:18 +00001353 //DEBUG(errs() << "INVESTIGATING NONLOCAL LOAD: "
1354 // << Deps.size() << *LI << '\n');
Daniel Dunbar3be44e62009-09-20 02:20:51 +00001355
Owen Anderson90e717d2008-08-26 22:07:42 +00001356 // If we had to process more than one hundred blocks to find the
1357 // dependencies, this load isn't worth worrying about. Optimizing
1358 // it will be too expensive.
Chris Lattneraf713862008-12-09 19:25:07 +00001359 if (Deps.size() > 100)
Owen Anderson90e717d2008-08-26 22:07:42 +00001360 return false;
Chris Lattner8d1686f2008-12-18 00:51:32 +00001361
1362 // If we had a phi translation failure, we'll have a single entry which is a
1363 // clobber in the current block. Reject this early.
Chris Lattner1a957962009-12-09 07:08:01 +00001364 if (Deps.size() == 1 && Deps[0].getResult().isClobber()) {
Edwin Török3ffffac2009-06-17 18:48:18 +00001365 DEBUG(
Dan Gohman0be10b02009-07-25 01:43:01 +00001366 errs() << "GVN: non-local load ";
1367 WriteAsOperand(errs(), LI);
Chris Lattner1a957962009-12-09 07:08:01 +00001368 errs() << " is clobbered by " << *Deps[0].getResult().getInst() << '\n';
Edwin Török3ffffac2009-06-17 18:48:18 +00001369 );
Chris Lattner8d1686f2008-12-18 00:51:32 +00001370 return false;
Edwin Török3ffffac2009-06-17 18:48:18 +00001371 }
Daniel Dunbar3be44e62009-09-20 02:20:51 +00001372
Chris Lattnerdcded152008-12-02 08:16:11 +00001373 // Filter out useless results (non-locals, etc). Keep track of the blocks
1374 // where we have a value available in repl, also keep track of whether we see
1375 // dependencies that produce an unknown value for the load (such as a call
1376 // that could potentially clobber the load).
Chris Lattner19b84b32009-09-21 06:30:24 +00001377 SmallVector<AvailableValueInBlock, 16> ValuesPerBlock;
Chris Lattnerdcded152008-12-02 08:16:11 +00001378 SmallVector<BasicBlock*, 16> UnavailableBlocks;
Daniel Dunbar3be44e62009-09-20 02:20:51 +00001379
Chris Lattnerd6b1d052009-09-20 20:09:34 +00001380 const TargetData *TD = 0;
1381
Chris Lattneraf713862008-12-09 19:25:07 +00001382 for (unsigned i = 0, e = Deps.size(); i != e; ++i) {
Chris Lattner1a957962009-12-09 07:08:01 +00001383 BasicBlock *DepBB = Deps[i].getBB();
1384 MemDepResult DepInfo = Deps[i].getResult();
Daniel Dunbar3be44e62009-09-20 02:20:51 +00001385
Chris Lattner4531da82008-12-05 21:04:20 +00001386 if (DepInfo.isClobber()) {
Chris Lattner091a1d22009-12-09 18:21:46 +00001387 // The address being loaded in this non-local block may not be the same as
1388 // the pointer operand of the load if PHI translation occurs. Make sure
1389 // to consider the right address.
1390 Value *Address = Deps[i].getAddress();
1391
Chris Lattneraae7fcb2009-09-21 06:48:08 +00001392 // If the dependence is to a store that writes to a superset of the bits
1393 // read by the load, we can extract the bits we need for the load from the
1394 // stored value.
1395 if (StoreInst *DepSI = dyn_cast<StoreInst>(DepInfo.getInst())) {
1396 if (TD == 0)
1397 TD = getAnalysisIfAvailable<TargetData>();
Chris Lattner091a1d22009-12-09 18:21:46 +00001398 if (TD && Address) {
1399 int Offset = AnalyzeLoadFromClobberingStore(LI->getType(), Address,
Chris Lattnerfd9feaa2009-12-09 07:37:07 +00001400 DepSI, *TD);
Chris Lattneraae7fcb2009-09-21 06:48:08 +00001401 if (Offset != -1) {
1402 ValuesPerBlock.push_back(AvailableValueInBlock::get(DepBB,
1403 DepSI->getOperand(0),
1404 Offset));
1405 continue;
1406 }
1407 }
1408 }
Chris Lattnercb00f732009-12-06 01:57:02 +00001409
Chris Lattnercb00f732009-12-06 01:57:02 +00001410 // If the clobbering value is a memset/memcpy/memmove, see if we can
1411 // forward a value on from it.
Chris Lattnera96e53a2009-12-06 04:54:31 +00001412 if (MemIntrinsic *DepMI = dyn_cast<MemIntrinsic>(DepInfo.getInst())) {
Chris Lattnercb00f732009-12-06 01:57:02 +00001413 if (TD == 0)
1414 TD = getAnalysisIfAvailable<TargetData>();
Chris Lattner091a1d22009-12-09 18:21:46 +00001415 if (TD && Address) {
1416 int Offset = AnalyzeLoadFromClobberingMemInst(LI->getType(), Address,
Chris Lattnerfd9feaa2009-12-09 07:37:07 +00001417 DepMI, *TD);
Chris Lattnera96e53a2009-12-06 04:54:31 +00001418 if (Offset != -1) {
1419 ValuesPerBlock.push_back(AvailableValueInBlock::getMI(DepBB, DepMI,
1420 Offset));
1421 continue;
1422 }
Chris Lattnercb00f732009-12-06 01:57:02 +00001423 }
1424 }
Chris Lattneraae7fcb2009-09-21 06:48:08 +00001425
Chris Lattner4531da82008-12-05 21:04:20 +00001426 UnavailableBlocks.push_back(DepBB);
1427 continue;
1428 }
Daniel Dunbar3be44e62009-09-20 02:20:51 +00001429
Chris Lattner4531da82008-12-05 21:04:20 +00001430 Instruction *DepInst = DepInfo.getInst();
Daniel Dunbar3be44e62009-09-20 02:20:51 +00001431
Chris Lattner4531da82008-12-05 21:04:20 +00001432 // Loading the allocation -> undef.
Chris Lattnerbc6fccc2009-12-02 06:44:58 +00001433 if (isa<AllocaInst>(DepInst) || isMalloc(DepInst) ||
Owen Andersonf187daf2009-12-02 07:35:19 +00001434 // Loading immediately after lifetime begin -> undef.
1435 isLifetimeStart(DepInst)) {
Chris Lattner19b84b32009-09-21 06:30:24 +00001436 ValuesPerBlock.push_back(AvailableValueInBlock::get(DepBB,
1437 UndefValue::get(LI->getType())));
Chris Lattner46876282008-12-01 01:15:42 +00001438 continue;
1439 }
Owen Andersonc07861a2009-10-28 07:05:35 +00001440
Chris Lattner19b84b32009-09-21 06:30:24 +00001441 if (StoreInst *S = dyn_cast<StoreInst>(DepInst)) {
Daniel Dunbar3be44e62009-09-20 02:20:51 +00001442 // Reject loads and stores that are to the same address but are of
Chris Lattnerd6b1d052009-09-20 20:09:34 +00001443 // different types if we have to.
Chris Lattnerdcded152008-12-02 08:16:11 +00001444 if (S->getOperand(0)->getType() != LI->getType()) {
Chris Lattnerd6b1d052009-09-20 20:09:34 +00001445 if (TD == 0)
1446 TD = getAnalysisIfAvailable<TargetData>();
1447
1448 // If the stored value is larger or equal to the loaded value, we can
1449 // reuse it.
Chris Lattner012b3602009-09-21 17:24:04 +00001450 if (TD == 0 || !CanCoerceMustAliasedValueToLoad(S->getOperand(0),
1451 LI->getType(), *TD)) {
Chris Lattnerd6b1d052009-09-20 20:09:34 +00001452 UnavailableBlocks.push_back(DepBB);
1453 continue;
1454 }
Chris Lattnerdcded152008-12-02 08:16:11 +00001455 }
Daniel Dunbar3be44e62009-09-20 02:20:51 +00001456
Chris Lattner19b84b32009-09-21 06:30:24 +00001457 ValuesPerBlock.push_back(AvailableValueInBlock::get(DepBB,
1458 S->getOperand(0)));
Chris Lattneraae7fcb2009-09-21 06:48:08 +00001459 continue;
1460 }
1461
1462 if (LoadInst *LD = dyn_cast<LoadInst>(DepInst)) {
Chris Lattnerd6b1d052009-09-20 20:09:34 +00001463 // If the types mismatch and we can't handle it, reject reuse of the load.
Chris Lattnerdcded152008-12-02 08:16:11 +00001464 if (LD->getType() != LI->getType()) {
Chris Lattnerd6b1d052009-09-20 20:09:34 +00001465 if (TD == 0)
1466 TD = getAnalysisIfAvailable<TargetData>();
1467
1468 // If the stored value is larger or equal to the loaded value, we can
1469 // reuse it.
