blob: b6f01d32db34620bb8d56bb09c169a3f6b8d234e [file] [log] [blame]
Chris Lattnerec97a902010-01-05 05:36:20 +00001//===- InstCombineVectorOps.cpp -------------------------------------------===//
2//
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
Chris Lattnerec97a902010-01-05 05:36:20 +00006//
7//===----------------------------------------------------------------------===//
8//
9// This file implements instcombine for ExtractElement, InsertElement and
10// ShuffleVector.
11//
12//===----------------------------------------------------------------------===//
13
Chandler Carrutha9174582015-01-22 05:25:13 +000014#include "InstCombineInternal.h"
Eugene Zelenko7f0f9bc2017-10-24 21:24:53 +000015#include "llvm/ADT/APInt.h"
16#include "llvm/ADT/ArrayRef.h"
JF Bastiend52c9902015-02-25 22:30:51 +000017#include "llvm/ADT/DenseMap.h"
Eugene Zelenko7f0f9bc2017-10-24 21:24:53 +000018#include "llvm/ADT/STLExtras.h"
Benjamin Kramerec228d72020-04-13 20:36:31 +020019#include "llvm/ADT/SmallBitVector.h"
Eugene Zelenko7f0f9bc2017-10-24 21:24:53 +000020#include "llvm/ADT/SmallVector.h"
David Majnemer599ca442015-07-13 01:15:53 +000021#include "llvm/Analysis/InstructionSimplify.h"
22#include "llvm/Analysis/VectorUtils.h"
Eugene Zelenko7f0f9bc2017-10-24 21:24:53 +000023#include "llvm/IR/BasicBlock.h"
24#include "llvm/IR/Constant.h"
25#include "llvm/IR/Constants.h"
26#include "llvm/IR/DerivedTypes.h"
27#include "llvm/IR/InstrTypes.h"
28#include "llvm/IR/Instruction.h"
29#include "llvm/IR/Instructions.h"
30#include "llvm/IR/Operator.h"
Chandler Carruth820a9082014-03-04 11:08:18 +000031#include "llvm/IR/PatternMatch.h"
Eugene Zelenko7f0f9bc2017-10-24 21:24:53 +000032#include "llvm/IR/Type.h"
33#include "llvm/IR/User.h"
34#include "llvm/IR/Value.h"
35#include "llvm/Support/Casting.h"
36#include "llvm/Support/ErrorHandling.h"
37#include "llvm/Transforms/InstCombine/InstCombineWorklist.h"
38#include <cassert>
39#include <cstdint>
40#include <iterator>
41#include <utility>
42
Chris Lattnerec97a902010-01-05 05:36:20 +000043using namespace llvm;
Nadav Rotem7df85092013-01-15 23:43:14 +000044using namespace PatternMatch;
Chris Lattnerec97a902010-01-05 05:36:20 +000045
Chandler Carruth964daaa2014-04-22 02:55:47 +000046#define DEBUG_TYPE "instcombine"
47
Sanjay Patel6eccf482015-09-09 15:24:36 +000048/// Return true if the value is cheaper to scalarize than it is to leave as a
Sanjay Patele51d5bd2018-12-18 19:07:38 +000049/// vector operation. IsConstantExtractIndex indicates whether we are extracting
50/// one known element from a vector constant.
51///
52/// FIXME: It's possible to create more instructions than previously existed.
53static bool cheapToScalarize(Value *V, bool IsConstantExtractIndex) {
54 // If we can pick a scalar constant value out of a vector, that is free.
55 if (auto *C = dyn_cast<Constant>(V))
56 return IsConstantExtractIndex || C->getSplatValue();
Chris Lattner8326bd82012-01-26 00:42:34 +000057
Sanjay Patele51d5bd2018-12-18 19:07:38 +000058 // An insertelement to the same constant index as our extract will simplify
59 // to the scalar inserted element. An insertelement to a different constant
60 // index is irrelevant to our extract.
61 if (match(V, m_InsertElement(m_Value(), m_Value(), m_ConstantInt())))
62 return IsConstantExtractIndex;
Bob Wilson8ecf98b2010-10-29 22:20:43 +000063
Sanjay Patele51d5bd2018-12-18 19:07:38 +000064 if (match(V, m_OneUse(m_Load(m_Value()))))
Chris Lattnerec97a902010-01-05 05:36:20 +000065 return true;
Sanjay Patele51d5bd2018-12-18 19:07:38 +000066
Simon Molld871ef42020-03-10 16:05:31 +010067 if (match(V, m_OneUse(m_UnOp())))
68 return true;
69
Sanjay Patele51d5bd2018-12-18 19:07:38 +000070 Value *V0, *V1;
71 if (match(V, m_OneUse(m_BinOp(m_Value(V0), m_Value(V1)))))
72 if (cheapToScalarize(V0, IsConstantExtractIndex) ||
73 cheapToScalarize(V1, IsConstantExtractIndex))
Chris Lattnerec97a902010-01-05 05:36:20 +000074 return true;
Sanjay Patele51d5bd2018-12-18 19:07:38 +000075
76 CmpInst::Predicate UnusedPred;
77 if (match(V, m_OneUse(m_Cmp(UnusedPred, m_Value(V0), m_Value(V1)))))
78 if (cheapToScalarize(V0, IsConstantExtractIndex) ||
79 cheapToScalarize(V1, IsConstantExtractIndex))
Chris Lattnerec97a902010-01-05 05:36:20 +000080 return true;
Bob Wilson8ecf98b2010-10-29 22:20:43 +000081
Chris Lattnerec97a902010-01-05 05:36:20 +000082 return false;
83}
84
Michael Kupersteina0c6ae02016-06-06 23:38:33 +000085// If we have a PHI node with a vector type that is only used to feed
Matt Arsenault38874732013-08-28 22:17:26 +000086// itself and be an operand of extractelement at a constant location,
87// try to replace the PHI of the vector type with a PHI of a scalar type.
Anat Shemer0c95efa2013-04-18 19:35:39 +000088Instruction *InstCombiner::scalarizePHI(ExtractElementInst &EI, PHINode *PN) {
Michael Kupersteina0c6ae02016-06-06 23:38:33 +000089 SmallVector<Instruction *, 2> Extracts;
90 // The users we want the PHI to have are:
91 // 1) The EI ExtractElement (we already know this)
92 // 2) Possibly more ExtractElements with the same index.
93 // 3) Another operand, which will feed back into the PHI.
94 Instruction *PHIUser = nullptr;
95 for (auto U : PN->users()) {
96 if (ExtractElementInst *EU = dyn_cast<ExtractElementInst>(U)) {
97 if (EI.getIndexOperand() == EU->getIndexOperand())
98 Extracts.push_back(EU);
99 else
100 return nullptr;
101 } else if (!PHIUser) {
102 PHIUser = cast<Instruction>(U);
103 } else {
104 return nullptr;
105 }
106 }
Anat Shemer0c95efa2013-04-18 19:35:39 +0000107
Michael Kupersteina0c6ae02016-06-06 23:38:33 +0000108 if (!PHIUser)
109 return nullptr;
Anat Shemer0c95efa2013-04-18 19:35:39 +0000110
111 // Verify that this PHI user has one use, which is the PHI itself,
112 // and that it is a binary operation which is cheap to scalarize.
Eugene Zelenko7f0f9bc2017-10-24 21:24:53 +0000113 // otherwise return nullptr.
Chandler Carruthcdf47882014-03-09 03:16:01 +0000114 if (!PHIUser->hasOneUse() || !(PHIUser->user_back() == PN) ||
Sanjay Patel431e1142015-11-17 17:24:08 +0000115 !(isa<BinaryOperator>(PHIUser)) || !cheapToScalarize(PHIUser, true))
Craig Topperf40110f2014-04-25 05:29:35 +0000116 return nullptr;
Anat Shemer0c95efa2013-04-18 19:35:39 +0000117
118 // Create a scalar PHI node that will replace the vector PHI node
119 // just before the current PHI node.
Joey Goulyb34294d2013-05-24 12:33:28 +0000120 PHINode *scalarPHI = cast<PHINode>(InsertNewInstWith(
121 PHINode::Create(EI.getType(), PN->getNumIncomingValues(), ""), *PN));
Anat Shemer0c95efa2013-04-18 19:35:39 +0000122 // Scalarize each PHI operand.
Joey Goulyb34294d2013-05-24 12:33:28 +0000123 for (unsigned i = 0; i < PN->getNumIncomingValues(); i++) {
Anat Shemer0c95efa2013-04-18 19:35:39 +0000124 Value *PHIInVal = PN->getIncomingValue(i);
125 BasicBlock *inBB = PN->getIncomingBlock(i);
126 Value *Elt = EI.getIndexOperand();
127 // If the operand is the PHI induction variable:
128 if (PHIInVal == PHIUser) {
129 // Scalarize the binary operation. Its first operand is the
Sanjay Patel70af1fd2014-07-07 22:13:58 +0000130 // scalar PHI, and the second operand is extracted from the other
Anat Shemer0c95efa2013-04-18 19:35:39 +0000131 // vector operand.
132 BinaryOperator *B0 = cast<BinaryOperator>(PHIUser);
Joey Goulyb34294d2013-05-24 12:33:28 +0000133 unsigned opId = (B0->getOperand(0) == PN) ? 1 : 0;
Joey Gouly83699282013-05-24 12:29:54 +0000134 Value *Op = InsertNewInstWith(
135 ExtractElementInst::Create(B0->getOperand(opId), Elt,
136 B0->getOperand(opId)->getName() + ".Elt"),
137 *B0);
Anat Shemer0c95efa2013-04-18 19:35:39 +0000138 Value *newPHIUser = InsertNewInstWith(
Owen Anderson7ea02fc2016-03-01 19:35:52 +0000139 BinaryOperator::CreateWithCopiedFlags(B0->getOpcode(),
140 scalarPHI, Op, B0), *B0);
Anat Shemer0c95efa2013-04-18 19:35:39 +0000141 scalarPHI->addIncoming(newPHIUser, inBB);
142 } else {
143 // Scalarize PHI input:
Joey Goulyb34294d2013-05-24 12:33:28 +0000144 Instruction *newEI = ExtractElementInst::Create(PHIInVal, Elt, "");
Anat Shemer0c95efa2013-04-18 19:35:39 +0000145 // Insert the new instruction into the predecessor basic block.
146 Instruction *pos = dyn_cast<Instruction>(PHIInVal);
147 BasicBlock::iterator InsertPos;
148 if (pos && !isa<PHINode>(pos)) {
Duncan P. N. Exon Smith9f8aaf22015-10-13 16:59:33 +0000149 InsertPos = ++pos->getIterator();
Anat Shemer0c95efa2013-04-18 19:35:39 +0000150 } else {
151 InsertPos = inBB->getFirstInsertionPt();
152 }
153
154 InsertNewInstWith(newEI, *InsertPos);
155
156 scalarPHI->addIncoming(newEI, inBB);
157 }
158 }
Michael Kupersteina0c6ae02016-06-06 23:38:33 +0000159
160 for (auto E : Extracts)
161 replaceInstUsesWith(*E, scalarPHI);
162
163 return &EI;
Anat Shemer0c95efa2013-04-18 19:35:39 +0000164}
165
Sanjay Patel4674c772018-09-24 20:41:22 +0000166static Instruction *foldBitcastExtElt(ExtractElementInst &Ext,
Sanjay Patel31b07192018-10-01 14:40:00 +0000167 InstCombiner::BuilderTy &Builder,
168 bool IsBigEndian) {
Sanjay Patel4674c772018-09-24 20:41:22 +0000169 Value *X;
170 uint64_t ExtIndexC;
171 if (!match(Ext.getVectorOperand(), m_BitCast(m_Value(X))) ||
172 !X->getType()->isVectorTy() ||
173 !match(Ext.getIndexOperand(), m_ConstantInt(ExtIndexC)))
174 return nullptr;
175
176 // If this extractelement is using a bitcast from a vector of the same number
177 // of elements, see if we can find the source element from the source vector:
178 // extelt (bitcast VecX), IndexC --> bitcast X[IndexC]
Christopher Tetreault155740c2020-04-08 10:42:22 -0700179 auto *SrcTy = cast<VectorType>(X->getType());
Sanjay Patel4674c772018-09-24 20:41:22 +0000180 Type *DestTy = Ext.getType();
Christopher Tetreault155740c2020-04-08 10:42:22 -0700181 unsigned NumSrcElts = SrcTy->getNumElements();
Sanjay Patel4674c772018-09-24 20:41:22 +0000182 unsigned NumElts = Ext.getVectorOperandType()->getNumElements();
183 if (NumSrcElts == NumElts)
184 if (Value *Elt = findScalarElement(X, ExtIndexC))
185 return new BitCastInst(Elt, DestTy);
186
Sanjay Patel31b07192018-10-01 14:40:00 +0000187 // If the source elements are wider than the destination, try to shift and
188 // truncate a subset of scalar bits of an insert op.
Sanjay Patel3746e112018-10-04 16:25:05 +0000189 if (NumSrcElts < NumElts) {
Sanjay Patel31b07192018-10-01 14:40:00 +0000190 Value *Scalar;
191 uint64_t InsIndexC;
192 if (!match(X, m_InsertElement(m_Value(), m_Value(Scalar),
193 m_ConstantInt(InsIndexC))))
194 return nullptr;
195
196 // The extract must be from the subset of vector elements that we inserted
197 // into. Example: if we inserted element 1 of a <2 x i64> and we are
198 // extracting an i16 (narrowing ratio = 4), then this extract must be from 1
199 // of elements 4-7 of the bitcasted vector.
200 unsigned NarrowingRatio = NumElts / NumSrcElts;
201 if (ExtIndexC / NarrowingRatio != InsIndexC)
202 return nullptr;
203
204 // We are extracting part of the original scalar. How that scalar is
205 // inserted into the vector depends on the endian-ness. Example:
206 // Vector Byte Elt Index: 0 1 2 3 4 5 6 7
207 // +--+--+--+--+--+--+--+--+
208 // inselt <2 x i32> V, <i32> S, 1: |V0|V1|V2|V3|S0|S1|S2|S3|
209 // extelt <4 x i16> V', 3: | |S2|S3|
210 // +--+--+--+--+--+--+--+--+
211 // If this is little-endian, S2|S3 are the MSB of the 32-bit 'S' value.
212 // If this is big-endian, S2|S3 are the LSB of the 32-bit 'S' value.
213 // In this example, we must right-shift little-endian. Big-endian is just a
214 // truncate.
215 unsigned Chunk = ExtIndexC % NarrowingRatio;
216 if (IsBigEndian)
217 Chunk = NarrowingRatio - 1 - Chunk;
Sanjay Patel3746e112018-10-04 16:25:05 +0000218
219 // Bail out if this is an FP vector to FP vector sequence. That would take
220 // more instructions than we started with unless there is no shift, and it
221 // may not be handled as well in the backend.
222 bool NeedSrcBitcast = SrcTy->getScalarType()->isFloatingPointTy();
223 bool NeedDestBitcast = DestTy->isFloatingPointTy();
224 if (NeedSrcBitcast && NeedDestBitcast)
225 return nullptr;
226
227 unsigned SrcWidth = SrcTy->getScalarSizeInBits();
228 unsigned DestWidth = DestTy->getPrimitiveSizeInBits();
229 unsigned ShAmt = Chunk * DestWidth;
230
231 // TODO: This limitation is more strict than necessary. We could sum the
232 // number of new instructions and subtract the number eliminated to know if
233 // we can proceed.
234 if (!X->hasOneUse() || !Ext.getVectorOperand()->hasOneUse())
235 if (NeedSrcBitcast || NeedDestBitcast)
236 return nullptr;
237
238 if (NeedSrcBitcast) {
239 Type *SrcIntTy = IntegerType::getIntNTy(Scalar->getContext(), SrcWidth);
240 Scalar = Builder.CreateBitCast(Scalar, SrcIntTy);
241 }
242
Sanjay Patel31b07192018-10-01 14:40:00 +0000243 if (ShAmt) {
244 // Bail out if we could end with more instructions than we started with.
245 if (!Ext.getVectorOperand()->hasOneUse())
246 return nullptr;
247 Scalar = Builder.CreateLShr(Scalar, ShAmt);
248 }
Sanjay Patel3746e112018-10-04 16:25:05 +0000249
250 if (NeedDestBitcast) {
251 Type *DestIntTy = IntegerType::getIntNTy(Scalar->getContext(), DestWidth);
252 return new BitCastInst(Builder.CreateTrunc(Scalar, DestIntTy), DestTy);
253 }
Sanjay Patel31b07192018-10-01 14:40:00 +0000254 return new TruncInst(Scalar, DestTy);
255 }
256
Sanjay Patel4674c772018-09-24 20:41:22 +0000257 return nullptr;
258}
259
Piotr Sobczaka861c9a2019-10-21 08:12:47 +0000260/// Find elements of V demanded by UserInstr.
261static APInt findDemandedEltsBySingleUser(Value *V, Instruction *UserInstr) {
Christopher Tetreault155740c2020-04-08 10:42:22 -0700262 unsigned VWidth = cast<VectorType>(V->getType())->getNumElements();
Piotr Sobczaka861c9a2019-10-21 08:12:47 +0000263
264 // Conservatively assume that all elements are needed.
265 APInt UsedElts(APInt::getAllOnesValue(VWidth));
266
267 switch (UserInstr->getOpcode()) {
268 case Instruction::ExtractElement: {
269 ExtractElementInst *EEI = cast<ExtractElementInst>(UserInstr);
270 assert(EEI->getVectorOperand() == V);
271 ConstantInt *EEIIndexC = dyn_cast<ConstantInt>(EEI->getIndexOperand());
272 if (EEIIndexC && EEIIndexC->getValue().ult(VWidth)) {
273 UsedElts = APInt::getOneBitSet(VWidth, EEIIndexC->getZExtValue());
274 }
275 break;
276 }
277 case Instruction::ShuffleVector: {
278 ShuffleVectorInst *Shuffle = cast<ShuffleVectorInst>(UserInstr);
Christopher Tetreault155740c2020-04-08 10:42:22 -0700279 unsigned MaskNumElts =
280 cast<VectorType>(UserInstr->getType())->getNumElements();
Piotr Sobczaka861c9a2019-10-21 08:12:47 +0000281
282 UsedElts = APInt(VWidth, 0);
283 for (unsigned i = 0; i < MaskNumElts; i++) {
284 unsigned MaskVal = Shuffle->getMaskValue(i);
285 if (MaskVal == -1u || MaskVal >= 2 * VWidth)
286 continue;
287 if (Shuffle->getOperand(0) == V && (MaskVal < VWidth))
288 UsedElts.setBit(MaskVal);
289 if (Shuffle->getOperand(1) == V &&
290 ((MaskVal >= VWidth) && (MaskVal < 2 * VWidth)))
291 UsedElts.setBit(MaskVal - VWidth);
292 }
293 break;
294 }
295 default:
296 break;
297 }
298 return UsedElts;
299}
300
301/// Find union of elements of V demanded by all its users.
302/// If it is known by querying findDemandedEltsBySingleUser that
303/// no user demands an element of V, then the corresponding bit
304/// remains unset in the returned value.
