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Chris Lattner72bc70d2008-12-05 07:49:08 +00001//===- GVN.cpp - Eliminate redundant values and loads ---------------------===//
Owen Anderson1ad2cb72007-07-24 17:55:58 +00002//
3// The LLVM Compiler Infrastructure
4//
Chris Lattner4ee451d2007-12-29 20:36:04 +00005// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
Owen Anderson1ad2cb72007-07-24 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 Criswell090c0a22009-03-10 15:04:53 +000013// Note that this pass does the value numbering itself; it does not use the
Matthijs Kooijman845f5242008-06-05 07:55:49 +000014// ValueNumbering analysis passes.
15//
Owen Anderson1ad2cb72007-07-24 17:55:58 +000016//===----------------------------------------------------------------------===//
17
18#define DEBUG_TYPE "gvn"
Owen Anderson1ad2cb72007-07-24 17:55:58 +000019#include "llvm/Transforms/Scalar.h"
Chris Lattnera53cfd12009-12-28 21:28:46 +000020#include "llvm/GlobalVariable.h"
Devang Patelc64bc162009-03-06 02:59:27 +000021#include "llvm/IntrinsicInst.h"
Dan Gohmanf4177aa2010-12-15 23:53:55 +000022#include "llvm/LLVMContext.h"
Owen Andersonb388ca92007-10-18 19:39:33 +000023#include "llvm/Analysis/AliasAnalysis.h"
Chris Lattnerbc9a28d2009-12-06 05:29:56 +000024#include "llvm/Analysis/ConstantFolding.h"
25#include "llvm/Analysis/Dominators.h"
Duncan Sands88c3df72010-11-12 21:10:24 +000026#include "llvm/Analysis/InstructionSimplify.h"
Dan Gohmandd9344f2010-05-28 16:19:17 +000027#include "llvm/Analysis/Loads.h"
Victor Hernandezf006b182009-10-27 20:05:49 +000028#include "llvm/Analysis/MemoryBuiltins.h"
Owen Anderson1ad2cb72007-07-24 17:55:58 +000029#include "llvm/Analysis/MemoryDependenceAnalysis.h"
Chris Lattner05e15f82009-12-09 01:59:31 +000030#include "llvm/Analysis/PHITransAddr.h"
Chris Lattnered58a6f2010-11-30 22:25:26 +000031#include "llvm/Analysis/ValueTracking.h"
Chris Lattner9fc5cdf2011-01-02 22:09:33 +000032#include "llvm/Assembly/Writer.h"
Chris Lattnered58a6f2010-11-30 22:25:26 +000033#include "llvm/Target/TargetData.h"
Chad Rosier618c1db2011-12-01 03:08:23 +000034#include "llvm/Target/TargetLibraryInfo.h"
Chris Lattnered58a6f2010-11-30 22:25:26 +000035#include "llvm/Transforms/Utils/BasicBlockUtils.h"
Chris Lattnered58a6f2010-11-30 22:25:26 +000036#include "llvm/Transforms/Utils/SSAUpdater.h"
37#include "llvm/ADT/DenseMap.h"
38#include "llvm/ADT/DepthFirstIterator.h"
Chris Lattnered58a6f2010-11-30 22:25:26 +000039#include "llvm/ADT/SmallPtrSet.h"
40#include "llvm/ADT/Statistic.h"
Owen Andersona04a0642010-11-18 18:32:40 +000041#include "llvm/Support/Allocator.h"
Owen Andersonaa0b6342008-06-19 19:57:25 +000042#include "llvm/Support/CommandLine.h"
Chris Lattner9f8a6a72008-03-29 04:36:18 +000043#include "llvm/Support/Debug.h"
Chris Lattnerfaf815b2009-12-06 01:57:02 +000044#include "llvm/Support/IRBuilder.h"
Duncan Sands02b5e722011-10-05 14:28:49 +000045#include "llvm/Support/PatternMatch.h"
Owen Anderson1ad2cb72007-07-24 17:55:58 +000046using namespace llvm;
Duncan Sands02b5e722011-10-05 14:28:49 +000047using namespace PatternMatch;
Owen Anderson1ad2cb72007-07-24 17:55:58 +000048
Bill Wendling70ded192008-12-22 22:14:07 +000049STATISTIC(NumGVNInstr, "Number of instructions deleted");
50STATISTIC(NumGVNLoad, "Number of loads deleted");
51STATISTIC(NumGVNPRE, "Number of instructions PRE'd");
Owen Anderson961edc82008-07-15 16:28:06 +000052STATISTIC(NumGVNBlocks, "Number of blocks merged");
Duncan Sands02b5e722011-10-05 14:28:49 +000053STATISTIC(NumGVNSimpl, "Number of instructions simplified");
54STATISTIC(NumGVNEqProp, "Number of equalities propagated");
Bill Wendling70ded192008-12-22 22:14:07 +000055STATISTIC(NumPRELoad, "Number of loads PRE'd");
Chris Lattnerd27290d2008-03-22 04:13:49 +000056
Evan Cheng88d11c02008-06-20 01:01:07 +000057static cl::opt<bool> EnablePRE("enable-pre",
Owen Andersonc2b856e2008-07-17 19:41:00 +000058 cl::init(true), cl::Hidden);
Dan Gohmanc915c952009-06-15 18:30:15 +000059static cl::opt<bool> EnableLoadPRE("enable-load-pre", cl::init(true));
Owen Andersonaa0b6342008-06-19 19:57:25 +000060
Owen Anderson1ad2cb72007-07-24 17:55:58 +000061//===----------------------------------------------------------------------===//
62// ValueTable Class
63//===----------------------------------------------------------------------===//
64
65/// This class holds the mapping between values and value numbers. It is used
66/// as an efficient mechanism to determine the expression-wise equivalence of
67/// two values.
68namespace {
Chris Lattner3e8b6632009-09-02 06:11:42 +000069 struct Expression {
Owen Anderson30f4a552011-01-03 19:00:11 +000070 uint32_t opcode;
Chris Lattnerdb125cf2011-07-18 04:54:35 +000071 Type *type;
Owen Anderson1ad2cb72007-07-24 17:55:58 +000072 SmallVector<uint32_t, 4> varargs;
Daniel Dunbara279bc32009-09-20 02:20:51 +000073
Chris Lattnerad3ba6a2011-04-28 18:08:21 +000074 Expression(uint32_t o = ~2U) : opcode(o) { }
Daniel Dunbara279bc32009-09-20 02:20:51 +000075
Owen Anderson1ad2cb72007-07-24 17:55:58 +000076 bool operator==(const Expression &other) const {
77 if (opcode != other.opcode)
78 return false;
Chris Lattnerad3ba6a2011-04-28 18:08:21 +000079 if (opcode == ~0U || opcode == ~1U)
Owen Anderson1ad2cb72007-07-24 17:55:58 +000080 return true;
Chris Lattnerad3ba6a2011-04-28 18:08:21 +000081 if (type != other.type)
Owen Anderson1ad2cb72007-07-24 17:55:58 +000082 return false;
Chris Lattnerad3ba6a2011-04-28 18:08:21 +000083 if (varargs != other.varargs)
Benjamin Krameraad94aa2010-12-21 21:30:19 +000084 return false;
85 return true;
Owen Anderson1ad2cb72007-07-24 17:55:58 +000086 }
Owen Anderson1ad2cb72007-07-24 17:55:58 +000087 };
Daniel Dunbara279bc32009-09-20 02:20:51 +000088
Chris Lattner3e8b6632009-09-02 06:11:42 +000089 class ValueTable {
Chris Lattnerad3ba6a2011-04-28 18:08:21 +000090 DenseMap<Value*, uint32_t> valueNumbering;
91 DenseMap<Expression, uint32_t> expressionNumbering;
92 AliasAnalysis *AA;
93 MemoryDependenceAnalysis *MD;
94 DominatorTree *DT;
Daniel Dunbara279bc32009-09-20 02:20:51 +000095
Chris Lattnerad3ba6a2011-04-28 18:08:21 +000096 uint32_t nextValueNumber;
Daniel Dunbara279bc32009-09-20 02:20:51 +000097
Chris Lattnerad3ba6a2011-04-28 18:08:21 +000098 Expression create_expression(Instruction* I);
Duncan Sands669011f2012-02-27 08:14:30 +000099 Expression create_cmp_expression(unsigned Opcode,
100 CmpInst::Predicate Predicate,
101 Value *LHS, Value *RHS);
Lang Hames1fb09552011-07-08 01:50:54 +0000102 Expression create_extractvalue_expression(ExtractValueInst* EI);
Chris Lattnerad3ba6a2011-04-28 18:08:21 +0000103 uint32_t lookup_or_add_call(CallInst* C);
104 public:
105 ValueTable() : nextValueNumber(1) { }
106 uint32_t lookup_or_add(Value *V);
107 uint32_t lookup(Value *V) const;
Duncan Sands669011f2012-02-27 08:14:30 +0000108 uint32_t lookup_or_add_cmp(unsigned Opcode, CmpInst::Predicate Pred,
109 Value *LHS, Value *RHS);
Chris Lattnerad3ba6a2011-04-28 18:08:21 +0000110 void add(Value *V, uint32_t num);
111 void clear();
112 void erase(Value *v);
113 void setAliasAnalysis(AliasAnalysis* A) { AA = A; }
114 AliasAnalysis *getAliasAnalysis() const { return AA; }
115 void setMemDep(MemoryDependenceAnalysis* M) { MD = M; }
116 void setDomTree(DominatorTree* D) { DT = D; }
117 uint32_t getNextUnusedValueNumber() { return nextValueNumber; }
118 void verifyRemoved(const Value *) const;
Owen Anderson1ad2cb72007-07-24 17:55:58 +0000119 };
120}
121
122namespace llvm {
Chris Lattner76c1b972007-09-17 18:34:04 +0000123template <> struct DenseMapInfo<Expression> {
Owen Anderson830db6a2007-08-02 18:16:06 +0000124 static inline Expression getEmptyKey() {
Owen Anderson30f4a552011-01-03 19:00:11 +0000125 return ~0U;
Owen Anderson830db6a2007-08-02 18:16:06 +0000126 }
Daniel Dunbara279bc32009-09-20 02:20:51 +0000127
Owen Anderson830db6a2007-08-02 18:16:06 +0000128 static inline Expression getTombstoneKey() {
Owen Anderson30f4a552011-01-03 19:00:11 +0000129 return ~1U;
Owen Anderson830db6a2007-08-02 18:16:06 +0000130 }
Daniel Dunbara279bc32009-09-20 02:20:51 +0000131
Owen Anderson1ad2cb72007-07-24 17:55:58 +0000132 static unsigned getHashValue(const Expression e) {
133 unsigned hash = e.opcode;
Daniel Dunbara279bc32009-09-20 02:20:51 +0000134
Anton Korobeynikov07e6e562008-02-20 11:26:25 +0000135 hash = ((unsigned)((uintptr_t)e.type >> 4) ^
Owen Andersond41ed4e2009-10-19 22:14:22 +0000136 (unsigned)((uintptr_t)e.type >> 9));
Daniel Dunbara279bc32009-09-20 02:20:51 +0000137
Owen Anderson830db6a2007-08-02 18:16:06 +0000138 for (SmallVector<uint32_t, 4>::const_iterator I = e.varargs.begin(),
139 E = e.varargs.end(); I != E; ++I)
Owen Anderson1ad2cb72007-07-24 17:55:58 +0000140 hash = *I + hash * 37;
Owen Anderson30f4a552011-01-03 19:00:11 +0000141
Owen Anderson1ad2cb72007-07-24 17:55:58 +0000142 return hash;
143 }
Chris Lattner76c1b972007-09-17 18:34:04 +0000144 static bool isEqual(const Expression &LHS, const Expression &RHS) {
145 return LHS == RHS;
146 }
Owen Anderson1ad2cb72007-07-24 17:55:58 +0000147};
Chris Lattner4bbf4ee2009-12-15 07:26:43 +0000148
Owen Anderson1ad2cb72007-07-24 17:55:58 +0000149}
150
151//===----------------------------------------------------------------------===//
152// ValueTable Internal Functions
153//===----------------------------------------------------------------------===//
Owen Anderson1ad2cb72007-07-24 17:55:58 +0000154
Owen Anderson30f4a552011-01-03 19:00:11 +0000155Expression ValueTable::create_expression(Instruction *I) {
156 Expression e;
157 e.type = I->getType();
158 e.opcode = I->getOpcode();
159 for (Instruction::op_iterator OI = I->op_begin(), OE = I->op_end();
160 OI != OE; ++OI)
161 e.varargs.push_back(lookup_or_add(*OI));
Duncan Sandse170c762012-02-24 15:16:31 +0000162 if (I->isCommutative()) {
163 // Ensure that commutative instructions that only differ by a permutation
164 // of their operands get the same value number by sorting the operand value
165 // numbers. Since all commutative instructions have two operands it is more
166 // efficient to sort by hand rather than using, say, std::sort.
167 assert(I->getNumOperands() == 2 && "Unsupported commutative instruction!");
168 if (e.varargs[0] > e.varargs[1])
169 std::swap(e.varargs[0], e.varargs[1]);
170 }
Owen Anderson30f4a552011-01-03 19:00:11 +0000171
Lang Hames1fb09552011-07-08 01:50:54 +0000172 if (CmpInst *C = dyn_cast<CmpInst>(I)) {
Duncan Sandse170c762012-02-24 15:16:31 +0000173 // Sort the operand value numbers so x<y and y>x get the same value number.
174 CmpInst::Predicate Predicate = C->getPredicate();
175 if (e.varargs[0] > e.varargs[1]) {
176 std::swap(e.varargs[0], e.varargs[1]);
177 Predicate = CmpInst::getSwappedPredicate(Predicate);
178 }
179 e.opcode = (C->getOpcode() << 8) | Predicate;
Owen Anderson30f4a552011-01-03 19:00:11 +0000180 } else if (InsertValueInst *E = dyn_cast<InsertValueInst>(I)) {
181 for (InsertValueInst::idx_iterator II = E->idx_begin(), IE = E->idx_end();
182 II != IE; ++II)
183 e.varargs.push_back(*II);
Owen Anderson1ad2cb72007-07-24 17:55:58 +0000184 }
Owen Anderson30f4a552011-01-03 19:00:11 +0000185
Owen Andersond41ed4e2009-10-19 22:14:22 +0000186 return e;
187}
188
Duncan Sands669011f2012-02-27 08:14:30 +0000189Expression ValueTable::create_cmp_expression(unsigned Opcode,
190 CmpInst::Predicate Predicate,
191 Value *LHS, Value *RHS) {
192 assert((Opcode == Instruction::ICmp || Opcode == Instruction::FCmp) &&
193 "Not a comparison!");
194 Expression e;
195 e.type = CmpInst::makeCmpResultType(LHS->getType());
196 e.varargs.push_back(lookup_or_add(LHS));
197 e.varargs.push_back(lookup_or_add(RHS));
198
199 // Sort the operand value numbers so x<y and y>x get the same value number.
200 if (e.varargs[0] > e.varargs[1]) {
201 std::swap(e.varargs[0], e.varargs[1]);
202 Predicate = CmpInst::getSwappedPredicate(Predicate);
203 }
204 e.opcode = (Opcode << 8) | Predicate;
205 return e;
206}
207
Lang Hames1fb09552011-07-08 01:50:54 +0000208Expression ValueTable::create_extractvalue_expression(ExtractValueInst *EI) {
209 assert(EI != 0 && "Not an ExtractValueInst?");
210 Expression e;
211 e.type = EI->getType();
212 e.opcode = 0;
213
214 IntrinsicInst *I = dyn_cast<IntrinsicInst>(EI->getAggregateOperand());
215 if (I != 0 && EI->getNumIndices() == 1 && *EI->idx_begin() == 0 ) {
216 // EI might be an extract from one of our recognised intrinsics. If it
217 // is we'll synthesize a semantically equivalent expression instead on
218 // an extract value expression.
219 switch (I->getIntrinsicID()) {
Lang Hamesbd1828c2011-07-09 00:25:11 +0000220 case Intrinsic::sadd_with_overflow:
Lang Hames1fb09552011-07-08 01:50:54 +0000221 case Intrinsic::uadd_with_overflow:
222 e.opcode = Instruction::Add;
223 break;
Lang Hamesbd1828c2011-07-09 00:25:11 +0000224 case Intrinsic::ssub_with_overflow:
Lang Hames1fb09552011-07-08 01:50:54 +0000225 case Intrinsic::usub_with_overflow:
226 e.opcode = Instruction::Sub;
227 break;
Lang Hamesbd1828c2011-07-09 00:25:11 +0000228 case Intrinsic::smul_with_overflow:
Lang Hames1fb09552011-07-08 01:50:54 +0000229 case Intrinsic::umul_with_overflow:
230 e.opcode = Instruction::Mul;
231 break;
232 default:
233 break;
234 }
235
236 if (e.opcode != 0) {
237 // Intrinsic recognized. Grab its args to finish building the expression.
238 assert(I->getNumArgOperands() == 2 &&
239 "Expect two args for recognised intrinsics.");
240 e.varargs.push_back(lookup_or_add(I->getArgOperand(0)));
241 e.varargs.push_back(lookup_or_add(I->getArgOperand(1)));
242 return e;
243 }
244 }
245
246 // Not a recognised intrinsic. Fall back to producing an extract value
247 // expression.
248 e.opcode = EI->getOpcode();
249 for (Instruction::op_iterator OI = EI->op_begin(), OE = EI->op_end();
250 OI != OE; ++OI)
251 e.varargs.push_back(lookup_or_add(*OI));
252
253 for (ExtractValueInst::idx_iterator II = EI->idx_begin(), IE = EI->idx_end();
254 II != IE; ++II)
255 e.varargs.push_back(*II);
256
257 return e;
258}
259
Owen Anderson1ad2cb72007-07-24 17:55:58 +0000260//===----------------------------------------------------------------------===//
261// ValueTable External Functions
262//===----------------------------------------------------------------------===//
263
Owen Andersonb2303722008-06-18 21:41:49 +0000264/// add - Insert a value into the table with a specified value number.
Chris Lattnerb2412a82009-09-21 02:42:51 +0000265void ValueTable::add(Value *V, uint32_t num) {
Owen Andersonb2303722008-06-18 21:41:49 +0000266 valueNumbering.insert(std::make_pair(V, num));
267}
268
Owen Andersond41ed4e2009-10-19 22:14:22 +0000269uint32_t ValueTable::lookup_or_add_call(CallInst* C) {
270 if (AA->doesNotAccessMemory(C)) {
271 Expression exp = create_expression(C);
272 uint32_t& e = expressionNumbering[exp];
273 if (!e) e = nextValueNumber++;
274 valueNumbering[C] = e;
275 return e;
276 } else if (AA->onlyReadsMemory(C)) {
277 Expression exp = create_expression(C);
278 uint32_t& e = expressionNumbering[exp];
279 if (!e) {
280 e = nextValueNumber++;
281 valueNumbering[C] = e;
282 return e;
283 }
Dan Gohman4ec01b22009-11-14 02:27:51 +0000284 if (!MD) {
285 e = nextValueNumber++;
286 valueNumbering[C] = e;
287 return e;
288 }
Owen Andersond41ed4e2009-10-19 22:14:22 +0000289
290 MemDepResult local_dep = MD->getDependency(C);
291
292 if (!local_dep.isDef() && !local_dep.isNonLocal()) {
293 valueNumbering[C] = nextValueNumber;
294 return nextValueNumber++;
295 }
296
297 if (local_dep.isDef()) {
298 CallInst* local_cdep = cast<CallInst>(local_dep.getInst());
299
Gabor Greif237e1da2010-06-30 09:17:53 +0000300 if (local_cdep->getNumArgOperands() != C->getNumArgOperands()) {
Owen Andersond41ed4e2009-10-19 22:14:22 +0000301 valueNumbering[C] = nextValueNumber;
302 return nextValueNumber++;
303 }
304
Gabor Greifd883a9d2010-06-24 10:17:17 +0000305 for (unsigned i = 0, e = C->getNumArgOperands(); i < e; ++i) {
306 uint32_t c_vn = lookup_or_add(C->getArgOperand(i));
307 uint32_t cd_vn = lookup_or_add(local_cdep->getArgOperand(i));
Owen Andersond41ed4e2009-10-19 22:14:22 +0000308 if (c_vn != cd_vn) {
309 valueNumbering[C] = nextValueNumber;
310 return nextValueNumber++;
311 }
312 }
313
314 uint32_t v = lookup_or_add(local_cdep);
315 valueNumbering[C] = v;
316 return v;
317 }
318
319 // Non-local case.
320 const MemoryDependenceAnalysis::NonLocalDepInfo &deps =
321 MD->getNonLocalCallDependency(CallSite(C));
Eli Friedmana990e072011-06-15 00:47:34 +0000322 // FIXME: Move the checking logic to MemDep!
Owen Andersond41ed4e2009-10-19 22:14:22 +0000323 CallInst* cdep = 0;
324
325 // Check to see if we have a single dominating call instruction that is
326 // identical to C.
327 for (unsigned i = 0, e = deps.size(); i != e; ++i) {
Chris Lattnere18b9712009-12-09 07:08:01 +0000328 const NonLocalDepEntry *I = &deps[i];
Chris Lattnere18b9712009-12-09 07:08:01 +0000329 if (I->getResult().isNonLocal())
Owen Andersond41ed4e2009-10-19 22:14:22 +0000330 continue;
331
Eli Friedmana990e072011-06-15 00:47:34 +0000332 // We don't handle non-definitions. If we already have a call, reject
Owen Andersond41ed4e2009-10-19 22:14:22 +0000333 // instruction dependencies.
Eli Friedmana990e072011-06-15 00:47:34 +0000334 if (!I->getResult().isDef() || cdep != 0) {
Owen Andersond41ed4e2009-10-19 22:14:22 +0000335 cdep = 0;
336 break;
337 }
338
Chris Lattnere18b9712009-12-09 07:08:01 +0000339 CallInst *NonLocalDepCall = dyn_cast<CallInst>(I->getResult().getInst());
Owen Andersond41ed4e2009-10-19 22:14:22 +0000340 // FIXME: All duplicated with non-local case.
