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Chris Lattnerec97a902010-01-05 05:36:20 +00001//===- InstCombineVectorOps.cpp -------------------------------------------===//
2//
3// The LLVM Compiler Infrastructure
4//
5// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
9//
10// This file implements instcombine for ExtractElement, InsertElement and
11// ShuffleVector.
12//
13//===----------------------------------------------------------------------===//
14
15#include "InstCombine.h"
Nadav Rotem7df85092013-01-15 23:43:14 +000016#include "llvm/Support/PatternMatch.h"
Chris Lattnerec97a902010-01-05 05:36:20 +000017using namespace llvm;
Nadav Rotem7df85092013-01-15 23:43:14 +000018using namespace PatternMatch;
Chris Lattnerec97a902010-01-05 05:36:20 +000019
20/// CheapToScalarize - Return true if the value is cheaper to scalarize than it
Chris Lattnera0d01ff2012-01-24 14:31:22 +000021/// is to leave as a vector operation. isConstant indicates whether we're
22/// extracting one known element. If false we're extracting a variable index.
Chris Lattnerec97a902010-01-05 05:36:20 +000023static bool CheapToScalarize(Value *V, bool isConstant) {
Chris Lattner8326bd82012-01-26 00:42:34 +000024 if (Constant *C = dyn_cast<Constant>(V)) {
Chris Lattnerec97a902010-01-05 05:36:20 +000025 if (isConstant) return true;
Chris Lattner8326bd82012-01-26 00:42:34 +000026
27 // If all elts are the same, we can extract it and use any of the values.
28 Constant *Op0 = C->getAggregateElement(0U);
29 for (unsigned i = 1, e = V->getType()->getVectorNumElements(); i != e; ++i)
30 if (C->getAggregateElement(i) != Op0)
Chris Lattnerec97a902010-01-05 05:36:20 +000031 return false;
32 return true;
33 }
34 Instruction *I = dyn_cast<Instruction>(V);
35 if (!I) return false;
Bob Wilson8ecf98b2010-10-29 22:20:43 +000036
Chris Lattnerec97a902010-01-05 05:36:20 +000037 // Insert element gets simplified to the inserted element or is deleted if
38 // this is constant idx extract element and its a constant idx insertelt.
39 if (I->getOpcode() == Instruction::InsertElement && isConstant &&
40 isa<ConstantInt>(I->getOperand(2)))
41 return true;
42 if (I->getOpcode() == Instruction::Load && I->hasOneUse())
43 return true;
44 if (BinaryOperator *BO = dyn_cast<BinaryOperator>(I))
45 if (BO->hasOneUse() &&
46 (CheapToScalarize(BO->getOperand(0), isConstant) ||
47 CheapToScalarize(BO->getOperand(1), isConstant)))
48 return true;
49 if (CmpInst *CI = dyn_cast<CmpInst>(I))
50 if (CI->hasOneUse() &&
51 (CheapToScalarize(CI->getOperand(0), isConstant) ||
52 CheapToScalarize(CI->getOperand(1), isConstant)))
53 return true;
Bob Wilson8ecf98b2010-10-29 22:20:43 +000054
Chris Lattnerec97a902010-01-05 05:36:20 +000055 return false;
56}
57
Chris Lattnerec97a902010-01-05 05:36:20 +000058/// FindScalarElement - Given a vector and an element number, see if the scalar
59/// value is already around as a register, for example if it were inserted then
60/// extracted from the vector.
61static Value *FindScalarElement(Value *V, unsigned EltNo) {
Duncan Sands19d0b472010-02-16 11:11:14 +000062 assert(V->getType()->isVectorTy() && "Not looking at a vector?");
Chris Lattner8326bd82012-01-26 00:42:34 +000063 VectorType *VTy = cast<VectorType>(V->getType());
64 unsigned Width = VTy->getNumElements();
Chris Lattnerec97a902010-01-05 05:36:20 +000065 if (EltNo >= Width) // Out of range access.
Chris Lattner8326bd82012-01-26 00:42:34 +000066 return UndefValue::get(VTy->getElementType());
Bob Wilson8ecf98b2010-10-29 22:20:43 +000067
Chris Lattner8326bd82012-01-26 00:42:34 +000068 if (Constant *C = dyn_cast<Constant>(V))
69 return C->getAggregateElement(EltNo);
Bob Wilson8ecf98b2010-10-29 22:20:43 +000070
Chris Lattner841af4f2010-01-05 05:42:08 +000071 if (InsertElementInst *III = dyn_cast<InsertElementInst>(V)) {
Chris Lattnerec97a902010-01-05 05:36:20 +000072 // If this is an insert to a variable element, we don't know what it is.
Bob Wilson8ecf98b2010-10-29 22:20:43 +000073 if (!isa<ConstantInt>(III->getOperand(2)))
Chris Lattnerec97a902010-01-05 05:36:20 +000074 return 0;
75 unsigned IIElt = cast<ConstantInt>(III->getOperand(2))->getZExtValue();
Bob Wilson8ecf98b2010-10-29 22:20:43 +000076
Chris Lattnerec97a902010-01-05 05:36:20 +000077 // If this is an insert to the element we are looking for, return the
78 // inserted value.
Bob Wilson8ecf98b2010-10-29 22:20:43 +000079 if (EltNo == IIElt)
Chris Lattnerec97a902010-01-05 05:36:20 +000080 return III->getOperand(1);
Bob Wilson8ecf98b2010-10-29 22:20:43 +000081
Chris Lattnerec97a902010-01-05 05:36:20 +000082 // Otherwise, the insertelement doesn't modify the value, recurse on its
83 // vector input.
84 return FindScalarElement(III->getOperand(0), EltNo);
Chris Lattner841af4f2010-01-05 05:42:08 +000085 }
Bob Wilson8ecf98b2010-10-29 22:20:43 +000086
Chris Lattner841af4f2010-01-05 05:42:08 +000087 if (ShuffleVectorInst *SVI = dyn_cast<ShuffleVectorInst>(V)) {
Chris Lattner8326bd82012-01-26 00:42:34 +000088 unsigned LHSWidth = SVI->getOperand(0)->getType()->getVectorNumElements();
Eli Friedman303c81c2011-10-21 19:11:34 +000089 int InEl = SVI->getMaskValue(EltNo);
Bob Wilson8ecf98b2010-10-29 22:20:43 +000090 if (InEl < 0)
Chris Lattner8326bd82012-01-26 00:42:34 +000091 return UndefValue::get(VTy->getElementType());
Bob Wilson11ee4562010-10-29 22:03:05 +000092 if (InEl < (int)LHSWidth)
93 return FindScalarElement(SVI->getOperand(0), InEl);
94 return FindScalarElement(SVI->getOperand(1), InEl - LHSWidth);
Chris Lattnerec97a902010-01-05 05:36:20 +000095 }
Bob Wilson8ecf98b2010-10-29 22:20:43 +000096
Nadav Rotem7df85092013-01-15 23:43:14 +000097 // Extract a value from a vector add operation with a constant zero.
98 Value *Val = 0; Constant *Con = 0;
99 if (match(V, m_Add(m_Value(Val), m_Constant(Con)))) {
100 if (Con->getAggregateElement(EltNo)->isNullValue())
101 return FindScalarElement(Val, EltNo);
102 }
103
Chris Lattnerec97a902010-01-05 05:36:20 +0000104 // Otherwise, we don't know.
105 return 0;
106}
107
Anat Shemer0c95efa2013-04-18 19:35:39 +0000108// If we have a PHI node with a vector type that has only 2 uses: feed
Matt Arsenault38874732013-08-28 22:17:26 +0000109// itself and be an operand of extractelement at a constant location,
110// try to replace the PHI of the vector type with a PHI of a scalar type.
Anat Shemer0c95efa2013-04-18 19:35:39 +0000111Instruction *InstCombiner::scalarizePHI(ExtractElementInst &EI, PHINode *PN) {
112 // Verify that the PHI node has exactly 2 uses. Otherwise return NULL.
113 if (!PN->hasNUses(2))
114 return NULL;
115
116 // If so, it's known at this point that one operand is PHI and the other is
117 // an extractelement node. Find the PHI user that is not the extractelement
118 // node.