305static APInt findDemandedEltsByAllUsers(Value *V) {
Christopher Tetreault155740c2020-04-08 10:42:22 -0700306 unsigned VWidth = cast<VectorType>(V->getType())->getNumElements();
Piotr Sobczaka861c9a2019-10-21 08:12:47 +0000307
308 APInt UnionUsedElts(VWidth, 0);
309 for (const Use &U : V->uses()) {
310 if (Instruction *I = dyn_cast<Instruction>(U.getUser())) {
311 UnionUsedElts |= findDemandedEltsBySingleUser(V, I);
312 } else {
313 UnionUsedElts = APInt::getAllOnesValue(VWidth);
314 break;
315 }
316
317 if (UnionUsedElts.isAllOnesValue())
318 break;
319 }
320
321 return UnionUsedElts;
322}
323
Chris Lattnerec97a902010-01-05 05:36:20 +0000324Instruction *InstCombiner::visitExtractElementInst(ExtractElementInst &EI) {
Sanjay Patel47b3b4b2018-12-05 21:57:51 +0000325 Value *SrcVec = EI.getVectorOperand();
326 Value *Index = EI.getIndexOperand();
327 if (Value *V = SimplifyExtractElementInst(SrcVec, Index,
Craig Toppera4205622017-06-09 03:21:29 +0000328 SQ.getWithInstruction(&EI)))
Sanjay Patel4b198802016-02-01 22:23:39 +0000329 return replaceInstUsesWith(EI, V);
David Majnemer599ca442015-07-13 01:15:53 +0000330
Chris Lattnerec97a902010-01-05 05:36:20 +0000331 // If extracting a specified index from the vector, see if we can recursively
332 // find a previously computed scalar that was inserted into the vector.
Sanjay Patel47b3b4b2018-12-05 21:57:51 +0000333 auto *IndexC = dyn_cast<ConstantInt>(Index);
334 if (IndexC) {
Sanjay Patel7a526262018-09-24 16:39:03 +0000335 unsigned NumElts = EI.getVectorOperandType()->getNumElements();
Bob Wilson8ecf98b2010-10-29 22:20:43 +0000336
Simon Pilgrime7d032f2017-12-27 12:00:18 +0000337 // InstSimplify should handle cases where the index is invalid.
Sanjay Patel47b3b4b2018-12-05 21:57:51 +0000338 if (!IndexC->getValue().ule(NumElts))
Simon Pilgrime7d032f2017-12-27 12:00:18 +0000339 return nullptr;
340
Chris Lattnerec97a902010-01-05 05:36:20 +0000341 // This instruction only demands the single element from the input vector.
Piotr Sobczaka861c9a2019-10-21 08:12:47 +0000342 if (NumElts != 1) {
343 // If the input vector has a single use, simplify it based on this use
344 // property.
345 if (SrcVec->hasOneUse()) {
346 APInt UndefElts(NumElts, 0);
347 APInt DemandedElts(NumElts, 0);
348 DemandedElts.setBit(IndexC->getZExtValue());
349 if (Value *V =
Nikita Popov53d20902020-03-29 20:07:46 +0200350 SimplifyDemandedVectorElts(SrcVec, DemandedElts, UndefElts))
351 return replaceOperand(EI, 0, V);
Piotr Sobczaka861c9a2019-10-21 08:12:47 +0000352 } else {
353 // If the input vector has multiple uses, simplify it based on a union
354 // of all elements used.
355 APInt DemandedElts = findDemandedEltsByAllUsers(SrcVec);
356 if (!DemandedElts.isAllOnesValue()) {
357 APInt UndefElts(NumElts, 0);
358 if (Value *V = SimplifyDemandedVectorElts(
359 SrcVec, DemandedElts, UndefElts, 0 /* Depth */,
360 true /* AllowMultipleUsers */)) {
361 if (V != SrcVec) {
362 SrcVec->replaceAllUsesWith(V);
363 return &EI;
364 }
365 }
366 }
Chris Lattnerec97a902010-01-05 05:36:20 +0000367 }
368 }
Sanjay Patel31b07192018-10-01 14:40:00 +0000369 if (Instruction *I = foldBitcastExtElt(EI, Builder, DL.isBigEndian()))
Sanjay Patel4674c772018-09-24 20:41:22 +0000370 return I;
Anat Shemer0c95efa2013-04-18 19:35:39 +0000371
372 // If there's a vector PHI feeding a scalar use through this extractelement
373 // instruction, try to scalarize the PHI.
Sanjay Patel47b3b4b2018-12-05 21:57:51 +0000374 if (auto *Phi = dyn_cast<PHINode>(SrcVec))
375 if (Instruction *ScalarPHI = scalarizePHI(EI, Phi))
376 return ScalarPHI;
Chris Lattnerec97a902010-01-05 05:36:20 +0000377 }
Bob Wilson8ecf98b2010-10-29 22:20:43 +0000378
Simon Molld871ef42020-03-10 16:05:31 +0100379 // TODO come up with a n-ary matcher that subsumes both unary and
380 // binary matchers.
381 UnaryOperator *UO;
382 if (match(SrcVec, m_UnOp(UO)) && cheapToScalarize(SrcVec, IndexC)) {
383 // extelt (unop X), Index --> unop (extelt X, Index)
384 Value *X = UO->getOperand(0);
385 Value *E = Builder.CreateExtractElement(X, Index);
386 return UnaryOperator::CreateWithCopiedFlags(UO->getOpcode(), E, UO);
387 }
388
Sanjay Patel47b3b4b2018-12-05 21:57:51 +0000389 BinaryOperator *BO;
390 if (match(SrcVec, m_BinOp(BO)) && cheapToScalarize(SrcVec, IndexC)) {
391 // extelt (binop X, Y), Index --> binop (extelt X, Index), (extelt Y, Index)
392 Value *X = BO->getOperand(0), *Y = BO->getOperand(1);
393 Value *E0 = Builder.CreateExtractElement(X, Index);
394 Value *E1 = Builder.CreateExtractElement(Y, Index);
395 return BinaryOperator::CreateWithCopiedFlags(BO->getOpcode(), E0, E1, BO);
396 }
397
Matt Arsenault9ccde612018-12-10 21:50:54 +0000398 Value *X, *Y;
399 CmpInst::Predicate Pred;
400 if (match(SrcVec, m_Cmp(Pred, m_Value(X), m_Value(Y))) &&
401 cheapToScalarize(SrcVec, IndexC)) {
402 // extelt (cmp X, Y), Index --> cmp (extelt X, Index), (extelt Y, Index)
403 Value *E0 = Builder.CreateExtractElement(X, Index);
404 Value *E1 = Builder.CreateExtractElement(Y, Index);
405 return CmpInst::Create(cast<CmpInst>(SrcVec)->getOpcode(), Pred, E0, E1);
406 }
407
Sanjay Patel47b3b4b2018-12-05 21:57:51 +0000408 if (auto *I = dyn_cast<Instruction>(SrcVec)) {
409 if (auto *IE = dyn_cast<InsertElementInst>(I)) {
Chris Lattnerec97a902010-01-05 05:36:20 +0000410 // Extracting the inserted element?
Sanjay Patel47b3b4b2018-12-05 21:57:51 +0000411 if (IE->getOperand(2) == Index)
Sanjay Patel4b198802016-02-01 22:23:39 +0000412 return replaceInstUsesWith(EI, IE->getOperand(1));
Chris Lattnerec97a902010-01-05 05:36:20 +0000413 // If the inserted and extracted elements are constants, they must not
414 // be the same value, extract from the pre-inserted value instead.
Nikita Popov878cb382020-01-31 22:23:33 +0100415 if (isa<Constant>(IE->getOperand(2)) && IndexC)
416 return replaceOperand(EI, 0, IE->getOperand(0));
Sanjay Patel47b3b4b2018-12-05 21:57:51 +0000417 } else if (auto *SVI = dyn_cast<ShuffleVectorInst>(I)) {
Chris Lattnerec97a902010-01-05 05:36:20 +0000418 // If this is extracting an element from a shufflevector, figure out where
419 // it came from and extract from the appropriate input element instead.
Sanjay Patel47b3b4b2018-12-05 21:57:51 +0000420 if (auto *Elt = dyn_cast<ConstantInt>(Index)) {
Eli Friedman303c81c2011-10-21 19:11:34 +0000421 int SrcIdx = SVI->getMaskValue(Elt->getZExtValue());
Chris Lattnerec97a902010-01-05 05:36:20 +0000422 Value *Src;
423 unsigned LHSWidth =
Christopher Tetreault155740c2020-04-08 10:42:22 -0700424 cast<VectorType>(SVI->getOperand(0)->getType())->getNumElements();
Bob Wilson8ecf98b2010-10-29 22:20:43 +0000425
Bob Wilson11ee4562010-10-29 22:03:05 +0000426 if (SrcIdx < 0)
Sanjay Patel4b198802016-02-01 22:23:39 +0000427 return replaceInstUsesWith(EI, UndefValue::get(EI.getType()));
Bob Wilson11ee4562010-10-29 22:03:05 +0000428 if (SrcIdx < (int)LHSWidth)
Chris Lattnerec97a902010-01-05 05:36:20 +0000429 Src = SVI->getOperand(0);
Bob Wilson11ee4562010-10-29 22:03:05 +0000430 else {
Chris Lattnerec97a902010-01-05 05:36:20 +0000431 SrcIdx -= LHSWidth;
432 Src = SVI->getOperand(1);
Chris Lattnerec97a902010-01-05 05:36:20 +0000433 }
Chris Lattner229907c2011-07-18 04:54:35 +0000434 Type *Int32Ty = Type::getInt32Ty(EI.getContext());
Chris Lattnerec97a902010-01-05 05:36:20 +0000435 return ExtractElementInst::Create(Src,
Bob Wilson9d07f392010-10-29 22:03:07 +0000436 ConstantInt::get(Int32Ty,
Chris Lattnerec97a902010-01-05 05:36:20 +0000437 SrcIdx, false));
438 }
Sanjay Patel47b3b4b2018-12-05 21:57:51 +0000439 } else if (auto *CI = dyn_cast<CastInst>(I)) {
Sanjay Patelb67076c2015-11-29 22:09:34 +0000440 // Canonicalize extractelement(cast) -> cast(extractelement).
441 // Bitcasts can change the number of vector elements, and they cost
442 // nothing.
Anat Shemer55703182013-04-18 19:56:44 +0000443 if (CI->hasOneUse() && (CI->getOpcode() != Instruction::BitCast)) {
Sanjay Patel47b3b4b2018-12-05 21:57:51 +0000444 Value *EE = Builder.CreateExtractElement(CI->getOperand(0), Index);
Nadav Rotemd74b72b2011-03-31 22:57:29 +0000445 return CastInst::Create(CI->getOpcode(), EE, EI.getType());
446 }
Chris Lattnerec97a902010-01-05 05:36:20 +0000447 }
Chris Lattnerec97a902010-01-05 05:36:20 +0000448 }
Craig Topperf40110f2014-04-25 05:29:35 +0000449 return nullptr;
Chris Lattnerec97a902010-01-05 05:36:20 +0000450}
451
Sanjay Patel6eccf482015-09-09 15:24:36 +0000452/// If V is a shuffle of values that ONLY returns elements from either LHS or
453/// RHS, return the shuffle mask and true. Otherwise, return false.
Sanjay Patel431e1142015-11-17 17:24:08 +0000454static bool collectSingleShuffleElements(Value *V, Value *LHS, Value *RHS,
Chris Lattner0256be92012-01-27 03:08:05 +0000455 SmallVectorImpl<Constant*> &Mask) {
Tim Northoverfad27612014-03-07 10:24:44 +0000456 assert(LHS->getType() == RHS->getType() &&
Chris Lattnerec97a902010-01-05 05:36:20 +0000457 "Invalid CollectSingleShuffleElements");
Christopher Tetreault155740c2020-04-08 10:42:22 -0700458 unsigned NumElts = cast<VectorType>(V->getType())->getNumElements();
Bob Wilson8ecf98b2010-10-29 22:20:43 +0000459
Chris Lattnerec97a902010-01-05 05:36:20 +0000460 if (isa<UndefValue>(V)) {
461 Mask.assign(NumElts, UndefValue::get(Type::getInt32Ty(V->getContext())));
462 return true;
463 }
Bob Wilson8ecf98b2010-10-29 22:20:43 +0000464
Chris Lattnerec97a902010-01-05 05:36:20 +0000465 if (V == LHS) {
466 for (unsigned i = 0; i != NumElts; ++i)
467 Mask.push_back(ConstantInt::get(Type::getInt32Ty(V->getContext()), i));
468 return true;
469 }
Bob Wilson8ecf98b2010-10-29 22:20:43 +0000470
Chris Lattnerec97a902010-01-05 05:36:20 +0000471 if (V == RHS) {
472 for (unsigned i = 0; i != NumElts; ++i)
473 Mask.push_back(ConstantInt::get(Type::getInt32Ty(V->getContext()),
474 i+NumElts));
475 return true;
476 }
Bob Wilson8ecf98b2010-10-29 22:20:43 +0000477
Chris Lattnerec97a902010-01-05 05:36:20 +0000478 if (InsertElementInst *IEI = dyn_cast<InsertElementInst>(V)) {
479 // If this is an insert of an extract from some other vector, include it.
480 Value *VecOp = IEI->getOperand(0);
481 Value *ScalarOp = IEI->getOperand(1);
482 Value *IdxOp = IEI->getOperand(2);
Bob Wilson8ecf98b2010-10-29 22:20:43 +0000483
Chris Lattnerec97a902010-01-05 05:36:20 +0000484 if (!isa<ConstantInt>(IdxOp))
485 return false;
486 unsigned InsertedIdx = cast<ConstantInt>(IdxOp)->getZExtValue();
Bob Wilson8ecf98b2010-10-29 22:20:43 +0000487
Chris Lattnerec97a902010-01-05 05:36:20 +0000488 if (isa<UndefValue>(ScalarOp)) { // inserting undef into vector.
Sanjay Patel70af1fd2014-07-07 22:13:58 +0000489 // We can handle this if the vector we are inserting into is
Chris Lattnerec97a902010-01-05 05:36:20 +0000490 // transitively ok.
Sanjay Patel431e1142015-11-17 17:24:08 +0000491 if (collectSingleShuffleElements(VecOp, LHS, RHS, Mask)) {
Chris Lattnerec97a902010-01-05 05:36:20 +0000492 // If so, update the mask to reflect the inserted undef.
493 Mask[InsertedIdx] = UndefValue::get(Type::getInt32Ty(V->getContext()));
494 return true;
Bob Wilson8ecf98b2010-10-29 22:20:43 +0000495 }
Chris Lattnerec97a902010-01-05 05:36:20 +0000496 } else if (ExtractElementInst *EI = dyn_cast<ExtractElementInst>(ScalarOp)){
Tim Northoverfad27612014-03-07 10:24:44 +0000497 if (isa<ConstantInt>(EI->getOperand(1))) {
Chris Lattnerec97a902010-01-05 05:36:20 +0000498 unsigned ExtractedIdx =
499 cast<ConstantInt>(EI->getOperand(1))->getZExtValue();
Christopher Tetreault155740c2020-04-08 10:42:22 -0700500 unsigned NumLHSElts =
501 cast<VectorType>(LHS->getType())->getNumElements();
Bob Wilson8ecf98b2010-10-29 22:20:43 +0000502
Chris Lattnerec97a902010-01-05 05:36:20 +0000503 // This must be extracting from either LHS or RHS.
504 if (EI->getOperand(0) == LHS || EI->getOperand(0) == RHS) {
Sanjay Patel70af1fd2014-07-07 22:13:58 +0000505 // We can handle this if the vector we are inserting into is
Chris Lattnerec97a902010-01-05 05:36:20 +0000506 // transitively ok.
Sanjay Patel431e1142015-11-17 17:24:08 +0000507 if (collectSingleShuffleElements(VecOp, LHS, RHS, Mask)) {
Chris Lattnerec97a902010-01-05 05:36:20 +0000508 // If so, update the mask to reflect the inserted value.
509 if (EI->getOperand(0) == LHS) {
Bob Wilson8ecf98b2010-10-29 22:20:43 +0000510 Mask[InsertedIdx % NumElts] =
Chris Lattnerec97a902010-01-05 05:36:20 +0000511 ConstantInt::get(Type::getInt32Ty(V->getContext()),
512 ExtractedIdx);
513 } else {
514 assert(EI->getOperand(0) == RHS);
Bob Wilson8ecf98b2010-10-29 22:20:43 +0000515 Mask[InsertedIdx % NumElts] =
Chris Lattnerec97a902010-01-05 05:36:20 +0000516 ConstantInt::get(Type::getInt32Ty(V->getContext()),
Tim Northoverfad27612014-03-07 10:24:44 +0000517 ExtractedIdx + NumLHSElts);
Chris Lattnerec97a902010-01-05 05:36:20 +0000518 }
519 return true;
520 }
521 }
522 }
523 }
524 }
Bob Wilson8ecf98b2010-10-29 22:20:43 +0000525
Chris Lattnerec97a902010-01-05 05:36:20 +0000526 return false;
527}
528
Sanjay Patelae945e72015-12-24 21:17:56 +0000529/// If we have insertion into a vector that is wider than the vector that we
530/// are extracting from, try to widen the source vector to allow a single
531/// shufflevector to replace one or more insert/extract pairs.
532static void replaceExtractElements(InsertElementInst *InsElt,
533 ExtractElementInst *ExtElt,
534 InstCombiner &IC) {
535 VectorType *InsVecType = InsElt->getType();
536 VectorType *ExtVecType = ExtElt->getVectorOperandType();
Christopher Tetreault155740c2020-04-08 10:42:22 -0700537 unsigned NumInsElts = InsVecType->getNumElements();
538 unsigned NumExtElts = ExtVecType->getNumElements();
Sanjay Patelae945e72015-12-24 21:17:56 +0000539
540 // The inserted-to vector must be wider than the extracted-from vector.
541 if (InsVecType->getElementType() != ExtVecType->getElementType() ||
542 NumExtElts >= NumInsElts)
543 return;
544
545 // Create a shuffle mask to widen the extended-from vector using undefined
546 // values. The mask selects all of the values of the original vector followed
547 // by as many undefined values as needed to create a vector of the same length
548 // as the inserted-to vector.
549 SmallVector<Constant *, 16> ExtendMask;
550 IntegerType *IntType = Type::getInt32Ty(InsElt->getContext());
551 for (unsigned i = 0; i < NumExtElts; ++i)
552 ExtendMask.push_back(ConstantInt::get(IntType, i));
553 for (unsigned i = NumExtElts; i < NumInsElts; ++i)
554 ExtendMask.push_back(UndefValue::get(IntType));
555
556 Value *ExtVecOp = ExtElt->getVectorOperand();
Sanjay Patel66fff732016-01-29 20:21:02 +0000557 auto *ExtVecOpInst = dyn_cast<Instruction>(ExtVecOp);
558 BasicBlock *InsertionBlock = (ExtVecOpInst && !isa<PHINode>(ExtVecOpInst))
559 ? ExtVecOpInst->getParent()
560 : ExtElt->getParent();
561
562 // TODO: This restriction matches the basic block check below when creating
563 // new extractelement instructions. If that limitation is removed, this one
564 // could also be removed. But for now, we just bail out to ensure that we
565 // will replace the extractelement instruction that is feeding our
566 // insertelement instruction. This allows the insertelement to then be
567 // replaced by a shufflevector. If the insertelement is not replaced, we can
568 // induce infinite looping because there's an optimization for extractelement
569 // that will delete our widening shuffle. This would trigger another attempt
570 // here to create that shuffle, and we spin forever.
571 if (InsertionBlock != InsElt->getParent())
572 return;
573
Sanjay Patel4e1b5a52016-11-10 00:15:14 +0000574 // TODO: This restriction matches the check in visitInsertElementInst() and
575 // prevents an infinite loop caused by not turning the extract/insert pair
576 // into a shuffle. We really should not need either check, but we're lacking
577 // folds for shufflevectors because we're afraid to generate shuffle masks
578 // that the backend can't handle.