Chris Lattner012b3602009-09-21 17:24:04 +00001470 if (TD == 0 || !CanCoerceMustAliasedValueToLoad(LD, LI->getType(),*TD)){
Chris Lattnerd6b1d052009-09-20 20:09:34 +00001471 UnavailableBlocks.push_back(DepBB);
1472 continue;
1473 }
Chris Lattnerdcded152008-12-02 08:16:11 +00001474 }
Chris Lattner19b84b32009-09-21 06:30:24 +00001475 ValuesPerBlock.push_back(AvailableValueInBlock::get(DepBB, LD));
Chris Lattnerdcded152008-12-02 08:16:11 +00001476 continue;
Owen Anderson5d72a422007-07-25 19:57:03 +00001477 }
Chris Lattneraae7fcb2009-09-21 06:48:08 +00001478
1479 UnavailableBlocks.push_back(DepBB);
1480 continue;
Chris Lattner3d7103e2008-03-21 21:14:38 +00001481 }
Daniel Dunbar3be44e62009-09-20 02:20:51 +00001482
Chris Lattnerdcded152008-12-02 08:16:11 +00001483 // If we have no predecessors that produce a known value for this load, exit
1484 // early.
1485 if (ValuesPerBlock.empty()) return false;
Daniel Dunbar3be44e62009-09-20 02:20:51 +00001486
Chris Lattnerdcded152008-12-02 08:16:11 +00001487 // If all of the instructions we depend on produce a known value for this
1488 // load, then it is fully redundant and we can use PHI insertion to compute
1489 // its value. Insert PHIs and remove the fully redundant value now.
1490 if (UnavailableBlocks.empty()) {
Dan Gohman7e124382009-07-31 20:24:18 +00001491 DEBUG(errs() << "GVN REMOVING NONLOCAL LOAD: " << *LI << '\n');
Chris Lattnerd6b1d052009-09-20 20:09:34 +00001492
Chris Lattnerdcded152008-12-02 08:16:11 +00001493 // Perform PHI construction.
Chris Lattner6e5ea272009-10-10 23:50:30 +00001494 Value *V = ConstructSSAForLoadSet(LI, ValuesPerBlock, TD,
1495 VN.getAliasAnalysis());
Chris Lattnerd6b1d052009-09-20 20:09:34 +00001496 LI->replaceAllUsesWith(V);
Daniel Dunbar3be44e62009-09-20 02:20:51 +00001497
Chris Lattnerd6b1d052009-09-20 20:09:34 +00001498 if (isa<PHINode>(V))
1499 V->takeName(LI);
1500 if (isa<PointerType>(V->getType()))
1501 MD->invalidateCachedPointerInfo(V);
Chris Lattnerdcded152008-12-02 08:16:11 +00001502 toErase.push_back(LI);
1503 NumGVNLoad++;
1504 return true;
1505 }
Daniel Dunbar3be44e62009-09-20 02:20:51 +00001506
Chris Lattnerdcded152008-12-02 08:16:11 +00001507 if (!EnablePRE || !EnableLoadPRE)
1508 return false;
1509
1510 // Okay, we have *some* definitions of the value. This means that the value
1511 // is available in some of our (transitive) predecessors. Lets think about
1512 // doing PRE of this load. This will involve inserting a new load into the
1513 // predecessor when it's not available. We could do this in general, but
1514 // prefer to not increase code size. As such, we only do this when we know
1515 // that we only have to insert *one* load (which means we're basically moving
1516 // the load, not inserting a new one).
Daniel Dunbar3be44e62009-09-20 02:20:51 +00001517
Owen Andersondd37b182009-05-31 09:03:40 +00001518 SmallPtrSet<BasicBlock *, 4> Blockers;
1519 for (unsigned i = 0, e = UnavailableBlocks.size(); i != e; ++i)
1520 Blockers.insert(UnavailableBlocks[i]);
1521
1522 // Lets find first basic block with more than one predecessor. Walk backwards
1523 // through predecessors if needed.
Chris Lattnerdcded152008-12-02 08:16:11 +00001524 BasicBlock *LoadBB = LI->getParent();
Owen Andersondd37b182009-05-31 09:03:40 +00001525 BasicBlock *TmpBB = LoadBB;
1526
1527 bool isSinglePred = false;
Dale Johannesena19b67f2009-06-17 20:48:23 +00001528 bool allSingleSucc = true;
Owen Andersondd37b182009-05-31 09:03:40 +00001529 while (TmpBB->getSinglePredecessor()) {
1530 isSinglePred = true;
1531 TmpBB = TmpBB->getSinglePredecessor();
1532 if (!TmpBB) // If haven't found any, bail now.
1533 return false;
1534 if (TmpBB == LoadBB) // Infinite (unreachable) loop.
1535 return false;
1536 if (Blockers.count(TmpBB))
1537 return false;
Dale Johannesena19b67f2009-06-17 20:48:23 +00001538 if (TmpBB->getTerminator()->getNumSuccessors() != 1)
1539 allSingleSucc = false;
Owen Andersondd37b182009-05-31 09:03:40 +00001540 }
Daniel Dunbar3be44e62009-09-20 02:20:51 +00001541
Owen Andersondd37b182009-05-31 09:03:40 +00001542 assert(TmpBB);
1543 LoadBB = TmpBB;
Daniel Dunbar3be44e62009-09-20 02:20:51 +00001544
Chris Lattnerdcded152008-12-02 08:16:11 +00001545 // If we have a repl set with LI itself in it, this means we have a loop where
1546 // at least one of the values is LI. Since this means that we won't be able
1547 // to eliminate LI even if we insert uses in the other predecessors, we will
1548 // end up increasing code size. Reject this by scanning for LI.
1549 for (unsigned i = 0, e = ValuesPerBlock.size(); i != e; ++i)
Chris Lattnera96e53a2009-12-06 04:54:31 +00001550 if (ValuesPerBlock[i].isSimpleValue() &&
1551 ValuesPerBlock[i].getSimpleValue() == LI)
Chris Lattnerdcded152008-12-02 08:16:11 +00001552 return false;
Daniel Dunbar3be44e62009-09-20 02:20:51 +00001553
Chris Lattnera96e53a2009-12-06 04:54:31 +00001554 // FIXME: It is extremely unclear what this loop is doing, other than
1555 // artificially restricting loadpre.
Owen Andersondd37b182009-05-31 09:03:40 +00001556 if (isSinglePred) {
1557 bool isHot = false;
Chris Lattnera96e53a2009-12-06 04:54:31 +00001558 for (unsigned i = 0, e = ValuesPerBlock.size(); i != e; ++i) {
1559 const AvailableValueInBlock &AV = ValuesPerBlock[i];
1560 if (AV.isSimpleValue())
Daniel Dunbar3be44e62009-09-20 02:20:51 +00001561 // "Hot" Instruction is in some loop (because it dominates its dep.
1562 // instruction).
Chris Lattnera96e53a2009-12-06 04:54:31 +00001563 if (Instruction *I = dyn_cast<Instruction>(AV.getSimpleValue()))
1564 if (DT->dominates(LI, I)) {
1565 isHot = true;
1566 break;
1567 }
1568 }
Owen Andersondd37b182009-05-31 09:03:40 +00001569
1570 // We are interested only in "hot" instructions. We don't want to do any
1571 // mis-optimizations here.
1572 if (!isHot)
1573 return false;
1574 }
1575
Chris Lattnerdcded152008-12-02 08:16:11 +00001576 // Okay, we have some hope :). Check to see if the loaded value is fully
1577 // available in all but one predecessor.
1578 // FIXME: If we could restructure the CFG, we could make a common pred with
1579 // all the preds that don't have an available LI and insert a new load into
1580 // that one block.
1581 BasicBlock *UnavailablePred = 0;
1582
Chris Lattner159b98f2008-12-05 07:49:08 +00001583 DenseMap<BasicBlock*, char> FullyAvailableBlocks;
Chris Lattnerdcded152008-12-02 08:16:11 +00001584 for (unsigned i = 0, e = ValuesPerBlock.size(); i != e; ++i)
Chris Lattner19b84b32009-09-21 06:30:24 +00001585 FullyAvailableBlocks[ValuesPerBlock[i].BB] = true;
Chris Lattnerdcded152008-12-02 08:16:11 +00001586 for (unsigned i = 0, e = UnavailableBlocks.size(); i != e; ++i)
1587 FullyAvailableBlocks[UnavailableBlocks[i]] = false;
1588
1589 for (pred_iterator PI = pred_begin(LoadBB), E = pred_end(LoadBB);
1590 PI != E; ++PI) {
1591 if (IsValueFullyAvailableInBlock(*PI, FullyAvailableBlocks))
1592 continue;
Daniel Dunbar3be44e62009-09-20 02:20:51 +00001593
Chris Lattnerdcded152008-12-02 08:16:11 +00001594 // If this load is not available in multiple predecessors, reject it.