Chris Lattnere18b9712009-12-09 07:08:01 +0000341 if (NonLocalDepCall && DT->properlyDominates(I->getBB(), C->getParent())){
Owen Andersond41ed4e2009-10-19 22:14:22 +0000342 cdep = NonLocalDepCall;
343 continue;
344 }
345
346 cdep = 0;
347 break;
348 }
349
350 if (!cdep) {
351 valueNumbering[C] = nextValueNumber;
352 return nextValueNumber++;
353 }
354
Gabor Greif237e1da2010-06-30 09:17:53 +0000355 if (cdep->getNumArgOperands() != C->getNumArgOperands()) {
Owen Andersond41ed4e2009-10-19 22:14:22 +0000356 valueNumbering[C] = nextValueNumber;
357 return nextValueNumber++;
358 }
Gabor Greifd883a9d2010-06-24 10:17:17 +0000359 for (unsigned i = 0, e = C->getNumArgOperands(); i < e; ++i) {
360 uint32_t c_vn = lookup_or_add(C->getArgOperand(i));
361 uint32_t cd_vn = lookup_or_add(cdep->getArgOperand(i));
Owen Andersond41ed4e2009-10-19 22:14:22 +0000362 if (c_vn != cd_vn) {
363 valueNumbering[C] = nextValueNumber;
364 return nextValueNumber++;
365 }
366 }
367
368 uint32_t v = lookup_or_add(cdep);
369 valueNumbering[C] = v;
370 return v;
371
372 } else {
373 valueNumbering[C] = nextValueNumber;
374 return nextValueNumber++;
375 }
376}
377
Owen Anderson1ad2cb72007-07-24 17:55:58 +0000378/// lookup_or_add - Returns the value number for the specified value, assigning
379/// it a new number if it did not have one before.
Chris Lattnerb2412a82009-09-21 02:42:51 +0000380uint32_t ValueTable::lookup_or_add(Value *V) {
Owen Anderson1ad2cb72007-07-24 17:55:58 +0000381 DenseMap<Value*, uint32_t>::iterator VI = valueNumbering.find(V);
382 if (VI != valueNumbering.end())
383 return VI->second;
Daniel Dunbara279bc32009-09-20 02:20:51 +0000384
Owen Andersond41ed4e2009-10-19 22:14:22 +0000385 if (!isa<Instruction>(V)) {
Owen Anderson158d86e2009-10-19 21:14:57 +0000386 valueNumbering[V] = nextValueNumber;
Owen Anderson1ad2cb72007-07-24 17:55:58 +0000387 return nextValueNumber++;
388 }
Owen Andersond41ed4e2009-10-19 22:14:22 +0000389
390 Instruction* I = cast<Instruction>(V);
391 Expression exp;
392 switch (I->getOpcode()) {
393 case Instruction::Call:
394 return lookup_or_add_call(cast<CallInst>(I));
395 case Instruction::Add:
396 case Instruction::FAdd:
397 case Instruction::Sub:
398 case Instruction::FSub:
399 case Instruction::Mul:
400 case Instruction::FMul:
401 case Instruction::UDiv:
402 case Instruction::SDiv:
403 case Instruction::FDiv:
404 case Instruction::URem:
405 case Instruction::SRem:
406 case Instruction::FRem:
407 case Instruction::Shl:
408 case Instruction::LShr:
409 case Instruction::AShr:
410 case Instruction::And:
411 case Instruction::Or :
412 case Instruction::Xor:
Owen Andersond41ed4e2009-10-19 22:14:22 +0000413 case Instruction::ICmp:
414 case Instruction::FCmp:
Owen Andersond41ed4e2009-10-19 22:14:22 +0000415 case Instruction::Trunc:
416 case Instruction::ZExt:
417 case Instruction::SExt:
418 case Instruction::FPToUI:
419 case Instruction::FPToSI:
420 case Instruction::UIToFP:
421 case Instruction::SIToFP:
422 case Instruction::FPTrunc:
423 case Instruction::FPExt:
424 case Instruction::PtrToInt:
425 case Instruction::IntToPtr:
426 case Instruction::BitCast:
Owen Andersond41ed4e2009-10-19 22:14:22 +0000427 case Instruction::Select:
Owen Andersond41ed4e2009-10-19 22:14:22 +0000428 case Instruction::ExtractElement:
Owen Andersond41ed4e2009-10-19 22:14:22 +0000429 case Instruction::InsertElement:
Owen Andersond41ed4e2009-10-19 22:14:22 +0000430 case Instruction::ShuffleVector:
Owen Andersond41ed4e2009-10-19 22:14:22 +0000431 case Instruction::InsertValue:
Owen Andersond41ed4e2009-10-19 22:14:22 +0000432 case Instruction::GetElementPtr:
Owen Anderson30f4a552011-01-03 19:00:11 +0000433 exp = create_expression(I);
Owen Andersond41ed4e2009-10-19 22:14:22 +0000434 break;
Lang Hames1fb09552011-07-08 01:50:54 +0000435 case Instruction::ExtractValue:
436 exp = create_extractvalue_expression(cast<ExtractValueInst>(I));
437 break;
Owen Andersond41ed4e2009-10-19 22:14:22 +0000438 default:
439 valueNumbering[V] = nextValueNumber;
440 return nextValueNumber++;
441 }
442
443 uint32_t& e = expressionNumbering[exp];
444 if (!e) e = nextValueNumber++;
445 valueNumbering[V] = e;
446 return e;
Owen Anderson1ad2cb72007-07-24 17:55:58 +0000447}
448
449/// lookup - Returns the value number of the specified value. Fails if
450/// the value has not yet been numbered.
Chris Lattnerb2412a82009-09-21 02:42:51 +0000451uint32_t ValueTable::lookup(Value *V) const {
Jeffrey Yasskin81cf4322009-11-10 01:02:17 +0000452 DenseMap<Value*, uint32_t>::const_iterator VI = valueNumbering.find(V);
Chris Lattner88365bb2008-03-21 21:14:38 +0000453 assert(VI != valueNumbering.end() && "Value not numbered?");
454 return VI->second;
Owen Anderson1ad2cb72007-07-24 17:55:58 +0000455}
456
Duncan Sands669011f2012-02-27 08:14:30 +0000457/// lookup_or_add_cmp - Returns the value number of the given comparison,
458/// assigning it a new number if it did not have one before. Useful when
459/// we deduced the result of a comparison, but don't immediately have an
460/// instruction realizing that comparison to hand.
461uint32_t ValueTable::lookup_or_add_cmp(unsigned Opcode,
462 CmpInst::Predicate Predicate,
463 Value *LHS, Value *RHS) {
464 Expression exp = create_cmp_expression(Opcode, Predicate, LHS, RHS);
465 uint32_t& e = expressionNumbering[exp];
466 if (!e) e = nextValueNumber++;
467 return e;
468}
469
Chris Lattnerad3ba6a2011-04-28 18:08:21 +0000470/// clear - Remove all entries from the ValueTable.
Owen Anderson1ad2cb72007-07-24 17:55:58 +0000471void ValueTable::clear() {
472 valueNumbering.clear();
473 expressionNumbering.clear();
474 nextValueNumber = 1;
475}
476
Chris Lattnerad3ba6a2011-04-28 18:08:21 +0000477/// erase - Remove a value from the value numbering.
Chris Lattnerb2412a82009-09-21 02:42:51 +0000478void ValueTable::erase(Value *V) {
Owen Andersonbf7d0bc2007-07-31 23:27:13 +0000479 valueNumbering.erase(V);
480}
481
Bill Wendling246dbbb2008-12-22 21:36:08 +0000482/// verifyRemoved - Verify that the value is removed from all internal data
483/// structures.
484void ValueTable::verifyRemoved(const Value *V) const {
Jeffrey Yasskin81cf4322009-11-10 01:02:17 +0000485 for (DenseMap<Value*, uint32_t>::const_iterator
Bill Wendling246dbbb2008-12-22 21:36:08 +0000486 I = valueNumbering.begin(), E = valueNumbering.end(); I != E; ++I) {
487 assert(I->first != V && "Inst still occurs in value numbering map!");
488 }
489}
490
Owen Anderson1ad2cb72007-07-24 17:55:58 +0000491//===----------------------------------------------------------------------===//
Bill Wendling30788b82008-12-22 22:32:22 +0000492// GVN Pass
Owen Anderson1ad2cb72007-07-24 17:55:58 +0000493//===----------------------------------------------------------------------===//
494
495namespace {
496
Chris Lattner3e8b6632009-09-02 06:11:42 +0000497 class GVN : public FunctionPass {
Dan Gohman4ec01b22009-11-14 02:27:51 +0000498 bool NoLoads;
Chris Lattner663e4412008-12-01 00:40:32 +0000499 MemoryDependenceAnalysis *MD;
500 DominatorTree *DT;
Chris Lattner4756ecb2011-04-28 16:36:48 +0000501 const TargetData *TD;
Chad Rosier618c1db2011-12-01 03:08:23 +0000502 const TargetLibraryInfo *TLI;
503
Owen Anderson1ad2cb72007-07-24 17:55:58 +0000504 ValueTable VN;
Owen Andersona04a0642010-11-18 18:32:40 +0000505
Owen Andersonb1602ab2011-01-04 19:29:46 +0000506 /// LeaderTable - A mapping from value numbers to lists of Value*'s that
Owen Anderson7a75d612011-01-04 19:13:25 +0000507 /// have that value number. Use findLeader to query it.
508 struct LeaderTableEntry {
Owen Andersonf0568382010-12-21 23:54:34 +0000509 Value *Val;
510 BasicBlock *BB;
Owen Anderson7a75d612011-01-04 19:13:25 +0000511 LeaderTableEntry *Next;
Owen Andersonf0568382010-12-21 23:54:34 +0000512 };
Owen Andersonb1602ab2011-01-04 19:29:46 +0000513 DenseMap<uint32_t, LeaderTableEntry> LeaderTable;
Owen Andersona04a0642010-11-18 18:32:40 +0000514 BumpPtrAllocator TableAllocator;
Owen Anderson68c26392010-11-19 22:48:40 +0000515
Chris Lattnerf07054d2011-04-28 16:18:52 +0000516 SmallVector<Instruction*, 8> InstrsToErase;
Chris Lattner4756ecb2011-04-28 16:36:48 +0000517 public:
518 static char ID; // Pass identification, replacement for typeid
519 explicit GVN(bool noloads = false)
520 : FunctionPass(ID), NoLoads(noloads), MD(0) {
521 initializeGVNPass(*PassRegistry::getPassRegistry());
522 }
523
524 bool runOnFunction(Function &F);
Chris Lattnerf07054d2011-04-28 16:18:52 +0000525
Chris Lattner4756ecb2011-04-28 16:36:48 +0000526 /// markInstructionForDeletion - This removes the specified instruction from
527 /// our various maps and marks it for deletion.
528 void markInstructionForDeletion(Instruction *I) {
529 VN.erase(I);
530 InstrsToErase.push_back(I);
531 }
532
533 const TargetData *getTargetData() const { return TD; }
534 DominatorTree &getDominatorTree() const { return *DT; }
535 AliasAnalysis *getAliasAnalysis() const { return VN.getAliasAnalysis(); }
Chris Lattnerad3ba6a2011-04-28 18:08:21 +0000536 MemoryDependenceAnalysis &getMemDep() const { return *MD; }
Chris Lattner4756ecb2011-04-28 16:36:48 +0000537 private:
Owen Andersonb1602ab2011-01-04 19:29:46 +0000538 /// addToLeaderTable - Push a new Value to the LeaderTable onto the list for
Owen Anderson68c26392010-11-19 22:48:40 +0000539 /// its value number.
Owen Anderson7a75d612011-01-04 19:13:25 +0000540 void addToLeaderTable(uint32_t N, Value *V, BasicBlock *BB) {
Chris Lattner0a9e3d62011-04-28 18:15:47 +0000541 LeaderTableEntry &Curr = LeaderTable[N];
Owen Andersonf0568382010-12-21 23:54:34 +0000542 if (!Curr.Val) {
543 Curr.Val = V;
544 Curr.BB = BB;
Owen Andersona04a0642010-11-18 18:32:40 +0000545 return;
546 }
547
Chris Lattner0a9e3d62011-04-28 18:15:47 +0000548 LeaderTableEntry *Node = TableAllocator.Allocate<LeaderTableEntry>();
Owen Andersonf0568382010-12-21 23:54:34 +0000549 Node->Val = V;
550 Node->BB = BB;
551 Node->Next = Curr.Next;
552 Curr.Next = Node;
Owen Andersona04a0642010-11-18 18:32:40 +0000553 }
554
Owen Andersonb1602ab2011-01-04 19:29:46 +0000555 /// removeFromLeaderTable - Scan the list of values corresponding to a given
556 /// value number, and remove the given value if encountered.
Owen Anderson7a75d612011-01-04 19:13:25 +0000557 void removeFromLeaderTable(uint32_t N, Value *V, BasicBlock *BB) {
558 LeaderTableEntry* Prev = 0;
Owen Andersonb1602ab2011-01-04 19:29:46 +0000559 LeaderTableEntry* Curr = &LeaderTable[N];
Owen Andersona04a0642010-11-18 18:32:40 +0000560
Owen Andersonf0568382010-12-21 23:54:34 +0000561 while (Curr->Val != V || Curr->BB != BB) {
Owen Andersona04a0642010-11-18 18:32:40 +0000562 Prev = Curr;
Owen Andersonf0568382010-12-21 23:54:34 +0000563 Curr = Curr->Next;
Owen Andersona04a0642010-11-18 18:32:40 +0000564 }
565
566 if (Prev) {
Owen Andersonf0568382010-12-21 23:54:34 +0000567 Prev->Next = Curr->Next;
Owen Andersona04a0642010-11-18 18:32:40 +0000568 } else {
Owen Andersonf0568382010-12-21 23:54:34 +0000569 if (!Curr->Next) {
570 Curr->Val = 0;
571 Curr->BB = 0;
Owen Andersona04a0642010-11-18 18:32:40 +0000572 } else {
Owen Anderson7a75d612011-01-04 19:13:25 +0000573 LeaderTableEntry* Next = Curr->Next;
Owen Andersonf0568382010-12-21 23:54:34 +0000574 Curr->Val = Next->Val;
575 Curr->BB = Next->BB;
Owen Anderson680ac4f2011-01-04 19:10:54 +0000576 Curr->Next = Next->Next;
Owen Andersona04a0642010-11-18 18:32:40 +0000577 }
578 }
579 }
Daniel Dunbara279bc32009-09-20 02:20:51 +0000580
Bob Wilson484d4a32010-02-16 19:51:59 +0000581 // List of critical edges to be split between iterations.
582 SmallVector<std::pair<TerminatorInst*, unsigned>, 4> toSplit;
583
Owen Anderson1ad2cb72007-07-24 17:55:58 +0000584 // This transformation requires dominator postdominator info
585 virtual void getAnalysisUsage(AnalysisUsage &AU) const {
Owen Anderson1ad2cb72007-07-24 17:55:58 +0000586 AU.addRequired<DominatorTree>();
Chad Rosier618c1db2011-12-01 03:08:23 +0000587 AU.addRequired<TargetLibraryInfo>();
Dan Gohman4ec01b22009-11-14 02:27:51 +0000588 if (!NoLoads)
589 AU.addRequired<MemoryDependenceAnalysis>();
Owen Andersonb388ca92007-10-18 19:39:33 +0000590 AU.addRequired<AliasAnalysis>();
Daniel Dunbara279bc32009-09-20 02:20:51 +0000591
Owen Andersonb70a5712008-06-23 17:49:45 +0000592 AU.addPreserved<DominatorTree>();
Owen Andersonb388ca92007-10-18 19:39:33 +0000593 AU.addPreserved<AliasAnalysis>();
Owen Anderson1ad2cb72007-07-24 17:55:58 +0000594 }
Chris Lattner4756ecb2011-04-28 16:36:48 +0000595
Daniel Dunbara279bc32009-09-20 02:20:51 +0000596
Owen Anderson1ad2cb72007-07-24 17:55:58 +0000597 // Helper fuctions
598 // FIXME: eliminate or document these better
Chris Lattnerf07054d2011-04-28 16:18:52 +0000599 bool processLoad(LoadInst *L);
600 bool processInstruction(Instruction *I);
601 bool processNonLocalLoad(LoadInst *L);
Chris Lattnerb2412a82009-09-21 02:42:51 +0000602 bool processBlock(BasicBlock *BB);
Chris Lattnerf07054d2011-04-28 16:18:52 +0000603 void dump(DenseMap<uint32_t, Value*> &d);
Owen Anderson3e75a422007-08-14 18:04:11 +0000604 bool iterateOnFunction(Function &F);
Chris Lattnerf07054d2011-04-28 16:18:52 +0000605 bool performPRE(Function &F);
Owen Anderson7a75d612011-01-04 19:13:25 +0000606 Value *findLeader(BasicBlock *BB, uint32_t num);
Nuno Lopes7cdd9ee2008-10-10 16:25:50 +0000607 void cleanupGlobalSets();
Bill Wendling246dbbb2008-12-22 21:36:08 +0000608 void verifyRemoved(const Instruction *I) const;
Bob Wilson484d4a32010-02-16 19:51:59 +0000609 bool splitCriticalEdges();
Duncan Sands02b5e722011-10-05 14:28:49 +0000610 unsigned replaceAllDominatedUsesWith(Value *From, Value *To,
611 BasicBlock *Root);
612 bool propagateEquality(Value *LHS, Value *RHS, BasicBlock *Root);
Owen Anderson1ad2cb72007-07-24 17:55:58 +0000613 };
Daniel Dunbara279bc32009-09-20 02:20:51 +0000614
Owen Anderson1ad2cb72007-07-24 17:55:58 +0000615 char GVN::ID = 0;
Owen Anderson1ad2cb72007-07-24 17:55:58 +0000616}
617
618// createGVNPass - The public interface to this file...
Bob Wilsonb29d7d22010-02-28 05:34:05 +0000619FunctionPass *llvm::createGVNPass(bool NoLoads) {
620 return new GVN(NoLoads);
Dan Gohman4ec01b22009-11-14 02:27:51 +0000621}
Owen Anderson1ad2cb72007-07-24 17:55:58 +0000622
Owen Anderson2ab36d32010-10-12 19:48:12 +0000623INITIALIZE_PASS_BEGIN(GVN, "gvn", "Global Value Numbering", false, false)
624INITIALIZE_PASS_DEPENDENCY(MemoryDependenceAnalysis)
625INITIALIZE_PASS_DEPENDENCY(DominatorTree)
Chad Rosier618c1db2011-12-01 03:08:23 +0000626INITIALIZE_PASS_DEPENDENCY(TargetLibraryInfo)
Owen Anderson2ab36d32010-10-12 19:48:12 +0000627INITIALIZE_AG_DEPENDENCY(AliasAnalysis)
628INITIALIZE_PASS_END(GVN, "gvn", "Global Value Numbering", false, false)
Owen Anderson1ad2cb72007-07-24 17:55:58 +0000629
Owen Andersonb2303722008-06-18 21:41:49 +0000630void GVN::dump(DenseMap<uint32_t, Value*>& d) {
Dan Gohmanad12b262009-12-18 03:25:51 +0000631 errs() << "{\n";
Owen Andersonb2303722008-06-18 21:41:49 +0000632 for (DenseMap<uint32_t, Value*>::iterator I = d.begin(),
Owen Anderson0cd32032007-07-25 19:57:03 +0000633 E = d.end(); I != E; ++I) {
Dan Gohmanad12b262009-12-18 03:25:51 +0000634 errs() << I->first << "\n";
Owen Anderson0cd32032007-07-25 19:57:03 +0000635 I->second->dump();
636 }
Dan Gohmanad12b262009-12-18 03:25:51 +0000637 errs() << "}\n";
Owen Anderson0cd32032007-07-25 19:57:03 +0000638}
639
Chris Lattnerc89c6a92008-12-02 08:16:11 +0000640/// IsValueFullyAvailableInBlock - Return true if we can prove that the value
641/// we're analyzing is fully available in the specified block. As we go, keep
Chris Lattner72bc70d2008-12-05 07:49:08 +0000642/// track of which blocks we know are fully alive in FullyAvailableBlocks. This
643/// map is actually a tri-state map with the following values:
644/// 0) we know the block *is not* fully available.
645/// 1) we know the block *is* fully available.
646/// 2) we do not know whether the block is fully available or not, but we are
647/// currently speculating that it will be.
648/// 3) we are speculating for this block and have used that to speculate for
649/// other blocks.
Daniel Dunbara279bc32009-09-20 02:20:51 +0000650static bool IsValueFullyAvailableInBlock(BasicBlock *BB,
Chris Lattner72bc70d2008-12-05 07:49:08 +0000651 DenseMap<BasicBlock*, char> &FullyAvailableBlocks) {
Chris Lattnerc89c6a92008-12-02 08:16:11 +0000652 // Optimistically assume that the block is fully available and check to see
653 // if we already know about this block in one lookup.
Daniel Dunbara279bc32009-09-20 02:20:51 +0000654 std::pair<DenseMap<BasicBlock*, char>::iterator, char> IV =
Chris Lattner72bc70d2008-12-05 07:49:08 +0000655 FullyAvailableBlocks.insert(std::make_pair(BB, 2));
Chris Lattnerc89c6a92008-12-02 08:16:11 +0000656
657 // If the entry already existed for this block, return the precomputed value.
Chris Lattner72bc70d2008-12-05 07:49:08 +0000658 if (!IV.second) {
659 // If this is a speculative "available" value, mark it as being used for
660 // speculation of other blocks.
661 if (IV.first->second == 2)
662 IV.first->second = 3;
663 return IV.first->second != 0;
664 }
Daniel Dunbara279bc32009-09-20 02:20:51 +0000665
Chris Lattnerc89c6a92008-12-02 08:16:11 +0000666 // Otherwise, see if it is fully available in all predecessors.
667 pred_iterator PI = pred_begin(BB), PE = pred_end(BB);
Daniel Dunbara279bc32009-09-20 02:20:51 +0000668
Chris Lattnerc89c6a92008-12-02 08:16:11 +0000669 // If this block has no predecessors, it isn't live-in here.
670 if (PI == PE)
Chris Lattner72bc70d2008-12-05 07:49:08 +0000671 goto SpeculationFailure;
Daniel Dunbara279bc32009-09-20 02:20:51 +0000672
Chris Lattnerc89c6a92008-12-02 08:16:11 +0000673 for (; PI != PE; ++PI)
674 // If the value isn't fully available in one of our predecessors, then it
675 // isn't fully available in this block either. Undo our previous
676 // optimistic assumption and bail out.
