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Chris Lattner7a9e47a2010-01-05 07:32:13 +00001//===- InstCombineCalls.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 the visitCall and visitInvoke functions.
11//
12//===----------------------------------------------------------------------===//
13
Chandler Carrutha9174582015-01-22 05:25:13 +000014#include "InstCombineInternal.h"
Meador Ingee3f2b262012-11-30 04:05:06 +000015#include "llvm/ADT/Statistic.h"
David Majnemer15032582015-05-22 03:56:46 +000016#include "llvm/Analysis/InstructionSimplify.h"
Chris Lattner7a9e47a2010-01-05 07:32:13 +000017#include "llvm/Analysis/MemoryBuiltins.h"
Chandler Carruth219b89b2014-03-04 11:01:28 +000018#include "llvm/IR/CallSite.h"
Hal Finkel04a15612014-10-04 21:27:06 +000019#include "llvm/IR/Dominators.h"
Chandler Carruth820a9082014-03-04 11:08:18 +000020#include "llvm/IR/PatternMatch.h"
Philip Reames1a1bdb22014-12-02 18:50:36 +000021#include "llvm/IR/Statepoint.h"
Eric Christophera7fb58f2010-03-06 10:50:38 +000022#include "llvm/Transforms/Utils/BuildLibCalls.h"
Chris Lattner6fcd32e2010-12-25 20:37:57 +000023#include "llvm/Transforms/Utils/Local.h"
Chandler Carruthba4c5172015-01-21 11:23:40 +000024#include "llvm/Transforms/Utils/SimplifyLibCalls.h"
Chris Lattner7a9e47a2010-01-05 07:32:13 +000025using namespace llvm;
Michael Ilseman536cc322012-12-13 03:13:36 +000026using namespace PatternMatch;
Chris Lattner7a9e47a2010-01-05 07:32:13 +000027
Chandler Carruth964daaa2014-04-22 02:55:47 +000028#define DEBUG_TYPE "instcombine"
29
Meador Ingee3f2b262012-11-30 04:05:06 +000030STATISTIC(NumSimplified, "Number of library calls simplified");
31
Sanjay Patelcd4377c2016-01-20 22:24:38 +000032/// Return the specified type promoted as it would be to pass though a va_arg
33/// area.
Chris Lattner229907c2011-07-18 04:54:35 +000034static Type *getPromotedType(Type *Ty) {
35 if (IntegerType* ITy = dyn_cast<IntegerType>(Ty)) {
Chris Lattner7a9e47a2010-01-05 07:32:13 +000036 if (ITy->getBitWidth() < 32)
37 return Type::getInt32Ty(Ty->getContext());
38 }
39 return Ty;
40}
41
Sanjay Patelcd4377c2016-01-20 22:24:38 +000042/// Given an aggregate type which ultimately holds a single scalar element,
43/// like {{{type}}} or [1 x type], return type.
Dan Gohmand0080c42012-09-13 18:19:06 +000044static Type *reduceToSingleValueType(Type *T) {
45 while (!T->isSingleValueType()) {
46 if (StructType *STy = dyn_cast<StructType>(T)) {
47 if (STy->getNumElements() == 1)
48 T = STy->getElementType(0);
49 else
50 break;
51 } else if (ArrayType *ATy = dyn_cast<ArrayType>(T)) {
52 if (ATy->getNumElements() == 1)
53 T = ATy->getElementType();
54 else
55 break;
56 } else
57 break;
58 }
59
60 return T;
61}
Chris Lattner7a9e47a2010-01-05 07:32:13 +000062
Sanjay Patel368ac5d2016-02-21 17:29:33 +000063/// Return a constant boolean vector that has true elements in all positions
Sanjay Patel24401302016-02-21 17:33:31 +000064/// where the input constant data vector has an element with the sign bit set.
