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Nick Lewycky579a0242008-11-02 05:52:50 +00001//===- MergeFunctions.cpp - Merge identical functions ---------------------===//
2//
3// The LLVM Compiler Infrastructure
4//
5// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
9//
10// This pass looks for equivalent functions that are mergable and folds them.
11//
Nick Lewycky579a0242008-11-02 05:52:50 +000012// A hash is computed from the function, based on its type and number of
13// basic blocks.
14//
15// Once all hashes are computed, we perform an expensive equality comparison
16// on each function pair. This takes n^2/2 comparisons per bucket, so it's
17// important that the hash function be high quality. The equality comparison
18// iterates through each instruction in each basic block.
19//
Nick Lewycky33ab0b12010-05-13 05:48:45 +000020// When a match is found the functions are folded. If both functions are
21// overridable, we move the functionality into a new internal function and
22// leave two overridable thunks to it.
Nick Lewycky579a0242008-11-02 05:52:50 +000023//
24//===----------------------------------------------------------------------===//
25//
26// Future work:
27//
Nick Lewycky579a0242008-11-02 05:52:50 +000028// * virtual functions.
29//
30// Many functions have their address taken by the virtual function table for
31// the object they belong to. However, as long as it's only used for a lookup
Nick Lewyckybe04fde2010-08-08 05:04:23 +000032// and call, this is irrelevant, and we'd like to fold such functions.
Nick Lewycky579a0242008-11-02 05:52:50 +000033//
Nick Lewycky78d43302010-08-02 05:23:03 +000034// * switch from n^2 pair-wise comparisons to an n-way comparison for each
35// bucket.
Nick Lewycky33ab0b12010-05-13 05:48:45 +000036//
Nick Lewyckybe04fde2010-08-08 05:04:23 +000037// * be smarter about bitcasts.
Nick Lewycky33ab0b12010-05-13 05:48:45 +000038//
39// In order to fold functions, we will sometimes add either bitcast instructions
40// or bitcast constant expressions. Unfortunately, this can confound further
41// analysis since the two functions differ where one has a bitcast and the
Nick Lewyckybe04fde2010-08-08 05:04:23 +000042// other doesn't. We should learn to look through bitcasts.
Nick Lewycky33ab0b12010-05-13 05:48:45 +000043//
Nick Lewycky579a0242008-11-02 05:52:50 +000044//===----------------------------------------------------------------------===//
45
46#define DEBUG_TYPE "mergefunc"
47#include "llvm/Transforms/IPO.h"
48#include "llvm/ADT/DenseMap.h"
Nick Lewycky287de602009-06-12 08:04:51 +000049#include "llvm/ADT/FoldingSet.h"
Nick Lewycky33ab0b12010-05-13 05:48:45 +000050#include "llvm/ADT/SmallSet.h"
Nick Lewycky579a0242008-11-02 05:52:50 +000051#include "llvm/ADT/Statistic.h"
52#include "llvm/Constants.h"
53#include "llvm/InlineAsm.h"
54#include "llvm/Instructions.h"
Owen Anderson14ce9ef2009-07-06 01:34:54 +000055#include "llvm/LLVMContext.h"
Nick Lewycky579a0242008-11-02 05:52:50 +000056#include "llvm/Module.h"
57#include "llvm/Pass.h"
Nick Lewycky6feb3332008-11-02 16:46:26 +000058#include "llvm/Support/CallSite.h"
Nick Lewycky579a0242008-11-02 05:52:50 +000059#include "llvm/Support/Debug.h"
Torok Edwinc25e7582009-07-11 20:10:48 +000060#include "llvm/Support/ErrorHandling.h"
Nick Lewyckybe04fde2010-08-08 05:04:23 +000061#include "llvm/Support/IRBuilder.h"
Daniel Dunbarce63ffb2009-07-25 00:23:56 +000062#include "llvm/Support/raw_ostream.h"
Nick Lewycky33ab0b12010-05-13 05:48:45 +000063#include "llvm/Target/TargetData.h"
Nick Lewycky579a0242008-11-02 05:52:50 +000064#include <map>
65#include <vector>
66using namespace llvm;
67
68STATISTIC(NumFunctionsMerged, "Number of functions merged");
Nick Lewycky579a0242008-11-02 05:52:50 +000069
70namespace {
Nick Lewycky78d43302010-08-02 05:23:03 +000071 /// MergeFunctions finds functions which will generate identical machine code,
72 /// by considering all pointer types to be equivalent. Once identified,
73 /// MergeFunctions will fold them by replacing a call to one to a call to a
74 /// bitcast of the other.
75 ///
Nick Lewyckybe04fde2010-08-08 05:04:23 +000076 class MergeFunctions : public ModulePass {
77 public:
78 static char ID;
Owen Anderson90c579d2010-08-06 18:33:48 +000079 MergeFunctions() : ModulePass(ID) {}
Nick Lewycky579a0242008-11-02 05:52:50 +000080
81 bool runOnModule(Module &M);
Nick Lewyckybe04fde2010-08-08 05:04:23 +000082
83 private:
84 /// PairwiseCompareAndMerge - Given a list of functions, compare each pair
85 /// and merge the pairs of equivalent functions.
86 bool PairwiseCompareAndMerge(std::vector<Function *> &FnVec);
87
88 /// MergeTwoFunctions - Merge two equivalent functions. Upon completion,
89 /// FnVec[j] should never be visited again.