677 if (!IsValueFullyAvailableInBlock(*PI, FullyAvailableBlocks))
Chris Lattner72bc70d2008-12-05 07:49:08 +0000678 goto SpeculationFailure;
Daniel Dunbara279bc32009-09-20 02:20:51 +0000679
Chris Lattnerc89c6a92008-12-02 08:16:11 +0000680 return true;
Daniel Dunbara279bc32009-09-20 02:20:51 +0000681
Chris Lattner72bc70d2008-12-05 07:49:08 +0000682// SpeculationFailure - If we get here, we found out that this is not, after
683// all, a fully-available block. We have a problem if we speculated on this and
684// used the speculation to mark other blocks as available.
685SpeculationFailure:
686 char &BBVal = FullyAvailableBlocks[BB];
Daniel Dunbara279bc32009-09-20 02:20:51 +0000687
Chris Lattner72bc70d2008-12-05 07:49:08 +0000688 // If we didn't speculate on this, just return with it set to false.
689 if (BBVal == 2) {
690 BBVal = 0;
691 return false;
692 }
693
694 // If we did speculate on this value, we could have blocks set to 1 that are
695 // incorrect. Walk the (transitive) successors of this block and mark them as
696 // 0 if set to one.
697 SmallVector<BasicBlock*, 32> BBWorklist;
698 BBWorklist.push_back(BB);
Daniel Dunbara279bc32009-09-20 02:20:51 +0000699
Dan Gohman321a8132010-01-05 16:27:25 +0000700 do {
Chris Lattner72bc70d2008-12-05 07:49:08 +0000701 BasicBlock *Entry = BBWorklist.pop_back_val();
702 // Note that this sets blocks to 0 (unavailable) if they happen to not
703 // already be in FullyAvailableBlocks. This is safe.
704 char &EntryVal = FullyAvailableBlocks[Entry];
705 if (EntryVal == 0) continue; // Already unavailable.
706
707 // Mark as unavailable.
708 EntryVal = 0;
Daniel Dunbara279bc32009-09-20 02:20:51 +0000709
Chris Lattner72bc70d2008-12-05 07:49:08 +0000710 for (succ_iterator I = succ_begin(Entry), E = succ_end(Entry); I != E; ++I)
711 BBWorklist.push_back(*I);
Dan Gohman321a8132010-01-05 16:27:25 +0000712 } while (!BBWorklist.empty());
Daniel Dunbara279bc32009-09-20 02:20:51 +0000713
Chris Lattner72bc70d2008-12-05 07:49:08 +0000714 return false;
Chris Lattnerc89c6a92008-12-02 08:16:11 +0000715}
716
Chris Lattner771a5422009-09-20 20:09:34 +0000717
Chris Lattner8b2bc3d2009-09-21 17:24:04 +0000718/// CanCoerceMustAliasedValueToLoad - Return true if
719/// CoerceAvailableValueToLoadType will succeed.
720static bool CanCoerceMustAliasedValueToLoad(Value *StoredVal,
Chris Lattnerdb125cf2011-07-18 04:54:35 +0000721 Type *LoadTy,
Chris Lattner8b2bc3d2009-09-21 17:24:04 +0000722 const TargetData &TD) {
723 // If the loaded or stored value is an first class array or struct, don't try
724 // to transform them. We need to be able to bitcast to integer.
Duncan Sands1df98592010-02-16 11:11:14 +0000725 if (LoadTy->isStructTy() || LoadTy->isArrayTy() ||
726 StoredVal->getType()->isStructTy() ||
727 StoredVal->getType()->isArrayTy())
Chris Lattner8b2bc3d2009-09-21 17:24:04 +0000728 return false;
729
730 // The store has to be at least as big as the load.
731 if (TD.getTypeSizeInBits(StoredVal->getType()) <
732 TD.getTypeSizeInBits(LoadTy))
733 return false;
734
735 return true;
736}
737
738
Chris Lattner771a5422009-09-20 20:09:34 +0000739/// CoerceAvailableValueToLoadType - If we saw a store of a value to memory, and
740/// then a load from a must-aliased pointer of a different type, try to coerce
741/// the stored value. LoadedTy is the type of the load we want to replace and
742/// InsertPt is the place to insert new instructions.
743///
744/// If we can't do it, return null.
745static Value *CoerceAvailableValueToLoadType(Value *StoredVal,
Chris Lattnerdb125cf2011-07-18 04:54:35 +0000746 Type *LoadedTy,
Chris Lattner771a5422009-09-20 20:09:34 +0000747 Instruction *InsertPt,
748 const TargetData &TD) {
Chris Lattner8b2bc3d2009-09-21 17:24:04 +0000749 if (!CanCoerceMustAliasedValueToLoad(StoredVal, LoadedTy, TD))
750 return 0;
751
Chris Lattner4034e142011-04-28 07:29:08 +0000752 // If this is already the right type, just return it.
Chris Lattnerdb125cf2011-07-18 04:54:35 +0000753 Type *StoredValTy = StoredVal->getType();
Chris Lattner771a5422009-09-20 20:09:34 +0000754
Jakub Staszak8cec7592011-09-02 14:57:37 +0000755 uint64_t StoreSize = TD.getTypeSizeInBits(StoredValTy);
756 uint64_t LoadSize = TD.getTypeSizeInBits(LoadedTy);
Chris Lattner771a5422009-09-20 20:09:34 +0000757
758 // If the store and reload are the same size, we can always reuse it.
759 if (StoreSize == LoadSize) {
Chris Lattner1f821512011-04-26 01:21:15 +0000760 // Pointer to Pointer -> use bitcast.
761 if (StoredValTy->isPointerTy() && LoadedTy->isPointerTy())
Chris Lattner771a5422009-09-20 20:09:34 +0000762 return new BitCastInst(StoredVal, LoadedTy, "", InsertPt);
Chris Lattner771a5422009-09-20 20:09:34 +0000763
764 // Convert source pointers to integers, which can be bitcast.
Duncan Sands1df98592010-02-16 11:11:14 +0000765 if (StoredValTy->isPointerTy()) {
Chris Lattner771a5422009-09-20 20:09:34 +0000766 StoredValTy = TD.getIntPtrType(StoredValTy->getContext());
767 StoredVal = new PtrToIntInst(StoredVal, StoredValTy, "", InsertPt);
768 }
769
Chris Lattnerdb125cf2011-07-18 04:54:35 +0000770 Type *TypeToCastTo = LoadedTy;
Duncan Sands1df98592010-02-16 11:11:14 +0000771 if (TypeToCastTo->isPointerTy())
Chris Lattner771a5422009-09-20 20:09:34 +0000772 TypeToCastTo = TD.getIntPtrType(StoredValTy->getContext());
773
774 if (StoredValTy != TypeToCastTo)
775 StoredVal = new BitCastInst(StoredVal, TypeToCastTo, "", InsertPt);
776
777 // Cast to pointer if the load needs a pointer type.
Duncan Sands1df98592010-02-16 11:11:14 +0000778 if (LoadedTy->isPointerTy())
Chris Lattner771a5422009-09-20 20:09:34 +0000779 StoredVal = new IntToPtrInst(StoredVal, LoadedTy, "", InsertPt);
780
781 return StoredVal;
782 }
783
784 // If the loaded value is smaller than the available value, then we can
785 // extract out a piece from it. If the available value is too small, then we
786 // can't do anything.
Chris Lattner8b2bc3d2009-09-21 17:24:04 +0000787 assert(StoreSize >= LoadSize && "CanCoerceMustAliasedValueToLoad fail");
Chris Lattner771a5422009-09-20 20:09:34 +0000788
789 // Convert source pointers to integers, which can be manipulated.
Duncan Sands1df98592010-02-16 11:11:14 +0000790 if (StoredValTy->isPointerTy()) {
Chris Lattner771a5422009-09-20 20:09:34 +0000791 StoredValTy = TD.getIntPtrType(StoredValTy->getContext());
792 StoredVal = new PtrToIntInst(StoredVal, StoredValTy, "", InsertPt);
793 }
794
795 // Convert vectors and fp to integer, which can be manipulated.
Duncan Sands1df98592010-02-16 11:11:14 +0000796 if (!StoredValTy->isIntegerTy()) {
Chris Lattner771a5422009-09-20 20:09:34 +0000797 StoredValTy = IntegerType::get(StoredValTy->getContext(), StoreSize);
798 StoredVal = new BitCastInst(StoredVal, StoredValTy, "", InsertPt);
799 }
800
801 // If this is a big-endian system, we need to shift the value down to the low
802 // bits so that a truncate will work.
803 if (TD.isBigEndian()) {
804 Constant *Val = ConstantInt::get(StoredVal->getType(), StoreSize-LoadSize);
805 StoredVal = BinaryOperator::CreateLShr(StoredVal, Val, "tmp", InsertPt);
806 }
807
808 // Truncate the integer to the right size now.
Chris Lattnerdb125cf2011-07-18 04:54:35 +0000809 Type *NewIntTy = IntegerType::get(StoredValTy->getContext(), LoadSize);
Chris Lattner771a5422009-09-20 20:09:34 +0000810 StoredVal = new TruncInst(StoredVal, NewIntTy, "trunc", InsertPt);
811
812 if (LoadedTy == NewIntTy)
813 return StoredVal;
814
815 // If the result is a pointer, inttoptr.
Duncan Sands1df98592010-02-16 11:11:14 +0000816 if (LoadedTy->isPointerTy())
Chris Lattner771a5422009-09-20 20:09:34 +0000817 return new IntToPtrInst(StoredVal, LoadedTy, "inttoptr", InsertPt);
818
819 // Otherwise, bitcast.
820 return new BitCastInst(StoredVal, LoadedTy, "bitcast", InsertPt);
821}
822
Chris Lattnerfaf815b2009-12-06 01:57:02 +0000823/// AnalyzeLoadFromClobberingWrite - This function is called when we have a
824/// memdep query of a load that ends up being a clobbering memory write (store,
825/// memset, memcpy, memmove). This means that the write *may* provide bits used
826/// by the load but we can't be sure because the pointers don't mustalias.
827///
828/// Check this case to see if there is anything more we can do before we give
829/// up. This returns -1 if we have to give up, or a byte number in the stored
830/// value of the piece that feeds the load.
Chris Lattnerdb125cf2011-07-18 04:54:35 +0000831static int AnalyzeLoadFromClobberingWrite(Type *LoadTy, Value *LoadPtr,
Chris Lattner03f17da2009-12-09 07:34:10 +0000832 Value *WritePtr,
Chris Lattnerfaf815b2009-12-06 01:57:02 +0000833 uint64_t WriteSizeInBits,
Chris Lattner4fbd14e2009-09-21 06:48:08 +0000834 const TargetData &TD) {
Chad Rosier0cf6b992012-01-30 22:44:13 +0000835 // If the loaded or stored value is a first class array or struct, don't try
Chris Lattner8b2bc3d2009-09-21 17:24:04 +0000836 // to transform them. We need to be able to bitcast to integer.
Duncan Sands1df98592010-02-16 11:11:14 +0000837 if (LoadTy->isStructTy() || LoadTy->isArrayTy())
Chris Lattner8b2bc3d2009-09-21 17:24:04 +0000838 return -1;
839
Chris Lattnerca749402009-09-21 06:24:16 +0000840 int64_t StoreOffset = 0, LoadOffset = 0;
Chris Lattnered58a6f2010-11-30 22:25:26 +0000841 Value *StoreBase = GetPointerBaseWithConstantOffset(WritePtr, StoreOffset,TD);
842 Value *LoadBase = GetPointerBaseWithConstantOffset(LoadPtr, LoadOffset, TD);
Chris Lattnerca749402009-09-21 06:24:16 +0000843 if (StoreBase != LoadBase)
844 return -1;
845
846 // If the load and store are to the exact same address, they should have been
847 // a must alias. AA must have gotten confused.
Chris Lattner219d7742010-03-25 05:58:19 +0000848 // FIXME: Study to see if/when this happens. One case is forwarding a memset
849 // to a load from the base of the memset.
Chris Lattnerca749402009-09-21 06:24:16 +0000850#if 0
Chris Lattner219d7742010-03-25 05:58:19 +0000851 if (LoadOffset == StoreOffset) {
David Greenebf7f78e2010-01-05 01:27:17 +0000852 dbgs() << "STORE/LOAD DEP WITH COMMON POINTER MISSED:\n"
Chris Lattnerca749402009-09-21 06:24:16 +0000853 << "Base = " << *StoreBase << "\n"
Chris Lattnerfaf815b2009-12-06 01:57:02 +0000854 << "Store Ptr = " << *WritePtr << "\n"
855 << "Store Offs = " << StoreOffset << "\n"
Chris Lattnerb6760b42009-12-10 00:04:46 +0000856 << "Load Ptr = " << *LoadPtr << "\n";
Chris Lattnerb3f927f2009-12-09 02:41:54 +0000857 abort();
Chris Lattnerca749402009-09-21 06:24:16 +0000858 }
Chris Lattner219d7742010-03-25 05:58:19 +0000859#endif
Chris Lattnerca749402009-09-21 06:24:16 +0000860
861 // If the load and store don't overlap at all, the store doesn't provide
862 // anything to the load. In this case, they really don't alias at all, AA
863 // must have gotten confused.
Chris Lattner03f17da2009-12-09 07:34:10 +0000864 uint64_t LoadSize = TD.getTypeSizeInBits(LoadTy);
Chris Lattnerca749402009-09-21 06:24:16 +0000865
Chris Lattnerfaf815b2009-12-06 01:57:02 +0000866 if ((WriteSizeInBits & 7) | (LoadSize & 7))
Chris Lattnerca749402009-09-21 06:24:16 +0000867 return -1;
Chris Lattnerfaf815b2009-12-06 01:57:02 +0000868 uint64_t StoreSize = WriteSizeInBits >> 3; // Convert to bytes.
Chris Lattnerca749402009-09-21 06:24:16 +0000869 LoadSize >>= 3;
870
871
872 bool isAAFailure = false;
Chris Lattner219d7742010-03-25 05:58:19 +0000873 if (StoreOffset < LoadOffset)
Chris Lattnerca749402009-09-21 06:24:16 +0000874 isAAFailure = StoreOffset+int64_t(StoreSize) <= LoadOffset;
Chris Lattner219d7742010-03-25 05:58:19 +0000875 else
Chris Lattnerca749402009-09-21 06:24:16 +0000876 isAAFailure = LoadOffset+int64_t(LoadSize) <= StoreOffset;
Chris Lattner219d7742010-03-25 05:58:19 +0000877
Chris Lattnerca749402009-09-21 06:24:16 +0000878 if (isAAFailure) {
879#if 0
David Greenebf7f78e2010-01-05 01:27:17 +0000880 dbgs() << "STORE LOAD DEP WITH COMMON BASE:\n"
Chris Lattnerca749402009-09-21 06:24:16 +0000881 << "Base = " << *StoreBase << "\n"
Chris Lattnerfaf815b2009-12-06 01:57:02 +0000882 << "Store Ptr = " << *WritePtr << "\n"
883 << "Store Offs = " << StoreOffset << "\n"
Chris Lattnerb6760b42009-12-10 00:04:46 +0000884 << "Load Ptr = " << *LoadPtr << "\n";
Chris Lattnerb3f927f2009-12-09 02:41:54 +0000885 abort();
Chris Lattnerca749402009-09-21 06:24:16 +0000886#endif
887 return -1;
888 }
889
890 // If the Load isn't completely contained within the stored bits, we don't
891 // have all the bits to feed it. We could do something crazy in the future
892 // (issue a smaller load then merge the bits in) but this seems unlikely to be
893 // valuable.
894 if (StoreOffset > LoadOffset ||
895 StoreOffset+StoreSize < LoadOffset+LoadSize)
896 return -1;
897
898 // Okay, we can do this transformation. Return the number of bytes into the
899 // store that the load is.
900 return LoadOffset-StoreOffset;
901}
902
Chris Lattnerfaf815b2009-12-06 01:57:02 +0000903/// AnalyzeLoadFromClobberingStore - This function is called when we have a
904/// memdep query of a load that ends up being a clobbering store.
Chris Lattnerdb125cf2011-07-18 04:54:35 +0000905static int AnalyzeLoadFromClobberingStore(Type *LoadTy, Value *LoadPtr,
Chris Lattner4ca70fe2009-12-09 07:37:07 +0000906 StoreInst *DepSI,
Chris Lattnerfaf815b2009-12-06 01:57:02 +0000907 const TargetData &TD) {
908 // Cannot handle reading from store of first-class aggregate yet.
Dan Gohman3355c4e2010-11-10 19:03:33 +0000909 if (DepSI->getValueOperand()->getType()->isStructTy() ||
910 DepSI->getValueOperand()->getType()->isArrayTy())
Chris Lattnerfaf815b2009-12-06 01:57:02 +0000911 return -1;
912
913 Value *StorePtr = DepSI->getPointerOperand();
Dan Gohman3355c4e2010-11-10 19:03:33 +0000914 uint64_t StoreSize =TD.getTypeSizeInBits(DepSI->getValueOperand()->getType());
Chris Lattner4ca70fe2009-12-09 07:37:07 +0000915 return AnalyzeLoadFromClobberingWrite(LoadTy, LoadPtr,
Chris Lattner03f17da2009-12-09 07:34:10 +0000916 StorePtr, StoreSize, TD);
Chris Lattnerfaf815b2009-12-06 01:57:02 +0000917}
918
Chris Lattner1f821512011-04-26 01:21:15 +0000919/// AnalyzeLoadFromClobberingLoad - This function is called when we have a
920/// memdep query of a load that ends up being clobbered by another load. See if
921/// the other load can feed into the second load.
Chris Lattnerdb125cf2011-07-18 04:54:35 +0000922static int AnalyzeLoadFromClobberingLoad(Type *LoadTy, Value *LoadPtr,
Chris Lattner1f821512011-04-26 01:21:15 +0000923 LoadInst *DepLI, const TargetData &TD){
924 // Cannot handle reading from store of first-class aggregate yet.
925 if (DepLI->getType()->isStructTy() || DepLI->getType()->isArrayTy())
926 return -1;
927
928 Value *DepPtr = DepLI->getPointerOperand();
929 uint64_t DepSize = TD.getTypeSizeInBits(DepLI->getType());
Chris Lattner4034e142011-04-28 07:29:08 +0000930 int R = AnalyzeLoadFromClobberingWrite(LoadTy, LoadPtr, DepPtr, DepSize, TD);
931 if (R != -1) return R;
932
933 // If we have a load/load clobber an DepLI can be widened to cover this load,
934 // then we should widen it!
935 int64_t LoadOffs = 0;
936 const Value *LoadBase =
937 GetPointerBaseWithConstantOffset(LoadPtr, LoadOffs, TD);
938 unsigned LoadSize = TD.getTypeStoreSize(LoadTy);
939
940 unsigned Size = MemoryDependenceAnalysis::
941 getLoadLoadClobberFullWidthSize(LoadBase, LoadOffs, LoadSize, DepLI, TD);
942 if (Size == 0) return -1;
943
944 return AnalyzeLoadFromClobberingWrite(LoadTy, LoadPtr, DepPtr, Size*8, TD);
Chris Lattner1f821512011-04-26 01:21:15 +0000945}
946
947
948
Chris Lattnerdb125cf2011-07-18 04:54:35 +0000949static int AnalyzeLoadFromClobberingMemInst(Type *LoadTy, Value *LoadPtr,
Chris Lattner4ca70fe2009-12-09 07:37:07 +0000950 MemIntrinsic *MI,
Chris Lattnerfaf815b2009-12-06 01:57:02 +0000951 const TargetData &TD) {
952 // If the mem operation is a non-constant size, we can't handle it.
953 ConstantInt *SizeCst = dyn_cast<ConstantInt>(MI->getLength());
954 if (SizeCst == 0) return -1;
955 uint64_t MemSizeInBits = SizeCst->getZExtValue()*8;
Chris Lattnerbc9a28d2009-12-06 05:29:56 +0000956
957 // If this is memset, we just need to see if the offset is valid in the size
958 // of the memset..
Chris Lattnerfaf815b2009-12-06 01:57:02 +0000959 if (MI->getIntrinsicID() == Intrinsic::memset)
Chris Lattner4ca70fe2009-12-09 07:37:07 +0000960 return AnalyzeLoadFromClobberingWrite(LoadTy, LoadPtr, MI->getDest(),
961 MemSizeInBits, TD);
Chris Lattnerfaf815b2009-12-06 01:57:02 +0000962
Chris Lattnerbc9a28d2009-12-06 05:29:56 +0000963 // If we have a memcpy/memmove, the only case we can handle is if this is a
964 // copy from constant memory. In that case, we can read directly from the
965 // constant memory.
966 MemTransferInst *MTI = cast<MemTransferInst>(MI);
967
968 Constant *Src = dyn_cast<Constant>(MTI->getSource());
969 if (Src == 0) return -1;
970
Dan Gohmanbd1801b2011-01-24 18:53:32 +0000971 GlobalVariable *GV = dyn_cast<GlobalVariable>(GetUnderlyingObject(Src, &TD));
Chris Lattnerbc9a28d2009-12-06 05:29:56 +0000972 if (GV == 0 || !GV->isConstant()) return -1;
973
974 // See if the access is within the bounds of the transfer.
Chris Lattner4ca70fe2009-12-09 07:37:07 +0000975 int Offset = AnalyzeLoadFromClobberingWrite(LoadTy, LoadPtr,
976 MI->getDest(), MemSizeInBits, TD);
Chris Lattnerbc9a28d2009-12-06 05:29:56 +0000977 if (Offset == -1)
978 return Offset;
979
980 // Otherwise, see if we can constant fold a load from the constant with the
981 // offset applied as appropriate.
982 Src = ConstantExpr::getBitCast(Src,
983 llvm::Type::getInt8PtrTy(Src->getContext()));
984 Constant *OffsetCst =
985 ConstantInt::get(Type::getInt64Ty(Src->getContext()), (unsigned)Offset);
Jay Foaddab3d292011-07-21 14:31:17 +0000986 Src = ConstantExpr::getGetElementPtr(Src, OffsetCst);
Chris Lattner4ca70fe2009-12-09 07:37:07 +0000987 Src = ConstantExpr::getBitCast(Src, PointerType::getUnqual(LoadTy));
Chris Lattnerbc9a28d2009-12-06 05:29:56 +0000988 if (ConstantFoldLoadFromConstPtr(Src, &TD))
989 return Offset;
Chris Lattnerfaf815b2009-12-06 01:57:02 +0000990 return -1;
991}
992
Chris Lattnerca749402009-09-21 06:24:16 +0000993
994/// GetStoreValueForLoad - This function is called when we have a
995/// memdep query of a load that ends up being a clobbering store. This means
Chris Lattner4034e142011-04-28 07:29:08 +0000996/// that the store provides bits used by the load but we the pointers don't
997/// mustalias. Check this case to see if there is anything more we can do
998/// before we give up.
