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Eugene Zelenko99241d72017-10-20 21:47:29 +00001//===- Scalarizer.cpp - Scalarize vector operations -----------------------===//
Richard Sandiford8ee1b772013-11-22 16:58:05 +00002//
Chandler Carruth2946cd72019-01-19 08:50:56 +00003// Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
4// See https://llvm.org/LICENSE.txt for license information.
5// SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
Richard Sandiford8ee1b772013-11-22 16:58:05 +00006//
7//===----------------------------------------------------------------------===//
8//
9// This pass converts vector operations into scalar operations, in order
10// to expose optimization opportunities on the individual scalar operations.
11// It is mainly intended for targets that do not have vector units, but it
12// may also be useful for revectorizing code to different vector widths.
13//
14//===----------------------------------------------------------------------===//
15
Neil Henning3d457982018-10-10 09:27:45 +000016#include "llvm/ADT/PostOrderIterator.h"
Eugene Zelenko99241d72017-10-20 21:47:29 +000017#include "llvm/ADT/SmallVector.h"
18#include "llvm/ADT/Twine.h"
Matt Arsenault7cddfed2016-07-25 20:02:54 +000019#include "llvm/Analysis/VectorUtils.h"
Eugene Zelenko99241d72017-10-20 21:47:29 +000020#include "llvm/IR/Argument.h"
21#include "llvm/IR/BasicBlock.h"
22#include "llvm/IR/Constants.h"
23#include "llvm/IR/DataLayout.h"
24#include "llvm/IR/DerivedTypes.h"
25#include "llvm/IR/Function.h"
Richard Sandiford8ee1b772013-11-22 16:58:05 +000026#include "llvm/IR/IRBuilder.h"
Chandler Carruth7da14f12014-03-06 03:23:41 +000027#include "llvm/IR/InstVisitor.h"
Eugene Zelenko99241d72017-10-20 21:47:29 +000028#include "llvm/IR/InstrTypes.h"
29#include "llvm/IR/Instruction.h"
30#include "llvm/IR/Instructions.h"
31#include "llvm/IR/Intrinsics.h"
32#include "llvm/IR/LLVMContext.h"
33#include "llvm/IR/Module.h"
34#include "llvm/IR/Type.h"
35#include "llvm/IR/Value.h"
Richard Sandiford8ee1b772013-11-22 16:58:05 +000036#include "llvm/Pass.h"
Eugene Zelenko99241d72017-10-20 21:47:29 +000037#include "llvm/Support/Casting.h"
38#include "llvm/Support/MathExtras.h"
39#include "llvm/Support/Options.h"
Chandler Carruth6bda14b2017-06-06 11:49:48 +000040#include "llvm/Transforms/Scalar.h"
Mikael Holmenb6f76002018-11-21 14:00:17 +000041#include "llvm/Transforms/Scalar/Scalarizer.h"
Eugene Zelenko99241d72017-10-20 21:47:29 +000042#include <cassert>
43#include <cstdint>
44#include <iterator>
45#include <map>
46#include <utility>
Richard Sandiford8ee1b772013-11-22 16:58:05 +000047
48using namespace llvm;
49
Chandler Carruth964daaa2014-04-22 02:55:47 +000050#define DEBUG_TYPE "scalarizer"
51
Mikael Holmenb6f76002018-11-21 14:00:17 +000052// This is disabled by default because having separate loads and stores
53// makes it more likely that the -combiner-alias-analysis limits will be
54// reached.
55static cl::opt<bool>
56 ScalarizeLoadStore("scalarize-load-store", cl::init(false), cl::Hidden,
57 cl::desc("Allow the scalarizer pass to scalarize loads and store"));
58
Richard Sandiford8ee1b772013-11-22 16:58:05 +000059namespace {
Eugene Zelenko99241d72017-10-20 21:47:29 +000060
Richard Sandiford8ee1b772013-11-22 16:58:05 +000061// Used to store the scattered form of a vector.
Eugene Zelenko99241d72017-10-20 21:47:29 +000062using ValueVector = SmallVector<Value *, 8>;
Richard Sandiford8ee1b772013-11-22 16:58:05 +000063
64// Used to map a vector Value to its scattered form. We use std::map
65// because we want iterators to persist across insertion and because the
66// values are relatively large.
Eugene Zelenko99241d72017-10-20 21:47:29 +000067using ScatterMap = std::map<Value *, ValueVector>;
Richard Sandiford8ee1b772013-11-22 16:58:05 +000068
69// Lists Instructions that have been replaced with scalar implementations,
70// along with a pointer to their scattered forms.
Eugene Zelenko99241d72017-10-20 21:47:29 +000071using GatherList = SmallVector<std::pair<Instruction *, ValueVector *>, 16>;
Richard Sandiford8ee1b772013-11-22 16:58:05 +000072
73// Provides a very limited vector-like interface for lazily accessing one
74// component of a scattered vector or vector pointer.
75class Scatterer {
76public:
Eugene Zelenko99241d72017-10-20 21:47:29 +000077 Scatterer() = default;
Richard Sandiford3548cbb2013-12-23 14:45:00 +000078
Richard Sandiford8ee1b772013-11-22 16:58:05 +000079 // Scatter V into Size components. If new instructions are needed,
80 // insert them before BBI in BB. If Cache is nonnull, use it to cache
81 // the results.
82 Scatterer(BasicBlock *bb, BasicBlock::iterator bbi, Value *v,
Craig Topperf40110f2014-04-25 05:29:35 +000083 ValueVector *cachePtr = nullptr);
Richard Sandiford8ee1b772013-11-22 16:58:05 +000084
85 // Return component I, creating a new Value for it if necessary.
86 Value *operator[](unsigned I);
87
88 // Return the number of components.
89 unsigned size() const { return Size; }
90
91private:
92 BasicBlock *BB;
93 BasicBlock::iterator BBI;
94 Value *V;
95 ValueVector *CachePtr;
96 PointerType *PtrTy;
97 ValueVector Tmp;
98 unsigned Size;
99};
100
101// FCmpSpliiter(FCI)(Builder, X, Y, Name) uses Builder to create an FCmp
102// called Name that compares X and Y in the same way as FCI.