90 void MergeTwoFunctions(std::vector<Function *> &FnVec,
91 unsigned i, unsigned j) const;
92
93 /// WriteThunk - Replace G with a simple tail call to bitcast(F). Also
94 /// replace direct uses of G with bitcast(F).
95 void WriteThunk(Function *F, Function *G) const;
96
97 TargetData *TD;
Nick Lewycky579a0242008-11-02 05:52:50 +000098 };
99}
100
101char MergeFunctions::ID = 0;
Owen Andersond13db2c2010-07-21 22:09:45 +0000102INITIALIZE_PASS(MergeFunctions, "mergefunc", "Merge Functions", false, false);
Nick Lewycky579a0242008-11-02 05:52:50 +0000103
104ModulePass *llvm::createMergeFunctionsPass() {
105 return new MergeFunctions();
106}
107
Nick Lewycky78d43302010-08-02 05:23:03 +0000108namespace {
Nick Lewyckybe04fde2010-08-08 05:04:23 +0000109/// FunctionComparator - Compares two functions to determine whether or not
110/// they will generate machine code with the same behaviour. TargetData is
111/// used if available. The comparator always fails conservatively (erring on the
112/// side of claiming that two functions are different).
Nick Lewycky78d43302010-08-02 05:23:03 +0000113class FunctionComparator {
114public:
115 FunctionComparator(TargetData *TD, Function *F1, Function *F2)
Nick Lewyckyc9dcbed2010-08-06 07:21:30 +0000116 : F1(F1), F2(F2), TD(TD), IDMap1Count(0), IDMap2Count(0) {}
Nick Lewycky287de602009-06-12 08:04:51 +0000117
Nick Lewyckybe04fde2010-08-08 05:04:23 +0000118 /// Compare - test whether the two functions have equivalent behaviour.
Nick Lewycky78d43302010-08-02 05:23:03 +0000119 bool Compare();
120
121private:
Nick Lewyckybe04fde2010-08-08 05:04:23 +0000122 /// Compare - test whether two basic blocks have equivalent behaviour.
Nick Lewycky78d43302010-08-02 05:23:03 +0000123 bool Compare(const BasicBlock *BB1, const BasicBlock *BB2);
124
Nick Lewyckybe04fde2010-08-08 05:04:23 +0000125 /// Enumerate - Assign or look up previously assigned numbers for the two
126 /// values, and return whether the numbers are equal. Numbers are assigned in
127 /// the order visited.
Nick Lewycky78d43302010-08-02 05:23:03 +0000128 bool Enumerate(const Value *V1, const Value *V2);
129
Nick Lewyckybe04fde2010-08-08 05:04:23 +0000130 /// isEquivalentOperation - Compare two Instructions for equivalence, similar
131 /// to Instruction::isSameOperationAs but with modifications to the type
132 /// comparison.
Nick Lewycky78d43302010-08-02 05:23:03 +0000133 bool isEquivalentOperation(const Instruction *I1,
134 const Instruction *I2) const;
135
Nick Lewyckybe04fde2010-08-08 05:04:23 +0000136 /// isEquivalentGEP - Compare two GEPs for equivalent pointer arithmetic.
Nick Lewycky78d43302010-08-02 05:23:03 +0000137 bool isEquivalentGEP(const GEPOperator *GEP1, const GEPOperator *GEP2);
138 bool isEquivalentGEP(const GetElementPtrInst *GEP1,
Nick Lewyckybe04fde2010-08-08 05:04:23 +0000139 const GetElementPtrInst *GEP2) {
Nick Lewycky78d43302010-08-02 05:23:03 +0000140 return isEquivalentGEP(cast<GEPOperator>(GEP1), cast<GEPOperator>(GEP2));
141 }
142
Nick Lewyckybe04fde2010-08-08 05:04:23 +0000143 /// isEquivalentType - Compare two Types, treating all pointer types as equal.
Nick Lewycky78d43302010-08-02 05:23:03 +0000144 bool isEquivalentType(const Type *Ty1, const Type *Ty2) const;
145
146 // The two functions undergoing comparison.
147 Function *F1, *F2;
148
149 TargetData *TD;
150
151 typedef DenseMap<const Value *, unsigned long> IDMap;
Nick Lewyckyc9dcbed2010-08-06 07:21:30 +0000152 IDMap Map1, Map2;
153 unsigned long IDMap1Count, IDMap2Count;
Nick Lewycky78d43302010-08-02 05:23:03 +0000154};
155}
156
Nick Lewyckybe04fde2010-08-08 05:04:23 +0000157/// Compute a hash guaranteed to be equal for two equivalent functions, but
158/// very likely to be different for different functions.
Nick Lewycky78d43302010-08-02 05:23:03 +0000159static unsigned long ProfileFunction(const Function *F) {
Nick Lewycky287de602009-06-12 08:04:51 +0000160 const FunctionType *FTy = F->getFunctionType();
161
162 FoldingSetNodeID ID;
163 ID.AddInteger(F->size());
164 ID.AddInteger(F->getCallingConv());
165 ID.AddBoolean(F->hasGC());
166 ID.AddBoolean(FTy->isVarArg());
167 ID.AddInteger(FTy->getReturnType()->getTypeID());
168 for (unsigned i = 0, e = FTy->getNumParams(); i != e; ++i)
169 ID.AddInteger(FTy->getParamType(i)->getTypeID());
170 return ID.ComputeHash();
171}
172
Nick Lewyckyc9dcbed2010-08-06 07:21:30 +0000173/// isEquivalentType - any two pointers in the same address space are
174/// equivalent. Otherwise, standard type equivalence rules apply.