Chris Lattner4fbd14e2009-09-21 06:48:08 +0000999static Value *GetStoreValueForLoad(Value *SrcVal, unsigned Offset,
Chris Lattnerdb125cf2011-07-18 04:54:35 +00001000 Type *LoadTy,
Chris Lattner4fbd14e2009-09-21 06:48:08 +00001001 Instruction *InsertPt, const TargetData &TD){
Chris Lattnerca749402009-09-21 06:24:16 +00001002 LLVMContext &Ctx = SrcVal->getType()->getContext();
1003
Chris Lattner7944c212010-05-08 20:01:44 +00001004 uint64_t StoreSize = (TD.getTypeSizeInBits(SrcVal->getType()) + 7) / 8;
1005 uint64_t LoadSize = (TD.getTypeSizeInBits(LoadTy) + 7) / 8;
Chris Lattnerca749402009-09-21 06:24:16 +00001006
Chris Lattnerb2c6ae82009-12-09 18:13:28 +00001007 IRBuilder<> Builder(InsertPt->getParent(), InsertPt);
Chris Lattnerca749402009-09-21 06:24:16 +00001008
1009 // Compute which bits of the stored value are being used by the load. Convert
1010 // to an integer type to start with.
Duncan Sands1df98592010-02-16 11:11:14 +00001011 if (SrcVal->getType()->isPointerTy())
Benjamin Kramera9390a42011-09-27 20:39:19 +00001012 SrcVal = Builder.CreatePtrToInt(SrcVal, TD.getIntPtrType(Ctx));
Duncan Sands1df98592010-02-16 11:11:14 +00001013 if (!SrcVal->getType()->isIntegerTy())
Benjamin Kramera9390a42011-09-27 20:39:19 +00001014 SrcVal = Builder.CreateBitCast(SrcVal, IntegerType::get(Ctx, StoreSize*8));
Chris Lattnerca749402009-09-21 06:24:16 +00001015
1016 // Shift the bits to the least significant depending on endianness.
1017 unsigned ShiftAmt;
Chris Lattnerfaf815b2009-12-06 01:57:02 +00001018 if (TD.isLittleEndian())
Chris Lattnerca749402009-09-21 06:24:16 +00001019 ShiftAmt = Offset*8;
Chris Lattnerfaf815b2009-12-06 01:57:02 +00001020 else
Chris Lattner19ad7842009-09-21 17:55:47 +00001021 ShiftAmt = (StoreSize-LoadSize-Offset)*8;
Chris Lattnerca749402009-09-21 06:24:16 +00001022
Chris Lattner4fbd14e2009-09-21 06:48:08 +00001023 if (ShiftAmt)
Benjamin Kramera9390a42011-09-27 20:39:19 +00001024 SrcVal = Builder.CreateLShr(SrcVal, ShiftAmt);
Chris Lattnerca749402009-09-21 06:24:16 +00001025
Chris Lattner4fbd14e2009-09-21 06:48:08 +00001026 if (LoadSize != StoreSize)
Benjamin Kramera9390a42011-09-27 20:39:19 +00001027 SrcVal = Builder.CreateTrunc(SrcVal, IntegerType::get(Ctx, LoadSize*8));
Chris Lattnerca749402009-09-21 06:24:16 +00001028
Chris Lattner4fbd14e2009-09-21 06:48:08 +00001029 return CoerceAvailableValueToLoadType(SrcVal, LoadTy, InsertPt, TD);
Chris Lattnerca749402009-09-21 06:24:16 +00001030}
1031
Chad Rosier431985a2012-01-30 21:13:22 +00001032/// GetLoadValueForLoad - This function is called when we have a
Chris Lattner4034e142011-04-28 07:29:08 +00001033/// memdep query of a load that ends up being a clobbering load. This means
1034/// that the load *may* provide bits used by the load but we can't be sure
1035/// because the pointers don't mustalias. Check this case to see if there is
1036/// anything more we can do before we give up.
1037static Value *GetLoadValueForLoad(LoadInst *SrcVal, unsigned Offset,
Chris Lattnerdb125cf2011-07-18 04:54:35 +00001038 Type *LoadTy, Instruction *InsertPt,
Chris Lattner4756ecb2011-04-28 16:36:48 +00001039 GVN &gvn) {
1040 const TargetData &TD = *gvn.getTargetData();
Chris Lattner4034e142011-04-28 07:29:08 +00001041 // If Offset+LoadTy exceeds the size of SrcVal, then we must be wanting to
1042 // widen SrcVal out to a larger load.
1043 unsigned SrcValSize = TD.getTypeStoreSize(SrcVal->getType());
1044 unsigned LoadSize = TD.getTypeStoreSize(LoadTy);
1045 if (Offset+LoadSize > SrcValSize) {
Eli Friedman56efe242011-08-17 22:22:24 +00001046 assert(SrcVal->isSimple() && "Cannot widen volatile/atomic load!");
1047 assert(SrcVal->getType()->isIntegerTy() && "Can't widen non-integer load");
Chris Lattner4034e142011-04-28 07:29:08 +00001048 // If we have a load/load clobber an DepLI can be widened to cover this
1049 // load, then we should widen it to the next power of 2 size big enough!
1050 unsigned NewLoadSize = Offset+LoadSize;
1051 if (!isPowerOf2_32(NewLoadSize))
1052 NewLoadSize = NextPowerOf2(NewLoadSize);
1053
1054 Value *PtrVal = SrcVal->getPointerOperand();
1055
Chris Lattner0a9e3d62011-04-28 18:15:47 +00001056 // Insert the new load after the old load. This ensures that subsequent
1057 // memdep queries will find the new load. We can't easily remove the old
1058 // load completely because it is already in the value numbering table.
1059 IRBuilder<> Builder(SrcVal->getParent(), ++BasicBlock::iterator(SrcVal));
Chris Lattnerdb125cf2011-07-18 04:54:35 +00001060 Type *DestPTy =
Chris Lattner4034e142011-04-28 07:29:08 +00001061 IntegerType::get(LoadTy->getContext(), NewLoadSize*8);
1062 DestPTy = PointerType::get(DestPTy,
1063 cast<PointerType>(PtrVal->getType())->getAddressSpace());
Devang Patel0f18d972011-05-04 23:58:50 +00001064 Builder.SetCurrentDebugLocation(SrcVal->getDebugLoc());
Chris Lattner4034e142011-04-28 07:29:08 +00001065 PtrVal = Builder.CreateBitCast(PtrVal, DestPTy);
1066 LoadInst *NewLoad = Builder.CreateLoad(PtrVal);
1067 NewLoad->takeName(SrcVal);
1068 NewLoad->setAlignment(SrcVal->getAlignment());
Devang Patel0f18d972011-05-04 23:58:50 +00001069
Chris Lattner4034e142011-04-28 07:29:08 +00001070 DEBUG(dbgs() << "GVN WIDENED LOAD: " << *SrcVal << "\n");
1071 DEBUG(dbgs() << "TO: " << *NewLoad << "\n");
1072
1073 // Replace uses of the original load with the wider load. On a big endian
1074 // system, we need to shift down to get the relevant bits.
1075 Value *RV = NewLoad;
1076 if (TD.isBigEndian())
1077 RV = Builder.CreateLShr(RV,
1078 NewLoadSize*8-SrcVal->getType()->getPrimitiveSizeInBits());
1079 RV = Builder.CreateTrunc(RV, SrcVal->getType());
1080 SrcVal->replaceAllUsesWith(RV);
Chris Lattner1e4f44b2011-04-28 20:02:57 +00001081
1082 // We would like to use gvn.markInstructionForDeletion here, but we can't
1083 // because the load is already memoized into the leader map table that GVN
1084 // tracks. It is potentially possible to remove the load from the table,
1085 // but then there all of the operations based on it would need to be
1086 // rehashed. Just leave the dead load around.
Chris Lattnerad3ba6a2011-04-28 18:08:21 +00001087 gvn.getMemDep().removeInstruction(SrcVal);
Chris Lattner4034e142011-04-28 07:29:08 +00001088 SrcVal = NewLoad;
1089 }
1090
1091 return GetStoreValueForLoad(SrcVal, Offset, LoadTy, InsertPt, TD);
1092}
1093
1094
Chris Lattnerfaf815b2009-12-06 01:57:02 +00001095/// GetMemInstValueForLoad - This function is called when we have a
1096/// memdep query of a load that ends up being a clobbering mem intrinsic.
1097static Value *GetMemInstValueForLoad(MemIntrinsic *SrcInst, unsigned Offset,
Chris Lattnerdb125cf2011-07-18 04:54:35 +00001098 Type *LoadTy, Instruction *InsertPt,
Chris Lattnerfaf815b2009-12-06 01:57:02 +00001099 const TargetData &TD){
1100 LLVMContext &Ctx = LoadTy->getContext();
1101 uint64_t LoadSize = TD.getTypeSizeInBits(LoadTy)/8;
1102
1103 IRBuilder<> Builder(InsertPt->getParent(), InsertPt);
1104
1105 // We know that this method is only called when the mem transfer fully
1106 // provides the bits for the load.
1107 if (MemSetInst *MSI = dyn_cast<MemSetInst>(SrcInst)) {
1108 // memset(P, 'x', 1234) -> splat('x'), even if x is a variable, and
1109 // independently of what the offset is.
1110 Value *Val = MSI->getValue();
1111 if (LoadSize != 1)
1112 Val = Builder.CreateZExt(Val, IntegerType::get(Ctx, LoadSize*8));
1113
1114 Value *OneElt = Val;
1115
1116 // Splat the value out to the right number of bits.
1117 for (unsigned NumBytesSet = 1; NumBytesSet != LoadSize; ) {
1118 // If we can double the number of bytes set, do it.
1119 if (NumBytesSet*2 <= LoadSize) {
1120 Value *ShVal = Builder.CreateShl(Val, NumBytesSet*8);
1121 Val = Builder.CreateOr(Val, ShVal);
1122 NumBytesSet <<= 1;
1123 continue;
1124 }
1125
1126 // Otherwise insert one byte at a time.
1127 Value *ShVal = Builder.CreateShl(Val, 1*8);
1128 Val = Builder.CreateOr(OneElt, ShVal);
1129 ++NumBytesSet;
1130 }
1131
1132 return CoerceAvailableValueToLoadType(Val, LoadTy, InsertPt, TD);
1133 }
Chris Lattnerbc9a28d2009-12-06 05:29:56 +00001134
1135 // Otherwise, this is a memcpy/memmove from a constant global.
1136 MemTransferInst *MTI = cast<MemTransferInst>(SrcInst);
1137 Constant *Src = cast<Constant>(MTI->getSource());
1138
1139 // Otherwise, see if we can constant fold a load from the constant with the
1140 // offset applied as appropriate.
1141 Src = ConstantExpr::getBitCast(Src,
1142 llvm::Type::getInt8PtrTy(Src->getContext()));
1143 Constant *OffsetCst =
1144 ConstantInt::get(Type::getInt64Ty(Src->getContext()), (unsigned)Offset);
Jay Foaddab3d292011-07-21 14:31:17 +00001145 Src = ConstantExpr::getGetElementPtr(Src, OffsetCst);
Chris Lattnerbc9a28d2009-12-06 05:29:56 +00001146 Src = ConstantExpr::getBitCast(Src, PointerType::getUnqual(LoadTy));
1147 return ConstantFoldLoadFromConstPtr(Src, &TD);
Chris Lattnerfaf815b2009-12-06 01:57:02 +00001148}
1149
Dan Gohmanb3579832010-04-15 17:08:50 +00001150namespace {
Chris Lattnerfaf815b2009-12-06 01:57:02 +00001151
Chris Lattner87913512009-09-21 06:30:24 +00001152struct AvailableValueInBlock {
1153 /// BB - The basic block in question.
1154 BasicBlock *BB;
Chris Lattnercb9cbc42009-12-06 04:54:31 +00001155 enum ValType {
1156 SimpleVal, // A simple offsetted value that is accessed.
Chris Lattner4034e142011-04-28 07:29:08 +00001157 LoadVal, // A value produced by a load.
Chris Lattnercb9cbc42009-12-06 04:54:31 +00001158 MemIntrin // A memory intrinsic which is loaded from.
1159 };
1160
Chris Lattner87913512009-09-21 06:30:24 +00001161 /// V - The value that is live out of the block.
Chris Lattner4034e142011-04-28 07:29:08 +00001162 PointerIntPair<Value *, 2, ValType> Val;
Chris Lattnercb9cbc42009-12-06 04:54:31 +00001163
1164 /// Offset - The byte offset in Val that is interesting for the load query.
Chris Lattner4fbd14e2009-09-21 06:48:08 +00001165 unsigned Offset;
Chris Lattner87913512009-09-21 06:30:24 +00001166
Chris Lattner4fbd14e2009-09-21 06:48:08 +00001167 static AvailableValueInBlock get(BasicBlock *BB, Value *V,
1168 unsigned Offset = 0) {
Chris Lattner87913512009-09-21 06:30:24 +00001169 AvailableValueInBlock Res;
1170 Res.BB = BB;
Chris Lattnercb9cbc42009-12-06 04:54:31 +00001171 Res.Val.setPointer(V);
1172 Res.Val.setInt(SimpleVal);
Chris Lattner4fbd14e2009-09-21 06:48:08 +00001173 Res.Offset = Offset;
Chris Lattner87913512009-09-21 06:30:24 +00001174 return Res;
1175 }
Chris Lattnercb9cbc42009-12-06 04:54:31 +00001176
1177 static AvailableValueInBlock getMI(BasicBlock *BB, MemIntrinsic *MI,
1178 unsigned Offset = 0) {
1179 AvailableValueInBlock Res;
1180 Res.BB = BB;
1181 Res.Val.setPointer(MI);
1182 Res.Val.setInt(MemIntrin);
1183 Res.Offset = Offset;
1184 return Res;
1185 }
1186
Chris Lattner4034e142011-04-28 07:29:08 +00001187 static AvailableValueInBlock getLoad(BasicBlock *BB, LoadInst *LI,
1188 unsigned Offset = 0) {
1189 AvailableValueInBlock Res;
1190 Res.BB = BB;
1191 Res.Val.setPointer(LI);
1192 Res.Val.setInt(LoadVal);
1193 Res.Offset = Offset;
1194 return Res;
1195 }
1196
Chris Lattnercb9cbc42009-12-06 04:54:31 +00001197 bool isSimpleValue() const { return Val.getInt() == SimpleVal; }
Chris Lattner4034e142011-04-28 07:29:08 +00001198 bool isCoercedLoadValue() const { return Val.getInt() == LoadVal; }
1199 bool isMemIntrinValue() const { return Val.getInt() == MemIntrin; }
1200
Chris Lattnercb9cbc42009-12-06 04:54:31 +00001201 Value *getSimpleValue() const {
1202 assert(isSimpleValue() && "Wrong accessor");
1203 return Val.getPointer();
1204 }
1205
Chris Lattner4034e142011-04-28 07:29:08 +00001206 LoadInst *getCoercedLoadValue() const {
1207 assert(isCoercedLoadValue() && "Wrong accessor");
1208 return cast<LoadInst>(Val.getPointer());
1209 }
1210
Chris Lattnercb9cbc42009-12-06 04:54:31 +00001211 MemIntrinsic *getMemIntrinValue() const {
Chris Lattner4034e142011-04-28 07:29:08 +00001212 assert(isMemIntrinValue() && "Wrong accessor");
Chris Lattnercb9cbc42009-12-06 04:54:31 +00001213 return cast<MemIntrinsic>(Val.getPointer());
1214 }
Chris Lattner5362c542009-12-21 23:04:33 +00001215
1216 /// MaterializeAdjustedValue - Emit code into this block to adjust the value
1217 /// defined here to the specified type. This handles various coercion cases.
Chris Lattnerdb125cf2011-07-18 04:54:35 +00001218 Value *MaterializeAdjustedValue(Type *LoadTy, GVN &gvn) const {
Chris Lattner5362c542009-12-21 23:04:33 +00001219 Value *Res;
1220 if (isSimpleValue()) {
1221 Res = getSimpleValue();
1222 if (Res->getType() != LoadTy) {
Chris Lattner4756ecb2011-04-28 16:36:48 +00001223 const TargetData *TD = gvn.getTargetData();
Chris Lattner5362c542009-12-21 23:04:33 +00001224 assert(TD && "Need target data to handle type mismatch case");
1225 Res = GetStoreValueForLoad(Res, Offset, LoadTy, BB->getTerminator(),
1226 *TD);
1227
Chris Lattner4034e142011-04-28 07:29:08 +00001228 DEBUG(dbgs() << "GVN COERCED NONLOCAL VAL:\nOffset: " << Offset << " "
Chris Lattner5362c542009-12-21 23:04:33 +00001229 << *getSimpleValue() << '\n'
1230 << *Res << '\n' << "\n\n\n");
1231 }
Chris Lattner4034e142011-04-28 07:29:08 +00001232 } else if (isCoercedLoadValue()) {
1233 LoadInst *Load = getCoercedLoadValue();
1234 if (Load->getType() == LoadTy && Offset == 0) {
1235 Res = Load;
1236 } else {
Chris Lattner4034e142011-04-28 07:29:08 +00001237 Res = GetLoadValueForLoad(Load, Offset, LoadTy, BB->getTerminator(),
Chris Lattner4756ecb2011-04-28 16:36:48 +00001238 gvn);
Chris Lattner4034e142011-04-28 07:29:08 +00001239
1240 DEBUG(dbgs() << "GVN COERCED NONLOCAL LOAD:\nOffset: " << Offset << " "
1241 << *getCoercedLoadValue() << '\n'
1242 << *Res << '\n' << "\n\n\n");
1243 }
Chris Lattner5362c542009-12-21 23:04:33 +00001244 } else {
Chris Lattner4756ecb2011-04-28 16:36:48 +00001245 const TargetData *TD = gvn.getTargetData();
1246 assert(TD && "Need target data to handle type mismatch case");
Chris Lattner5362c542009-12-21 23:04:33 +00001247 Res = GetMemInstValueForLoad(getMemIntrinValue(), Offset,
1248 LoadTy, BB->getTerminator(), *TD);
Chris Lattner4034e142011-04-28 07:29:08 +00001249 DEBUG(dbgs() << "GVN COERCED NONLOCAL MEM INTRIN:\nOffset: " << Offset
Chris Lattner5362c542009-12-21 23:04:33 +00001250 << " " << *getMemIntrinValue() << '\n'
1251 << *Res << '\n' << "\n\n\n");
1252 }
1253 return Res;
1254 }
Chris Lattner87913512009-09-21 06:30:24 +00001255};
1256
Chris Lattner4034e142011-04-28 07:29:08 +00001257} // end anonymous namespace
Dan Gohmanb3579832010-04-15 17:08:50 +00001258
Chris Lattnera09fbf02009-10-10 23:50:30 +00001259/// ConstructSSAForLoadSet - Given a set of loads specified by ValuesPerBlock,
1260/// construct SSA form, allowing us to eliminate LI. This returns the value
1261/// that should be used at LI's definition site.
1262static Value *ConstructSSAForLoadSet(LoadInst *LI,
1263 SmallVectorImpl<AvailableValueInBlock> &ValuesPerBlock,
Chris Lattner4756ecb2011-04-28 16:36:48 +00001264 GVN &gvn) {
Chris Lattnerd2191e52009-12-21 23:15:48 +00001265 // Check for the fully redundant, dominating load case. In this case, we can
1266 // just use the dominating value directly.
1267 if (ValuesPerBlock.size() == 1 &&
Chris Lattner4756ecb2011-04-28 16:36:48 +00001268 gvn.getDominatorTree().properlyDominates(ValuesPerBlock[0].BB,
1269 LI->getParent()))
1270 return ValuesPerBlock[0].MaterializeAdjustedValue(LI->getType(), gvn);
Chris Lattnerd2191e52009-12-21 23:15:48 +00001271
1272 // Otherwise, we have to construct SSA form.
Chris Lattnera09fbf02009-10-10 23:50:30 +00001273 SmallVector<PHINode*, 8> NewPHIs;
1274 SSAUpdater SSAUpdate(&NewPHIs);
Duncan Sandsfc6e29d2010-09-02 08:14:03 +00001275 SSAUpdate.Initialize(LI->getType(), LI->getName());
Chris Lattnera09fbf02009-10-10 23:50:30 +00001276
Chris Lattnerdb125cf2011-07-18 04:54:35 +00001277 Type *LoadTy = LI->getType();
Chris Lattnera09fbf02009-10-10 23:50:30 +00001278
Chris Lattner771a5422009-09-20 20:09:34 +00001279 for (unsigned i = 0, e = ValuesPerBlock.size(); i != e; ++i) {
Chris Lattnercb9cbc42009-12-06 04:54:31 +00001280 const AvailableValueInBlock &AV = ValuesPerBlock[i];
1281 BasicBlock *BB = AV.BB;
Chris Lattner771a5422009-09-20 20:09:34 +00001282
Chris Lattnera09fbf02009-10-10 23:50:30 +00001283 if (SSAUpdate.HasValueForBlock(BB))
1284 continue;
Chris Lattnercb9cbc42009-12-06 04:54:31 +00001285
Chris Lattner4756ecb2011-04-28 16:36:48 +00001286 SSAUpdate.AddAvailableValue(BB, AV.MaterializeAdjustedValue(LoadTy, gvn));
Chris Lattner771a5422009-09-20 20:09:34 +00001287 }
Chris Lattnera09fbf02009-10-10 23:50:30 +00001288
1289 // Perform PHI construction.
1290 Value *V = SSAUpdate.GetValueInMiddleOfBlock(LI->getParent());
1291
1292 // If new PHI nodes were created, notify alias analysis.
Chris Lattner4756ecb2011-04-28 16:36:48 +00001293 if (V->getType()->isPointerTy()) {
1294 AliasAnalysis *AA = gvn.getAliasAnalysis();
1295
Chris Lattnera09fbf02009-10-10 23:50:30 +00001296 for (unsigned i = 0, e = NewPHIs.size(); i != e; ++i)
1297 AA->copyValue(LI, NewPHIs[i]);
Owen Anderson392249f2011-01-03 23:51:43 +00001298
1299 // Now that we've copied information to the new PHIs, scan through
1300 // them again and inform alias analysis that we've added potentially
1301 // escaping uses to any values that are operands to these PHIs.