1595 if (UnavailablePred && UnavailablePred != *PI)
1596 return false;
1597 UnavailablePred = *PI;
1598 }
Daniel Dunbar3be44e62009-09-20 02:20:51 +00001599
Chris Lattnerdcded152008-12-02 08:16:11 +00001600 assert(UnavailablePred != 0 &&
1601 "Fully available value should be eliminated above!");
Daniel Dunbar3be44e62009-09-20 02:20:51 +00001602
Chris Lattnerdcded152008-12-02 08:16:11 +00001603 // We don't currently handle critical edges :(
1604 if (UnavailablePred->getTerminator()->getNumSuccessors() != 1) {
Daniel Dunbar005975c2009-07-25 00:23:56 +00001605 DEBUG(errs() << "COULD NOT PRE LOAD BECAUSE OF CRITICAL EDGE '"
Dan Gohman7e124382009-07-31 20:24:18 +00001606 << UnavailablePred->getName() << "': " << *LI << '\n');
Chris Lattnerdcded152008-12-02 08:16:11 +00001607 return false;
Owen Anderson5b299672007-08-07 23:12:31 +00001608 }
Chris Lattner248818e2009-11-27 08:25:10 +00001609
Chris Lattnera5bef152009-11-27 22:05:15 +00001610 // Do PHI translation to get its value in the predecessor if necessary. The
1611 // returned pointer (if non-null) is guaranteed to dominate UnavailablePred.
1612 //
Chris Lattner1c2de2b2009-11-28 15:39:14 +00001613 SmallVector<Instruction*, 8> NewInsts;
Chris Lattnerde0b0302009-11-27 22:50:07 +00001614
Chris Lattner80c535b2009-11-28 16:08:18 +00001615 // If all preds have a single successor, then we know it is safe to insert the
1616 // load on the pred (?!?), so we can insert code to materialize the pointer if
1617 // it is not available.
Chris Lattnerefff3222009-12-09 01:59:31 +00001618 PHITransAddr Address(LI->getOperand(0), TD);
1619 Value *LoadPtr = 0;
Chris Lattner80c535b2009-11-28 16:08:18 +00001620 if (allSingleSucc) {
Chris Lattnerefff3222009-12-09 01:59:31 +00001621 LoadPtr = Address.PHITranslateWithInsertion(LoadBB, UnavailablePred,
1622 *DT, NewInsts);
Chris Lattner80c535b2009-11-28 16:08:18 +00001623 } else {
Chris Lattnerefff3222009-12-09 01:59:31 +00001624 Address.PHITranslateValue(LoadBB, UnavailablePred);
1625 LoadPtr = Address.getAddr();
1626
1627 // Make sure the value is live in the predecessor.
1628 if (Instruction *Inst = dyn_cast_or_null<Instruction>(LoadPtr))
1629 if (!DT->dominates(Inst->getParent(), UnavailablePred))
1630 LoadPtr = 0;
1631 }
1632
1633 // If we couldn't find or insert a computation of this phi translated value,
1634 // we fail PRE.
1635 if (LoadPtr == 0) {
1636 assert(NewInsts.empty() && "Shouldn't insert insts on failure");
1637 DEBUG(errs() << "COULDN'T INSERT PHI TRANSLATED VALUE OF: "
1638 << *LI->getOperand(0) << "\n");
1639 return false;
Chris Lattner80c535b2009-11-28 16:08:18 +00001640 }
Owen Anderson2c405b92009-12-03 03:43:29 +00001641
1642 // Assign value numbers to these new instructions.
Chris Lattnerefff3222009-12-09 01:59:31 +00001643 for (unsigned i = 0, e = NewInsts.size(); i != e; ++i) {
Owen Anderson2c405b92009-12-03 03:43:29 +00001644 // FIXME: We really _ought_ to insert these value numbers into their
1645 // parent's availability map. However, in doing so, we risk getting into
1646 // ordering issues. If a block hasn't been processed yet, we would be
1647 // marking a value as AVAIL-IN, which isn't what we intend.
Chris Lattnerefff3222009-12-09 01:59:31 +00001648 VN.lookup_or_add(NewInsts[i]);
Chris Lattner248818e2009-11-27 08:25:10 +00001649 }
1650
Dale Johannesena19b67f2009-06-17 20:48:23 +00001651 // Make sure it is valid to move this load here. We have to watch out for:
1652 // @1 = getelementptr (i8* p, ...
1653 // test p and branch if == 0
1654 // load @1
1655 // It is valid to have the getelementptr before the test, even if p can be 0,
1656 // as getelementptr only does address arithmetic.
1657 // If we are not pushing the value through any multiple-successor blocks
1658 // we do not have this case. Otherwise, check that the load is safe to
1659 // put anywhere; this can be improved, but should be conservatively safe.
1660 if (!allSingleSucc &&
Chris Lattner1c2de2b2009-11-28 15:39:14 +00001661 // FIXME: REEVALUTE THIS.
Chris Lattner80c535b2009-11-28 16:08:18 +00001662 !isSafeToLoadUnconditionally(LoadPtr, UnavailablePred->getTerminator())) {
1663 assert(NewInsts.empty() && "Should not have inserted instructions");
Dale Johannesena19b67f2009-06-17 20:48:23 +00001664 return false;
Chris Lattner80c535b2009-11-28 16:08:18 +00001665 }
Dale Johannesena19b67f2009-06-17 20:48:23 +00001666
Chris Lattnerdcded152008-12-02 08:16:11 +00001667 // Okay, we can eliminate this load by inserting a reload in the predecessor
1668 // and using PHI construction to get the value in the other predecessors, do
1669 // it.
Dan Gohman7e124382009-07-31 20:24:18 +00001670 DEBUG(errs() << "GVN REMOVING PRE LOAD: " << *LI << '\n');
Chris Lattner80c535b2009-11-28 16:08:18 +00001671 DEBUG(if (!NewInsts.empty())
1672 errs() << "INSERTED " << NewInsts.size() << " INSTS: "
1673 << *NewInsts.back() << '\n');
1674
Chris Lattnerdcded152008-12-02 08:16:11 +00001675 Value *NewLoad = new LoadInst(LoadPtr, LI->getName()+".pre", false,
1676 LI->getAlignment(),
1677 UnavailablePred->getTerminator());
Daniel Dunbar3be44e62009-09-20 02:20:51 +00001678
Chris Lattner6e5ea272009-10-10 23:50:30 +00001679 // Add the newly created load.
1680 ValuesPerBlock.push_back(AvailableValueInBlock::get(UnavailablePred,NewLoad));
Daniel Dunbar3be44e62009-09-20 02:20:51 +00001681
Chris Lattnerdcded152008-12-02 08:16:11 +00001682 // Perform PHI construction.
Chris Lattner6e5ea272009-10-10 23:50:30 +00001683 Value *V = ConstructSSAForLoadSet(LI, ValuesPerBlock, TD,
1684 VN.getAliasAnalysis());
Chris Lattnerd6b1d052009-09-20 20:09:34 +00001685 LI->replaceAllUsesWith(V);
1686 if (isa<PHINode>(V))
1687 V->takeName(LI);
1688 if (isa<PointerType>(V->getType()))
1689 MD->invalidateCachedPointerInfo(V);
Chris Lattnerdcded152008-12-02 08:16:11 +00001690 toErase.push_back(LI);
1691 NumPRELoad++;
Owen Anderson5d72a422007-07-25 19:57:03 +00001692 return true;
1693}
1694
Owen Andersone0143452007-08-16 22:02:55 +00001695/// processLoad - Attempt to eliminate a load, first by eliminating it
1696/// locally, and then attempting non-local elimination if that fails.
Chris Lattner4531da82008-12-05 21:04:20 +00001697bool GVN::processLoad(LoadInst *L, SmallVectorImpl<Instruction*> &toErase) {
Dan Gohmanc8d26652009-11-14 02:27:51 +00001698 if (!MD)
1699 return false;
1700
Chris Lattner4531da82008-12-05 21:04:20 +00001701 if (L->isVolatile())
Owen Anderson85c40642007-07-24 17:55:58 +00001702 return false;
Daniel Dunbar3be44e62009-09-20 02:20:51 +00001703
Owen Anderson85c40642007-07-24 17:55:58 +00001704 // ... to a pointer that has been loaded from before...
Chris Lattnerff36c952009-09-21 02:42:51 +00001705 MemDepResult Dep = MD->getDependency(L);
Daniel Dunbar3be44e62009-09-20 02:20:51 +00001706
Chris Lattner4531da82008-12-05 21:04:20 +00001707 // If the value isn't available, don't do anything!