119 Value::use_iterator iu = PN->use_begin();
120 Instruction *PHIUser = dyn_cast<Instruction>(*iu);
121 if (PHIUser == cast<Instruction>(&EI))
122 PHIUser = cast<Instruction>(*(++iu));
123
124 // Verify that this PHI user has one use, which is the PHI itself,
125 // and that it is a binary operation which is cheap to scalarize.
126 // otherwise return NULL.
127 if (!PHIUser->hasOneUse() || !(PHIUser->use_back() == PN) ||
Joey Goulyb34294d2013-05-24 12:33:28 +0000128 !(isa<BinaryOperator>(PHIUser)) || !CheapToScalarize(PHIUser, true))
Anat Shemer0c95efa2013-04-18 19:35:39 +0000129 return NULL;
130
131 // Create a scalar PHI node that will replace the vector PHI node
132 // just before the current PHI node.
Joey Goulyb34294d2013-05-24 12:33:28 +0000133 PHINode *scalarPHI = cast<PHINode>(InsertNewInstWith(
134 PHINode::Create(EI.getType(), PN->getNumIncomingValues(), ""), *PN));
Anat Shemer0c95efa2013-04-18 19:35:39 +0000135 // Scalarize each PHI operand.
Joey Goulyb34294d2013-05-24 12:33:28 +0000136 for (unsigned i = 0; i < PN->getNumIncomingValues(); i++) {
Anat Shemer0c95efa2013-04-18 19:35:39 +0000137 Value *PHIInVal = PN->getIncomingValue(i);
138 BasicBlock *inBB = PN->getIncomingBlock(i);
139 Value *Elt = EI.getIndexOperand();
140 // If the operand is the PHI induction variable:
141 if (PHIInVal == PHIUser) {
142 // Scalarize the binary operation. Its first operand is the
143 // scalar PHI and the second operand is extracted from the other
144 // vector operand.
145 BinaryOperator *B0 = cast<BinaryOperator>(PHIUser);
Joey Goulyb34294d2013-05-24 12:33:28 +0000146 unsigned opId = (B0->getOperand(0) == PN) ? 1 : 0;
Joey Gouly83699282013-05-24 12:29:54 +0000147 Value *Op = InsertNewInstWith(
148 ExtractElementInst::Create(B0->getOperand(opId), Elt,
149 B0->getOperand(opId)->getName() + ".Elt"),
150 *B0);
Anat Shemer0c95efa2013-04-18 19:35:39 +0000151 Value *newPHIUser = InsertNewInstWith(
Joey Goulyb34294d2013-05-24 12:33:28 +0000152 BinaryOperator::Create(B0->getOpcode(), scalarPHI, Op), *B0);
Anat Shemer0c95efa2013-04-18 19:35:39 +0000153 scalarPHI->addIncoming(newPHIUser, inBB);
154 } else {
155 // Scalarize PHI input:
Joey Goulyb34294d2013-05-24 12:33:28 +0000156 Instruction *newEI = ExtractElementInst::Create(PHIInVal, Elt, "");
Anat Shemer0c95efa2013-04-18 19:35:39 +0000157 // Insert the new instruction into the predecessor basic block.
158 Instruction *pos = dyn_cast<Instruction>(PHIInVal);
159 BasicBlock::iterator InsertPos;
160 if (pos && !isa<PHINode>(pos)) {
161 InsertPos = pos;
162 ++InsertPos;
163 } else {
164 InsertPos = inBB->getFirstInsertionPt();
165 }
166
167 InsertNewInstWith(newEI, *InsertPos);
168
169 scalarPHI->addIncoming(newEI, inBB);
170 }
171 }
172 return ReplaceInstUsesWith(EI, scalarPHI);
173}
174
Chris Lattnerec97a902010-01-05 05:36:20 +0000175Instruction *InstCombiner::visitExtractElementInst(ExtractElementInst &EI) {
Chris Lattner8326bd82012-01-26 00:42:34 +0000176 // If vector val is constant with all elements the same, replace EI with
177 // that element. We handle a known element # below.
178 if (Constant *C = dyn_cast<Constant>(EI.getOperand(0)))
179 if (CheapToScalarize(C, false))
180 return ReplaceInstUsesWith(EI, C->getAggregateElement(0U));
Bob Wilson8ecf98b2010-10-29 22:20:43 +0000181
Chris Lattnerec97a902010-01-05 05:36:20 +0000182 // If extracting a specified index from the vector, see if we can recursively
183 // find a previously computed scalar that was inserted into the vector.
184 if (ConstantInt *IdxC = dyn_cast<ConstantInt>(EI.getOperand(1))) {
185 unsigned IndexVal = IdxC->getZExtValue();
186 unsigned VectorWidth = EI.getVectorOperandType()->getNumElements();
Bob Wilson8ecf98b2010-10-29 22:20:43 +0000187
Chris Lattnerec97a902010-01-05 05:36:20 +0000188 // If this is extracting an invalid index, turn this into undef, to avoid
189 // crashing the code below.
190 if (IndexVal >= VectorWidth)
191 return ReplaceInstUsesWith(EI, UndefValue::get(EI.getType()));
Bob Wilson8ecf98b2010-10-29 22:20:43 +0000192
Chris Lattnerec97a902010-01-05 05:36:20 +0000193 // This instruction only demands the single element from the input vector.
194 // If the input vector has a single use, simplify it based on this use
195 // property.
196 if (EI.getOperand(0)->hasOneUse() && VectorWidth != 1) {
197 APInt UndefElts(VectorWidth, 0);
Chris Lattnerb22423c2010-02-08 23:56:03 +0000198 APInt DemandedMask(VectorWidth, 0);
Jay Foad25a5e4c2010-12-01 08:53:58 +0000199 DemandedMask.setBit(IndexVal);
Chris Lattnerec97a902010-01-05 05:36:20 +0000200 if (Value *V = SimplifyDemandedVectorElts(EI.getOperand(0),
201 DemandedMask, UndefElts)) {
202 EI.setOperand(0, V);
203 return &EI;
204 }
205 }
Bob Wilson8ecf98b2010-10-29 22:20:43 +0000206
Chris Lattnerec97a902010-01-05 05:36:20 +0000207 if (Value *Elt = FindScalarElement(EI.getOperand(0), IndexVal))
208 return ReplaceInstUsesWith(EI, Elt);
Bob Wilson8ecf98b2010-10-29 22:20:43 +0000209
Chris Lattnerec97a902010-01-05 05:36:20 +0000210 // If the this extractelement is directly using a bitcast from a vector of
211 // the same number of elements, see if we can find the source element from
212 // it. In this case, we will end up needing to bitcast the scalars.
213 if (BitCastInst *BCI = dyn_cast<BitCastInst>(EI.getOperand(0))) {
Chris Lattner8326bd82012-01-26 00:42:34 +0000214 if (VectorType *VT = dyn_cast<VectorType>(BCI->getOperand(0)->getType()))
Chris Lattnerec97a902010-01-05 05:36:20 +0000215 if (VT->getNumElements() == VectorWidth)
216 if (Value *Elt = FindScalarElement(BCI->getOperand(0), IndexVal))
217 return new BitCastInst(Elt, EI.getType());
218 }
Anat Shemer0c95efa2013-04-18 19:35:39 +0000219
220 // If there's a vector PHI feeding a scalar use through this extractelement
221 // instruction, try to scalarize the PHI.