1302 for (unsigned i = 0, e = NewPHIs.size(); i != e; ++i) {
1303 PHINode *P = NewPHIs[i];
Jay Foadc1371202011-06-20 14:18:48 +00001304 for (unsigned ii = 0, ee = P->getNumIncomingValues(); ii != ee; ++ii) {
1305 unsigned jj = PHINode::getOperandNumForIncomingValue(ii);
1306 AA->addEscapingUse(P->getOperandUse(jj));
1307 }
Owen Anderson392249f2011-01-03 23:51:43 +00001308 }
Chris Lattner4756ecb2011-04-28 16:36:48 +00001309 }
Chris Lattnera09fbf02009-10-10 23:50:30 +00001310
1311 return V;
Chris Lattner771a5422009-09-20 20:09:34 +00001312}
1313
Gabor Greifea3eec92010-04-09 10:57:00 +00001314static bool isLifetimeStart(const Instruction *Inst) {
1315 if (const IntrinsicInst* II = dyn_cast<IntrinsicInst>(Inst))
Owen Anderson9ff5a232009-12-02 07:35:19 +00001316 return II->getIntrinsicID() == Intrinsic::lifetime_start;
Chris Lattner720e7902009-12-02 06:44:58 +00001317 return false;
1318}
1319
Owen Anderson62bc33c2007-08-16 22:02:55 +00001320/// processNonLocalLoad - Attempt to eliminate a load whose dependencies are
1321/// non-local by performing PHI construction.
Chris Lattnerf07054d2011-04-28 16:18:52 +00001322bool GVN::processNonLocalLoad(LoadInst *LI) {
Chris Lattnerc89c6a92008-12-02 08:16:11 +00001323 // Find the non-local dependencies of the load.
Chris Lattner0ee443d2009-12-22 04:25:02 +00001324 SmallVector<NonLocalDepResult, 64> Deps;
Dan Gohman6d8eb152010-11-11 21:50:19 +00001325 AliasAnalysis::Location Loc = VN.getAliasAnalysis()->getLocation(LI);
1326 MD->getNonLocalPointerDependency(Loc, true, LI->getParent(), Deps);
David Greenebf7f78e2010-01-05 01:27:17 +00001327 //DEBUG(dbgs() << "INVESTIGATING NONLOCAL LOAD: "
Dan Gohman2a298992009-07-31 20:24:18 +00001328 // << Deps.size() << *LI << '\n');
Daniel Dunbara279bc32009-09-20 02:20:51 +00001329
Owen Anderson516eb1c2008-08-26 22:07:42 +00001330 // If we had to process more than one hundred blocks to find the
1331 // dependencies, this load isn't worth worrying about. Optimizing
1332 // it will be too expensive.
Bill Wendling5d8ab0f2012-01-31 06:57:53 +00001333 unsigned NumDeps = Deps.size();
1334 if (NumDeps > 100)
Owen Anderson516eb1c2008-08-26 22:07:42 +00001335 return false;
Chris Lattner5f4f84b2008-12-18 00:51:32 +00001336
1337 // If we had a phi translation failure, we'll have a single entry which is a
1338 // clobber in the current block. Reject this early.
Bill Wendling5d8ab0f2012-01-31 06:57:53 +00001339 if (NumDeps == 1 &&
1340 !Deps[0].getResult().isDef() && !Deps[0].getResult().isClobber()) {
Torok Edwin4306b1a2009-06-17 18:48:18 +00001341 DEBUG(
David Greenebf7f78e2010-01-05 01:27:17 +00001342 dbgs() << "GVN: non-local load ";
1343 WriteAsOperand(dbgs(), LI);
Eli Friedmana990e072011-06-15 00:47:34 +00001344 dbgs() << " has unknown dependencies\n";
Torok Edwin4306b1a2009-06-17 18:48:18 +00001345 );
Chris Lattner5f4f84b2008-12-18 00:51:32 +00001346 return false;
Torok Edwin4306b1a2009-06-17 18:48:18 +00001347 }
Daniel Dunbara279bc32009-09-20 02:20:51 +00001348
Chris Lattnerc89c6a92008-12-02 08:16:11 +00001349 // Filter out useless results (non-locals, etc). Keep track of the blocks
1350 // where we have a value available in repl, also keep track of whether we see
1351 // dependencies that produce an unknown value for the load (such as a call
1352 // that could potentially clobber the load).
Bill Wendlingb319f122012-01-31 07:04:52 +00001353 SmallVector<AvailableValueInBlock, 64> ValuesPerBlock;
1354 SmallVector<BasicBlock*, 64> UnavailableBlocks;
Daniel Dunbara279bc32009-09-20 02:20:51 +00001355
Bill Wendling5d8ab0f2012-01-31 06:57:53 +00001356 for (unsigned i = 0, e = NumDeps; i != e; ++i) {
Chris Lattnere18b9712009-12-09 07:08:01 +00001357 BasicBlock *DepBB = Deps[i].getBB();
1358 MemDepResult DepInfo = Deps[i].getResult();
Daniel Dunbara279bc32009-09-20 02:20:51 +00001359
Eli Friedmanb4141422011-10-13 22:14:57 +00001360 if (!DepInfo.isDef() && !DepInfo.isClobber()) {
Eli Friedmana990e072011-06-15 00:47:34 +00001361 UnavailableBlocks.push_back(DepBB);
1362 continue;
1363 }
1364
Chris Lattnerb51deb92008-12-05 21:04:20 +00001365 if (DepInfo.isClobber()) {
Chris Lattneraf064ae2009-12-09 18:21:46 +00001366 // The address being loaded in this non-local block may not be the same as
1367 // the pointer operand of the load if PHI translation occurs. Make sure
1368 // to consider the right address.
1369 Value *Address = Deps[i].getAddress();
1370
Chris Lattner4fbd14e2009-09-21 06:48:08 +00001371 // If the dependence is to a store that writes to a superset of the bits
1372 // read by the load, we can extract the bits we need for the load from the
1373 // stored value.
1374 if (StoreInst *DepSI = dyn_cast<StoreInst>(DepInfo.getInst())) {
Chris Lattneraf064ae2009-12-09 18:21:46 +00001375 if (TD && Address) {
1376 int Offset = AnalyzeLoadFromClobberingStore(LI->getType(), Address,
Chris Lattner4ca70fe2009-12-09 07:37:07 +00001377 DepSI, *TD);
Chris Lattner4fbd14e2009-09-21 06:48:08 +00001378 if (Offset != -1) {
1379 ValuesPerBlock.push_back(AvailableValueInBlock::get(DepBB,
Dan Gohman3355c4e2010-11-10 19:03:33 +00001380 DepSI->getValueOperand(),
Chris Lattner4fbd14e2009-09-21 06:48:08 +00001381 Offset));
1382 continue;
1383 }
1384 }
1385 }
Chris Lattner1f821512011-04-26 01:21:15 +00001386
1387 // Check to see if we have something like this:
1388 // load i32* P
1389 // load i8* (P+1)
1390 // if we have this, replace the later with an extraction from the former.
1391 if (LoadInst *DepLI = dyn_cast<LoadInst>(DepInfo.getInst())) {
1392 // If this is a clobber and L is the first instruction in its block, then
1393 // we have the first instruction in the entry block.
1394 if (DepLI != LI && Address && TD) {
1395 int Offset = AnalyzeLoadFromClobberingLoad(LI->getType(),
1396 LI->getPointerOperand(),
1397 DepLI, *TD);
1398
1399 if (Offset != -1) {
Chris Lattner4034e142011-04-28 07:29:08 +00001400 ValuesPerBlock.push_back(AvailableValueInBlock::getLoad(DepBB,DepLI,
1401 Offset));
Chris Lattner1f821512011-04-26 01:21:15 +00001402 continue;
1403 }
1404 }
1405 }
Chris Lattnerfaf815b2009-12-06 01:57:02 +00001406
Chris Lattnerfaf815b2009-12-06 01:57:02 +00001407 // If the clobbering value is a memset/memcpy/memmove, see if we can
1408 // forward a value on from it.
Chris Lattnercb9cbc42009-12-06 04:54:31 +00001409 if (MemIntrinsic *DepMI = dyn_cast<MemIntrinsic>(DepInfo.getInst())) {
Chris Lattneraf064ae2009-12-09 18:21:46 +00001410 if (TD && Address) {
1411 int Offset = AnalyzeLoadFromClobberingMemInst(LI->getType(), Address,
Chris Lattner4ca70fe2009-12-09 07:37:07 +00001412 DepMI, *TD);
Chris Lattnercb9cbc42009-12-06 04:54:31 +00001413 if (Offset != -1) {
1414 ValuesPerBlock.push_back(AvailableValueInBlock::getMI(DepBB, DepMI,
1415 Offset));
1416 continue;
1417 }
Chris Lattnerfaf815b2009-12-06 01:57:02 +00001418 }
1419 }
Chris Lattner4fbd14e2009-09-21 06:48:08 +00001420
Chris Lattnerb51deb92008-12-05 21:04:20 +00001421 UnavailableBlocks.push_back(DepBB);
1422 continue;
1423 }
Daniel Dunbara279bc32009-09-20 02:20:51 +00001424
Eli Friedmanb4141422011-10-13 22:14:57 +00001425 // DepInfo.isDef() here
Eli Friedmana990e072011-06-15 00:47:34 +00001426
Chris Lattnerb51deb92008-12-05 21:04:20 +00001427 Instruction *DepInst = DepInfo.getInst();
Daniel Dunbara279bc32009-09-20 02:20:51 +00001428
Chris Lattnerb51deb92008-12-05 21:04:20 +00001429 // Loading the allocation -> undef.
Chris Lattner720e7902009-12-02 06:44:58 +00001430 if (isa<AllocaInst>(DepInst) || isMalloc(DepInst) ||
Owen Anderson9ff5a232009-12-02 07:35:19 +00001431 // Loading immediately after lifetime begin -> undef.
1432 isLifetimeStart(DepInst)) {
Chris Lattner87913512009-09-21 06:30:24 +00001433 ValuesPerBlock.push_back(AvailableValueInBlock::get(DepBB,
1434 UndefValue::get(LI->getType())));
Chris Lattnerbf145d62008-12-01 01:15:42 +00001435 continue;
1436 }
Owen Andersonb62f7922009-10-28 07:05:35 +00001437
Chris Lattner87913512009-09-21 06:30:24 +00001438 if (StoreInst *S = dyn_cast<StoreInst>(DepInst)) {
Daniel Dunbara279bc32009-09-20 02:20:51 +00001439 // Reject loads and stores that are to the same address but are of
Chris Lattner771a5422009-09-20 20:09:34 +00001440 // different types if we have to.
Dan Gohman3355c4e2010-11-10 19:03:33 +00001441 if (S->getValueOperand()->getType() != LI->getType()) {
Chris Lattner771a5422009-09-20 20:09:34 +00001442 // If the stored value is larger or equal to the loaded value, we can
1443 // reuse it.
Dan Gohman3355c4e2010-11-10 19:03:33 +00001444 if (TD == 0 || !CanCoerceMustAliasedValueToLoad(S->getValueOperand(),
Chris Lattner8b2bc3d2009-09-21 17:24:04 +00001445 LI->getType(), *TD)) {
Chris Lattner771a5422009-09-20 20:09:34 +00001446 UnavailableBlocks.push_back(DepBB);
1447 continue;
1448 }
Chris Lattnerc89c6a92008-12-02 08:16:11 +00001449 }
Daniel Dunbara279bc32009-09-20 02:20:51 +00001450
Chris Lattner87913512009-09-21 06:30:24 +00001451 ValuesPerBlock.push_back(AvailableValueInBlock::get(DepBB,
Dan Gohman3355c4e2010-11-10 19:03:33 +00001452 S->getValueOperand()));
Chris Lattner4fbd14e2009-09-21 06:48:08 +00001453 continue;
1454 }
1455
1456 if (LoadInst *LD = dyn_cast<LoadInst>(DepInst)) {
Chris Lattner771a5422009-09-20 20:09:34 +00001457 // If the types mismatch and we can't handle it, reject reuse of the load.
Chris Lattnerc89c6a92008-12-02 08:16:11 +00001458 if (LD->getType() != LI->getType()) {
Chris Lattner771a5422009-09-20 20:09:34 +00001459 // If the stored value is larger or equal to the loaded value, we can
1460 // reuse it.
Chris Lattner8b2bc3d2009-09-21 17:24:04 +00001461 if (TD == 0 || !CanCoerceMustAliasedValueToLoad(LD, LI->getType(),*TD)){
Chris Lattner771a5422009-09-20 20:09:34 +00001462 UnavailableBlocks.push_back(DepBB);
1463 continue;
1464 }
Chris Lattnerc89c6a92008-12-02 08:16:11 +00001465 }
Chris Lattner4034e142011-04-28 07:29:08 +00001466 ValuesPerBlock.push_back(AvailableValueInBlock::getLoad(DepBB, LD));
Chris Lattnerc89c6a92008-12-02 08:16:11 +00001467 continue;
Owen Anderson0cd32032007-07-25 19:57:03 +00001468 }
Chris Lattner4fbd14e2009-09-21 06:48:08 +00001469
1470 UnavailableBlocks.push_back(DepBB);
1471 continue;
Chris Lattner88365bb2008-03-21 21:14:38 +00001472 }
Daniel Dunbara279bc32009-09-20 02:20:51 +00001473
Chris Lattnerc89c6a92008-12-02 08:16:11 +00001474 // If we have no predecessors that produce a known value for this load, exit
1475 // early.
1476 if (ValuesPerBlock.empty()) return false;
Daniel Dunbara279bc32009-09-20 02:20:51 +00001477
Chris Lattnerc89c6a92008-12-02 08:16:11 +00001478 // If all of the instructions we depend on produce a known value for this
1479 // load, then it is fully redundant and we can use PHI insertion to compute
1480 // its value. Insert PHIs and remove the fully redundant value now.
1481 if (UnavailableBlocks.empty()) {
David Greenebf7f78e2010-01-05 01:27:17 +00001482 DEBUG(dbgs() << "GVN REMOVING NONLOCAL LOAD: " << *LI << '\n');
Chris Lattner771a5422009-09-20 20:09:34 +00001483
Chris Lattnerc89c6a92008-12-02 08:16:11 +00001484 // Perform PHI construction.
Chris Lattner4756ecb2011-04-28 16:36:48 +00001485 Value *V = ConstructSSAForLoadSet(LI, ValuesPerBlock, *this);
Chris Lattner771a5422009-09-20 20:09:34 +00001486 LI->replaceAllUsesWith(V);
Daniel Dunbara279bc32009-09-20 02:20:51 +00001487
Chris Lattner771a5422009-09-20 20:09:34 +00001488 if (isa<PHINode>(V))
1489 V->takeName(LI);
Duncan Sands1df98592010-02-16 11:11:14 +00001490 if (V->getType()->isPointerTy())
Chris Lattner771a5422009-09-20 20:09:34 +00001491 MD->invalidateCachedPointerInfo(V);
Chris Lattner4756ecb2011-04-28 16:36:48 +00001492 markInstructionForDeletion(LI);
Dan Gohmanfe601042010-06-22 15:08:57 +00001493 ++NumGVNLoad;
Chris Lattnerc89c6a92008-12-02 08:16:11 +00001494 return true;
1495 }
Daniel Dunbara279bc32009-09-20 02:20:51 +00001496
Chris Lattnerc89c6a92008-12-02 08:16:11 +00001497 if (!EnablePRE || !EnableLoadPRE)
1498 return false;
1499
1500 // Okay, we have *some* definitions of the value. This means that the value
1501 // is available in some of our (transitive) predecessors. Lets think about
1502 // doing PRE of this load. This will involve inserting a new load into the
1503 // predecessor when it's not available. We could do this in general, but
1504 // prefer to not increase code size. As such, we only do this when we know
1505 // that we only have to insert *one* load (which means we're basically moving
1506 // the load, not inserting a new one).
Daniel Dunbara279bc32009-09-20 02:20:51 +00001507
Owen Anderson88554df2009-05-31 09:03:40 +00001508 SmallPtrSet<BasicBlock *, 4> Blockers;
1509 for (unsigned i = 0, e = UnavailableBlocks.size(); i != e; ++i)
1510 Blockers.insert(UnavailableBlocks[i]);
1511
Bill Wendling795cf5e2011-08-17 21:32:02 +00001512 // Let's find the first basic block with more than one predecessor. Walk
1513 // backwards through predecessors if needed.
Chris Lattnerc89c6a92008-12-02 08:16:11 +00001514 BasicBlock *LoadBB = LI->getParent();
Owen Anderson88554df2009-05-31 09:03:40 +00001515 BasicBlock *TmpBB = LoadBB;
1516
1517 bool isSinglePred = false;
Dale Johannesen42c3f552009-06-17 20:48:23 +00001518 bool allSingleSucc = true;
Owen Anderson88554df2009-05-31 09:03:40 +00001519 while (TmpBB->getSinglePredecessor()) {
1520 isSinglePred = true;
1521 TmpBB = TmpBB->getSinglePredecessor();
Owen Anderson88554df2009-05-31 09:03:40 +00001522 if (TmpBB == LoadBB) // Infinite (unreachable) loop.
1523 return false;
1524 if (Blockers.count(TmpBB))
1525 return false;
Owen Andersonb0ba0f42010-09-25 05:26:18 +00001526
1527 // If any of these blocks has more than one successor (i.e. if the edge we
1528 // just traversed was critical), then there are other paths through this
1529 // block along which the load may not be anticipated. Hoisting the load
1530 // above this block would be adding the load to execution paths along
1531 // which it was not previously executed.
Dale Johannesen42c3f552009-06-17 20:48:23 +00001532 if (TmpBB->getTerminator()->getNumSuccessors() != 1)
Owen Andersonb0ba0f42010-09-25 05:26:18 +00001533 return false;
Owen Anderson88554df2009-05-31 09:03:40 +00001534 }
Daniel Dunbara279bc32009-09-20 02:20:51 +00001535
Owen Anderson88554df2009-05-31 09:03:40 +00001536 assert(TmpBB);
1537 LoadBB = TmpBB;
Daniel Dunbara279bc32009-09-20 02:20:51 +00001538
Chris Lattnercb9cbc42009-12-06 04:54:31 +00001539 // FIXME: It is extremely unclear what this loop is doing, other than
1540 // artificially restricting loadpre.
Owen Anderson88554df2009-05-31 09:03:40 +00001541 if (isSinglePred) {
1542 bool isHot = false;
Chris Lattnercb9cbc42009-12-06 04:54:31 +00001543 for (unsigned i = 0, e = ValuesPerBlock.size(); i != e; ++i) {
1544 const AvailableValueInBlock &AV = ValuesPerBlock[i];
1545 if (AV.isSimpleValue())
Daniel Dunbara279bc32009-09-20 02:20:51 +00001546 // "Hot" Instruction is in some loop (because it dominates its dep.
1547 // instruction).
Chris Lattnercb9cbc42009-12-06 04:54:31 +00001548 if (Instruction *I = dyn_cast<Instruction>(AV.getSimpleValue()))
1549 if (DT->dominates(LI, I)) {
1550 isHot = true;
1551 break;
1552 }
1553 }
Owen Anderson88554df2009-05-31 09:03:40 +00001554
1555 // We are interested only in "hot" instructions. We don't want to do any
1556 // mis-optimizations here.
1557 if (!isHot)
1558 return false;
1559 }
1560
Bob Wilson6cad4172010-02-01 21:17:14 +00001561 // Check to see how many predecessors have the loaded value fully
1562 // available.
1563 DenseMap<BasicBlock*, Value*> PredLoads;
Chris Lattner72bc70d2008-12-05 07:49:08 +00001564 DenseMap<BasicBlock*, char> FullyAvailableBlocks;
Chris Lattnerc89c6a92008-12-02 08:16:11 +00001565 for (unsigned i = 0, e = ValuesPerBlock.size(); i != e; ++i)
Chris Lattner87913512009-09-21 06:30:24 +00001566 FullyAvailableBlocks[ValuesPerBlock[i].BB] = true;
Chris Lattnerc89c6a92008-12-02 08:16:11 +00001567 for (unsigned i = 0, e = UnavailableBlocks.size(); i != e; ++i)
1568 FullyAvailableBlocks[UnavailableBlocks[i]] = false;
1569
Bob Wilson34414a62010-05-04 20:03:21 +00001570 SmallVector<std::pair<TerminatorInst*, unsigned>, 4> NeedToSplit;
Chris Lattnerc89c6a92008-12-02 08:16:11 +00001571 for (pred_iterator PI = pred_begin(LoadBB), E = pred_end(LoadBB);
1572 PI != E; ++PI) {
Bob Wilson6cad4172010-02-01 21:17:14 +00001573 BasicBlock *Pred = *PI;
1574 if (IsValueFullyAvailableInBlock(Pred, FullyAvailableBlocks)) {
Chris Lattnerc89c6a92008-12-02 08:16:11 +00001575 continue;
Bob Wilson6cad4172010-02-01 21:17:14 +00001576 }
1577 PredLoads[Pred] = 0;
Bob Wilson484d4a32010-02-16 19:51:59 +00001578
Bob Wilson6cad4172010-02-01 21:17:14 +00001579 if (Pred->getTerminator()->getNumSuccessors() != 1) {
Bob Wilson484d4a32010-02-16 19:51:59 +00001580 if (isa<IndirectBrInst>(Pred->getTerminator())) {
1581 DEBUG(dbgs() << "COULD NOT PRE LOAD BECAUSE OF INDBR CRITICAL EDGE '"
1582 << Pred->getName() << "': " << *LI << '\n');
1583 return false;
1584 }
Bill Wendling795cf5e2011-08-17 21:32:02 +00001585
1586 if (LoadBB->isLandingPad()) {
1587 DEBUG(dbgs()
1588 << "COULD NOT PRE LOAD BECAUSE OF LANDING PAD CRITICAL EDGE '"
1589 << Pred->getName() << "': " << *LI << '\n');
1590 return false;
1591 }
1592
Bob Wilsonae23daf2010-02-16 21:06:42 +00001593 unsigned SuccNum = GetSuccessorNumber(Pred, LoadBB);
Bob Wilson34414a62010-05-04 20:03:21 +00001594 NeedToSplit.push_back(std::make_pair(Pred->getTerminator(), SuccNum));
Bob Wilson6cad4172010-02-01 21:17:14 +00001595 }
Chris Lattnerc89c6a92008-12-02 08:16:11 +00001596 }
Bill Wendling795cf5e2011-08-17 21:32:02 +00001597
Bob Wilson34414a62010-05-04 20:03:21 +00001598 if (!NeedToSplit.empty()) {
Bob Wilsonbc786532010-05-05 20:44:15 +00001599 toSplit.append(NeedToSplit.begin(), NeedToSplit.end());
Bob Wilson70704972010-03-01 23:37:32 +00001600 return false;
Bob Wilson34414a62010-05-04 20:03:21 +00001601 }
Daniel Dunbara279bc32009-09-20 02:20:51 +00001602
Bob Wilson6cad4172010-02-01 21:17:14 +00001603 // Decide whether PRE is profitable for this load.