579 if (InsElt->hasOneUse() && isa<InsertElementInst>(InsElt->user_back()))
580 return;
581
Sanjay Patelae945e72015-12-24 21:17:56 +0000582 auto *WideVec = new ShuffleVectorInst(ExtVecOp, UndefValue::get(ExtVecType),
583 ConstantVector::get(ExtendMask));
584
Sanjay Patela1c53472016-01-05 19:09:47 +0000585 // Insert the new shuffle after the vector operand of the extract is defined
Sanjay Pateld72a4582016-01-08 01:39:16 +0000586 // (as long as it's not a PHI) or at the start of the basic block of the
587 // extract, so any subsequent extracts in the same basic block can use it.
588 // TODO: Insert before the earliest ExtractElementInst that is replaced.
Sanjay Pateld72a4582016-01-08 01:39:16 +0000589 if (ExtVecOpInst && !isa<PHINode>(ExtVecOpInst))
Sanjay Patela1c53472016-01-05 19:09:47 +0000590 WideVec->insertAfter(ExtVecOpInst);
Sanjay Pateld72a4582016-01-08 01:39:16 +0000591 else
Sanjay Patela1c53472016-01-05 19:09:47 +0000592 IC.InsertNewInstWith(WideVec, *ExtElt->getParent()->getFirstInsertionPt());
Sanjay Patela1c53472016-01-05 19:09:47 +0000593
594 // Replace extracts from the original narrow vector with extracts from the new
595 // wide vector.
Sanjay Patelae945e72015-12-24 21:17:56 +0000596 for (User *U : ExtVecOp->users()) {
Sanjay Patela1c53472016-01-05 19:09:47 +0000597 ExtractElementInst *OldExt = dyn_cast<ExtractElementInst>(U);
Sanjay Pateld72a4582016-01-08 01:39:16 +0000598 if (!OldExt || OldExt->getParent() != WideVec->getParent())
Sanjay Patela1c53472016-01-05 19:09:47 +0000599 continue;
600 auto *NewExt = ExtractElementInst::Create(WideVec, OldExt->getOperand(1));
Sven van Haastregt78819e02017-06-05 09:18:10 +0000601 NewExt->insertAfter(OldExt);
Sanjay Patel4b198802016-02-01 22:23:39 +0000602 IC.replaceInstUsesWith(*OldExt, NewExt);
Sanjay Patelae945e72015-12-24 21:17:56 +0000603 }
604}
Tim Northoverfad27612014-03-07 10:24:44 +0000605
606/// We are building a shuffle to create V, which is a sequence of insertelement,
607/// extractelement pairs. If PermittedRHS is set, then we must either use it or
Sanjay Patel70af1fd2014-07-07 22:13:58 +0000608/// not rely on the second vector source. Return a std::pair containing the
Tim Northoverfad27612014-03-07 10:24:44 +0000609/// left and right vectors of the proposed shuffle (or 0), and set the Mask
610/// parameter as required.
611///
612/// Note: we intentionally don't try to fold earlier shuffles since they have
613/// often been chosen carefully to be efficiently implementable on the target.
Eugene Zelenko7f0f9bc2017-10-24 21:24:53 +0000614using ShuffleOps = std::pair<Value *, Value *>;
Tim Northoverfad27612014-03-07 10:24:44 +0000615
Sanjay Patel431e1142015-11-17 17:24:08 +0000616static ShuffleOps collectShuffleElements(Value *V,
Tim Northoverfad27612014-03-07 10:24:44 +0000617 SmallVectorImpl<Constant *> &Mask,
Sanjay Patelae945e72015-12-24 21:17:56 +0000618 Value *PermittedRHS,
619 InstCombiner &IC) {
Tim Northoverfad27612014-03-07 10:24:44 +0000620 assert(V->getType()->isVectorTy() && "Invalid shuffle!");
Christopher Tetreault155740c2020-04-08 10:42:22 -0700621 unsigned NumElts = cast<VectorType>(V->getType())->getNumElements();
Bob Wilson8ecf98b2010-10-29 22:20:43 +0000622
Chris Lattnerec97a902010-01-05 05:36:20 +0000623 if (isa<UndefValue>(V)) {
624 Mask.assign(NumElts, UndefValue::get(Type::getInt32Ty(V->getContext())));
Tim Northoverfad27612014-03-07 10:24:44 +0000625 return std::make_pair(
626 PermittedRHS ? UndefValue::get(PermittedRHS->getType()) : V, nullptr);
Chris Lattnera0d01ff2012-01-24 14:31:22 +0000627 }
Craig Topper2ea22b02013-01-18 05:09:16 +0000628
Chris Lattnera0d01ff2012-01-24 14:31:22 +0000629 if (isa<ConstantAggregateZero>(V)) {
Chris Lattnerec97a902010-01-05 05:36:20 +0000630 Mask.assign(NumElts, ConstantInt::get(Type::getInt32Ty(V->getContext()),0));
Tim Northoverfad27612014-03-07 10:24:44 +0000631 return std::make_pair(V, nullptr);
Chris Lattnera0d01ff2012-01-24 14:31:22 +0000632 }
Craig Topper2ea22b02013-01-18 05:09:16 +0000633
Chris Lattnera0d01ff2012-01-24 14:31:22 +0000634 if (InsertElementInst *IEI = dyn_cast<InsertElementInst>(V)) {
Chris Lattnerec97a902010-01-05 05:36:20 +0000635 // If this is an insert of an extract from some other vector, include it.
636 Value *VecOp = IEI->getOperand(0);
637 Value *ScalarOp = IEI->getOperand(1);
638 Value *IdxOp = IEI->getOperand(2);
Bob Wilson8ecf98b2010-10-29 22:20:43 +0000639
Chris Lattnerec97a902010-01-05 05:36:20 +0000640 if (ExtractElementInst *EI = dyn_cast<ExtractElementInst>(ScalarOp)) {
Tim Northoverfad27612014-03-07 10:24:44 +0000641 if (isa<ConstantInt>(EI->getOperand(1)) && isa<ConstantInt>(IdxOp)) {
Chris Lattnerec97a902010-01-05 05:36:20 +0000642 unsigned ExtractedIdx =
Bob Wilson67a6f322010-10-29 22:20:45 +0000643 cast<ConstantInt>(EI->getOperand(1))->getZExtValue();
Chris Lattnerec97a902010-01-05 05:36:20 +0000644 unsigned InsertedIdx = cast<ConstantInt>(IdxOp)->getZExtValue();
Bob Wilson8ecf98b2010-10-29 22:20:43 +0000645
Chris Lattnerec97a902010-01-05 05:36:20 +0000646 // Either the extracted from or inserted into vector must be RHSVec,
647 // otherwise we'd end up with a shuffle of three inputs.
Craig Topperf40110f2014-04-25 05:29:35 +0000648 if (EI->getOperand(0) == PermittedRHS || PermittedRHS == nullptr) {
Tim Northoverfad27612014-03-07 10:24:44 +0000649 Value *RHS = EI->getOperand(0);
Sanjay Patelae945e72015-12-24 21:17:56 +0000650 ShuffleOps LR = collectShuffleElements(VecOp, Mask, RHS, IC);
Craig Toppere73658d2014-04-28 04:05:08 +0000651 assert(LR.second == nullptr || LR.second == RHS);
Tim Northoverfad27612014-03-07 10:24:44 +0000652
653 if (LR.first->getType() != RHS->getType()) {
Sanjay Patelae945e72015-12-24 21:17:56 +0000654 // Although we are giving up for now, see if we can create extracts
655 // that match the inserts for another round of combining.
656 replaceExtractElements(IEI, EI, IC);
657
Tim Northoverfad27612014-03-07 10:24:44 +0000658 // We tried our best, but we can't find anything compatible with RHS
659 // further up the chain. Return a trivial shuffle.
660 for (unsigned i = 0; i < NumElts; ++i)
661 Mask[i] = ConstantInt::get(Type::getInt32Ty(V->getContext()), i);
662 return std::make_pair(V, nullptr);
663 }
664
Christopher Tetreault155740c2020-04-08 10:42:22 -0700665 unsigned NumLHSElts =
666 cast<VectorType>(RHS->getType())->getNumElements();
Bob Wilson8ecf98b2010-10-29 22:20:43 +0000667 Mask[InsertedIdx % NumElts] =
Bob Wilson67a6f322010-10-29 22:20:45 +0000668 ConstantInt::get(Type::getInt32Ty(V->getContext()),
Tim Northoverfad27612014-03-07 10:24:44 +0000669 NumLHSElts+ExtractedIdx);
670 return std::make_pair(LR.first, RHS);
Chris Lattnerec97a902010-01-05 05:36:20 +0000671 }
Bob Wilson8ecf98b2010-10-29 22:20:43 +0000672
Tim Northoverfad27612014-03-07 10:24:44 +0000673 if (VecOp == PermittedRHS) {
674 // We've gone as far as we can: anything on the other side of the
675 // extractelement will already have been converted into a shuffle.
676 unsigned NumLHSElts =
Christopher Tetreault155740c2020-04-08 10:42:22 -0700677 cast<VectorType>(EI->getOperand(0)->getType())->getNumElements();
Tim Northoverfad27612014-03-07 10:24:44 +0000678 for (unsigned i = 0; i != NumElts; ++i)
679 Mask.push_back(ConstantInt::get(
680 Type::getInt32Ty(V->getContext()),
681 i == InsertedIdx ? ExtractedIdx : NumLHSElts + i));
682 return std::make_pair(EI->getOperand(0), PermittedRHS);
Chris Lattnerec97a902010-01-05 05:36:20 +0000683 }
Bob Wilson8ecf98b2010-10-29 22:20:43 +0000684
Chris Lattnerec97a902010-01-05 05:36:20 +0000685 // If this insertelement is a chain that comes from exactly these two
686 // vectors, return the vector and the effective shuffle.
Tim Northoverfad27612014-03-07 10:24:44 +0000687 if (EI->getOperand(0)->getType() == PermittedRHS->getType() &&
Sanjay Patel431e1142015-11-17 17:24:08 +0000688 collectSingleShuffleElements(IEI, EI->getOperand(0), PermittedRHS,
Tim Northoverfad27612014-03-07 10:24:44 +0000689 Mask))
690 return std::make_pair(EI->getOperand(0), PermittedRHS);
Chris Lattnerec97a902010-01-05 05:36:20 +0000691 }
692 }
693 }
Bob Wilson8ecf98b2010-10-29 22:20:43 +0000694
Sanjay Patelb67076c2015-11-29 22:09:34 +0000695 // Otherwise, we can't do anything fancy. Return an identity vector.
Chris Lattnerec97a902010-01-05 05:36:20 +0000696 for (unsigned i = 0; i != NumElts; ++i)
697 Mask.push_back(ConstantInt::get(Type::getInt32Ty(V->getContext()), i));
Tim Northoverfad27612014-03-07 10:24:44 +0000698 return std::make_pair(V, nullptr);
Chris Lattnerec97a902010-01-05 05:36:20 +0000699}
700
Michael Zolotukhin7d6293a2014-05-07 14:30:18 +0000701/// Try to find redundant insertvalue instructions, like the following ones:
702/// %0 = insertvalue { i8, i32 } undef, i8 %x, 0
703/// %1 = insertvalue { i8, i32 } %0, i8 %y, 0
704/// Here the second instruction inserts values at the same indices, as the
705/// first one, making the first one redundant.
706/// It should be transformed to:
707/// %0 = insertvalue { i8, i32 } undef, i8 %y, 0
708Instruction *InstCombiner::visitInsertValueInst(InsertValueInst &I) {
709 bool IsRedundant = false;
710 ArrayRef<unsigned int> FirstIndices = I.getIndices();
711
712 // If there is a chain of insertvalue instructions (each of them except the
713 // last one has only one use and it's another insertvalue insn from this
714 // chain), check if any of the 'children' uses the same indices as the first
715 // instruction. In this case, the first one is redundant.
716 Value *V = &I;
Michael Zolotukhin292d3ca2014-05-08 19:50:24 +0000717 unsigned Depth = 0;
Michael Zolotukhin7d6293a2014-05-07 14:30:18 +0000718 while (V->hasOneUse() && Depth < 10) {
719 User *U = V->user_back();
Michael Zolotukhin292d3ca2014-05-08 19:50:24 +0000720 auto UserInsInst = dyn_cast<InsertValueInst>(U);
721 if (!UserInsInst || U->getOperand(0) != V)
Michael Zolotukhin7d6293a2014-05-07 14:30:18 +0000722 break;
Michael Zolotukhin7d6293a2014-05-07 14:30:18 +0000723 if (UserInsInst->getIndices() == FirstIndices) {
724 IsRedundant = true;
725 break;
726 }
727 V = UserInsInst;
728 Depth++;
729 }
730
731 if (IsRedundant)
Sanjay Patel4b198802016-02-01 22:23:39 +0000732 return replaceInstUsesWith(I, I.getOperand(0));
Michael Zolotukhin7d6293a2014-05-07 14:30:18 +0000733 return nullptr;
734}
735
Sanjay Patel521f19f2016-09-02 17:05:43 +0000736static bool isShuffleEquivalentToSelect(ShuffleVectorInst &Shuf) {
Eli Friedman1ee6ec22020-03-31 13:08:59 -0700737 int MaskSize = Shuf.getShuffleMask().size();
Christopher Tetreault155740c2020-04-08 10:42:22 -0700738 int VecSize =
739 cast<VectorType>(Shuf.getOperand(0)->getType())->getNumElements();
Sanjay Patel521f19f2016-09-02 17:05:43 +0000740
741 // A vector select does not change the size of the operands.
742 if (MaskSize != VecSize)
743 return false;
744
745 // Each mask element must be undefined or choose a vector element from one of
746 // the source operands without crossing vector lanes.
747 for (int i = 0; i != MaskSize; ++i) {
748 int Elt = Shuf.getMaskValue(i);
749 if (Elt != -1 && Elt != i && Elt != i + VecSize)
750 return false;
751 }
752
753 return true;
754}
755
Sanjay Patel71ad2272019-06-26 15:52:59 +0000756/// Turn a chain of inserts that splats a value into an insert + shuffle:
757/// insertelt(insertelt(insertelt(insertelt X, %k, 0), %k, 1), %k, 2) ... ->
758/// shufflevector(insertelt(X, %k, 0), undef, zero)
759static Instruction *foldInsSequenceIntoSplat(InsertElementInst &InsElt) {
760 // We are interested in the last insert in a chain. So if this insert has a
761 // single user and that user is an insert, bail.
Michael Kupersteincd7ad712016-12-28 00:18:08 +0000762 if (InsElt.hasOneUse() && isa<InsertElementInst>(InsElt.user_back()))
763 return nullptr;
764
Sanjay Patel71ad2272019-06-26 15:52:59 +0000765 auto *VecTy = cast<VectorType>(InsElt.getType());
766 unsigned NumElements = VecTy->getNumElements();
Michael Kupersteincd7ad712016-12-28 00:18:08 +0000767
768 // Do not try to do this for a one-element vector, since that's a nop,
769 // and will cause an inf-loop.
770 if (NumElements == 1)
771 return nullptr;
772
773 Value *SplatVal = InsElt.getOperand(1);
Fangrui Songf78650a2018-07-30 19:41:25 +0000774 InsertElementInst *CurrIE = &InsElt;
Benjamin Kramerec228d72020-04-13 20:36:31 +0200775 SmallBitVector ElementPresent(NumElements, false);
Florian Hahnb992fee2017-08-30 10:54:21 +0000776 InsertElementInst *FirstIE = nullptr;
Michael Kupersteincd7ad712016-12-28 00:18:08 +0000777
778 // Walk the chain backwards, keeping track of which indices we inserted into,
779 // until we hit something that isn't an insert of the splatted value.
780 while (CurrIE) {
Sanjay Patel863d4942017-11-27 18:19:32 +0000781 auto *Idx = dyn_cast<ConstantInt>(CurrIE->getOperand(2));
Michael Kupersteincd7ad712016-12-28 00:18:08 +0000782 if (!Idx || CurrIE->getOperand(1) != SplatVal)
783 return nullptr;
784
Sanjay Patel863d4942017-11-27 18:19:32 +0000785 auto *NextIE = dyn_cast<InsertElementInst>(CurrIE->getOperand(0));
Florian Hahnb992fee2017-08-30 10:54:21 +0000786 // Check none of the intermediate steps have any additional uses, except
787 // for the root insertelement instruction, which can be re-used, if it
788 // inserts at position 0.
789 if (CurrIE != &InsElt &&
790 (!CurrIE->hasOneUse() && (NextIE != nullptr || !Idx->isZero())))
Michael Kupersteincd7ad712016-12-28 00:18:08 +0000791 return nullptr;
792
793 ElementPresent[Idx->getZExtValue()] = true;
Florian Hahnb992fee2017-08-30 10:54:21 +0000794 FirstIE = CurrIE;
795 CurrIE = NextIE;
Michael Kupersteincd7ad712016-12-28 00:18:08 +0000796 }
797
Sanjay Patel75b5edf2019-07-04 16:45:34 +0000798 // If this is just a single insertelement (not a sequence), we are done.
799 if (FirstIE == &InsElt)
Michael Kupersteincd7ad712016-12-28 00:18:08 +0000800 return nullptr;
801
Sanjay Patel75b5edf2019-07-04 16:45:34 +0000802 // If we are not inserting into an undef vector, make sure we've seen an
803 // insert into every element.
804 // TODO: If the base vector is not undef, it might be better to create a splat
805 // and then a select-shuffle (blend) with the base vector.
806 if (!isa<UndefValue>(FirstIE->getOperand(0)))
Benjamin Kramerec228d72020-04-13 20:36:31 +0200807 if (!ElementPresent.all())
Sanjay Patel75b5edf2019-07-04 16:45:34 +0000808 return nullptr;
809
Sanjay Patel71ad2272019-06-26 15:52:59 +0000810 // Create the insert + shuffle.
811 Type *Int32Ty = Type::getInt32Ty(InsElt.getContext());
812 UndefValue *UndefVec = UndefValue::get(VecTy);
813 Constant *Zero = ConstantInt::get(Int32Ty, 0);
814 if (!cast<ConstantInt>(FirstIE->getOperand(2))->isZero())
815 FirstIE = InsertElementInst::Create(UndefVec, SplatVal, Zero, "", &InsElt);
Michael Kupersteincd7ad712016-12-28 00:18:08 +0000816
Sanjay Patel75b5edf2019-07-04 16:45:34 +0000817 // Splat from element 0, but replace absent elements with undef in the mask.
818 SmallVector<Constant *, 16> Mask(NumElements, Zero);
819 for (unsigned i = 0; i != NumElements; ++i)
820 if (!ElementPresent[i])
821 Mask[i] = UndefValue::get(Int32Ty);
822
823 return new ShuffleVectorInst(FirstIE, UndefVec, ConstantVector::get(Mask));
Michael Kupersteincd7ad712016-12-28 00:18:08 +0000824}
825
Sanjay Patel3dee1132019-07-08 19:48:52 +0000826/// Try to fold an insert element into an existing splat shuffle by changing
827/// the shuffle's mask to include the index of this insert element.
828static Instruction *foldInsEltIntoSplat(InsertElementInst &InsElt) {
829 // Check if the vector operand of this insert is a canonical splat shuffle.
830 auto *Shuf = dyn_cast<ShuffleVectorInst>(InsElt.getOperand(0));
831 if (!Shuf || !Shuf->isZeroEltSplat())
832 return nullptr;
833
834 // Check for a constant insertion index.
835 uint64_t IdxC;
836 if (!match(InsElt.getOperand(2), m_ConstantInt(IdxC)))
837 return nullptr;
838
839 // Check if the splat shuffle's input is the same as this insert's scalar op.
840 Value *X = InsElt.getOperand(1);
841 Value *Op0 = Shuf->getOperand(0);
842 if (!match(Op0, m_InsertElement(m_Undef(), m_Specific(X), m_ZeroInt())))
843 return nullptr;
844
845 // Replace the shuffle mask element at the index of this insert with a zero.