103struct FCmpSplitter {
104 FCmpSplitter(FCmpInst &fci) : FCI(fci) {}
Eugene Zelenko99241d72017-10-20 21:47:29 +0000105
Richard Sandiford8ee1b772013-11-22 16:58:05 +0000106 Value *operator()(IRBuilder<> &Builder, Value *Op0, Value *Op1,
107 const Twine &Name) const {
108 return Builder.CreateFCmp(FCI.getPredicate(), Op0, Op1, Name);
109 }
Eugene Zelenko99241d72017-10-20 21:47:29 +0000110
Richard Sandiford8ee1b772013-11-22 16:58:05 +0000111 FCmpInst &FCI;
112};
113
114// ICmpSpliiter(ICI)(Builder, X, Y, Name) uses Builder to create an ICmp
115// called Name that compares X and Y in the same way as ICI.
116struct ICmpSplitter {
117 ICmpSplitter(ICmpInst &ici) : ICI(ici) {}
Eugene Zelenko99241d72017-10-20 21:47:29 +0000118
Richard Sandiford8ee1b772013-11-22 16:58:05 +0000119 Value *operator()(IRBuilder<> &Builder, Value *Op0, Value *Op1,
120 const Twine &Name) const {
121 return Builder.CreateICmp(ICI.getPredicate(), Op0, Op1, Name);
122 }
Eugene Zelenko99241d72017-10-20 21:47:29 +0000123
Richard Sandiford8ee1b772013-11-22 16:58:05 +0000124 ICmpInst &ICI;
125};
126
Cameron McInally5c7245b2019-06-04 23:01:36 +0000127// UnarySpliiter(UO)(Builder, X, Name) uses Builder to create
128// a unary operator like UO called Name with operand X.
129struct UnarySplitter {
130 UnarySplitter(UnaryOperator &uo) : UO(uo) {}
131
132 Value *operator()(IRBuilder<> &Builder, Value *Op, const Twine &Name) const {
133 return Builder.CreateUnOp(UO.getOpcode(), Op, Name);
134 }
135
136 UnaryOperator &UO;
137};
138
Richard Sandiford8ee1b772013-11-22 16:58:05 +0000139// BinarySpliiter(BO)(Builder, X, Y, Name) uses Builder to create
140// a binary operator like BO called Name with operands X and Y.
141struct BinarySplitter {
142 BinarySplitter(BinaryOperator &bo) : BO(bo) {}
Eugene Zelenko99241d72017-10-20 21:47:29 +0000143
Richard Sandiford8ee1b772013-11-22 16:58:05 +0000144 Value *operator()(IRBuilder<> &Builder, Value *Op0, Value *Op1,
145 const Twine &Name) const {
146 return Builder.CreateBinOp(BO.getOpcode(), Op0, Op1, Name);
147 }
Eugene Zelenko99241d72017-10-20 21:47:29 +0000148
Richard Sandiford8ee1b772013-11-22 16:58:05 +0000149 BinaryOperator &BO;
150};
151
Richard Sandiford8ee1b772013-11-22 16:58:05 +0000152// Information about a load or store that we're scalarizing.
153struct VectorLayout {
Eugene Zelenko99241d72017-10-20 21:47:29 +0000154 VectorLayout() = default;
Richard Sandiford8ee1b772013-11-22 16:58:05 +0000155
156 // Return the alignment of element I.
157 uint64_t getElemAlign(unsigned I) {
158 return MinAlign(VecAlign, I * ElemSize);
159 }
160
161 // The type of the vector.
Eugene Zelenko99241d72017-10-20 21:47:29 +0000162 VectorType *VecTy = nullptr;
Richard Sandiford8ee1b772013-11-22 16:58:05 +0000163
164 // The type of each element.
Eugene Zelenko99241d72017-10-20 21:47:29 +0000165 Type *ElemTy = nullptr;
Richard Sandiford8ee1b772013-11-22 16:58:05 +0000166
167 // The alignment of the vector.
Eugene Zelenko99241d72017-10-20 21:47:29 +0000168 uint64_t VecAlign = 0;
Richard Sandiford8ee1b772013-11-22 16:58:05 +0000169
170 // The size of each element.
Eugene Zelenko99241d72017-10-20 21:47:29 +0000171 uint64_t ElemSize = 0;
Richard Sandiford8ee1b772013-11-22 16:58:05 +0000172};
173
Mikael Holmenb6f76002018-11-21 14:00:17 +0000174class ScalarizerVisitor : public InstVisitor<ScalarizerVisitor, bool> {
Richard Sandiford8ee1b772013-11-22 16:58:05 +0000175public:
Mikael Holmenb6f76002018-11-21 14:00:17 +0000176 ScalarizerVisitor(unsigned ParallelLoopAccessMDKind)
177 : ParallelLoopAccessMDKind(ParallelLoopAccessMDKind) {
Richard Sandiford8ee1b772013-11-22 16:58:05 +0000178 }
179
Mikael Holmenb6f76002018-11-21 14:00:17 +0000180 bool visit(Function &F);
Richard Sandiford8ee1b772013-11-22 16:58:05 +0000181
182 // InstVisitor methods. They return true if the instruction was scalarized,
183 // false if nothing changed.