Chris Lattnerff36c952009-09-21 02:42:51 +00001708 if (Dep.isClobber()) {
Chris Lattner0907b522009-09-21 05:57:11 +00001709 // Check to see if we have something like this:
Chris Lattner7741aa52009-09-20 19:03:47 +00001710 // store i32 123, i32* %P
1711 // %A = bitcast i32* %P to i8*
1712 // %B = gep i8* %A, i32 1
1713 // %C = load i8* %B
1714 //
1715 // We could do that by recognizing if the clobber instructions are obviously
1716 // a common base + constant offset, and if the previous store (or memset)
1717 // completely covers this load. This sort of thing can happen in bitfield
1718 // access code.
Chris Lattnercb00f732009-12-06 01:57:02 +00001719 Value *AvailVal = 0;
Chris Lattner0907b522009-09-21 05:57:11 +00001720 if (StoreInst *DepSI = dyn_cast<StoreInst>(Dep.getInst()))
Chris Lattner41eb59c2009-09-21 06:22:46 +00001721 if (const TargetData *TD = getAnalysisIfAvailable<TargetData>()) {
Chris Lattnerfd9feaa2009-12-09 07:37:07 +00001722 int Offset = AnalyzeLoadFromClobberingStore(L->getType(),
1723 L->getPointerOperand(),
1724 DepSI, *TD);
Chris Lattnercb00f732009-12-06 01:57:02 +00001725 if (Offset != -1)
1726 AvailVal = GetStoreValueForLoad(DepSI->getOperand(0), Offset,
1727 L->getType(), L, *TD);
Chris Lattner41eb59c2009-09-21 06:22:46 +00001728 }
Chris Lattner0907b522009-09-21 05:57:11 +00001729
Chris Lattnercb00f732009-12-06 01:57:02 +00001730 // If the clobbering value is a memset/memcpy/memmove, see if we can forward
1731 // a value on from it.
1732 if (MemIntrinsic *DepMI = dyn_cast<MemIntrinsic>(Dep.getInst())) {
1733 if (const TargetData *TD = getAnalysisIfAvailable<TargetData>()) {
Chris Lattnerfd9feaa2009-12-09 07:37:07 +00001734 int Offset = AnalyzeLoadFromClobberingMemInst(L->getType(),
1735 L->getPointerOperand(),
1736 DepMI, *TD);
Chris Lattnercb00f732009-12-06 01:57:02 +00001737 if (Offset != -1)
1738 AvailVal = GetMemInstValueForLoad(DepMI, Offset, L->getType(), L,*TD);
1739 }
1740 }
1741
1742 if (AvailVal) {
1743 DEBUG(errs() << "GVN COERCED INST:\n" << *Dep.getInst() << '\n'
1744 << *AvailVal << '\n' << *L << "\n\n\n");
1745
1746 // Replace the load!
1747 L->replaceAllUsesWith(AvailVal);
1748 if (isa<PointerType>(AvailVal->getType()))
1749 MD->invalidateCachedPointerInfo(AvailVal);
1750 toErase.push_back(L);
1751 NumGVNLoad++;
1752 return true;
1753 }
1754
Edwin Török47cf8842009-05-29 09:46:03 +00001755 DEBUG(
1756 // fast print dep, using operator<< on instruction would be too slow
Dan Gohman0be10b02009-07-25 01:43:01 +00001757 errs() << "GVN: load ";
1758 WriteAsOperand(errs(), L);
Chris Lattnerff36c952009-09-21 02:42:51 +00001759 Instruction *I = Dep.getInst();
Dan Gohman7e124382009-07-31 20:24:18 +00001760 errs() << " is clobbered by " << *I << '\n';
Edwin Török47cf8842009-05-29 09:46:03 +00001761 );
Chris Lattner4531da82008-12-05 21:04:20 +00001762 return false;
Edwin Török47cf8842009-05-29 09:46:03 +00001763 }
Chris Lattner4531da82008-12-05 21:04:20 +00001764
1765 // If it is defined in another block, try harder.
Chris Lattnerff36c952009-09-21 02:42:51 +00001766 if (Dep.isNonLocal())
Chris Lattner4531da82008-12-05 21:04:20 +00001767 return processNonLocalLoad(L, toErase);
Eli Friedman350307f2008-02-12 12:08:14 +00001768
Chris Lattnerff36c952009-09-21 02:42:51 +00001769 Instruction *DepInst = Dep.getInst();
Chris Lattner4531da82008-12-05 21:04:20 +00001770 if (StoreInst *DepSI = dyn_cast<StoreInst>(DepInst)) {
Chris Lattner7741aa52009-09-20 19:03:47 +00001771 Value *StoredVal = DepSI->getOperand(0);
1772
1773 // The store and load are to a must-aliased pointer, but they may not
1774 // actually have the same type. See if we know how to reuse the stored
1775 // value (depending on its type).
1776 const TargetData *TD = 0;
Chris Lattner10460aa2009-10-21 04:11:19 +00001777 if (StoredVal->getType() != L->getType()) {
1778 if ((TD = getAnalysisIfAvailable<TargetData>())) {
1779 StoredVal = CoerceAvailableValueToLoadType(StoredVal, L->getType(),
1780 L, *TD);
1781 if (StoredVal == 0)
1782 return false;
1783
1784 DEBUG(errs() << "GVN COERCED STORE:\n" << *DepSI << '\n' << *StoredVal
1785 << '\n' << *L << "\n\n\n");
1786 }
1787 else
Chris Lattner7741aa52009-09-20 19:03:47 +00001788 return false;
Chris Lattner7741aa52009-09-20 19:03:47 +00001789 }
Daniel Dunbar3be44e62009-09-20 02:20:51 +00001790
Chris Lattner4531da82008-12-05 21:04:20 +00001791 // Remove it!
Chris Lattner7741aa52009-09-20 19:03:47 +00001792 L->replaceAllUsesWith(StoredVal);
1793 if (isa<PointerType>(StoredVal->getType()))
1794 MD->invalidateCachedPointerInfo(StoredVal);
Chris Lattner4531da82008-12-05 21:04:20 +00001795 toErase.push_back(L);
1796 NumGVNLoad++;
1797 return true;
1798 }
1799
1800 if (LoadInst *DepLI = dyn_cast<LoadInst>(DepInst)) {
Chris Lattner7741aa52009-09-20 19:03:47 +00001801 Value *AvailableVal = DepLI;
1802
1803 // The loads are of a must-aliased pointer, but they may not actually have
1804 // the same type. See if we know how to reuse the previously loaded value
1805 // (depending on its type).
1806 const TargetData *TD = 0;
Chris Lattner10460aa2009-10-21 04:11:19 +00001807 if (DepLI->getType() != L->getType()) {
1808 if ((TD = getAnalysisIfAvailable<TargetData>())) {
1809 AvailableVal = CoerceAvailableValueToLoadType(DepLI, L->getType(), L,*TD);
1810 if (AvailableVal == 0)
1811 return false;
Chris Lattner7741aa52009-09-20 19:03:47 +00001812
Chris Lattner10460aa2009-10-21 04:11:19 +00001813 DEBUG(errs() << "GVN COERCED LOAD:\n" << *DepLI << "\n" << *AvailableVal
1814 << "\n" << *L << "\n\n\n");
1815 }
1816 else
1817 return false;
Chris Lattner7741aa52009-09-20 19:03:47 +00001818 }
1819
Chris Lattner4531da82008-12-05 21:04:20 +00001820 // Remove it!
Chris Lattner7741aa52009-09-20 19:03:47 +00001821 L->replaceAllUsesWith(AvailableVal);
Chris Lattnerf81b0142008-12-09 22:06:23 +00001822 if (isa<PointerType>(DepLI->getType()))
1823 MD->invalidateCachedPointerInfo(DepLI);
Chris Lattner4531da82008-12-05 21:04:20 +00001824 toErase.push_back(L);
1825 NumGVNLoad++;
1826 return true;
1827 }
Daniel Dunbar3be44e62009-09-20 02:20:51 +00001828
Chris Lattner8ea60462008-11-30 01:39:32 +00001829 // If this load really doesn't depend on anything, then we must be loading an
1830 // undef value. This can happen when loading for a fresh allocation with no
1831 // intervening stores, for example.
Victor Hernandezb1687302009-10-23 21:09:37 +00001832 if (isa<AllocaInst>(DepInst) || isMalloc(DepInst)) {
Owen Andersonb99ecca2009-07-30 23:03:37 +00001833 L->replaceAllUsesWith(UndefValue::get(L->getType()));
Chris Lattner8ea60462008-11-30 01:39:32 +00001834 toErase.push_back(L);
Chris Lattner8ea60462008-11-30 01:39:32 +00001835 NumGVNLoad++;
Chris Lattner4531da82008-12-05 21:04:20 +00001836 return true;
Eli Friedman350307f2008-02-12 12:08:14 +00001837 }
Owen Andersonc07861a2009-10-28 07:05:35 +00001838
Owen Andersonf187daf2009-12-02 07:35:19 +00001839 // If this load occurs either right after a lifetime begin,
Owen Andersonc07861a2009-10-28 07:05:35 +00001840 // then the loaded value is undefined.