Nick Lewycky78d43302010-08-02 05:23:03 +0000175bool FunctionComparator::isEquivalentType(const Type *Ty1,
176 const Type *Ty2) const {
Nick Lewycky287de602009-06-12 08:04:51 +0000177 if (Ty1 == Ty2)
178 return true;
179 if (Ty1->getTypeID() != Ty2->getTypeID())
180 return false;
181
182 switch(Ty1->getTypeID()) {
Nick Lewycky33ab0b12010-05-13 05:48:45 +0000183 default:
184 llvm_unreachable("Unknown type!");
Duncan Sands8246adc2010-07-07 07:48:00 +0000185 // Fall through in Release mode.
Nick Lewycky33ab0b12010-05-13 05:48:45 +0000186 case Type::IntegerTyID:
187 case Type::OpaqueTyID:
188 // Ty1 == Ty2 would have returned true earlier.
189 return false;
190
Nick Lewycky287de602009-06-12 08:04:51 +0000191 case Type::VoidTyID:
192 case Type::FloatTyID:
193 case Type::DoubleTyID:
194 case Type::X86_FP80TyID:
195 case Type::FP128TyID:
196 case Type::PPC_FP128TyID:
197 case Type::LabelTyID:
198 case Type::MetadataTyID:
199 return true;
200
Nick Lewycky287de602009-06-12 08:04:51 +0000201 case Type::PointerTyID: {
202 const PointerType *PTy1 = cast<PointerType>(Ty1);
203 const PointerType *PTy2 = cast<PointerType>(Ty2);
204 return PTy1->getAddressSpace() == PTy2->getAddressSpace();
205 }
206
207 case Type::StructTyID: {
208 const StructType *STy1 = cast<StructType>(Ty1);
209 const StructType *STy2 = cast<StructType>(Ty2);
210 if (STy1->getNumElements() != STy2->getNumElements())
211 return false;
212
213 if (STy1->isPacked() != STy2->isPacked())
214 return false;
215
216 for (unsigned i = 0, e = STy1->getNumElements(); i != e; ++i) {
217 if (!isEquivalentType(STy1->getElementType(i), STy2->getElementType(i)))
218 return false;
219 }
220 return true;
221 }
222
223 case Type::FunctionTyID: {
224 const FunctionType *FTy1 = cast<FunctionType>(Ty1);
225 const FunctionType *FTy2 = cast<FunctionType>(Ty2);
226 if (FTy1->getNumParams() != FTy2->getNumParams() ||
227 FTy1->isVarArg() != FTy2->isVarArg())
228 return false;
229
230 if (!isEquivalentType(FTy1->getReturnType(), FTy2->getReturnType()))
231 return false;
232
233 for (unsigned i = 0, e = FTy1->getNumParams(); i != e; ++i) {
234 if (!isEquivalentType(FTy1->getParamType(i), FTy2->getParamType(i)))
235 return false;
236 }
237 return true;
238 }
239
Nick Lewycky394ce412010-07-16 06:31:12 +0000240 case Type::ArrayTyID: {
241 const ArrayType *ATy1 = cast<ArrayType>(Ty1);
242 const ArrayType *ATy2 = cast<ArrayType>(Ty2);
243 return ATy1->getNumElements() == ATy2->getNumElements() &&
244 isEquivalentType(ATy1->getElementType(), ATy2->getElementType());
245 }
Nick Lewyckyc9dcbed2010-08-06 07:21:30 +0000246
Nick Lewycky287de602009-06-12 08:04:51 +0000247 case Type::VectorTyID: {
Nick Lewycky394ce412010-07-16 06:31:12 +0000248 const VectorType *VTy1 = cast<VectorType>(Ty1);
249 const VectorType *VTy2 = cast<VectorType>(Ty2);
250 return VTy1->getNumElements() == VTy2->getNumElements() &&
251 isEquivalentType(VTy1->getElementType(), VTy2->getElementType());
Nick Lewycky287de602009-06-12 08:04:51 +0000252 }
253 }
254}
255
256/// isEquivalentOperation - determine whether the two operations are the same
257/// except that pointer-to-A and pointer-to-B are equivalent. This should be
Dan Gohman194ae782009-06-12 19:03:05 +0000258/// kept in sync with Instruction::isSameOperationAs.
Nick Lewycky78d43302010-08-02 05:23:03 +0000259bool FunctionComparator::isEquivalentOperation(const Instruction *I1,
260 const Instruction *I2) const {
Nick Lewycky287de602009-06-12 08:04:51 +0000261 if (I1->getOpcode() != I2->getOpcode() ||
262 I1->getNumOperands() != I2->getNumOperands() ||
Dan Gohman58cfa3b2009-08-25 22:11:20 +0000263 !isEquivalentType(I1->getType(), I2->getType()) ||
264 !I1->hasSameSubclassOptionalData(I2))
Nick Lewycky287de602009-06-12 08:04:51 +0000265 return false;
266
267 // We have two instructions of identical opcode and #operands. Check to see
268 // if all operands are the same type
269 for (unsigned i = 0, e = I1->getNumOperands(); i != e; ++i)
270 if (!isEquivalentType(I1->getOperand(i)->getType(),
271 I2->getOperand(i)->getType()))
272 return false;
273
274 // Check special state that is a part of some instructions.