Eugene Zelenko99241d72017-10-20 21:47:29 +0000184 bool visitInstruction(Instruction &I) { return false; }
Richard Sandiford8ee1b772013-11-22 16:58:05 +0000185 bool visitSelectInst(SelectInst &SI);
Eugene Zelenko99241d72017-10-20 21:47:29 +0000186 bool visitICmpInst(ICmpInst &ICI);
187 bool visitFCmpInst(FCmpInst &FCI);
Cameron McInally5c7245b2019-06-04 23:01:36 +0000188 bool visitUnaryOperator(UnaryOperator &UO);
Eugene Zelenko99241d72017-10-20 21:47:29 +0000189 bool visitBinaryOperator(BinaryOperator &BO);
190 bool visitGetElementPtrInst(GetElementPtrInst &GEPI);
191 bool visitCastInst(CastInst &CI);
192 bool visitBitCastInst(BitCastInst &BCI);
193 bool visitShuffleVectorInst(ShuffleVectorInst &SVI);
194 bool visitPHINode(PHINode &PHI);
195 bool visitLoadInst(LoadInst &LI);
196 bool visitStoreInst(StoreInst &SI);
197 bool visitCallInst(CallInst &ICI);
Richard Sandiford8ee1b772013-11-22 16:58:05 +0000198
199private:
Eugene Zelenko99241d72017-10-20 21:47:29 +0000200 Scatterer scatter(Instruction *Point, Value *V);
201 void gather(Instruction *Op, const ValueVector &CV);
Richard Sandiford8ee1b772013-11-22 16:58:05 +0000202 bool canTransferMetadata(unsigned Kind);
Eugene Zelenko99241d72017-10-20 21:47:29 +0000203 void transferMetadata(Instruction *Op, const ValueVector &CV);
204 bool getVectorLayout(Type *Ty, unsigned Alignment, VectorLayout &Layout,
205 const DataLayout &DL);
Richard Sandiford8ee1b772013-11-22 16:58:05 +0000206 bool finish();
207
Cameron McInally5c7245b2019-06-04 23:01:36 +0000208 template<typename T> bool splitUnary(Instruction &, const T &);
Richard Sandiford8ee1b772013-11-22 16:58:05 +0000209 template<typename T> bool splitBinary(Instruction &, const T &);
210
Matt Arsenault7cddfed2016-07-25 20:02:54 +0000211 bool splitCall(CallInst &CI);
212
Richard Sandiford8ee1b772013-11-22 16:58:05 +0000213 ScatterMap Scattered;
214 GatherList Gathered;
Mikael Holmenb6f76002018-11-21 14:00:17 +0000215
Richard Sandiford8ee1b772013-11-22 16:58:05 +0000216 unsigned ParallelLoopAccessMDKind;
Mikael Holmenb6f76002018-11-21 14:00:17 +0000217};
218
219class ScalarizerLegacyPass : public FunctionPass {
220public:
221 static char ID;
222
223 ScalarizerLegacyPass() : FunctionPass(ID) {
224 initializeScalarizerLegacyPassPass(*PassRegistry::getPassRegistry());
225 }
226
227 bool runOnFunction(Function &F) override;
Richard Sandiford8ee1b772013-11-22 16:58:05 +0000228};
229
Richard Sandiford8ee1b772013-11-22 16:58:05 +0000230} // end anonymous namespace
231
Mikael Holmenb6f76002018-11-21 14:00:17 +0000232char ScalarizerLegacyPass::ID = 0;
233INITIALIZE_PASS_BEGIN(ScalarizerLegacyPass, "scalarizer",
234 "Scalarize vector operations", false, false)
235INITIALIZE_PASS_END(ScalarizerLegacyPass, "scalarizer",
236 "Scalarize vector operations", false, false)
Richard Sandiford8ee1b772013-11-22 16:58:05 +0000237
238Scatterer::Scatterer(BasicBlock *bb, BasicBlock::iterator bbi, Value *v,
239 ValueVector *cachePtr)
240 : BB(bb), BBI(bbi), V(v), CachePtr(cachePtr) {
241 Type *Ty = V->getType();
242 PtrTy = dyn_cast<PointerType>(Ty);
243 if (PtrTy)
244 Ty = PtrTy->getElementType();
245 Size = Ty->getVectorNumElements();
246 if (!CachePtr)
Craig Topperf40110f2014-04-25 05:29:35 +0000247 Tmp.resize(Size, nullptr);
Richard Sandiford8ee1b772013-11-22 16:58:05 +0000248 else if (CachePtr->empty())
Craig Topperf40110f2014-04-25 05:29:35 +0000249 CachePtr->resize(Size, nullptr);
Richard Sandiford8ee1b772013-11-22 16:58:05 +0000250 else
251 assert(Size == CachePtr->size() && "Inconsistent vector sizes");
252}
253
254// Return component I, creating a new Value for it if necessary.
255Value *Scatterer::operator[](unsigned I) {
256 ValueVector &CV = (CachePtr ? *CachePtr : Tmp);
257 // Try to reuse a previous value.
258 if (CV[I])
259 return CV[I];
260 IRBuilder<> Builder(BB, BBI);
261 if (PtrTy) {
James Y Knight77160752019-02-01 20:44:47 +0000262 Type *ElTy = PtrTy->getElementType()->getVectorElementType();
Richard Sandiford8ee1b772013-11-22 16:58:05 +0000263 if (!CV[0]) {
James Y Knight77160752019-02-01 20:44:47 +0000264 Type *NewPtrTy = PointerType::get(ElTy, PtrTy->getAddressSpace());
265 CV[0] = Builder.CreateBitCast(V, NewPtrTy, V->getName() + ".i0");
Richard Sandiford8ee1b772013-11-22 16:58:05 +0000266 }
267 if (I != 0)
James Y Knight77160752019-02-01 20:44:47 +0000268 CV[I] = Builder.CreateConstGEP1_32(ElTy, CV[0], I,
Richard Sandiford8ee1b772013-11-22 16:58:05 +0000269 V->getName() + ".i" + Twine(I));
270 } else {
271 // Search through a chain of InsertElementInsts looking for element I.
272 // Record other elements in the cache. The new V is still suitable
273 // for all uncached indices.
Eugene Zelenko99241d72017-10-20 21:47:29 +0000274 while (true) {
Richard Sandiford8ee1b772013-11-22 16:58:05 +0000275 InsertElementInst *Insert = dyn_cast<InsertElementInst>(V);
276 if (!Insert)
277 break;
278 ConstantInt *Idx = dyn_cast<ConstantInt>(Insert->getOperand(2));
279 if (!Idx)
280 break;
281 unsigned J = Idx->getZExtValue();
Richard Sandiford8ee1b772013-11-22 16:58:05 +0000282 V = Insert->getOperand(0);
Fraser Cormacke29ab2b2015-08-10 14:48:47 +0000283 if (I == J) {
284 CV[J] = Insert->getOperand(1);
Richard Sandiford8ee1b772013-11-22 16:58:05 +0000285 return CV[J];
Fraser Cormacke29ab2b2015-08-10 14:48:47 +0000286 } else if (!CV[J]) {
287 // Only cache the first entry we find for each index we're not actively
288 // searching for. This prevents us from going too far up the chain and
289 // caching incorrect entries.
290 CV[J] = Insert->getOperand(1);
291 }
Richard Sandiford8ee1b772013-11-22 16:58:05 +0000292 }
293 CV[I] = Builder.CreateExtractElement(V, Builder.getInt32(I),
294 V->getName() + ".i" + Twine(I));
295 }
296 return CV[I];
297}
298
Mikael Holmenb6f76002018-11-21 14:00:17 +0000299bool ScalarizerLegacyPass::runOnFunction(Function &F) {
Andrew Kaylor50271f72016-05-03 22:32:30 +0000300 if (skipFunction(F))
301 return false;
Mikael Holmenb6f76002018-11-21 14:00:17 +0000302
303 Module &M = *F.getParent();
304 unsigned ParallelLoopAccessMDKind =
305 M.getContext().getMDKindID("llvm.mem.parallel_loop_access");
306 ScalarizerVisitor Impl(ParallelLoopAccessMDKind);
307 return Impl.visit(F);
308}
309
310FunctionPass *llvm::createScalarizerPass() {
311 return new ScalarizerLegacyPass();
312}
313
314bool ScalarizerVisitor::visit(Function &F) {
Matt Wala878c1442015-07-23 20:53:46 +0000315 assert(Gathered.empty() && Scattered.empty());
Neil Henning3d457982018-10-10 09:27:45 +0000316
317 // To ensure we replace gathered components correctly we need to do an ordered
318 // traversal of the basic blocks in the function.
