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Chris Lattnered7b41e2003-05-27 15:45:27 +00001//===- ScalarReplAggregates.cpp - Scalar Replacement of Aggregates --------===//
Misha Brukmanfd939082005-04-21 23:48:37 +00002//
John Criswellb576c942003-10-20 19:43:21 +00003// 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.
Misha Brukmanfd939082005-04-21 23:48:37 +00007//
John Criswellb576c942003-10-20 19:43:21 +00008//===----------------------------------------------------------------------===//
Chris Lattnered7b41e2003-05-27 15:45:27 +00009//
10// This transformation implements the well known scalar replacement of
11// aggregates transformation. This xform breaks up alloca instructions of
12// aggregate type (structure or array) into individual alloca instructions for
Chris Lattner38aec322003-09-11 16:45:55 +000013// each member (if possible). Then, if possible, it transforms the individual
14// alloca instructions into nice clean scalar SSA form.
15//
16// This combines a simple SRoA algorithm with the Mem2Reg algorithm because
17// often interact, especially for C++ programs. As such, iterating between
18// SRoA, then Mem2Reg until we run out of things to promote works well.
Chris Lattnered7b41e2003-05-27 15:45:27 +000019//
20//===----------------------------------------------------------------------===//
21
Chris Lattner0e5f4992006-12-19 21:40:18 +000022#define DEBUG_TYPE "scalarrepl"
Chris Lattnered7b41e2003-05-27 15:45:27 +000023#include "llvm/Transforms/Scalar.h"
Chris Lattner38aec322003-09-11 16:45:55 +000024#include "llvm/Constants.h"
25#include "llvm/DerivedTypes.h"
Chris Lattnered7b41e2003-05-27 15:45:27 +000026#include "llvm/Function.h"
Chris Lattner79b3bd32007-04-25 06:40:51 +000027#include "llvm/GlobalVariable.h"
Misha Brukmand8e1eea2004-07-29 17:05:13 +000028#include "llvm/Instructions.h"
Chris Lattner372dda82007-03-05 07:52:57 +000029#include "llvm/IntrinsicInst.h"
Owen Andersonfa5cbd62009-07-03 19:42:02 +000030#include "llvm/LLVMContext.h"
Chris Lattner372dda82007-03-05 07:52:57 +000031#include "llvm/Pass.h"
Chris Lattner38aec322003-09-11 16:45:55 +000032#include "llvm/Analysis/Dominators.h"
33#include "llvm/Target/TargetData.h"
34#include "llvm/Transforms/Utils/PromoteMemToReg.h"
Devang Patel4afc90d2009-02-10 07:00:59 +000035#include "llvm/Transforms/Utils/Local.h"
Chris Lattner95255282006-06-28 23:17:24 +000036#include "llvm/Support/Debug.h"
Torok Edwin7d696d82009-07-11 13:10:19 +000037#include "llvm/Support/ErrorHandling.h"
Chris Lattnera1888942005-12-12 07:19:13 +000038#include "llvm/Support/GetElementPtrTypeIterator.h"
Chris Lattner65a65022009-02-03 19:41:50 +000039#include "llvm/Support/IRBuilder.h"
Chris Lattnera1888942005-12-12 07:19:13 +000040#include "llvm/Support/MathExtras.h"
Chris Lattnerbdff5482009-08-23 04:37:46 +000041#include "llvm/Support/raw_ostream.h"
Chris Lattner1ccd1852007-02-12 22:56:41 +000042#include "llvm/ADT/SmallVector.h"
Reid Spencer551ccae2004-09-01 22:55:40 +000043#include "llvm/ADT/Statistic.h"
Chris Lattnerd8664732003-12-02 17:43:55 +000044using namespace llvm;
Brian Gaeked0fde302003-11-11 22:41:34 +000045
Chris Lattner0e5f4992006-12-19 21:40:18 +000046STATISTIC(NumReplaced, "Number of allocas broken up");
47STATISTIC(NumPromoted, "Number of allocas promoted");
48STATISTIC(NumConverted, "Number of aggregates converted to scalar");
Chris Lattner79b3bd32007-04-25 06:40:51 +000049STATISTIC(NumGlobals, "Number of allocas copied from constant global");
Chris Lattnered7b41e2003-05-27 15:45:27 +000050
Chris Lattner0e5f4992006-12-19 21:40:18 +000051namespace {
Chris Lattner3e8b6632009-09-02 06:11:42 +000052 struct SROA : public FunctionPass {
Nick Lewyckyecd94c82007-05-06 13:37:16 +000053 static char ID; // Pass identification, replacement for typeid
Dan Gohmanae73dc12008-09-04 17:05:41 +000054 explicit SROA(signed T = -1) : FunctionPass(&ID) {
Devang Patelff366852007-07-09 21:19:23 +000055 if (T == -1)
Chris Lattnerb0e71ed2007-08-02 21:33:36 +000056 SRThreshold = 128;
Devang Patelff366852007-07-09 21:19:23 +000057 else
58 SRThreshold = T;
59 }
Devang Patel794fd752007-05-01 21:15:47 +000060
Chris Lattnered7b41e2003-05-27 15:45:27 +000061 bool runOnFunction(Function &F);
62
Chris Lattner38aec322003-09-11 16:45:55 +000063 bool performScalarRepl(Function &F);
64 bool performPromotion(Function &F);
65
Chris Lattnera15854c2003-08-31 00:45:13 +000066 // getAnalysisUsage - This pass does not require any passes, but we know it
67 // will not alter the CFG, so say so.
68 virtual void getAnalysisUsage(AnalysisUsage &AU) const {
Devang Patel326821e2007-06-07 21:57:03 +000069 AU.addRequired<DominatorTree>();
Chris Lattner38aec322003-09-11 16:45:55 +000070 AU.addRequired<DominanceFrontier>();
Chris Lattnera15854c2003-08-31 00:45:13 +000071 AU.setPreservesCFG();
72 }
73
Chris Lattnered7b41e2003-05-27 15:45:27 +000074 private:
Chris Lattner56c38522009-01-07 06:34:28 +000075 TargetData *TD;
76
Chris Lattner39a1c042007-05-30 06:11:23 +000077 /// AllocaInfo - When analyzing uses of an alloca instruction, this captures
78 /// information about the uses. All these fields are initialized to false
79 /// and set to true when something is learned.
80 struct AllocaInfo {
81 /// isUnsafe - This is set to true if the alloca cannot be SROA'd.
82 bool isUnsafe : 1;
83
Devang Patel4afc90d2009-02-10 07:00:59 +000084 /// needsCleanup - This is set to true if there is some use of the alloca
85 /// that requires cleanup.
86 bool needsCleanup : 1;
Chris Lattner39a1c042007-05-30 06:11:23 +000087
88 /// isMemCpySrc - This is true if this aggregate is memcpy'd from.
89 bool isMemCpySrc : 1;
90
Zhou Sheng33b0b8d2007-07-06 06:01:16 +000091 /// isMemCpyDst - This is true if this aggregate is memcpy'd into.
Chris Lattner39a1c042007-05-30 06:11:23 +000092 bool isMemCpyDst : 1;
93
94 AllocaInfo()
Devang Patel4afc90d2009-02-10 07:00:59 +000095 : isUnsafe(false), needsCleanup(false),
Chris Lattner39a1c042007-05-30 06:11:23 +000096 isMemCpySrc(false), isMemCpyDst(false) {}
97 };
98
Devang Patelff366852007-07-09 21:19:23 +000099 unsigned SRThreshold;
100
Chris Lattner39a1c042007-05-30 06:11:23 +0000101 void MarkUnsafe(AllocaInfo &I) { I.isUnsafe = true; }
102
Victor Hernandez7b929da2009-10-23 21:09:37 +0000103 int isSafeAllocaToScalarRepl(AllocaInst *AI);
Chris Lattner39a1c042007-05-30 06:11:23 +0000104
Victor Hernandez7b929da2009-10-23 21:09:37 +0000105 void isSafeUseOfAllocation(Instruction *User, AllocaInst *AI,
Chris Lattner39a1c042007-05-30 06:11:23 +0000106 AllocaInfo &Info);
Victor Hernandez7b929da2009-10-23 21:09:37 +0000107 void isSafeElementUse(Value *Ptr, bool isFirstElt, AllocaInst *AI,
Chris Lattner39a1c042007-05-30 06:11:23 +0000108 AllocaInfo &Info);
Victor Hernandez7b929da2009-10-23 21:09:37 +0000109 void isSafeMemIntrinsicOnAllocation(MemIntrinsic *MI, AllocaInst *AI,
Chris Lattner39a1c042007-05-30 06:11:23 +0000110 unsigned OpNo, AllocaInfo &Info);
Victor Hernandez7b929da2009-10-23 21:09:37 +0000111 void isSafeUseOfBitCastedAllocation(BitCastInst *User, AllocaInst *AI,
Chris Lattner39a1c042007-05-30 06:11:23 +0000112 AllocaInfo &Info);
113
Victor Hernandez7b929da2009-10-23 21:09:37 +0000114 void DoScalarReplacement(AllocaInst *AI,
115 std::vector<AllocaInst*> &WorkList);
Devang Patel4afc90d2009-02-10 07:00:59 +0000116 void CleanupGEP(GetElementPtrInst *GEP);
Victor Hernandez7b929da2009-10-23 21:09:37 +0000117 void CleanupAllocaUsers(AllocaInst *AI);
118 AllocaInst *AddNewAlloca(Function &F, const Type *Ty, AllocaInst *Base);
Chris Lattnera1888942005-12-12 07:19:13 +0000119
Victor Hernandez7b929da2009-10-23 21:09:37 +0000120 void RewriteBitCastUserOfAlloca(Instruction *BCInst, AllocaInst *AI,
Chris Lattner372dda82007-03-05 07:52:57 +0000121 SmallVector<AllocaInst*, 32> &NewElts);
122
Chris Lattnerd93afec2009-01-07 07:18:45 +0000123 void RewriteMemIntrinUserOfAlloca(MemIntrinsic *MI, Instruction *BCInst,
Victor Hernandez7b929da2009-10-23 21:09:37 +0000124 AllocaInst *AI,
Chris Lattnerd93afec2009-01-07 07:18:45 +0000125 SmallVector<AllocaInst*, 32> &NewElts);
Victor Hernandez7b929da2009-10-23 21:09:37 +0000126 void RewriteStoreUserOfWholeAlloca(StoreInst *SI, AllocaInst *AI,
Chris Lattnerd2fa7812009-01-07 08:11:13 +0000127 SmallVector<AllocaInst*, 32> &NewElts);
Victor Hernandez7b929da2009-10-23 21:09:37 +0000128 void RewriteLoadUserOfWholeAlloca(LoadInst *LI, AllocaInst *AI,
Chris Lattner6e733d32009-01-28 20:16:43 +0000129 SmallVector<AllocaInst*, 32> &NewElts);
Chris Lattnerd93afec2009-01-07 07:18:45 +0000130
Chris Lattner7809ecd2009-02-03 01:30:09 +0000131 bool CanConvertToScalar(Value *V, bool &IsNotTrivial, const Type *&VecTy,
Chris Lattner1a3257b2009-02-03 18:15:05 +0000132 bool &SawVec, uint64_t Offset, unsigned AllocaSize);
Chris Lattner2e0d5f82009-01-31 02:28:54 +0000133 void ConvertUsesToScalar(Value *Ptr, AllocaInst *NewAI, uint64_t Offset);
Chris Lattner6e011152009-02-03 21:01:03 +0000134 Value *ConvertScalar_ExtractValue(Value *NV, const Type *ToType,
Chris Lattner9bc67da2009-02-03 19:45:44 +0000135 uint64_t Offset, IRBuilder<> &Builder);
Chris Lattner9b872db2009-02-03 19:30:11 +0000136 Value *ConvertScalar_InsertValue(Value *StoredVal, Value *ExistingVal,
Chris Lattner65a65022009-02-03 19:41:50 +0000137 uint64_t Offset, IRBuilder<> &Builder);
Victor Hernandez7b929da2009-10-23 21:09:37 +0000138 static Instruction *isOnlyCopiedFromConstantGlobal(AllocaInst *AI);
Chris Lattnered7b41e2003-05-27 15:45:27 +0000139 };
Chris Lattnered7b41e2003-05-27 15:45:27 +0000140}
141
Dan Gohman844731a2008-05-13 00:00:25 +0000142char SROA::ID = 0;
143static RegisterPass<SROA> X("scalarrepl", "Scalar Replacement of Aggregates");
144
Brian Gaeked0fde302003-11-11 22:41:34 +0000145// Public interface to the ScalarReplAggregates pass
Devang Patelff366852007-07-09 21:19:23 +0000146FunctionPass *llvm::createScalarReplAggregatesPass(signed int Threshold) {
147 return new SROA(Threshold);
148}
Chris Lattnered7b41e2003-05-27 15:45:27 +0000149
150
Chris Lattnered7b41e2003-05-27 15:45:27 +0000151bool SROA::runOnFunction(Function &F) {
Dan Gohmane4af1cf2009-08-19 18:22:18 +0000152 TD = getAnalysisIfAvailable<TargetData>();
153
Chris Lattnerfe7ea0d2003-09-12 15:36:03 +0000154 bool Changed = performPromotion(F);
Dan Gohmane4af1cf2009-08-19 18:22:18 +0000155
156 // FIXME: ScalarRepl currently depends on TargetData more than it
157 // theoretically needs to. It should be refactored in order to support
158 // target-independent IR. Until this is done, just skip the actual
159 // scalar-replacement portion of this pass.
160 if (!TD) return Changed;
161
Chris Lattnerfe7ea0d2003-09-12 15:36:03 +0000162 while (1) {
163 bool LocalChange = performScalarRepl(F);
164 if (!LocalChange) break; // No need to repromote if no scalarrepl
165 Changed = true;
166 LocalChange = performPromotion(F);
167 if (!LocalChange) break; // No need to re-scalarrepl if no promotion
168 }
Chris Lattner38aec322003-09-11 16:45:55 +0000169
170 return Changed;
171}
172
173
174bool SROA::performPromotion(Function &F) {
175 std::vector<AllocaInst*> Allocas;
Devang Patel326821e2007-06-07 21:57:03 +0000176 DominatorTree &DT = getAnalysis<DominatorTree>();
Chris Lattner43f820d2003-10-05 21:20:13 +0000177 DominanceFrontier &DF = getAnalysis<DominanceFrontier>();
Chris Lattner38aec322003-09-11 16:45:55 +0000178
Chris Lattner02a3be02003-09-20 14:39:18 +0000179 BasicBlock &BB = F.getEntryBlock(); // Get the entry node for the function
Chris Lattner38aec322003-09-11 16:45:55 +0000180
Chris Lattnerfe7ea0d2003-09-12 15:36:03 +0000181 bool Changed = false;
Misha Brukmanfd939082005-04-21 23:48:37 +0000182
Chris Lattner38aec322003-09-11 16:45:55 +0000183 while (1) {
184 Allocas.clear();
185
186 // Find allocas that are safe to promote, by looking at all instructions in
187 // the entry node
188 for (BasicBlock::iterator I = BB.begin(), E = --BB.end(); I != E; ++I)
189 if (AllocaInst *AI = dyn_cast<AllocaInst>(I)) // Is it an alloca?
Devang Patel41968df2007-04-25 17:15:20 +0000190 if (isAllocaPromotable(AI))
Chris Lattner38aec322003-09-11 16:45:55 +0000191 Allocas.push_back(AI);
192
193 if (Allocas.empty()) break;
194
Nick Lewyckyce2c51b2009-11-23 03:50:44 +0000195 PromoteMemToReg(Allocas, DT, DF);
Chris Lattner38aec322003-09-11 16:45:55 +0000196 NumPromoted += Allocas.size();
197 Changed = true;
198 }
199
200 return Changed;
201}
202
Chris Lattner963a97f2008-06-22 17:46:21 +0000203/// getNumSAElements - Return the number of elements in the specific struct or
204/// array.
205static uint64_t getNumSAElements(const Type *T) {
206 if (const StructType *ST = dyn_cast<StructType>(T))
207 return ST->getNumElements();
208 return cast<ArrayType>(T)->getNumElements();
209}
210
Chris Lattner38aec322003-09-11 16:45:55 +0000211// performScalarRepl - This algorithm is a simple worklist driven algorithm,
212// which runs on all of the malloc/alloca instructions in the function, removing
213// them if they are only used by getelementptr instructions.
214//
215bool SROA::performScalarRepl(Function &F) {
Victor Hernandez7b929da2009-10-23 21:09:37 +0000216 std::vector<AllocaInst*> WorkList;
Chris Lattnered7b41e2003-05-27 15:45:27 +0000217
218 // Scan the entry basic block, adding any alloca's and mallocs to the worklist
Chris Lattner02a3be02003-09-20 14:39:18 +0000219 BasicBlock &BB = F.getEntryBlock();
Chris Lattnered7b41e2003-05-27 15:45:27 +0000220 for (BasicBlock::iterator I = BB.begin(), E = BB.end(); I != E; ++I)
Victor Hernandez7b929da2009-10-23 21:09:37 +0000221 if (AllocaInst *A = dyn_cast<AllocaInst>(I))
Chris Lattnered7b41e2003-05-27 15:45:27 +0000222 WorkList.push_back(A);
223
224 // Process the worklist
225 bool Changed = false;
226 while (!WorkList.empty()) {
Victor Hernandez7b929da2009-10-23 21:09:37 +0000227 AllocaInst *AI = WorkList.back();
Chris Lattnered7b41e2003-05-27 15:45:27 +0000228 WorkList.pop_back();
Chris Lattnera1888942005-12-12 07:19:13 +0000229
Chris Lattneradd2bd72006-12-22 23:14:42 +0000230 // Handle dead allocas trivially. These can be formed by SROA'ing arrays
231 // with unused elements.