275 if (const LoadInst *LI = dyn_cast<LoadInst>(I1))
276 return LI->isVolatile() == cast<LoadInst>(I2)->isVolatile() &&
277 LI->getAlignment() == cast<LoadInst>(I2)->getAlignment();
278 if (const StoreInst *SI = dyn_cast<StoreInst>(I1))
279 return SI->isVolatile() == cast<StoreInst>(I2)->isVolatile() &&
280 SI->getAlignment() == cast<StoreInst>(I2)->getAlignment();
281 if (const CmpInst *CI = dyn_cast<CmpInst>(I1))
282 return CI->getPredicate() == cast<CmpInst>(I2)->getPredicate();
283 if (const CallInst *CI = dyn_cast<CallInst>(I1))
284 return CI->isTailCall() == cast<CallInst>(I2)->isTailCall() &&
285 CI->getCallingConv() == cast<CallInst>(I2)->getCallingConv() &&
286 CI->getAttributes().getRawPointer() ==
287 cast<CallInst>(I2)->getAttributes().getRawPointer();
288 if (const InvokeInst *CI = dyn_cast<InvokeInst>(I1))
289 return CI->getCallingConv() == cast<InvokeInst>(I2)->getCallingConv() &&
290 CI->getAttributes().getRawPointer() ==
291 cast<InvokeInst>(I2)->getAttributes().getRawPointer();
292 if (const InsertValueInst *IVI = dyn_cast<InsertValueInst>(I1)) {
293 if (IVI->getNumIndices() != cast<InsertValueInst>(I2)->getNumIndices())
294 return false;
295 for (unsigned i = 0, e = IVI->getNumIndices(); i != e; ++i)
296 if (IVI->idx_begin()[i] != cast<InsertValueInst>(I2)->idx_begin()[i])
297 return false;
298 return true;
299 }
300 if (const ExtractValueInst *EVI = dyn_cast<ExtractValueInst>(I1)) {
301 if (EVI->getNumIndices() != cast<ExtractValueInst>(I2)->getNumIndices())
302 return false;
303 for (unsigned i = 0, e = EVI->getNumIndices(); i != e; ++i)
304 if (EVI->idx_begin()[i] != cast<ExtractValueInst>(I2)->idx_begin()[i])
305 return false;
306 return true;
307 }
308
309 return true;
Nick Lewycky579a0242008-11-02 05:52:50 +0000310}
311
Nick Lewycky78d43302010-08-02 05:23:03 +0000312/// isEquivalentGEP - determine whether two GEP operations perform the same
313/// underlying arithmetic.
314bool FunctionComparator::isEquivalentGEP(const GEPOperator *GEP1,
315 const GEPOperator *GEP2) {
316 // When we have target data, we can reduce the GEP down to the value in bytes
317 // added to the address.
Nick Lewycky33ab0b12010-05-13 05:48:45 +0000318 if (TD && GEP1->hasAllConstantIndices() && GEP2->hasAllConstantIndices()) {
Nick Lewycky78d43302010-08-02 05:23:03 +0000319 SmallVector<Value *, 8> Indices1(GEP1->idx_begin(), GEP1->idx_end());
320 SmallVector<Value *, 8> Indices2(GEP2->idx_begin(), GEP2->idx_end());
Nick Lewycky33ab0b12010-05-13 05:48:45 +0000321 uint64_t Offset1 = TD->getIndexedOffset(GEP1->getPointerOperandType(),
322 Indices1.data(), Indices1.size());
323 uint64_t Offset2 = TD->getIndexedOffset(GEP2->getPointerOperandType(),
324 Indices2.data(), Indices2.size());
325 return Offset1 == Offset2;
Nick Lewycky579a0242008-11-02 05:52:50 +0000326 }
327
Nick Lewycky33ab0b12010-05-13 05:48:45 +0000328 if (GEP1->getPointerOperand()->getType() !=
329 GEP2->getPointerOperand()->getType())
330 return false;
331
332 if (GEP1->getNumOperands() != GEP2->getNumOperands())
333 return false;
334
335 for (unsigned i = 0, e = GEP1->getNumOperands(); i != e; ++i) {
Nick Lewycky78d43302010-08-02 05:23:03 +0000336 if (!Enumerate(GEP1->getOperand(i), GEP2->getOperand(i)))
Nick Lewycky33ab0b12010-05-13 05:48:45 +0000337 return false;
338 }
339
340 return true;
Nick Lewycky579a0242008-11-02 05:52:50 +0000341}
342
Nick Lewycky78d43302010-08-02 05:23:03 +0000343/// Enumerate - Compare two values used by the two functions under pair-wise
344/// comparison. If this is the first time the values are seen, they're added to
345/// the mapping so that we will detect mismatches on next use.
346bool FunctionComparator::Enumerate(const Value *V1, const Value *V2) {
347 // Check for function @f1 referring to itself and function @f2 referring to
348 // itself, or referring to each other, or both referring to either of them.