222 if (PHINode *PN = dyn_cast<PHINode>(EI.getOperand(0))) {
Nick Lewycky881e9d62013-05-04 01:08:15 +0000223 Instruction *scalarPHI = scalarizePHI(EI, PN);
224 if (scalarPHI)
Joey Goulyb34294d2013-05-24 12:33:28 +0000225 return scalarPHI;
Anat Shemer0c95efa2013-04-18 19:35:39 +0000226 }
Chris Lattnerec97a902010-01-05 05:36:20 +0000227 }
Bob Wilson8ecf98b2010-10-29 22:20:43 +0000228
Chris Lattnerec97a902010-01-05 05:36:20 +0000229 if (Instruction *I = dyn_cast<Instruction>(EI.getOperand(0))) {
230 // Push extractelement into predecessor operation if legal and
231 // profitable to do so
232 if (BinaryOperator *BO = dyn_cast<BinaryOperator>(I)) {
233 if (I->hasOneUse() &&
234 CheapToScalarize(BO, isa<ConstantInt>(EI.getOperand(1)))) {
235 Value *newEI0 =
Bob Wilson67a6f322010-10-29 22:20:45 +0000236 Builder->CreateExtractElement(BO->getOperand(0), EI.getOperand(1),
237 EI.getName()+".lhs");
Chris Lattnerec97a902010-01-05 05:36:20 +0000238 Value *newEI1 =
Bob Wilson67a6f322010-10-29 22:20:45 +0000239 Builder->CreateExtractElement(BO->getOperand(1), EI.getOperand(1),
240 EI.getName()+".rhs");
Chris Lattnerec97a902010-01-05 05:36:20 +0000241 return BinaryOperator::Create(BO->getOpcode(), newEI0, newEI1);
242 }
243 } else if (InsertElementInst *IE = dyn_cast<InsertElementInst>(I)) {
244 // Extracting the inserted element?
245 if (IE->getOperand(2) == EI.getOperand(1))
246 return ReplaceInstUsesWith(EI, IE->getOperand(1));
247 // If the inserted and extracted elements are constants, they must not
248 // be the same value, extract from the pre-inserted value instead.
249 if (isa<Constant>(IE->getOperand(2)) && isa<Constant>(EI.getOperand(1))) {
250 Worklist.AddValue(EI.getOperand(0));
251 EI.setOperand(0, IE->getOperand(0));
252 return &EI;
253 }
254 } else if (ShuffleVectorInst *SVI = dyn_cast<ShuffleVectorInst>(I)) {
255 // If this is extracting an element from a shufflevector, figure out where
256 // it came from and extract from the appropriate input element instead.
257 if (ConstantInt *Elt = dyn_cast<ConstantInt>(EI.getOperand(1))) {
Eli Friedman303c81c2011-10-21 19:11:34 +0000258 int SrcIdx = SVI->getMaskValue(Elt->getZExtValue());
Chris Lattnerec97a902010-01-05 05:36:20 +0000259 Value *Src;
260 unsigned LHSWidth =
Chris Lattner8326bd82012-01-26 00:42:34 +0000261 SVI->getOperand(0)->getType()->getVectorNumElements();
Bob Wilson8ecf98b2010-10-29 22:20:43 +0000262
Bob Wilson11ee4562010-10-29 22:03:05 +0000263 if (SrcIdx < 0)
264 return ReplaceInstUsesWith(EI, UndefValue::get(EI.getType()));
265 if (SrcIdx < (int)LHSWidth)
Chris Lattnerec97a902010-01-05 05:36:20 +0000266 Src = SVI->getOperand(0);
Bob Wilson11ee4562010-10-29 22:03:05 +0000267 else {
Chris Lattnerec97a902010-01-05 05:36:20 +0000268 SrcIdx -= LHSWidth;
269 Src = SVI->getOperand(1);
Chris Lattnerec97a902010-01-05 05:36:20 +0000270 }
Chris Lattner229907c2011-07-18 04:54:35 +0000271 Type *Int32Ty = Type::getInt32Ty(EI.getContext());
Chris Lattnerec97a902010-01-05 05:36:20 +0000272 return ExtractElementInst::Create(Src,
Bob Wilson9d07f392010-10-29 22:03:07 +0000273 ConstantInt::get(Int32Ty,
Chris Lattnerec97a902010-01-05 05:36:20 +0000274 SrcIdx, false));
275 }
Nadav Rotemd74b72b2011-03-31 22:57:29 +0000276 } else if (CastInst *CI = dyn_cast<CastInst>(I)) {
277 // Canonicalize extractelement(cast) -> cast(extractelement)
278 // bitcasts can change the number of vector elements and they cost nothing
Anat Shemer55703182013-04-18 19:56:44 +0000279 if (CI->hasOneUse() && (CI->getOpcode() != Instruction::BitCast)) {
Anat Shemer10260a72013-04-22 20:51:10 +0000280 Value *EE = Builder->CreateExtractElement(CI->getOperand(0),
281 EI.getIndexOperand());
282 Worklist.AddValue(EE);
Nadav Rotemd74b72b2011-03-31 22:57:29 +0000283 return CastInst::Create(CI->getOpcode(), EE, EI.getType());
284 }
Matt Arsenault243140f2013-11-04 20:36:06 +0000285 } else if (SelectInst *SI = dyn_cast<SelectInst>(I)) {
286 if (SI->hasOneUse()) {
287 // TODO: For a select on vectors, it might be useful to do this if it
288 // has multiple extractelement uses. For vector select, that seems to
289 // fight the vectorizer.
290
291 // If we are extracting an element from a vector select or a select on
292 // vectors, a select on the scalars extracted from the vector arguments.
293 Value *TrueVal = SI->getTrueValue();
294 Value *FalseVal = SI->getFalseValue();
295
296 Value *Cond = SI->getCondition();
297 if (Cond->getType()->isVectorTy()) {
298 Cond = Builder->CreateExtractElement(Cond,
299 EI.getIndexOperand(),
300 Cond->getName() + ".elt");
301 }
302
303 Value *V1Elem
304 = Builder->CreateExtractElement(TrueVal,
305 EI.getIndexOperand(),
306 TrueVal->getName() + ".elt");
307
308 Value *V2Elem
309 = Builder->CreateExtractElement(FalseVal,
310 EI.getIndexOperand(),
311 FalseVal->getName() + ".elt");
312 return SelectInst::Create(Cond,
313 V1Elem,
314 V2Elem,
315 SI->getName() + ".elt");
316 }
Chris Lattnerec97a902010-01-05 05:36:20 +0000317 }
Chris Lattnerec97a902010-01-05 05:36:20 +0000318 }
319 return 0;
320}
321
322/// CollectSingleShuffleElements - If V is a shuffle of values that ONLY returns
Bob Wilson8ecf98b2010-10-29 22:20:43 +0000323/// elements from either LHS or RHS, return the shuffle mask and true.
Chris Lattnerec97a902010-01-05 05:36:20 +0000324/// Otherwise, return false.
325static bool CollectSingleShuffleElements(Value *V, Value *LHS, Value *RHS,
Chris Lattner0256be92012-01-27 03:08:05 +0000326 SmallVectorImpl<Constant*> &Mask) {
Chris Lattnerec97a902010-01-05 05:36:20 +0000327 assert(V->getType() == LHS->getType() && V->getType() == RHS->getType() &&
328 "Invalid CollectSingleShuffleElements");
Matt Arsenault8227b9f2013-09-06 00:37:24 +0000329 unsigned NumElts = V->getType()->getVectorNumElements();
Bob Wilson8ecf98b2010-10-29 22:20:43 +0000330
Chris Lattnerec97a902010-01-05 05:36:20 +0000331 if (isa<UndefValue>(V)) {
332 Mask.assign(NumElts, UndefValue::get(Type::getInt32Ty(V->getContext())));
333 return true;
334 }
Bob Wilson8ecf98b2010-10-29 22:20:43 +0000335
Chris Lattnerec97a902010-01-05 05:36:20 +0000336 if (V == LHS) {
337 for (unsigned i = 0; i != NumElts; ++i)
338 Mask.push_back(ConstantInt::get(Type::getInt32Ty(V->getContext()), i));
339 return true;
340 }
Bob Wilson8ecf98b2010-10-29 22:20:43 +0000341
Chris Lattnerec97a902010-01-05 05:36:20 +0000342 if (V == RHS) {
343 for (unsigned i = 0; i != NumElts; ++i)
344 Mask.push_back(ConstantInt::get(Type::getInt32Ty(V->getContext()),
345 i+NumElts));
346 return true;
347 }
Bob Wilson8ecf98b2010-10-29 22:20:43 +0000348
Chris Lattnerec97a902010-01-05 05:36:20 +0000349 if (InsertElementInst *IEI = dyn_cast<InsertElementInst>(V)) {
350 // If this is an insert of an extract from some other vector, include it.