232 if (AI->use_empty()) {
233 AI->eraseFromParent();
234 continue;
235 }
Chris Lattner7809ecd2009-02-03 01:30:09 +0000236
237 // If this alloca is impossible for us to promote, reject it early.
238 if (AI->isArrayAllocation() || !AI->getAllocatedType()->isSized())
239 continue;
Chris Lattner79b3bd32007-04-25 06:40:51 +0000240
241 // Check to see if this allocation is only modified by a memcpy/memmove from
242 // a constant global. If this is the case, we can change all users to use
243 // the constant global instead. This is commonly produced by the CFE by
244 // constructs like "void foo() { int A[] = {1,2,3,4,5,6,7,8,9...}; }" if 'A'
245 // is only subsequently read.
246 if (Instruction *TheCopy = isOnlyCopiedFromConstantGlobal(AI)) {
Nick Lewycky59136252009-09-15 07:08:25 +0000247 DEBUG(errs() << "Found alloca equal to global: " << *AI << '\n');
248 DEBUG(errs() << " memcpy = " << *TheCopy << '\n');
Chris Lattner79b3bd32007-04-25 06:40:51 +0000249 Constant *TheSrc = cast<Constant>(TheCopy->getOperand(2));
Owen Andersonbaf3c402009-07-29 18:55:55 +0000250 AI->replaceAllUsesWith(ConstantExpr::getBitCast(TheSrc, AI->getType()));
Chris Lattner79b3bd32007-04-25 06:40:51 +0000251 TheCopy->eraseFromParent(); // Don't mutate the global.
252 AI->eraseFromParent();
253 ++NumGlobals;
254 Changed = true;
255 continue;
256 }
Chris Lattner15c82772009-02-02 20:44:45 +0000257
Chris Lattner7809ecd2009-02-03 01:30:09 +0000258 // Check to see if we can perform the core SROA transformation. We cannot
259 // transform the allocation instruction if it is an array allocation
260 // (allocations OF arrays are ok though), and an allocation of a scalar
261 // value cannot be decomposed at all.
Duncan Sands777d2302009-05-09 07:06:46 +0000262 uint64_t AllocaSize = TD->getTypeAllocSize(AI->getAllocatedType());
Bill Wendling5a377cb2009-03-03 12:12:58 +0000263
Nick Lewyckyd3aa25e2009-08-17 05:37:31 +0000264 // Do not promote [0 x %struct].
265 if (AllocaSize == 0) continue;
266
Bill Wendling5a377cb2009-03-03 12:12:58 +0000267 // Do not promote any struct whose size is too big.
Bill Wendling3aaf5d92009-03-03 19:18:49 +0000268 if (AllocaSize > SRThreshold) continue;
Nick Lewyckyd3aa25e2009-08-17 05:37:31 +0000269
Chris Lattner7809ecd2009-02-03 01:30:09 +0000270 if ((isa<StructType>(AI->getAllocatedType()) ||
271 isa<ArrayType>(AI->getAllocatedType())) &&
Chris Lattner7809ecd2009-02-03 01:30:09 +0000272 // Do not promote any struct into more than "32" separate vars.
Evan Cheng67fca632009-03-06 00:56:43 +0000273 getNumSAElements(AI->getAllocatedType()) <= SRThreshold/4) {
Chris Lattner7809ecd2009-02-03 01:30:09 +0000274 // Check that all of the users of the allocation are capable of being
275 // transformed.
276 switch (isSafeAllocaToScalarRepl(AI)) {
Torok Edwinc23197a2009-07-14 16:55:14 +0000277 default: llvm_unreachable("Unexpected value!");
Chris Lattner7809ecd2009-02-03 01:30:09 +0000278 case 0: // Not safe to scalar replace.
279 break;
280 case 1: // Safe, but requires cleanup/canonicalizations first
Devang Patel4afc90d2009-02-10 07:00:59 +0000281 CleanupAllocaUsers(AI);
Chris Lattner7809ecd2009-02-03 01:30:09 +0000282 // FALL THROUGH.
283 case 3: // Safe to scalar replace.
284 DoScalarReplacement(AI, WorkList);
285 Changed = true;
286 continue;
287 }
288 }
Chris Lattner6e733d32009-01-28 20:16:43 +0000289
290 // If we can turn this aggregate value (potentially with casts) into a
291 // simple scalar value that can be mem2reg'd into a register value.
Chris Lattner2e0d5f82009-01-31 02:28:54 +0000292 // IsNotTrivial tracks whether this is something that mem2reg could have
293 // promoted itself. If so, we don't want to transform it needlessly. Note
294 // that we can't just check based on the type: the alloca may be of an i32
295 // but that has pointer arithmetic to set byte 3 of it or something.
Chris Lattner6e733d32009-01-28 20:16:43 +0000296 bool IsNotTrivial = false;
Chris Lattner7809ecd2009-02-03 01:30:09 +0000297 const Type *VectorTy = 0;
Chris Lattner1a3257b2009-02-03 18:15:05 +0000298 bool HadAVector = false;
299 if (CanConvertToScalar(AI, IsNotTrivial, VectorTy, HadAVector,
Chris Lattner0ff83ab2009-03-04 19:22:30 +0000300 0, unsigned(AllocaSize)) && IsNotTrivial) {
Chris Lattner7809ecd2009-02-03 01:30:09 +0000301 AllocaInst *NewAI;
Chris Lattner1a3257b2009-02-03 18:15:05 +0000302 // If we were able to find a vector type that can handle this with
303 // insert/extract elements, and if there was at least one use that had
304 // a vector type, promote this to a vector. We don't want to promote
305 // random stuff that doesn't use vectors (e.g. <9 x double>) because then
306 // we just get a lot of insert/extracts. If at least one vector is
307 // involved, then we probably really do have a union of vector/array.
308 if (VectorTy && isa<VectorType>(VectorTy) && HadAVector) {
Nick Lewycky59136252009-09-15 07:08:25 +0000309 DEBUG(errs() << "CONVERT TO VECTOR: " << *AI << "\n TYPE = "
Chris Lattnerbdff5482009-08-23 04:37:46 +0000310 << *VectorTy << '\n');
Chris Lattner15c82772009-02-02 20:44:45 +0000311
Chris Lattner7809ecd2009-02-03 01:30:09 +0000312 // Create and insert the vector alloca.
Owen Anderson50dead02009-07-15 23:53:25 +0000313 NewAI = new AllocaInst(VectorTy, 0, "", AI->getParent()->begin());
Chris Lattner15c82772009-02-02 20:44:45 +0000314 ConvertUsesToScalar(AI, NewAI, 0);
Chris Lattner7809ecd2009-02-03 01:30:09 +0000315 } else {
Chris Lattnerbdff5482009-08-23 04:37:46 +0000316 DEBUG(errs() << "CONVERT TO SCALAR INTEGER: " << *AI << "\n");
Chris Lattner7809ecd2009-02-03 01:30:09 +0000317
318 // Create and insert the integer alloca.
Owen Anderson1d0be152009-08-13 21:58:54 +0000319 const Type *NewTy = IntegerType::get(AI->getContext(), AllocaSize*8);
Owen Anderson50dead02009-07-15 23:53:25 +0000320 NewAI = new AllocaInst(NewTy, 0, "", AI->getParent()->begin());
Chris Lattner7809ecd2009-02-03 01:30:09 +0000321 ConvertUsesToScalar(AI, NewAI, 0);
Chris Lattner6e733d32009-01-28 20:16:43 +0000322 }
Chris Lattner7809ecd2009-02-03 01:30:09 +0000323 NewAI->takeName(AI);
324 AI->eraseFromParent();
325 ++NumConverted;
326 Changed = true;
327 continue;
328 }
Chris Lattner6e733d32009-01-28 20:16:43 +0000329
Chris Lattner7809ecd2009-02-03 01:30:09 +0000330 // Otherwise, couldn't process this alloca.
Chris Lattnered7b41e2003-05-27 15:45:27 +0000331 }
332
333 return Changed;
334}
Chris Lattner5e062a12003-05-30 04:15:41 +0000335
Chris Lattnera10b29b2007-04-25 05:02:56 +0000336/// DoScalarReplacement - This alloca satisfied the isSafeAllocaToScalarRepl
337/// predicate, do SROA now.
Victor Hernandez7b929da2009-10-23 21:09:37 +0000338void SROA::DoScalarReplacement(AllocaInst *AI,
339 std::vector<AllocaInst*> &WorkList) {
Chris Lattnerff114702009-09-15 05:14:57 +0000340 DEBUG(errs() << "Found inst to SROA: " << *AI << '\n');
Chris Lattnera10b29b2007-04-25 05:02:56 +0000341 SmallVector<AllocaInst*, 32> ElementAllocas;
342 if (const StructType *ST = dyn_cast<StructType>(AI->getAllocatedType())) {
343 ElementAllocas.reserve(ST->getNumContainedTypes());
344 for (unsigned i = 0, e = ST->getNumContainedTypes(); i != e; ++i) {
Owen Anderson50dead02009-07-15 23:53:25 +0000345 AllocaInst *NA = new AllocaInst(ST->getContainedType(i), 0,
Chris Lattnera10b29b2007-04-25 05:02:56 +0000346 AI->getAlignment(),
Daniel Dunbarfe09b202009-07-30 17:37:43 +0000347 AI->getName() + "." + Twine(i), AI);
Chris Lattnera10b29b2007-04-25 05:02:56 +0000348 ElementAllocas.push_back(NA);
349 WorkList.push_back(NA); // Add to worklist for recursive processing
350 }
351 } else {
352 const ArrayType *AT = cast<ArrayType>(AI->getAllocatedType());
353 ElementAllocas.reserve(AT->getNumElements());
354 const Type *ElTy = AT->getElementType();
355 for (unsigned i = 0, e = AT->getNumElements(); i != e; ++i) {
Owen Anderson50dead02009-07-15 23:53:25 +0000356 AllocaInst *NA = new AllocaInst(ElTy, 0, AI->getAlignment(),
Daniel Dunbarfe09b202009-07-30 17:37:43 +0000357 AI->getName() + "." + Twine(i), AI);
Chris Lattnera10b29b2007-04-25 05:02:56 +0000358 ElementAllocas.push_back(NA);
359 WorkList.push_back(NA); // Add to worklist for recursive processing
360 }
361 }
362
363 // Now that we have created the alloca instructions that we want to use,
364 // expand the getelementptr instructions to use them.
365 //
366 while (!AI->use_empty()) {
367 Instruction *User = cast<Instruction>(AI->use_back());
368 if (BitCastInst *BCInst = dyn_cast<BitCastInst>(User)) {
369 RewriteBitCastUserOfAlloca(BCInst, AI, ElementAllocas);
370 BCInst->eraseFromParent();
371 continue;
372 }
373
Chris Lattner2a6a6452008-06-23 17:11:23 +0000374 // Replace:
375 // %res = load { i32, i32 }* %alloc
376 // with:
377 // %load.0 = load i32* %alloc.0
378 // %insert.0 insertvalue { i32, i32 } zeroinitializer, i32 %load.0, 0
379 // %load.1 = load i32* %alloc.1
380 // %insert = insertvalue { i32, i32 } %insert.0, i32 %load.1, 1
Matthijs Kooijman02518142008-06-05 12:51:53 +0000381 // (Also works for arrays instead of structs)
382 if (LoadInst *LI = dyn_cast<LoadInst>(User)) {
Owen Anderson9e9a0d52009-07-30 23:03:37 +0000383 Value *Insert = UndefValue::get(LI->getType());
Matthijs Kooijman02518142008-06-05 12:51:53 +0000384 for (unsigned i = 0, e = ElementAllocas.size(); i != e; ++i) {
385 Value *Load = new LoadInst(ElementAllocas[i], "load", LI);
386 Insert = InsertValueInst::Create(Insert, Load, i, "insert", LI);
387 }
388 LI->replaceAllUsesWith(Insert);
389 LI->eraseFromParent();
390 continue;
391 }
392
Chris Lattner2a6a6452008-06-23 17:11:23 +0000393 // Replace:
394 // store { i32, i32 } %val, { i32, i32 }* %alloc
395 // with:
396 // %val.0 = extractvalue { i32, i32 } %val, 0
397 // store i32 %val.0, i32* %alloc.0
398 // %val.1 = extractvalue { i32, i32 } %val, 1
399 // store i32 %val.1, i32* %alloc.1
Matthijs Kooijman02518142008-06-05 12:51:53 +0000400 // (Also works for arrays instead of structs)
401 if (StoreInst *SI = dyn_cast<StoreInst>(User)) {
402 Value *Val = SI->getOperand(0);
403 for (unsigned i = 0, e = ElementAllocas.size(); i != e; ++i) {
404 Value *Extract = ExtractValueInst::Create(Val, i, Val->getName(), SI);
405 new StoreInst(Extract, ElementAllocas[i], SI);
406 }
407 SI->eraseFromParent();
408 continue;
409 }
410
Chris Lattnera10b29b2007-04-25 05:02:56 +0000411 GetElementPtrInst *GEPI = cast<GetElementPtrInst>(User);
412 // We now know that the GEP is of the form: GEP <ptr>, 0, <cst>
413 unsigned Idx =
414 (unsigned)cast<ConstantInt>(GEPI->getOperand(2))->getZExtValue();
415
416 assert(Idx < ElementAllocas.size() && "Index out of range?");
417 AllocaInst *AllocaToUse = ElementAllocas[Idx];
418
419 Value *RepValue;
420 if (GEPI->getNumOperands() == 3) {
421 // Do not insert a new getelementptr instruction with zero indices, only
422 // to have it optimized out later.
423 RepValue = AllocaToUse;
424 } else {
425 // We are indexing deeply into the structure, so we still need a
426 // getelement ptr instruction to finish the indexing. This may be
427 // expanded itself once the worklist is rerun.
428 //
429 SmallVector<Value*, 8> NewArgs;
Owen Anderson1d0be152009-08-13 21:58:54 +0000430 NewArgs.push_back(Constant::getNullValue(
431 Type::getInt32Ty(AI->getContext())));
Chris Lattnera10b29b2007-04-25 05:02:56 +0000432 NewArgs.append(GEPI->op_begin()+3, GEPI->op_end());
Gabor Greif051a9502008-04-06 20:25:17 +0000433 RepValue = GetElementPtrInst::Create(AllocaToUse, NewArgs.begin(),
434 NewArgs.end(), "", GEPI);
Chris Lattnera10b29b2007-04-25 05:02:56 +0000435 RepValue->takeName(GEPI);
436 }
437
438 // If this GEP is to the start of the aggregate, check for memcpys.
Chris Lattnerd356a7e2009-01-07 06:25:07 +0000439 if (Idx == 0 && GEPI->hasAllZeroIndices())
440 RewriteBitCastUserOfAlloca(GEPI, AI, ElementAllocas);
Chris Lattnera10b29b2007-04-25 05:02:56 +0000441
442 // Move all of the users over to the new GEP.
443 GEPI->replaceAllUsesWith(RepValue);
444 // Delete the old GEP
445 GEPI->eraseFromParent();
446 }
447
448 // Finally, delete the Alloca instruction
449 AI->eraseFromParent();
450 NumReplaced++;
451}
452
Chris Lattner5e062a12003-05-30 04:15:41 +0000453
Chris Lattnerf5990ed2004-11-14 04:24:28 +0000454/// isSafeElementUse - Check to see if this use is an allowed use for a
Chris Lattner8bf99112007-03-19 00:16:43 +0000455/// getelementptr instruction of an array aggregate allocation. isFirstElt
456/// indicates whether Ptr is known to the start of the aggregate.
Chris Lattnerf5990ed2004-11-14 04:24:28 +0000457///
Victor Hernandez7b929da2009-10-23 21:09:37 +0000458void SROA::isSafeElementUse(Value *Ptr, bool isFirstElt, AllocaInst *AI,
Chris Lattner39a1c042007-05-30 06:11:23 +0000459 AllocaInfo &Info) {
Chris Lattnerf5990ed2004-11-14 04:24:28 +0000460 for (Value::use_iterator I = Ptr->use_begin(), E = Ptr->use_end();
461 I != E; ++I) {
462 Instruction *User = cast<Instruction>(*I);
463 switch (User->getOpcode()) {
464 case Instruction::Load: break;
465 case Instruction::Store:
466 // Store is ok if storing INTO the pointer, not storing the pointer
Chris Lattner39a1c042007-05-30 06:11:23 +0000467 if (User->getOperand(0) == Ptr) return MarkUnsafe(Info);
Chris Lattnerf5990ed2004-11-14 04:24:28 +0000468 break;
469 case Instruction::GetElementPtr: {
470 GetElementPtrInst *GEP = cast<GetElementPtrInst>(User);
Chris Lattner8bf99112007-03-19 00:16:43 +0000471 bool AreAllZeroIndices = isFirstElt;
Chris Lattner8976e592009-11-27 16:37:41 +0000472 if (GEP->getNumOperands() > 1 &&
473 (!isa<ConstantInt>(GEP->getOperand(1)) ||
474 !cast<ConstantInt>(GEP->getOperand(1))->isZero()))
475 // Using pointer arithmetic to navigate the array.