349 // They're all equivalent if the two functions are otherwise equivalent.
Nick Lewyckyc9dcbed2010-08-06 07:21:30 +0000350 if (V1 == F1 && V2 == F2)
351 return true;
352 if (V1 == F2 && V2 == F1)
353 return true;
Nick Lewycky579a0242008-11-02 05:52:50 +0000354
Nick Lewycky78d43302010-08-02 05:23:03 +0000355 // TODO: constant expressions with GEP or references to F1 or F2.
Nick Lewycky33ab0b12010-05-13 05:48:45 +0000356 if (isa<Constant>(V1))
357 return V1 == V2;
358
359 if (isa<InlineAsm>(V1) && isa<InlineAsm>(V2)) {
360 const InlineAsm *IA1 = cast<InlineAsm>(V1);
361 const InlineAsm *IA2 = cast<InlineAsm>(V2);
362 return IA1->getAsmString() == IA2->getAsmString() &&
363 IA1->getConstraintString() == IA2->getConstraintString();
364 }
365
Nick Lewycky33ab0b12010-05-13 05:48:45 +0000366 unsigned long &ID1 = Map1[V1];
367 if (!ID1)
Nick Lewyckyc9dcbed2010-08-06 07:21:30 +0000368 ID1 = ++IDMap1Count;
Nick Lewycky33ab0b12010-05-13 05:48:45 +0000369
Nick Lewycky33ab0b12010-05-13 05:48:45 +0000370 unsigned long &ID2 = Map2[V2];
371 if (!ID2)
Nick Lewyckyc9dcbed2010-08-06 07:21:30 +0000372 ID2 = ++IDMap2Count;
Nick Lewycky33ab0b12010-05-13 05:48:45 +0000373
374 return ID1 == ID2;
375}
376
Nick Lewyckybe04fde2010-08-08 05:04:23 +0000377/// Compare - test whether two basic blocks have equivalent behaviour.
Nick Lewycky78d43302010-08-02 05:23:03 +0000378bool FunctionComparator::Compare(const BasicBlock *BB1, const BasicBlock *BB2) {
379 BasicBlock::const_iterator F1I = BB1->begin(), F1E = BB1->end();
380 BasicBlock::const_iterator F2I = BB2->begin(), F2E = BB2->end();
Nick Lewycky579a0242008-11-02 05:52:50 +0000381
382 do {
Nick Lewycky78d43302010-08-02 05:23:03 +0000383 if (!Enumerate(F1I, F2I))
Nick Lewycky579a0242008-11-02 05:52:50 +0000384 return false;
385
Nick Lewycky78d43302010-08-02 05:23:03 +0000386 if (const GetElementPtrInst *GEP1 = dyn_cast<GetElementPtrInst>(F1I)) {
387 const GetElementPtrInst *GEP2 = dyn_cast<GetElementPtrInst>(F2I);
388 if (!GEP2)
389 return false;
Nick Lewyckya142c932009-06-13 19:09:52 +0000390
Nick Lewycky78d43302010-08-02 05:23:03 +0000391 if (!Enumerate(GEP1->getPointerOperand(), GEP2->getPointerOperand()))
Nick Lewycky911ae392010-05-13 06:45:13 +0000392 return false;
Nick Lewyckya142c932009-06-13 19:09:52 +0000393
Nick Lewycky33ab0b12010-05-13 05:48:45 +0000394 if (!isEquivalentGEP(GEP1, GEP2))
Nick Lewycky911ae392010-05-13 06:45:13 +0000395 return false;
Nick Lewycky33ab0b12010-05-13 05:48:45 +0000396 } else {
Nick Lewycky78d43302010-08-02 05:23:03 +0000397 if (!isEquivalentOperation(F1I, F2I))
Nick Lewycky579a0242008-11-02 05:52:50 +0000398 return false;
399
Nick Lewycky78d43302010-08-02 05:23:03 +0000400 assert(F1I->getNumOperands() == F2I->getNumOperands());
401 for (unsigned i = 0, e = F1I->getNumOperands(); i != e; ++i) {
402 Value *OpF1 = F1I->getOperand(i);
403 Value *OpF2 = F2I->getOperand(i);
Nick Lewycky579a0242008-11-02 05:52:50 +0000404
Nick Lewycky78d43302010-08-02 05:23:03 +0000405 if (!Enumerate(OpF1, OpF2))
Nick Lewycky911ae392010-05-13 06:45:13 +0000406 return false;
Nick Lewycky33ab0b12010-05-13 05:48:45 +0000407
Nick Lewycky78d43302010-08-02 05:23:03 +0000408 if (OpF1->getValueID() != OpF2->getValueID() ||
409 !isEquivalentType(OpF1->getType(), OpF2->getType()))
Nick Lewycky579a0242008-11-02 05:52:50 +0000410 return false;
411 }
Nick Lewycky579a0242008-11-02 05:52:50 +0000412 }
413
Nick Lewycky78d43302010-08-02 05:23:03 +0000414 ++F1I, ++F2I;
415 } while (F1I != F1E && F2I != F2E);
Nick Lewycky579a0242008-11-02 05:52:50 +0000416
Nick Lewycky78d43302010-08-02 05:23:03 +0000417 return F1I == F1E && F2I == F2E;
Nick Lewycky579a0242008-11-02 05:52:50 +0000418}
419
Nick Lewyckybe04fde2010-08-08 05:04:23 +0000420/// Compare - test whether the two functions have equivalent behaviour.