351 Value *VecOp = IEI->getOperand(0);
352 Value *ScalarOp = IEI->getOperand(1);
353 Value *IdxOp = IEI->getOperand(2);
Bob Wilson8ecf98b2010-10-29 22:20:43 +0000354
Chris Lattnerec97a902010-01-05 05:36:20 +0000355 if (!isa<ConstantInt>(IdxOp))
356 return false;
357 unsigned InsertedIdx = cast<ConstantInt>(IdxOp)->getZExtValue();
Bob Wilson8ecf98b2010-10-29 22:20:43 +0000358
Chris Lattnerec97a902010-01-05 05:36:20 +0000359 if (isa<UndefValue>(ScalarOp)) { // inserting undef into vector.
360 // Okay, we can handle this if the vector we are insertinting into is
361 // transitively ok.
362 if (CollectSingleShuffleElements(VecOp, LHS, RHS, Mask)) {
363 // If so, update the mask to reflect the inserted undef.
364 Mask[InsertedIdx] = UndefValue::get(Type::getInt32Ty(V->getContext()));
365 return true;
Bob Wilson8ecf98b2010-10-29 22:20:43 +0000366 }
Chris Lattnerec97a902010-01-05 05:36:20 +0000367 } else if (ExtractElementInst *EI = dyn_cast<ExtractElementInst>(ScalarOp)){
368 if (isa<ConstantInt>(EI->getOperand(1)) &&
369 EI->getOperand(0)->getType() == V->getType()) {
370 unsigned ExtractedIdx =
371 cast<ConstantInt>(EI->getOperand(1))->getZExtValue();
Bob Wilson8ecf98b2010-10-29 22:20:43 +0000372
Chris Lattnerec97a902010-01-05 05:36:20 +0000373 // This must be extracting from either LHS or RHS.
374 if (EI->getOperand(0) == LHS || EI->getOperand(0) == RHS) {
375 // Okay, we can handle this if the vector we are insertinting into is
376 // transitively ok.
377 if (CollectSingleShuffleElements(VecOp, LHS, RHS, Mask)) {
378 // If so, update the mask to reflect the inserted value.
379 if (EI->getOperand(0) == LHS) {
Bob Wilson8ecf98b2010-10-29 22:20:43 +0000380 Mask[InsertedIdx % NumElts] =
Chris Lattnerec97a902010-01-05 05:36:20 +0000381 ConstantInt::get(Type::getInt32Ty(V->getContext()),
382 ExtractedIdx);
383 } else {
384 assert(EI->getOperand(0) == RHS);
Bob Wilson8ecf98b2010-10-29 22:20:43 +0000385 Mask[InsertedIdx % NumElts] =
Chris Lattnerec97a902010-01-05 05:36:20 +0000386 ConstantInt::get(Type::getInt32Ty(V->getContext()),
387 ExtractedIdx+NumElts);
Chris Lattnerec97a902010-01-05 05:36:20 +0000388 }
389 return true;
390 }
391 }
392 }
393 }
394 }
395 // TODO: Handle shufflevector here!
Bob Wilson8ecf98b2010-10-29 22:20:43 +0000396
Chris Lattnerec97a902010-01-05 05:36:20 +0000397 return false;
398}
399
400/// CollectShuffleElements - We are building a shuffle of V, using RHS as the
401/// RHS of the shuffle instruction, if it is not null. Return a shuffle mask
402/// that computes V and the LHS value of the shuffle.
Chris Lattner0256be92012-01-27 03:08:05 +0000403static Value *CollectShuffleElements(Value *V, SmallVectorImpl<Constant*> &Mask,
Chris Lattnerec97a902010-01-05 05:36:20 +0000404 Value *&RHS) {
Bob Wilson8ecf98b2010-10-29 22:20:43 +0000405 assert(V->getType()->isVectorTy() &&
Chris Lattnerec97a902010-01-05 05:36:20 +0000406 (RHS == 0 || V->getType() == RHS->getType()) &&
407 "Invalid shuffle!");
408 unsigned NumElts = cast<VectorType>(V->getType())->getNumElements();
Bob Wilson8ecf98b2010-10-29 22:20:43 +0000409
Chris Lattnerec97a902010-01-05 05:36:20 +0000410 if (isa<UndefValue>(V)) {
411 Mask.assign(NumElts, UndefValue::get(Type::getInt32Ty(V->getContext())));
412 return V;
Chris Lattnera0d01ff2012-01-24 14:31:22 +0000413 }
Craig Topper2ea22b02013-01-18 05:09:16 +0000414
Chris Lattnera0d01ff2012-01-24 14:31:22 +0000415 if (isa<ConstantAggregateZero>(V)) {
Chris Lattnerec97a902010-01-05 05:36:20 +0000416 Mask.assign(NumElts, ConstantInt::get(Type::getInt32Ty(V->getContext()),0));
417 return V;
Chris Lattnera0d01ff2012-01-24 14:31:22 +0000418 }
Craig Topper2ea22b02013-01-18 05:09:16 +0000419
Chris Lattnera0d01ff2012-01-24 14:31:22 +0000420 if (InsertElementInst *IEI = dyn_cast<InsertElementInst>(V)) {
Chris Lattnerec97a902010-01-05 05:36:20 +0000421 // If this is an insert of an extract from some other vector, include it.
422 Value *VecOp = IEI->getOperand(0);
423 Value *ScalarOp = IEI->getOperand(1);
424 Value *IdxOp = IEI->getOperand(2);
Bob Wilson8ecf98b2010-10-29 22:20:43 +0000425
Chris Lattnerec97a902010-01-05 05:36:20 +0000426 if (ExtractElementInst *EI = dyn_cast<ExtractElementInst>(ScalarOp)) {
427 if (isa<ConstantInt>(EI->getOperand(1)) && isa<ConstantInt>(IdxOp) &&
428 EI->getOperand(0)->getType() == V->getType()) {
429 unsigned ExtractedIdx =
Bob Wilson67a6f322010-10-29 22:20:45 +0000430 cast<ConstantInt>(EI->getOperand(1))->getZExtValue();
Chris Lattnerec97a902010-01-05 05:36:20 +0000431 unsigned InsertedIdx = cast<ConstantInt>(IdxOp)->getZExtValue();
Bob Wilson8ecf98b2010-10-29 22:20:43 +0000432
Chris Lattnerec97a902010-01-05 05:36:20 +0000433 // Either the extracted from or inserted into vector must be RHSVec,
434 // otherwise we'd end up with a shuffle of three inputs.
435 if (EI->getOperand(0) == RHS || RHS == 0) {
436 RHS = EI->getOperand(0);
437 Value *V = CollectShuffleElements(VecOp, Mask, RHS);
Bob Wilson8ecf98b2010-10-29 22:20:43 +0000438 Mask[InsertedIdx % NumElts] =
Bob Wilson67a6f322010-10-29 22:20:45 +0000439 ConstantInt::get(Type::getInt32Ty(V->getContext()),
440 NumElts+ExtractedIdx);
Chris Lattnerec97a902010-01-05 05:36:20 +0000441 return V;
442 }
Bob Wilson8ecf98b2010-10-29 22:20:43 +0000443
Chris Lattnerec97a902010-01-05 05:36:20 +0000444 if (VecOp == RHS) {
445 Value *V = CollectShuffleElements(EI->getOperand(0), Mask, RHS);
Benjamin Kramera95f8742013-04-11 15:10:09 +0000446 // Update Mask to reflect that `ScalarOp' has been inserted at
447 // position `InsertedIdx' within the vector returned by IEI.
448 Mask[InsertedIdx % NumElts] = Mask[ExtractedIdx];
449
Chris Lattnerec97a902010-01-05 05:36:20 +0000450 // Everything but the extracted element is replaced with the RHS.
451 for (unsigned i = 0; i != NumElts; ++i) {
452 if (i != InsertedIdx)
453 Mask[i] = ConstantInt::get(Type::getInt32Ty(V->getContext()),
454 NumElts+i);
455 }
456 return V;
457 }
Bob Wilson8ecf98b2010-10-29 22:20:43 +0000458
Chris Lattnerec97a902010-01-05 05:36:20 +0000459 // If this insertelement is a chain that comes from exactly these two
460 // vectors, return the vector and the effective shuffle.
461 if (CollectSingleShuffleElements(IEI, EI->getOperand(0), RHS, Mask))
462 return EI->getOperand(0);
463 }
464 }
465 }
466 // TODO: Handle shufflevector here!