476 return MarkUnsafe(Info);
477
478 // Verify that any array subscripts are in range.
479 for (gep_type_iterator GEPIt = gep_type_begin(GEP),
480 E = gep_type_end(GEP); GEPIt != E; ++GEPIt) {
481 // Ignore struct elements, no extra checking needed for these.
482 if (isa<StructType>(*GEPIt))
483 continue;
484
485 // This GEP indexes an array. Verify that this is an in-range
486 // constant integer. Specifically, consider A[0][i]. We cannot know that
487 // the user isn't doing invalid things like allowing i to index an
488 // out-of-range subscript that accesses A[1]. Because of this, we have
489 // to reject SROA of any accesses into structs where any of the
490 // components are variables.
491 ConstantInt *IdxVal = dyn_cast<ConstantInt>(GEPIt.getOperand());
492 if (!IdxVal) return MarkUnsafe(Info);
493
494 // Are all indices still zero?
495 AreAllZeroIndices &= IdxVal->isZero();
496
497 if (const ArrayType *AT = dyn_cast<ArrayType>(*GEPIt)) {
498 if (IdxVal->getZExtValue() >= AT->getNumElements())
499 return MarkUnsafe(Info);
500 } else if (const VectorType *VT = dyn_cast<VectorType>(*GEPIt)) {
501 if (IdxVal->getZExtValue() >= VT->getNumElements())
502 return MarkUnsafe(Info);
503 }
Chris Lattnerf5990ed2004-11-14 04:24:28 +0000504 }
Chris Lattner8976e592009-11-27 16:37:41 +0000505
506
Chris Lattner39a1c042007-05-30 06:11:23 +0000507 isSafeElementUse(GEP, AreAllZeroIndices, AI, Info);
508 if (Info.isUnsafe) return;
Chris Lattnerf5990ed2004-11-14 04:24:28 +0000509 break;
510 }
Chris Lattner8bf99112007-03-19 00:16:43 +0000511 case Instruction::BitCast:
Chris Lattner39a1c042007-05-30 06:11:23 +0000512 if (isFirstElt) {
513 isSafeUseOfBitCastedAllocation(cast<BitCastInst>(User), AI, Info);
514 if (Info.isUnsafe) return;
Chris Lattner8bf99112007-03-19 00:16:43 +0000515 break;
Chris Lattner8bf99112007-03-19 00:16:43 +0000516 }
Nick Lewycky59136252009-09-15 07:08:25 +0000517 DEBUG(errs() << " Transformation preventing inst: " << *User << '\n');
Chris Lattner39a1c042007-05-30 06:11:23 +0000518 return MarkUnsafe(Info);
519 case Instruction::Call:
520 if (MemIntrinsic *MI = dyn_cast<MemIntrinsic>(User)) {
521 if (isFirstElt) {
522 isSafeMemIntrinsicOnAllocation(MI, AI, I.getOperandNo(), Info);
523 if (Info.isUnsafe) return;
524 break;
525 }
526 }
Nick Lewycky59136252009-09-15 07:08:25 +0000527 DEBUG(errs() << " Transformation preventing inst: " << *User << '\n');
Chris Lattner39a1c042007-05-30 06:11:23 +0000528 return MarkUnsafe(Info);
Chris Lattnerf5990ed2004-11-14 04:24:28 +0000529 default:
Nick Lewycky59136252009-09-15 07:08:25 +0000530 DEBUG(errs() << " Transformation preventing inst: " << *User << '\n');
Chris Lattner39a1c042007-05-30 06:11:23 +0000531 return MarkUnsafe(Info);
Chris Lattnerf5990ed2004-11-14 04:24:28 +0000532 }
533 }
Chris Lattner39a1c042007-05-30 06:11:23 +0000534 return; // All users look ok :)
Chris Lattnerf5990ed2004-11-14 04:24:28 +0000535}
536
Chris Lattnerd878ecd2004-11-14 05:00:19 +0000537/// AllUsersAreLoads - Return true if all users of this value are loads.
538static bool AllUsersAreLoads(Value *Ptr) {
539 for (Value::use_iterator I = Ptr->use_begin(), E = Ptr->use_end();
540 I != E; ++I)
541 if (cast<Instruction>(*I)->getOpcode() != Instruction::Load)
542 return false;
Misha Brukmanfd939082005-04-21 23:48:37 +0000543 return true;
Chris Lattnerd878ecd2004-11-14 05:00:19 +0000544}
545
Chris Lattner5e062a12003-05-30 04:15:41 +0000546/// isSafeUseOfAllocation - Check to see if this user is an allowed use for an
547/// aggregate allocation.
548///
Victor Hernandez7b929da2009-10-23 21:09:37 +0000549void SROA::isSafeUseOfAllocation(Instruction *User, AllocaInst *AI,
Chris Lattner39a1c042007-05-30 06:11:23 +0000550 AllocaInfo &Info) {
Chris Lattner372dda82007-03-05 07:52:57 +0000551 if (BitCastInst *C = dyn_cast<BitCastInst>(User))
Chris Lattner39a1c042007-05-30 06:11:23 +0000552 return isSafeUseOfBitCastedAllocation(C, AI, Info);
Chris Lattnerbe883a22003-11-25 21:09:18 +0000553
Chris Lattner6e733d32009-01-28 20:16:43 +0000554 if (LoadInst *LI = dyn_cast<LoadInst>(User))
555 if (!LI->isVolatile())
556 return;// Loads (returning a first class aggregrate) are always rewritable
Matthijs Kooijman02518142008-06-05 12:51:53 +0000557
Chris Lattner6e733d32009-01-28 20:16:43 +0000558 if (StoreInst *SI = dyn_cast<StoreInst>(User))
559 if (!SI->isVolatile() && SI->getOperand(0) != AI)
560 return;// Store is ok if storing INTO the pointer, not storing the pointer
Matthijs Kooijman02518142008-06-05 12:51:53 +0000561
Chris Lattner39a1c042007-05-30 06:11:23 +0000562 GetElementPtrInst *GEPI = dyn_cast<GetElementPtrInst>(User);
563 if (GEPI == 0)
564 return MarkUnsafe(Info);
565
Chris Lattnerbe883a22003-11-25 21:09:18 +0000566 gep_type_iterator I = gep_type_begin(GEPI), E = gep_type_end(GEPI);
567
Chris Lattner25de4862006-03-08 01:05:29 +0000568 // The GEP is not safe to transform if not of the form "GEP <ptr>, 0, <cst>".
Chris Lattnerbe883a22003-11-25 21:09:18 +0000569 if (I == E ||
Owen Andersona7235ea2009-07-31 20:28:14 +0000570 I.getOperand() != Constant::getNullValue(I.getOperand()->getType())) {
Chris Lattner39a1c042007-05-30 06:11:23 +0000571 return MarkUnsafe(Info);
572 }
Chris Lattnerbe883a22003-11-25 21:09:18 +0000573
574 ++I;
Chris Lattner39a1c042007-05-30 06:11:23 +0000575 if (I == E) return MarkUnsafe(Info); // ran out of GEP indices??
Chris Lattnerbe883a22003-11-25 21:09:18 +0000576
Chris Lattner8bf99112007-03-19 00:16:43 +0000577 bool IsAllZeroIndices = true;
578
Chris Lattner88e6dc82008-08-23 05:21:06 +0000579 // If the first index is a non-constant index into an array, see if we can
580 // handle it as a special case.
Chris Lattnerbe883a22003-11-25 21:09:18 +0000581 if (const ArrayType *AT = dyn_cast<ArrayType>(*I)) {
Chris Lattner88e6dc82008-08-23 05:21:06 +0000582 if (!isa<ConstantInt>(I.getOperand())) {
Chris Lattner8bf99112007-03-19 00:16:43 +0000583 IsAllZeroIndices = 0;
Chris Lattner88e6dc82008-08-23 05:21:06 +0000584 uint64_t NumElements = AT->getNumElements();
Chris Lattner8bf99112007-03-19 00:16:43 +0000585
Chris Lattnerd878ecd2004-11-14 05:00:19 +0000586 // If this is an array index and the index is not constant, we cannot
587 // promote... that is unless the array has exactly one or two elements in
588 // it, in which case we CAN promote it, but we have to canonicalize this
589 // out if this is the only problem.
Chris Lattner25de4862006-03-08 01:05:29 +0000590 if ((NumElements == 1 || NumElements == 2) &&
Chris Lattner39a1c042007-05-30 06:11:23 +0000591 AllUsersAreLoads(GEPI)) {
Devang Patel4afc90d2009-02-10 07:00:59 +0000592 Info.needsCleanup = true;
Chris Lattner39a1c042007-05-30 06:11:23 +0000593 return; // Canonicalization required!
594 }
595 return MarkUnsafe(Info);
Chris Lattnerd878ecd2004-11-14 05:00:19 +0000596 }
Chris Lattner5e062a12003-05-30 04:15:41 +0000597 }
Matthijs Kooijman5fac55f2008-10-06 16:23:31 +0000598
Chris Lattner88e6dc82008-08-23 05:21:06 +0000599 // Walk through the GEP type indices, checking the types that this indexes
600 // into.
601 for (; I != E; ++I) {
602 // Ignore struct elements, no extra checking needed for these.
603 if (isa<StructType>(*I))
604 continue;
605
Chris Lattner88e6dc82008-08-23 05:21:06 +0000606 ConstantInt *IdxVal = dyn_cast<ConstantInt>(I.getOperand());
607 if (!IdxVal) return MarkUnsafe(Info);
Matthijs Kooijman5fac55f2008-10-06 16:23:31 +0000608
609 // Are all indices still zero?
Chris Lattner88e6dc82008-08-23 05:21:06 +0000610 IsAllZeroIndices &= IdxVal->isZero();
Matthijs Kooijman5fac55f2008-10-06 16:23:31 +0000611
612 if (const ArrayType *AT = dyn_cast<ArrayType>(*I)) {
613 // This GEP indexes an array. Verify that this is an in-range constant
614 // integer. Specifically, consider A[0][i]. We cannot know that the user
615 // isn't doing invalid things like allowing i to index an out-of-range
616 // subscript that accesses A[1]. Because of this, we have to reject SROA
Dale Johannesenc0bc5472008-11-04 20:54:03 +0000617 // of any accesses into structs where any of the components are variables.
Matthijs Kooijman5fac55f2008-10-06 16:23:31 +0000618 if (IdxVal->getZExtValue() >= AT->getNumElements())
619 return MarkUnsafe(Info);
Dale Johannesenc0bc5472008-11-04 20:54:03 +0000620 } else if (const VectorType *VT = dyn_cast<VectorType>(*I)) {
621 if (IdxVal->getZExtValue() >= VT->getNumElements())
622 return MarkUnsafe(Info);
Matthijs Kooijman5fac55f2008-10-06 16:23:31 +0000623 }
Chris Lattner88e6dc82008-08-23 05:21:06 +0000624 }
625
Chris Lattnerbe883a22003-11-25 21:09:18 +0000626 // If there are any non-simple uses of this getelementptr, make sure to reject
627 // them.
Chris Lattner39a1c042007-05-30 06:11:23 +0000628 return isSafeElementUse(GEPI, IsAllZeroIndices, AI, Info);
Chris Lattner8bf99112007-03-19 00:16:43 +0000629}
630
631/// isSafeMemIntrinsicOnAllocation - Return true if the specified memory
632/// intrinsic can be promoted by SROA. At this point, we know that the operand
633/// of the memintrinsic is a pointer to the beginning of the allocation.
Victor Hernandez7b929da2009-10-23 21:09:37 +0000634void SROA::isSafeMemIntrinsicOnAllocation(MemIntrinsic *MI, AllocaInst *AI,
Chris Lattner39a1c042007-05-30 06:11:23 +0000635 unsigned OpNo, AllocaInfo &Info) {
Chris Lattner8bf99112007-03-19 00:16:43 +0000636 // If not constant length, give up.
637 ConstantInt *Length = dyn_cast<ConstantInt>(MI->getLength());
Chris Lattner39a1c042007-05-30 06:11:23 +0000638 if (!Length) return MarkUnsafe(Info);
Chris Lattner8bf99112007-03-19 00:16:43 +0000639
640 // If not the whole aggregate, give up.
Duncan Sands3cb36502007-11-04 14:43:57 +0000641 if (Length->getZExtValue() !=
Duncan Sands777d2302009-05-09 07:06:46 +0000642 TD->getTypeAllocSize(AI->getType()->getElementType()))
Chris Lattner39a1c042007-05-30 06:11:23 +0000643 return MarkUnsafe(Info);
Chris Lattner8bf99112007-03-19 00:16:43 +0000644
645 // We only know about memcpy/memset/memmove.
Chris Lattner3ce5e882009-03-08 03:37:16 +0000646 if (!isa<MemIntrinsic>(MI))
Chris Lattner39a1c042007-05-30 06:11:23 +0000647 return MarkUnsafe(Info);
648
649 // Otherwise, we can transform it. Determine whether this is a memcpy/set
650 // into or out of the aggregate.
651 if (OpNo == 1)
652 Info.isMemCpyDst = true;
653 else {
654 assert(OpNo == 2);
655 Info.isMemCpySrc = true;
656 }
Chris Lattner5e062a12003-05-30 04:15:41 +0000657}
658
Chris Lattner372dda82007-03-05 07:52:57 +0000659/// isSafeUseOfBitCastedAllocation - Return true if all users of this bitcast
660/// are
Victor Hernandez7b929da2009-10-23 21:09:37 +0000661void SROA::isSafeUseOfBitCastedAllocation(BitCastInst *BC, AllocaInst *AI,
Chris Lattner39a1c042007-05-30 06:11:23 +0000662 AllocaInfo &Info) {
Chris Lattner372dda82007-03-05 07:52:57 +0000663 for (Value::use_iterator UI = BC->use_begin(), E = BC->use_end();
664 UI != E; ++UI) {
665 if (BitCastInst *BCU = dyn_cast<BitCastInst>(UI)) {
Chris Lattner39a1c042007-05-30 06:11:23 +0000666 isSafeUseOfBitCastedAllocation(BCU, AI, Info);
Chris Lattner372dda82007-03-05 07:52:57 +0000667 } else if (MemIntrinsic *MI = dyn_cast<MemIntrinsic>(UI)) {
Chris Lattner39a1c042007-05-30 06:11:23 +0000668 isSafeMemIntrinsicOnAllocation(MI, AI, UI.getOperandNo(), Info);
Chris Lattnerd2fa7812009-01-07 08:11:13 +0000669 } else if (StoreInst *SI = dyn_cast<StoreInst>(UI)) {
Chris Lattner6e733d32009-01-28 20:16:43 +0000670 if (SI->isVolatile())
671 return MarkUnsafe(Info);
672
Chris Lattnerd2fa7812009-01-07 08:11:13 +0000673 // If storing the entire alloca in one chunk through a bitcasted pointer
674 // to integer, we can transform it. This happens (for example) when you
675 // cast a {i32,i32}* to i64* and store through it. This is similar to the
676 // memcpy case and occurs in various "byval" cases and emulated memcpys.
677 if (isa<IntegerType>(SI->getOperand(0)->getType()) &&
Duncan Sands777d2302009-05-09 07:06:46 +0000678 TD->getTypeAllocSize(SI->getOperand(0)->getType()) ==
679 TD->getTypeAllocSize(AI->getType()->getElementType())) {
Chris Lattnerd2fa7812009-01-07 08:11:13 +0000680 Info.isMemCpyDst = true;
681 continue;
682 }
683 return MarkUnsafe(Info);
Chris Lattner5ffe6ac2009-01-08 05:42:05 +0000684 } else if (LoadInst *LI = dyn_cast<LoadInst>(UI)) {
Chris Lattner6e733d32009-01-28 20:16:43 +0000685 if (LI->isVolatile())
686 return MarkUnsafe(Info);
687
Chris Lattner5ffe6ac2009-01-08 05:42:05 +0000688 // If loading the entire alloca in one chunk through a bitcasted pointer
689 // to integer, we can transform it. This happens (for example) when you
690 // cast a {i32,i32}* to i64* and load through it. This is similar to the
691 // memcpy case and occurs in various "byval" cases and emulated memcpys.
692 if (isa<IntegerType>(LI->getType()) &&
Duncan Sands777d2302009-05-09 07:06:46 +0000693 TD->getTypeAllocSize(LI->getType()) ==
694 TD->getTypeAllocSize(AI->getType()->getElementType())) {
Chris Lattner5ffe6ac2009-01-08 05:42:05 +0000695 Info.isMemCpySrc = true;
696 continue;
697 }
698 return MarkUnsafe(Info);
Devang Patel4afc90d2009-02-10 07:00:59 +0000699 } else if (isa<DbgInfoIntrinsic>(UI)) {
700 // If one user is DbgInfoIntrinsic then check if all users are
701 // DbgInfoIntrinsics.