319 ReversePostOrderTraversal<BasicBlock *> RPOT(&F.getEntryBlock());
320 for (BasicBlock *BB : RPOT) {
321 for (BasicBlock::iterator II = BB->begin(), IE = BB->end(); II != IE;) {
Duncan P. N. Exon Smithbe4d8cb2015-10-13 19:26:58 +0000322 Instruction *I = &*II;
Mikael Holmenb6f76002018-11-21 14:00:17 +0000323 bool Done = InstVisitor::visit(I);
Richard Sandiford8ee1b772013-11-22 16:58:05 +0000324 ++II;
325 if (Done && I->getType()->isVoidTy())
326 I->eraseFromParent();
327 }
328 }
329 return finish();
330}
331
332// Return a scattered form of V that can be accessed by Point. V must be a
333// vector or a pointer to a vector.
Mikael Holmenb6f76002018-11-21 14:00:17 +0000334Scatterer ScalarizerVisitor::scatter(Instruction *Point, Value *V) {
Richard Sandiford8ee1b772013-11-22 16:58:05 +0000335 if (Argument *VArg = dyn_cast<Argument>(V)) {
336 // Put the scattered form of arguments in the entry block,
337 // so that it can be used everywhere.
338 Function *F = VArg->getParent();
339 BasicBlock *BB = &F->getEntryBlock();
340 return Scatterer(BB, BB->begin(), V, &Scattered[V]);
341 }
342 if (Instruction *VOp = dyn_cast<Instruction>(V)) {
343 // Put the scattered form of an instruction directly after the
344 // instruction.
345 BasicBlock *BB = VOp->getParent();
Benjamin Kramerb6d0bd42014-03-02 12:27:27 +0000346 return Scatterer(BB, std::next(BasicBlock::iterator(VOp)),
Richard Sandiford8ee1b772013-11-22 16:58:05 +0000347 V, &Scattered[V]);
348 }
349 // In the fallback case, just put the scattered before Point and
350 // keep the result local to Point.
Duncan P. N. Exon Smithbe4d8cb2015-10-13 19:26:58 +0000351 return Scatterer(Point->getParent(), Point->getIterator(), V);
Richard Sandiford8ee1b772013-11-22 16:58:05 +0000352}
353
354// Replace Op with the gathered form of the components in CV. Defer the
355// deletion of Op and creation of the gathered form to the end of the pass,
356// so that we can avoid creating the gathered form if all uses of Op are
357// replaced with uses of CV.
Mikael Holmenb6f76002018-11-21 14:00:17 +0000358void ScalarizerVisitor::gather(Instruction *Op, const ValueVector &CV) {
Richard Sandiford8ee1b772013-11-22 16:58:05 +0000359 // Since we're not deleting Op yet, stub out its operands, so that it
360 // doesn't make anything live unnecessarily.
361 for (unsigned I = 0, E = Op->getNumOperands(); I != E; ++I)
362 Op->setOperand(I, UndefValue::get(Op->getOperand(I)->getType()));
363
364 transferMetadata(Op, CV);
365
366 // If we already have a scattered form of Op (created from ExtractElements
367 // of Op itself), replace them with the new form.
368 ValueVector &SV = Scattered[Op];
369 if (!SV.empty()) {
370 for (unsigned I = 0, E = SV.size(); I != E; ++I) {
Mehdi Amini8484f922016-07-14 01:31:25 +0000371 Value *V = SV[I];
372 if (V == nullptr)
373 continue;
374
375 Instruction *Old = cast<Instruction>(V);
Richard Sandiford8ee1b772013-11-22 16:58:05 +0000376 CV[I]->takeName(Old);
377 Old->replaceAllUsesWith(CV[I]);
378 Old->eraseFromParent();
379 }
380 }
381 SV = CV;
382 Gathered.push_back(GatherList::value_type(Op, &SV));
383}
384
385// Return true if it is safe to transfer the given metadata tag from
386// vector to scalar instructions.
Mikael Holmenb6f76002018-11-21 14:00:17 +0000387bool ScalarizerVisitor::canTransferMetadata(unsigned Tag) {
Richard Sandiford8ee1b772013-11-22 16:58:05 +0000388 return (Tag == LLVMContext::MD_tbaa
389 || Tag == LLVMContext::MD_fpmath
390 || Tag == LLVMContext::MD_tbaa_struct
391 || Tag == LLVMContext::MD_invariant_load
Hal Finkel94146652014-07-24 14:25:39 +0000392 || Tag == LLVMContext::MD_alias_scope
393 || Tag == LLVMContext::MD_noalias
Michael Kruse978ba612018-12-20 04:58:07 +0000394 || Tag == ParallelLoopAccessMDKind
395 || Tag == LLVMContext::MD_access_group);
Richard Sandiford8ee1b772013-11-22 16:58:05 +0000396}
397
398// Transfer metadata from Op to the instructions in CV if it is known
399// to be safe to do so.
Mikael Holmenb6f76002018-11-21 14:00:17 +0000400void ScalarizerVisitor::transferMetadata(Instruction *Op, const ValueVector &CV) {
Duncan P. N. Exon Smithde36e802014-11-11 21:30:22 +0000401 SmallVector<std::pair<unsigned, MDNode *>, 4> MDs;
Richard Sandiford8ee1b772013-11-22 16:58:05 +0000402 Op->getAllMetadataOtherThanDebugLoc(MDs);
403 for (unsigned I = 0, E = CV.size(); I != E; ++I) {
404 if (Instruction *New = dyn_cast<Instruction>(CV[I])) {
Benjamin Kramer135f7352016-06-26 12:28:59 +0000405 for (const auto &MD : MDs)
406 if (canTransferMetadata(MD.first))
407 New->setMetadata(MD.first, MD.second);
Patrik Hagglund0acaefa2016-06-16 10:48:54 +0000408 if (Op->getDebugLoc() && !New->getDebugLoc())
409 New->setDebugLoc(Op->getDebugLoc());
Richard Sandiford8ee1b772013-11-22 16:58:05 +0000410 }
411 }
412}
413
414// Try to fill in Layout from Ty, returning true on success. Alignment is
415// the alignment of the vector, or 0 if the ABI default should be used.