Sanjay Patel368ac5d2016-02-21 17:29:33 +000065static Constant *getNegativeIsTrueBoolVec(ConstantDataVector *V) {
66 SmallVector<Constant *, 32> BoolVec;
67 IntegerType *BoolTy = Type::getInt1Ty(V->getContext());
68 for (unsigned I = 0, E = V->getNumElements(); I != E; ++I) {
69 Constant *Elt = V->getElementAsConstant(I);
70 assert((isa<ConstantInt>(Elt) || isa<ConstantFP>(Elt)) &&
71 "Unexpected constant data vector element type");
72 bool Sign = V->getElementType()->isIntegerTy()
73 ? cast<ConstantInt>(Elt)->isNegative()
74 : cast<ConstantFP>(Elt)->isNegative();
75 BoolVec.push_back(ConstantInt::get(BoolTy, Sign));
76 }
77 return ConstantVector::get(BoolVec);
78}
79
Pete Cooper67cf9a72015-11-19 05:56:52 +000080Instruction *InstCombiner::SimplifyMemTransfer(MemIntrinsic *MI) {
Mehdi Aminia28d91d2015-03-10 02:37:25 +000081 unsigned DstAlign = getKnownAlignment(MI->getArgOperand(0), DL, MI, AC, DT);
82 unsigned SrcAlign = getKnownAlignment(MI->getArgOperand(1), DL, MI, AC, DT);
Pete Cooper67cf9a72015-11-19 05:56:52 +000083 unsigned MinAlign = std::min(DstAlign, SrcAlign);
84 unsigned CopyAlign = MI->getAlignment();
Chris Lattner7a9e47a2010-01-05 07:32:13 +000085
Pete Cooper67cf9a72015-11-19 05:56:52 +000086 if (CopyAlign < MinAlign) {
87 MI->setAlignment(ConstantInt::get(MI->getAlignmentType(), MinAlign, false));
Chris Lattner7a9e47a2010-01-05 07:32:13 +000088 return MI;
89 }
Jim Grosbach7815f562012-02-03 00:07:04 +000090
Chris Lattner7a9e47a2010-01-05 07:32:13 +000091 // If MemCpyInst length is 1/2/4/8 bytes then replace memcpy with
92 // load/store.
Gabor Greif0a136c92010-06-24 13:54:33 +000093 ConstantInt *MemOpLength = dyn_cast<ConstantInt>(MI->getArgOperand(2));
Craig Topperf40110f2014-04-25 05:29:35 +000094 if (!MemOpLength) return nullptr;
Jim Grosbach7815f562012-02-03 00:07:04 +000095
Chris Lattner7a9e47a2010-01-05 07:32:13 +000096 // Source and destination pointer types are always "i8*" for intrinsic. See
97 // if the size is something we can handle with a single primitive load/store.
98 // A single load+store correctly handles overlapping memory in the memmove
99 // case.
Michael Liao69e172a2012-08-15 03:49:59 +0000100 uint64_t Size = MemOpLength->getLimitedValue();
Alp Tokercb402912014-01-24 17:20:08 +0000101 assert(Size && "0-sized memory transferring should be removed already.");
Jim Grosbach7815f562012-02-03 00:07:04 +0000102
Chris Lattner7a9e47a2010-01-05 07:32:13 +0000103 if (Size > 8 || (Size&(Size-1)))
Craig Topperf40110f2014-04-25 05:29:35 +0000104 return nullptr; // If not 1/2/4/8 bytes, exit.
Jim Grosbach7815f562012-02-03 00:07:04 +0000105
Chris Lattner7a9e47a2010-01-05 07:32:13 +0000106 // Use an integer load+store unless we can find something better.