Nick Lewycky78d43302010-08-02 05:23:03 +0000421bool FunctionComparator::Compare() {
Nick Lewycky579a0242008-11-02 05:52:50 +0000422 // We need to recheck everything, but check the things that weren't included
423 // in the hash first.
424
Nick Lewycky78d43302010-08-02 05:23:03 +0000425 if (F1->getAttributes() != F2->getAttributes())
Nick Lewycky579a0242008-11-02 05:52:50 +0000426 return false;
427
Nick Lewycky78d43302010-08-02 05:23:03 +0000428 if (F1->hasGC() != F2->hasGC())
Nick Lewycky579a0242008-11-02 05:52:50 +0000429 return false;
430
Nick Lewycky78d43302010-08-02 05:23:03 +0000431 if (F1->hasGC() && F1->getGC() != F2->getGC())
Nick Lewycky579a0242008-11-02 05:52:50 +0000432 return false;
433
Nick Lewycky78d43302010-08-02 05:23:03 +0000434 if (F1->hasSection() != F2->hasSection())
Nick Lewycky579a0242008-11-02 05:52:50 +0000435 return false;
436
Nick Lewycky78d43302010-08-02 05:23:03 +0000437 if (F1->hasSection() && F1->getSection() != F2->getSection())
Nick Lewycky579a0242008-11-02 05:52:50 +0000438 return false;
439
Nick Lewycky78d43302010-08-02 05:23:03 +0000440 if (F1->isVarArg() != F2->isVarArg())
Nick Lewycky287de602009-06-12 08:04:51 +0000441 return false;
442
Nick Lewycky579a0242008-11-02 05:52:50 +0000443 // TODO: if it's internal and only used in direct calls, we could handle this
444 // case too.
Nick Lewycky78d43302010-08-02 05:23:03 +0000445 if (F1->getCallingConv() != F2->getCallingConv())
Nick Lewycky579a0242008-11-02 05:52:50 +0000446 return false;
447
Nick Lewycky78d43302010-08-02 05:23:03 +0000448 if (!isEquivalentType(F1->getFunctionType(), F2->getFunctionType()))
Nick Lewycky579a0242008-11-02 05:52:50 +0000449 return false;
450
Nick Lewycky78d43302010-08-02 05:23:03 +0000451 assert(F1->arg_size() == F2->arg_size() &&
Nick Lewycky579a0242008-11-02 05:52:50 +0000452 "Identical functions have a different number of args.");
453
Nick Lewycky33ab0b12010-05-13 05:48:45 +0000454 // Visit the arguments so that they get enumerated in the order they're
455 // passed in.
Nick Lewycky78d43302010-08-02 05:23:03 +0000456 for (Function::const_arg_iterator f1i = F1->arg_begin(),
457 f2i = F2->arg_begin(), f1e = F1->arg_end(); f1i != f1e; ++f1i, ++f2i) {
458 if (!Enumerate(f1i, f2i))
Nick Lewycky33ab0b12010-05-13 05:48:45 +0000459 llvm_unreachable("Arguments repeat");
Nick Lewycky579a0242008-11-02 05:52:50 +0000460 }
461
Nick Lewyckybe04fde2010-08-08 05:04:23 +0000462 // We do a CFG-ordered walk since the actual ordering of the blocks in the
463 // linked list is immaterial. Our walk starts at the entry block for both
Nick Lewycky78d43302010-08-02 05:23:03 +0000464 // functions, then takes each block from each terminator in order. As an
465 // artifact, this also means that unreachable blocks are ignored.
466 SmallVector<const BasicBlock *, 8> F1BBs, F2BBs;
467 SmallSet<const BasicBlock *, 128> VisitedBBs; // in terms of F1.
Nick Lewyckyc9dcbed2010-08-06 07:21:30 +0000468
Nick Lewycky78d43302010-08-02 05:23:03 +0000469 F1BBs.push_back(&F1->getEntryBlock());
470 F2BBs.push_back(&F2->getEntryBlock());
Nick Lewyckyc9dcbed2010-08-06 07:21:30 +0000471
Nick Lewycky78d43302010-08-02 05:23:03 +0000472 VisitedBBs.insert(F1BBs[0]);
473 while (!F1BBs.empty()) {
474 const BasicBlock *F1BB = F1BBs.pop_back_val();
475 const BasicBlock *F2BB = F2BBs.pop_back_val();
Nick Lewyckyc9dcbed2010-08-06 07:21:30 +0000476
Nick Lewycky78d43302010-08-02 05:23:03 +0000477 if (!Enumerate(F1BB, F2BB) || !Compare(F1BB, F2BB))
Nick Lewycky33ab0b12010-05-13 05:48:45 +0000478 return false;
Nick Lewyckyc9dcbed2010-08-06 07:21:30 +0000479
Nick Lewycky78d43302010-08-02 05:23:03 +0000480 const TerminatorInst *F1TI = F1BB->getTerminator();
481 const TerminatorInst *F2TI = F2BB->getTerminator();
Nick Lewyckyc9dcbed2010-08-06 07:21:30 +0000482
Nick Lewycky78d43302010-08-02 05:23:03 +0000483 assert(F1TI->getNumSuccessors() == F2TI->getNumSuccessors());
484 for (unsigned i = 0, e = F1TI->getNumSuccessors(); i != e; ++i) {
485 if (!VisitedBBs.insert(F1TI->getSuccessor(i)))
Nick Lewycky911ae392010-05-13 06:45:13 +0000486 continue;
Nick Lewyckyc9dcbed2010-08-06 07:21:30 +0000487
Nick Lewycky78d43302010-08-02 05:23:03 +0000488 F1BBs.push_back(F1TI->getSuccessor(i));
489 F2BBs.push_back(F2TI->getSuccessor(i));
Nick Lewycky33ab0b12010-05-13 05:48:45 +0000490 }
491 }
Nick Lewycky579a0242008-11-02 05:52:50 +0000492 return true;
493}
494
Nick Lewyckybe04fde2010-08-08 05:04:23 +0000495/// WriteThunk - Replace G with a simple tail call to bitcast(F). Also replace
Nick Lewyckyc9dcbed2010-08-06 07:21:30 +0000496/// direct uses of G with bitcast(F).