Mikael Holmenb6f76002018-11-21 14:00:17 +0000416bool ScalarizerVisitor::getVectorLayout(Type *Ty, unsigned Alignment,
Mehdi Aminia28d91d2015-03-10 02:37:25 +0000417 VectorLayout &Layout, const DataLayout &DL) {
Richard Sandiford8ee1b772013-11-22 16:58:05 +0000418 // Make sure we're dealing with a vector.
419 Layout.VecTy = dyn_cast<VectorType>(Ty);
420 if (!Layout.VecTy)
421 return false;
422
423 // Check that we're dealing with full-byte elements.
424 Layout.ElemTy = Layout.VecTy->getElementType();
Bjorn Petterssonb4771422019-05-24 09:20:20 +0000425 if (!DL.typeSizeEqualsStoreSize(Layout.ElemTy))
Richard Sandiford8ee1b772013-11-22 16:58:05 +0000426 return false;
427
428 if (Alignment)
429 Layout.VecAlign = Alignment;
430 else
Mehdi Aminia28d91d2015-03-10 02:37:25 +0000431 Layout.VecAlign = DL.getABITypeAlignment(Layout.VecTy);
432 Layout.ElemSize = DL.getTypeStoreSize(Layout.ElemTy);
Richard Sandiford8ee1b772013-11-22 16:58:05 +0000433 return true;
434}
435
Cameron McInally5c7245b2019-06-04 23:01:36 +0000436// Scalarize one-operand instruction I, using Split(Builder, X, Name)
437// to create an instruction like I with operand X and name Name.
438template<typename Splitter>
439bool ScalarizerVisitor::splitUnary(Instruction &I, const Splitter &Split) {
440 VectorType *VT = dyn_cast<VectorType>(I.getType());
441 if (!VT)
442 return false;
443
444 unsigned NumElems = VT->getNumElements();
445 IRBuilder<> Builder(&I);
446 Scatterer Op = scatter(&I, I.getOperand(0));
447 assert(Op.size() == NumElems && "Mismatched unary operation");
448 ValueVector Res;
449 Res.resize(NumElems);
450 for (unsigned Elem = 0; Elem < NumElems; ++Elem)
451 Res[Elem] = Split(Builder, Op[Elem], I.getName() + ".i" + Twine(Elem));
452 gather(&I, Res);
453 return true;
454}
455
Richard Sandiford8ee1b772013-11-22 16:58:05 +0000456// Scalarize two-operand instruction I, using Split(Builder, X, Y, Name)
457// to create an instruction like I with operands X and Y and name Name.
458template<typename Splitter>
Mikael Holmenb6f76002018-11-21 14:00:17 +0000459bool ScalarizerVisitor::splitBinary(Instruction &I, const Splitter &Split) {
Richard Sandiford8ee1b772013-11-22 16:58:05 +0000460 VectorType *VT = dyn_cast<VectorType>(I.getType());
461 if (!VT)
462 return false;
463
464 unsigned NumElems = VT->getNumElements();
Duncan P. N. Exon Smithbe4d8cb2015-10-13 19:26:58 +0000465 IRBuilder<> Builder(&I);
Richard Sandiford8ee1b772013-11-22 16:58:05 +0000466 Scatterer Op0 = scatter(&I, I.getOperand(0));
467 Scatterer Op1 = scatter(&I, I.getOperand(1));
468 assert(Op0.size() == NumElems && "Mismatched binary operation");
469 assert(Op1.size() == NumElems && "Mismatched binary operation");
470 ValueVector Res;
471 Res.resize(NumElems);
472 for (unsigned Elem = 0; Elem < NumElems; ++Elem)
473 Res[Elem] = Split(Builder, Op0[Elem], Op1[Elem],
474 I.getName() + ".i" + Twine(Elem));
475 gather(&I, Res);
476 return true;
477}
478
Matt Arsenault7cddfed2016-07-25 20:02:54 +0000479static bool isTriviallyScalariable(Intrinsic::ID ID) {
480 return isTriviallyVectorizable(ID);
481}
482
483// All of the current scalarizable intrinsics only have one mangled type.
484static Function *getScalarIntrinsicDeclaration(Module *M,
485 Intrinsic::ID ID,
486 VectorType *Ty) {
487 return Intrinsic::getDeclaration(M, ID, { Ty->getScalarType() });
488}
489
490/// If a call to a vector typed intrinsic function, split into a scalar call per
491/// element if possible for the intrinsic.
Mikael Holmenb6f76002018-11-21 14:00:17 +0000492bool ScalarizerVisitor::splitCall(CallInst &CI) {
Matt Arsenault7cddfed2016-07-25 20:02:54 +0000493 VectorType *VT = dyn_cast<VectorType>(CI.getType());
494 if (!VT)
495 return false;
496
497 Function *F = CI.getCalledFunction();
498 if (!F)
499 return false;
500
501 Intrinsic::ID ID = F->getIntrinsicID();
502 if (ID == Intrinsic::not_intrinsic || !isTriviallyScalariable(ID))
503 return false;
504
505 unsigned NumElems = VT->getNumElements();
506 unsigned NumArgs = CI.getNumArgOperands();
507
508 ValueVector ScalarOperands(NumArgs);
509 SmallVector<Scatterer, 8> Scattered(NumArgs);
510
511 Scattered.resize(NumArgs);
512
513 // Assumes that any vector type has the same number of elements as the return
514 // vector type, which is true for all current intrinsics.
515 for (unsigned I = 0; I != NumArgs; ++I) {
516 Value *OpI = CI.getOperand(I);
517 if (OpI->getType()->isVectorTy()) {
518 Scattered[I] = scatter(&CI, OpI);
519 assert(Scattered[I].size() == NumElems && "mismatched call operands");
520 } else {
521 ScalarOperands[I] = OpI;
522 }
523 }
524
525 ValueVector Res(NumElems);
526 ValueVector ScalarCallOps(NumArgs);
527
528 Function *NewIntrin = getScalarIntrinsicDeclaration(F->getParent(), ID, VT);
529 IRBuilder<> Builder(&CI);
530
531 // Perform actual scalarization, taking care to preserve any scalar operands.