702 if (OnlyUsedByDbgInfoIntrinsics(BC)) {
703 Info.needsCleanup = true;
704 return;
705 }
706 else
707 MarkUnsafe(Info);
708 }
709 else {
Chris Lattner39a1c042007-05-30 06:11:23 +0000710 return MarkUnsafe(Info);
Chris Lattner372dda82007-03-05 07:52:57 +0000711 }
Chris Lattner39a1c042007-05-30 06:11:23 +0000712 if (Info.isUnsafe) return;
Chris Lattner372dda82007-03-05 07:52:57 +0000713 }
Chris Lattner372dda82007-03-05 07:52:57 +0000714}
715
Chris Lattner8bf99112007-03-19 00:16:43 +0000716/// RewriteBitCastUserOfAlloca - BCInst (transitively) bitcasts AI, or indexes
717/// to its first element. Transform users of the cast to use the new values
718/// instead.
Victor Hernandez7b929da2009-10-23 21:09:37 +0000719void SROA::RewriteBitCastUserOfAlloca(Instruction *BCInst, AllocaInst *AI,
Chris Lattner372dda82007-03-05 07:52:57 +0000720 SmallVector<AllocaInst*, 32> &NewElts) {
Chris Lattner8bf99112007-03-19 00:16:43 +0000721 Value::use_iterator UI = BCInst->use_begin(), UE = BCInst->use_end();
722 while (UI != UE) {
Chris Lattnerd93afec2009-01-07 07:18:45 +0000723 Instruction *User = cast<Instruction>(*UI++);
724 if (BitCastInst *BCU = dyn_cast<BitCastInst>(User)) {
Chris Lattner372dda82007-03-05 07:52:57 +0000725 RewriteBitCastUserOfAlloca(BCU, AI, NewElts);
Chris Lattnerd2fa7812009-01-07 08:11:13 +0000726 if (BCU->use_empty()) BCU->eraseFromParent();
Chris Lattner372dda82007-03-05 07:52:57 +0000727 continue;
728 }
729
Chris Lattnerd93afec2009-01-07 07:18:45 +0000730 if (MemIntrinsic *MI = dyn_cast<MemIntrinsic>(User)) {
731 // This must be memcpy/memmove/memset of the entire aggregate.
732 // Split into one per element.
733 RewriteMemIntrinUserOfAlloca(MI, BCInst, AI, NewElts);
Chris Lattner8bf99112007-03-19 00:16:43 +0000734 continue;
735 }
Chris Lattnerd93afec2009-01-07 07:18:45 +0000736
Chris Lattnerd2fa7812009-01-07 08:11:13 +0000737 if (StoreInst *SI = dyn_cast<StoreInst>(User)) {
Chris Lattner5ffe6ac2009-01-08 05:42:05 +0000738 // If this is a store of the entire alloca from an integer, rewrite it.
Chris Lattnerd2fa7812009-01-07 08:11:13 +0000739 RewriteStoreUserOfWholeAlloca(SI, AI, NewElts);
740 continue;
741 }
Chris Lattner5ffe6ac2009-01-08 05:42:05 +0000742
743 if (LoadInst *LI = dyn_cast<LoadInst>(User)) {
744 // If this is a load of the entire alloca to an integer, rewrite it.
745 RewriteLoadUserOfWholeAlloca(LI, AI, NewElts);
746 continue;
747 }
Chris Lattnerd2fa7812009-01-07 08:11:13 +0000748
749 // Otherwise it must be some other user of a gep of the first pointer. Just
750 // leave these alone.
Chris Lattnerd93afec2009-01-07 07:18:45 +0000751 continue;
Chris Lattner5ffe6ac2009-01-08 05:42:05 +0000752 }
Chris Lattnerd93afec2009-01-07 07:18:45 +0000753}
754
755/// RewriteMemIntrinUserOfAlloca - MI is a memcpy/memset/memmove from or to AI.
756/// Rewrite it to copy or set the elements of the scalarized memory.
757void SROA::RewriteMemIntrinUserOfAlloca(MemIntrinsic *MI, Instruction *BCInst,
Victor Hernandez7b929da2009-10-23 21:09:37 +0000758 AllocaInst *AI,
Chris Lattnerd93afec2009-01-07 07:18:45 +0000759 SmallVector<AllocaInst*, 32> &NewElts) {
760
761 // If this is a memcpy/memmove, construct the other pointer as the
Chris Lattner88fe1ad2009-03-04 19:23:25 +0000762 // appropriate type. The "Other" pointer is the pointer that goes to memory
763 // that doesn't have anything to do with the alloca that we are promoting. For
764 // memset, this Value* stays null.
Chris Lattnerd93afec2009-01-07 07:18:45 +0000765 Value *OtherPtr = 0;
Owen Andersone922c022009-07-22 00:24:57 +0000766 LLVMContext &Context = MI->getContext();
Chris Lattnerdfe964c2009-03-08 03:59:00 +0000767 unsigned MemAlignment = MI->getAlignment();
Chris Lattner3ce5e882009-03-08 03:37:16 +0000768 if (MemTransferInst *MTI = dyn_cast<MemTransferInst>(MI)) { // memmove/memcopy
769 if (BCInst == MTI->getRawDest())
770 OtherPtr = MTI->getRawSource();
Chris Lattnerd93afec2009-01-07 07:18:45 +0000771 else {
Chris Lattner3ce5e882009-03-08 03:37:16 +0000772 assert(BCInst == MTI->getRawSource());
773 OtherPtr = MTI->getRawDest();
Chris Lattnerd93afec2009-01-07 07:18:45 +0000774 }
775 }
776
777 // If there is an other pointer, we want to convert it to the same pointer
778 // type as AI has, so we can GEP through it safely.
779 if (OtherPtr) {
780 // It is likely that OtherPtr is a bitcast, if so, remove it.
781 if (BitCastInst *BC = dyn_cast<BitCastInst>(OtherPtr))
782 OtherPtr = BC->getOperand(0);
783 // All zero GEPs are effectively bitcasts.
784 if (GetElementPtrInst *GEP = dyn_cast<GetElementPtrInst>(OtherPtr))
785 if (GEP->hasAllZeroIndices())
786 OtherPtr = GEP->getOperand(0);
Chris Lattner372dda82007-03-05 07:52:57 +0000787
Chris Lattnerd93afec2009-01-07 07:18:45 +0000788 if (ConstantExpr *BCE = dyn_cast<ConstantExpr>(OtherPtr))
789 if (BCE->getOpcode() == Instruction::BitCast)
790 OtherPtr = BCE->getOperand(0);
791
792 // If the pointer is not the right type, insert a bitcast to the right
793 // type.
794 if (OtherPtr->getType() != AI->getType())
795 OtherPtr = new BitCastInst(OtherPtr, AI->getType(), OtherPtr->getName(),
796 MI);
797 }
798
799 // Process each element of the aggregate.
800 Value *TheFn = MI->getOperand(0);
801 const Type *BytePtrTy = MI->getRawDest()->getType();
802 bool SROADest = MI->getRawDest() == BCInst;
803
Owen Anderson1d0be152009-08-13 21:58:54 +0000804 Constant *Zero = Constant::getNullValue(Type::getInt32Ty(MI->getContext()));
Chris Lattnerd93afec2009-01-07 07:18:45 +0000805
806 for (unsigned i = 0, e = NewElts.size(); i != e; ++i) {
807 // If this is a memcpy/memmove, emit a GEP of the other element address.
808 Value *OtherElt = 0;
Chris Lattner1541e0f2009-03-04 19:20:50 +0000809 unsigned OtherEltAlign = MemAlignment;
810
Chris Lattner372dda82007-03-05 07:52:57 +0000811 if (OtherPtr) {
Owen Anderson1d0be152009-08-13 21:58:54 +0000812 Value *Idx[2] = { Zero,
813 ConstantInt::get(Type::getInt32Ty(MI->getContext()), i) };
Chris Lattnerd93afec2009-01-07 07:18:45 +0000814 OtherElt = GetElementPtrInst::Create(OtherPtr, Idx, Idx + 2,
Daniel Dunbarfe09b202009-07-30 17:37:43 +0000815 OtherPtr->getNameStr()+"."+Twine(i),
Chris Lattnerd93afec2009-01-07 07:18:45 +0000816 MI);
Chris Lattner1541e0f2009-03-04 19:20:50 +0000817 uint64_t EltOffset;
818 const PointerType *OtherPtrTy = cast<PointerType>(OtherPtr->getType());
819 if (const StructType *ST =
820 dyn_cast<StructType>(OtherPtrTy->getElementType())) {
821 EltOffset = TD->getStructLayout(ST)->getElementOffset(i);
822 } else {
823 const Type *EltTy =
824 cast<SequentialType>(OtherPtr->getType())->getElementType();
Duncan Sands777d2302009-05-09 07:06:46 +0000825 EltOffset = TD->getTypeAllocSize(EltTy)*i;
Chris Lattner1541e0f2009-03-04 19:20:50 +0000826 }
827
828 // The alignment of the other pointer is the guaranteed alignment of the
829 // element, which is affected by both the known alignment of the whole
830 // mem intrinsic and the alignment of the element. If the alignment of
831 // the memcpy (f.e.) is 32 but the element is at a 4-byte offset, then the
832 // known alignment is just 4 bytes.
833 OtherEltAlign = (unsigned)MinAlign(OtherEltAlign, EltOffset);
Chris Lattnerc14d3ca2007-03-08 06:36:54 +0000834 }
Chris Lattnerd93afec2009-01-07 07:18:45 +0000835
836 Value *EltPtr = NewElts[i];
Chris Lattner1541e0f2009-03-04 19:20:50 +0000837 const Type *EltTy = cast<PointerType>(EltPtr->getType())->getElementType();
Chris Lattnerd93afec2009-01-07 07:18:45 +0000838
839 // If we got down to a scalar, insert a load or store as appropriate.
840 if (EltTy->isSingleValueType()) {
Chris Lattner3ce5e882009-03-08 03:37:16 +0000841 if (isa<MemTransferInst>(MI)) {
Chris Lattner1541e0f2009-03-04 19:20:50 +0000842 if (SROADest) {
843 // From Other to Alloca.
844 Value *Elt = new LoadInst(OtherElt, "tmp", false, OtherEltAlign, MI);
845 new StoreInst(Elt, EltPtr, MI);
846 } else {
847 // From Alloca to Other.
848 Value *Elt = new LoadInst(EltPtr, "tmp", MI);
849 new StoreInst(Elt, OtherElt, false, OtherEltAlign, MI);
850 }
Chris Lattnerd93afec2009-01-07 07:18:45 +0000851 continue;
852 }
853 assert(isa<MemSetInst>(MI));
854
855 // If the stored element is zero (common case), just store a null
856 // constant.
857 Constant *StoreVal;
858 if (ConstantInt *CI = dyn_cast<ConstantInt>(MI->getOperand(2))) {
859 if (CI->isZero()) {
Owen Andersona7235ea2009-07-31 20:28:14 +0000860 StoreVal = Constant::getNullValue(EltTy); // 0.0, null, 0, <0,0>
Chris Lattnerd93afec2009-01-07 07:18:45 +0000861 } else {
862 // If EltTy is a vector type, get the element type.
Dan Gohman44118f02009-06-16 00:20:26 +0000863 const Type *ValTy = EltTy->getScalarType();
864
Chris Lattnerd93afec2009-01-07 07:18:45 +0000865 // Construct an integer with the right value.
866 unsigned EltSize = TD->getTypeSizeInBits(ValTy);
867 APInt OneVal(EltSize, CI->getZExtValue());
868 APInt TotalVal(OneVal);
869 // Set each byte.
870 for (unsigned i = 0; 8*i < EltSize; ++i) {
871 TotalVal = TotalVal.shl(8);
872 TotalVal |= OneVal;
873 }
874
875 // Convert the integer value to the appropriate type.
Owen Andersoneed707b2009-07-24 23:12:02 +0000876 StoreVal = ConstantInt::get(Context, TotalVal);
Chris Lattnerd93afec2009-01-07 07:18:45 +0000877 if (isa<PointerType>(ValTy))
Owen Andersonbaf3c402009-07-29 18:55:55 +0000878 StoreVal = ConstantExpr::getIntToPtr(StoreVal, ValTy);
Chris Lattnerd93afec2009-01-07 07:18:45 +0000879 else if (ValTy->isFloatingPoint())
Owen Andersonbaf3c402009-07-29 18:55:55 +0000880 StoreVal = ConstantExpr::getBitCast(StoreVal, ValTy);
Chris Lattnerd93afec2009-01-07 07:18:45 +0000881 assert(StoreVal->getType() == ValTy && "Type mismatch!");
882
883 // If the requested value was a vector constant, create it.
884 if (EltTy != ValTy) {
885 unsigned NumElts = cast<VectorType>(ValTy)->getNumElements();
886 SmallVector<Constant*, 16> Elts(NumElts, StoreVal);
Owen Andersonaf7ec972009-07-28 21:19:26 +0000887 StoreVal = ConstantVector::get(&Elts[0], NumElts);
Chris Lattnerd93afec2009-01-07 07:18:45 +0000888 }
889 }
890 new StoreInst(StoreVal, EltPtr, MI);
891 continue;
892 }
893 // Otherwise, if we're storing a byte variable, use a memset call for
894 // this element.
895 }
896
897 // Cast the element pointer to BytePtrTy.
898 if (EltPtr->getType() != BytePtrTy)
899 EltPtr = new BitCastInst(EltPtr, BytePtrTy, EltPtr->getNameStr(), MI);
900
901 // Cast the other pointer (if we have one) to BytePtrTy.
902 if (OtherElt && OtherElt->getType() != BytePtrTy)
903 OtherElt = new BitCastInst(OtherElt, BytePtrTy,OtherElt->getNameStr(),
904 MI);
905
Duncan Sands777d2302009-05-09 07:06:46 +0000906 unsigned EltSize = TD->getTypeAllocSize(EltTy);
Chris Lattnerd93afec2009-01-07 07:18:45 +0000907
908 // Finally, insert the meminst for this element.
Chris Lattner3ce5e882009-03-08 03:37:16 +0000909 if (isa<MemTransferInst>(MI)) {
Chris Lattnerd93afec2009-01-07 07:18:45 +0000910 Value *Ops[] = {
911 SROADest ? EltPtr : OtherElt, // Dest ptr
912 SROADest ? OtherElt : EltPtr, // Src ptr
Owen Andersoneed707b2009-07-24 23:12:02 +0000913 ConstantInt::get(MI->getOperand(3)->getType(), EltSize), // Size
Owen Anderson1d0be152009-08-13 21:58:54 +0000914 // Align
915 ConstantInt::get(Type::getInt32Ty(MI->getContext()), OtherEltAlign)
Chris Lattnerd93afec2009-01-07 07:18:45 +0000916 };
917 CallInst::Create(TheFn, Ops, Ops + 4, "", MI);
918 } else {
919 assert(isa<MemSetInst>(MI));
920 Value *Ops[] = {
921 EltPtr, MI->getOperand(2), // Dest, Value,
Owen Andersoneed707b2009-07-24 23:12:02 +0000922 ConstantInt::get(MI->getOperand(3)->getType(), EltSize), // Size
Chris Lattnerd93afec2009-01-07 07:18:45 +0000923 Zero // Align
924 };
925 CallInst::Create(TheFn, Ops, Ops + 4, "", MI);
926 }
Chris Lattner372dda82007-03-05 07:52:57 +0000927 }
Chris Lattnerd2fa7812009-01-07 08:11:13 +0000928 MI->eraseFromParent();
Chris Lattner372dda82007-03-05 07:52:57 +0000929}
Chris Lattnerd2fa7812009-01-07 08:11:13 +0000930
931/// RewriteStoreUserOfWholeAlloca - We found an store of an integer that
932/// overwrites the entire allocation. Extract out the pieces of the stored
933/// integer and store them individually.
Victor Hernandez7b929da2009-10-23 21:09:37 +0000934void SROA::RewriteStoreUserOfWholeAlloca(StoreInst *SI, AllocaInst *AI,
Chris Lattnerd2fa7812009-01-07 08:11:13 +0000935 SmallVector<AllocaInst*, 32> &NewElts){
936 // Extract each element out of the integer according to its structure offset
937 // and store the element value to the individual alloca.
938 Value *SrcVal = SI->getOperand(0);
939 const Type *AllocaEltTy = AI->getType()->getElementType();
Duncan Sands777d2302009-05-09 07:06:46 +0000940 uint64_t AllocaSizeBits = TD->getTypeAllocSizeInBits(AllocaEltTy);
Chris Lattnerd93afec2009-01-07 07:18:45 +0000941
Chris Lattnerd2fa7812009-01-07 08:11:13 +0000942 // If this isn't a store of an integer to the whole alloca, it may be a store
943 // to the first element. Just ignore the store in this case and normal SROA
Eli Friedman41b33f42009-06-01 09:14:32 +0000944 // will handle it.