Nick Lewyckybe04fde2010-08-08 05:04:23 +0000497void MergeFunctions::WriteThunk(Function *F, Function *G) const {
Nick Lewycky33ab0b12010-05-13 05:48:45 +0000498 if (!G->mayBeOverridden()) {
499 // Redirect direct callers of G to F.
500 Constant *BitcastF = ConstantExpr::getBitCast(F, G->getType());
501 for (Value::use_iterator UI = G->use_begin(), UE = G->use_end();
502 UI != UE;) {
503 Value::use_iterator TheIter = UI;
504 ++UI;
505 CallSite CS(*TheIter);
506 if (CS && CS.isCallee(TheIter))
507 TheIter.getUse().set(BitcastF);
508 }
509 }
510
Nick Lewyckyc9dcbed2010-08-06 07:21:30 +0000511 // If G was internal then we may have replaced all uses if G with F. If so,
512 // stop here and delete G. There's no need for a thunk.
513 if (G->hasLocalLinkage() && G->use_empty()) {
514 G->eraseFromParent();
515 return;
516 }
517
Nick Lewycky8728d7a2009-06-12 15:56:56 +0000518 Function *NewG = Function::Create(G->getFunctionType(), G->getLinkage(), "",
519 G->getParent());
Owen Anderson1d0be152009-08-13 21:58:54 +0000520 BasicBlock *BB = BasicBlock::Create(F->getContext(), "", NewG);
Nick Lewyckybe04fde2010-08-08 05:04:23 +0000521 IRBuilder<false> Builder(BB);
Nick Lewycky287de602009-06-12 08:04:51 +0000522
Nick Lewycky33ab0b12010-05-13 05:48:45 +0000523 SmallVector<Value *, 16> Args;
Nick Lewycky287de602009-06-12 08:04:51 +0000524 unsigned i = 0;
525 const FunctionType *FFTy = F->getFunctionType();
526 for (Function::arg_iterator AI = NewG->arg_begin(), AE = NewG->arg_end();
527 AI != AE; ++AI) {
Nick Lewyckybe04fde2010-08-08 05:04:23 +0000528 Args.push_back(Builder.CreateBitCast(AI, FFTy->getParamType(i)));
Nick Lewycky287de602009-06-12 08:04:51 +0000529 ++i;
530 }
531
Nick Lewyckybe04fde2010-08-08 05:04:23 +0000532 CallInst *CI = Builder.CreateCall(F, Args.begin(), Args.end());
Nick Lewycky287de602009-06-12 08:04:51 +0000533 CI->setTailCall();
Nick Lewyckyb3c36c92009-06-12 16:04:00 +0000534 CI->setCallingConv(F->getCallingConv());
Benjamin Kramerf0127052010-01-05 13:12:22 +0000535 if (NewG->getReturnType()->isVoidTy()) {
Nick Lewyckybe04fde2010-08-08 05:04:23 +0000536 Builder.CreateRetVoid();
Nick Lewycky287de602009-06-12 08:04:51 +0000537 } else {
Nick Lewyckybe04fde2010-08-08 05:04:23 +0000538 Builder.CreateRet(Builder.CreateBitCast(CI, NewG->getReturnType()));
Nick Lewycky287de602009-06-12 08:04:51 +0000539 }
540
541 NewG->copyAttributesFrom(G);
542 NewG->takeName(G);
543 G->replaceAllUsesWith(NewG);
544 G->eraseFromParent();
Nick Lewycky287de602009-06-12 08:04:51 +0000545}
546
Nick Lewyckybe04fde2010-08-08 05:04:23 +0000547/// MergeTwoFunctions - Merge two equivalent functions. Upon completion,
Nick Lewycky32218342010-08-09 21:03:28 +0000548/// FnVec[j] is deleted but not removed from the vector.