532 for (unsigned Elem = 0; Elem < NumElems; ++Elem) {
533 ScalarCallOps.clear();
534
535 for (unsigned J = 0; J != NumArgs; ++J) {
536 if (hasVectorInstrinsicScalarOpd(ID, J))
537 ScalarCallOps.push_back(ScalarOperands[J]);
538 else
539 ScalarCallOps.push_back(Scattered[J][Elem]);
540 }
541
542 Res[Elem] = Builder.CreateCall(NewIntrin, ScalarCallOps,
543 CI.getName() + ".i" + Twine(Elem));
544 }
545
546 gather(&CI, Res);
547 return true;
548}
549
Mikael Holmenb6f76002018-11-21 14:00:17 +0000550bool ScalarizerVisitor::visitSelectInst(SelectInst &SI) {
Richard Sandiford8ee1b772013-11-22 16:58:05 +0000551 VectorType *VT = dyn_cast<VectorType>(SI.getType());
552 if (!VT)
553 return false;
554
555 unsigned NumElems = VT->getNumElements();
Duncan P. N. Exon Smithbe4d8cb2015-10-13 19:26:58 +0000556 IRBuilder<> Builder(&SI);
Richard Sandiford8ee1b772013-11-22 16:58:05 +0000557 Scatterer Op1 = scatter(&SI, SI.getOperand(1));
558 Scatterer Op2 = scatter(&SI, SI.getOperand(2));
559 assert(Op1.size() == NumElems && "Mismatched select");
560 assert(Op2.size() == NumElems && "Mismatched select");
561 ValueVector Res;
562 Res.resize(NumElems);
563
564 if (SI.getOperand(0)->getType()->isVectorTy()) {
565 Scatterer Op0 = scatter(&SI, SI.getOperand(0));
566 assert(Op0.size() == NumElems && "Mismatched select");
567 for (unsigned I = 0; I < NumElems; ++I)
568 Res[I] = Builder.CreateSelect(Op0[I], Op1[I], Op2[I],
569 SI.getName() + ".i" + Twine(I));
570 } else {
571 Value *Op0 = SI.getOperand(0);
572 for (unsigned I = 0; I < NumElems; ++I)
573 Res[I] = Builder.CreateSelect(Op0, Op1[I], Op2[I],
574 SI.getName() + ".i" + Twine(I));
575 }
576 gather(&SI, Res);
577 return true;
578}
579
Mikael Holmenb6f76002018-11-21 14:00:17 +0000580bool ScalarizerVisitor::visitICmpInst(ICmpInst &ICI) {
Richard Sandiford8ee1b772013-11-22 16:58:05 +0000581 return splitBinary(ICI, ICmpSplitter(ICI));
582}
583
Mikael Holmenb6f76002018-11-21 14:00:17 +0000584bool ScalarizerVisitor::visitFCmpInst(FCmpInst &FCI) {
Richard Sandiford8ee1b772013-11-22 16:58:05 +0000585 return splitBinary(FCI, FCmpSplitter(FCI));
586}
587
Cameron McInally5c7245b2019-06-04 23:01:36 +0000588bool ScalarizerVisitor::visitUnaryOperator(UnaryOperator &UO) {
589 return splitUnary(UO, UnarySplitter(UO));
590}
591
Mikael Holmenb6f76002018-11-21 14:00:17 +0000592bool ScalarizerVisitor::visitBinaryOperator(BinaryOperator &BO) {
Richard Sandiford8ee1b772013-11-22 16:58:05 +0000593 return splitBinary(BO, BinarySplitter(BO));
594}
595
Mikael Holmenb6f76002018-11-21 14:00:17 +0000596bool ScalarizerVisitor::visitGetElementPtrInst(GetElementPtrInst &GEPI) {
Richard Sandiford3548cbb2013-12-23 14:45:00 +0000597 VectorType *VT = dyn_cast<VectorType>(GEPI.getType());
598 if (!VT)
599 return false;
600
Duncan P. N. Exon Smithbe4d8cb2015-10-13 19:26:58 +0000601 IRBuilder<> Builder(&GEPI);
Richard Sandiford3548cbb2013-12-23 14:45:00 +0000602 unsigned NumElems = VT->getNumElements();
603 unsigned NumIndices = GEPI.getNumIndices();
604
Mikael Holmen79235bd2017-03-31 06:29:49 +0000605 // The base pointer might be scalar even if it's a vector GEP. In those cases,
606 // splat the pointer into a vector value, and scatter that vector.
607 Value *Op0 = GEPI.getOperand(0);
608 if (!Op0->getType()->isVectorTy())
609 Op0 = Builder.CreateVectorSplat(NumElems, Op0);
610 Scatterer Base = scatter(&GEPI, Op0);
Richard Sandiford3548cbb2013-12-23 14:45:00 +0000611
612 SmallVector<Scatterer, 8> Ops;
613 Ops.resize(NumIndices);
Mikael Holmen79235bd2017-03-31 06:29:49 +0000614 for (unsigned I = 0; I < NumIndices; ++I) {
615 Value *Op = GEPI.getOperand(I + 1);
616
617 // The indices might be scalars even if it's a vector GEP. In those cases,
618 // splat the scalar into a vector value, and scatter that vector.