Bob Wilson8ecf98b2010-10-29 22:20:43 +0000467
Chris Lattnerec97a902010-01-05 05:36:20 +0000468 // Otherwise, can't do anything fancy. Return an identity vector.
469 for (unsigned i = 0; i != NumElts; ++i)
470 Mask.push_back(ConstantInt::get(Type::getInt32Ty(V->getContext()), i));
471 return V;
472}
473
474Instruction *InstCombiner::visitInsertElementInst(InsertElementInst &IE) {
475 Value *VecOp = IE.getOperand(0);
476 Value *ScalarOp = IE.getOperand(1);
477 Value *IdxOp = IE.getOperand(2);
Bob Wilson8ecf98b2010-10-29 22:20:43 +0000478
Chris Lattnerec97a902010-01-05 05:36:20 +0000479 // Inserting an undef or into an undefined place, remove this.
480 if (isa<UndefValue>(ScalarOp) || isa<UndefValue>(IdxOp))
481 ReplaceInstUsesWith(IE, VecOp);
Bob Wilson8ecf98b2010-10-29 22:20:43 +0000482
483 // If the inserted element was extracted from some other vector, and if the
Chris Lattnerec97a902010-01-05 05:36:20 +0000484 // indexes are constant, try to turn this into a shufflevector operation.
485 if (ExtractElementInst *EI = dyn_cast<ExtractElementInst>(ScalarOp)) {
486 if (isa<ConstantInt>(EI->getOperand(1)) && isa<ConstantInt>(IdxOp) &&
487 EI->getOperand(0)->getType() == IE.getType()) {
488 unsigned NumVectorElts = IE.getType()->getNumElements();
489 unsigned ExtractedIdx =
Bob Wilson67a6f322010-10-29 22:20:45 +0000490 cast<ConstantInt>(EI->getOperand(1))->getZExtValue();
Chris Lattnerec97a902010-01-05 05:36:20 +0000491 unsigned InsertedIdx = cast<ConstantInt>(IdxOp)->getZExtValue();
Bob Wilson8ecf98b2010-10-29 22:20:43 +0000492
Chris Lattnerec97a902010-01-05 05:36:20 +0000493 if (ExtractedIdx >= NumVectorElts) // Out of range extract.
494 return ReplaceInstUsesWith(IE, VecOp);
Bob Wilson8ecf98b2010-10-29 22:20:43 +0000495
Chris Lattnerec97a902010-01-05 05:36:20 +0000496 if (InsertedIdx >= NumVectorElts) // Out of range insert.
497 return ReplaceInstUsesWith(IE, UndefValue::get(IE.getType()));
Bob Wilson8ecf98b2010-10-29 22:20:43 +0000498
Chris Lattnerec97a902010-01-05 05:36:20 +0000499 // If we are extracting a value from a vector, then inserting it right
500 // back into the same place, just use the input vector.
501 if (EI->getOperand(0) == VecOp && ExtractedIdx == InsertedIdx)
Bob Wilson8ecf98b2010-10-29 22:20:43 +0000502 return ReplaceInstUsesWith(IE, VecOp);
503
Chris Lattnerec97a902010-01-05 05:36:20 +0000504 // If this insertelement isn't used by some other insertelement, turn it
505 // (and any insertelements it points to), into one big shuffle.
506 if (!IE.hasOneUse() || !isa<InsertElementInst>(IE.use_back())) {
Chris Lattner0256be92012-01-27 03:08:05 +0000507 SmallVector<Constant*, 16> Mask;
Chris Lattnerec97a902010-01-05 05:36:20 +0000508 Value *RHS = 0;
509 Value *LHS = CollectShuffleElements(&IE, Mask, RHS);
510 if (RHS == 0) RHS = UndefValue::get(LHS->getType());
511 // We now have a shuffle of LHS, RHS, Mask.
Bob Wilson67a6f322010-10-29 22:20:45 +0000512 return new ShuffleVectorInst(LHS, RHS, ConstantVector::get(Mask));
Chris Lattnerec97a902010-01-05 05:36:20 +0000513 }
514 }
515 }
Bob Wilson8ecf98b2010-10-29 22:20:43 +0000516
Chris Lattnerec97a902010-01-05 05:36:20 +0000517 unsigned VWidth = cast<VectorType>(VecOp->getType())->getNumElements();
518 APInt UndefElts(VWidth, 0);
519 APInt AllOnesEltMask(APInt::getAllOnesValue(VWidth));
Eli Friedmanef200db2011-02-19 22:42:40 +0000520 if (Value *V = SimplifyDemandedVectorElts(&IE, AllOnesEltMask, UndefElts)) {
521 if (V != &IE)
522 return ReplaceInstUsesWith(IE, V);
Chris Lattnerec97a902010-01-05 05:36:20 +0000523 return &IE;
Eli Friedmanef200db2011-02-19 22:42:40 +0000524 }
Bob Wilson8ecf98b2010-10-29 22:20:43 +0000525
Chris Lattnerec97a902010-01-05 05:36:20 +0000526 return 0;
527}
528
Nick Lewyckya2b77202013-05-31 00:59:42 +0000529/// Return true if we can evaluate the specified expression tree if the vector
530/// elements were shuffled in a different order.
531static bool CanEvaluateShuffled(Value *V, ArrayRef<int> Mask,
Nick Lewycky3f715e22013-06-01 20:51:31 +0000532 unsigned Depth = 5) {
Nick Lewyckya2b77202013-05-31 00:59:42 +0000533 // We can always reorder the elements of a constant.
534 if (isa<Constant>(V))
535 return true;
536
537 // We won't reorder vector arguments. No IPO here.
538 Instruction *I = dyn_cast<Instruction>(V);
539 if (!I) return false;
540
541 // Two users may expect different orders of the elements. Don't try it.
542 if (!I->hasOneUse())
543 return false;
544
545 if (Depth == 0) return false;
546
547 switch (I->getOpcode()) {
548 case Instruction::Add:
549 case Instruction::FAdd:
550 case Instruction::Sub:
551 case Instruction::FSub:
552 case Instruction::Mul:
553 case Instruction::FMul:
554 case Instruction::UDiv:
555 case Instruction::SDiv:
556 case Instruction::FDiv:
557 case Instruction::URem:
558 case Instruction::SRem:
559 case Instruction::FRem:
560 case Instruction::Shl:
561 case Instruction::LShr:
562 case Instruction::AShr:
563 case Instruction::And:
564 case Instruction::Or:
565 case Instruction::Xor:
566 case Instruction::ICmp:
567 case Instruction::FCmp:
568 case Instruction::Trunc:
569 case Instruction::ZExt:
570 case Instruction::SExt:
571 case Instruction::FPToUI:
572 case Instruction::FPToSI:
573 case Instruction::UIToFP:
574 case Instruction::SIToFP:
575 case Instruction::FPTrunc:
576 case Instruction::FPExt:
577 case Instruction::GetElementPtr: {
578 for (int i = 0, e = I->getNumOperands(); i != e; ++i) {
579 if (!CanEvaluateShuffled(I->getOperand(i), Mask, Depth-1))
580 return false;
581 }
582 return true;
583 }
584 case Instruction::InsertElement: {
585 ConstantInt *CI = dyn_cast<ConstantInt>(I->getOperand(2));
586 if (!CI) return false;
587 int ElementNumber = CI->getLimitedValue();
588
589 // Verify that 'CI' does not occur twice in Mask. A single 'insertelement'
590 // can't put an element into multiple indices.
591 bool SeenOnce = false;
592 for (int i = 0, e = Mask.size(); i != e; ++i) {
593 if (Mask[i] == ElementNumber) {
594 if (SeenOnce)
595 return false;
596 SeenOnce = true;
597 }
598 }
599 return CanEvaluateShuffled(I->getOperand(0), Mask, Depth-1);
600 }
601 }
602 return false;
603}
604
605/// Rebuild a new instruction just like 'I' but with the new operands given.
606/// In the event of type mismatch, the type of the operands is correct.
607static Value *BuildNew(Instruction *I, ArrayRef<Value*> NewOps) {
608 // We don't want to use the IRBuilder here because we want the replacement
609 // instructions to appear next to 'I', not the builder's insertion point.