846 // For example:
847 // inselt (shuf (inselt undef, X, 0), undef, <0,undef,0,undef>), X, 1
848 // --> shuf (inselt undef, X, 0), undef, <0,0,0,undef>
Christopher Tetreault155740c2020-04-08 10:42:22 -0700849 unsigned NumMaskElts = Shuf->getType()->getNumElements();
Eli Friedman1ee6ec22020-03-31 13:08:59 -0700850 SmallVector<int, 16> NewMask(NumMaskElts);
Sanjay Patel3dee1132019-07-08 19:48:52 +0000851 for (unsigned i = 0; i != NumMaskElts; ++i)
Eli Friedman1ee6ec22020-03-31 13:08:59 -0700852 NewMask[i] = i == IdxC ? 0 : Shuf->getMaskValue(i);
Sanjay Patel3dee1132019-07-08 19:48:52 +0000853
Sanjay Patel3dee1132019-07-08 19:48:52 +0000854 return new ShuffleVectorInst(Op0, UndefValue::get(Op0->getType()), NewMask);
855}
856
Sanjay Patelaff5bee2019-09-08 19:03:01 +0000857/// Try to fold an extract+insert element into an existing identity shuffle by
858/// changing the shuffle's mask to include the index of this insert element.
859static Instruction *foldInsEltIntoIdentityShuffle(InsertElementInst &InsElt) {
860 // Check if the vector operand of this insert is an identity shuffle.
861 auto *Shuf = dyn_cast<ShuffleVectorInst>(InsElt.getOperand(0));
862 if (!Shuf || !isa<UndefValue>(Shuf->getOperand(1)) ||
863 !(Shuf->isIdentityWithExtract() || Shuf->isIdentityWithPadding()))
864 return nullptr;
865
866 // Check for a constant insertion index.
867 uint64_t IdxC;
868 if (!match(InsElt.getOperand(2), m_ConstantInt(IdxC)))
869 return nullptr;
870
871 // Check if this insert's scalar op is extracted from the identity shuffle's
872 // input vector.
873 Value *Scalar = InsElt.getOperand(1);
874 Value *X = Shuf->getOperand(0);
875 if (!match(Scalar, m_ExtractElement(m_Specific(X), m_SpecificInt(IdxC))))
876 return nullptr;
877
878 // Replace the shuffle mask element at the index of this extract+insert with
879 // that same index value.
880 // For example:
881 // inselt (shuf X, IdMask), (extelt X, IdxC), IdxC --> shuf X, IdMask'
Christopher Tetreault155740c2020-04-08 10:42:22 -0700882 unsigned NumMaskElts = Shuf->getType()->getNumElements();
Eli Friedman1ee6ec22020-03-31 13:08:59 -0700883 SmallVector<int, 16> NewMask(NumMaskElts);
884 ArrayRef<int> OldMask = Shuf->getShuffleMask();
Sanjay Patelaff5bee2019-09-08 19:03:01 +0000885 for (unsigned i = 0; i != NumMaskElts; ++i) {
886 if (i != IdxC) {
887 // All mask elements besides the inserted element remain the same.
Eli Friedman1ee6ec22020-03-31 13:08:59 -0700888 NewMask[i] = OldMask[i];
889 } else if (OldMask[i] == (int)IdxC) {
Sanjay Patelaff5bee2019-09-08 19:03:01 +0000890 // If the mask element was already set, there's nothing to do
891 // (demanded elements analysis may unset it later).
892 return nullptr;
893 } else {
Eli Friedman1ee6ec22020-03-31 13:08:59 -0700894 assert(OldMask[i] == UndefMaskElem &&
Sanjay Patelaff5bee2019-09-08 19:03:01 +0000895 "Unexpected shuffle mask element for identity shuffle");
Eli Friedman1ee6ec22020-03-31 13:08:59 -0700896 NewMask[i] = IdxC;
Sanjay Patelaff5bee2019-09-08 19:03:01 +0000897 }
898 }
899
Sanjay Patelaff5bee2019-09-08 19:03:01 +0000900 return new ShuffleVectorInst(X, Shuf->getOperand(1), NewMask);
901}
902
Sanjay Patel2f602ce2017-03-22 17:10:44 +0000903/// If we have an insertelement instruction feeding into another insertelement
904/// and the 2nd is inserting a constant into the vector, canonicalize that
905/// constant insertion before the insertion of a variable:
906///
907/// insertelement (insertelement X, Y, IdxC1), ScalarC, IdxC2 -->
908/// insertelement (insertelement X, ScalarC, IdxC2), Y, IdxC1
909///
910/// This has the potential of eliminating the 2nd insertelement instruction
911/// via constant folding of the scalar constant into a vector constant.
912static Instruction *hoistInsEltConst(InsertElementInst &InsElt2,
913 InstCombiner::BuilderTy &Builder) {
914 auto *InsElt1 = dyn_cast<InsertElementInst>(InsElt2.getOperand(0));
915 if (!InsElt1 || !InsElt1->hasOneUse())
916 return nullptr;
917
918 Value *X, *Y;
919 Constant *ScalarC;
920 ConstantInt *IdxC1, *IdxC2;
921 if (match(InsElt1->getOperand(0), m_Value(X)) &&
922 match(InsElt1->getOperand(1), m_Value(Y)) && !isa<Constant>(Y) &&
923 match(InsElt1->getOperand(2), m_ConstantInt(IdxC1)) &&
924 match(InsElt2.getOperand(1), m_Constant(ScalarC)) &&
925 match(InsElt2.getOperand(2), m_ConstantInt(IdxC2)) && IdxC1 != IdxC2) {
926 Value *NewInsElt1 = Builder.CreateInsertElement(X, ScalarC, IdxC2);
927 return InsertElementInst::Create(NewInsElt1, Y, IdxC1);
928 }
929
930 return nullptr;
931}
932
Alexey Bataevfee90782016-09-23 09:14:08 +0000933/// insertelt (shufflevector X, CVec, Mask|insertelt X, C1, CIndex1), C, CIndex
934/// --> shufflevector X, CVec', Mask'
Sanjay Patel521f19f2016-09-02 17:05:43 +0000935static Instruction *foldConstantInsEltIntoShuffle(InsertElementInst &InsElt) {
Alexey Bataevfee90782016-09-23 09:14:08 +0000936 auto *Inst = dyn_cast<Instruction>(InsElt.getOperand(0));
937 // Bail out if the parent has more than one use. In that case, we'd be
Sanjay Patel521f19f2016-09-02 17:05:43 +0000938 // replacing the insertelt with a shuffle, and that's not a clear win.
Alexey Bataevfee90782016-09-23 09:14:08 +0000939 if (!Inst || !Inst->hasOneUse())
Sanjay Patel521f19f2016-09-02 17:05:43 +0000940 return nullptr;
Alexey Bataevfee90782016-09-23 09:14:08 +0000941 if (auto *Shuf = dyn_cast<ShuffleVectorInst>(InsElt.getOperand(0))) {
942 // The shuffle must have a constant vector operand. The insertelt must have
943 // a constant scalar being inserted at a constant position in the vector.
944 Constant *ShufConstVec, *InsEltScalar;
945 uint64_t InsEltIndex;
946 if (!match(Shuf->getOperand(1), m_Constant(ShufConstVec)) ||
947 !match(InsElt.getOperand(1), m_Constant(InsEltScalar)) ||
948 !match(InsElt.getOperand(2), m_ConstantInt(InsEltIndex)))
949 return nullptr;
Sanjay Patel521f19f2016-09-02 17:05:43 +0000950
Alexey Bataevfee90782016-09-23 09:14:08 +0000951 // Adding an element to an arbitrary shuffle could be expensive, but a
952 // shuffle that selects elements from vectors without crossing lanes is
953 // assumed cheap.
954 // If we're just adding a constant into that shuffle, it will still be
955 // cheap.
956 if (!isShuffleEquivalentToSelect(*Shuf))
957 return nullptr;
Sanjay Patel521f19f2016-09-02 17:05:43 +0000958
Alexey Bataevfee90782016-09-23 09:14:08 +0000959 // From the above 'select' check, we know that the mask has the same number
960 // of elements as the vector input operands. We also know that each constant
961 // input element is used in its lane and can not be used more than once by
962 // the shuffle. Therefore, replace the constant in the shuffle's constant
963 // vector with the insertelt constant. Replace the constant in the shuffle's
964 // mask vector with the insertelt index plus the length of the vector
965 // (because the constant vector operand of a shuffle is always the 2nd
966 // operand).
Eli Friedman1ee6ec22020-03-31 13:08:59 -0700967 ArrayRef<int> Mask = Shuf->getShuffleMask();
968 unsigned NumElts = Mask.size();
Alexey Bataevfee90782016-09-23 09:14:08 +0000969 SmallVector<Constant *, 16> NewShufElts(NumElts);
Eli Friedman1ee6ec22020-03-31 13:08:59 -0700970 SmallVector<int, 16> NewMaskElts(NumElts);
Alexey Bataevfee90782016-09-23 09:14:08 +0000971 for (unsigned I = 0; I != NumElts; ++I) {
972 if (I == InsEltIndex) {
973 NewShufElts[I] = InsEltScalar;
Eli Friedman1ee6ec22020-03-31 13:08:59 -0700974 NewMaskElts[I] = InsEltIndex + NumElts;
Alexey Bataevfee90782016-09-23 09:14:08 +0000975 } else {
976 // Copy over the existing values.
977 NewShufElts[I] = ShufConstVec->getAggregateElement(I);
Eli Friedman1ee6ec22020-03-31 13:08:59 -0700978 NewMaskElts[I] = Mask[I];
Alexey Bataevfee90782016-09-23 09:14:08 +0000979 }
Sanjay Patel521f19f2016-09-02 17:05:43 +0000980 }
Sanjay Patel521f19f2016-09-02 17:05:43 +0000981
Alexey Bataevfee90782016-09-23 09:14:08 +0000982 // Create new operands for a shuffle that includes the constant of the
983 // original insertelt. The old shuffle will be dead now.
984 return new ShuffleVectorInst(Shuf->getOperand(0),
Eli Friedman1ee6ec22020-03-31 13:08:59 -0700985 ConstantVector::get(NewShufElts), NewMaskElts);
Alexey Bataevfee90782016-09-23 09:14:08 +0000986 } else if (auto *IEI = dyn_cast<InsertElementInst>(Inst)) {
987 // Transform sequences of insertelements ops with constant data/indexes into
988 // a single shuffle op.
989 unsigned NumElts = InsElt.getType()->getNumElements();
990
991 uint64_t InsertIdx[2];
992 Constant *Val[2];
993 if (!match(InsElt.getOperand(2), m_ConstantInt(InsertIdx[0])) ||
994 !match(InsElt.getOperand(1), m_Constant(Val[0])) ||
995 !match(IEI->getOperand(2), m_ConstantInt(InsertIdx[1])) ||
996 !match(IEI->getOperand(1), m_Constant(Val[1])))
997 return nullptr;
998 SmallVector<Constant *, 16> Values(NumElts);
999 SmallVector<Constant *, 16> Mask(NumElts);
1000 auto ValI = std::begin(Val);
1001 // Generate new constant vector and mask.
1002 // We have 2 values/masks from the insertelements instructions. Insert them
1003 // into new value/mask vectors.
1004 for (uint64_t I : InsertIdx) {
1005 if (!Values[I]) {
1006 assert(!Mask[I]);
1007 Values[I] = *ValI;
1008 Mask[I] = ConstantInt::get(Type::getInt32Ty(InsElt.getContext()),
1009 NumElts + I);
1010 }
1011 ++ValI;
1012 }
1013 // Remaining values are filled with 'undef' values.
1014 for (unsigned I = 0; I < NumElts; ++I) {
1015 if (!Values[I]) {
1016 assert(!Mask[I]);
1017 Values[I] = UndefValue::get(InsElt.getType()->getElementType());
1018 Mask[I] = ConstantInt::get(Type::getInt32Ty(InsElt.getContext()), I);
1019 }
1020 }
1021 // Create new operands for a shuffle that includes the constant of the
1022 // original insertelt.
1023 return new ShuffleVectorInst(IEI->getOperand(0),
1024 ConstantVector::get(Values),
1025 ConstantVector::get(Mask));
1026 }
1027 return nullptr;
Sanjay Patel521f19f2016-09-02 17:05:43 +00001028}
1029
Chris Lattnerec97a902010-01-05 05:36:20 +00001030Instruction *InstCombiner::visitInsertElementInst(InsertElementInst &IE) {
1031 Value *VecOp = IE.getOperand(0);
1032 Value *ScalarOp = IE.getOperand(1);
1033 Value *IdxOp = IE.getOperand(2);
Bob Wilson8ecf98b2010-10-29 22:20:43 +00001034
Igor Laevskye0edb662017-12-13 11:21:18 +00001035 if (auto *V = SimplifyInsertElementInst(
1036 VecOp, ScalarOp, IdxOp, SQ.getWithInstruction(&IE)))
1037 return replaceInstUsesWith(IE, V);
1038
Sanjay Patel926e4772019-05-17 18:06:12 +00001039 // If the vector and scalar are both bitcast from the same element type, do
1040 // the insert in that source type followed by bitcast.
1041 Value *VecSrc, *ScalarSrc;
1042 if (match(VecOp, m_BitCast(m_Value(VecSrc))) &&
1043 match(ScalarOp, m_BitCast(m_Value(ScalarSrc))) &&
1044 (VecOp->hasOneUse() || ScalarOp->hasOneUse()) &&
1045 VecSrc->getType()->isVectorTy() && !ScalarSrc->getType()->isVectorTy() &&
Christopher Tetreault155740c2020-04-08 10:42:22 -07001046 cast<VectorType>(VecSrc->getType())->getElementType() ==
1047 ScalarSrc->getType()) {
Sanjay Patel926e4772019-05-17 18:06:12 +00001048 // inselt (bitcast VecSrc), (bitcast ScalarSrc), IdxOp -->
1049 // bitcast (inselt VecSrc, ScalarSrc, IdxOp)
1050 Value *NewInsElt = Builder.CreateInsertElement(VecSrc, ScalarSrc, IdxOp);
1051 return new BitCastInst(NewInsElt, IE.getType());
1052 }
1053
Sanjay Patel0522b0d2018-10-20 17:15:57 +00001054 // If the inserted element was extracted from some other vector and both
Sanjay Patel93179632019-05-26 14:03:50 +00001055 // indexes are valid constants, try to turn this into a shuffle.
Sanjay Patel0522b0d2018-10-20 17:15:57 +00001056 uint64_t InsertedIdx, ExtractedIdx;
1057 Value *ExtVecOp;
1058 if (match(IdxOp, m_ConstantInt(InsertedIdx)) &&
Christopher Tetreault155740c2020-04-08 10:42:22 -07001059 match(ScalarOp,
1060 m_ExtractElement(m_Value(ExtVecOp), m_ConstantInt(ExtractedIdx))) &&
1061 ExtractedIdx < cast<VectorType>(ExtVecOp->getType())->getNumElements()) {
Sanjay Patel0522b0d2018-10-20 17:15:57 +00001062 // TODO: Looking at the user(s) to determine if this insert is a
1063 // fold-to-shuffle opportunity does not match the usual instcombine
1064 // constraints. We should decide if the transform is worthy based only
1065 // on this instruction and its operands, but that may not work currently.
1066 //
1067 // Here, we are trying to avoid creating shuffles before reaching
1068 // the end of a chain of extract-insert pairs. This is complicated because
1069 // we do not generally form arbitrary shuffle masks in instcombine
1070 // (because those may codegen poorly), but collectShuffleElements() does
1071 // exactly that.
1072 //
1073 // The rules for determining what is an acceptable target-independent
1074 // shuffle mask are fuzzy because they evolve based on the backend's
1075 // capabilities and real-world impact.
1076 auto isShuffleRootCandidate = [](InsertElementInst &Insert) {
1077 if (!Insert.hasOneUse())
1078 return true;
1079 auto *InsertUser = dyn_cast<InsertElementInst>(Insert.user_back());
1080 if (!InsertUser)
1081 return true;
1082 return false;
1083 };
Bob Wilson8ecf98b2010-10-29 22:20:43 +00001084
Sanjay Patel0522b0d2018-10-20 17:15:57 +00001085 // Try to form a shuffle from a chain of extract-insert ops.
1086 if (isShuffleRootCandidate(IE)) {
1087 SmallVector<Constant*, 16> Mask;
1088 ShuffleOps LR = collectShuffleElements(&IE, Mask, nullptr, *this);
Sanjay Patel729c4362018-10-20 16:25:55 +00001089
Sanjay Patel0522b0d2018-10-20 17:15:57 +00001090 // The proposed shuffle may be trivial, in which case we shouldn't
1091 // perform the combine.
1092 if (LR.first != &IE && LR.second != &IE) {
1093 // We now have a shuffle of LHS, RHS, Mask.
1094 if (LR.second == nullptr)
1095 LR.second = UndefValue::get(LR.first->getType());
1096 return new ShuffleVectorInst(LR.first, LR.second,
1097 ConstantVector::get(Mask));
Chris Lattnerec97a902010-01-05 05:36:20 +00001098 }
1099 }
1100 }
Bob Wilson8ecf98b2010-10-29 22:20:43 +00001101
Christopher Tetreault155740c2020-04-08 10:42:22 -07001102 unsigned VWidth = cast<VectorType>(VecOp->getType())->getNumElements();
Chris Lattnerec97a902010-01-05 05:36:20 +00001103 APInt UndefElts(VWidth, 0);
1104 APInt AllOnesEltMask(APInt::getAllOnesValue(VWidth));
Eli Friedmanef200db2011-02-19 22:42:40 +00001105 if (Value *V = SimplifyDemandedVectorElts(&IE, AllOnesEltMask, UndefElts)) {
1106 if (V != &IE)
Sanjay Patel4b198802016-02-01 22:23:39 +00001107 return replaceInstUsesWith(IE, V);
Chris Lattnerec97a902010-01-05 05:36:20 +00001108 return &IE;
Eli Friedmanef200db2011-02-19 22:42:40 +00001109 }
Bob Wilson8ecf98b2010-10-29 22:20:43 +00001110
Sanjay Patel521f19f2016-09-02 17:05:43 +00001111 if (Instruction *Shuf = foldConstantInsEltIntoShuffle(IE))
1112 return Shuf;
1113
Craig Topperbb4069e2017-07-07 23:16:26 +00001114 if (Instruction *NewInsElt = hoistInsEltConst(IE, Builder))
Sanjay Patel2f602ce2017-03-22 17:10:44 +00001115 return NewInsElt;
1116
Sanjay Patel71ad2272019-06-26 15:52:59 +00001117 if (Instruction *Broadcast = foldInsSequenceIntoSplat(IE))
Michael Kupersteincd7ad712016-12-28 00:18:08 +00001118 return Broadcast;
1119
Sanjay Patel3dee1132019-07-08 19:48:52 +00001120 if (Instruction *Splat = foldInsEltIntoSplat(IE))
1121 return Splat;
1122
Sanjay Patelaff5bee2019-09-08 19:03:01 +00001123 if (Instruction *IdentityShuf = foldInsEltIntoIdentityShuffle(IE))
1124 return IdentityShuf;
1125
Craig Topperf40110f2014-04-25 05:29:35 +00001126 return nullptr;
Chris Lattnerec97a902010-01-05 05:36:20 +00001127}
1128
Nick Lewyckya2b77202013-05-31 00:59:42 +00001129/// Return true if we can evaluate the specified expression tree if the vector
1130/// elements were shuffled in a different order.
Sanjay Patel54d31ef2018-09-29 15:05:24 +00001131static bool canEvaluateShuffled(Value *V, ArrayRef<int> Mask,
Nick Lewycky3f715e22013-06-01 20:51:31 +00001132 unsigned Depth = 5) {
Nick Lewyckya2b77202013-05-31 00:59:42 +00001133 // We can always reorder the elements of a constant.