619 if (!Op->getType()->isVectorTy())
620 Op = Builder.CreateVectorSplat(NumElems, Op);
621
622 Ops[I] = scatter(&GEPI, Op);
623 }
Richard Sandiford3548cbb2013-12-23 14:45:00 +0000624
625 ValueVector Res;
626 Res.resize(NumElems);
627 for (unsigned I = 0; I < NumElems; ++I) {
628 SmallVector<Value *, 8> Indices;
629 Indices.resize(NumIndices);
630 for (unsigned J = 0; J < NumIndices; ++J)
631 Indices[J] = Ops[J][I];
David Blaikie68d535c2015-03-24 22:38:16 +0000632 Res[I] = Builder.CreateGEP(GEPI.getSourceElementType(), Base[I], Indices,
Richard Sandiford3548cbb2013-12-23 14:45:00 +0000633 GEPI.getName() + ".i" + Twine(I));
634 if (GEPI.isInBounds())
635 if (GetElementPtrInst *NewGEPI = dyn_cast<GetElementPtrInst>(Res[I]))
636 NewGEPI->setIsInBounds();
637 }
638 gather(&GEPI, Res);
639 return true;
Richard Sandiford8ee1b772013-11-22 16:58:05 +0000640}
641
Mikael Holmenb6f76002018-11-21 14:00:17 +0000642bool ScalarizerVisitor::visitCastInst(CastInst &CI) {
Richard Sandiford8ee1b772013-11-22 16:58:05 +0000643 VectorType *VT = dyn_cast<VectorType>(CI.getDestTy());
644 if (!VT)
645 return false;
646
647 unsigned NumElems = VT->getNumElements();
Duncan P. N. Exon Smithbe4d8cb2015-10-13 19:26:58 +0000648 IRBuilder<> Builder(&CI);
Richard Sandiford8ee1b772013-11-22 16:58:05 +0000649 Scatterer Op0 = scatter(&CI, CI.getOperand(0));
650 assert(Op0.size() == NumElems && "Mismatched cast");
651 ValueVector Res;
652 Res.resize(NumElems);
653 for (unsigned I = 0; I < NumElems; ++I)
654 Res[I] = Builder.CreateCast(CI.getOpcode(), Op0[I], VT->getElementType(),
655 CI.getName() + ".i" + Twine(I));
656 gather(&CI, Res);
657 return true;
658}
659
Mikael Holmenb6f76002018-11-21 14:00:17 +0000660bool ScalarizerVisitor::visitBitCastInst(BitCastInst &BCI) {
Richard Sandiford8ee1b772013-11-22 16:58:05 +0000661 VectorType *DstVT = dyn_cast<VectorType>(BCI.getDestTy());
662 VectorType *SrcVT = dyn_cast<VectorType>(BCI.getSrcTy());
663 if (!DstVT || !SrcVT)
664 return false;
665
666 unsigned DstNumElems = DstVT->getNumElements();
667 unsigned SrcNumElems = SrcVT->getNumElements();
Duncan P. N. Exon Smithbe4d8cb2015-10-13 19:26:58 +0000668 IRBuilder<> Builder(&BCI);
Richard Sandiford8ee1b772013-11-22 16:58:05 +0000669 Scatterer Op0 = scatter(&BCI, BCI.getOperand(0));
670 ValueVector Res;
671 Res.resize(DstNumElems);
672
673 if (DstNumElems == SrcNumElems) {
674 for (unsigned I = 0; I < DstNumElems; ++I)
675 Res[I] = Builder.CreateBitCast(Op0[I], DstVT->getElementType(),
676 BCI.getName() + ".i" + Twine(I));
677 } else if (DstNumElems > SrcNumElems) {
678 // <M x t1> -> <N*M x t2>. Convert each t1 to <N x t2> and copy the
679 // individual elements to the destination.
680 unsigned FanOut = DstNumElems / SrcNumElems;
681 Type *MidTy = VectorType::get(DstVT->getElementType(), FanOut);
682 unsigned ResI = 0;
683 for (unsigned Op0I = 0; Op0I < SrcNumElems; ++Op0I) {
684 Value *V = Op0[Op0I];
685 Instruction *VI;
686 // Look through any existing bitcasts before converting to <N x t2>.
687 // In the best case, the resulting conversion might be a no-op.
688 while ((VI = dyn_cast<Instruction>(V)) &&
689 VI->getOpcode() == Instruction::BitCast)
690 V = VI->getOperand(0);
691 V = Builder.CreateBitCast(V, MidTy, V->getName() + ".cast");
692 Scatterer Mid = scatter(&BCI, V);
693 for (unsigned MidI = 0; MidI < FanOut; ++MidI)
694 Res[ResI++] = Mid[MidI];
695 }
696 } else {
697 // <N*M x t1> -> <M x t2>. Convert each group of <N x t1> into a t2.
698 unsigned FanIn = SrcNumElems / DstNumElems;
699 Type *MidTy = VectorType::get(SrcVT->getElementType(), FanIn);
700 unsigned Op0I = 0;
701 for (unsigned ResI = 0; ResI < DstNumElems; ++ResI) {
702 Value *V = UndefValue::get(MidTy);
703 for (unsigned MidI = 0; MidI < FanIn; ++MidI)
704 V = Builder.CreateInsertElement(V, Op0[Op0I++], Builder.getInt32(MidI),
705 BCI.getName() + ".i" + Twine(ResI)
706 + ".upto" + Twine(MidI));
707 Res[ResI] = Builder.CreateBitCast(V, DstVT->getElementType(),
708 BCI.getName() + ".i" + Twine(ResI));
709 }
710 }
711 gather(&BCI, Res);
712 return true;
713}
714
Mikael Holmenb6f76002018-11-21 14:00:17 +0000715bool ScalarizerVisitor::visitShuffleVectorInst(ShuffleVectorInst &SVI) {
Richard Sandiford8ee1b772013-11-22 16:58:05 +0000716 VectorType *VT = dyn_cast<VectorType>(SVI.getType());
717 if (!VT)
718 return false;
719
720 unsigned NumElems = VT->getNumElements();
721 Scatterer Op0 = scatter(&SVI, SVI.getOperand(0));
722 Scatterer Op1 = scatter(&SVI, SVI.getOperand(1));
723 ValueVector Res;
724 Res.resize(NumElems);
725
726 for (unsigned I = 0; I < NumElems; ++I) {
727 int Selector = SVI.getMaskValue(I);
728 if (Selector < 0)
729 Res[I] = UndefValue::get(VT->getElementType());
730 else if (unsigned(Selector) < Op0.size())
731 Res[I] = Op0[Selector];
732 else
733 Res[I] = Op1[Selector - Op0.size()];
734 }
735 gather(&SVI, Res);
736 return true;
737}
738
Mikael Holmenb6f76002018-11-21 14:00:17 +0000739bool ScalarizerVisitor::visitPHINode(PHINode &PHI) {
Richard Sandiford8ee1b772013-11-22 16:58:05 +0000740 VectorType *VT = dyn_cast<VectorType>(PHI.getType());
741 if (!VT)
742 return false;
743
744 unsigned NumElems = VT->getNumElements();
Duncan P. N. Exon Smithbe4d8cb2015-10-13 19:26:58 +0000745 IRBuilder<> Builder(&PHI);