1604 unsigned NumUnavailablePreds = PredLoads.size();
1605 assert(NumUnavailablePreds != 0 &&
Chris Lattnerc89c6a92008-12-02 08:16:11 +00001606 "Fully available value should be eliminated above!");
Owen Anderson7267e142010-10-01 20:02:55 +00001607
1608 // If this load is unavailable in multiple predecessors, reject it.
1609 // FIXME: If we could restructure the CFG, we could make a common pred with
1610 // all the preds that don't have an available LI and insert a new load into
1611 // that one block.
1612 if (NumUnavailablePreds != 1)
Bob Wilson6cad4172010-02-01 21:17:14 +00001613 return false;
Bob Wilson6cad4172010-02-01 21:17:14 +00001614
1615 // Check if the load can safely be moved to all the unavailable predecessors.
1616 bool CanDoPRE = true;
Chris Lattnerdd696052009-11-28 15:39:14 +00001617 SmallVector<Instruction*, 8> NewInsts;
Bob Wilson6cad4172010-02-01 21:17:14 +00001618 for (DenseMap<BasicBlock*, Value*>::iterator I = PredLoads.begin(),
1619 E = PredLoads.end(); I != E; ++I) {
1620 BasicBlock *UnavailablePred = I->first;
1621
1622 // Do PHI translation to get its value in the predecessor if necessary. The
1623 // returned pointer (if non-null) is guaranteed to dominate UnavailablePred.
1624
1625 // If all preds have a single successor, then we know it is safe to insert
1626 // the load on the pred (?!?), so we can insert code to materialize the
1627 // pointer if it is not available.
Dan Gohman3355c4e2010-11-10 19:03:33 +00001628 PHITransAddr Address(LI->getPointerOperand(), TD);
Bob Wilson6cad4172010-02-01 21:17:14 +00001629 Value *LoadPtr = 0;
1630 if (allSingleSucc) {
1631 LoadPtr = Address.PHITranslateWithInsertion(LoadBB, UnavailablePred,
1632 *DT, NewInsts);
1633 } else {
Daniel Dunbar6d8f2ca2010-02-24 08:48:04 +00001634 Address.PHITranslateValue(LoadBB, UnavailablePred, DT);
Bob Wilson6cad4172010-02-01 21:17:14 +00001635 LoadPtr = Address.getAddr();
Bob Wilson6cad4172010-02-01 21:17:14 +00001636 }
1637
1638 // If we couldn't find or insert a computation of this phi translated value,
1639 // we fail PRE.
1640 if (LoadPtr == 0) {
1641 DEBUG(dbgs() << "COULDN'T INSERT PHI TRANSLATED VALUE OF: "
Dan Gohman3355c4e2010-11-10 19:03:33 +00001642 << *LI->getPointerOperand() << "\n");
Bob Wilson6cad4172010-02-01 21:17:14 +00001643 CanDoPRE = false;
1644 break;
1645 }
1646
1647 // Make sure it is valid to move this load here. We have to watch out for:
1648 // @1 = getelementptr (i8* p, ...
1649 // test p and branch if == 0
1650 // load @1
Owen Andersonb1602ab2011-01-04 19:29:46 +00001651 // It is valid to have the getelementptr before the test, even if p can
1652 // be 0, as getelementptr only does address arithmetic.
Bob Wilson6cad4172010-02-01 21:17:14 +00001653 // If we are not pushing the value through any multiple-successor blocks
1654 // we do not have this case. Otherwise, check that the load is safe to
1655 // put anywhere; this can be improved, but should be conservatively safe.
1656 if (!allSingleSucc &&
1657 // FIXME: REEVALUTE THIS.
1658 !isSafeToLoadUnconditionally(LoadPtr,
1659 UnavailablePred->getTerminator(),
1660 LI->getAlignment(), TD)) {
1661 CanDoPRE = false;
1662 break;
1663 }
1664
1665 I->second = LoadPtr;
Chris Lattner05e15f82009-12-09 01:59:31 +00001666 }
1667
Bob Wilson6cad4172010-02-01 21:17:14 +00001668 if (!CanDoPRE) {
Chris Lattner3077ca92011-01-11 08:19:16 +00001669 while (!NewInsts.empty()) {
1670 Instruction *I = NewInsts.pop_back_val();
1671 if (MD) MD->removeInstruction(I);
1672 I->eraseFromParent();
1673 }
Dale Johannesen42c3f552009-06-17 20:48:23 +00001674 return false;
Chris Lattner0c264b12009-11-28 16:08:18 +00001675 }
Dale Johannesen42c3f552009-06-17 20:48:23 +00001676
Chris Lattnerc89c6a92008-12-02 08:16:11 +00001677 // Okay, we can eliminate this load by inserting a reload in the predecessor
1678 // and using PHI construction to get the value in the other predecessors, do
1679 // it.
David Greenebf7f78e2010-01-05 01:27:17 +00001680 DEBUG(dbgs() << "GVN REMOVING PRE LOAD: " << *LI << '\n');
Chris Lattner0c264b12009-11-28 16:08:18 +00001681 DEBUG(if (!NewInsts.empty())
David Greenebf7f78e2010-01-05 01:27:17 +00001682 dbgs() << "INSERTED " << NewInsts.size() << " INSTS: "
Chris Lattner0c264b12009-11-28 16:08:18 +00001683 << *NewInsts.back() << '\n');
1684
Bob Wilson6cad4172010-02-01 21:17:14 +00001685 // Assign value numbers to the new instructions.
1686 for (unsigned i = 0, e = NewInsts.size(); i != e; ++i) {
1687 // FIXME: We really _ought_ to insert these value numbers into their
1688 // parent's availability map. However, in doing so, we risk getting into
1689 // ordering issues. If a block hasn't been processed yet, we would be
1690 // marking a value as AVAIL-IN, which isn't what we intend.
1691 VN.lookup_or_add(NewInsts[i]);
1692 }
Daniel Dunbara279bc32009-09-20 02:20:51 +00001693
Bob Wilson6cad4172010-02-01 21:17:14 +00001694 for (DenseMap<BasicBlock*, Value*>::iterator I = PredLoads.begin(),
1695 E = PredLoads.end(); I != E; ++I) {
1696 BasicBlock *UnavailablePred = I->first;
1697 Value *LoadPtr = I->second;
1698
Dan Gohmanf4177aa2010-12-15 23:53:55 +00001699 Instruction *NewLoad = new LoadInst(LoadPtr, LI->getName()+".pre", false,
1700 LI->getAlignment(),
1701 UnavailablePred->getTerminator());
1702
1703 // Transfer the old load's TBAA tag to the new load.
1704 if (MDNode *Tag = LI->getMetadata(LLVMContext::MD_tbaa))
1705 NewLoad->setMetadata(LLVMContext::MD_tbaa, Tag);
Bob Wilson6cad4172010-02-01 21:17:14 +00001706
Devang Pateld9b49962011-05-17 19:43:38 +00001707 // Transfer DebugLoc.
1708 NewLoad->setDebugLoc(LI->getDebugLoc());
1709
Bob Wilson6cad4172010-02-01 21:17:14 +00001710 // Add the newly created load.
1711 ValuesPerBlock.push_back(AvailableValueInBlock::get(UnavailablePred,
1712 NewLoad));
Bob Wilson188f4282010-02-23 05:55:00 +00001713 MD->invalidateCachedPointerInfo(LoadPtr);
1714 DEBUG(dbgs() << "GVN INSERTED " << *NewLoad << '\n');
Bob Wilson6cad4172010-02-01 21:17:14 +00001715 }
Daniel Dunbara279bc32009-09-20 02:20:51 +00001716
Chris Lattnerc89c6a92008-12-02 08:16:11 +00001717 // Perform PHI construction.
Chris Lattner4756ecb2011-04-28 16:36:48 +00001718 Value *V = ConstructSSAForLoadSet(LI, ValuesPerBlock, *this);
Chris Lattner771a5422009-09-20 20:09:34 +00001719 LI->replaceAllUsesWith(V);
1720 if (isa<PHINode>(V))
1721 V->takeName(LI);
Duncan Sands1df98592010-02-16 11:11:14 +00001722 if (V->getType()->isPointerTy())
Chris Lattner771a5422009-09-20 20:09:34 +00001723 MD->invalidateCachedPointerInfo(V);
Chris Lattner4756ecb2011-04-28 16:36:48 +00001724 markInstructionForDeletion(LI);
Dan Gohmanfe601042010-06-22 15:08:57 +00001725 ++NumPRELoad;
Owen Anderson0cd32032007-07-25 19:57:03 +00001726 return true;
1727}
1728
Owen Anderson62bc33c2007-08-16 22:02:55 +00001729/// processLoad - Attempt to eliminate a load, first by eliminating it
1730/// locally, and then attempting non-local elimination if that fails.
Chris Lattnerf07054d2011-04-28 16:18:52 +00001731bool GVN::processLoad(LoadInst *L) {
Dan Gohman4ec01b22009-11-14 02:27:51 +00001732 if (!MD)
1733 return false;
1734
Eli Friedman56efe242011-08-17 22:22:24 +00001735 if (!L->isSimple())
Owen Anderson1ad2cb72007-07-24 17:55:58 +00001736 return false;
Daniel Dunbara279bc32009-09-20 02:20:51 +00001737
Chris Lattner9e7bc052011-05-22 07:03:34 +00001738 if (L->use_empty()) {
1739 markInstructionForDeletion(L);
1740 return true;
1741 }
1742
Owen Anderson1ad2cb72007-07-24 17:55:58 +00001743 // ... to a pointer that has been loaded from before...
Chris Lattnerb2412a82009-09-21 02:42:51 +00001744 MemDepResult Dep = MD->getDependency(L);
Daniel Dunbara279bc32009-09-20 02:20:51 +00001745
Chris Lattner1f821512011-04-26 01:21:15 +00001746 // If we have a clobber and target data is around, see if this is a clobber
1747 // that we can fix up through code synthesis.
1748 if (Dep.isClobber() && TD) {
Chris Lattnereed919b2009-09-21 05:57:11 +00001749 // Check to see if we have something like this:
Chris Lattnerbb6495c2009-09-20 19:03:47 +00001750 // store i32 123, i32* %P
1751 // %A = bitcast i32* %P to i8*
1752 // %B = gep i8* %A, i32 1
1753 // %C = load i8* %B
1754 //
1755 // We could do that by recognizing if the clobber instructions are obviously
1756 // a common base + constant offset, and if the previous store (or memset)
1757 // completely covers this load. This sort of thing can happen in bitfield
1758 // access code.
Chris Lattnerfaf815b2009-12-06 01:57:02 +00001759 Value *AvailVal = 0;
Chris Lattner1f821512011-04-26 01:21:15 +00001760 if (StoreInst *DepSI = dyn_cast<StoreInst>(Dep.getInst())) {
1761 int Offset = AnalyzeLoadFromClobberingStore(L->getType(),
1762 L->getPointerOperand(),
1763 DepSI, *TD);
1764 if (Offset != -1)
1765 AvailVal = GetStoreValueForLoad(DepSI->getValueOperand(), Offset,
1766 L->getType(), L, *TD);
1767 }
1768
1769 // Check to see if we have something like this:
1770 // load i32* P
1771 // load i8* (P+1)
1772 // if we have this, replace the later with an extraction from the former.
1773 if (LoadInst *DepLI = dyn_cast<LoadInst>(Dep.getInst())) {
1774 // If this is a clobber and L is the first instruction in its block, then
1775 // we have the first instruction in the entry block.
1776 if (DepLI == L)
1777 return false;
1778
1779 int Offset = AnalyzeLoadFromClobberingLoad(L->getType(),
1780 L->getPointerOperand(),
1781 DepLI, *TD);
1782 if (Offset != -1)
Chris Lattner4756ecb2011-04-28 16:36:48 +00001783 AvailVal = GetLoadValueForLoad(DepLI, Offset, L->getType(), L, *this);
Chris Lattner1f821512011-04-26 01:21:15 +00001784 }
Chris Lattnereed919b2009-09-21 05:57:11 +00001785
Chris Lattnerfaf815b2009-12-06 01:57:02 +00001786 // If the clobbering value is a memset/memcpy/memmove, see if we can forward
1787 // a value on from it.
1788 if (MemIntrinsic *DepMI = dyn_cast<MemIntrinsic>(Dep.getInst())) {
Chris Lattner1f821512011-04-26 01:21:15 +00001789 int Offset = AnalyzeLoadFromClobberingMemInst(L->getType(),
1790 L->getPointerOperand(),
1791 DepMI, *TD);
1792 if (Offset != -1)
1793 AvailVal = GetMemInstValueForLoad(DepMI, Offset, L->getType(), L, *TD);
Chris Lattnerfaf815b2009-12-06 01:57:02 +00001794 }
1795
1796 if (AvailVal) {
David Greenebf7f78e2010-01-05 01:27:17 +00001797 DEBUG(dbgs() << "GVN COERCED INST:\n" << *Dep.getInst() << '\n'
Chris Lattnerfaf815b2009-12-06 01:57:02 +00001798 << *AvailVal << '\n' << *L << "\n\n\n");
1799
1800 // Replace the load!
1801 L->replaceAllUsesWith(AvailVal);
Duncan Sands1df98592010-02-16 11:11:14 +00001802 if (AvailVal->getType()->isPointerTy())
Chris Lattnerfaf815b2009-12-06 01:57:02 +00001803 MD->invalidateCachedPointerInfo(AvailVal);
Chris Lattner4756ecb2011-04-28 16:36:48 +00001804 markInstructionForDeletion(L);
Dan Gohmanfe601042010-06-22 15:08:57 +00001805 ++NumGVNLoad;
Chris Lattnerfaf815b2009-12-06 01:57:02 +00001806 return true;
1807 }
Chris Lattner1f821512011-04-26 01:21:15 +00001808 }
1809
1810 // If the value isn't available, don't do anything!
1811 if (Dep.isClobber()) {
Torok Edwin3f3c6d42009-05-29 09:46:03 +00001812 DEBUG(
Chris Lattner1f821512011-04-26 01:21:15 +00001813 // fast print dep, using operator<< on instruction is too slow.
David Greenebf7f78e2010-01-05 01:27:17 +00001814 dbgs() << "GVN: load ";
1815 WriteAsOperand(dbgs(), L);
Chris Lattnerb2412a82009-09-21 02:42:51 +00001816 Instruction *I = Dep.getInst();
David Greenebf7f78e2010-01-05 01:27:17 +00001817 dbgs() << " is clobbered by " << *I << '\n';
Torok Edwin3f3c6d42009-05-29 09:46:03 +00001818 );
Chris Lattnerb51deb92008-12-05 21:04:20 +00001819 return false;
Torok Edwin3f3c6d42009-05-29 09:46:03 +00001820 }
Chris Lattnerb51deb92008-12-05 21:04:20 +00001821
Eli Friedmanb4141422011-10-13 22:14:57 +00001822 // If it is defined in another block, try harder.
1823 if (Dep.isNonLocal())
1824 return processNonLocalLoad(L);
1825
1826 if (!Dep.isDef()) {
Eli Friedmana990e072011-06-15 00:47:34 +00001827 DEBUG(
1828 // fast print dep, using operator<< on instruction is too slow.
1829 dbgs() << "GVN: load ";
1830 WriteAsOperand(dbgs(), L);
1831 dbgs() << " has unknown dependence\n";
1832 );
1833 return false;
1834 }
1835
Chris Lattnerb2412a82009-09-21 02:42:51 +00001836 Instruction *DepInst = Dep.getInst();
Chris Lattnerb51deb92008-12-05 21:04:20 +00001837 if (StoreInst *DepSI = dyn_cast<StoreInst>(DepInst)) {
Dan Gohman3355c4e2010-11-10 19:03:33 +00001838 Value *StoredVal = DepSI->getValueOperand();
Chris Lattnerbb6495c2009-09-20 19:03:47 +00001839
1840 // The store and load are to a must-aliased pointer, but they may not
1841 // actually have the same type. See if we know how to reuse the stored
1842 // value (depending on its type).
Chris Lattnera52fce42009-10-21 04:11:19 +00001843 if (StoredVal->getType() != L->getType()) {
Duncan Sands88c3df72010-11-12 21:10:24 +00001844 if (TD) {
Chris Lattnera52fce42009-10-21 04:11:19 +00001845 StoredVal = CoerceAvailableValueToLoadType(StoredVal, L->getType(),
1846 L, *TD);
1847 if (StoredVal == 0)
1848 return false;
1849
David Greenebf7f78e2010-01-05 01:27:17 +00001850 DEBUG(dbgs() << "GVN COERCED STORE:\n" << *DepSI << '\n' << *StoredVal
Chris Lattnera52fce42009-10-21 04:11:19 +00001851 << '\n' << *L << "\n\n\n");
1852 }
1853 else
Chris Lattnerbb6495c2009-09-20 19:03:47 +00001854 return false;
Chris Lattnerbb6495c2009-09-20 19:03:47 +00001855 }
Daniel Dunbara279bc32009-09-20 02:20:51 +00001856
Chris Lattnerb51deb92008-12-05 21:04:20 +00001857 // Remove it!
Chris Lattnerbb6495c2009-09-20 19:03:47 +00001858 L->replaceAllUsesWith(StoredVal);
Duncan Sands1df98592010-02-16 11:11:14 +00001859 if (StoredVal->getType()->isPointerTy())
Chris Lattnerbb6495c2009-09-20 19:03:47 +00001860 MD->invalidateCachedPointerInfo(StoredVal);
Chris Lattner4756ecb2011-04-28 16:36:48 +00001861 markInstructionForDeletion(L);
Dan Gohmanfe601042010-06-22 15:08:57 +00001862 ++NumGVNLoad;
Chris Lattnerb51deb92008-12-05 21:04:20 +00001863 return true;
1864 }
1865
1866 if (LoadInst *DepLI = dyn_cast<LoadInst>(DepInst)) {
Chris Lattnerbb6495c2009-09-20 19:03:47 +00001867 Value *AvailableVal = DepLI;
1868
1869 // The loads are of a must-aliased pointer, but they may not actually have
1870 // the same type. See if we know how to reuse the previously loaded value
1871 // (depending on its type).
Chris Lattnera52fce42009-10-21 04:11:19 +00001872 if (DepLI->getType() != L->getType()) {
Duncan Sands88c3df72010-11-12 21:10:24 +00001873 if (TD) {
Chris Lattner1f821512011-04-26 01:21:15 +00001874 AvailableVal = CoerceAvailableValueToLoadType(DepLI, L->getType(),
1875 L, *TD);
Chris Lattnera52fce42009-10-21 04:11:19 +00001876 if (AvailableVal == 0)
1877 return false;
Chris Lattnerbb6495c2009-09-20 19:03:47 +00001878
David Greenebf7f78e2010-01-05 01:27:17 +00001879 DEBUG(dbgs() << "GVN COERCED LOAD:\n" << *DepLI << "\n" << *AvailableVal
Chris Lattnera52fce42009-10-21 04:11:19 +00001880 << "\n" << *L << "\n\n\n");
1881 }
1882 else
1883 return false;
Chris Lattnerbb6495c2009-09-20 19:03:47 +00001884 }
1885
Chris Lattnerb51deb92008-12-05 21:04:20 +00001886 // Remove it!
Chris Lattnerbb6495c2009-09-20 19:03:47 +00001887 L->replaceAllUsesWith(AvailableVal);
Duncan Sands1df98592010-02-16 11:11:14 +00001888 if (DepLI->getType()->isPointerTy())
Chris Lattnerbc99be12008-12-09 22:06:23 +00001889 MD->invalidateCachedPointerInfo(DepLI);
Chris Lattner4756ecb2011-04-28 16:36:48 +00001890 markInstructionForDeletion(L);
Dan Gohmanfe601042010-06-22 15:08:57 +00001891 ++NumGVNLoad;
Chris Lattnerb51deb92008-12-05 21:04:20 +00001892 return true;
1893 }
Daniel Dunbara279bc32009-09-20 02:20:51 +00001894
Chris Lattner237a8282008-11-30 01:39:32 +00001895 // If this load really doesn't depend on anything, then we must be loading an
1896 // undef value. This can happen when loading for a fresh allocation with no
1897 // intervening stores, for example.
Victor Hernandez7b929da2009-10-23 21:09:37 +00001898 if (isa<AllocaInst>(DepInst) || isMalloc(DepInst)) {
Owen Anderson9e9a0d52009-07-30 23:03:37 +00001899 L->replaceAllUsesWith(UndefValue::get(L->getType()));
Chris Lattner4756ecb2011-04-28 16:36:48 +00001900 markInstructionForDeletion(L);
Dan Gohmanfe601042010-06-22 15:08:57 +00001901 ++NumGVNLoad;
Chris Lattnerb51deb92008-12-05 21:04:20 +00001902 return true;
Eli Friedmanb6c36e42008-02-12 12:08:14 +00001903 }
Owen Andersonb62f7922009-10-28 07:05:35 +00001904
Owen Anderson9ff5a232009-12-02 07:35:19 +00001905 // If this load occurs either right after a lifetime begin,
Owen Andersonb62f7922009-10-28 07:05:35 +00001906 // then the loaded value is undefined.
Chris Lattner4756ecb2011-04-28 16:36:48 +00001907 if (IntrinsicInst *II = dyn_cast<IntrinsicInst>(DepInst)) {
Owen Anderson9ff5a232009-12-02 07:35:19 +00001908 if (II->getIntrinsicID() == Intrinsic::lifetime_start) {
Owen Andersonb62f7922009-10-28 07:05:35 +00001909 L->replaceAllUsesWith(UndefValue::get(L->getType()));
Chris Lattner4756ecb2011-04-28 16:36:48 +00001910 markInstructionForDeletion(L);
Dan Gohmanfe601042010-06-22 15:08:57 +00001911 ++NumGVNLoad;
Owen Andersonb62f7922009-10-28 07:05:35 +00001912 return true;
1913 }
1914 }
Eli Friedmanb6c36e42008-02-12 12:08:14 +00001915
Chris Lattnerb51deb92008-12-05 21:04:20 +00001916 return false;
Owen Anderson1ad2cb72007-07-24 17:55:58 +00001917}
1918
Owen Anderson7a75d612011-01-04 19:13:25 +00001919// findLeader - In order to find a leader for a given value number at a
Owen Anderson68c26392010-11-19 22:48:40 +00001920// specific basic block, we first obtain the list of all Values for that number,
1921// and then scan the list to find one whose block dominates the block in
1922// question. This is fast because dominator tree queries consist of only
1923// a few comparisons of DFS numbers.