1134 if (isa<Constant>(V))
1135 return true;
1136
1137 // We won't reorder vector arguments. No IPO here.
1138 Instruction *I = dyn_cast<Instruction>(V);
1139 if (!I) return false;
1140
1141 // Two users may expect different orders of the elements. Don't try it.
1142 if (!I->hasOneUse())
1143 return false;
1144
1145 if (Depth == 0) return false;
1146
1147 switch (I->getOpcode()) {
Bjorn Pettersson64562522019-10-18 07:42:02 +00001148 case Instruction::UDiv:
1149 case Instruction::SDiv:
1150 case Instruction::URem:
1151 case Instruction::SRem:
1152 // Propagating an undefined shuffle mask element to integer div/rem is not
1153 // allowed because those opcodes can create immediate undefined behavior
1154 // from an undefined element in an operand.
1155 if (llvm::any_of(Mask, [](int M){ return M == -1; }))
1156 return false;
1157 LLVM_FALLTHROUGH;
Nick Lewyckya2b77202013-05-31 00:59:42 +00001158 case Instruction::Add:
1159 case Instruction::FAdd:
1160 case Instruction::Sub:
1161 case Instruction::FSub:
1162 case Instruction::Mul:
1163 case Instruction::FMul:
Nick Lewyckya2b77202013-05-31 00:59:42 +00001164 case Instruction::FDiv:
Nick Lewyckya2b77202013-05-31 00:59:42 +00001165 case Instruction::FRem:
1166 case Instruction::Shl:
1167 case Instruction::LShr:
1168 case Instruction::AShr:
1169 case Instruction::And:
1170 case Instruction::Or:
1171 case Instruction::Xor:
1172 case Instruction::ICmp:
1173 case Instruction::FCmp:
1174 case Instruction::Trunc:
1175 case Instruction::ZExt:
1176 case Instruction::SExt:
1177 case Instruction::FPToUI:
1178 case Instruction::FPToSI:
1179 case Instruction::UIToFP:
1180 case Instruction::SIToFP:
1181 case Instruction::FPTrunc:
1182 case Instruction::FPExt:
1183 case Instruction::GetElementPtr: {
Sanjay Patel26c119a2018-09-30 13:50:42 +00001184 // Bail out if we would create longer vector ops. We could allow creating
Bjorn Pettersson64562522019-10-18 07:42:02 +00001185 // longer vector ops, but that may result in more expensive codegen.
Sanjay Patel26c119a2018-09-30 13:50:42 +00001186 Type *ITy = I->getType();
Christopher Tetreault155740c2020-04-08 10:42:22 -07001187 if (ITy->isVectorTy() &&
1188 Mask.size() > cast<VectorType>(ITy)->getNumElements())
Sanjay Patel26c119a2018-09-30 13:50:42 +00001189 return false;
Sanjay Patel4e28753142015-11-16 22:16:52 +00001190 for (Value *Operand : I->operands()) {
Sanjay Patel54d31ef2018-09-29 15:05:24 +00001191 if (!canEvaluateShuffled(Operand, Mask, Depth - 1))
Nick Lewyckya2b77202013-05-31 00:59:42 +00001192 return false;
1193 }
1194 return true;
1195 }
1196 case Instruction::InsertElement: {
1197 ConstantInt *CI = dyn_cast<ConstantInt>(I->getOperand(2));
1198 if (!CI) return false;
1199 int ElementNumber = CI->getLimitedValue();
1200
1201 // Verify that 'CI' does not occur twice in Mask. A single 'insertelement'
1202 // can't put an element into multiple indices.
1203 bool SeenOnce = false;
1204 for (int i = 0, e = Mask.size(); i != e; ++i) {
1205 if (Mask[i] == ElementNumber) {
1206 if (SeenOnce)
1207 return false;
1208 SeenOnce = true;
1209 }
1210 }
Sanjay Patel54d31ef2018-09-29 15:05:24 +00001211 return canEvaluateShuffled(I->getOperand(0), Mask, Depth - 1);
Nick Lewyckya2b77202013-05-31 00:59:42 +00001212 }
1213 }
1214 return false;
1215}
1216
1217/// Rebuild a new instruction just like 'I' but with the new operands given.
1218/// In the event of type mismatch, the type of the operands is correct.
Sanjay Patel431e1142015-11-17 17:24:08 +00001219static Value *buildNew(Instruction *I, ArrayRef<Value*> NewOps) {
Nick Lewyckya2b77202013-05-31 00:59:42 +00001220 // We don't want to use the IRBuilder here because we want the replacement
1221 // instructions to appear next to 'I', not the builder's insertion point.
1222 switch (I->getOpcode()) {
1223 case Instruction::Add:
1224 case Instruction::FAdd:
1225 case Instruction::Sub:
1226 case Instruction::FSub:
1227 case Instruction::Mul:
1228 case Instruction::FMul:
1229 case Instruction::UDiv:
1230 case Instruction::SDiv:
1231 case Instruction::FDiv:
1232 case Instruction::URem:
1233 case Instruction::SRem:
1234 case Instruction::FRem:
1235 case Instruction::Shl:
1236 case Instruction::LShr:
1237 case Instruction::AShr:
1238 case Instruction::And:
1239 case Instruction::Or:
1240 case Instruction::Xor: {
1241 BinaryOperator *BO = cast<BinaryOperator>(I);
1242 assert(NewOps.size() == 2 && "binary operator with #ops != 2");
1243 BinaryOperator *New =
1244 BinaryOperator::Create(cast<BinaryOperator>(I)->getOpcode(),
1245 NewOps[0], NewOps[1], "", BO);
1246 if (isa<OverflowingBinaryOperator>(BO)) {
1247 New->setHasNoUnsignedWrap(BO->hasNoUnsignedWrap());
1248 New->setHasNoSignedWrap(BO->hasNoSignedWrap());
1249 }
1250 if (isa<PossiblyExactOperator>(BO)) {
1251 New->setIsExact(BO->isExact());
1252 }
Owen Anderson48b842e2014-01-18 00:48:14 +00001253 if (isa<FPMathOperator>(BO))
1254 New->copyFastMathFlags(I);
Nick Lewyckya2b77202013-05-31 00:59:42 +00001255 return New;
1256 }
1257 case Instruction::ICmp:
1258 assert(NewOps.size() == 2 && "icmp with #ops != 2");
1259 return new ICmpInst(I, cast<ICmpInst>(I)->getPredicate(),
1260 NewOps[0], NewOps[1]);
1261 case Instruction::FCmp:
1262 assert(NewOps.size() == 2 && "fcmp with #ops != 2");
1263 return new FCmpInst(I, cast<FCmpInst>(I)->getPredicate(),
1264 NewOps[0], NewOps[1]);
1265 case Instruction::Trunc:
1266 case Instruction::ZExt:
1267 case Instruction::SExt:
1268 case Instruction::FPToUI:
1269 case Instruction::FPToSI:
1270 case Instruction::UIToFP:
1271 case Instruction::SIToFP:
1272 case Instruction::FPTrunc:
1273 case Instruction::FPExt: {
1274 // It's possible that the mask has a different number of elements from
1275 // the original cast. We recompute the destination type to match the mask.
Christopher Tetreault155740c2020-04-08 10:42:22 -07001276 Type *DestTy = VectorType::get(
1277 I->getType()->getScalarType(),
1278 cast<VectorType>(NewOps[0]->getType())->getElementCount());
Nick Lewyckya2b77202013-05-31 00:59:42 +00001279 assert(NewOps.size() == 1 && "cast with #ops != 1");
1280 return CastInst::Create(cast<CastInst>(I)->getOpcode(), NewOps[0], DestTy,
1281 "", I);
1282 }
1283 case Instruction::GetElementPtr: {
1284 Value *Ptr = NewOps[0];
1285 ArrayRef<Value*> Idx = NewOps.slice(1);
David Blaikie22319eb2015-03-14 19:24:04 +00001286 GetElementPtrInst *GEP = GetElementPtrInst::Create(
1287 cast<GetElementPtrInst>(I)->getSourceElementType(), Ptr, Idx, "", I);
Nick Lewyckya2b77202013-05-31 00:59:42 +00001288 GEP->setIsInBounds(cast<GetElementPtrInst>(I)->isInBounds());
1289 return GEP;
1290 }
1291 }
1292 llvm_unreachable("failed to rebuild vector instructions");
1293}
1294
Sanjay Patel54d31ef2018-09-29 15:05:24 +00001295static Value *evaluateInDifferentElementOrder(Value *V, ArrayRef<int> Mask) {
Nick Lewyckya2b77202013-05-31 00:59:42 +00001296 // Mask.size() does not need to be equal to the number of vector elements.
1297
1298 assert(V->getType()->isVectorTy() && "can't reorder non-vector elements");
Sanjay Patelce36b032017-10-09 17:54:46 +00001299 Type *EltTy = V->getType()->getScalarType();
Sanjay Patel54d31ef2018-09-29 15:05:24 +00001300 Type *I32Ty = IntegerType::getInt32Ty(V->getContext());
Sanjay Patelce36b032017-10-09 17:54:46 +00001301 if (isa<UndefValue>(V))
1302 return UndefValue::get(VectorType::get(EltTy, Mask.size()));
1303
1304 if (isa<ConstantAggregateZero>(V))
1305 return ConstantAggregateZero::get(VectorType::get(EltTy, Mask.size()));
1306
Eli Friedman1ee6ec22020-03-31 13:08:59 -07001307 if (Constant *C = dyn_cast<Constant>(V))
Nick Lewyckya2b77202013-05-31 00:59:42 +00001308 return ConstantExpr::getShuffleVector(C, UndefValue::get(C->getType()),
Eli Friedman1ee6ec22020-03-31 13:08:59 -07001309 Mask);
Nick Lewyckya2b77202013-05-31 00:59:42 +00001310
1311 Instruction *I = cast<Instruction>(V);
1312 switch (I->getOpcode()) {
1313 case Instruction::Add:
1314 case Instruction::FAdd:
1315 case Instruction::Sub:
1316 case Instruction::FSub:
1317 case Instruction::Mul:
1318 case Instruction::FMul:
1319 case Instruction::UDiv:
1320 case Instruction::SDiv:
1321 case Instruction::FDiv:
1322 case Instruction::URem:
1323 case Instruction::SRem:
1324 case Instruction::FRem:
1325 case Instruction::Shl:
1326 case Instruction::LShr:
1327 case Instruction::AShr:
1328 case Instruction::And:
1329 case Instruction::Or:
1330 case Instruction::Xor:
1331 case Instruction::ICmp:
1332 case Instruction::FCmp:
1333 case Instruction::Trunc:
1334 case Instruction::ZExt:
1335 case Instruction::SExt:
1336 case Instruction::FPToUI:
1337 case Instruction::FPToSI:
1338 case Instruction::UIToFP:
1339 case Instruction::SIToFP:
1340 case Instruction::FPTrunc:
1341 case Instruction::FPExt:
1342 case Instruction::Select:
1343 case Instruction::GetElementPtr: {
1344 SmallVector<Value*, 8> NewOps;
Christopher Tetreault155740c2020-04-08 10:42:22 -07001345 bool NeedsRebuild =
1346 (Mask.size() != cast<VectorType>(I->getType())->getNumElements());
Nick Lewyckya2b77202013-05-31 00:59:42 +00001347 for (int i = 0, e = I->getNumOperands(); i != e; ++i) {
Mikael Holmen150a7ec2019-04-01 14:10:10 +00001348 Value *V;
1349 // Recursively call evaluateInDifferentElementOrder on vector arguments
1350 // as well. E.g. GetElementPtr may have scalar operands even if the
1351 // return value is a vector, so we need to examine the operand type.
1352 if (I->getOperand(i)->getType()->isVectorTy())
1353 V = evaluateInDifferentElementOrder(I->getOperand(i), Mask);
1354 else
1355 V = I->getOperand(i);
Nick Lewyckya2b77202013-05-31 00:59:42 +00001356 NewOps.push_back(V);
1357 NeedsRebuild |= (V != I->getOperand(i));
1358 }
1359 if (NeedsRebuild) {
Sanjay Patel431e1142015-11-17 17:24:08 +00001360 return buildNew(I, NewOps);
Nick Lewyckya2b77202013-05-31 00:59:42 +00001361 }
1362 return I;
1363 }
1364 case Instruction::InsertElement: {
1365 int Element = cast<ConstantInt>(I->getOperand(2))->getLimitedValue();
Nick Lewyckya2b77202013-05-31 00:59:42 +00001366
1367 // The insertelement was inserting at Element. Figure out which element
1368 // that becomes after shuffling. The answer is guaranteed to be unique
1369 // by CanEvaluateShuffled.
Nick Lewycky3f715e22013-06-01 20:51:31 +00001370 bool Found = false;
Nick Lewyckya2b77202013-05-31 00:59:42 +00001371 int Index = 0;
Nick Lewycky3f715e22013-06-01 20:51:31 +00001372 for (int e = Mask.size(); Index != e; ++Index) {
1373 if (Mask[Index] == Element) {
1374 Found = true;
Nick Lewyckya2b77202013-05-31 00:59:42 +00001375 break;
Nick Lewycky3f715e22013-06-01 20:51:31 +00001376 }
1377 }
Nick Lewyckya2b77202013-05-31 00:59:42 +00001378
Hao Liu26abebb2014-01-08 03:06:15 +00001379 // If element is not in Mask, no need to handle the operand 1 (element to
1380 // be inserted). Just evaluate values in operand 0 according to Mask.
Nick Lewycky3f715e22013-06-01 20:51:31 +00001381 if (!Found)
Sanjay Patel54d31ef2018-09-29 15:05:24 +00001382 return evaluateInDifferentElementOrder(I->getOperand(0), Mask);
Joey Goulya3250f22013-07-12 23:08:06 +00001383
Sanjay Patel54d31ef2018-09-29 15:05:24 +00001384 Value *V = evaluateInDifferentElementOrder(I->getOperand(0), Mask);
Nick Lewyckya2b77202013-05-31 00:59:42 +00001385 return InsertElementInst::Create(V, I->getOperand(1),
Sanjay Patel54d31ef2018-09-29 15:05:24 +00001386 ConstantInt::get(I32Ty, Index), "", I);
Nick Lewyckya2b77202013-05-31 00:59:42 +00001387 }
1388 }
1389 llvm_unreachable("failed to reorder elements of vector instruction!");
1390}
Chris Lattnerec97a902010-01-05 05:36:20 +00001391
JF Bastiend52c9902015-02-25 22:30:51 +00001392// Returns true if the shuffle is extracting a contiguous range of values from
1393// LHS, for example:
1394// +--+--+--+--+--+--+--+--+--+--+--+--+--+--+--+--+
1395// Input: |AA|BB|CC|DD|EE|FF|GG|HH|II|JJ|KK|LL|MM|NN|OO|PP|
1396// Shuffles to: |EE|FF|GG|HH|
1397// +--+--+--+--+
1398static bool isShuffleExtractingFromLHS(ShuffleVectorInst &SVI,
Eli Friedman1ee6ec22020-03-31 13:08:59 -07001399 ArrayRef<int> Mask) {
Christopher Tetreault155740c2020-04-08 10:42:22 -07001400 unsigned LHSElems =
1401 cast<VectorType>(SVI.getOperand(0)->getType())->getNumElements();
JF Bastiend52c9902015-02-25 22:30:51 +00001402 unsigned MaskElems = Mask.size();
1403 unsigned BegIdx = Mask.front();
1404 unsigned EndIdx = Mask.back();
1405 if (BegIdx > EndIdx || EndIdx >= LHSElems || EndIdx - BegIdx != MaskElems - 1)
1406 return false;
1407 for (unsigned I = 0; I != MaskElems; ++I)
1408 if (static_cast<unsigned>(Mask[I]) != BegIdx + I)
1409 return false;
1410 return true;
1411}
1412
Sanjay Patelb999d742018-07-02 17:42:29 +00001413/// These are the ingredients in an alternate form binary operator as described
1414/// below.
1415struct BinopElts {
1416 BinaryOperator::BinaryOps Opcode;
1417 Value *Op0;
1418 Value *Op1;
1419 BinopElts(BinaryOperator::BinaryOps Opc = (BinaryOperator::BinaryOps)0,
1420 Value *V0 = nullptr, Value *V1 = nullptr) :
1421 Opcode(Opc), Op0(V0), Op1(V1) {}
1422 operator bool() const { return Opcode != 0; }
1423};
1424
1425/// Binops may be transformed into binops with different opcodes and operands.
1426/// Reverse the usual canonicalization to enable folds with the non-canonical
1427/// form of the binop. If a transform is possible, return the elements of the
1428/// new binop. If not, return invalid elements.
1429static BinopElts getAlternateBinop(BinaryOperator *BO, const DataLayout &DL) {
1430 Value *BO0 = BO->getOperand(0), *BO1 = BO->getOperand(1);
1431 Type *Ty = BO->getType();
1432 switch (BO->getOpcode()) {
1433 case Instruction::Shl: {
1434 // shl X, C --> mul X, (1 << C)
1435 Constant *C;
1436 if (match(BO1, m_Constant(C))) {
1437 Constant *ShlOne = ConstantExpr::getShl(ConstantInt::get(Ty, 1), C);
1438 return { Instruction::Mul, BO0, ShlOne };
1439 }
1440 break;
1441 }
1442 case Instruction::Or: {
1443 // or X, C --> add X, C (when X and C have no common bits set)
1444 const APInt *C;
1445 if (match(BO1, m_APInt(C)) && MaskedValueIsZero(BO0, *C, DL))
1446 return { Instruction::Add, BO0, BO1 };
1447 break;
1448 }
1449 default:
1450 break;
1451 }
1452 return {};
1453}
1454
Sanjay Patel3074b9e2018-07-03 13:44:22 +00001455static Instruction *foldSelectShuffleWith1Binop(ShuffleVectorInst &Shuf) {
1456 assert(Shuf.isSelect() && "Must have select-equivalent shuffle");
1457
1458 // Are we shuffling together some value and that same value after it has been
1459 // modified by a binop with a constant?
1460 Value *Op0 = Shuf.getOperand(0), *Op1 = Shuf.getOperand(1);
1461 Constant *C;
1462 bool Op0IsBinop;
1463 if (match(Op0, m_BinOp(m_Specific(Op1), m_Constant(C))))
1464 Op0IsBinop = true;
1465 else if (match(Op1, m_BinOp(m_Specific(Op0), m_Constant(C))))
1466 Op0IsBinop = false;
1467 else
1468 return nullptr;
1469
Sanjay Patel3074b9e2018-07-03 13:44:22 +00001470 // The identity constant for a binop leaves a variable operand unchanged. For
1471 // a vector, this is a splat of something like 0, -1, or 1.
1472 // If there's no identity constant for this binop, we're done.
Sanjay Patel509a1e72018-07-10 15:12:31 +00001473 auto *BO = cast<BinaryOperator>(Op0IsBinop ? Op0 : Op1);
Sanjay Patel3074b9e2018-07-03 13:44:22 +00001474 BinaryOperator::BinaryOps BOpcode = BO->getOpcode();
Sanjay Patel509a1e72018-07-10 15:12:31 +00001475 Constant *IdC = ConstantExpr::getBinOpIdentity(BOpcode, Shuf.getType(), true);
Sanjay Patel3074b9e2018-07-03 13:44:22 +00001476 if (!IdC)
1477 return nullptr;
1478
1479 // Shuffle identity constants into the lanes that return the original value.
1480 // Example: shuf (mul X, {-1,-2,-3,-4}), X, {0,5,6,3} --> mul X, {-1,1,1,-4}
1481 // Example: shuf X, (add X, {-1,-2,-3,-4}), {0,1,6,7} --> add X, {0,0,-3,-4}
1482 // The existing binop constant vector remains in the same operand position.