Richard Sandiford8ee1b772013-11-22 16:58:05 +0000746 ValueVector Res;
747 Res.resize(NumElems);
748
749 unsigned NumOps = PHI.getNumOperands();
750 for (unsigned I = 0; I < NumElems; ++I)
751 Res[I] = Builder.CreatePHI(VT->getElementType(), NumOps,
752 PHI.getName() + ".i" + Twine(I));
753
754 for (unsigned I = 0; I < NumOps; ++I) {
755 Scatterer Op = scatter(&PHI, PHI.getIncomingValue(I));
756 BasicBlock *IncomingBlock = PHI.getIncomingBlock(I);
757 for (unsigned J = 0; J < NumElems; ++J)
758 cast<PHINode>(Res[J])->addIncoming(Op[J], IncomingBlock);
759 }
760 gather(&PHI, Res);
761 return true;
762}
763
Mikael Holmenb6f76002018-11-21 14:00:17 +0000764bool ScalarizerVisitor::visitLoadInst(LoadInst &LI) {
Richard Sandiford8ee1b772013-11-22 16:58:05 +0000765 if (!ScalarizeLoadStore)
766 return false;
767 if (!LI.isSimple())
768 return false;
769
770 VectorLayout Layout;
Mehdi Aminia28d91d2015-03-10 02:37:25 +0000771 if (!getVectorLayout(LI.getType(), LI.getAlignment(), Layout,
772 LI.getModule()->getDataLayout()))
Richard Sandiford8ee1b772013-11-22 16:58:05 +0000773 return false;
774
775 unsigned NumElems = Layout.VecTy->getNumElements();
Duncan P. N. Exon Smithbe4d8cb2015-10-13 19:26:58 +0000776 IRBuilder<> Builder(&LI);
Richard Sandiford8ee1b772013-11-22 16:58:05 +0000777 Scatterer Ptr = scatter(&LI, LI.getPointerOperand());
778 ValueVector Res;
779 Res.resize(NumElems);
780
781 for (unsigned I = 0; I < NumElems; ++I)
James Y Knight14359ef2019-02-01 20:44:24 +0000782 Res[I] = Builder.CreateAlignedLoad(Layout.VecTy->getElementType(), Ptr[I],
783 Layout.getElemAlign(I),
Richard Sandiford8ee1b772013-11-22 16:58:05 +0000784 LI.getName() + ".i" + Twine(I));
785 gather(&LI, Res);
786 return true;
787}
788
Mikael Holmenb6f76002018-11-21 14:00:17 +0000789bool ScalarizerVisitor::visitStoreInst(StoreInst &SI) {
Richard Sandiford8ee1b772013-11-22 16:58:05 +0000790 if (!ScalarizeLoadStore)
791 return false;
792 if (!SI.isSimple())
793 return false;
794
795 VectorLayout Layout;
796 Value *FullValue = SI.getValueOperand();
Mehdi Aminia28d91d2015-03-10 02:37:25 +0000797 if (!getVectorLayout(FullValue->getType(), SI.getAlignment(), Layout,
798 SI.getModule()->getDataLayout()))
Richard Sandiford8ee1b772013-11-22 16:58:05 +0000799 return false;
800
801 unsigned NumElems = Layout.VecTy->getNumElements();
Duncan P. N. Exon Smithbe4d8cb2015-10-13 19:26:58 +0000802 IRBuilder<> Builder(&SI);
Richard Sandiford8ee1b772013-11-22 16:58:05 +0000803 Scatterer Ptr = scatter(&SI, SI.getPointerOperand());
804 Scatterer Val = scatter(&SI, FullValue);
805
806 ValueVector Stores;
807 Stores.resize(NumElems);
808 for (unsigned I = 0; I < NumElems; ++I) {
809 unsigned Align = Layout.getElemAlign(I);
810 Stores[I] = Builder.CreateAlignedStore(Val[I], Ptr[I], Align);
811 }
812 transferMetadata(&SI, Stores);
813 return true;
814}
815
Mikael Holmenb6f76002018-11-21 14:00:17 +0000816bool ScalarizerVisitor::visitCallInst(CallInst &CI) {
Matt Arsenault7cddfed2016-07-25 20:02:54 +0000817 return splitCall(CI);
818}
819
Richard Sandiford8ee1b772013-11-22 16:58:05 +0000820// Delete the instructions that we scalarized. If a full vector result
821// is still needed, recreate it using InsertElements.
Mikael Holmenb6f76002018-11-21 14:00:17 +0000822bool ScalarizerVisitor::finish() {
Matt Wala878c1442015-07-23 20:53:46 +0000823 // The presence of data in Gathered or Scattered indicates changes
824 // made to the Function.
825 if (Gathered.empty() && Scattered.empty())
Richard Sandiford8ee1b772013-11-22 16:58:05 +0000826 return false;
Benjamin Kramer135f7352016-06-26 12:28:59 +0000827 for (const auto &GMI : Gathered) {
828 Instruction *Op = GMI.first;
829 ValueVector &CV = *GMI.second;
Richard Sandiford8ee1b772013-11-22 16:58:05 +0000830 if (!Op->use_empty()) {
831 // The value is still needed, so recreate it using a series of
832 // InsertElements.
833 Type *Ty = Op->getType();
834 Value *Res = UndefValue::get(Ty);
Richard Sandiford1fb5c132013-12-23 14:51:56 +0000835 BasicBlock *BB = Op->getParent();
Richard Sandiford8ee1b772013-11-22 16:58:05 +0000836 unsigned Count = Ty->getVectorNumElements();
Duncan P. N. Exon Smithbe4d8cb2015-10-13 19:26:58 +0000837 IRBuilder<> Builder(Op);
Richard Sandiford1fb5c132013-12-23 14:51:56 +0000838 if (isa<PHINode>(Op))
839 Builder.SetInsertPoint(BB, BB->getFirstInsertionPt());
Richard Sandiford8ee1b772013-11-22 16:58:05 +0000840 for (unsigned I = 0; I < Count; ++I)
841 Res = Builder.CreateInsertElement(Res, CV[I], Builder.getInt32(I),
842 Op->getName() + ".upto" + Twine(I));
843 Res->takeName(Op);
844 Op->replaceAllUsesWith(Res);
845 }
846 Op->eraseFromParent();
847 }
848 Gathered.clear();
849 Scattered.clear();
850 return true;
851}
852
Mikael Holmenb6f76002018-11-21 14:00:17 +0000853PreservedAnalyses ScalarizerPass::run(Function &F, FunctionAnalysisManager &AM) {
854 Module &M = *F.getParent();
855 unsigned ParallelLoopAccessMDKind =
856 M.getContext().getMDKindID("llvm.mem.parallel_loop_access");
857 ScalarizerVisitor Impl(ParallelLoopAccessMDKind);
Fedor Sergeev59246b62018-11-21 22:01:19 +0000858 bool Changed = Impl.visit(F);
859 return Changed ? PreservedAnalyses::none() : PreservedAnalyses::all();
Richard Sandiford8ee1b772013-11-22 16:58:05 +0000860}