Chris Lattnerd2fa7812009-01-07 08:11:13 +0000945 if (!isa<IntegerType>(SrcVal->getType()) ||
Eli Friedman41b33f42009-06-01 09:14:32 +0000946 TD->getTypeAllocSizeInBits(SrcVal->getType()) != AllocaSizeBits)
Chris Lattnerd2fa7812009-01-07 08:11:13 +0000947 return;
Eli Friedman41b33f42009-06-01 09:14:32 +0000948 // Handle tail padding by extending the operand
949 if (TD->getTypeSizeInBits(SrcVal->getType()) != AllocaSizeBits)
Owen Andersonfa5cbd62009-07-03 19:42:02 +0000950 SrcVal = new ZExtInst(SrcVal,
Owen Anderson1d0be152009-08-13 21:58:54 +0000951 IntegerType::get(SI->getContext(), AllocaSizeBits),
952 "", SI);
Chris Lattnerd2fa7812009-01-07 08:11:13 +0000953
Nick Lewycky59136252009-09-15 07:08:25 +0000954 DEBUG(errs() << "PROMOTING STORE TO WHOLE ALLOCA: " << *AI << '\n' << *SI
955 << '\n');
Chris Lattnerd2fa7812009-01-07 08:11:13 +0000956
957 // There are two forms here: AI could be an array or struct. Both cases
958 // have different ways to compute the element offset.
959 if (const StructType *EltSTy = dyn_cast<StructType>(AllocaEltTy)) {
960 const StructLayout *Layout = TD->getStructLayout(EltSTy);
961
962 for (unsigned i = 0, e = NewElts.size(); i != e; ++i) {
963 // Get the number of bits to shift SrcVal to get the value.
964 const Type *FieldTy = EltSTy->getElementType(i);
965 uint64_t Shift = Layout->getElementOffsetInBits(i);
966
967 if (TD->isBigEndian())
Duncan Sands777d2302009-05-09 07:06:46 +0000968 Shift = AllocaSizeBits-Shift-TD->getTypeAllocSizeInBits(FieldTy);
Chris Lattnerd2fa7812009-01-07 08:11:13 +0000969
970 Value *EltVal = SrcVal;
971 if (Shift) {
Owen Andersoneed707b2009-07-24 23:12:02 +0000972 Value *ShiftVal = ConstantInt::get(EltVal->getType(), Shift);
Chris Lattnerd2fa7812009-01-07 08:11:13 +0000973 EltVal = BinaryOperator::CreateLShr(EltVal, ShiftVal,
974 "sroa.store.elt", SI);
975 }
976
977 // Truncate down to an integer of the right size.
978 uint64_t FieldSizeBits = TD->getTypeSizeInBits(FieldTy);
Chris Lattner583dd602009-01-09 18:18:43 +0000979
980 // Ignore zero sized fields like {}, they obviously contain no data.
981 if (FieldSizeBits == 0) continue;
982
Chris Lattnerd2fa7812009-01-07 08:11:13 +0000983 if (FieldSizeBits != AllocaSizeBits)
Owen Andersonfa5cbd62009-07-03 19:42:02 +0000984 EltVal = new TruncInst(EltVal,
Owen Anderson1d0be152009-08-13 21:58:54 +0000985 IntegerType::get(SI->getContext(), FieldSizeBits),
986 "", SI);
Chris Lattnerd2fa7812009-01-07 08:11:13 +0000987 Value *DestField = NewElts[i];
988 if (EltVal->getType() == FieldTy) {
989 // Storing to an integer field of this size, just do it.
990 } else if (FieldTy->isFloatingPoint() || isa<VectorType>(FieldTy)) {
991 // Bitcast to the right element type (for fp/vector values).
992 EltVal = new BitCastInst(EltVal, FieldTy, "", SI);
993 } else {
994 // Otherwise, bitcast the dest pointer (for aggregates).
995 DestField = new BitCastInst(DestField,
Owen Andersondebcb012009-07-29 22:17:13 +0000996 PointerType::getUnqual(EltVal->getType()),
Chris Lattnerd2fa7812009-01-07 08:11:13 +0000997 "", SI);
998 }
999 new StoreInst(EltVal, DestField, SI);
1000 }
1001
1002 } else {
1003 const ArrayType *ATy = cast<ArrayType>(AllocaEltTy);
1004 const Type *ArrayEltTy = ATy->getElementType();
Duncan Sands777d2302009-05-09 07:06:46 +00001005 uint64_t ElementOffset = TD->getTypeAllocSizeInBits(ArrayEltTy);
Chris Lattnerd2fa7812009-01-07 08:11:13 +00001006 uint64_t ElementSizeBits = TD->getTypeSizeInBits(ArrayEltTy);
1007
1008 uint64_t Shift;
1009
1010 if (TD->isBigEndian())
1011 Shift = AllocaSizeBits-ElementOffset;
1012 else
1013 Shift = 0;
1014
1015 for (unsigned i = 0, e = NewElts.size(); i != e; ++i) {
Chris Lattner583dd602009-01-09 18:18:43 +00001016 // Ignore zero sized fields like {}, they obviously contain no data.
1017 if (ElementSizeBits == 0) continue;
Chris Lattnerd2fa7812009-01-07 08:11:13 +00001018
1019 Value *EltVal = SrcVal;
1020 if (Shift) {
Owen Andersoneed707b2009-07-24 23:12:02 +00001021 Value *ShiftVal = ConstantInt::get(EltVal->getType(), Shift);
Chris Lattnerd2fa7812009-01-07 08:11:13 +00001022 EltVal = BinaryOperator::CreateLShr(EltVal, ShiftVal,
1023 "sroa.store.elt", SI);
1024 }
1025
1026 // Truncate down to an integer of the right size.
1027 if (ElementSizeBits != AllocaSizeBits)
Owen Andersonfa5cbd62009-07-03 19:42:02 +00001028 EltVal = new TruncInst(EltVal,
Owen Anderson1d0be152009-08-13 21:58:54 +00001029 IntegerType::get(SI->getContext(),
1030 ElementSizeBits),"",SI);
Chris Lattnerd2fa7812009-01-07 08:11:13 +00001031 Value *DestField = NewElts[i];
1032 if (EltVal->getType() == ArrayEltTy) {
1033 // Storing to an integer field of this size, just do it.
1034 } else if (ArrayEltTy->isFloatingPoint() || isa<VectorType>(ArrayEltTy)) {
1035 // Bitcast to the right element type (for fp/vector values).
1036 EltVal = new BitCastInst(EltVal, ArrayEltTy, "", SI);
1037 } else {
1038 // Otherwise, bitcast the dest pointer (for aggregates).
1039 DestField = new BitCastInst(DestField,
Owen Andersondebcb012009-07-29 22:17:13 +00001040 PointerType::getUnqual(EltVal->getType()),
Chris Lattnerd2fa7812009-01-07 08:11:13 +00001041 "", SI);
1042 }
1043 new StoreInst(EltVal, DestField, SI);
1044
1045 if (TD->isBigEndian())
1046 Shift -= ElementOffset;
1047 else
1048 Shift += ElementOffset;
1049 }
1050 }
1051
1052 SI->eraseFromParent();
1053}
1054
Chris Lattner5ffe6ac2009-01-08 05:42:05 +00001055/// RewriteLoadUserOfWholeAlloca - We found an load of the entire allocation to
1056/// an integer. Load the individual pieces to form the aggregate value.
Victor Hernandez7b929da2009-10-23 21:09:37 +00001057void SROA::RewriteLoadUserOfWholeAlloca(LoadInst *LI, AllocaInst *AI,
Chris Lattner5ffe6ac2009-01-08 05:42:05 +00001058 SmallVector<AllocaInst*, 32> &NewElts) {
1059 // Extract each element out of the NewElts according to its structure offset
1060 // and form the result value.
1061 const Type *AllocaEltTy = AI->getType()->getElementType();
Duncan Sands777d2302009-05-09 07:06:46 +00001062 uint64_t AllocaSizeBits = TD->getTypeAllocSizeInBits(AllocaEltTy);
Chris Lattner5ffe6ac2009-01-08 05:42:05 +00001063
1064 // If this isn't a load of the whole alloca to an integer, it may be a load
1065 // of the first element. Just ignore the load in this case and normal SROA
Eli Friedman41b33f42009-06-01 09:14:32 +00001066 // will handle it.
Chris Lattner5ffe6ac2009-01-08 05:42:05 +00001067 if (!isa<IntegerType>(LI->getType()) ||
Eli Friedman41b33f42009-06-01 09:14:32 +00001068 TD->getTypeAllocSizeInBits(LI->getType()) != AllocaSizeBits)
Chris Lattner5ffe6ac2009-01-08 05:42:05 +00001069 return;
1070
Nick Lewycky59136252009-09-15 07:08:25 +00001071 DEBUG(errs() << "PROMOTING LOAD OF WHOLE ALLOCA: " << *AI << '\n' << *LI
1072 << '\n');
Chris Lattner5ffe6ac2009-01-08 05:42:05 +00001073
1074 // There are two forms here: AI could be an array or struct. Both cases
1075 // have different ways to compute the element offset.
1076 const StructLayout *Layout = 0;
1077 uint64_t ArrayEltBitOffset = 0;
1078 if (const StructType *EltSTy = dyn_cast<StructType>(AllocaEltTy)) {
1079 Layout = TD->getStructLayout(EltSTy);
1080 } else {
1081 const Type *ArrayEltTy = cast<ArrayType>(AllocaEltTy)->getElementType();
Duncan Sands777d2302009-05-09 07:06:46 +00001082 ArrayEltBitOffset = TD->getTypeAllocSizeInBits(ArrayEltTy);
Chris Lattner5ffe6ac2009-01-08 05:42:05 +00001083 }
Owen Andersone922c022009-07-22 00:24:57 +00001084
Owen Andersone922c022009-07-22 00:24:57 +00001085 Value *ResultVal =
Owen Anderson1d0be152009-08-13 21:58:54 +00001086 Constant::getNullValue(IntegerType::get(LI->getContext(), AllocaSizeBits));
Chris Lattner5ffe6ac2009-01-08 05:42:05 +00001087
1088 for (unsigned i = 0, e = NewElts.size(); i != e; ++i) {
1089 // Load the value from the alloca. If the NewElt is an aggregate, cast
1090 // the pointer to an integer of the same size before doing the load.
1091 Value *SrcField = NewElts[i];
1092 const Type *FieldTy =
1093 cast<PointerType>(SrcField->getType())->getElementType();
Chris Lattner583dd602009-01-09 18:18:43 +00001094 uint64_t FieldSizeBits = TD->getTypeSizeInBits(FieldTy);
1095
1096 // Ignore zero sized fields like {}, they obviously contain no data.
1097 if (FieldSizeBits == 0) continue;
1098
Owen Anderson1d0be152009-08-13 21:58:54 +00001099 const IntegerType *FieldIntTy = IntegerType::get(LI->getContext(),
1100 FieldSizeBits);
Chris Lattner5ffe6ac2009-01-08 05:42:05 +00001101 if (!isa<IntegerType>(FieldTy) && !FieldTy->isFloatingPoint() &&
1102 !isa<VectorType>(FieldTy))
Owen Andersonfa5cbd62009-07-03 19:42:02 +00001103 SrcField = new BitCastInst(SrcField,
Owen Andersondebcb012009-07-29 22:17:13 +00001104 PointerType::getUnqual(FieldIntTy),
Chris Lattner5ffe6ac2009-01-08 05:42:05 +00001105 "", LI);
1106 SrcField = new LoadInst(SrcField, "sroa.load.elt", LI);
1107
1108 // If SrcField is a fp or vector of the right size but that isn't an
1109 // integer type, bitcast to an integer so we can shift it.
1110 if (SrcField->getType() != FieldIntTy)
1111 SrcField = new BitCastInst(SrcField, FieldIntTy, "", LI);
1112
1113 // Zero extend the field to be the same size as the final alloca so that
1114 // we can shift and insert it.
1115 if (SrcField->getType() != ResultVal->getType())
1116 SrcField = new ZExtInst(SrcField, ResultVal->getType(), "", LI);
1117
1118 // Determine the number of bits to shift SrcField.
1119 uint64_t Shift;
1120 if (Layout) // Struct case.
1121 Shift = Layout->getElementOffsetInBits(i);
1122 else // Array case.
1123 Shift = i*ArrayEltBitOffset;
1124
1125 if (TD->isBigEndian())
1126 Shift = AllocaSizeBits-Shift-FieldIntTy->getBitWidth();
1127
1128 if (Shift) {
Owen Andersoneed707b2009-07-24 23:12:02 +00001129 Value *ShiftVal = ConstantInt::get(SrcField->getType(), Shift);
Chris Lattner5ffe6ac2009-01-08 05:42:05 +00001130 SrcField = BinaryOperator::CreateShl(SrcField, ShiftVal, "", LI);
1131 }
1132
1133 ResultVal = BinaryOperator::CreateOr(SrcField, ResultVal, "", LI);
1134 }
Eli Friedman41b33f42009-06-01 09:14:32 +00001135
1136 // Handle tail padding by truncating the result
1137 if (TD->getTypeSizeInBits(LI->getType()) != AllocaSizeBits)
1138 ResultVal = new TruncInst(ResultVal, LI->getType(), "", LI);
1139
Chris Lattner5ffe6ac2009-01-08 05:42:05 +00001140 LI->replaceAllUsesWith(ResultVal);
1141 LI->eraseFromParent();
1142}
1143
Chris Lattner372dda82007-03-05 07:52:57 +00001144
Duncan Sands3cb36502007-11-04 14:43:57 +00001145/// HasPadding - Return true if the specified type has any structure or
1146/// alignment padding, false otherwise.
Duncan Sandsa0fcc082008-06-04 08:21:45 +00001147static bool HasPadding(const Type *Ty, const TargetData &TD) {
Chris Lattner39a1c042007-05-30 06:11:23 +00001148 if (const StructType *STy = dyn_cast<StructType>(Ty)) {
1149 const StructLayout *SL = TD.getStructLayout(STy);
1150 unsigned PrevFieldBitOffset = 0;
1151 for (unsigned i = 0, e = STy->getNumElements(); i != e; ++i) {
Duncan Sands3cb36502007-11-04 14:43:57 +00001152 unsigned FieldBitOffset = SL->getElementOffsetInBits(i);
1153
Chris Lattner39a1c042007-05-30 06:11:23 +00001154 // Padding in sub-elements?
Duncan Sandsa0fcc082008-06-04 08:21:45 +00001155 if (HasPadding(STy->getElementType(i), TD))
Chris Lattner39a1c042007-05-30 06:11:23 +00001156 return true;
Duncan Sands3cb36502007-11-04 14:43:57 +00001157
Chris Lattner39a1c042007-05-30 06:11:23 +00001158 // Check to see if there is any padding between this element and the
1159 // previous one.
1160 if (i) {
Duncan Sands3cb36502007-11-04 14:43:57 +00001161 unsigned PrevFieldEnd =
Chris Lattner39a1c042007-05-30 06:11:23 +00001162 PrevFieldBitOffset+TD.getTypeSizeInBits(STy->getElementType(i-1));
1163 if (PrevFieldEnd < FieldBitOffset)
1164 return true;
1165 }
Duncan Sands3cb36502007-11-04 14:43:57 +00001166
Chris Lattner39a1c042007-05-30 06:11:23 +00001167 PrevFieldBitOffset = FieldBitOffset;
1168 }
Duncan Sands3cb36502007-11-04 14:43:57 +00001169
Chris Lattner39a1c042007-05-30 06:11:23 +00001170 // Check for tail padding.
1171 if (unsigned EltCount = STy->getNumElements()) {
1172 unsigned PrevFieldEnd = PrevFieldBitOffset +
1173 TD.getTypeSizeInBits(STy->getElementType(EltCount-1));
Duncan Sands3cb36502007-11-04 14:43:57 +00001174 if (PrevFieldEnd < SL->getSizeInBits())
Chris Lattner39a1c042007-05-30 06:11:23 +00001175 return true;
1176 }
1177
1178 } else if (const ArrayType *ATy = dyn_cast<ArrayType>(Ty)) {
Duncan Sandsa0fcc082008-06-04 08:21:45 +00001179 return HasPadding(ATy->getElementType(), TD);
Duncan Sands3cb36502007-11-04 14:43:57 +00001180 } else if (const VectorType *VTy = dyn_cast<VectorType>(Ty)) {
Duncan Sandsa0fcc082008-06-04 08:21:45 +00001181 return HasPadding(VTy->getElementType(), TD);
Chris Lattner39a1c042007-05-30 06:11:23 +00001182 }
Duncan Sands777d2302009-05-09 07:06:46 +00001183 return TD.getTypeSizeInBits(Ty) != TD.getTypeAllocSizeInBits(Ty);
Chris Lattner39a1c042007-05-30 06:11:23 +00001184}
Chris Lattner372dda82007-03-05 07:52:57 +00001185
Chris Lattnerf5990ed2004-11-14 04:24:28 +00001186/// isSafeStructAllocaToScalarRepl - Check to see if the specified allocation of
1187/// an aggregate can be broken down into elements. Return 0 if not, 3 if safe,
1188/// or 1 if safe after canonicalization has been performed.
Chris Lattner5e062a12003-05-30 04:15:41 +00001189///
Victor Hernandez7b929da2009-10-23 21:09:37 +00001190int SROA::isSafeAllocaToScalarRepl(AllocaInst *AI) {
Chris Lattner5e062a12003-05-30 04:15:41 +00001191 // Loop over the use list of the alloca. We can only transform it if all of
1192 // the users are safe to transform.