Mon P Wangc576ee92010-04-04 03:10:48 +0000107 unsigned SrcAddrSp =
Gabor Greif0a136c92010-06-24 13:54:33 +0000108 cast<PointerType>(MI->getArgOperand(1)->getType())->getAddressSpace();
Gabor Greiff3755202010-04-16 15:33:14 +0000109 unsigned DstAddrSp =
Gabor Greif0a136c92010-06-24 13:54:33 +0000110 cast<PointerType>(MI->getArgOperand(0)->getType())->getAddressSpace();
Mon P Wangc576ee92010-04-04 03:10:48 +0000111
Chris Lattner229907c2011-07-18 04:54:35 +0000112 IntegerType* IntType = IntegerType::get(MI->getContext(), Size<<3);
Mon P Wangc576ee92010-04-04 03:10:48 +0000113 Type *NewSrcPtrTy = PointerType::get(IntType, SrcAddrSp);
114 Type *NewDstPtrTy = PointerType::get(IntType, DstAddrSp);
Jim Grosbach7815f562012-02-03 00:07:04 +0000115
Chris Lattner7a9e47a2010-01-05 07:32:13 +0000116 // Memcpy forces the use of i8* for the source and destination. That means
117 // that if you're using memcpy to move one double around, you'll get a cast
118 // from double* to i8*. We'd much rather use a double load+store rather than
119 // an i64 load+store, here because this improves the odds that the source or
120 // dest address will be promotable. See if we can find a better type than the
121 // integer datatype.
Gabor Greif589a0b92010-06-24 12:58:35 +0000122 Value *StrippedDest = MI->getArgOperand(0)->stripPointerCasts();
Craig Topperf40110f2014-04-25 05:29:35 +0000123 MDNode *CopyMD = nullptr;
Gabor Greif589a0b92010-06-24 12:58:35 +0000124 if (StrippedDest != MI->getArgOperand(0)) {
Chris Lattner229907c2011-07-18 04:54:35 +0000125 Type *SrcETy = cast<PointerType>(StrippedDest->getType())
Chris Lattner7a9e47a2010-01-05 07:32:13 +0000126 ->getElementType();
Mehdi Aminia28d91d2015-03-10 02:37:25 +0000127 if (SrcETy->isSized() && DL.getTypeStoreSize(SrcETy) == Size) {
Chris Lattner7a9e47a2010-01-05 07:32:13 +0000128 // The SrcETy might be something like {{{double}}} or [1 x double]. Rip
129 // down through these levels if so.
Dan Gohmand0080c42012-09-13 18:19:06 +0000130 SrcETy = reduceToSingleValueType(SrcETy);
Jim Grosbach7815f562012-02-03 00:07:04 +0000131
Mon P Wangc576ee92010-04-04 03:10:48 +0000132 if (SrcETy->isSingleValueType()) {
133 NewSrcPtrTy = PointerType::get(SrcETy, SrcAddrSp);
134 NewDstPtrTy = PointerType::get(SrcETy, DstAddrSp);
Dan Gohman3f553c22012-09-13 21:51:01 +0000135
136 // If the memcpy has metadata describing the members, see if we can
137 // get the TBAA tag describing our copy.
Duncan P. N. Exon Smithde36e802014-11-11 21:30:22 +0000138 if (MDNode *M = MI->getMetadata(LLVMContext::MD_tbaa_struct)) {
Duncan P. N. Exon Smith5bf8fef2014-12-09 18:38:53 +0000139 if (M->getNumOperands() == 3 && M->getOperand(0) &&
140 mdconst::hasa<ConstantInt>(M->getOperand(0)) &&
141 mdconst::extract<ConstantInt>(M->getOperand(0))->isNullValue() &&
Nick Lewycky49ac81a2012-10-11 02:05:23 +0000142 M->getOperand(1) &&
Duncan P. N. Exon Smith5bf8fef2014-12-09 18:38:53 +0000143 mdconst::hasa<ConstantInt>(M->getOperand(1)) &&
144 mdconst::extract<ConstantInt>(M->getOperand(1))->getValue() ==
145 Size &&
146 M->getOperand(2) && isa<MDNode>(M->getOperand(2)))
Dan Gohman3f553c22012-09-13 21:51:01 +0000147 CopyMD = cast<MDNode>(M->getOperand(2));
148 }
Mon P Wangc576ee92010-04-04 03:10:48 +0000149 }
Chris Lattner7a9e47a2010-01-05 07:32:13 +0000150 }
151 }
Jim Grosbach7815f562012-02-03 00:07:04 +0000152
Chris Lattner7a9e47a2010-01-05 07:32:13 +0000153 // If the memcpy/memmove provides better alignment info than we can
154 // infer, use it.