Eli Friedman1ee6ec22020-03-31 13:08:59 -07001483 ArrayRef<int> Mask = Shuf.getShuffleMask();
Sanjay Patel3074b9e2018-07-03 13:44:22 +00001484 Constant *NewC = Op0IsBinop ? ConstantExpr::getShuffleVector(C, IdC, Mask) :
1485 ConstantExpr::getShuffleVector(IdC, C, Mask);
1486
Sanjay Patel509a1e72018-07-10 15:12:31 +00001487 bool MightCreatePoisonOrUB =
Eli Friedman1ee6ec22020-03-31 13:08:59 -07001488 is_contained(Mask, UndefMaskElem) &&
Sanjay Patel509a1e72018-07-10 15:12:31 +00001489 (Instruction::isIntDivRem(BOpcode) || Instruction::isShift(BOpcode));
1490 if (MightCreatePoisonOrUB)
1491 NewC = getSafeVectorConstantForBinop(BOpcode, NewC, true);
1492
Sanjay Patel3074b9e2018-07-03 13:44:22 +00001493 // shuf (bop X, C), X, M --> bop X, C'
1494 // shuf X, (bop X, C), M --> bop X, C'
Sanjay Patel509a1e72018-07-10 15:12:31 +00001495 Value *X = Op0IsBinop ? Op1 : Op0;
Sanjay Patel3074b9e2018-07-03 13:44:22 +00001496 Instruction *NewBO = BinaryOperator::Create(BOpcode, X, NewC);
1497 NewBO->copyIRFlags(BO);
Sanjay Patel33331062018-07-10 14:27:55 +00001498
1499 // An undef shuffle mask element may propagate as an undef constant element in
1500 // the new binop. That would produce poison where the original code might not.
Sanjay Patel509a1e72018-07-10 15:12:31 +00001501 // If we already made a safe constant, then there's no danger.
Eli Friedman1ee6ec22020-03-31 13:08:59 -07001502 if (is_contained(Mask, UndefMaskElem) && !MightCreatePoisonOrUB)
Sanjay Patel33331062018-07-10 14:27:55 +00001503 NewBO->dropPoisonGeneratingFlags();
Sanjay Patel3074b9e2018-07-03 13:44:22 +00001504 return NewBO;
1505}
1506
Sanjay Patel0b591032019-07-08 16:26:48 +00001507/// If we have an insert of a scalar to a non-zero element of an undefined
1508/// vector and then shuffle that value, that's the same as inserting to the zero
1509/// element and shuffling. Splatting from the zero element is recognized as the
1510/// canonical form of splat.
1511static Instruction *canonicalizeInsertSplat(ShuffleVectorInst &Shuf,
1512 InstCombiner::BuilderTy &Builder) {
1513 Value *Op0 = Shuf.getOperand(0), *Op1 = Shuf.getOperand(1);
Eli Friedman1ee6ec22020-03-31 13:08:59 -07001514 ArrayRef<int> Mask = Shuf.getShuffleMask();
Sanjay Patel0b591032019-07-08 16:26:48 +00001515 Value *X;
1516 uint64_t IndexC;
1517
1518 // Match a shuffle that is a splat to a non-zero element.
1519 if (!match(Op0, m_OneUse(m_InsertElement(m_Undef(), m_Value(X),
1520 m_ConstantInt(IndexC)))) ||
Eli Friedman1ee6ec22020-03-31 13:08:59 -07001521 !match(Op1, m_Undef()) || match(Mask, m_ZeroMask()) || IndexC == 0)
Sanjay Patel0b591032019-07-08 16:26:48 +00001522 return nullptr;
1523
1524 // Insert into element 0 of an undef vector.
1525 UndefValue *UndefVec = UndefValue::get(Shuf.getType());
1526 Constant *Zero = Builder.getInt32(0);
1527 Value *NewIns = Builder.CreateInsertElement(UndefVec, X, Zero);
1528
1529 // Splat from element 0. Any mask element that is undefined remains undefined.
1530 // For example:
1531 // shuf (inselt undef, X, 2), undef, <2,2,undef>
1532 // --> shuf (inselt undef, X, 0), undef, <0,0,undef>
Christopher Tetreault155740c2020-04-08 10:42:22 -07001533 unsigned NumMaskElts = Shuf.getType()->getNumElements();
Eli Friedman1ee6ec22020-03-31 13:08:59 -07001534 SmallVector<int, 16> NewMask(NumMaskElts, 0);
Sanjay Patel0b591032019-07-08 16:26:48 +00001535 for (unsigned i = 0; i != NumMaskElts; ++i)
Eli Friedman1ee6ec22020-03-31 13:08:59 -07001536 if (Mask[i] == UndefMaskElem)
1537 NewMask[i] = Mask[i];
Sanjay Patel0b591032019-07-08 16:26:48 +00001538
Eli Friedman1ee6ec22020-03-31 13:08:59 -07001539 return new ShuffleVectorInst(NewIns, UndefVec, NewMask);
Sanjay Patel0b591032019-07-08 16:26:48 +00001540}
1541
Sanjay Patelb999d742018-07-02 17:42:29 +00001542/// Try to fold shuffles that are the equivalent of a vector select.
Sanjay Patelda667532018-06-29 13:44:06 +00001543static Instruction *foldSelectShuffle(ShuffleVectorInst &Shuf,
Sanjay Patelb999d742018-07-02 17:42:29 +00001544 InstCombiner::BuilderTy &Builder,
1545 const DataLayout &DL) {
Sanjay Patela76b7002018-06-21 20:15:09 +00001546 if (!Shuf.isSelect())
1547 return nullptr;
1548
Sanjay Patele85d2e42019-11-25 11:55:57 -05001549 // Canonicalize to choose from operand 0 first unless operand 1 is undefined.
1550 // Commuting undef to operand 0 conflicts with another canonicalization.
Christopher Tetreault155740c2020-04-08 10:42:22 -07001551 unsigned NumElts = Shuf.getType()->getNumElements();
Sanjay Patele85d2e42019-11-25 11:55:57 -05001552 if (!isa<UndefValue>(Shuf.getOperand(1)) &&
1553 Shuf.getMaskValue(0) >= (int)NumElts) {
Sanjay Patelb33938d2019-04-08 13:28:29 +00001554 // TODO: Can we assert that both operands of a shuffle-select are not undef
1555 // (otherwise, it would have been folded by instsimplify?
Sanjay Patelb276dd12019-03-31 15:01:30 +00001556 Shuf.commute();
1557 return &Shuf;
1558 }
1559
Sanjay Patel3074b9e2018-07-03 13:44:22 +00001560 if (Instruction *I = foldSelectShuffleWith1Binop(Shuf))
1561 return I;
1562
Sanjay Patela76b7002018-06-21 20:15:09 +00001563 BinaryOperator *B0, *B1;
1564 if (!match(Shuf.getOperand(0), m_BinOp(B0)) ||
1565 !match(Shuf.getOperand(1), m_BinOp(B1)))
1566 return nullptr;
1567
Sanjay Patelda667532018-06-29 13:44:06 +00001568 Value *X, *Y;
Sanjay Patela76b7002018-06-21 20:15:09 +00001569 Constant *C0, *C1;
Sanjay Patela52963b2018-06-22 12:46:16 +00001570 bool ConstantsAreOp1;
1571 if (match(B0, m_BinOp(m_Value(X), m_Constant(C0))) &&
Sanjay Patelda667532018-06-29 13:44:06 +00001572 match(B1, m_BinOp(m_Value(Y), m_Constant(C1))))
Sanjay Patela52963b2018-06-22 12:46:16 +00001573 ConstantsAreOp1 = true;
1574 else if (match(B0, m_BinOp(m_Constant(C0), m_Value(X))) &&
Sanjay Patelda667532018-06-29 13:44:06 +00001575 match(B1, m_BinOp(m_Constant(C1), m_Value(Y))))
Sanjay Patela52963b2018-06-22 12:46:16 +00001576 ConstantsAreOp1 = false;
1577 else
Sanjay Patela76b7002018-06-21 20:15:09 +00001578 return nullptr;
1579
Sanjay Patel57bda362018-06-28 17:48:04 +00001580 // We need matching binops to fold the lanes together.
1581 BinaryOperator::BinaryOps Opc0 = B0->getOpcode();
1582 BinaryOperator::BinaryOps Opc1 = B1->getOpcode();
1583 bool DropNSW = false;
1584 if (ConstantsAreOp1 && Opc0 != Opc1) {
Sanjay Patel57bda362018-06-28 17:48:04 +00001585 // TODO: We drop "nsw" if shift is converted into multiply because it may
1586 // not be correct when the shift amount is BitWidth - 1. We could examine
1587 // each vector element to determine if it is safe to keep that flag.
Sanjay Patelb999d742018-07-02 17:42:29 +00001588 if (Opc0 == Instruction::Shl || Opc1 == Instruction::Shl)
Sanjay Patel57bda362018-06-28 17:48:04 +00001589 DropNSW = true;
Sanjay Patelb999d742018-07-02 17:42:29 +00001590 if (BinopElts AltB0 = getAlternateBinop(B0, DL)) {
1591 assert(isa<Constant>(AltB0.Op1) && "Expecting constant with alt binop");
1592 Opc0 = AltB0.Opcode;
1593 C0 = cast<Constant>(AltB0.Op1);
1594 } else if (BinopElts AltB1 = getAlternateBinop(B1, DL)) {
1595 assert(isa<Constant>(AltB1.Op1) && "Expecting constant with alt binop");
1596 Opc1 = AltB1.Opcode;
1597 C1 = cast<Constant>(AltB1.Op1);
Sanjay Patel57bda362018-06-28 17:48:04 +00001598 }
1599 }
1600
1601 if (Opc0 != Opc1)
Sanjay Patel4784e152018-06-21 23:56:59 +00001602 return nullptr;
1603
Sanjay Patel57bda362018-06-28 17:48:04 +00001604 // The opcodes must be the same. Use a new name to make that clear.
1605 BinaryOperator::BinaryOps BOpc = Opc0;
1606
Sanjay Patel06ea4202018-07-10 13:33:26 +00001607 // Select the constant elements needed for the single binop.
Eli Friedman1ee6ec22020-03-31 13:08:59 -07001608 ArrayRef<int> Mask = Shuf.getShuffleMask();
Sanjay Patel06ea4202018-07-10 13:33:26 +00001609 Constant *NewC = ConstantExpr::getShuffleVector(C0, C1, Mask);
1610
Sanjay Patel5bd36642018-07-09 13:21:46 +00001611 // We are moving a binop after a shuffle. When a shuffle has an undefined
1612 // mask element, the result is undefined, but it is not poison or undefined
1613 // behavior. That is not necessarily true for div/rem/shift.
Sanjay Patel5bd36642018-07-09 13:21:46 +00001614 bool MightCreatePoisonOrUB =
Eli Friedman1ee6ec22020-03-31 13:08:59 -07001615 is_contained(Mask, UndefMaskElem) &&
Sanjay Patel5bd36642018-07-09 13:21:46 +00001616 (Instruction::isIntDivRem(BOpc) || Instruction::isShift(BOpc));
Sanjay Patel06ea4202018-07-10 13:33:26 +00001617 if (MightCreatePoisonOrUB)
1618 NewC = getSafeVectorConstantForBinop(BOpc, NewC, ConstantsAreOp1);
Sanjay Patel5bd36642018-07-09 13:21:46 +00001619
Sanjay Patelda667532018-06-29 13:44:06 +00001620 Value *V;
1621 if (X == Y) {
1622 // Remove a binop and the shuffle by rearranging the constant:
1623 // shuffle (op V, C0), (op V, C1), M --> op V, C'
1624 // shuffle (op C0, V), (op C1, V), M --> op C', V
1625 V = X;
Sanjay Patel5bd36642018-07-09 13:21:46 +00001626 } else {
Sanjay Patelda667532018-06-29 13:44:06 +00001627 // If there are 2 different variable operands, we must create a new shuffle
1628 // (select) first, so check uses to ensure that we don't end up with more
1629 // instructions than we started with.
Sanjay Patel5bd36642018-07-09 13:21:46 +00001630 if (!B0->hasOneUse() && !B1->hasOneUse())
1631 return nullptr;
1632
Sanjay Patel06ea4202018-07-10 13:33:26 +00001633 // If we use the original shuffle mask and op1 is *variable*, we would be
1634 // putting an undef into operand 1 of div/rem/shift. This is either UB or
1635 // poison. We do not have to guard against UB when *constants* are op1
1636 // because safe constants guarantee that we do not overflow sdiv/srem (and
1637 // there's no danger for other opcodes).
1638 // TODO: To allow this case, create a new shuffle mask with no undefs.
1639 if (MightCreatePoisonOrUB && !ConstantsAreOp1)
Sanjay Patel5bd36642018-07-09 13:21:46 +00001640 return nullptr;
1641
Sanjay Patelda667532018-06-29 13:44:06 +00001642 // Note: In general, we do not create new shuffles in InstCombine because we
1643 // do not know if a target can lower an arbitrary shuffle optimally. In this
1644 // case, the shuffle uses the existing mask, so there is no additional risk.
Sanjay Patelda667532018-06-29 13:44:06 +00001645
1646 // Select the variable vectors first, then perform the binop:
1647 // shuffle (op X, C0), (op Y, C1), M --> op (shuffle X, Y, M), C'
1648 // shuffle (op C0, X), (op C1, Y), M --> op C', (shuffle X, Y, M)
Sanjay Patel5bd36642018-07-09 13:21:46 +00001649 V = Builder.CreateShuffleVector(X, Y, Mask);
Sanjay Patelda667532018-06-29 13:44:06 +00001650 }
1651
Sanjay Patelda667532018-06-29 13:44:06 +00001652 Instruction *NewBO = ConstantsAreOp1 ? BinaryOperator::Create(BOpc, V, NewC) :
1653 BinaryOperator::Create(BOpc, NewC, V);
Sanjay Patela76b7002018-06-21 20:15:09 +00001654
Sanjay Patel5bd36642018-07-09 13:21:46 +00001655 // Flags are intersected from the 2 source binops. But there are 2 exceptions:
1656 // 1. If we changed an opcode, poison conditions might have changed.
1657 // 2. If the shuffle had undef mask elements, the new binop might have undefs
Sanjay Patelc8d9d812018-07-10 16:09:49 +00001658 // where the original code did not. But if we already made a safe constant,
1659 // then there's no danger.
Sanjay Patela76b7002018-06-21 20:15:09 +00001660 NewBO->copyIRFlags(B0);
1661 NewBO->andIRFlags(B1);
Sanjay Patel57bda362018-06-28 17:48:04 +00001662 if (DropNSW)
1663 NewBO->setHasNoSignedWrap(false);
Eli Friedman1ee6ec22020-03-31 13:08:59 -07001664 if (is_contained(Mask, UndefMaskElem) && !MightCreatePoisonOrUB)
Sanjay Patel5bd36642018-07-09 13:21:46 +00001665 NewBO->dropPoisonGeneratingFlags();
Sanjay Patela76b7002018-06-21 20:15:09 +00001666 return NewBO;
1667}
1668
Sanjay Patel538a8f02020-04-05 09:46:22 -04001669/// Convert a narrowing shuffle of a bitcasted vector into a vector truncate.
1670/// Example (little endian):
1671/// shuf (bitcast <4 x i16> X to <8 x i8>), <0, 2, 4, 6> --> trunc X to <4 x i8>
1672static Instruction *foldTruncShuffle(ShuffleVectorInst &Shuf,
1673 bool IsBigEndian) {
1674 // This must be a bitcasted shuffle of 1 vector integer operand.
1675 Type *DestType = Shuf.getType();
1676 Value *X;
1677 if (!match(Shuf.getOperand(0), m_BitCast(m_Value(X))) ||
1678 !match(Shuf.getOperand(1), m_Undef()) || !DestType->isIntOrIntVectorTy())
1679 return nullptr;
1680
1681 // The source type must have the same number of elements as the shuffle,
1682 // and the source element type must be larger than the shuffle element type.
1683 Type *SrcType = X->getType();
1684 if (!SrcType->isVectorTy() || !SrcType->isIntOrIntVectorTy() ||
Christopher Tetreault155740c2020-04-08 10:42:22 -07001685 cast<VectorType>(SrcType)->getNumElements() !=
1686 cast<VectorType>(DestType)->getNumElements() ||
Sanjay Patel538a8f02020-04-05 09:46:22 -04001687 SrcType->getScalarSizeInBits() % DestType->getScalarSizeInBits() != 0)
1688 return nullptr;
1689
1690 assert(Shuf.changesLength() && !Shuf.increasesLength() &&
1691 "Expected a shuffle that decreases length");
1692
1693 // Last, check that the mask chooses the correct low bits for each narrow
1694 // element in the result.
1695 uint64_t TruncRatio =
1696 SrcType->getScalarSizeInBits() / DestType->getScalarSizeInBits();
1697 ArrayRef<int> Mask = Shuf.getShuffleMask();
1698 for (unsigned i = 0, e = Mask.size(); i != e; ++i) {
1699 if (Mask[i] == UndefMaskElem)
1700 continue;
1701 uint64_t LSBIndex = IsBigEndian ? (i + 1) * TruncRatio - 1 : i * TruncRatio;
1702 assert(LSBIndex <= std::numeric_limits<int32_t>::max() &&
1703 "Overflowed 32-bits");
1704 if (Mask[i] != (int)LSBIndex)
1705 return nullptr;
1706 }
1707
1708 return new TruncInst(X, DestType);
1709}
1710
Sanjay Patelc1416b62018-09-07 21:03:34 +00001711/// Match a shuffle-select-shuffle pattern where the shuffles are widening and
1712/// narrowing (concatenating with undef and extracting back to the original
1713/// length). This allows replacing the wide select with a narrow select.
Sanjay Patel88194df2018-10-09 15:29:26 +00001714static Instruction *narrowVectorSelect(ShuffleVectorInst &Shuf,
1715 InstCombiner::BuilderTy &Builder) {
Sanjay Patelc1416b62018-09-07 21:03:34 +00001716 // This must be a narrowing identity shuffle. It extracts the 1st N elements
1717 // of the 1st vector operand of a shuffle.
1718 if (!match(Shuf.getOperand(1), m_Undef()) || !Shuf.isIdentityWithExtract())
1719 return nullptr;
1720
1721 // The vector being shuffled must be a vector select that we can eliminate.
1722 // TODO: The one-use requirement could be eased if X and/or Y are constants.
1723 Value *Cond, *X, *Y;
1724 if (!match(Shuf.getOperand(0),
1725 m_OneUse(m_Select(m_Value(Cond), m_Value(X), m_Value(Y)))))
1726 return nullptr;
1727
1728 // We need a narrow condition value. It must be extended with undef elements
1729 // and have the same number of elements as this shuffle.
Christopher Tetreault155740c2020-04-08 10:42:22 -07001730 unsigned NarrowNumElts = Shuf.getType()->getNumElements();
Sanjay Patelc1416b62018-09-07 21:03:34 +00001731 Value *NarrowCond;
Eli Friedman1ee6ec22020-03-31 13:08:59 -07001732 if (!match(Cond, m_OneUse(m_ShuffleVector(m_Value(NarrowCond), m_Undef()))) ||
Christopher Tetreault155740c2020-04-08 10:42:22 -07001733 cast<VectorType>(NarrowCond->getType())->getNumElements() !=
1734 NarrowNumElts ||
Sanjay Patelc1416b62018-09-07 21:03:34 +00001735 !cast<ShuffleVectorInst>(Cond)->isIdentityWithPadding())
1736 return nullptr;
1737
1738 // shuf (sel (shuf NarrowCond, undef, WideMask), X, Y), undef, NarrowMask) -->
1739 // sel NarrowCond, (shuf X, undef, NarrowMask), (shuf Y, undef, NarrowMask)
1740 Value *Undef = UndefValue::get(X->getType());
Eli Friedman1ee6ec22020-03-31 13:08:59 -07001741 Value *NarrowX = Builder.CreateShuffleVector(X, Undef, Shuf.getShuffleMask());
1742 Value *NarrowY = Builder.CreateShuffleVector(Y, Undef, Shuf.getShuffleMask());
Sanjay Patelc1416b62018-09-07 21:03:34 +00001743 return SelectInst::Create(NarrowCond, NarrowX, NarrowY);
1744}
1745
Sanjay Patel71811462018-10-14 15:25:06 +00001746/// Try to combine 2 shuffles into 1 shuffle by concatenating a shuffle mask.