1841 if (IntrinsicInst* II = dyn_cast<IntrinsicInst>(DepInst)) {
Owen Andersonf187daf2009-12-02 07:35:19 +00001842 if (II->getIntrinsicID() == Intrinsic::lifetime_start) {
Owen Andersonc07861a2009-10-28 07:05:35 +00001843 L->replaceAllUsesWith(UndefValue::get(L->getType()));
1844 toErase.push_back(L);
1845 NumGVNLoad++;
1846 return true;
1847 }
1848 }
Eli Friedman350307f2008-02-12 12:08:14 +00001849
Chris Lattner4531da82008-12-05 21:04:20 +00001850 return false;
Owen Anderson85c40642007-07-24 17:55:58 +00001851}
1852
Chris Lattnerff36c952009-09-21 02:42:51 +00001853Value *GVN::lookupNumber(BasicBlock *BB, uint32_t num) {
Owen Andersonaef6a922008-06-23 17:49:45 +00001854 DenseMap<BasicBlock*, ValueNumberScope*>::iterator I = localAvail.find(BB);
1855 if (I == localAvail.end())
1856 return 0;
Daniel Dunbar3be44e62009-09-20 02:20:51 +00001857
Chris Lattnerff36c952009-09-21 02:42:51 +00001858 ValueNumberScope *Locals = I->second;
1859 while (Locals) {
1860 DenseMap<uint32_t, Value*>::iterator I = Locals->table.find(num);
1861 if (I != Locals->table.end())
Owen Anderson2a412722008-06-20 01:15:47 +00001862 return I->second;
Chris Lattnerff36c952009-09-21 02:42:51 +00001863 Locals = Locals->parent;
Owen Anderson2a412722008-06-20 01:15:47 +00001864 }
Daniel Dunbar3be44e62009-09-20 02:20:51 +00001865
Owen Anderson2a412722008-06-20 01:15:47 +00001866 return 0;
1867}
1868
Owen Andersona03e7862008-12-15 02:03:00 +00001869
Owen Andersonf631bb62007-08-14 18:16:29 +00001870/// processInstruction - When calculating availability, handle an instruction
Owen Anderson85c40642007-07-24 17:55:58 +00001871/// by inserting it into the appropriate sets
Owen Anderson9334fc62008-06-12 19:25:32 +00001872bool GVN::processInstruction(Instruction *I,
Chris Lattner7de20452008-03-21 22:01:16 +00001873 SmallVectorImpl<Instruction*> &toErase) {
Chris Lattnerff36c952009-09-21 02:42:51 +00001874 if (LoadInst *LI = dyn_cast<LoadInst>(I)) {
1875 bool Changed = processLoad(LI, toErase);
Daniel Dunbar3be44e62009-09-20 02:20:51 +00001876
Chris Lattnerff36c952009-09-21 02:42:51 +00001877 if (!Changed) {
1878 unsigned Num = VN.lookup_or_add(LI);
1879 localAvail[I->getParent()]->table.insert(std::make_pair(Num, LI));
Owen Andersone6b4ff82008-06-18 21:41:49 +00001880 }
Daniel Dunbar3be44e62009-09-20 02:20:51 +00001881
Chris Lattnerff36c952009-09-21 02:42:51 +00001882 return Changed;
Owen Andersone6b4ff82008-06-18 21:41:49 +00001883 }
Daniel Dunbar3be44e62009-09-20 02:20:51 +00001884
Chris Lattnerff36c952009-09-21 02:42:51 +00001885 uint32_t NextNum = VN.getNextUnusedValueNumber();
1886 unsigned Num = VN.lookup_or_add(I);
Daniel Dunbar3be44e62009-09-20 02:20:51 +00001887
Chris Lattnerff36c952009-09-21 02:42:51 +00001888 if (BranchInst *BI = dyn_cast<BranchInst>(I)) {
1889 localAvail[I->getParent()]->table.insert(std::make_pair(Num, I));
Daniel Dunbar3be44e62009-09-20 02:20:51 +00001890
Owen Andersonef8bf0f2009-04-01 23:53:49 +00001891 if (!BI->isConditional() || isa<Constant>(BI->getCondition()))
1892 return false;
Daniel Dunbar3be44e62009-09-20 02:20:51 +00001893
Chris Lattnerff36c952009-09-21 02:42:51 +00001894 Value *BranchCond = BI->getCondition();
1895 uint32_t CondVN = VN.lookup_or_add(BranchCond);
Daniel Dunbar3be44e62009-09-20 02:20:51 +00001896
Chris Lattnerff36c952009-09-21 02:42:51 +00001897 BasicBlock *TrueSucc = BI->getSuccessor(0);
1898 BasicBlock *FalseSucc = BI->getSuccessor(1);
Daniel Dunbar3be44e62009-09-20 02:20:51 +00001899
Chris Lattnerff36c952009-09-21 02:42:51 +00001900 if (TrueSucc->getSinglePredecessor())
1901 localAvail[TrueSucc]->table[CondVN] =
1902 ConstantInt::getTrue(TrueSucc->getContext());
1903 if (FalseSucc->getSinglePredecessor())
1904 localAvail[FalseSucc]->table[CondVN] =
1905 ConstantInt::getFalse(TrueSucc->getContext());
Owen Andersonef8bf0f2009-04-01 23:53:49 +00001906
1907 return false;
Daniel Dunbar3be44e62009-09-20 02:20:51 +00001908
Owen Andersonced50f82008-04-07 09:59:07 +00001909 // Allocations are always uniquely numbered, so we can save time and memory
Daniel Dunbar3be44e62009-09-20 02:20:51 +00001910 // by fast failing them.
Victor Hernandezb1687302009-10-23 21:09:37 +00001911 } else if (isa<AllocaInst>(I) || isa<TerminatorInst>(I)) {
Chris Lattnerff36c952009-09-21 02:42:51 +00001912 localAvail[I->getParent()]->table.insert(std::make_pair(Num, I));
Owen Andersonced50f82008-04-07 09:59:07 +00001913 return false;
Owen Andersone6b4ff82008-06-18 21:41:49 +00001914 }
Daniel Dunbar3be44e62009-09-20 02:20:51 +00001915
Owen Andersone0143452007-08-16 22:02:55 +00001916 // Collapse PHI nodes
Owen Anderson98f6a6b2007-08-14 18:33:27 +00001917 if (PHINode* p = dyn_cast<PHINode>(I)) {
Chris Lattnerff36c952009-09-21 02:42:51 +00001918 Value *constVal = CollapsePhi(p);
Daniel Dunbar3be44e62009-09-20 02:20:51 +00001919
Owen Anderson98f6a6b2007-08-14 18:33:27 +00001920 if (constVal) {
Owen Andersone02ad522007-08-16 22:51:56 +00001921 p->replaceAllUsesWith(constVal);
Dan Gohmanc8d26652009-11-14 02:27:51 +00001922 if (MD && isa<PointerType>(constVal->getType()))
Chris Lattnerf81b0142008-12-09 22:06:23 +00001923 MD->invalidateCachedPointerInfo(constVal);
Owen Anderson575f2812008-12-23 00:49:51 +00001924 VN.erase(p);
Daniel Dunbar3be44e62009-09-20 02:20:51 +00001925
Owen Andersone02ad522007-08-16 22:51:56 +00001926 toErase.push_back(p);
Owen Andersone6b4ff82008-06-18 21:41:49 +00001927 } else {
Chris Lattnerff36c952009-09-21 02:42:51 +00001928 localAvail[I->getParent()]->table.insert(std::make_pair(Num, I));
Owen Anderson98f6a6b2007-08-14 18:33:27 +00001929 }
Daniel Dunbar3be44e62009-09-20 02:20:51 +00001930
Owen Anderson8a8d13c2008-07-03 17:44:33 +00001931 // If the number we were assigned was a brand new VN, then we don't
1932 // need to do a lookup to see if the number already exists
1933 // somewhere in the domtree: it can't!
Chris Lattnerff36c952009-09-21 02:42:51 +00001934 } else if (Num == NextNum) {
1935 localAvail[I->getParent()]->table.insert(std::make_pair(Num, I));
Daniel Dunbar3be44e62009-09-20 02:20:51 +00001936
Owen Andersona03e7862008-12-15 02:03:00 +00001937 // Perform fast-path value-number based elimination of values inherited from
1938 // dominators.
Chris Lattnerff36c952009-09-21 02:42:51 +00001939 } else if (Value *repl = lookupNumber(I->getParent(), Num)) {
Owen Andersonc772be72007-12-08 01:37:09 +00001940 // Remove it!