Pete Cooper67cf9a72015-11-19 05:56:52 +0000155 SrcAlign = std::max(SrcAlign, CopyAlign);
156 DstAlign = std::max(DstAlign, CopyAlign);
Jim Grosbach7815f562012-02-03 00:07:04 +0000157
Gabor Greif5f3e6562010-06-25 07:57:14 +0000158 Value *Src = Builder->CreateBitCast(MI->getArgOperand(1), NewSrcPtrTy);
159 Value *Dest = Builder->CreateBitCast(MI->getArgOperand(0), NewDstPtrTy);
Eli Friedman49346012011-05-18 19:57:14 +0000160 LoadInst *L = Builder->CreateLoad(Src, MI->isVolatile());
161 L->setAlignment(SrcAlign);
Dan Gohman3f553c22012-09-13 21:51:01 +0000162 if (CopyMD)
163 L->setMetadata(LLVMContext::MD_tbaa, CopyMD);
Eli Friedman49346012011-05-18 19:57:14 +0000164 StoreInst *S = Builder->CreateStore(L, Dest, MI->isVolatile());
165 S->setAlignment(DstAlign);
Dan Gohman3f553c22012-09-13 21:51:01 +0000166 if (CopyMD)
167 S->setMetadata(LLVMContext::MD_tbaa, CopyMD);
Chris Lattner7a9e47a2010-01-05 07:32:13 +0000168
169 // Set the size of the copy to 0, it will be deleted on the next iteration.
Gabor Greif5b1370e2010-06-28 16:50:57 +0000170 MI->setArgOperand(2, Constant::getNullValue(MemOpLength->getType()));
Chris Lattner7a9e47a2010-01-05 07:32:13 +0000171 return MI;
172}
173
174Instruction *InstCombiner::SimplifyMemSet(MemSetInst *MI) {
Mehdi Aminia28d91d2015-03-10 02:37:25 +0000175 unsigned Alignment = getKnownAlignment(MI->getDest(), DL, MI, AC, DT);
Pete Cooper67cf9a72015-11-19 05:56:52 +0000176 if (MI->getAlignment() < Alignment) {
177 MI->setAlignment(ConstantInt::get(MI->getAlignmentType(),
178 Alignment, false));
Chris Lattner7a9e47a2010-01-05 07:32:13 +0000179 return MI;
180 }
Jim Grosbach7815f562012-02-03 00:07:04 +0000181
Chris Lattner7a9e47a2010-01-05 07:32:13 +0000182 // Extract the length and alignment and fill if they are constant.
183 ConstantInt *LenC = dyn_cast<ConstantInt>(MI->getLength());
184 ConstantInt *FillC = dyn_cast<ConstantInt>(MI->getValue());
Duncan Sands9dff9be2010-02-15 16:12:20 +0000185 if (!LenC || !FillC || !FillC->getType()->isIntegerTy(8))
Craig Topperf40110f2014-04-25 05:29:35 +0000186 return nullptr;
Michael Liao69e172a2012-08-15 03:49:59 +0000187 uint64_t Len = LenC->getLimitedValue();
Pete Cooper67cf9a72015-11-19 05:56:52 +0000188 Alignment = MI->getAlignment();
Michael Liao69e172a2012-08-15 03:49:59 +0000189 assert(Len && "0-sized memory setting should be removed already.");
Jim Grosbach7815f562012-02-03 00:07:04 +0000190
Chris Lattner7a9e47a2010-01-05 07:32:13 +0000191 // memset(s,c,n) -> store s, c (for n=1,2,4,8)
192 if (Len <= 8 && isPowerOf2_32((uint32_t)Len)) {
Chris Lattner229907c2011-07-18 04:54:35 +0000193 Type *ITy = IntegerType::get(MI->getContext(), Len*8); // n=1 -> i8.