Chris Lattner39a1c042007-05-30 06:11:23 +00001193 AllocaInfo Info;
1194
Chris Lattner5e062a12003-05-30 04:15:41 +00001195 for (Value::use_iterator I = AI->use_begin(), E = AI->use_end();
Chris Lattnerf5990ed2004-11-14 04:24:28 +00001196 I != E; ++I) {
Chris Lattner39a1c042007-05-30 06:11:23 +00001197 isSafeUseOfAllocation(cast<Instruction>(*I), AI, Info);
1198 if (Info.isUnsafe) {
Nick Lewycky59136252009-09-15 07:08:25 +00001199 DEBUG(errs() << "Cannot transform: " << *AI << "\n due to user: "
1200 << **I << '\n');
Chris Lattnerf5990ed2004-11-14 04:24:28 +00001201 return 0;
Chris Lattner5e062a12003-05-30 04:15:41 +00001202 }
Chris Lattnerf5990ed2004-11-14 04:24:28 +00001203 }
Chris Lattner39a1c042007-05-30 06:11:23 +00001204
1205 // Okay, we know all the users are promotable. If the aggregate is a memcpy
1206 // source and destination, we have to be careful. In particular, the memcpy
1207 // could be moving around elements that live in structure padding of the LLVM
1208 // types, but may actually be used. In these cases, we refuse to promote the
1209 // struct.
1210 if (Info.isMemCpySrc && Info.isMemCpyDst &&
Chris Lattner56c38522009-01-07 06:34:28 +00001211 HasPadding(AI->getType()->getElementType(), *TD))
Chris Lattner39a1c042007-05-30 06:11:23 +00001212 return 0;
Duncan Sands3cb36502007-11-04 14:43:57 +00001213
Chris Lattner39a1c042007-05-30 06:11:23 +00001214 // If we require cleanup, return 1, otherwise return 3.
Devang Patel4afc90d2009-02-10 07:00:59 +00001215 return Info.needsCleanup ? 1 : 3;
Chris Lattnerf5990ed2004-11-14 04:24:28 +00001216}
1217
Devang Patel4afc90d2009-02-10 07:00:59 +00001218/// CleanupGEP - GEP is used by an Alloca, which can be prompted after the GEP
1219/// is canonicalized here.
1220void SROA::CleanupGEP(GetElementPtrInst *GEPI) {
1221 gep_type_iterator I = gep_type_begin(GEPI);
1222 ++I;
1223
Devang Patel7afe8fa2009-02-10 19:28:07 +00001224 const ArrayType *AT = dyn_cast<ArrayType>(*I);
1225 if (!AT)
1226 return;
1227
1228 uint64_t NumElements = AT->getNumElements();
1229
1230 if (isa<ConstantInt>(I.getOperand()))
1231 return;
1232
1233 if (NumElements == 1) {
Owen Anderson1d0be152009-08-13 21:58:54 +00001234 GEPI->setOperand(2,
1235 Constant::getNullValue(Type::getInt32Ty(GEPI->getContext())));
Devang Patel7afe8fa2009-02-10 19:28:07 +00001236 return;
1237 }
Devang Patel4afc90d2009-02-10 07:00:59 +00001238
Devang Patel7afe8fa2009-02-10 19:28:07 +00001239 assert(NumElements == 2 && "Unhandled case!");
1240 // All users of the GEP must be loads. At each use of the GEP, insert
1241 // two loads of the appropriate indexed GEP and select between them.
Owen Anderson333c4002009-07-09 23:48:35 +00001242 Value *IsOne = new ICmpInst(GEPI, ICmpInst::ICMP_NE, I.getOperand(),
Owen Andersona7235ea2009-07-31 20:28:14 +00001243 Constant::getNullValue(I.getOperand()->getType()),
Owen Anderson333c4002009-07-09 23:48:35 +00001244 "isone");
Devang Patel7afe8fa2009-02-10 19:28:07 +00001245 // Insert the new GEP instructions, which are properly indexed.
1246 SmallVector<Value*, 8> Indices(GEPI->op_begin()+1, GEPI->op_end());
Owen Anderson1d0be152009-08-13 21:58:54 +00001247 Indices[1] = Constant::getNullValue(Type::getInt32Ty(GEPI->getContext()));
Devang Patel7afe8fa2009-02-10 19:28:07 +00001248 Value *ZeroIdx = GetElementPtrInst::Create(GEPI->getOperand(0),
1249 Indices.begin(),
1250 Indices.end(),
1251 GEPI->getName()+".0", GEPI);
Owen Anderson1d0be152009-08-13 21:58:54 +00001252 Indices[1] = ConstantInt::get(Type::getInt32Ty(GEPI->getContext()), 1);
Devang Patel7afe8fa2009-02-10 19:28:07 +00001253 Value *OneIdx = GetElementPtrInst::Create(GEPI->getOperand(0),
1254 Indices.begin(),
1255 Indices.end(),
1256 GEPI->getName()+".1", GEPI);
1257 // Replace all loads of the variable index GEP with loads from both
1258 // indexes and a select.
1259 while (!GEPI->use_empty()) {
1260 LoadInst *LI = cast<LoadInst>(GEPI->use_back());
1261 Value *Zero = new LoadInst(ZeroIdx, LI->getName()+".0", LI);
1262 Value *One = new LoadInst(OneIdx , LI->getName()+".1", LI);
1263 Value *R = SelectInst::Create(IsOne, One, Zero, LI->getName(), LI);
1264 LI->replaceAllUsesWith(R);
1265 LI->eraseFromParent();
Devang Patel4afc90d2009-02-10 07:00:59 +00001266 }
Devang Patel7afe8fa2009-02-10 19:28:07 +00001267 GEPI->eraseFromParent();
Devang Patel4afc90d2009-02-10 07:00:59 +00001268}
1269
Devang Patel7afe8fa2009-02-10 19:28:07 +00001270
Devang Patel4afc90d2009-02-10 07:00:59 +00001271/// CleanupAllocaUsers - If SROA reported that it can promote the specified
Chris Lattnerf5990ed2004-11-14 04:24:28 +00001272/// allocation, but only if cleaned up, perform the cleanups required.
Victor Hernandez7b929da2009-10-23 21:09:37 +00001273void SROA::CleanupAllocaUsers(AllocaInst *AI) {
Chris Lattnerd878ecd2004-11-14 05:00:19 +00001274 // At this point, we know that the end result will be SROA'd and promoted, so
1275 // we can insert ugly code if required so long as sroa+mem2reg will clean it
1276 // up.
1277 for (Value::use_iterator UI = AI->use_begin(), E = AI->use_end();
1278 UI != E; ) {
Devang Patel4afc90d2009-02-10 07:00:59 +00001279 User *U = *UI++;
1280 if (GetElementPtrInst *GEPI = dyn_cast<GetElementPtrInst>(U))
1281 CleanupGEP(GEPI);
Jay Foad0906b1b2009-06-06 17:49:35 +00001282 else {
1283 Instruction *I = cast<Instruction>(U);
Devang Patel4afc90d2009-02-10 07:00:59 +00001284 SmallVector<DbgInfoIntrinsic *, 2> DbgInUses;
Zhou Shengb0c41992009-03-18 12:48:48 +00001285 if (!isa<StoreInst>(I) && OnlyUsedByDbgInfoIntrinsics(I, &DbgInUses)) {
Devang Patel4afc90d2009-02-10 07:00:59 +00001286 // Safe to remove debug info uses.
1287 while (!DbgInUses.empty()) {
1288 DbgInfoIntrinsic *DI = DbgInUses.back(); DbgInUses.pop_back();
1289 DI->eraseFromParent();
Chris Lattnerd878ecd2004-11-14 05:00:19 +00001290 }
Devang Patel4afc90d2009-02-10 07:00:59 +00001291 I->eraseFromParent();
Chris Lattnerd878ecd2004-11-14 05:00:19 +00001292 }
1293 }
1294 }
Chris Lattner5e062a12003-05-30 04:15:41 +00001295}
Chris Lattnera1888942005-12-12 07:19:13 +00001296
Chris Lattner2e0d5f82009-01-31 02:28:54 +00001297/// MergeInType - Add the 'In' type to the accumulated type (Accum) so far at
1298/// the offset specified by Offset (which is specified in bytes).
Chris Lattnerde6df882006-04-14 21:42:41 +00001299///
Chris Lattner2e0d5f82009-01-31 02:28:54 +00001300/// There are two cases we handle here:
1301/// 1) A union of vector types of the same size and potentially its elements.
Chris Lattnerd22dbdf2006-12-15 07:32:38 +00001302/// Here we turn element accesses into insert/extract element operations.
Chris Lattner2e0d5f82009-01-31 02:28:54 +00001303/// This promotes a <4 x float> with a store of float to the third element
1304/// into a <4 x float> that uses insert element.
1305/// 2) A fully general blob of memory, which we turn into some (potentially
1306/// large) integer type with extract and insert operations where the loads
1307/// and stores would mutate the memory.
Chris Lattner7809ecd2009-02-03 01:30:09 +00001308static void MergeInType(const Type *In, uint64_t Offset, const Type *&VecTy,
Owen Andersonfa5cbd62009-07-03 19:42:02 +00001309 unsigned AllocaSize, const TargetData &TD,
Owen Andersone922c022009-07-22 00:24:57 +00001310 LLVMContext &Context) {
Chris Lattner7809ecd2009-02-03 01:30:09 +00001311 // If this could be contributing to a vector, analyze it.
Owen Anderson1d0be152009-08-13 21:58:54 +00001312 if (VecTy != Type::getVoidTy(Context)) { // either null or a vector type.
Chris Lattner996d7a92009-02-02 18:02:59 +00001313
Chris Lattner7809ecd2009-02-03 01:30:09 +00001314 // If the In type is a vector that is the same size as the alloca, see if it
1315 // matches the existing VecTy.
1316 if (const VectorType *VInTy = dyn_cast<VectorType>(In)) {
1317 if (VInTy->getBitWidth()/8 == AllocaSize && Offset == 0) {
1318 // If we're storing/loading a vector of the right size, allow it as a
1319 // vector. If this the first vector we see, remember the type so that
1320 // we know the element size.
1321 if (VecTy == 0)
1322 VecTy = VInTy;
1323 return;
1324 }
Chris Lattnercf0fe8d2009-10-05 05:54:46 +00001325 } else if (In->isFloatTy() || In->isDoubleTy() ||
Chris Lattner7809ecd2009-02-03 01:30:09 +00001326 (isa<IntegerType>(In) && In->getPrimitiveSizeInBits() >= 8 &&
1327 isPowerOf2_32(In->getPrimitiveSizeInBits()))) {
1328 // If we're accessing something that could be an element of a vector, see
1329 // if the implied vector agrees with what we already have and if Offset is
1330 // compatible with it.
1331 unsigned EltSize = In->getPrimitiveSizeInBits()/8;
1332 if (Offset % EltSize == 0 &&
1333 AllocaSize % EltSize == 0 &&
1334 (VecTy == 0 ||
1335 cast<VectorType>(VecTy)->getElementType()
1336 ->getPrimitiveSizeInBits()/8 == EltSize)) {
1337 if (VecTy == 0)
Owen Andersondebcb012009-07-29 22:17:13 +00001338 VecTy = VectorType::get(In, AllocaSize/EltSize);
Chris Lattner7809ecd2009-02-03 01:30:09 +00001339 return;
1340 }
Chris Lattner2e0d5f82009-01-31 02:28:54 +00001341 }
1342 }
1343
Chris Lattner7809ecd2009-02-03 01:30:09 +00001344 // Otherwise, we have a case that we can't handle with an optimized vector
1345 // form. We can still turn this into a large integer.
Owen Anderson1d0be152009-08-13 21:58:54 +00001346 VecTy = Type::getVoidTy(Context);
Chris Lattnera1888942005-12-12 07:19:13 +00001347}
1348
Chris Lattner2e0d5f82009-01-31 02:28:54 +00001349/// CanConvertToScalar - V is a pointer. If we can convert the pointee and all
Chris Lattner7809ecd2009-02-03 01:30:09 +00001350/// its accesses to use a to single vector type, return true, and set VecTy to
1351/// the new type. If we could convert the alloca into a single promotable
1352/// integer, return true but set VecTy to VoidTy. Further, if the use is not a
1353/// completely trivial use that mem2reg could promote, set IsNotTrivial. Offset
1354/// is the current offset from the base of the alloca being analyzed.
Chris Lattnera1888942005-12-12 07:19:13 +00001355///
Chris Lattner1a3257b2009-02-03 18:15:05 +00001356/// If we see at least one access to the value that is as a vector type, set the
1357/// SawVec flag.
1358///
1359bool SROA::CanConvertToScalar(Value *V, bool &IsNotTrivial, const Type *&VecTy,
1360 bool &SawVec, uint64_t Offset,
Chris Lattner7809ecd2009-02-03 01:30:09 +00001361 unsigned AllocaSize) {
Chris Lattnera1888942005-12-12 07:19:13 +00001362 for (Value::use_iterator UI = V->use_begin(), E = V->use_end(); UI!=E; ++UI) {
1363 Instruction *User = cast<Instruction>(*UI);
1364
1365 if (LoadInst *LI = dyn_cast<LoadInst>(User)) {
Chris Lattner2e0d5f82009-01-31 02:28:54 +00001366 // Don't break volatile loads.
Chris Lattner6e733d32009-01-28 20:16:43 +00001367 if (LI->isVolatile())
Chris Lattner2e0d5f82009-01-31 02:28:54 +00001368 return false;
Owen Andersone922c022009-07-22 00:24:57 +00001369 MergeInType(LI->getType(), Offset, VecTy,
1370 AllocaSize, *TD, V->getContext());
Chris Lattner1a3257b2009-02-03 18:15:05 +00001371 SawVec |= isa<VectorType>(LI->getType());
Chris Lattnercf321862009-01-07 06:39:58 +00001372 continue;
1373 }
1374
1375 if (StoreInst *SI = dyn_cast<StoreInst>(User)) {
Reid Spencer24d6da52007-01-21 00:29:26 +00001376 // Storing the pointer, not into the value?
Chris Lattner6e733d32009-01-28 20:16:43 +00001377 if (SI->getOperand(0) == V || SI->isVolatile()) return 0;
Owen Andersonfa5cbd62009-07-03 19:42:02 +00001378 MergeInType(SI->getOperand(0)->getType(), Offset,
Owen Andersone922c022009-07-22 00:24:57 +00001379 VecTy, AllocaSize, *TD, V->getContext());
Chris Lattner1a3257b2009-02-03 18:15:05 +00001380 SawVec |= isa<VectorType>(SI->getOperand(0)->getType());
Chris Lattnercf321862009-01-07 06:39:58 +00001381 continue;
1382 }
Chris Lattner2e0d5f82009-01-31 02:28:54 +00001383
1384 if (BitCastInst *BCI = dyn_cast<BitCastInst>(User)) {
Chris Lattner1a3257b2009-02-03 18:15:05 +00001385 if (!CanConvertToScalar(BCI, IsNotTrivial, VecTy, SawVec, Offset,
1386 AllocaSize))
Chris Lattner2e0d5f82009-01-31 02:28:54 +00001387 return false;
Chris Lattnera1888942005-12-12 07:19:13 +00001388 IsNotTrivial = true;
Chris Lattnercf321862009-01-07 06:39:58 +00001389 continue;
1390 }
1391
1392 if (GetElementPtrInst *GEP = dyn_cast<GetElementPtrInst>(User)) {
Chris Lattner2e0d5f82009-01-31 02:28:54 +00001393 // If this is a GEP with a variable indices, we can't handle it.
1394 if (!GEP->hasAllConstantIndices())
1395 return false;
Chris Lattnercf321862009-01-07 06:39:58 +00001396
Chris Lattner2e0d5f82009-01-31 02:28:54 +00001397 // Compute the offset that this GEP adds to the pointer.
1398 SmallVector<Value*, 8> Indices(GEP->op_begin()+1, GEP->op_end());
1399 uint64_t GEPOffset = TD->getIndexedOffset(GEP->getOperand(0)->getType(),
1400 &Indices[0], Indices.size());
1401 // See if all uses can be converted.
Chris Lattner1a3257b2009-02-03 18:15:05 +00001402 if (!CanConvertToScalar(GEP, IsNotTrivial, VecTy, SawVec,Offset+GEPOffset,
Chris Lattner7809ecd2009-02-03 01:30:09 +00001403 AllocaSize))
Chris Lattner2e0d5f82009-01-31 02:28:54 +00001404 return false;
1405 IsNotTrivial = true;
1406 continue;
Chris Lattnera1888942005-12-12 07:19:13 +00001407 }
Chris Lattner3ce5e882009-03-08 03:37:16 +00001408
Chris Lattner3d730f72009-02-03 02:01:43 +00001409 // If this is a constant sized memset of a constant value (e.g. 0) we can
1410 // handle it.
Chris Lattner3ce5e882009-03-08 03:37:16 +00001411 if (MemSetInst *MSI = dyn_cast<MemSetInst>(User)) {
1412 // Store of constant value and constant size.