1747static Instruction *foldIdentityExtractShuffle(ShuffleVectorInst &Shuf) {
1748 Value *Op0 = Shuf.getOperand(0), *Op1 = Shuf.getOperand(1);
1749 if (!Shuf.isIdentityWithExtract() || !isa<UndefValue>(Op1))
1750 return nullptr;
1751
1752 Value *X, *Y;
Eli Friedman1ee6ec22020-03-31 13:08:59 -07001753 ArrayRef<int> Mask;
1754 if (!match(Op0, m_ShuffleVector(m_Value(X), m_Value(Y), m_Mask(Mask))))
Sanjay Patel71811462018-10-14 15:25:06 +00001755 return nullptr;
1756
Sanjay Patelcddb1e52019-02-05 22:58:45 +00001757 // Be conservative with shuffle transforms. If we can't kill the 1st shuffle,
1758 // then combining may result in worse codegen.
1759 if (!Op0->hasOneUse())
1760 return nullptr;
1761
Sanjay Patel71811462018-10-14 15:25:06 +00001762 // We are extracting a subvector from a shuffle. Remove excess elements from
1763 // the 1st shuffle mask to eliminate the extract.
1764 //
1765 // This transform is conservatively limited to identity extracts because we do
1766 // not allow arbitrary shuffle mask creation as a target-independent transform
1767 // (because we can't guarantee that will lower efficiently).
1768 //
1769 // If the extracting shuffle has an undef mask element, it transfers to the
1770 // new shuffle mask. Otherwise, copy the original mask element. Example:
1771 // shuf (shuf X, Y, <C0, C1, C2, undef, C4>), undef, <0, undef, 2, 3> -->
1772 // shuf X, Y, <C0, undef, C2, undef>
Christopher Tetreault155740c2020-04-08 10:42:22 -07001773 unsigned NumElts = Shuf.getType()->getNumElements();
Eli Friedman1ee6ec22020-03-31 13:08:59 -07001774 SmallVector<int, 16> NewMask(NumElts);
1775 assert(NumElts < Mask.size() &&
Sanjay Patel71811462018-10-14 15:25:06 +00001776 "Identity with extract must have less elements than its inputs");
1777
1778 for (unsigned i = 0; i != NumElts; ++i) {
Eli Friedman1ee6ec22020-03-31 13:08:59 -07001779 int ExtractMaskElt = Shuf.getMaskValue(i);
1780 int MaskElt = Mask[i];
1781 NewMask[i] = ExtractMaskElt == UndefMaskElem ? ExtractMaskElt : MaskElt;
Sanjay Patel71811462018-10-14 15:25:06 +00001782 }
Eli Friedman1ee6ec22020-03-31 13:08:59 -07001783 return new ShuffleVectorInst(X, Y, NewMask);
Sanjay Patel71811462018-10-14 15:25:06 +00001784}
1785
Sanjay Patel396d18a2019-12-10 10:10:05 -05001786/// Try to replace a shuffle with an insertelement or try to replace a shuffle
1787/// operand with the operand of an insertelement.
Nikita Popov5a8819b2020-02-03 21:17:36 +01001788static Instruction *foldShuffleWithInsert(ShuffleVectorInst &Shuf,
1789 InstCombiner &IC) {
Sanjay Patelb12e4102018-10-30 15:26:39 +00001790 Value *V0 = Shuf.getOperand(0), *V1 = Shuf.getOperand(1);
Eli Friedman1ee6ec22020-03-31 13:08:59 -07001791 SmallVector<int, 16> Mask;
1792 Shuf.getShuffleMask(Mask);
Sanjay Patelb12e4102018-10-30 15:26:39 +00001793
1794 // The shuffle must not change vector sizes.
1795 // TODO: This restriction could be removed if the insert has only one use
1796 // (because the transform would require a new length-changing shuffle).
1797 int NumElts = Mask.size();
Christopher Tetreault155740c2020-04-08 10:42:22 -07001798 if (NumElts != (int)(cast<VectorType>(V0->getType())->getNumElements()))
Sanjay Patelb12e4102018-10-30 15:26:39 +00001799 return nullptr;
1800
Sanjay Patel396d18a2019-12-10 10:10:05 -05001801 // This is a specialization of a fold in SimplifyDemandedVectorElts. We may
1802 // not be able to handle it there if the insertelement has >1 use.
1803 // If the shuffle has an insertelement operand but does not choose the
1804 // inserted scalar element from that value, then we can replace that shuffle
1805 // operand with the source vector of the insertelement.
1806 Value *X;
1807 uint64_t IdxC;
1808 if (match(V0, m_InsertElement(m_Value(X), m_Value(), m_ConstantInt(IdxC)))) {
1809 // shuf (inselt X, ?, IdxC), ?, Mask --> shuf X, ?, Mask
Nikita Popov5a8819b2020-02-03 21:17:36 +01001810 if (none_of(Mask, [IdxC](int MaskElt) { return MaskElt == (int)IdxC; }))
1811 return IC.replaceOperand(Shuf, 0, X);
Sanjay Patel396d18a2019-12-10 10:10:05 -05001812 }
1813 if (match(V1, m_InsertElement(m_Value(X), m_Value(), m_ConstantInt(IdxC)))) {
1814 // Offset the index constant by the vector width because we are checking for
1815 // accesses to the 2nd vector input of the shuffle.
1816 IdxC += NumElts;
1817 // shuf ?, (inselt X, ?, IdxC), Mask --> shuf ?, X, Mask
Nikita Popov5a8819b2020-02-03 21:17:36 +01001818 if (none_of(Mask, [IdxC](int MaskElt) { return MaskElt == (int)IdxC; }))
1819 return IC.replaceOperand(Shuf, 1, X);
Sanjay Patel396d18a2019-12-10 10:10:05 -05001820 }
1821
Sanjay Patelb12e4102018-10-30 15:26:39 +00001822 // shuffle (insert ?, Scalar, IndexC), V1, Mask --> insert V1, Scalar, IndexC'
1823 auto isShufflingScalarIntoOp1 = [&](Value *&Scalar, ConstantInt *&IndexC) {
1824 // We need an insertelement with a constant index.
1825 if (!match(V0, m_InsertElement(m_Value(), m_Value(Scalar),
1826 m_ConstantInt(IndexC))))
1827 return false;
1828
1829 // Test the shuffle mask to see if it splices the inserted scalar into the
1830 // operand 1 vector of the shuffle.
1831 int NewInsIndex = -1;
1832 for (int i = 0; i != NumElts; ++i) {
1833 // Ignore undef mask elements.
1834 if (Mask[i] == -1)
1835 continue;
1836
1837 // The shuffle takes elements of operand 1 without lane changes.
1838 if (Mask[i] == NumElts + i)
1839 continue;
1840
1841 // The shuffle must choose the inserted scalar exactly once.
1842 if (NewInsIndex != -1 || Mask[i] != IndexC->getSExtValue())
1843 return false;
1844
1845 // The shuffle is placing the inserted scalar into element i.
1846 NewInsIndex = i;
1847 }
1848
1849 assert(NewInsIndex != -1 && "Did not fold shuffle with unused operand?");
1850
1851 // Index is updated to the potentially translated insertion lane.
1852 IndexC = ConstantInt::get(IndexC->getType(), NewInsIndex);
1853 return true;
1854 };
1855
1856 // If the shuffle is unnecessary, insert the scalar operand directly into
1857 // operand 1 of the shuffle. Example:
1858 // shuffle (insert ?, S, 1), V1, <1, 5, 6, 7> --> insert V1, S, 0
1859 Value *Scalar;
1860 ConstantInt *IndexC;
1861 if (isShufflingScalarIntoOp1(Scalar, IndexC))
1862 return InsertElementInst::Create(V1, Scalar, IndexC);
1863
1864 // Try again after commuting shuffle. Example:
1865 // shuffle V0, (insert ?, S, 0), <0, 1, 2, 4> -->
1866 // shuffle (insert ?, S, 0), V0, <4, 5, 6, 0> --> insert V0, S, 3
1867 std::swap(V0, V1);
1868 ShuffleVectorInst::commuteShuffleMask(Mask, NumElts);
1869 if (isShufflingScalarIntoOp1(Scalar, IndexC))
1870 return InsertElementInst::Create(V1, Scalar, IndexC);
1871
1872 return nullptr;
1873}
1874
Sanjay Patel6a554182019-05-22 00:32:25 +00001875static Instruction *foldIdentityPaddedShuffles(ShuffleVectorInst &Shuf) {
1876 // Match the operands as identity with padding (also known as concatenation
1877 // with undef) shuffles of the same source type. The backend is expected to
1878 // recreate these concatenations from a shuffle of narrow operands.
1879 auto *Shuffle0 = dyn_cast<ShuffleVectorInst>(Shuf.getOperand(0));
1880 auto *Shuffle1 = dyn_cast<ShuffleVectorInst>(Shuf.getOperand(1));
1881 if (!Shuffle0 || !Shuffle0->isIdentityWithPadding() ||
1882 !Shuffle1 || !Shuffle1->isIdentityWithPadding())
1883 return nullptr;
1884
1885 // We limit this transform to power-of-2 types because we expect that the
1886 // backend can convert the simplified IR patterns to identical nodes as the
1887 // original IR.
Sanjay Patel3249be12019-05-23 18:46:03 +00001888 // TODO: If we can verify the same behavior for arbitrary types, the
1889 // power-of-2 checks can be removed.
Sanjay Patel6a554182019-05-22 00:32:25 +00001890 Value *X = Shuffle0->getOperand(0);
1891 Value *Y = Shuffle1->getOperand(0);
1892 if (X->getType() != Y->getType() ||
Christopher Tetreault155740c2020-04-08 10:42:22 -07001893 !isPowerOf2_32(Shuf.getType()->getNumElements()) ||
1894 !isPowerOf2_32(Shuffle0->getType()->getNumElements()) ||
1895 !isPowerOf2_32(cast<VectorType>(X->getType())->getNumElements()) ||
Sanjay Patel6a554182019-05-22 00:32:25 +00001896 isa<UndefValue>(X) || isa<UndefValue>(Y))
1897 return nullptr;
1898 assert(isa<UndefValue>(Shuffle0->getOperand(1)) &&
1899 isa<UndefValue>(Shuffle1->getOperand(1)) &&
1900 "Unexpected operand for identity shuffle");
1901
1902 // This is a shuffle of 2 widening shuffles. We can shuffle the narrow source
1903 // operands directly by adjusting the shuffle mask to account for the narrower
1904 // types:
1905 // shuf (widen X), (widen Y), Mask --> shuf X, Y, Mask'
Christopher Tetreault155740c2020-04-08 10:42:22 -07001906 int NarrowElts = cast<VectorType>(X->getType())->getNumElements();
1907 int WideElts = Shuffle0->getType()->getNumElements();
Sanjay Patel6a554182019-05-22 00:32:25 +00001908 assert(WideElts > NarrowElts && "Unexpected types for identity with padding");
1909
1910 Type *I32Ty = IntegerType::getInt32Ty(Shuf.getContext());
Eli Friedman1ee6ec22020-03-31 13:08:59 -07001911 ArrayRef<int> Mask = Shuf.getShuffleMask();
Sanjay Patel6a554182019-05-22 00:32:25 +00001912 SmallVector<Constant *, 16> NewMask(Mask.size(), UndefValue::get(I32Ty));
1913 for (int i = 0, e = Mask.size(); i != e; ++i) {
1914 if (Mask[i] == -1)
1915 continue;
Sanjay Patel3249be12019-05-23 18:46:03 +00001916
1917 // If this shuffle is choosing an undef element from 1 of the sources, that
1918 // element is undef.
1919 if (Mask[i] < WideElts) {
1920 if (Shuffle0->getMaskValue(Mask[i]) == -1)
1921 continue;
1922 } else {
1923 if (Shuffle1->getMaskValue(Mask[i] - WideElts) == -1)
1924 continue;
1925 }
1926
1927 // If this shuffle is choosing from the 1st narrow op, the mask element is
1928 // the same. If this shuffle is choosing from the 2nd narrow op, the mask
1929 // element is offset down to adjust for the narrow vector widths.
1930 if (Mask[i] < WideElts) {
1931 assert(Mask[i] < NarrowElts && "Unexpected shuffle mask");
Sanjay Patel6a554182019-05-22 00:32:25 +00001932 NewMask[i] = ConstantInt::get(I32Ty, Mask[i]);
Sanjay Patel3249be12019-05-23 18:46:03 +00001933 } else {
1934 assert(Mask[i] < (WideElts + NarrowElts) && "Unexpected shuffle mask");
Sanjay Patel6a554182019-05-22 00:32:25 +00001935 NewMask[i] = ConstantInt::get(I32Ty, Mask[i] - (WideElts - NarrowElts));
Sanjay Patel3249be12019-05-23 18:46:03 +00001936 }
Sanjay Patel6a554182019-05-22 00:32:25 +00001937 }
1938 return new ShuffleVectorInst(X, Y, ConstantVector::get(NewMask));
1939}
1940
Chris Lattnerec97a902010-01-05 05:36:20 +00001941Instruction *InstCombiner::visitShuffleVectorInst(ShuffleVectorInst &SVI) {
1942 Value *LHS = SVI.getOperand(0);
1943 Value *RHS = SVI.getOperand(1);
Sanjay Patelf4448062020-04-02 13:44:50 -04001944 SimplifyQuery ShufQuery = SQ.getWithInstruction(&SVI);
1945 if (auto *V = SimplifyShuffleVectorInst(LHS, RHS, SVI.getShuffleMask(),
1946 SVI.getType(), ShufQuery))
Zvi Rackover82bf48d2017-04-04 04:47:57 +00001947 return replaceInstUsesWith(SVI, V);
1948
Sanjay Patel35827162019-11-25 13:30:45 -05001949 // shuffle x, x, mask --> shuffle x, undef, mask'
Christopher Tetreault155740c2020-04-08 10:42:22 -07001950 unsigned VWidth = SVI.getType()->getNumElements();
1951 unsigned LHSWidth = cast<VectorType>(LHS->getType())->getNumElements();
Eli Friedman1ee6ec22020-03-31 13:08:59 -07001952 ArrayRef<int> Mask = SVI.getShuffleMask();
Sanjay Patel3f4d1b42019-03-29 16:49:38 +00001953 Type *Int32Ty = Type::getInt32Ty(SVI.getContext());
Sanjay Patelf4448062020-04-02 13:44:50 -04001954
1955 // Peek through a bitcasted shuffle operand by scaling the mask. If the
1956 // simulated shuffle can simplify, then this shuffle is unnecessary:
1957 // shuf (bitcast X), undef, Mask --> bitcast X'
Sanjay Patel6a7e9582020-04-14 14:41:35 -04001958 // TODO: This could be extended to allow length-changing shuffles.
1959 // The transform might also be obsoleted if we allowed canonicalization
1960 // of bitcasted shuffles.
Sanjay Patelf4448062020-04-02 13:44:50 -04001961 Value *X;
1962 if (match(LHS, m_BitCast(m_Value(X))) && match(RHS, m_Undef()) &&
Sanjay Patel6a7e9582020-04-14 14:41:35 -04001963 X->getType()->isVectorTy() && VWidth == LHSWidth) {
1964 // Try to create a scaled mask constant.
Christopher Tetreault155740c2020-04-08 10:42:22 -07001965 auto *XType = cast<VectorType>(X->getType());
1966 unsigned XNumElts = XType->getNumElements();
Sanjay Patelf4448062020-04-02 13:44:50 -04001967 SmallVector<int, 16> ScaledMask;
Sanjay Patel6a7e9582020-04-14 14:41:35 -04001968 if (XNumElts >= VWidth) {
1969 assert(XNumElts % VWidth == 0 && "Unexpected vector bitcast");
1970 narrowShuffleMaskElts(XNumElts / VWidth, Mask, ScaledMask);
1971 } else {
1972 assert(VWidth % XNumElts == 0 && "Unexpected vector bitcast");
1973 if (!widenShuffleMaskElts(VWidth / XNumElts, Mask, ScaledMask))
1974 ScaledMask.clear();
1975 }
1976 if (!ScaledMask.empty()) {
1977 // If the shuffled source vector simplifies, cast that value to this
1978 // shuffle's type.
1979 if (auto *V = SimplifyShuffleVectorInst(X, UndefValue::get(XType),
1980 ScaledMask, XType, ShufQuery))
1981 return BitCastInst::Create(Instruction::BitCast, V, SVI.getType());
1982 }
Sanjay Patelf4448062020-04-02 13:44:50 -04001983 }
1984
Sanjay Patel35827162019-11-25 13:30:45 -05001985 if (LHS == RHS) {
Sanjay Patel847aabf2019-11-25 10:54:18 -05001986 assert(!isa<UndefValue>(RHS) && "Shuffle with 2 undef ops not simplified?");
Chris Lattnerec97a902010-01-05 05:36:20 +00001987 // Remap any references to RHS to use LHS.
Eli Friedman1ee6ec22020-03-31 13:08:59 -07001988 SmallVector<int, 16> Elts;
Sanjay Patel20684092019-11-25 10:40:21 -05001989 for (unsigned i = 0; i != VWidth; ++i) {
Sanjay Patel35827162019-11-25 13:30:45 -05001990 // Propagate undef elements or force mask to LHS.
1991 if (Mask[i] < 0)
Eli Friedman1ee6ec22020-03-31 13:08:59 -07001992 Elts.push_back(UndefMaskElem);
Sanjay Patelfc31b582019-11-25 11:11:12 -05001993 else
Eli Friedman1ee6ec22020-03-31 13:08:59 -07001994 Elts.push_back(Mask[i] % LHSWidth);
Chris Lattnerec97a902010-01-05 05:36:20 +00001995 }
Eli Friedman1ee6ec22020-03-31 13:08:59 -07001996 return new ShuffleVectorInst(LHS, UndefValue::get(RHS->getType()), Elts);
Chris Lattnerec97a902010-01-05 05:36:20 +00001997 }
Bob Wilson8ecf98b2010-10-29 22:20:43 +00001998
Sanjay Patel35827162019-11-25 13:30:45 -05001999 // shuffle undef, x, mask --> shuffle x, undef, mask'
2000 if (isa<UndefValue>(LHS)) {
2001 SVI.commute();
2002 return &SVI;
2003 }
2004
Sanjay Patel0b591032019-07-08 16:26:48 +00002005 if (Instruction *I = canonicalizeInsertSplat(SVI, Builder))
2006 return I;
2007
Sanjay Patel3f4d1b42019-03-29 16:49:38 +00002008 if (Instruction *I = foldSelectShuffle(SVI, Builder, DL))
2009 return I;
2010
Sanjay Patel538a8f02020-04-05 09:46:22 -04002011 if (Instruction *I = foldTruncShuffle(SVI, DL.isBigEndian()))
2012 return I;
2013
Sanjay Patel3f4d1b42019-03-29 16:49:38 +00002014 if (Instruction *I = narrowVectorSelect(SVI, Builder))
2015 return I;
2016
2017 APInt UndefElts(VWidth, 0);
2018 APInt AllOnesEltMask(APInt::getAllOnesValue(VWidth));
2019 if (Value *V = SimplifyDemandedVectorElts(&SVI, AllOnesEltMask, UndefElts)) {
2020 if (V != &SVI)
2021 return replaceInstUsesWith(SVI, V);
2022 return &SVI;
2023 }
2024
2025 if (Instruction *I = foldIdentityExtractShuffle(SVI))
2026 return I;
2027
Sanjay Patel6a554182019-05-22 00:32:25 +00002028 // These transforms have the potential to lose undef knowledge, so they are
Sanjay Patel3f4d1b42019-03-29 16:49:38 +00002029 // intentionally placed after SimplifyDemandedVectorElts().