Nick Lewyckybe04fde2010-08-08 05:04:23 +0000549void MergeFunctions::MergeTwoFunctions(std::vector<Function *> &FnVec,
550 unsigned i, unsigned j) const {
Nick Lewycky579a0242008-11-02 05:52:50 +0000551 Function *F = FnVec[i];
552 Function *G = FnVec[j];
553
Nick Lewyckyc9dcbed2010-08-06 07:21:30 +0000554 if (F->isWeakForLinker() && !G->isWeakForLinker()) {
Nick Lewycky287de602009-06-12 08:04:51 +0000555 std::swap(FnVec[i], FnVec[j]);
556 std::swap(F, G);
Nick Lewycky579a0242008-11-02 05:52:50 +0000557 }
558
Nick Lewyckyc9dcbed2010-08-06 07:21:30 +0000559 if (F->isWeakForLinker()) {
560 assert(G->isWeakForLinker());
Nick Lewycky33ab0b12010-05-13 05:48:45 +0000561
562 // Make them both thunks to the same internal function.
Nick Lewycky33ab0b12010-05-13 05:48:45 +0000563 Function *H = Function::Create(F->getFunctionType(), F->getLinkage(), "",
564 F->getParent());
565 H->copyAttributesFrom(F);
566 H->takeName(F);
567 F->replaceAllUsesWith(H);
568
Nick Lewycky32218342010-08-09 21:03:28 +0000569 unsigned MaxAlignment = std::max(G->getAlignment(), H->getAlignment());
570
Nick Lewyckybe04fde2010-08-08 05:04:23 +0000571 WriteThunk(F, G);
572 WriteThunk(F, H);
Nick Lewycky33ab0b12010-05-13 05:48:45 +0000573
Nick Lewycky32218342010-08-09 21:03:28 +0000574 F->setAlignment(MaxAlignment);
Nick Lewycky33ab0b12010-05-13 05:48:45 +0000575 F->setLinkage(GlobalValue::InternalLinkage);
Nick Lewyckyc9dcbed2010-08-06 07:21:30 +0000576 } else {
Nick Lewyckybe04fde2010-08-08 05:04:23 +0000577 WriteThunk(F, G);
Nick Lewycky6feb3332008-11-02 16:46:26 +0000578 }
579
Nick Lewycky287de602009-06-12 08:04:51 +0000580 ++NumFunctionsMerged;
Nick Lewycky579a0242008-11-02 05:52:50 +0000581}
582
Nick Lewyckybe04fde2010-08-08 05:04:23 +0000583/// PairwiseCompareAndMerge - Given a list of functions, compare each pair and
584/// merge the pairs of equivalent functions.
585bool MergeFunctions::PairwiseCompareAndMerge(std::vector<Function *> &FnVec) {
586 bool Changed = false;
587 for (int i = 0, e = FnVec.size(); i != e; ++i) {
588 for (int j = i + 1; j != e; ++j) {
589 bool isEqual = FunctionComparator(TD, FnVec[i], FnVec[j]).Compare();
590
591 DEBUG(dbgs() << " " << FnVec[i]->getName()
592 << (isEqual ? " == " : " != ") << FnVec[j]->getName() << "\n");
593
594 if (isEqual) {
595 MergeTwoFunctions(FnVec, i, j);
596 Changed = true;
597 FnVec.erase(FnVec.begin() + j);
598 --j, --e;
599 }
600 }
601 }
602 return Changed;
603}
Nick Lewycky579a0242008-11-02 05:52:50 +0000604
605bool MergeFunctions::runOnModule(Module &M) {
606 bool Changed = false;
607
Duncan Sands5baf8ec2008-11-02 09:00:33 +0000608 std::map<unsigned long, std::vector<Function *> > FnMap;
Nick Lewycky579a0242008-11-02 05:52:50 +0000609
610 for (Module::iterator F = M.begin(), E = M.end(); F != E; ++F) {
Nick Lewyckyc9dcbed2010-08-06 07:21:30 +0000611 if (F->isDeclaration() || F->hasAvailableExternallyLinkage())
Nick Lewycky579a0242008-11-02 05:52:50 +0000612 continue;
613
Nick Lewycky78d43302010-08-02 05:23:03 +0000614 FnMap[ProfileFunction(F)].push_back(F);
Nick Lewycky579a0242008-11-02 05:52:50 +0000615 }
616
Nick Lewyckybe04fde2010-08-08 05:04:23 +0000617 TD = getAnalysisIfAvailable<TargetData>();
Nick Lewycky579a0242008-11-02 05:52:50 +0000618
619 bool LocalChanged;
620 do {
621 LocalChanged = false;
David Greene3a078b52010-01-05 01:28:12 +0000622 DEBUG(dbgs() << "size: " << FnMap.size() << "\n");
Duncan Sands5baf8ec2008-11-02 09:00:33 +0000623 for (std::map<unsigned long, std::vector<Function *> >::iterator
Nick Lewycky33ab0b12010-05-13 05:48:45 +0000624 I = FnMap.begin(), E = FnMap.end(); I != E; ++I) {
Nick Lewycky579a0242008-11-02 05:52:50 +0000625 std::vector<Function *> &FnVec = I->second;
David Greene3a078b52010-01-05 01:28:12 +0000626 DEBUG(dbgs() << "hash (" << I->first << "): " << FnVec.size() << "\n");
Nick Lewyckybe04fde2010-08-08 05:04:23 +0000627 LocalChanged |= PairwiseCompareAndMerge(FnVec);
Nick Lewycky579a0242008-11-02 05:52:50 +0000628 }
629 Changed |= LocalChanged;
630 } while (LocalChanged);
631
632 return Changed;
633}