1413 if (isa<ConstantInt>(MSI->getValue()) &&
1414 isa<ConstantInt>(MSI->getLength())) {
Chris Lattner3ce5e882009-03-08 03:37:16 +00001415 IsNotTrivial = true;
1416 continue;
1417 }
Chris Lattner3d730f72009-02-03 02:01:43 +00001418 }
Chris Lattnerc5704872009-03-08 04:04:21 +00001419
1420 // If this is a memcpy or memmove into or out of the whole allocation, we
1421 // can handle it like a load or store of the scalar type.
1422 if (MemTransferInst *MTI = dyn_cast<MemTransferInst>(User)) {
1423 if (ConstantInt *Len = dyn_cast<ConstantInt>(MTI->getLength()))
1424 if (Len->getZExtValue() == AllocaSize && Offset == 0) {
1425 IsNotTrivial = true;
1426 continue;
1427 }
1428 }
Chris Lattnerdfe964c2009-03-08 03:59:00 +00001429
Devang Patel00e389c2009-03-06 07:03:54 +00001430 // Ignore dbg intrinsic.
1431 if (isa<DbgInfoIntrinsic>(User))
1432 continue;
1433
Chris Lattner2e0d5f82009-01-31 02:28:54 +00001434 // Otherwise, we cannot handle this!
1435 return false;
Chris Lattnera1888942005-12-12 07:19:13 +00001436 }
1437
Chris Lattner2e0d5f82009-01-31 02:28:54 +00001438 return true;
Chris Lattnera1888942005-12-12 07:19:13 +00001439}
1440
Chris Lattnera1888942005-12-12 07:19:13 +00001441
1442/// ConvertUsesToScalar - Convert all of the users of Ptr to use the new alloca
Chris Lattnerde6df882006-04-14 21:42:41 +00001443/// directly. This happens when we are converting an "integer union" to a
1444/// single integer scalar, or when we are converting a "vector union" to a
1445/// vector with insert/extractelement instructions.
1446///
1447/// Offset is an offset from the original alloca, in bits that need to be
1448/// shifted to the right. By the end of this, there should be no uses of Ptr.
Chris Lattner2e0d5f82009-01-31 02:28:54 +00001449void SROA::ConvertUsesToScalar(Value *Ptr, AllocaInst *NewAI, uint64_t Offset) {
Chris Lattnera1888942005-12-12 07:19:13 +00001450 while (!Ptr->use_empty()) {
1451 Instruction *User = cast<Instruction>(Ptr->use_back());
Duncan Sands4b3dfbd2009-02-02 10:06:20 +00001452
Chris Lattnercf321862009-01-07 06:39:58 +00001453 if (BitCastInst *CI = dyn_cast<BitCastInst>(User)) {
Chris Lattnerb10e0da2008-01-30 00:39:15 +00001454 ConvertUsesToScalar(CI, NewAI, Offset);
Chris Lattnera1888942005-12-12 07:19:13 +00001455 CI->eraseFromParent();
Chris Lattnercf321862009-01-07 06:39:58 +00001456 continue;
1457 }
Duncan Sands4b3dfbd2009-02-02 10:06:20 +00001458
Chris Lattnercf321862009-01-07 06:39:58 +00001459 if (GetElementPtrInst *GEP = dyn_cast<GetElementPtrInst>(User)) {
Chris Lattner2e0d5f82009-01-31 02:28:54 +00001460 // Compute the offset that this GEP adds to the pointer.
1461 SmallVector<Value*, 8> Indices(GEP->op_begin()+1, GEP->op_end());
1462 uint64_t GEPOffset = TD->getIndexedOffset(GEP->getOperand(0)->getType(),
1463 &Indices[0], Indices.size());
1464 ConvertUsesToScalar(GEP, NewAI, Offset+GEPOffset*8);
Chris Lattnera1888942005-12-12 07:19:13 +00001465 GEP->eraseFromParent();
Chris Lattnercf321862009-01-07 06:39:58 +00001466 continue;
Chris Lattnera1888942005-12-12 07:19:13 +00001467 }
Chris Lattner3d730f72009-02-03 02:01:43 +00001468
Chris Lattner9bc67da2009-02-03 19:45:44 +00001469 IRBuilder<> Builder(User->getParent(), User);
1470
1471 if (LoadInst *LI = dyn_cast<LoadInst>(User)) {
Chris Lattner6e011152009-02-03 21:01:03 +00001472 // The load is a bit extract from NewAI shifted right by Offset bits.
1473 Value *LoadedVal = Builder.CreateLoad(NewAI, "tmp");
1474 Value *NewLoadVal
1475 = ConvertScalar_ExtractValue(LoadedVal, LI->getType(), Offset, Builder);
1476 LI->replaceAllUsesWith(NewLoadVal);
Chris Lattner9bc67da2009-02-03 19:45:44 +00001477 LI->eraseFromParent();
1478 continue;
1479 }
1480
1481 if (StoreInst *SI = dyn_cast<StoreInst>(User)) {
1482 assert(SI->getOperand(0) != Ptr && "Consistency error!");
Benjamin Kramer4aac07e2009-11-29 20:29:30 +00001483 Value *Old = Builder.CreateLoad(NewAI, NewAI->getName() + ".in");
Chris Lattner9bc67da2009-02-03 19:45:44 +00001484 Value *New = ConvertScalar_InsertValue(SI->getOperand(0), Old, Offset,
1485 Builder);
1486 Builder.CreateStore(New, NewAI);
1487 SI->eraseFromParent();
1488 continue;
1489 }
1490
Chris Lattner3d730f72009-02-03 02:01:43 +00001491 // If this is a constant sized memset of a constant value (e.g. 0) we can
1492 // transform it into a store of the expanded constant value.
1493 if (MemSetInst *MSI = dyn_cast<MemSetInst>(User)) {
1494 assert(MSI->getRawDest() == Ptr && "Consistency error!");
1495 unsigned NumBytes = cast<ConstantInt>(MSI->getLength())->getZExtValue();
Chris Lattner33e24ad2009-04-21 16:52:12 +00001496 if (NumBytes != 0) {
1497 unsigned Val = cast<ConstantInt>(MSI->getValue())->getZExtValue();
1498
1499 // Compute the value replicated the right number of times.
1500 APInt APVal(NumBytes*8, Val);
Chris Lattner3d730f72009-02-03 02:01:43 +00001501
Chris Lattner33e24ad2009-04-21 16:52:12 +00001502 // Splat the value if non-zero.
1503 if (Val)
1504 for (unsigned i = 1; i != NumBytes; ++i)
1505 APVal |= APVal << 8;
Benjamin Kramer4aac07e2009-11-29 20:29:30 +00001506
1507 Value *Old = Builder.CreateLoad(NewAI, NewAI->getName() + ".in");
Owen Andersone922c022009-07-22 00:24:57 +00001508 Value *New = ConvertScalar_InsertValue(
Owen Andersoneed707b2009-07-24 23:12:02 +00001509 ConstantInt::get(User->getContext(), APVal),
Owen Andersonfa5cbd62009-07-03 19:42:02 +00001510 Old, Offset, Builder);
Chris Lattner33e24ad2009-04-21 16:52:12 +00001511 Builder.CreateStore(New, NewAI);
1512 }
Chris Lattner3d730f72009-02-03 02:01:43 +00001513 MSI->eraseFromParent();
1514 continue;
1515 }
Chris Lattnerc5704872009-03-08 04:04:21 +00001516
1517 // If this is a memcpy or memmove into or out of the whole allocation, we
1518 // can handle it like a load or store of the scalar type.
1519 if (MemTransferInst *MTI = dyn_cast<MemTransferInst>(User)) {
1520 assert(Offset == 0 && "must be store to start of alloca");
1521
1522 // If the source and destination are both to the same alloca, then this is
1523 // a noop copy-to-self, just delete it. Otherwise, emit a load and store
1524 // as appropriate.
1525 AllocaInst *OrigAI = cast<AllocaInst>(Ptr->getUnderlyingObject());
1526
1527 if (MTI->getSource()->getUnderlyingObject() != OrigAI) {
1528 // Dest must be OrigAI, change this to be a load from the original
1529 // pointer (bitcasted), then a store to our new alloca.
1530 assert(MTI->getRawDest() == Ptr && "Neither use is of pointer?");
1531 Value *SrcPtr = MTI->getSource();
1532 SrcPtr = Builder.CreateBitCast(SrcPtr, NewAI->getType());
1533
1534 LoadInst *SrcVal = Builder.CreateLoad(SrcPtr, "srcval");
1535 SrcVal->setAlignment(MTI->getAlignment());
1536 Builder.CreateStore(SrcVal, NewAI);
1537 } else if (MTI->getDest()->getUnderlyingObject() != OrigAI) {
1538 // Src must be OrigAI, change this to be a load from NewAI then a store
1539 // through the original dest pointer (bitcasted).
1540 assert(MTI->getRawSource() == Ptr && "Neither use is of pointer?");
1541 LoadInst *SrcVal = Builder.CreateLoad(NewAI, "srcval");
1542
1543 Value *DstPtr = Builder.CreateBitCast(MTI->getDest(), NewAI->getType());
1544 StoreInst *NewStore = Builder.CreateStore(SrcVal, DstPtr);
1545 NewStore->setAlignment(MTI->getAlignment());
1546 } else {
1547 // Noop transfer. Src == Dst
1548 }
1549
1550
1551 MTI->eraseFromParent();
1552 continue;
1553 }
Chris Lattnerdfe964c2009-03-08 03:59:00 +00001554
Devang Patel00e389c2009-03-06 07:03:54 +00001555 // If user is a dbg info intrinsic then it is safe to remove it.
1556 if (isa<DbgInfoIntrinsic>(User)) {
1557 User->eraseFromParent();
1558 continue;
1559 }
1560
Torok Edwinc23197a2009-07-14 16:55:14 +00001561 llvm_unreachable("Unsupported operation!");
Chris Lattnera1888942005-12-12 07:19:13 +00001562 }
1563}
Chris Lattner79b3bd32007-04-25 06:40:51 +00001564
Chris Lattner6e011152009-02-03 21:01:03 +00001565/// ConvertScalar_ExtractValue - Extract a value of type ToType from an integer
1566/// or vector value FromVal, extracting the bits from the offset specified by
1567/// Offset. This returns the value, which is of type ToType.
1568///
1569/// This happens when we are converting an "integer union" to a single
Duncan Sands4b3dfbd2009-02-02 10:06:20 +00001570/// integer scalar, or when we are converting a "vector union" to a vector with
1571/// insert/extractelement instructions.
Chris Lattner800de312008-02-29 07:03:13 +00001572///
Duncan Sands4b3dfbd2009-02-02 10:06:20 +00001573/// Offset is an offset from the original alloca, in bits that need to be
Chris Lattner6e011152009-02-03 21:01:03 +00001574/// shifted to the right.
1575Value *SROA::ConvertScalar_ExtractValue(Value *FromVal, const Type *ToType,
1576 uint64_t Offset, IRBuilder<> &Builder) {
Chris Lattner2e0d5f82009-01-31 02:28:54 +00001577 // If the load is of the whole new alloca, no conversion is needed.
Chris Lattner6e011152009-02-03 21:01:03 +00001578 if (FromVal->getType() == ToType && Offset == 0)
1579 return FromVal;
Chris Lattner9d34c4d2008-02-29 07:12:06 +00001580
Chris Lattner2e0d5f82009-01-31 02:28:54 +00001581 // If the result alloca is a vector type, this is either an element
1582 // access or a bitcast to another vector type of the same size.
Chris Lattner6e011152009-02-03 21:01:03 +00001583 if (const VectorType *VTy = dyn_cast<VectorType>(FromVal->getType())) {
1584 if (isa<VectorType>(ToType))
1585 return Builder.CreateBitCast(FromVal, ToType, "tmp");
Chris Lattner9d34c4d2008-02-29 07:12:06 +00001586
1587 // Otherwise it must be an element access.
Chris Lattner9d34c4d2008-02-29 07:12:06 +00001588 unsigned Elt = 0;
1589 if (Offset) {
Duncan Sands777d2302009-05-09 07:06:46 +00001590 unsigned EltSize = TD->getTypeAllocSizeInBits(VTy->getElementType());
Chris Lattner9d34c4d2008-02-29 07:12:06 +00001591 Elt = Offset/EltSize;
Chris Lattner2e0d5f82009-01-31 02:28:54 +00001592 assert(EltSize*Elt == Offset && "Invalid modulus in validity checking");
Chris Lattner800de312008-02-29 07:03:13 +00001593 }
Chris Lattner2e0d5f82009-01-31 02:28:54 +00001594 // Return the element extracted out of it.
Owen Anderson1d0be152009-08-13 21:58:54 +00001595 Value *V = Builder.CreateExtractElement(FromVal, ConstantInt::get(
1596 Type::getInt32Ty(FromVal->getContext()), Elt), "tmp");
Chris Lattner6e011152009-02-03 21:01:03 +00001597 if (V->getType() != ToType)
1598 V = Builder.CreateBitCast(V, ToType, "tmp");
Chris Lattner7809ecd2009-02-03 01:30:09 +00001599 return V;
Chris Lattner9d34c4d2008-02-29 07:12:06 +00001600 }
Chris Lattner1aa70562009-02-03 21:08:45 +00001601
1602 // If ToType is a first class aggregate, extract out each of the pieces and
1603 // use insertvalue's to form the FCA.
1604 if (const StructType *ST = dyn_cast<StructType>(ToType)) {
1605 const StructLayout &Layout = *TD->getStructLayout(ST);
Owen Anderson9e9a0d52009-07-30 23:03:37 +00001606 Value *Res = UndefValue::get(ST);
Chris Lattner1aa70562009-02-03 21:08:45 +00001607 for (unsigned i = 0, e = ST->getNumElements(); i != e; ++i) {
1608 Value *Elt = ConvertScalar_ExtractValue(FromVal, ST->getElementType(i),
Chris Lattnere991ced2009-02-06 04:34:07 +00001609 Offset+Layout.getElementOffsetInBits(i),
Chris Lattner1aa70562009-02-03 21:08:45 +00001610 Builder);
1611 Res = Builder.CreateInsertValue(Res, Elt, i, "tmp");
1612 }
1613 return Res;
1614 }
1615
1616 if (const ArrayType *AT = dyn_cast<ArrayType>(ToType)) {
Duncan Sands777d2302009-05-09 07:06:46 +00001617 uint64_t EltSize = TD->getTypeAllocSizeInBits(AT->getElementType());
Owen Anderson9e9a0d52009-07-30 23:03:37 +00001618 Value *Res = UndefValue::get(AT);
Chris Lattner1aa70562009-02-03 21:08:45 +00001619 for (unsigned i = 0, e = AT->getNumElements(); i != e; ++i) {
1620 Value *Elt = ConvertScalar_ExtractValue(FromVal, AT->getElementType(),
1621 Offset+i*EltSize, Builder);
1622 Res = Builder.CreateInsertValue(Res, Elt, i, "tmp");
1623 }
1624 return Res;
1625 }
Duncan Sands4b3dfbd2009-02-02 10:06:20 +00001626
Chris Lattner2e0d5f82009-01-31 02:28:54 +00001627 // Otherwise, this must be a union that was converted to an integer value.
Chris Lattner6e011152009-02-03 21:01:03 +00001628 const IntegerType *NTy = cast<IntegerType>(FromVal->getType());
Duncan Sands4b3dfbd2009-02-02 10:06:20 +00001629
Chris Lattner9d34c4d2008-02-29 07:12:06 +00001630 // If this is a big-endian system and the load is narrower than the
1631 // full alloca type, we need to do a shift to get the right bits.
1632 int ShAmt = 0;
Chris Lattner56c38522009-01-07 06:34:28 +00001633 if (TD->isBigEndian()) {
Chris Lattner9d34c4d2008-02-29 07:12:06 +00001634 // On big-endian machines, the lowest bit is stored at the bit offset
1635 // from the pointer given by getTypeStoreSizeInBits. This matters for
1636 // integers with a bitwidth that is not a multiple of 8.
Chris Lattner56c38522009-01-07 06:34:28 +00001637 ShAmt = TD->getTypeStoreSizeInBits(NTy) -
Chris Lattner6e011152009-02-03 21:01:03 +00001638 TD->getTypeStoreSizeInBits(ToType) - Offset;
Chris Lattner9d34c4d2008-02-29 07:12:06 +00001639 } else {
1640 ShAmt = Offset;
1641 }
Duncan Sands4b3dfbd2009-02-02 10:06:20 +00001642
Chris Lattner9d34c4d2008-02-29 07:12:06 +00001643 // Note: we support negative bitwidths (with shl) which are not defined.
1644 // We do this to support (f.e.) loads off the end of a structure where
1645 // only some bits are used.
1646 if (ShAmt > 0 && (unsigned)ShAmt < NTy->getBitWidth())
Owen Andersonfa5cbd62009-07-03 19:42:02 +00001647 FromVal = Builder.CreateLShr(FromVal,
Owen Andersoneed707b2009-07-24 23:12:02 +00001648 ConstantInt::get(FromVal->getType(),
Chris Lattner1aa70562009-02-03 21:08:45 +00001649 ShAmt), "tmp");
Chris Lattner9d34c4d2008-02-29 07:12:06 +00001650 else if (ShAmt < 0 && (unsigned)-ShAmt < NTy->getBitWidth())
Owen Andersonfa5cbd62009-07-03 19:42:02 +00001651 FromVal = Builder.CreateShl(FromVal,
Owen Andersoneed707b2009-07-24 23:12:02 +00001652 ConstantInt::get(FromVal->getType(),
Chris Lattner1aa70562009-02-03 21:08:45 +00001653 -ShAmt), "tmp");
Duncan Sands4b3dfbd2009-02-02 10:06:20 +00001654
Chris Lattner9d34c4d2008-02-29 07:12:06 +00001655 // Finally, unconditionally truncate the integer to the right width.