Owen Anderson7a75d612011-01-04 19:13:25 +00001924Value *GVN::findLeader(BasicBlock *BB, uint32_t num) {
Owen Andersonb1602ab2011-01-04 19:29:46 +00001925 LeaderTableEntry Vals = LeaderTable[num];
Owen Andersonf0568382010-12-21 23:54:34 +00001926 if (!Vals.Val) return 0;
Owen Andersona04a0642010-11-18 18:32:40 +00001927
Owen Andersonf0568382010-12-21 23:54:34 +00001928 Value *Val = 0;
1929 if (DT->dominates(Vals.BB, BB)) {
1930 Val = Vals.Val;
1931 if (isa<Constant>(Val)) return Val;
1932 }
1933
Owen Anderson7a75d612011-01-04 19:13:25 +00001934 LeaderTableEntry* Next = Vals.Next;
Owen Andersona04a0642010-11-18 18:32:40 +00001935 while (Next) {
Owen Andersonf0568382010-12-21 23:54:34 +00001936 if (DT->dominates(Next->BB, BB)) {
1937 if (isa<Constant>(Next->Val)) return Next->Val;
1938 if (!Val) Val = Next->Val;
1939 }
Owen Andersona04a0642010-11-18 18:32:40 +00001940
Owen Andersonf0568382010-12-21 23:54:34 +00001941 Next = Next->Next;
Owen Anderson6fafe842008-06-20 01:15:47 +00001942 }
Daniel Dunbara279bc32009-09-20 02:20:51 +00001943
Owen Andersonf0568382010-12-21 23:54:34 +00001944 return Val;
Owen Anderson6fafe842008-06-20 01:15:47 +00001945}
1946
Duncan Sands02b5e722011-10-05 14:28:49 +00001947/// replaceAllDominatedUsesWith - Replace all uses of 'From' with 'To' if the
1948/// use is dominated by the given basic block. Returns the number of uses that
1949/// were replaced.
1950unsigned GVN::replaceAllDominatedUsesWith(Value *From, Value *To,
1951 BasicBlock *Root) {
1952 unsigned Count = 0;
1953 for (Value::use_iterator UI = From->use_begin(), UE = From->use_end();
1954 UI != UE; ) {
Duncan Sands8c160542012-02-08 14:10:53 +00001955 Use &U = (UI++).getUse();
1956 if (DT->dominates(Root, cast<Instruction>(U.getUser())->getParent())) {
1957 U.set(To);
Duncan Sands02b5e722011-10-05 14:28:49 +00001958 ++Count;
1959 }
1960 }
1961 return Count;
1962}
1963
1964/// propagateEquality - The given values are known to be equal in every block
1965/// dominated by 'Root'. Exploit this, for example by replacing 'LHS' with
1966/// 'RHS' everywhere in the scope. Returns whether a change was made.
1967bool GVN::propagateEquality(Value *LHS, Value *RHS, BasicBlock *Root) {
1968 if (LHS == RHS) return false;
1969 assert(LHS->getType() == RHS->getType() && "Equal but types differ!");
1970
1971 // Don't try to propagate equalities between constants.
1972 if (isa<Constant>(LHS) && isa<Constant>(RHS))
1973 return false;
1974
1975 // Make sure that any constants are on the right-hand side. In general the
1976 // best results are obtained by placing the longest lived value on the RHS.
1977 if (isa<Constant>(LHS))
1978 std::swap(LHS, RHS);
1979
1980 // If neither term is constant then bail out. This is not for correctness,
1981 // it's just that the non-constant case is much less useful: it occurs just
1982 // as often as the constant case but handling it hardly ever results in an
1983 // improvement.
1984 if (!isa<Constant>(RHS))
1985 return false;
1986
1987 // If value numbering later deduces that an instruction in the scope is equal
1988 // to 'LHS' then ensure it will be turned into 'RHS'.
1989 addToLeaderTable(VN.lookup_or_add(LHS), RHS, Root);
1990
Duncan Sands1673b152011-10-15 11:13:42 +00001991 // Replace all occurrences of 'LHS' with 'RHS' everywhere in the scope. As
1992 // LHS always has at least one use that is not dominated by Root, this will
1993 // never do anything if LHS has only one use.
1994 bool Changed = false;
1995 if (!LHS->hasOneUse()) {
1996 unsigned NumReplacements = replaceAllDominatedUsesWith(LHS, RHS, Root);
1997 Changed |= NumReplacements > 0;
1998 NumGVNEqProp += NumReplacements;
1999 }
Duncan Sands02b5e722011-10-05 14:28:49 +00002000
2001 // Now try to deduce additional equalities from this one. For example, if the
2002 // known equality was "(A != B)" == "false" then it follows that A and B are
2003 // equal in the scope. Only boolean equalities with an explicit true or false
2004 // RHS are currently supported.
2005 if (!RHS->getType()->isIntegerTy(1))
2006 // Not a boolean equality - bail out.
2007 return Changed;
2008 ConstantInt *CI = dyn_cast<ConstantInt>(RHS);
2009 if (!CI)
2010 // RHS neither 'true' nor 'false' - bail out.
2011 return Changed;
2012 // Whether RHS equals 'true'. Otherwise it equals 'false'.
2013 bool isKnownTrue = CI->isAllOnesValue();
2014 bool isKnownFalse = !isKnownTrue;
2015
2016 // If "A && B" is known true then both A and B are known true. If "A || B"
2017 // is known false then both A and B are known false.
2018 Value *A, *B;
2019 if ((isKnownTrue && match(LHS, m_And(m_Value(A), m_Value(B)))) ||
2020 (isKnownFalse && match(LHS, m_Or(m_Value(A), m_Value(B))))) {
2021 Changed |= propagateEquality(A, RHS, Root);
2022 Changed |= propagateEquality(B, RHS, Root);
2023 return Changed;
2024 }
2025
2026 // If we are propagating an equality like "(A == B)" == "true" then also
Duncan Sands669011f2012-02-27 08:14:30 +00002027 // propagate the equality A == B. When propagating a comparison such as
2028 // "(A >= B)" == "true", replace all instances of "A < B" with "false".
Duncan Sands02b5e722011-10-05 14:28:49 +00002029 if (ICmpInst *Cmp = dyn_cast<ICmpInst>(LHS)) {
Duncan Sands669011f2012-02-27 08:14:30 +00002030 Value *Op0 = Cmp->getOperand(0), *Op1 = Cmp->getOperand(1);
2031
2032 // If "A == B" is known true, or "A != B" is known false, then replace
2033 // A with B everywhere in the scope.
Duncan Sands02b5e722011-10-05 14:28:49 +00002034 if ((isKnownTrue && Cmp->getPredicate() == CmpInst::ICMP_EQ) ||
Duncan Sands669011f2012-02-27 08:14:30 +00002035 (isKnownFalse && Cmp->getPredicate() == CmpInst::ICMP_NE))
Duncan Sands02b5e722011-10-05 14:28:49 +00002036 Changed |= propagateEquality(Op0, Op1, Root);
Duncan Sands669011f2012-02-27 08:14:30 +00002037
2038 // If "A >= B" is known true, replace "A < B" with false everywhere.
2039 CmpInst::Predicate NotPred = Cmp->getInversePredicate();
2040 Constant *NotVal = ConstantInt::get(Cmp->getType(), isKnownFalse);
2041 // Since we don't have the instruction "A < B" immediately to hand, work out
2042 // the value number that it would have and use that to find an appropriate
2043 // instruction (if any).
2044 unsigned Num = VN.lookup_or_add_cmp(Cmp->getOpcode(), NotPred, Op0, Op1);
2045 Value *NotCmp = findLeader(Root, Num);
2046 if (NotCmp && isa<Instruction>(NotCmp)) {
2047 unsigned NumReplacements =
2048 replaceAllDominatedUsesWith(NotCmp, NotVal, Root);
2049 Changed |= NumReplacements > 0;
2050 NumGVNEqProp += NumReplacements;
Duncan Sands02b5e722011-10-05 14:28:49 +00002051 }
Duncan Sands669011f2012-02-27 08:14:30 +00002052 // Ensure that any instruction in scope that gets the "A < B" value number
2053 // is replaced with false.
2054 addToLeaderTable(Num, NotVal, Root);
2055
Duncan Sands02b5e722011-10-05 14:28:49 +00002056 return Changed;
2057 }
2058
2059 return Changed;
2060}
Owen Anderson255dafc2008-12-15 02:03:00 +00002061
Duncan Sands3f329cb2011-10-07 08:29:06 +00002062/// isOnlyReachableViaThisEdge - There is an edge from 'Src' to 'Dst'. Return
2063/// true if every path from the entry block to 'Dst' passes via this edge. In
2064/// particular 'Dst' must not be reachable via another edge from 'Src'.
2065static bool isOnlyReachableViaThisEdge(BasicBlock *Src, BasicBlock *Dst,
2066 DominatorTree *DT) {
Duncan Sands33756f92012-02-05 18:25:50 +00002067 // While in theory it is interesting to consider the case in which Dst has
2068 // more than one predecessor, because Dst might be part of a loop which is
2069 // only reachable from Src, in practice it is pointless since at the time
2070 // GVN runs all such loops have preheaders, which means that Dst will have
2071 // been changed to have only one predecessor, namely Src.
Duncan Sandsc4fd4482012-02-05 19:43:37 +00002072 BasicBlock *Pred = Dst->getSinglePredecessor();
2073 assert((!Pred || Pred == Src) && "No edge between these basic blocks!");
Duncan Sands33756f92012-02-05 18:25:50 +00002074 (void)Src;
Duncan Sandsc4fd4482012-02-05 19:43:37 +00002075 return Pred != 0;
Duncan Sands3f329cb2011-10-07 08:29:06 +00002076}
2077
Owen Anderson36057c72007-08-14 18:16:29 +00002078/// processInstruction - When calculating availability, handle an instruction
Owen Anderson1ad2cb72007-07-24 17:55:58 +00002079/// by inserting it into the appropriate sets
Chris Lattnerf07054d2011-04-28 16:18:52 +00002080bool GVN::processInstruction(Instruction *I) {
Devang Patelbe905e22010-02-11 00:20:49 +00002081 // Ignore dbg info intrinsics.
2082 if (isa<DbgInfoIntrinsic>(I))
2083 return false;
2084
Duncan Sands88c3df72010-11-12 21:10:24 +00002085 // If the instruction can be easily simplified then do so now in preference
2086 // to value numbering it. Value numbering often exposes redundancies, for
2087 // example if it determines that %y is equal to %x then the instruction
2088 // "%z = and i32 %x, %y" becomes "%z = and i32 %x, %x" which we now simplify.
Chad Rosier618c1db2011-12-01 03:08:23 +00002089 if (Value *V = SimplifyInstruction(I, TD, TLI, DT)) {
Duncan Sands88c3df72010-11-12 21:10:24 +00002090 I->replaceAllUsesWith(V);
2091 if (MD && V->getType()->isPointerTy())
2092 MD->invalidateCachedPointerInfo(V);
Chris Lattner4756ecb2011-04-28 16:36:48 +00002093 markInstructionForDeletion(I);
Duncan Sands02b5e722011-10-05 14:28:49 +00002094 ++NumGVNSimpl;
Duncan Sands88c3df72010-11-12 21:10:24 +00002095 return true;
2096 }
2097
Chris Lattnerb2412a82009-09-21 02:42:51 +00002098 if (LoadInst *LI = dyn_cast<LoadInst>(I)) {
Chris Lattnerf07054d2011-04-28 16:18:52 +00002099 if (processLoad(LI))
2100 return true;
Daniel Dunbara279bc32009-09-20 02:20:51 +00002101
Chris Lattnerf07054d2011-04-28 16:18:52 +00002102 unsigned Num = VN.lookup_or_add(LI);
2103 addToLeaderTable(Num, LI, LI->getParent());
2104 return false;
Owen Andersonb2303722008-06-18 21:41:49 +00002105 }
Daniel Dunbara279bc32009-09-20 02:20:51 +00002106
Duncan Sands02b5e722011-10-05 14:28:49 +00002107 // For conditional branches, we can perform simple conditional propagation on
Owen Andersonf0568382010-12-21 23:54:34 +00002108 // the condition value itself.
2109 if (BranchInst *BI = dyn_cast<BranchInst>(I)) {
Owen Andersonf0568382010-12-21 23:54:34 +00002110 if (!BI->isConditional() || isa<Constant>(BI->getCondition()))
2111 return false;
Duncan Sands02b5e722011-10-05 14:28:49 +00002112
Owen Andersonf0568382010-12-21 23:54:34 +00002113 Value *BranchCond = BI->getCondition();
Duncan Sands02b5e722011-10-05 14:28:49 +00002114
Owen Andersonf0568382010-12-21 23:54:34 +00002115 BasicBlock *TrueSucc = BI->getSuccessor(0);
2116 BasicBlock *FalseSucc = BI->getSuccessor(1);
Duncan Sands452c58f2011-10-05 14:17:01 +00002117 BasicBlock *Parent = BI->getParent();
Duncan Sands3f329cb2011-10-07 08:29:06 +00002118 bool Changed = false;
Duncan Sands452c58f2011-10-05 14:17:01 +00002119
Duncan Sands3f329cb2011-10-07 08:29:06 +00002120 if (isOnlyReachableViaThisEdge(Parent, TrueSucc, DT))
2121 Changed |= propagateEquality(BranchCond,
Duncan Sands02b5e722011-10-05 14:28:49 +00002122 ConstantInt::getTrue(TrueSucc->getContext()),
Duncan Sands3f329cb2011-10-07 08:29:06 +00002123 TrueSucc);
2124
2125 if (isOnlyReachableViaThisEdge(Parent, FalseSucc, DT))
2126 Changed |= propagateEquality(BranchCond,
2127 ConstantInt::getFalse(FalseSucc->getContext()),
2128 FalseSucc);
2129
2130 return Changed;
Owen Andersonf0568382010-12-21 23:54:34 +00002131 }
Duncan Sands3f329cb2011-10-07 08:29:06 +00002132
2133 // For switches, propagate the case values into the case destinations.
2134 if (SwitchInst *SI = dyn_cast<SwitchInst>(I)) {
2135 Value *SwitchCond = SI->getCondition();
2136 BasicBlock *Parent = SI->getParent();
2137 bool Changed = false;
Stepan Dyatkovskiy24473122012-02-01 07:49:51 +00002138 for (unsigned i = 0, e = SI->getNumCases(); i != e; ++i) {
2139 BasicBlock *Dst = SI->getCaseSuccessor(i);
Duncan Sands3f329cb2011-10-07 08:29:06 +00002140 if (isOnlyReachableViaThisEdge(Parent, Dst, DT))
2141 Changed |= propagateEquality(SwitchCond, SI->getCaseValue(i), Dst);
2142 }
2143 return Changed;
2144 }
2145
Owen Anderson2cf75372011-01-04 22:15:21 +00002146 // Instructions with void type don't return a value, so there's
2147 // no point in trying to find redudancies in them.
2148 if (I->getType()->isVoidTy()) return false;
2149
Owen Andersonc2146a62011-01-04 18:54:18 +00002150 uint32_t NextNum = VN.getNextUnusedValueNumber();
2151 unsigned Num = VN.lookup_or_add(I);
2152
Owen Andersone5ffa902008-04-07 09:59:07 +00002153 // Allocations are always uniquely numbered, so we can save time and memory
Daniel Dunbara279bc32009-09-20 02:20:51 +00002154 // by fast failing them.
Chris Lattner459f4f82010-12-19 20:24:28 +00002155 if (isa<AllocaInst>(I) || isa<TerminatorInst>(I) || isa<PHINode>(I)) {
Owen Anderson7a75d612011-01-04 19:13:25 +00002156 addToLeaderTable(Num, I, I->getParent());
Owen Andersone5ffa902008-04-07 09:59:07 +00002157 return false;
Owen Andersonb2303722008-06-18 21:41:49 +00002158 }
Daniel Dunbara279bc32009-09-20 02:20:51 +00002159
Owen Anderson0ae33ef2008-07-03 17:44:33 +00002160 // If the number we were assigned was a brand new VN, then we don't
2161 // need to do a lookup to see if the number already exists
2162 // somewhere in the domtree: it can't!
Chris Lattner459f4f82010-12-19 20:24:28 +00002163 if (Num == NextNum) {
Owen Anderson7a75d612011-01-04 19:13:25 +00002164 addToLeaderTable(Num, I, I->getParent());
Chris Lattner459f4f82010-12-19 20:24:28 +00002165 return false;
2166 }
2167
Owen Anderson255dafc2008-12-15 02:03:00 +00002168 // Perform fast-path value-number based elimination of values inherited from
2169 // dominators.
Owen Anderson7a75d612011-01-04 19:13:25 +00002170 Value *repl = findLeader(I->getParent(), Num);
Chris Lattner459f4f82010-12-19 20:24:28 +00002171 if (repl == 0) {
2172 // Failure, just remember this instance for future use.
Owen Anderson7a75d612011-01-04 19:13:25 +00002173 addToLeaderTable(Num, I, I->getParent());
Chris Lattner459f4f82010-12-19 20:24:28 +00002174 return false;
Owen Anderson1ad2cb72007-07-24 17:55:58 +00002175 }
Chris Lattner459f4f82010-12-19 20:24:28 +00002176
2177 // Remove it!
Chris Lattner459f4f82010-12-19 20:24:28 +00002178 I->replaceAllUsesWith(repl);
2179 if (MD && repl->getType()->isPointerTy())
2180 MD->invalidateCachedPointerInfo(repl);
Chris Lattner4756ecb2011-04-28 16:36:48 +00002181 markInstructionForDeletion(I);
Chris Lattner459f4f82010-12-19 20:24:28 +00002182 return true;
Owen Anderson1ad2cb72007-07-24 17:55:58 +00002183}
2184
Bill Wendling30788b82008-12-22 22:32:22 +00002185/// runOnFunction - This is the main transformation entry point for a function.
Owen Anderson3e75a422007-08-14 18:04:11 +00002186bool GVN::runOnFunction(Function& F) {
Dan Gohman4ec01b22009-11-14 02:27:51 +00002187 if (!NoLoads)
2188 MD = &getAnalysis<MemoryDependenceAnalysis>();
Chris Lattner663e4412008-12-01 00:40:32 +00002189 DT = &getAnalysis<DominatorTree>();
Duncan Sands88c3df72010-11-12 21:10:24 +00002190 TD = getAnalysisIfAvailable<TargetData>();
Chad Rosier618c1db2011-12-01 03:08:23 +00002191 TLI = &getAnalysis<TargetLibraryInfo>();
Owen Andersona472c4a2008-05-12 20:15:55 +00002192 VN.setAliasAnalysis(&getAnalysis<AliasAnalysis>());
Chris Lattner663e4412008-12-01 00:40:32 +00002193 VN.setMemDep(MD);
2194 VN.setDomTree(DT);
Daniel Dunbara279bc32009-09-20 02:20:51 +00002195
Chris Lattnerb2412a82009-09-21 02:42:51 +00002196 bool Changed = false;
2197 bool ShouldContinue = true;
Daniel Dunbara279bc32009-09-20 02:20:51 +00002198
Owen Anderson5d0af032008-07-16 17:52:31 +00002199 // Merge unconditional branches, allowing PRE to catch more
2200 // optimization opportunities.
2201 for (Function::iterator FI = F.begin(), FE = F.end(); FI != FE; ) {
Chris Lattnerb5b79972011-01-11 08:13:40 +00002202 BasicBlock *BB = FI++;
2203
Owen Andersonb31b06d2008-07-17 00:01:40 +00002204 bool removedBlock = MergeBlockIntoPredecessor(BB, this);
Dan Gohmanfe601042010-06-22 15:08:57 +00002205 if (removedBlock) ++NumGVNBlocks;
Daniel Dunbara279bc32009-09-20 02:20:51 +00002206
Chris Lattnerb2412a82009-09-21 02:42:51 +00002207 Changed |= removedBlock;
Owen Anderson5d0af032008-07-16 17:52:31 +00002208 }
Daniel Dunbara279bc32009-09-20 02:20:51 +00002209
Chris Lattnerae199312008-12-09 19:21:47 +00002210 unsigned Iteration = 0;
Chris Lattnerb2412a82009-09-21 02:42:51 +00002211 while (ShouldContinue) {
David Greenebf7f78e2010-01-05 01:27:17 +00002212 DEBUG(dbgs() << "GVN iteration: " << Iteration << "\n");
Chris Lattnerb2412a82009-09-21 02:42:51 +00002213 ShouldContinue = iterateOnFunction(F);
Bob Wilson484d4a32010-02-16 19:51:59 +00002214 if (splitCriticalEdges())
2215 ShouldContinue = true;
Chris Lattnerb2412a82009-09-21 02:42:51 +00002216 Changed |= ShouldContinue;
Chris Lattnerae199312008-12-09 19:21:47 +00002217 ++Iteration;
Owen Anderson3e75a422007-08-14 18:04:11 +00002218 }
Daniel Dunbara279bc32009-09-20 02:20:51 +00002219
Owen Andersone98c54c2008-07-18 18:03:38 +00002220 if (EnablePRE) {
Owen Anderson0c7f91c2008-09-03 23:06:07 +00002221 bool PREChanged = true;
2222 while (PREChanged) {
2223 PREChanged = performPRE(F);
Chris Lattnerb2412a82009-09-21 02:42:51 +00002224 Changed |= PREChanged;
Owen Anderson0c7f91c2008-09-03 23:06:07 +00002225 }
Owen Andersone98c54c2008-07-18 18:03:38 +00002226 }
Chris Lattnerae199312008-12-09 19:21:47 +00002227 // FIXME: Should perform GVN again after PRE does something. PRE can move
2228 // computations into blocks where they become fully redundant. Note that
2229 // we can't do this until PRE's critical edge splitting updates memdep.
2230 // Actually, when this happens, we should just fully integrate PRE into GVN.