Owen Anderson5aff8002007-07-31 23:27:13 +00001941 VN.erase(I);
Owen Anderson85c40642007-07-24 17:55:58 +00001942 I->replaceAllUsesWith(repl);
Dan Gohmanc8d26652009-11-14 02:27:51 +00001943 if (MD && isa<PointerType>(repl->getType()))
Chris Lattnerf81b0142008-12-09 22:06:23 +00001944 MD->invalidateCachedPointerInfo(repl);
Owen Anderson85c40642007-07-24 17:55:58 +00001945 toErase.push_back(I);
1946 return true;
Owen Andersona03e7862008-12-15 02:03:00 +00001947
Owen Anderson8a8d13c2008-07-03 17:44:33 +00001948 } else {
Chris Lattnerff36c952009-09-21 02:42:51 +00001949 localAvail[I->getParent()]->table.insert(std::make_pair(Num, I));
Owen Anderson85c40642007-07-24 17:55:58 +00001950 }
Daniel Dunbar3be44e62009-09-20 02:20:51 +00001951
Owen Anderson85c40642007-07-24 17:55:58 +00001952 return false;
1953}
1954
Bill Wendling42f17f62008-12-22 22:32:22 +00001955/// runOnFunction - This is the main transformation entry point for a function.
Owen Andersonbe168b32007-08-14 18:04:11 +00001956bool GVN::runOnFunction(Function& F) {
Dan Gohmanc8d26652009-11-14 02:27:51 +00001957 if (!NoLoads)
1958 MD = &getAnalysis<MemoryDependenceAnalysis>();
Chris Lattner02ca4422008-12-01 00:40:32 +00001959 DT = &getAnalysis<DominatorTree>();
Owen Andersonbcf2bd52008-05-12 20:15:55 +00001960 VN.setAliasAnalysis(&getAnalysis<AliasAnalysis>());
Chris Lattner02ca4422008-12-01 00:40:32 +00001961 VN.setMemDep(MD);
1962 VN.setDomTree(DT);
Daniel Dunbar3be44e62009-09-20 02:20:51 +00001963
Chris Lattnerff36c952009-09-21 02:42:51 +00001964 bool Changed = false;
1965 bool ShouldContinue = true;
Daniel Dunbar3be44e62009-09-20 02:20:51 +00001966
Owen Anderson26ed2572008-07-16 17:52:31 +00001967 // Merge unconditional branches, allowing PRE to catch more
1968 // optimization opportunities.
1969 for (Function::iterator FI = F.begin(), FE = F.end(); FI != FE; ) {
Chris Lattnerff36c952009-09-21 02:42:51 +00001970 BasicBlock *BB = FI;
Owen Anderson26ed2572008-07-16 17:52:31 +00001971 ++FI;
Owen Andersonf59eef82008-07-17 00:01:40 +00001972 bool removedBlock = MergeBlockIntoPredecessor(BB, this);
1973 if (removedBlock) NumGVNBlocks++;
Daniel Dunbar3be44e62009-09-20 02:20:51 +00001974
Chris Lattnerff36c952009-09-21 02:42:51 +00001975 Changed |= removedBlock;
Owen Anderson26ed2572008-07-16 17:52:31 +00001976 }
Daniel Dunbar3be44e62009-09-20 02:20:51 +00001977
Chris Lattner4bab29b2008-12-09 19:21:47 +00001978 unsigned Iteration = 0;
Daniel Dunbar3be44e62009-09-20 02:20:51 +00001979
Chris Lattnerff36c952009-09-21 02:42:51 +00001980 while (ShouldContinue) {
Dan Gohman0be10b02009-07-25 01:43:01 +00001981 DEBUG(errs() << "GVN iteration: " << Iteration << "\n");
Chris Lattnerff36c952009-09-21 02:42:51 +00001982 ShouldContinue = iterateOnFunction(F);
1983 Changed |= ShouldContinue;
Chris Lattner4bab29b2008-12-09 19:21:47 +00001984 ++Iteration;
Owen Andersonbe168b32007-08-14 18:04:11 +00001985 }
Daniel Dunbar3be44e62009-09-20 02:20:51 +00001986
Owen Anderson916f4732008-07-18 18:03:38 +00001987 if (EnablePRE) {
Owen Anderson9c935902008-09-03 23:06:07 +00001988 bool PREChanged = true;
1989 while (PREChanged) {
1990 PREChanged = performPRE(F);
Chris Lattnerff36c952009-09-21 02:42:51 +00001991 Changed |= PREChanged;
Owen Anderson9c935902008-09-03 23:06:07 +00001992 }
Owen Anderson916f4732008-07-18 18:03:38 +00001993 }
Chris Lattner4bab29b2008-12-09 19:21:47 +00001994 // FIXME: Should perform GVN again after PRE does something. PRE can move
1995 // computations into blocks where they become fully redundant. Note that
1996 // we can't do this until PRE's critical edge splitting updates memdep.
1997 // Actually, when this happens, we should just fully integrate PRE into GVN.
Nuno Lopes274474b2008-10-10 16:25:50 +00001998
1999 cleanupGlobalSets();
2000
Chris Lattnerff36c952009-09-21 02:42:51 +00002001 return Changed;
Owen Andersonbe168b32007-08-14 18:04:11 +00002002}
2003
2004
Chris Lattnerff36c952009-09-21 02:42:51 +00002005bool GVN::processBlock(BasicBlock *BB) {
Chris Lattner4bab29b2008-12-09 19:21:47 +00002006 // FIXME: Kill off toErase by doing erasing eagerly in a helper function (and
2007 // incrementing BI before processing an instruction).
Owen Anderson9334fc62008-06-12 19:25:32 +00002008 SmallVector<Instruction*, 8> toErase;
Chris Lattnerff36c952009-09-21 02:42:51 +00002009 bool ChangedFunction = false;
Daniel Dunbar3be44e62009-09-20 02:20:51 +00002010
Owen Anderson9334fc62008-06-12 19:25:32 +00002011 for (BasicBlock::iterator BI = BB->begin(), BE = BB->end();
2012 BI != BE;) {
Chris Lattnerff36c952009-09-21 02:42:51 +00002013 ChangedFunction |= processInstruction(BI, toErase);
Owen Anderson9334fc62008-06-12 19:25:32 +00002014 if (toErase.empty()) {
2015 ++BI;
2016 continue;
2017 }
Daniel Dunbar3be44e62009-09-20 02:20:51 +00002018
Owen Anderson9334fc62008-06-12 19:25:32 +00002019 // If we need some instructions deleted, do it now.
2020 NumGVNInstr += toErase.size();
Daniel Dunbar3be44e62009-09-20 02:20:51 +00002021
Owen Anderson9334fc62008-06-12 19:25:32 +00002022 // Avoid iterator invalidation.
2023 bool AtStart = BI == BB->begin();
2024 if (!AtStart)
2025 --BI;
2026
2027 for (SmallVector<Instruction*, 4>::iterator I = toErase.begin(),
Chris Lattner02ca4422008-12-01 00:40:32 +00002028 E = toErase.end(); I != E; ++I) {
Dan Gohman7e124382009-07-31 20:24:18 +00002029 DEBUG(errs() << "GVN removed: " << **I << '\n');
Dan Gohmanc8d26652009-11-14 02:27:51 +00002030 if (MD) MD->removeInstruction(*I);
Owen Anderson9334fc62008-06-12 19:25:32 +00002031 (*I)->eraseFromParent();
Bill Wendling84049422008-12-22 21:57:30 +00002032 DEBUG(verifyRemoved(*I));
Chris Lattner02ca4422008-12-01 00:40:32 +00002033 }
Chris Lattner4bab29b2008-12-09 19:21:47 +00002034 toErase.clear();
Owen Anderson9334fc62008-06-12 19:25:32 +00002035
2036 if (AtStart)
2037 BI = BB->begin();
2038 else
2039 ++BI;
Owen Anderson9334fc62008-06-12 19:25:32 +00002040 }
Daniel Dunbar3be44e62009-09-20 02:20:51 +00002041
Chris Lattnerff36c952009-09-21 02:42:51 +00002042 return ChangedFunction;
Owen Anderson9334fc62008-06-12 19:25:32 +00002043}
2044
Owen Andersone6b4ff82008-06-18 21:41:49 +00002045/// performPRE - Perform a purely local form of PRE that looks for diamond
2046/// control flow patterns and attempts to perform simple PRE at the join point.