Jim Grosbach7815f562012-02-03 00:07:04 +0000194
Chris Lattner7a9e47a2010-01-05 07:32:13 +0000195 Value *Dest = MI->getDest();
Mon P Wang1991c472010-12-20 01:05:30 +0000196 unsigned DstAddrSp = cast<PointerType>(Dest->getType())->getAddressSpace();
197 Type *NewDstPtrTy = PointerType::get(ITy, DstAddrSp);
198 Dest = Builder->CreateBitCast(Dest, NewDstPtrTy);
Chris Lattner7a9e47a2010-01-05 07:32:13 +0000199
200 // Alignment 0 is identity for alignment 1 for memset, but not store.
201 if (Alignment == 0) Alignment = 1;
Jim Grosbach7815f562012-02-03 00:07:04 +0000202
Chris Lattner7a9e47a2010-01-05 07:32:13 +0000203 // Extract the fill value and store.
204 uint64_t Fill = FillC->getZExtValue()*0x0101010101010101ULL;
Eli Friedman49346012011-05-18 19:57:14 +0000205 StoreInst *S = Builder->CreateStore(ConstantInt::get(ITy, Fill), Dest,
206 MI->isVolatile());
207 S->setAlignment(Alignment);
Jim Grosbach7815f562012-02-03 00:07:04 +0000208
Chris Lattner7a9e47a2010-01-05 07:32:13 +0000209 // Set the size of the copy to 0, it will be deleted on the next iteration.
210 MI->setLength(Constant::getNullValue(LenC->getType()));
211 return MI;
212 }
213
Simon Pilgrim18617d12015-08-05 08:18:00 +0000214 return nullptr;
215}
216
Sanjay Patel6038d3e2016-01-29 23:27:03 +0000217static Value *simplifyX86immShift(const IntrinsicInst &II,
Simon Pilgrimbecd5e82015-08-13 07:39:03 +0000218 InstCombiner::BuilderTy &Builder) {
219 bool LogicalShift = false;
220 bool ShiftLeft = false;
221
222 switch (II.getIntrinsicID()) {
223 default:
224 return nullptr;
225 case Intrinsic::x86_sse2_psra_d:
226 case Intrinsic::x86_sse2_psra_w:
227 case Intrinsic::x86_sse2_psrai_d:
228 case Intrinsic::x86_sse2_psrai_w:
229 case Intrinsic::x86_avx2_psra_d:
230 case Intrinsic::x86_avx2_psra_w:
231 case Intrinsic::x86_avx2_psrai_d:
232 case Intrinsic::x86_avx2_psrai_w:
233 LogicalShift = false; ShiftLeft = false;
234 break;
235 case Intrinsic::x86_sse2_psrl_d:
236 case Intrinsic::x86_sse2_psrl_q:
237 case Intrinsic::x86_sse2_psrl_w:
238 case Intrinsic::x86_sse2_psrli_d:
239 case Intrinsic::x86_sse2_psrli_q:
240 case Intrinsic::x86_sse2_psrli_w:
241 case Intrinsic::x86_avx2_psrl_d:
242 case Intrinsic::x86_avx2_psrl_q:
243 case Intrinsic::x86_avx2_psrl_w:
244 case Intrinsic::x86_avx2_psrli_d:
245 case Intrinsic::x86_avx2_psrli_q:
246 case Intrinsic::x86_avx2_psrli_w:
247 LogicalShift = true; ShiftLeft = false;
248 break;
249 case Intrinsic::x86_sse2_psll_d:
250 case Intrinsic::x86_sse2_psll_q:
251 case Intrinsic::x86_sse2_psll_w:
252 case Intrinsic::x86_sse2_pslli_d:
253 case Intrinsic::x86_sse2_pslli_q:
254 case Intrinsic::x86_sse2_pslli_w:
255 case Intrinsic::x86_avx2_psll_d:
256 case Intrinsic::x86_avx2_psll_q:
257 case Intrinsic::x86_avx2_psll_w:
258 case Intrinsic::x86_avx2_pslli_d:
259 case Intrinsic::x86_avx2_pslli_q:
260 case Intrinsic::x86_avx2_pslli_w:
261 LogicalShift = true; ShiftLeft = true;
262 break;
263 }
Simon Pilgrima3a72b42015-08-10 20:21:15 +0000264 assert((LogicalShift || !ShiftLeft) && "Only logical shifts can shift left");
265
Simon Pilgrim3815c162015-08-07 18:22:50 +0000266 // Simplify if count is constant.