610 switch (I->getOpcode()) {
611 case Instruction::Add:
612 case Instruction::FAdd:
613 case Instruction::Sub:
614 case Instruction::FSub:
615 case Instruction::Mul:
616 case Instruction::FMul:
617 case Instruction::UDiv:
618 case Instruction::SDiv:
619 case Instruction::FDiv:
620 case Instruction::URem:
621 case Instruction::SRem:
622 case Instruction::FRem:
623 case Instruction::Shl:
624 case Instruction::LShr:
625 case Instruction::AShr:
626 case Instruction::And:
627 case Instruction::Or:
628 case Instruction::Xor: {
629 BinaryOperator *BO = cast<BinaryOperator>(I);
630 assert(NewOps.size() == 2 && "binary operator with #ops != 2");
631 BinaryOperator *New =
632 BinaryOperator::Create(cast<BinaryOperator>(I)->getOpcode(),
633 NewOps[0], NewOps[1], "", BO);
634 if (isa<OverflowingBinaryOperator>(BO)) {
635 New->setHasNoUnsignedWrap(BO->hasNoUnsignedWrap());
636 New->setHasNoSignedWrap(BO->hasNoSignedWrap());
637 }
638 if (isa<PossiblyExactOperator>(BO)) {
639 New->setIsExact(BO->isExact());
640 }
641 return New;
642 }
643 case Instruction::ICmp:
644 assert(NewOps.size() == 2 && "icmp with #ops != 2");
645 return new ICmpInst(I, cast<ICmpInst>(I)->getPredicate(),
646 NewOps[0], NewOps[1]);
647 case Instruction::FCmp:
648 assert(NewOps.size() == 2 && "fcmp with #ops != 2");
649 return new FCmpInst(I, cast<FCmpInst>(I)->getPredicate(),
650 NewOps[0], NewOps[1]);
651 case Instruction::Trunc:
652 case Instruction::ZExt:
653 case Instruction::SExt:
654 case Instruction::FPToUI:
655 case Instruction::FPToSI:
656 case Instruction::UIToFP:
657 case Instruction::SIToFP:
658 case Instruction::FPTrunc:
659 case Instruction::FPExt: {
660 // It's possible that the mask has a different number of elements from
661 // the original cast. We recompute the destination type to match the mask.
662 Type *DestTy =
663 VectorType::get(I->getType()->getScalarType(),
664 NewOps[0]->getType()->getVectorNumElements());
665 assert(NewOps.size() == 1 && "cast with #ops != 1");
666 return CastInst::Create(cast<CastInst>(I)->getOpcode(), NewOps[0], DestTy,
667 "", I);
668 }
669 case Instruction::GetElementPtr: {
670 Value *Ptr = NewOps[0];
671 ArrayRef<Value*> Idx = NewOps.slice(1);
672 GetElementPtrInst *GEP = GetElementPtrInst::Create(Ptr, Idx, "", I);
673 GEP->setIsInBounds(cast<GetElementPtrInst>(I)->isInBounds());
674 return GEP;
675 }
676 }
677 llvm_unreachable("failed to rebuild vector instructions");
678}
679
680Value *
681InstCombiner::EvaluateInDifferentElementOrder(Value *V, ArrayRef<int> Mask) {
682 // Mask.size() does not need to be equal to the number of vector elements.
683
684 assert(V->getType()->isVectorTy() && "can't reorder non-vector elements");
685 if (isa<UndefValue>(V)) {
686 return UndefValue::get(VectorType::get(V->getType()->getScalarType(),
687 Mask.size()));
688 }
689 if (isa<ConstantAggregateZero>(V)) {
690 return ConstantAggregateZero::get(
691 VectorType::get(V->getType()->getScalarType(),
692 Mask.size()));
693 }
694 if (Constant *C = dyn_cast<Constant>(V)) {
695 SmallVector<Constant *, 16> MaskValues;
696 for (int i = 0, e = Mask.size(); i != e; ++i) {
697 if (Mask[i] == -1)
698 MaskValues.push_back(UndefValue::get(Builder->getInt32Ty()));
699 else
700 MaskValues.push_back(Builder->getInt32(Mask[i]));
701 }
702 return ConstantExpr::getShuffleVector(C, UndefValue::get(C->getType()),
703 ConstantVector::get(MaskValues));
704 }
705
706 Instruction *I = cast<Instruction>(V);
707 switch (I->getOpcode()) {
708 case Instruction::Add:
709 case Instruction::FAdd:
710 case Instruction::Sub:
711 case Instruction::FSub:
712 case Instruction::Mul:
713 case Instruction::FMul:
714 case Instruction::UDiv:
715 case Instruction::SDiv:
716 case Instruction::FDiv:
717 case Instruction::URem:
718 case Instruction::SRem:
719 case Instruction::FRem:
720 case Instruction::Shl:
721 case Instruction::LShr:
722 case Instruction::AShr:
723 case Instruction::And:
724 case Instruction::Or:
725 case Instruction::Xor:
726 case Instruction::ICmp:
727 case Instruction::FCmp:
728 case Instruction::Trunc:
729 case Instruction::ZExt:
730 case Instruction::SExt:
731 case Instruction::FPToUI:
732 case Instruction::FPToSI:
733 case Instruction::UIToFP:
734 case Instruction::SIToFP:
735 case Instruction::FPTrunc:
736 case Instruction::FPExt:
737 case Instruction::Select:
738 case Instruction::GetElementPtr: {
739 SmallVector<Value*, 8> NewOps;
740 bool NeedsRebuild = (Mask.size() != I->getType()->getVectorNumElements());
741 for (int i = 0, e = I->getNumOperands(); i != e; ++i) {
742 Value *V = EvaluateInDifferentElementOrder(I->getOperand(i), Mask);
743 NewOps.push_back(V);
744 NeedsRebuild |= (V != I->getOperand(i));
745 }
746 if (NeedsRebuild) {
747 return BuildNew(I, NewOps);
748 }
749 return I;
750 }
751 case Instruction::InsertElement: {
752 int Element = cast<ConstantInt>(I->getOperand(2))->getLimitedValue();
Nick Lewyckya2b77202013-05-31 00:59:42 +0000753
754 // The insertelement was inserting at Element. Figure out which element
755 // that becomes after shuffling. The answer is guaranteed to be unique
756 // by CanEvaluateShuffled.
Nick Lewycky3f715e22013-06-01 20:51:31 +0000757 bool Found = false;
Nick Lewyckya2b77202013-05-31 00:59:42 +0000758 int Index = 0;
Nick Lewycky3f715e22013-06-01 20:51:31 +0000759 for (int e = Mask.size(); Index != e; ++Index) {
760 if (Mask[Index] == Element) {
761 Found = true;
Nick Lewyckya2b77202013-05-31 00:59:42 +0000762 break;
Nick Lewycky3f715e22013-06-01 20:51:31 +0000763 }
764 }
Nick Lewyckya2b77202013-05-31 00:59:42 +0000765
Hao Liu26abebb2014-01-08 03:06:15 +0000766 // If element is not in Mask, no need to handle the operand 1 (element to
767 // be inserted). Just evaluate values in operand 0 according to Mask.
Nick Lewycky3f715e22013-06-01 20:51:31 +0000768 if (!Found)
Hao Liu26abebb2014-01-08 03:06:15 +0000769 return EvaluateInDifferentElementOrder(I->getOperand(0), Mask);
Joey Goulya3250f22013-07-12 23:08:06 +0000770
Nick Lewyckya2b77202013-05-31 00:59:42 +0000771 Value *V = EvaluateInDifferentElementOrder(I->getOperand(0), Mask);
772 return InsertElementInst::Create(V, I->getOperand(1),
773 Builder->getInt32(Index), "", I);
774 }
775 }
776 llvm_unreachable("failed to reorder elements of vector instruction!");
777}
Chris Lattnerec97a902010-01-05 05:36:20 +0000778
779Instruction *InstCombiner::visitShuffleVectorInst(ShuffleVectorInst &SVI) {
780 Value *LHS = SVI.getOperand(0);
781 Value *RHS = SVI.getOperand(1);
Chris Lattner8326bd82012-01-26 00:42:34 +0000782 SmallVector<int, 16> Mask = SVI.getShuffleMask();
Bob Wilson8ecf98b2010-10-29 22:20:43 +0000783
Chris Lattnerec97a902010-01-05 05:36:20 +0000784 bool MadeChange = false;
Bob Wilson8ecf98b2010-10-29 22:20:43 +0000785
Chris Lattnerec97a902010-01-05 05:36:20 +0000786 // Undefined shuffle mask -> undefined value.