Nikita Popov5a8819b2020-02-03 21:17:36 +01002030 if (Instruction *I = foldShuffleWithInsert(SVI, *this))
Sanjay Patel3f4d1b42019-03-29 16:49:38 +00002031 return I;
Sanjay Patel6a554182019-05-22 00:32:25 +00002032 if (Instruction *I = foldIdentityPaddedShuffles(SVI))
2033 return I;
Sanjay Patel3f4d1b42019-03-29 16:49:38 +00002034
Sanjay Patel26c119a2018-09-30 13:50:42 +00002035 if (isa<UndefValue>(RHS) && canEvaluateShuffled(LHS, Mask)) {
Sanjay Patel54d31ef2018-09-29 15:05:24 +00002036 Value *V = evaluateInDifferentElementOrder(LHS, Mask);
Sanjay Patel4b198802016-02-01 22:23:39 +00002037 return replaceInstUsesWith(SVI, V);
Nick Lewyckya2b77202013-05-31 00:59:42 +00002038 }
2039
JF Bastiend52c9902015-02-25 22:30:51 +00002040 // SROA generates shuffle+bitcast when the extracted sub-vector is bitcast to
2041 // a non-vector type. We can instead bitcast the original vector followed by
2042 // an extract of the desired element:
2043 //
2044 // %sroa = shufflevector <16 x i8> %in, <16 x i8> undef,
2045 // <4 x i32> <i32 0, i32 1, i32 2, i32 3>
2046 // %1 = bitcast <4 x i8> %sroa to i32
2047 // Becomes:
2048 // %bc = bitcast <16 x i8> %in to <4 x i32>
2049 // %ext = extractelement <4 x i32> %bc, i32 0
2050 //
2051 // If the shuffle is extracting a contiguous range of values from the input
2052 // vector then each use which is a bitcast of the extracted size can be
2053 // replaced. This will work if the vector types are compatible, and the begin
2054 // index is aligned to a value in the casted vector type. If the begin index
2055 // isn't aligned then we can shuffle the original vector (keeping the same
2056 // vector type) before extracting.
2057 //
2058 // This code will bail out if the target type is fundamentally incompatible
2059 // with vectors of the source type.
2060 //
2061 // Example of <16 x i8>, target type i32:
2062 // Index range [4,8): v-----------v Will work.
2063 // +--+--+--+--+--+--+--+--+--+--+--+--+--+--+--+--+
2064 // <16 x i8>: | | | | | | | | | | | | | | | | |
2065 // <4 x i32>: | | | | |
2066 // +-----------+-----------+-----------+-----------+
2067 // Index range [6,10): ^-----------^ Needs an extra shuffle.
2068 // Target type i40: ^--------------^ Won't work, bail.
Sanjay Patel3f4d1b42019-03-29 16:49:38 +00002069 bool MadeChange = false;
JF Bastiend52c9902015-02-25 22:30:51 +00002070 if (isShuffleExtractingFromLHS(SVI, Mask)) {
2071 Value *V = LHS;
2072 unsigned MaskElems = Mask.size();
JF Bastiend52c9902015-02-25 22:30:51 +00002073 VectorType *SrcTy = cast<VectorType>(V->getType());
Christopher Tetreault8226d592020-04-14 13:46:27 -07002074 unsigned VecBitWidth = SrcTy->getPrimitiveSizeInBits().getFixedSize();
David Majnemer98cfe2b2015-04-03 20:18:40 +00002075 unsigned SrcElemBitWidth = DL.getTypeSizeInBits(SrcTy->getElementType());
JF Bastiend52c9902015-02-25 22:30:51 +00002076 assert(SrcElemBitWidth && "vector elements must have a bitwidth");
2077 unsigned SrcNumElems = SrcTy->getNumElements();
2078 SmallVector<BitCastInst *, 8> BCs;
2079 DenseMap<Type *, Value *> NewBCs;
2080 for (User *U : SVI.users())
2081 if (BitCastInst *BC = dyn_cast<BitCastInst>(U))
2082 if (!BC->use_empty())
2083 // Only visit bitcasts that weren't previously handled.
2084 BCs.push_back(BC);
2085 for (BitCastInst *BC : BCs) {
Eugene Leviant958fcd72017-02-17 07:36:03 +00002086 unsigned BegIdx = Mask.front();
JF Bastiend52c9902015-02-25 22:30:51 +00002087 Type *TgtTy = BC->getDestTy();
David Majnemer98cfe2b2015-04-03 20:18:40 +00002088 unsigned TgtElemBitWidth = DL.getTypeSizeInBits(TgtTy);
JF Bastiend52c9902015-02-25 22:30:51 +00002089 if (!TgtElemBitWidth)
2090 continue;
2091 unsigned TgtNumElems = VecBitWidth / TgtElemBitWidth;
2092 bool VecBitWidthsEqual = VecBitWidth == TgtNumElems * TgtElemBitWidth;
2093 bool BegIsAligned = 0 == ((SrcElemBitWidth * BegIdx) % TgtElemBitWidth);
2094 if (!VecBitWidthsEqual)
2095 continue;
2096 if (!VectorType::isValidElementType(TgtTy))
2097 continue;
2098 VectorType *CastSrcTy = VectorType::get(TgtTy, TgtNumElems);
2099 if (!BegIsAligned) {
2100 // Shuffle the input so [0,NumElements) contains the output, and
2101 // [NumElems,SrcNumElems) is undef.
2102 SmallVector<Constant *, 16> ShuffleMask(SrcNumElems,
2103 UndefValue::get(Int32Ty));
2104 for (unsigned I = 0, E = MaskElems, Idx = BegIdx; I != E; ++Idx, ++I)
2105 ShuffleMask[I] = ConstantInt::get(Int32Ty, Idx);
Craig Topperbb4069e2017-07-07 23:16:26 +00002106 V = Builder.CreateShuffleVector(V, UndefValue::get(V->getType()),
2107 ConstantVector::get(ShuffleMask),
2108 SVI.getName() + ".extract");
JF Bastiend52c9902015-02-25 22:30:51 +00002109 BegIdx = 0;
2110 }
2111 unsigned SrcElemsPerTgtElem = TgtElemBitWidth / SrcElemBitWidth;
2112 assert(SrcElemsPerTgtElem);
2113 BegIdx /= SrcElemsPerTgtElem;
2114 bool BCAlreadyExists = NewBCs.find(CastSrcTy) != NewBCs.end();
2115 auto *NewBC =
2116 BCAlreadyExists
2117 ? NewBCs[CastSrcTy]
Craig Topperbb4069e2017-07-07 23:16:26 +00002118 : Builder.CreateBitCast(V, CastSrcTy, SVI.getName() + ".bc");
JF Bastiend52c9902015-02-25 22:30:51 +00002119 if (!BCAlreadyExists)
2120 NewBCs[CastSrcTy] = NewBC;
Craig Topperbb4069e2017-07-07 23:16:26 +00002121 auto *Ext = Builder.CreateExtractElement(
JF Bastiend52c9902015-02-25 22:30:51 +00002122 NewBC, ConstantInt::get(Int32Ty, BegIdx), SVI.getName() + ".extract");
2123 // The shufflevector isn't being replaced: the bitcast that used it
2124 // is. InstCombine will visit the newly-created instructions.
Sanjay Patel4b198802016-02-01 22:23:39 +00002125 replaceInstUsesWith(*BC, Ext);
JF Bastiend52c9902015-02-25 22:30:51 +00002126 MadeChange = true;
2127 }
2128 }
2129
Eric Christopher51edc7b2010-08-17 22:55:27 +00002130 // If the LHS is a shufflevector itself, see if we can combine it with this
Eli Friedmance818272011-10-21 19:06:29 +00002131 // one without producing an unusual shuffle.
2132 // Cases that might be simplified:
2133 // 1.
2134 // x1=shuffle(v1,v2,mask1)
2135 // x=shuffle(x1,undef,mask)
2136 // ==>
2137 // x=shuffle(v1,undef,newMask)
2138 // newMask[i] = (mask[i] < x1.size()) ? mask1[mask[i]] : -1
2139 // 2.
2140 // x1=shuffle(v1,undef,mask1)
2141 // x=shuffle(x1,x2,mask)
2142 // where v1.size() == mask1.size()
2143 // ==>
2144 // x=shuffle(v1,x2,newMask)
2145 // newMask[i] = (mask[i] < x1.size()) ? mask1[mask[i]] : mask[i]
2146 // 3.
2147 // x2=shuffle(v2,undef,mask2)
2148 // x=shuffle(x1,x2,mask)
2149 // where v2.size() == mask2.size()
2150 // ==>
2151 // x=shuffle(x1,v2,newMask)
2152 // newMask[i] = (mask[i] < x1.size())
2153 // ? mask[i] : mask2[mask[i]-x1.size()]+x1.size()
2154 // 4.
2155 // x1=shuffle(v1,undef,mask1)
2156 // x2=shuffle(v2,undef,mask2)
2157 // x=shuffle(x1,x2,mask)
2158 // where v1.size() == v2.size()
2159 // ==>
2160 // x=shuffle(v1,v2,newMask)
2161 // newMask[i] = (mask[i] < x1.size())
2162 // ? mask1[mask[i]] : mask2[mask[i]-x1.size()]+v1.size()
2163 //
2164 // Here we are really conservative:
Eric Christopher51edc7b2010-08-17 22:55:27 +00002165 // we are absolutely afraid of producing a shuffle mask not in the input
2166 // program, because the code gen may not be smart enough to turn a merged
2167 // shuffle into two specific shuffles: it may produce worse code. As such,
Jim Grosbachd11584a2013-05-01 00:25:27 +00002168 // we only merge two shuffles if the result is either a splat or one of the
2169 // input shuffle masks. In this case, merging the shuffles just removes
2170 // one instruction, which we know is safe. This is good for things like
Eli Friedmance818272011-10-21 19:06:29 +00002171 // turning: (splat(splat)) -> splat, or
2172 // merge(V[0..n], V[n+1..2n]) -> V[0..2n]
2173 ShuffleVectorInst* LHSShuffle = dyn_cast<ShuffleVectorInst>(LHS);
2174 ShuffleVectorInst* RHSShuffle = dyn_cast<ShuffleVectorInst>(RHS);
2175 if (LHSShuffle)
2176 if (!isa<UndefValue>(LHSShuffle->getOperand(1)) && !isa<UndefValue>(RHS))
Craig Topperf40110f2014-04-25 05:29:35 +00002177 LHSShuffle = nullptr;
Eli Friedmance818272011-10-21 19:06:29 +00002178 if (RHSShuffle)
2179 if (!isa<UndefValue>(RHSShuffle->getOperand(1)))
Craig Topperf40110f2014-04-25 05:29:35 +00002180 RHSShuffle = nullptr;
Eli Friedmance818272011-10-21 19:06:29 +00002181 if (!LHSShuffle && !RHSShuffle)
Craig Topperf40110f2014-04-25 05:29:35 +00002182 return MadeChange ? &SVI : nullptr;
Eli Friedmance818272011-10-21 19:06:29 +00002183
Craig Topperf40110f2014-04-25 05:29:35 +00002184 Value* LHSOp0 = nullptr;
2185 Value* LHSOp1 = nullptr;
2186 Value* RHSOp0 = nullptr;
Eli Friedmance818272011-10-21 19:06:29 +00002187 unsigned LHSOp0Width = 0;
2188 unsigned RHSOp0Width = 0;
2189 if (LHSShuffle) {
2190 LHSOp0 = LHSShuffle->getOperand(0);
2191 LHSOp1 = LHSShuffle->getOperand(1);
Christopher Tetreault155740c2020-04-08 10:42:22 -07002192 LHSOp0Width = cast<VectorType>(LHSOp0->getType())->getNumElements();
Eli Friedmance818272011-10-21 19:06:29 +00002193 }
2194 if (RHSShuffle) {
2195 RHSOp0 = RHSShuffle->getOperand(0);
Christopher Tetreault155740c2020-04-08 10:42:22 -07002196 RHSOp0Width = cast<VectorType>(RHSOp0->getType())->getNumElements();
Eli Friedmance818272011-10-21 19:06:29 +00002197 }
2198 Value* newLHS = LHS;
2199 Value* newRHS = RHS;
2200 if (LHSShuffle) {
2201 // case 1
Eric Christopher51edc7b2010-08-17 22:55:27 +00002202 if (isa<UndefValue>(RHS)) {
Eli Friedmance818272011-10-21 19:06:29 +00002203 newLHS = LHSOp0;
2204 newRHS = LHSOp1;
2205 }
2206 // case 2 or 4
2207 else if (LHSOp0Width == LHSWidth) {
2208 newLHS = LHSOp0;
2209 }
2210 }
2211 // case 3 or 4
2212 if (RHSShuffle && RHSOp0Width == LHSWidth) {
2213 newRHS = RHSOp0;
2214 }
2215 // case 4
2216 if (LHSOp0 == RHSOp0) {
2217 newLHS = LHSOp0;
Craig Topperf40110f2014-04-25 05:29:35 +00002218 newRHS = nullptr;
Eli Friedmance818272011-10-21 19:06:29 +00002219 }
Bob Wilson8ecf98b2010-10-29 22:20:43 +00002220
Eli Friedmance818272011-10-21 19:06:29 +00002221 if (newLHS == LHS && newRHS == RHS)
Craig Topperf40110f2014-04-25 05:29:35 +00002222 return MadeChange ? &SVI : nullptr;
Bob Wilson8ecf98b2010-10-29 22:20:43 +00002223
Eli Friedman1ee6ec22020-03-31 13:08:59 -07002224 ArrayRef<int> LHSMask;
2225 ArrayRef<int> RHSMask;
Chris Lattner8326bd82012-01-26 00:42:34 +00002226 if (newLHS != LHS)
2227 LHSMask = LHSShuffle->getShuffleMask();
2228 if (RHSShuffle && newRHS != RHS)
2229 RHSMask = RHSShuffle->getShuffleMask();
2230
Eli Friedmance818272011-10-21 19:06:29 +00002231 unsigned newLHSWidth = (newLHS != LHS) ? LHSOp0Width : LHSWidth;
2232 SmallVector<int, 16> newMask;
2233 bool isSplat = true;
2234 int SplatElt = -1;
2235 // Create a new mask for the new ShuffleVectorInst so that the new
2236 // ShuffleVectorInst is equivalent to the original one.
2237 for (unsigned i = 0; i < VWidth; ++i) {
2238 int eltMask;
Craig Topper45d9f4b2013-01-18 05:30:07 +00002239 if (Mask[i] < 0) {
Eli Friedmance818272011-10-21 19:06:29 +00002240 // This element is an undef value.
2241 eltMask = -1;
2242 } else if (Mask[i] < (int)LHSWidth) {
2243 // This element is from left hand side vector operand.
Craig Topper2ea22b02013-01-18 05:09:16 +00002244 //
Eli Friedmance818272011-10-21 19:06:29 +00002245 // If LHS is going to be replaced (case 1, 2, or 4), calculate the
2246 // new mask value for the element.
2247 if (newLHS != LHS) {
2248 eltMask = LHSMask[Mask[i]];
2249 // If the value selected is an undef value, explicitly specify it
2250 // with a -1 mask value.
2251 if (eltMask >= (int)LHSOp0Width && isa<UndefValue>(LHSOp1))
2252 eltMask = -1;
Craig Topper2ea22b02013-01-18 05:09:16 +00002253 } else
Eli Friedmance818272011-10-21 19:06:29 +00002254 eltMask = Mask[i];
2255 } else {
2256 // This element is from right hand side vector operand
2257 //
2258 // If the value selected is an undef value, explicitly specify it
2259 // with a -1 mask value. (case 1)
2260 if (isa<UndefValue>(RHS))
2261 eltMask = -1;
2262 // If RHS is going to be replaced (case 3 or 4), calculate the
2263 // new mask value for the element.
2264 else if (newRHS != RHS) {
2265 eltMask = RHSMask[Mask[i]-LHSWidth];
2266 // If the value selected is an undef value, explicitly specify it
2267 // with a -1 mask value.
2268 if (eltMask >= (int)RHSOp0Width) {
2269 assert(isa<UndefValue>(RHSShuffle->getOperand(1))
2270 && "should have been check above");
2271 eltMask = -1;
Nate Begeman2a0ca3e92010-08-13 00:17:53 +00002272 }
Craig Topper2ea22b02013-01-18 05:09:16 +00002273 } else
Eli Friedmance818272011-10-21 19:06:29 +00002274 eltMask = Mask[i]-LHSWidth;
2275
2276 // If LHS's width is changed, shift the mask value accordingly.
Eugene Zelenko7f0f9bc2017-10-24 21:24:53 +00002277 // If newRHS == nullptr, i.e. LHSOp0 == RHSOp0, we want to remap any
Michael Gottesman02a11412012-10-16 21:29:38 +00002278 // references from RHSOp0 to LHSOp0, so we don't need to shift the mask.
2279 // If newRHS == newLHS, we want to remap any references from newRHS to
2280 // newLHS so that we can properly identify splats that may occur due to
Alp Tokercb402912014-01-24 17:20:08 +00002281 // obfuscation across the two vectors.
Craig Topperf40110f2014-04-25 05:29:35 +00002282 if (eltMask >= 0 && newRHS != nullptr && newLHS != newRHS)
Eli Friedmance818272011-10-21 19:06:29 +00002283 eltMask += newLHSWidth;
Nate Begeman2a0ca3e92010-08-13 00:17:53 +00002284 }
Eli Friedmance818272011-10-21 19:06:29 +00002285
2286 // Check if this could still be a splat.
2287 if (eltMask >= 0) {
2288 if (SplatElt >= 0 && SplatElt != eltMask)
2289 isSplat = false;
2290 SplatElt = eltMask;
2291 }
2292
2293 newMask.push_back(eltMask);
2294 }
2295
2296 // If the result mask is equal to one of the original shuffle masks,
Jim Grosbachd11584a2013-05-01 00:25:27 +00002297 // or is a splat, do the replacement.
2298 if (isSplat || newMask == LHSMask || newMask == RHSMask || newMask == Mask) {
Eli Friedmance818272011-10-21 19:06:29 +00002299 SmallVector<Constant*, 16> Elts;
Eli Friedmance818272011-10-21 19:06:29 +00002300 for (unsigned i = 0, e = newMask.size(); i != e; ++i) {
2301 if (newMask[i] < 0) {
2302 Elts.push_back(UndefValue::get(Int32Ty));
2303 } else {
2304 Elts.push_back(ConstantInt::get(Int32Ty, newMask[i]));
2305 }
2306 }
Craig Topperf40110f2014-04-25 05:29:35 +00002307 if (!newRHS)
Eli Friedmance818272011-10-21 19:06:29 +00002308 newRHS = UndefValue::get(newLHS->getType());
2309 return new ShuffleVectorInst(newLHS, newRHS, ConstantVector::get(Elts));
Nate Begeman2a0ca3e92010-08-13 00:17:53 +00002310 }
Bob Wilson8ecf98b2010-10-29 22:20:43 +00002311
Craig Topperf40110f2014-04-25 05:29:35 +00002312 return MadeChange ? &SVI : nullptr;
Chris Lattnerec97a902010-01-05 05:36:20 +00002313}