Chris Lattner6e011152009-02-03 21:01:03 +00001656 unsigned LIBitWidth = TD->getTypeSizeInBits(ToType);
Chris Lattner9d34c4d2008-02-29 07:12:06 +00001657 if (LIBitWidth < NTy->getBitWidth())
Owen Andersonfa5cbd62009-07-03 19:42:02 +00001658 FromVal =
Owen Anderson1d0be152009-08-13 21:58:54 +00001659 Builder.CreateTrunc(FromVal, IntegerType::get(FromVal->getContext(),
1660 LIBitWidth), "tmp");
Chris Lattner55a683d2009-02-03 07:08:57 +00001661 else if (LIBitWidth > NTy->getBitWidth())
Owen Andersonfa5cbd62009-07-03 19:42:02 +00001662 FromVal =
Owen Anderson1d0be152009-08-13 21:58:54 +00001663 Builder.CreateZExt(FromVal, IntegerType::get(FromVal->getContext(),
1664 LIBitWidth), "tmp");
Duncan Sands4b3dfbd2009-02-02 10:06:20 +00001665
Chris Lattner9d34c4d2008-02-29 07:12:06 +00001666 // If the result is an integer, this is a trunc or bitcast.
Chris Lattner6e011152009-02-03 21:01:03 +00001667 if (isa<IntegerType>(ToType)) {
Chris Lattner9d34c4d2008-02-29 07:12:06 +00001668 // Should be done.
Chris Lattner6e011152009-02-03 21:01:03 +00001669 } else if (ToType->isFloatingPoint() || isa<VectorType>(ToType)) {
Chris Lattner9d34c4d2008-02-29 07:12:06 +00001670 // Just do a bitcast, we know the sizes match up.
Chris Lattner6e011152009-02-03 21:01:03 +00001671 FromVal = Builder.CreateBitCast(FromVal, ToType, "tmp");
Chris Lattner800de312008-02-29 07:03:13 +00001672 } else {
Chris Lattner9d34c4d2008-02-29 07:12:06 +00001673 // Otherwise must be a pointer.
Chris Lattner6e011152009-02-03 21:01:03 +00001674 FromVal = Builder.CreateIntToPtr(FromVal, ToType, "tmp");
Chris Lattner800de312008-02-29 07:03:13 +00001675 }
Chris Lattner6e011152009-02-03 21:01:03 +00001676 assert(FromVal->getType() == ToType && "Didn't convert right?");
1677 return FromVal;
Chris Lattner800de312008-02-29 07:03:13 +00001678}
1679
1680
Chris Lattner9b872db2009-02-03 19:30:11 +00001681/// ConvertScalar_InsertValue - Insert the value "SV" into the existing integer
1682/// or vector value "Old" at the offset specified by Offset.
1683///
1684/// This happens when we are converting an "integer union" to a
Chris Lattner800de312008-02-29 07:03:13 +00001685/// single integer scalar, or when we are converting a "vector union" to a
1686/// vector with insert/extractelement instructions.
1687///
1688/// Offset is an offset from the original alloca, in bits that need to be
Chris Lattner9b872db2009-02-03 19:30:11 +00001689/// shifted to the right.
1690Value *SROA::ConvertScalar_InsertValue(Value *SV, Value *Old,
Chris Lattner65a65022009-02-03 19:41:50 +00001691 uint64_t Offset, IRBuilder<> &Builder) {
Duncan Sands4b3dfbd2009-02-02 10:06:20 +00001692
Chris Lattner800de312008-02-29 07:03:13 +00001693 // Convert the stored type to the actual type, shift it left to insert
1694 // then 'or' into place.
Chris Lattner9b872db2009-02-03 19:30:11 +00001695 const Type *AllocaType = Old->getType();
Owen Andersone922c022009-07-22 00:24:57 +00001696 LLVMContext &Context = Old->getContext();
Duncan Sands4b3dfbd2009-02-02 10:06:20 +00001697
Chris Lattner2e0d5f82009-01-31 02:28:54 +00001698 if (const VectorType *VTy = dyn_cast<VectorType>(AllocaType)) {
Duncan Sands777d2302009-05-09 07:06:46 +00001699 uint64_t VecSize = TD->getTypeAllocSizeInBits(VTy);
1700 uint64_t ValSize = TD->getTypeAllocSizeInBits(SV->getType());
Chris Lattner29e64172009-03-08 04:17:04 +00001701
1702 // Changing the whole vector with memset or with an access of a different
1703 // vector type?
1704 if (ValSize == VecSize)
1705 return Builder.CreateBitCast(SV, AllocaType, "tmp");
1706
Duncan Sands777d2302009-05-09 07:06:46 +00001707 uint64_t EltSize = TD->getTypeAllocSizeInBits(VTy->getElementType());
Chris Lattner29e64172009-03-08 04:17:04 +00001708
1709 // Must be an element insertion.
1710 unsigned Elt = Offset/EltSize;
1711
1712 if (SV->getType() != VTy->getElementType())
1713 SV = Builder.CreateBitCast(SV, VTy->getElementType(), "tmp");
1714
1715 SV = Builder.CreateInsertElement(Old, SV,
Owen Anderson1d0be152009-08-13 21:58:54 +00001716 ConstantInt::get(Type::getInt32Ty(SV->getContext()), Elt),
Chris Lattner29e64172009-03-08 04:17:04 +00001717 "tmp");
Chris Lattner2e0d5f82009-01-31 02:28:54 +00001718 return SV;
1719 }
Chris Lattner9b872db2009-02-03 19:30:11 +00001720
1721 // If SV is a first-class aggregate value, insert each value recursively.
1722 if (const StructType *ST = dyn_cast<StructType>(SV->getType())) {
1723 const StructLayout &Layout = *TD->getStructLayout(ST);
1724 for (unsigned i = 0, e = ST->getNumElements(); i != e; ++i) {
Chris Lattner65a65022009-02-03 19:41:50 +00001725 Value *Elt = Builder.CreateExtractValue(SV, i, "tmp");
Chris Lattner9b872db2009-02-03 19:30:11 +00001726 Old = ConvertScalar_InsertValue(Elt, Old,
Chris Lattnere991ced2009-02-06 04:34:07 +00001727 Offset+Layout.getElementOffsetInBits(i),
Chris Lattner65a65022009-02-03 19:41:50 +00001728 Builder);
Chris Lattner9b872db2009-02-03 19:30:11 +00001729 }
1730 return Old;
1731 }
1732
1733 if (const ArrayType *AT = dyn_cast<ArrayType>(SV->getType())) {
Duncan Sands777d2302009-05-09 07:06:46 +00001734 uint64_t EltSize = TD->getTypeAllocSizeInBits(AT->getElementType());
Chris Lattner9b872db2009-02-03 19:30:11 +00001735 for (unsigned i = 0, e = AT->getNumElements(); i != e; ++i) {
Chris Lattner65a65022009-02-03 19:41:50 +00001736 Value *Elt = Builder.CreateExtractValue(SV, i, "tmp");
1737 Old = ConvertScalar_InsertValue(Elt, Old, Offset+i*EltSize, Builder);
Chris Lattner9b872db2009-02-03 19:30:11 +00001738 }
1739 return Old;
1740 }
Duncan Sands4b3dfbd2009-02-02 10:06:20 +00001741
Chris Lattner2e0d5f82009-01-31 02:28:54 +00001742 // If SV is a float, convert it to the appropriate integer type.
Chris Lattner9b872db2009-02-03 19:30:11 +00001743 // If it is a pointer, do the same.
Chris Lattner2e0d5f82009-01-31 02:28:54 +00001744 unsigned SrcWidth = TD->getTypeSizeInBits(SV->getType());
1745 unsigned DestWidth = TD->getTypeSizeInBits(AllocaType);
1746 unsigned SrcStoreWidth = TD->getTypeStoreSizeInBits(SV->getType());
1747 unsigned DestStoreWidth = TD->getTypeStoreSizeInBits(AllocaType);
1748 if (SV->getType()->isFloatingPoint() || isa<VectorType>(SV->getType()))
Owen Anderson1d0be152009-08-13 21:58:54 +00001749 SV = Builder.CreateBitCast(SV,
1750 IntegerType::get(SV->getContext(),SrcWidth), "tmp");
Chris Lattner2e0d5f82009-01-31 02:28:54 +00001751 else if (isa<PointerType>(SV->getType()))
Owen Anderson1d0be152009-08-13 21:58:54 +00001752 SV = Builder.CreatePtrToInt(SV, TD->getIntPtrType(SV->getContext()), "tmp");
Duncan Sands4b3dfbd2009-02-02 10:06:20 +00001753
Chris Lattner7809ecd2009-02-03 01:30:09 +00001754 // Zero extend or truncate the value if needed.
1755 if (SV->getType() != AllocaType) {
1756 if (SV->getType()->getPrimitiveSizeInBits() <
1757 AllocaType->getPrimitiveSizeInBits())
Chris Lattner65a65022009-02-03 19:41:50 +00001758 SV = Builder.CreateZExt(SV, AllocaType, "tmp");
Chris Lattner7809ecd2009-02-03 01:30:09 +00001759 else {
1760 // Truncation may be needed if storing more than the alloca can hold
1761 // (undefined behavior).
Chris Lattner65a65022009-02-03 19:41:50 +00001762 SV = Builder.CreateTrunc(SV, AllocaType, "tmp");
Chris Lattner7809ecd2009-02-03 01:30:09 +00001763 SrcWidth = DestWidth;
1764 SrcStoreWidth = DestStoreWidth;
1765 }
1766 }
Duncan Sands4b3dfbd2009-02-02 10:06:20 +00001767
Chris Lattner2e0d5f82009-01-31 02:28:54 +00001768 // If this is a big-endian system and the store is narrower than the
1769 // full alloca type, we need to do a shift to get the right bits.
1770 int ShAmt = 0;
1771 if (TD->isBigEndian()) {
1772 // On big-endian machines, the lowest bit is stored at the bit offset
1773 // from the pointer given by getTypeStoreSizeInBits. This matters for
1774 // integers with a bitwidth that is not a multiple of 8.
1775 ShAmt = DestStoreWidth - SrcStoreWidth - Offset;
Chris Lattner800de312008-02-29 07:03:13 +00001776 } else {
Chris Lattner2e0d5f82009-01-31 02:28:54 +00001777 ShAmt = Offset;
1778 }
Duncan Sands4b3dfbd2009-02-02 10:06:20 +00001779
Chris Lattner2e0d5f82009-01-31 02:28:54 +00001780 // Note: we support negative bitwidths (with shr) which are not defined.
1781 // We do this to support (f.e.) stores off the end of a structure where
1782 // only some bits in the structure are set.
1783 APInt Mask(APInt::getLowBitsSet(DestWidth, SrcWidth));
1784 if (ShAmt > 0 && (unsigned)ShAmt < DestWidth) {
Owen Andersoneed707b2009-07-24 23:12:02 +00001785 SV = Builder.CreateShl(SV, ConstantInt::get(SV->getType(),
Owen Andersonfa5cbd62009-07-03 19:42:02 +00001786 ShAmt), "tmp");
Chris Lattner2e0d5f82009-01-31 02:28:54 +00001787 Mask <<= ShAmt;
1788 } else if (ShAmt < 0 && (unsigned)-ShAmt < DestWidth) {
Owen Andersoneed707b2009-07-24 23:12:02 +00001789 SV = Builder.CreateLShr(SV, ConstantInt::get(SV->getType(),
Owen Andersonfa5cbd62009-07-03 19:42:02 +00001790 -ShAmt), "tmp");
Duncan Sands0e7c46b2009-02-02 09:53:14 +00001791 Mask = Mask.lshr(-ShAmt);
Chris Lattner2e0d5f82009-01-31 02:28:54 +00001792 }
Duncan Sands4b3dfbd2009-02-02 10:06:20 +00001793
Chris Lattner2e0d5f82009-01-31 02:28:54 +00001794 // Mask out the bits we are about to insert from the old value, and or
1795 // in the new bits.
1796 if (SrcWidth != DestWidth) {
1797 assert(DestWidth > SrcWidth);
Owen Andersoneed707b2009-07-24 23:12:02 +00001798 Old = Builder.CreateAnd(Old, ConstantInt::get(Context, ~Mask), "mask");
Chris Lattner65a65022009-02-03 19:41:50 +00001799 SV = Builder.CreateOr(Old, SV, "ins");
Chris Lattner800de312008-02-29 07:03:13 +00001800 }
1801 return SV;
1802}
1803
1804
Chris Lattner79b3bd32007-04-25 06:40:51 +00001805
1806/// PointsToConstantGlobal - Return true if V (possibly indirectly) points to
1807/// some part of a constant global variable. This intentionally only accepts
1808/// constant expressions because we don't can't rewrite arbitrary instructions.
1809static bool PointsToConstantGlobal(Value *V) {
1810 if (GlobalVariable *GV = dyn_cast<GlobalVariable>(V))
1811 return GV->isConstant();
1812 if (ConstantExpr *CE = dyn_cast<ConstantExpr>(V))
1813 if (CE->getOpcode() == Instruction::BitCast ||
1814 CE->getOpcode() == Instruction::GetElementPtr)
1815 return PointsToConstantGlobal(CE->getOperand(0));
1816 return false;
1817}
1818
1819/// isOnlyCopiedFromConstantGlobal - Recursively walk the uses of a (derived)
1820/// pointer to an alloca. Ignore any reads of the pointer, return false if we
1821/// see any stores or other unknown uses. If we see pointer arithmetic, keep
1822/// track of whether it moves the pointer (with isOffset) but otherwise traverse
1823/// the uses. If we see a memcpy/memmove that targets an unoffseted pointer to
1824/// the alloca, and if the source pointer is a pointer to a constant global, we
1825/// can optimize this.
1826static bool isOnlyCopiedFromConstantGlobal(Value *V, Instruction *&TheCopy,
1827 bool isOffset) {
1828 for (Value::use_iterator UI = V->use_begin(), E = V->use_end(); UI!=E; ++UI) {
Chris Lattner6e733d32009-01-28 20:16:43 +00001829 if (LoadInst *LI = dyn_cast<LoadInst>(*UI))
1830 // Ignore non-volatile loads, they are always ok.
1831 if (!LI->isVolatile())
1832 continue;
1833
Chris Lattner79b3bd32007-04-25 06:40:51 +00001834 if (BitCastInst *BCI = dyn_cast<BitCastInst>(*UI)) {
1835 // If uses of the bitcast are ok, we are ok.
1836 if (!isOnlyCopiedFromConstantGlobal(BCI, TheCopy, isOffset))
1837 return false;
1838 continue;
1839 }
1840 if (GetElementPtrInst *GEP = dyn_cast<GetElementPtrInst>(*UI)) {
1841 // If the GEP has all zero indices, it doesn't offset the pointer. If it
1842 // doesn't, it does.
1843 if (!isOnlyCopiedFromConstantGlobal(GEP, TheCopy,
1844 isOffset || !GEP->hasAllZeroIndices()))
1845 return false;
1846 continue;
1847 }
1848
1849 // If this is isn't our memcpy/memmove, reject it as something we can't
1850 // handle.
Chris Lattner3ce5e882009-03-08 03:37:16 +00001851 if (!isa<MemTransferInst>(*UI))
Chris Lattner79b3bd32007-04-25 06:40:51 +00001852 return false;
1853
1854 // If we already have seen a copy, reject the second one.
1855 if (TheCopy) return false;
1856
1857 // If the pointer has been offset from the start of the alloca, we can't
1858 // safely handle this.
1859 if (isOffset) return false;
1860
1861 // If the memintrinsic isn't using the alloca as the dest, reject it.
1862 if (UI.getOperandNo() != 1) return false;
1863
1864 MemIntrinsic *MI = cast<MemIntrinsic>(*UI);
1865
1866 // If the source of the memcpy/move is not a constant global, reject it.
1867 if (!PointsToConstantGlobal(MI->getOperand(2)))
1868 return false;
1869
1870 // Otherwise, the transform is safe. Remember the copy instruction.
1871 TheCopy = MI;
1872 }
1873 return true;
1874}
1875
1876/// isOnlyCopiedFromConstantGlobal - Return true if the specified alloca is only
1877/// modified by a copy from a constant global. If we can prove this, we can
1878/// replace any uses of the alloca with uses of the global directly.
Victor Hernandez7b929da2009-10-23 21:09:37 +00001879Instruction *SROA::isOnlyCopiedFromConstantGlobal(AllocaInst *AI) {
Chris Lattner79b3bd32007-04-25 06:40:51 +00001880 Instruction *TheCopy = 0;
1881 if (::isOnlyCopiedFromConstantGlobal(AI, TheCopy, false))
1882 return TheCopy;
1883 return 0;
1884}