787 if (isa<UndefValue>(SVI.getOperand(2)))
788 return ReplaceInstUsesWith(SVI, UndefValue::get(SVI.getType()));
Bob Wilson8ecf98b2010-10-29 22:20:43 +0000789
Eric Christopher51edc7b2010-08-17 22:55:27 +0000790 unsigned VWidth = cast<VectorType>(SVI.getType())->getNumElements();
Bob Wilson8ecf98b2010-10-29 22:20:43 +0000791
Chris Lattnerec97a902010-01-05 05:36:20 +0000792 APInt UndefElts(VWidth, 0);
793 APInt AllOnesEltMask(APInt::getAllOnesValue(VWidth));
Eli Friedmanef200db2011-02-19 22:42:40 +0000794 if (Value *V = SimplifyDemandedVectorElts(&SVI, AllOnesEltMask, UndefElts)) {
795 if (V != &SVI)
796 return ReplaceInstUsesWith(SVI, V);
Chris Lattnerec97a902010-01-05 05:36:20 +0000797 LHS = SVI.getOperand(0);
798 RHS = SVI.getOperand(1);
799 MadeChange = true;
800 }
Bob Wilson8ecf98b2010-10-29 22:20:43 +0000801
Eli Friedmance818272011-10-21 19:06:29 +0000802 unsigned LHSWidth = cast<VectorType>(LHS->getType())->getNumElements();
803
Chris Lattnerec97a902010-01-05 05:36:20 +0000804 // Canonicalize shuffle(x ,x,mask) -> shuffle(x, undef,mask')
805 // Canonicalize shuffle(undef,x,mask) -> shuffle(x, undef,mask').
806 if (LHS == RHS || isa<UndefValue>(LHS)) {
Eric Christopher51edc7b2010-08-17 22:55:27 +0000807 if (isa<UndefValue>(LHS) && LHS == RHS) {
808 // shuffle(undef,undef,mask) -> undef.
Nick Lewyckya2b77202013-05-31 00:59:42 +0000809 Value *Result = (VWidth == LHSWidth)
Eli Friedmance818272011-10-21 19:06:29 +0000810 ? LHS : UndefValue::get(SVI.getType());
Nick Lewyckya2b77202013-05-31 00:59:42 +0000811 return ReplaceInstUsesWith(SVI, Result);
Eric Christopher51edc7b2010-08-17 22:55:27 +0000812 }
Bob Wilson8ecf98b2010-10-29 22:20:43 +0000813
Chris Lattnerec97a902010-01-05 05:36:20 +0000814 // Remap any references to RHS to use LHS.
Chris Lattner0256be92012-01-27 03:08:05 +0000815 SmallVector<Constant*, 16> Elts;
Eli Friedmance818272011-10-21 19:06:29 +0000816 for (unsigned i = 0, e = LHSWidth; i != VWidth; ++i) {
Chris Lattner0256be92012-01-27 03:08:05 +0000817 if (Mask[i] < 0) {
Chris Lattnerec97a902010-01-05 05:36:20 +0000818 Elts.push_back(UndefValue::get(Type::getInt32Ty(SVI.getContext())));
Chris Lattner0256be92012-01-27 03:08:05 +0000819 continue;
820 }
821
822 if ((Mask[i] >= (int)e && isa<UndefValue>(RHS)) ||
823 (Mask[i] < (int)e && isa<UndefValue>(LHS))) {
824 Mask[i] = -1; // Turn into undef.
825 Elts.push_back(UndefValue::get(Type::getInt32Ty(SVI.getContext())));
826 } else {
827 Mask[i] = Mask[i] % e; // Force to LHS.
828 Elts.push_back(ConstantInt::get(Type::getInt32Ty(SVI.getContext()),
829 Mask[i]));
Chris Lattnerec97a902010-01-05 05:36:20 +0000830 }
831 }
832 SVI.setOperand(0, SVI.getOperand(1));
833 SVI.setOperand(1, UndefValue::get(RHS->getType()));
834 SVI.setOperand(2, ConstantVector::get(Elts));
835 LHS = SVI.getOperand(0);
836 RHS = SVI.getOperand(1);
837 MadeChange = true;
838 }
Bob Wilson8ecf98b2010-10-29 22:20:43 +0000839
Eli Friedmance818272011-10-21 19:06:29 +0000840 if (VWidth == LHSWidth) {
841 // Analyze the shuffle, are the LHS or RHS and identity shuffles?
842 bool isLHSID = true, isRHSID = true;
Bob Wilson8ecf98b2010-10-29 22:20:43 +0000843
Eli Friedmance818272011-10-21 19:06:29 +0000844 for (unsigned i = 0, e = Mask.size(); i != e; ++i) {
845 if (Mask[i] < 0) continue; // Ignore undef values.
846 // Is this an identity shuffle of the LHS value?
847 isLHSID &= (Mask[i] == (int)i);
Bob Wilson8ecf98b2010-10-29 22:20:43 +0000848
Eli Friedmance818272011-10-21 19:06:29 +0000849 // Is this an identity shuffle of the RHS value?
850 isRHSID &= (Mask[i]-e == i);
851 }
852
853 // Eliminate identity shuffles.
854 if (isLHSID) return ReplaceInstUsesWith(SVI, LHS);
855 if (isRHSID) return ReplaceInstUsesWith(SVI, RHS);
Eric Christopher51edc7b2010-08-17 22:55:27 +0000856 }
Bob Wilson8ecf98b2010-10-29 22:20:43 +0000857
Nick Lewycky688d6682013-06-03 23:15:20 +0000858 if (isa<UndefValue>(RHS) && CanEvaluateShuffled(LHS, Mask)) {
Nick Lewyckya2b77202013-05-31 00:59:42 +0000859 Value *V = EvaluateInDifferentElementOrder(LHS, Mask);
860 return ReplaceInstUsesWith(SVI, V);
861 }
862
Eric Christopher51edc7b2010-08-17 22:55:27 +0000863 // If the LHS is a shufflevector itself, see if we can combine it with this
Eli Friedmance818272011-10-21 19:06:29 +0000864 // one without producing an unusual shuffle.
865 // Cases that might be simplified:
866 // 1.
867 // x1=shuffle(v1,v2,mask1)
868 // x=shuffle(x1,undef,mask)
869 // ==>
870 // x=shuffle(v1,undef,newMask)
871 // newMask[i] = (mask[i] < x1.size()) ? mask1[mask[i]] : -1
872 // 2.
873 // x1=shuffle(v1,undef,mask1)
874 // x=shuffle(x1,x2,mask)
875 // where v1.size() == mask1.size()
876 // ==>
877 // x=shuffle(v1,x2,newMask)
878 // newMask[i] = (mask[i] < x1.size()) ? mask1[mask[i]] : mask[i]
879 // 3.
880 // x2=shuffle(v2,undef,mask2)
881 // x=shuffle(x1,x2,mask)
882 // where v2.size() == mask2.size()
883 // ==>
884 // x=shuffle(x1,v2,newMask)
885 // newMask[i] = (mask[i] < x1.size())
886 // ? mask[i] : mask2[mask[i]-x1.size()]+x1.size()
887 // 4.