Chris Lattner4790cb42009-10-31 22:11:15 +00002047bool GVN::performPRE(Function &F) {
Chris Lattner66a3a3e2008-12-01 07:35:54 +00002048 bool Changed = false;
Owen Andersonec747c42008-06-19 19:54:19 +00002049 SmallVector<std::pair<TerminatorInst*, unsigned>, 4> toSplit;
Chris Lattner3304b562008-12-01 07:29:03 +00002050 DenseMap<BasicBlock*, Value*> predMap;
Owen Andersone6b4ff82008-06-18 21:41:49 +00002051 for (df_iterator<BasicBlock*> DI = df_begin(&F.getEntryBlock()),
2052 DE = df_end(&F.getEntryBlock()); DI != DE; ++DI) {
Chris Lattnerff36c952009-09-21 02:42:51 +00002053 BasicBlock *CurrentBlock = *DI;
Daniel Dunbar3be44e62009-09-20 02:20:51 +00002054
Owen Andersone6b4ff82008-06-18 21:41:49 +00002055 // Nothing to PRE in the entry block.
2056 if (CurrentBlock == &F.getEntryBlock()) continue;
Daniel Dunbar3be44e62009-09-20 02:20:51 +00002057
Owen Andersone6b4ff82008-06-18 21:41:49 +00002058 for (BasicBlock::iterator BI = CurrentBlock->begin(),
2059 BE = CurrentBlock->end(); BI != BE; ) {
Chris Lattner66a3a3e2008-12-01 07:35:54 +00002060 Instruction *CurInst = BI++;
Duncan Sands2f500832009-05-06 06:49:50 +00002061
Victor Hernandezb1687302009-10-23 21:09:37 +00002062 if (isa<AllocaInst>(CurInst) ||
Victor Hernandez48c3c542009-09-18 22:35:49 +00002063 isa<TerminatorInst>(CurInst) || isa<PHINode>(CurInst) ||
Devang Patele9d08b82009-10-14 17:29:00 +00002064 CurInst->getType()->isVoidTy() ||
Duncan Sands2f500832009-05-06 06:49:50 +00002065 CurInst->mayReadFromMemory() || CurInst->mayHaveSideEffects() ||
John Criswell6e0aa282009-03-10 15:04:53 +00002066 isa<DbgInfoIntrinsic>(CurInst))
Chris Lattner66a3a3e2008-12-01 07:35:54 +00002067 continue;
Duncan Sands2f500832009-05-06 06:49:50 +00002068
Chris Lattnerff36c952009-09-21 02:42:51 +00002069 uint32_t ValNo = VN.lookup(CurInst);
Daniel Dunbar3be44e62009-09-20 02:20:51 +00002070
Owen Andersone6b4ff82008-06-18 21:41:49 +00002071 // Look for the predecessors for PRE opportunities. We're
2072 // only trying to solve the basic diamond case, where
2073 // a value is computed in the successor and one predecessor,
2074 // but not the other. We also explicitly disallow cases
2075 // where the successor is its own predecessor, because they're
2076 // more complicated to get right.
Chris Lattnerff36c952009-09-21 02:42:51 +00002077 unsigned NumWith = 0;
2078 unsigned NumWithout = 0;
2079 BasicBlock *PREPred = 0;
Chris Lattner3304b562008-12-01 07:29:03 +00002080 predMap.clear();
2081
Owen Andersone6b4ff82008-06-18 21:41:49 +00002082 for (pred_iterator PI = pred_begin(CurrentBlock),
2083 PE = pred_end(CurrentBlock); PI != PE; ++PI) {
2084 // We're not interested in PRE where the block is its
Owen Anderson2a412722008-06-20 01:15:47 +00002085 // own predecessor, on in blocks with predecessors
2086 // that are not reachable.
2087 if (*PI == CurrentBlock) {
Chris Lattnerff36c952009-09-21 02:42:51 +00002088 NumWithout = 2;
Owen Anderson2a412722008-06-20 01:15:47 +00002089 break;
2090 } else if (!localAvail.count(*PI)) {
Chris Lattnerff36c952009-09-21 02:42:51 +00002091 NumWithout = 2;
Owen Anderson2a412722008-06-20 01:15:47 +00002092 break;
2093 }
Daniel Dunbar3be44e62009-09-20 02:20:51 +00002094
2095 DenseMap<uint32_t, Value*>::iterator predV =
Chris Lattnerff36c952009-09-21 02:42:51 +00002096 localAvail[*PI]->table.find(ValNo);
Owen Anderson2a412722008-06-20 01:15:47 +00002097 if (predV == localAvail[*PI]->table.end()) {
Owen Andersone6b4ff82008-06-18 21:41:49 +00002098 PREPred = *PI;
Chris Lattnerff36c952009-09-21 02:42:51 +00002099 NumWithout++;
Chris Lattner66a3a3e2008-12-01 07:35:54 +00002100 } else if (predV->second == CurInst) {
Chris Lattnerff36c952009-09-21 02:42:51 +00002101 NumWithout = 2;
Owen Andersone6b4ff82008-06-18 21:41:49 +00002102 } else {
Owen Anderson2a412722008-06-20 01:15:47 +00002103 predMap[*PI] = predV->second;
Chris Lattnerff36c952009-09-21 02:42:51 +00002104 NumWith++;
Owen Andersone6b4ff82008-06-18 21:41:49 +00002105 }
2106 }
Daniel Dunbar3be44e62009-09-20 02:20:51 +00002107
Owen Andersone6b4ff82008-06-18 21:41:49 +00002108 // Don't do PRE when it might increase code size, i.e. when
2109 // we would need to insert instructions in more than one pred.
Chris Lattnerff36c952009-09-21 02:42:51 +00002110 if (NumWithout != 1 || NumWith == 0)
Owen Andersone6b4ff82008-06-18 21:41:49 +00002111 continue;
Chris Lattner4790cb42009-10-31 22:11:15 +00002112
2113 // Don't do PRE across indirect branch.
2114 if (isa<IndirectBrInst>(PREPred->getTerminator()))
2115 continue;
Daniel Dunbar3be44e62009-09-20 02:20:51 +00002116
Owen Andersonec747c42008-06-19 19:54:19 +00002117 // We can't do PRE safely on a critical edge, so instead we schedule
2118 // the edge to be split and perform the PRE the next time we iterate
2119 // on the function.
Chris Lattnerff36c952009-09-21 02:42:51 +00002120 unsigned SuccNum = 0;
Owen Andersonec747c42008-06-19 19:54:19 +00002121 for (unsigned i = 0, e = PREPred->getTerminator()->getNumSuccessors();
2122 i != e; ++i)
Owen Anderson9c935902008-09-03 23:06:07 +00002123 if (PREPred->getTerminator()->getSuccessor(i) == CurrentBlock) {
Chris Lattnerff36c952009-09-21 02:42:51 +00002124 SuccNum = i;
Owen Andersonec747c42008-06-19 19:54:19 +00002125 break;
2126 }
Daniel Dunbar3be44e62009-09-20 02:20:51 +00002127
Chris Lattnerff36c952009-09-21 02:42:51 +00002128 if (isCriticalEdge(PREPred->getTerminator(), SuccNum)) {
2129 toSplit.push_back(std::make_pair(PREPred->getTerminator(), SuccNum));
Owen Andersonec747c42008-06-19 19:54:19 +00002130 continue;
2131 }
Daniel Dunbar3be44e62009-09-20 02:20:51 +00002132
Owen Andersone6b4ff82008-06-18 21:41:49 +00002133 // Instantiate the expression the in predecessor that lacked it.
2134 // Because we are going top-down through the block, all value numbers
2135 // will be available in the predecessor by the time we need them. Any
2136 // that weren't original present will have been instantiated earlier
2137 // in this loop.
Nick Lewyckyc94270c2009-09-27 07:38:41 +00002138 Instruction *PREInstr = CurInst->clone();
Owen Andersone6b4ff82008-06-18 21:41:49 +00002139 bool success = true;
Chris Lattner66a3a3e2008-12-01 07:35:54 +00002140 for (unsigned i = 0, e = CurInst->getNumOperands(); i != e; ++i) {
2141 Value *Op = PREInstr->getOperand(i);
2142 if (isa<Argument>(Op) || isa<Constant>(Op) || isa<GlobalValue>(Op))
2143 continue;
Daniel Dunbar3be44e62009-09-20 02:20:51 +00002144
Chris Lattner66a3a3e2008-12-01 07:35:54 +00002145 if (Value *V = lookupNumber(PREPred, VN.lookup(Op))) {
2146 PREInstr->setOperand(i, V);
2147 } else {
2148 success = false;
2149 break;
Owen Anderson14c612f2008-07-11 20:05:13 +00002150 }
Owen Andersone6b4ff82008-06-18 21:41:49 +00002151 }
Daniel Dunbar3be44e62009-09-20 02:20:51 +00002152
Owen Andersone6b4ff82008-06-18 21:41:49 +00002153 // Fail out if we encounter an operand that is not available in
Daniel Dunbar3be44e62009-09-20 02:20:51 +00002154 // the PRE predecessor. This is typically because of loads which
Owen Andersone6b4ff82008-06-18 21:41:49 +00002155 // are not value numbered precisely.