Nuno Lopes7cdd9ee2008-10-10 16:25:50 +00002231
2232 cleanupGlobalSets();
2233
Chris Lattnerb2412a82009-09-21 02:42:51 +00002234 return Changed;
Owen Anderson3e75a422007-08-14 18:04:11 +00002235}
2236
2237
Chris Lattnerb2412a82009-09-21 02:42:51 +00002238bool GVN::processBlock(BasicBlock *BB) {
Chris Lattnerf07054d2011-04-28 16:18:52 +00002239 // FIXME: Kill off InstrsToErase by doing erasing eagerly in a helper function
2240 // (and incrementing BI before processing an instruction).
2241 assert(InstrsToErase.empty() &&
2242 "We expect InstrsToErase to be empty across iterations");
Chris Lattnerb2412a82009-09-21 02:42:51 +00002243 bool ChangedFunction = false;
Daniel Dunbara279bc32009-09-20 02:20:51 +00002244
Owen Andersonaf4240a2008-06-12 19:25:32 +00002245 for (BasicBlock::iterator BI = BB->begin(), BE = BB->end();
2246 BI != BE;) {
Chris Lattnerf07054d2011-04-28 16:18:52 +00002247 ChangedFunction |= processInstruction(BI);
2248 if (InstrsToErase.empty()) {
Owen Andersonaf4240a2008-06-12 19:25:32 +00002249 ++BI;
2250 continue;
2251 }
Daniel Dunbara279bc32009-09-20 02:20:51 +00002252
Owen Andersonaf4240a2008-06-12 19:25:32 +00002253 // If we need some instructions deleted, do it now.
Chris Lattnerf07054d2011-04-28 16:18:52 +00002254 NumGVNInstr += InstrsToErase.size();
Daniel Dunbara279bc32009-09-20 02:20:51 +00002255
Owen Andersonaf4240a2008-06-12 19:25:32 +00002256 // Avoid iterator invalidation.
2257 bool AtStart = BI == BB->begin();
2258 if (!AtStart)
2259 --BI;
2260
Chris Lattnerf07054d2011-04-28 16:18:52 +00002261 for (SmallVector<Instruction*, 4>::iterator I = InstrsToErase.begin(),
2262 E = InstrsToErase.end(); I != E; ++I) {
David Greenebf7f78e2010-01-05 01:27:17 +00002263 DEBUG(dbgs() << "GVN removed: " << **I << '\n');
Dan Gohman4ec01b22009-11-14 02:27:51 +00002264 if (MD) MD->removeInstruction(*I);
Owen Andersonaf4240a2008-06-12 19:25:32 +00002265 (*I)->eraseFromParent();
Bill Wendlingec40d502008-12-22 21:57:30 +00002266 DEBUG(verifyRemoved(*I));
Chris Lattner663e4412008-12-01 00:40:32 +00002267 }
Chris Lattnerf07054d2011-04-28 16:18:52 +00002268 InstrsToErase.clear();
Owen Andersonaf4240a2008-06-12 19:25:32 +00002269
2270 if (AtStart)
2271 BI = BB->begin();
2272 else
2273 ++BI;
Owen Andersonaf4240a2008-06-12 19:25:32 +00002274 }
Daniel Dunbara279bc32009-09-20 02:20:51 +00002275
Chris Lattnerb2412a82009-09-21 02:42:51 +00002276 return ChangedFunction;
Owen Andersonaf4240a2008-06-12 19:25:32 +00002277}
2278
Owen Andersonb2303722008-06-18 21:41:49 +00002279/// performPRE - Perform a purely local form of PRE that looks for diamond
2280/// control flow patterns and attempts to perform simple PRE at the join point.
Chris Lattnerfb6e7012009-10-31 22:11:15 +00002281bool GVN::performPRE(Function &F) {
Chris Lattnerd0f5bfc2008-12-01 07:35:54 +00002282 bool Changed = false;
Chris Lattner09713792008-12-01 07:29:03 +00002283 DenseMap<BasicBlock*, Value*> predMap;
Owen Andersonb2303722008-06-18 21:41:49 +00002284 for (df_iterator<BasicBlock*> DI = df_begin(&F.getEntryBlock()),
2285 DE = df_end(&F.getEntryBlock()); DI != DE; ++DI) {
Chris Lattnerb2412a82009-09-21 02:42:51 +00002286 BasicBlock *CurrentBlock = *DI;
Daniel Dunbara279bc32009-09-20 02:20:51 +00002287
Owen Andersonb2303722008-06-18 21:41:49 +00002288 // Nothing to PRE in the entry block.
2289 if (CurrentBlock == &F.getEntryBlock()) continue;
Daniel Dunbara279bc32009-09-20 02:20:51 +00002290
Bill Wendling795cf5e2011-08-17 21:32:02 +00002291 // Don't perform PRE on a landing pad.
2292 if (CurrentBlock->isLandingPad()) continue;
2293
Owen Andersonb2303722008-06-18 21:41:49 +00002294 for (BasicBlock::iterator BI = CurrentBlock->begin(),
2295 BE = CurrentBlock->end(); BI != BE; ) {
Chris Lattnerd0f5bfc2008-12-01 07:35:54 +00002296 Instruction *CurInst = BI++;
Duncan Sands7af1c782009-05-06 06:49:50 +00002297
Victor Hernandez7b929da2009-10-23 21:09:37 +00002298 if (isa<AllocaInst>(CurInst) ||
Victor Hernandez83d63912009-09-18 22:35:49 +00002299 isa<TerminatorInst>(CurInst) || isa<PHINode>(CurInst) ||
Devang Patel9674d152009-10-14 17:29:00 +00002300 CurInst->getType()->isVoidTy() ||
Duncan Sands7af1c782009-05-06 06:49:50 +00002301 CurInst->mayReadFromMemory() || CurInst->mayHaveSideEffects() ||
John Criswell090c0a22009-03-10 15:04:53 +00002302 isa<DbgInfoIntrinsic>(CurInst))
Chris Lattnerd0f5bfc2008-12-01 07:35:54 +00002303 continue;
Owen Anderson5015b342010-08-07 00:20:35 +00002304
2305 // We don't currently value number ANY inline asm calls.
2306 if (CallInst *CallI = dyn_cast<CallInst>(CurInst))
2307 if (CallI->isInlineAsm())
2308 continue;
Duncan Sands7af1c782009-05-06 06:49:50 +00002309
Chris Lattnerb2412a82009-09-21 02:42:51 +00002310 uint32_t ValNo = VN.lookup(CurInst);
Daniel Dunbara279bc32009-09-20 02:20:51 +00002311
Owen Andersonb2303722008-06-18 21:41:49 +00002312 // Look for the predecessors for PRE opportunities. We're
2313 // only trying to solve the basic diamond case, where
2314 // a value is computed in the successor and one predecessor,
2315 // but not the other. We also explicitly disallow cases
2316 // where the successor is its own predecessor, because they're
2317 // more complicated to get right.
Chris Lattnerb2412a82009-09-21 02:42:51 +00002318 unsigned NumWith = 0;
2319 unsigned NumWithout = 0;
2320 BasicBlock *PREPred = 0;
Chris Lattner09713792008-12-01 07:29:03 +00002321 predMap.clear();
2322
Owen Andersonb2303722008-06-18 21:41:49 +00002323 for (pred_iterator PI = pred_begin(CurrentBlock),
2324 PE = pred_end(CurrentBlock); PI != PE; ++PI) {
Gabor Greif08149852010-07-09 14:36:49 +00002325 BasicBlock *P = *PI;
Owen Andersonb2303722008-06-18 21:41:49 +00002326 // We're not interested in PRE where the block is its
Bob Wilsone7b635f2010-02-03 00:33:21 +00002327 // own predecessor, or in blocks with predecessors
Owen Anderson6fafe842008-06-20 01:15:47 +00002328 // that are not reachable.
Gabor Greif08149852010-07-09 14:36:49 +00002329 if (P == CurrentBlock) {
Chris Lattnerb2412a82009-09-21 02:42:51 +00002330 NumWithout = 2;
Owen Anderson6fafe842008-06-20 01:15:47 +00002331 break;
Owen Andersona04a0642010-11-18 18:32:40 +00002332 } else if (!DT->dominates(&F.getEntryBlock(), P)) {
Chris Lattnerb2412a82009-09-21 02:42:51 +00002333 NumWithout = 2;
Owen Anderson6fafe842008-06-20 01:15:47 +00002334 break;
2335 }
Daniel Dunbara279bc32009-09-20 02:20:51 +00002336
Owen Anderson7a75d612011-01-04 19:13:25 +00002337 Value* predV = findLeader(P, ValNo);
Owen Andersona04a0642010-11-18 18:32:40 +00002338 if (predV == 0) {
Gabor Greif08149852010-07-09 14:36:49 +00002339 PREPred = P;
Dan Gohmanfe601042010-06-22 15:08:57 +00002340 ++NumWithout;
Owen Andersona04a0642010-11-18 18:32:40 +00002341 } else if (predV == CurInst) {
Chris Lattnerb2412a82009-09-21 02:42:51 +00002342 NumWithout = 2;
Owen Andersonb2303722008-06-18 21:41:49 +00002343 } else {
Owen Andersona04a0642010-11-18 18:32:40 +00002344 predMap[P] = predV;
Dan Gohmanfe601042010-06-22 15:08:57 +00002345 ++NumWith;
Owen Andersonb2303722008-06-18 21:41:49 +00002346 }
2347 }
Daniel Dunbara279bc32009-09-20 02:20:51 +00002348
Owen Andersonb2303722008-06-18 21:41:49 +00002349 // Don't do PRE when it might increase code size, i.e. when
2350 // we would need to insert instructions in more than one pred.
Chris Lattnerb2412a82009-09-21 02:42:51 +00002351 if (NumWithout != 1 || NumWith == 0)
Owen Andersonb2303722008-06-18 21:41:49 +00002352 continue;
Chris Lattnerfb6e7012009-10-31 22:11:15 +00002353
2354 // Don't do PRE across indirect branch.
2355 if (isa<IndirectBrInst>(PREPred->getTerminator()))
2356 continue;
Daniel Dunbara279bc32009-09-20 02:20:51 +00002357
Owen Anderson5c274ee2008-06-19 19:54:19 +00002358 // We can't do PRE safely on a critical edge, so instead we schedule
2359 // the edge to be split and perform the PRE the next time we iterate
2360 // on the function.
Bob Wilsonae23daf2010-02-16 21:06:42 +00002361 unsigned SuccNum = GetSuccessorNumber(PREPred, CurrentBlock);
Chris Lattnerb2412a82009-09-21 02:42:51 +00002362 if (isCriticalEdge(PREPred->getTerminator(), SuccNum)) {
2363 toSplit.push_back(std::make_pair(PREPred->getTerminator(), SuccNum));
Owen Anderson5c274ee2008-06-19 19:54:19 +00002364 continue;
2365 }
Daniel Dunbara279bc32009-09-20 02:20:51 +00002366
Bob Wilsone7b635f2010-02-03 00:33:21 +00002367 // Instantiate the expression in the predecessor that lacked it.
Owen Andersonb2303722008-06-18 21:41:49 +00002368 // Because we are going top-down through the block, all value numbers
2369 // will be available in the predecessor by the time we need them. Any
Bob Wilsone7b635f2010-02-03 00:33:21 +00002370 // that weren't originally present will have been instantiated earlier
Owen Andersonb2303722008-06-18 21:41:49 +00002371 // in this loop.
Nick Lewycky67760642009-09-27 07:38:41 +00002372 Instruction *PREInstr = CurInst->clone();
Owen Andersonb2303722008-06-18 21:41:49 +00002373 bool success = true;
Chris Lattnerd0f5bfc2008-12-01 07:35:54 +00002374 for (unsigned i = 0, e = CurInst->getNumOperands(); i != e; ++i) {
2375 Value *Op = PREInstr->getOperand(i);
2376 if (isa<Argument>(Op) || isa<Constant>(Op) || isa<GlobalValue>(Op))
2377 continue;
Daniel Dunbara279bc32009-09-20 02:20:51 +00002378
Owen Anderson7a75d612011-01-04 19:13:25 +00002379 if (Value *V = findLeader(PREPred, VN.lookup(Op))) {
Chris Lattnerd0f5bfc2008-12-01 07:35:54 +00002380 PREInstr->setOperand(i, V);
2381 } else {
2382 success = false;
2383 break;
Owen Andersonc45996b2008-07-11 20:05:13 +00002384 }
Owen Andersonb2303722008-06-18 21:41:49 +00002385 }
Daniel Dunbara279bc32009-09-20 02:20:51 +00002386
Owen Andersonb2303722008-06-18 21:41:49 +00002387 // Fail out if we encounter an operand that is not available in
Daniel Dunbara279bc32009-09-20 02:20:51 +00002388 // the PRE predecessor. This is typically because of loads which
Owen Andersonb2303722008-06-18 21:41:49 +00002389 // are not value numbered precisely.
2390 if (!success) {
2391 delete PREInstr;
Bill Wendling70ded192008-12-22 22:14:07 +00002392 DEBUG(verifyRemoved(PREInstr));
Owen Andersonb2303722008-06-18 21:41:49 +00002393 continue;
2394 }
Daniel Dunbara279bc32009-09-20 02:20:51 +00002395
Owen Andersonb2303722008-06-18 21:41:49 +00002396 PREInstr->insertBefore(PREPred->getTerminator());
Chris Lattnerd0f5bfc2008-12-01 07:35:54 +00002397 PREInstr->setName(CurInst->getName() + ".pre");
Devang Patelde985682011-05-17 20:00:02 +00002398 PREInstr->setDebugLoc(CurInst->getDebugLoc());
Owen Anderson6fafe842008-06-20 01:15:47 +00002399 predMap[PREPred] = PREInstr;
Chris Lattnerb2412a82009-09-21 02:42:51 +00002400 VN.add(PREInstr, ValNo);
Dan Gohmanfe601042010-06-22 15:08:57 +00002401 ++NumGVNPRE;
Daniel Dunbara279bc32009-09-20 02:20:51 +00002402
Owen Andersonb2303722008-06-18 21:41:49 +00002403 // Update the availability map to include the new instruction.
Owen Anderson7a75d612011-01-04 19:13:25 +00002404 addToLeaderTable(ValNo, PREInstr, PREPred);
Daniel Dunbara279bc32009-09-20 02:20:51 +00002405
Owen Andersonb2303722008-06-18 21:41:49 +00002406 // Create a PHI to make the value available in this block.
Jay Foadd8b4fb42011-03-30 11:19:20 +00002407 pred_iterator PB = pred_begin(CurrentBlock), PE = pred_end(CurrentBlock);
Jay Foad3ecfc862011-03-30 11:28:46 +00002408 PHINode* Phi = PHINode::Create(CurInst->getType(), std::distance(PB, PE),
Chris Lattnerd0f5bfc2008-12-01 07:35:54 +00002409 CurInst->getName() + ".pre-phi",
Owen Andersonb2303722008-06-18 21:41:49 +00002410 CurrentBlock->begin());
Jay Foadd8b4fb42011-03-30 11:19:20 +00002411 for (pred_iterator PI = PB; PI != PE; ++PI) {
Gabor Greif1d3ae022010-07-09 14:48:08 +00002412 BasicBlock *P = *PI;
2413 Phi->addIncoming(predMap[P], P);
2414 }
Daniel Dunbara279bc32009-09-20 02:20:51 +00002415
Chris Lattnerb2412a82009-09-21 02:42:51 +00002416 VN.add(Phi, ValNo);
Owen Anderson7a75d612011-01-04 19:13:25 +00002417 addToLeaderTable(ValNo, Phi, CurrentBlock);
Devang Patel0f18d972011-05-04 23:58:50 +00002418 Phi->setDebugLoc(CurInst->getDebugLoc());
Chris Lattnerd0f5bfc2008-12-01 07:35:54 +00002419 CurInst->replaceAllUsesWith(Phi);
Owen Anderson392249f2011-01-03 23:51:43 +00002420 if (Phi->getType()->isPointerTy()) {
2421 // Because we have added a PHI-use of the pointer value, it has now
2422 // "escaped" from alias analysis' perspective. We need to inform
2423 // AA of this.
Jay Foadc1371202011-06-20 14:18:48 +00002424 for (unsigned ii = 0, ee = Phi->getNumIncomingValues(); ii != ee;
2425 ++ii) {
2426 unsigned jj = PHINode::getOperandNumForIncomingValue(ii);
2427 VN.getAliasAnalysis()->addEscapingUse(Phi->getOperandUse(jj));
2428 }
Owen Anderson392249f2011-01-03 23:51:43 +00002429
2430 if (MD)
2431 MD->invalidateCachedPointerInfo(Phi);
2432 }
Chris Lattnerd0f5bfc2008-12-01 07:35:54 +00002433 VN.erase(CurInst);
Owen Anderson7a75d612011-01-04 19:13:25 +00002434 removeFromLeaderTable(ValNo, CurInst, CurrentBlock);
Daniel Dunbara279bc32009-09-20 02:20:51 +00002435
David Greenebf7f78e2010-01-05 01:27:17 +00002436 DEBUG(dbgs() << "GVN PRE removed: " << *CurInst << '\n');
Dan Gohman4ec01b22009-11-14 02:27:51 +00002437 if (MD) MD->removeInstruction(CurInst);
Chris Lattnerd0f5bfc2008-12-01 07:35:54 +00002438 CurInst->eraseFromParent();
Bill Wendlingec40d502008-12-22 21:57:30 +00002439 DEBUG(verifyRemoved(CurInst));
Chris Lattnerd0f5bfc2008-12-01 07:35:54 +00002440 Changed = true;
Owen Andersonb2303722008-06-18 21:41:49 +00002441 }
2442 }
Daniel Dunbara279bc32009-09-20 02:20:51 +00002443
Bob Wilson484d4a32010-02-16 19:51:59 +00002444 if (splitCriticalEdges())
2445 Changed = true;
Daniel Dunbara279bc32009-09-20 02:20:51 +00002446
Bob Wilson484d4a32010-02-16 19:51:59 +00002447 return Changed;
2448}
2449
2450/// splitCriticalEdges - Split critical edges found during the previous
2451/// iteration that may enable further optimization.
2452bool GVN::splitCriticalEdges() {
2453 if (toSplit.empty())
2454 return false;
2455 do {
2456 std::pair<TerminatorInst*, unsigned> Edge = toSplit.pop_back_val();
2457 SplitCriticalEdge(Edge.first, Edge.second, this);
2458 } while (!toSplit.empty());
Evan Cheng19d417c2010-03-01 22:23:12 +00002459 if (MD) MD->invalidateCachedPredecessors();
Bob Wilson484d4a32010-02-16 19:51:59 +00002460 return true;
Owen Andersonb2303722008-06-18 21:41:49 +00002461}
2462
Bill Wendling30788b82008-12-22 22:32:22 +00002463/// iterateOnFunction - Executes one iteration of GVN
Owen Anderson3e75a422007-08-14 18:04:11 +00002464bool GVN::iterateOnFunction(Function &F) {
Nuno Lopes7cdd9ee2008-10-10 16:25:50 +00002465 cleanupGlobalSets();
Owen Andersona04a0642010-11-18 18:32:40 +00002466
Owen Anderson1ad2cb72007-07-24 17:55:58 +00002467 // Top-down walk of the dominator tree
Chris Lattnerb2412a82009-09-21 02:42:51 +00002468 bool Changed = false;
Owen Andersonc34d1122008-12-15 03:52:17 +00002469#if 0
2470 // Needed for value numbering with phi construction to work.
Owen Anderson255dafc2008-12-15 02:03:00 +00002471 ReversePostOrderTraversal<Function*> RPOT(&F);
2472 for (ReversePostOrderTraversal<Function*>::rpo_iterator RI = RPOT.begin(),
2473 RE = RPOT.end(); RI != RE; ++RI)
Chris Lattnerb2412a82009-09-21 02:42:51 +00002474 Changed |= processBlock(*RI);
Owen Andersonc34d1122008-12-15 03:52:17 +00002475#else
2476 for (df_iterator<DomTreeNode*> DI = df_begin(DT->getRootNode()),
2477 DE = df_end(DT->getRootNode()); DI != DE; ++DI)
Chris Lattnerb2412a82009-09-21 02:42:51 +00002478 Changed |= processBlock(DI->getBlock());
Owen Andersonc34d1122008-12-15 03:52:17 +00002479#endif
2480
Chris Lattnerb2412a82009-09-21 02:42:51 +00002481 return Changed;
Owen Anderson1ad2cb72007-07-24 17:55:58 +00002482}
Nuno Lopes7cdd9ee2008-10-10 16:25:50 +00002483
2484void GVN::cleanupGlobalSets() {
2485 VN.clear();
Owen Andersonb1602ab2011-01-04 19:29:46 +00002486 LeaderTable.clear();
Owen Andersona04a0642010-11-18 18:32:40 +00002487 TableAllocator.Reset();
Nuno Lopes7cdd9ee2008-10-10 16:25:50 +00002488}
Bill Wendling246dbbb2008-12-22 21:36:08 +00002489
2490/// verifyRemoved - Verify that the specified instruction does not occur in our
2491/// internal data structures.
Bill Wendling6d463f22008-12-22 22:28:56 +00002492void GVN::verifyRemoved(const Instruction *Inst) const {
2493 VN.verifyRemoved(Inst);
Bill Wendling70ded192008-12-22 22:14:07 +00002494
Bill Wendling6d463f22008-12-22 22:28:56 +00002495 // Walk through the value number scope to make sure the instruction isn't
2496 // ferreted away in it.
Owen Anderson7a75d612011-01-04 19:13:25 +00002497 for (DenseMap<uint32_t, LeaderTableEntry>::const_iterator
Owen Andersonb1602ab2011-01-04 19:29:46 +00002498 I = LeaderTable.begin(), E = LeaderTable.end(); I != E; ++I) {
Owen Anderson7a75d612011-01-04 19:13:25 +00002499 const LeaderTableEntry *Node = &I->second;
Owen Andersonf0568382010-12-21 23:54:34 +00002500 assert(Node->Val != Inst && "Inst still in value numbering scope!");
Owen Andersona04a0642010-11-18 18:32:40 +00002501
Owen Andersonf0568382010-12-21 23:54:34 +00002502 while (Node->Next) {
2503 Node = Node->Next;
2504 assert(Node->Val != Inst && "Inst still in value numbering scope!");
Bill Wendling70ded192008-12-22 22:14:07 +00002505 }
2506 }
Bill Wendling246dbbb2008-12-22 21:36:08 +00002507}