888 // x1=shuffle(v1,undef,mask1)
889 // x2=shuffle(v2,undef,mask2)
890 // x=shuffle(x1,x2,mask)
891 // where v1.size() == v2.size()
892 // ==>
893 // x=shuffle(v1,v2,newMask)
894 // newMask[i] = (mask[i] < x1.size())
895 // ? mask1[mask[i]] : mask2[mask[i]-x1.size()]+v1.size()
896 //
897 // Here we are really conservative:
Eric Christopher51edc7b2010-08-17 22:55:27 +0000898 // we are absolutely afraid of producing a shuffle mask not in the input
899 // program, because the code gen may not be smart enough to turn a merged
900 // shuffle into two specific shuffles: it may produce worse code. As such,
Jim Grosbachd11584a2013-05-01 00:25:27 +0000901 // we only merge two shuffles if the result is either a splat or one of the
902 // input shuffle masks. In this case, merging the shuffles just removes
903 // one instruction, which we know is safe. This is good for things like
Eli Friedmance818272011-10-21 19:06:29 +0000904 // turning: (splat(splat)) -> splat, or
905 // merge(V[0..n], V[n+1..2n]) -> V[0..2n]
906 ShuffleVectorInst* LHSShuffle = dyn_cast<ShuffleVectorInst>(LHS);
907 ShuffleVectorInst* RHSShuffle = dyn_cast<ShuffleVectorInst>(RHS);
908 if (LHSShuffle)
909 if (!isa<UndefValue>(LHSShuffle->getOperand(1)) && !isa<UndefValue>(RHS))
910 LHSShuffle = NULL;
911 if (RHSShuffle)
912 if (!isa<UndefValue>(RHSShuffle->getOperand(1)))
913 RHSShuffle = NULL;
914 if (!LHSShuffle && !RHSShuffle)
915 return MadeChange ? &SVI : 0;
916
917 Value* LHSOp0 = NULL;
918 Value* LHSOp1 = NULL;
919 Value* RHSOp0 = NULL;
920 unsigned LHSOp0Width = 0;
921 unsigned RHSOp0Width = 0;
922 if (LHSShuffle) {
923 LHSOp0 = LHSShuffle->getOperand(0);
924 LHSOp1 = LHSShuffle->getOperand(1);
925 LHSOp0Width = cast<VectorType>(LHSOp0->getType())->getNumElements();
926 }
927 if (RHSShuffle) {
928 RHSOp0 = RHSShuffle->getOperand(0);
929 RHSOp0Width = cast<VectorType>(RHSOp0->getType())->getNumElements();
930 }
931 Value* newLHS = LHS;
932 Value* newRHS = RHS;
933 if (LHSShuffle) {
934 // case 1
Eric Christopher51edc7b2010-08-17 22:55:27 +0000935 if (isa<UndefValue>(RHS)) {
Eli Friedmance818272011-10-21 19:06:29 +0000936 newLHS = LHSOp0;
937 newRHS = LHSOp1;
938 }
939 // case 2 or 4
940 else if (LHSOp0Width == LHSWidth) {
941 newLHS = LHSOp0;
942 }
943 }
944 // case 3 or 4
945 if (RHSShuffle && RHSOp0Width == LHSWidth) {
946 newRHS = RHSOp0;
947 }
948 // case 4
949 if (LHSOp0 == RHSOp0) {
950 newLHS = LHSOp0;
951 newRHS = NULL;
952 }
Bob Wilson8ecf98b2010-10-29 22:20:43 +0000953
Eli Friedmance818272011-10-21 19:06:29 +0000954 if (newLHS == LHS && newRHS == RHS)
955 return MadeChange ? &SVI : 0;
Bob Wilson8ecf98b2010-10-29 22:20:43 +0000956
Eli Friedmance818272011-10-21 19:06:29 +0000957 SmallVector<int, 16> LHSMask;
958 SmallVector<int, 16> RHSMask;
Chris Lattner8326bd82012-01-26 00:42:34 +0000959 if (newLHS != LHS)
960 LHSMask = LHSShuffle->getShuffleMask();
961 if (RHSShuffle && newRHS != RHS)
962 RHSMask = RHSShuffle->getShuffleMask();
963
Eli Friedmance818272011-10-21 19:06:29 +0000964 unsigned newLHSWidth = (newLHS != LHS) ? LHSOp0Width : LHSWidth;
965 SmallVector<int, 16> newMask;
966 bool isSplat = true;
967 int SplatElt = -1;
968 // Create a new mask for the new ShuffleVectorInst so that the new
969 // ShuffleVectorInst is equivalent to the original one.
970 for (unsigned i = 0; i < VWidth; ++i) {
971 int eltMask;
Craig Topper45d9f4b2013-01-18 05:30:07 +0000972 if (Mask[i] < 0) {
Eli Friedmance818272011-10-21 19:06:29 +0000973 // This element is an undef value.
974 eltMask = -1;
975 } else if (Mask[i] < (int)LHSWidth) {
976 // This element is from left hand side vector operand.
Craig Topper2ea22b02013-01-18 05:09:16 +0000977 //
Eli Friedmance818272011-10-21 19:06:29 +0000978 // If LHS is going to be replaced (case 1, 2, or 4), calculate the
979 // new mask value for the element.
980 if (newLHS != LHS) {
981 eltMask = LHSMask[Mask[i]];
982 // If the value selected is an undef value, explicitly specify it
983 // with a -1 mask value.
984 if (eltMask >= (int)LHSOp0Width && isa<UndefValue>(LHSOp1))
985 eltMask = -1;
Craig Topper2ea22b02013-01-18 05:09:16 +0000986 } else
Eli Friedmance818272011-10-21 19:06:29 +0000987 eltMask = Mask[i];
988 } else {
989 // This element is from right hand side vector operand
990 //
991 // If the value selected is an undef value, explicitly specify it
992 // with a -1 mask value. (case 1)
993 if (isa<UndefValue>(RHS))
994 eltMask = -1;
995 // If RHS is going to be replaced (case 3 or 4), calculate the
996 // new mask value for the element.
997 else if (newRHS != RHS) {
998 eltMask = RHSMask[Mask[i]-LHSWidth];
999 // If the value selected is an undef value, explicitly specify it
1000 // with a -1 mask value.
1001 if (eltMask >= (int)RHSOp0Width) {
1002 assert(isa<UndefValue>(RHSShuffle->getOperand(1))
1003 && "should have been check above");
1004 eltMask = -1;
Nate Begeman2a0ca3e92010-08-13 00:17:53 +00001005 }
Craig Topper2ea22b02013-01-18 05:09:16 +00001006 } else
Eli Friedmance818272011-10-21 19:06:29 +00001007 eltMask = Mask[i]-LHSWidth;
1008
1009 // If LHS's width is changed, shift the mask value accordingly.
1010 // If newRHS == NULL, i.e. LHSOp0 == RHSOp0, we want to remap any
Michael Gottesman02a11412012-10-16 21:29:38 +00001011 // references from RHSOp0 to LHSOp0, so we don't need to shift the mask.
1012 // If newRHS == newLHS, we want to remap any references from newRHS to
1013 // newLHS so that we can properly identify splats that may occur due to
1014 // obfuscation accross the two vectors.
1015 if (eltMask >= 0 && newRHS != NULL && newLHS != newRHS)
Eli Friedmance818272011-10-21 19:06:29 +00001016 eltMask += newLHSWidth;
Nate Begeman2a0ca3e92010-08-13 00:17:53 +00001017 }
Eli Friedmance818272011-10-21 19:06:29 +00001018
1019 // Check if this could still be a splat.
1020 if (eltMask >= 0) {
1021 if (SplatElt >= 0 && SplatElt != eltMask)
1022 isSplat = false;
1023 SplatElt = eltMask;
1024 }
1025
1026 newMask.push_back(eltMask);
1027 }
1028
1029 // If the result mask is equal to one of the original shuffle masks,
Jim Grosbachd11584a2013-05-01 00:25:27 +00001030 // or is a splat, do the replacement.
1031 if (isSplat || newMask == LHSMask || newMask == RHSMask || newMask == Mask) {
Eli Friedmance818272011-10-21 19:06:29 +00001032 SmallVector<Constant*, 16> Elts;
1033 Type *Int32Ty = Type::getInt32Ty(SVI.getContext());
1034 for (unsigned i = 0, e = newMask.size(); i != e; ++i) {
1035 if (newMask[i] < 0) {
1036 Elts.push_back(UndefValue::get(Int32Ty));
1037 } else {
1038 Elts.push_back(ConstantInt::get(Int32Ty, newMask[i]));
1039 }
1040 }
1041 if (newRHS == NULL)
1042 newRHS = UndefValue::get(newLHS->getType());
1043 return new ShuffleVectorInst(newLHS, newRHS, ConstantVector::get(Elts));
Nate Begeman2a0ca3e92010-08-13 00:17:53 +00001044 }
Bob Wilson8ecf98b2010-10-29 22:20:43 +00001045
Chris Lattnerec97a902010-01-05 05:36:20 +00001046 return MadeChange ? &SVI : 0;
1047}