2156 if (!success) {
2157 delete PREInstr;
Bill Wendling3858cae2008-12-22 22:14:07 +00002158 DEBUG(verifyRemoved(PREInstr));
Owen Andersone6b4ff82008-06-18 21:41:49 +00002159 continue;
2160 }
Daniel Dunbar3be44e62009-09-20 02:20:51 +00002161
Owen Andersone6b4ff82008-06-18 21:41:49 +00002162 PREInstr->insertBefore(PREPred->getTerminator());
Chris Lattner66a3a3e2008-12-01 07:35:54 +00002163 PREInstr->setName(CurInst->getName() + ".pre");
Owen Anderson2a412722008-06-20 01:15:47 +00002164 predMap[PREPred] = PREInstr;
Chris Lattnerff36c952009-09-21 02:42:51 +00002165 VN.add(PREInstr, ValNo);
Owen Andersone6b4ff82008-06-18 21:41:49 +00002166 NumGVNPRE++;
Daniel Dunbar3be44e62009-09-20 02:20:51 +00002167
Owen Andersone6b4ff82008-06-18 21:41:49 +00002168 // Update the availability map to include the new instruction.
Chris Lattnerff36c952009-09-21 02:42:51 +00002169 localAvail[PREPred]->table.insert(std::make_pair(ValNo, PREInstr));
Daniel Dunbar3be44e62009-09-20 02:20:51 +00002170
Owen Andersone6b4ff82008-06-18 21:41:49 +00002171 // Create a PHI to make the value available in this block.
Chris Lattner66a3a3e2008-12-01 07:35:54 +00002172 PHINode* Phi = PHINode::Create(CurInst->getType(),
2173 CurInst->getName() + ".pre-phi",
Owen Andersone6b4ff82008-06-18 21:41:49 +00002174 CurrentBlock->begin());
2175 for (pred_iterator PI = pred_begin(CurrentBlock),
2176 PE = pred_end(CurrentBlock); PI != PE; ++PI)
Owen Anderson2a412722008-06-20 01:15:47 +00002177 Phi->addIncoming(predMap[*PI], *PI);
Daniel Dunbar3be44e62009-09-20 02:20:51 +00002178
Chris Lattnerff36c952009-09-21 02:42:51 +00002179 VN.add(Phi, ValNo);
2180 localAvail[CurrentBlock]->table[ValNo] = Phi;
Daniel Dunbar3be44e62009-09-20 02:20:51 +00002181
Chris Lattner66a3a3e2008-12-01 07:35:54 +00002182 CurInst->replaceAllUsesWith(Phi);
Dan Gohmanc8d26652009-11-14 02:27:51 +00002183 if (MD && isa<PointerType>(Phi->getType()))
Chris Lattnerf81b0142008-12-09 22:06:23 +00002184 MD->invalidateCachedPointerInfo(Phi);
Chris Lattner66a3a3e2008-12-01 07:35:54 +00002185 VN.erase(CurInst);
Daniel Dunbar3be44e62009-09-20 02:20:51 +00002186
Dan Gohman7e124382009-07-31 20:24:18 +00002187 DEBUG(errs() << "GVN PRE removed: " << *CurInst << '\n');
Dan Gohmanc8d26652009-11-14 02:27:51 +00002188 if (MD) MD->removeInstruction(CurInst);
Chris Lattner66a3a3e2008-12-01 07:35:54 +00002189 CurInst->eraseFromParent();
Bill Wendling84049422008-12-22 21:57:30 +00002190 DEBUG(verifyRemoved(CurInst));
Chris Lattner66a3a3e2008-12-01 07:35:54 +00002191 Changed = true;
Owen Andersone6b4ff82008-06-18 21:41:49 +00002192 }
2193 }
Daniel Dunbar3be44e62009-09-20 02:20:51 +00002194
Owen Andersonec747c42008-06-19 19:54:19 +00002195 for (SmallVector<std::pair<TerminatorInst*, unsigned>, 4>::iterator
Anton Korobeynikov2e8710c2008-12-05 19:38:49 +00002196 I = toSplit.begin(), E = toSplit.end(); I != E; ++I)
Owen Andersonec747c42008-06-19 19:54:19 +00002197 SplitCriticalEdge(I->first, I->second, this);
Daniel Dunbar3be44e62009-09-20 02:20:51 +00002198
Anton Korobeynikov2e8710c2008-12-05 19:38:49 +00002199 return Changed || toSplit.size();
Owen Andersone6b4ff82008-06-18 21:41:49 +00002200}
2201
Bill Wendling42f17f62008-12-22 22:32:22 +00002202/// iterateOnFunction - Executes one iteration of GVN
Owen Andersonbe168b32007-08-14 18:04:11 +00002203bool GVN::iterateOnFunction(Function &F) {
Nuno Lopes274474b2008-10-10 16:25:50 +00002204 cleanupGlobalSets();
Chris Lattner98054902008-03-21 21:33:23 +00002205
Owen Andersonef8bf0f2009-04-01 23:53:49 +00002206 for (df_iterator<DomTreeNode*> DI = df_begin(DT->getRootNode()),
2207 DE = df_end(DT->getRootNode()); DI != DE; ++DI) {
2208 if (DI->getIDom())
2209 localAvail[DI->getBlock()] =
2210 new ValueNumberScope(localAvail[DI->getIDom()->getBlock()]);
2211 else
2212 localAvail[DI->getBlock()] = new ValueNumberScope(0);
2213 }
2214
Owen Anderson85c40642007-07-24 17:55:58 +00002215 // Top-down walk of the dominator tree
Chris Lattnerff36c952009-09-21 02:42:51 +00002216 bool Changed = false;
Owen Andersonef136f52008-12-15 03:52:17 +00002217#if 0
2218 // Needed for value numbering with phi construction to work.
Owen Andersona03e7862008-12-15 02:03:00 +00002219 ReversePostOrderTraversal<Function*> RPOT(&F);
2220 for (ReversePostOrderTraversal<Function*>::rpo_iterator RI = RPOT.begin(),
2221 RE = RPOT.end(); RI != RE; ++RI)
Chris Lattnerff36c952009-09-21 02:42:51 +00002222 Changed |= processBlock(*RI);
Owen Andersonef136f52008-12-15 03:52:17 +00002223#else
2224 for (df_iterator<DomTreeNode*> DI = df_begin(DT->getRootNode()),
2225 DE = df_end(DT->getRootNode()); DI != DE; ++DI)
Chris Lattnerff36c952009-09-21 02:42:51 +00002226 Changed |= processBlock(DI->getBlock());
Owen Andersonef136f52008-12-15 03:52:17 +00002227#endif
2228
Chris Lattnerff36c952009-09-21 02:42:51 +00002229 return Changed;
Owen Anderson85c40642007-07-24 17:55:58 +00002230}
Nuno Lopes274474b2008-10-10 16:25:50 +00002231
2232void GVN::cleanupGlobalSets() {
2233 VN.clear();
Nuno Lopes274474b2008-10-10 16:25:50 +00002234
2235 for (DenseMap<BasicBlock*, ValueNumberScope*>::iterator
2236 I = localAvail.begin(), E = localAvail.end(); I != E; ++I)
2237 delete I->second;
2238 localAvail.clear();
2239}
Bill Wendling2a023742008-12-22 21:36:08 +00002240
2241/// verifyRemoved - Verify that the specified instruction does not occur in our
2242/// internal data structures.
Bill Wendlingf9c0e9e2008-12-22 22:28:56 +00002243void GVN::verifyRemoved(const Instruction *Inst) const {
2244 VN.verifyRemoved(Inst);
Bill Wendling3858cae2008-12-22 22:14:07 +00002245
Bill Wendlingf9c0e9e2008-12-22 22:28:56 +00002246 // Walk through the value number scope to make sure the instruction isn't
2247 // ferreted away in it.
Jeffrey Yasskin8154d2e2009-11-10 01:02:17 +00002248 for (DenseMap<BasicBlock*, ValueNumberScope*>::const_iterator
Bill Wendlingf9c0e9e2008-12-22 22:28:56 +00002249 I = localAvail.begin(), E = localAvail.end(); I != E; ++I) {
2250 const ValueNumberScope *VNS = I->second;
2251
2252 while (VNS) {
Jeffrey Yasskin8154d2e2009-11-10 01:02:17 +00002253 for (DenseMap<uint32_t, Value*>::const_iterator
Bill Wendlingf9c0e9e2008-12-22 22:28:56 +00002254 II = VNS->table.begin(), IE = VNS->table.end(); II != IE; ++II) {
2255 assert(II->second != Inst && "Inst still in value numbering scope!");
2256 }
2257
2258 VNS = VNS->parent;
Bill Wendling3858cae2008-12-22 22:14:07 +00002259 }
2260 }
Bill Wendling2a023742008-12-22 21:36:08 +00002261}