267 auto Arg1 = II.getArgOperand(1);
268 auto CAZ = dyn_cast<ConstantAggregateZero>(Arg1);
269 auto CDV = dyn_cast<ConstantDataVector>(Arg1);
270 auto CInt = dyn_cast<ConstantInt>(Arg1);
271 if (!CAZ && !CDV && !CInt)
Simon Pilgrim18617d12015-08-05 08:18:00 +0000272 return nullptr;
Simon Pilgrim3815c162015-08-07 18:22:50 +0000273
274 APInt Count(64, 0);
275 if (CDV) {
276 // SSE2/AVX2 uses all the first 64-bits of the 128-bit vector
277 // operand to compute the shift amount.
278 auto VT = cast<VectorType>(CDV->getType());
279 unsigned BitWidth = VT->getElementType()->getPrimitiveSizeInBits();
280 assert((64 % BitWidth) == 0 && "Unexpected packed shift size");
281 unsigned NumSubElts = 64 / BitWidth;
282
283 // Concatenate the sub-elements to create the 64-bit value.
284 for (unsigned i = 0; i != NumSubElts; ++i) {
285 unsigned SubEltIdx = (NumSubElts - 1) - i;
286 auto SubElt = cast<ConstantInt>(CDV->getElementAsConstant(SubEltIdx));
287 Count = Count.shl(BitWidth);
288 Count |= SubElt->getValue().zextOrTrunc(64);
289 }
290 }
291 else if (CInt)
292 Count = CInt->getValue();
Simon Pilgrim18617d12015-08-05 08:18:00 +0000293
294 auto Vec = II.getArgOperand(0);
295 auto VT = cast<VectorType>(Vec->getType());
296 auto SVT = VT->getElementType();
Simon Pilgrim3815c162015-08-07 18:22:50 +0000297 unsigned VWidth = VT->getNumElements();
298 unsigned BitWidth = SVT->getPrimitiveSizeInBits();
299
300 // If shift-by-zero then just return the original value.
301 if (Count == 0)
302 return Vec;
303
Simon Pilgrima3a72b42015-08-10 20:21:15 +0000304 // Handle cases when Shift >= BitWidth.
305 if (Count.uge(BitWidth)) {
306 // If LogicalShift - just return zero.
307 if (LogicalShift)
308 return ConstantAggregateZero::get(VT);
309
310 // If ArithmeticShift - clamp Shift to (BitWidth - 1).
311 Count = APInt(64, BitWidth - 1);
312 }
Simon Pilgrim18617d12015-08-05 08:18:00 +0000313
Simon Pilgrim18617d12015-08-05 08:18:00 +0000314 // Get a constant vector of the same type as the first operand.
Simon Pilgrim3815c162015-08-07 18:22:50 +0000315 auto ShiftAmt = ConstantInt::get(SVT, Count.zextOrTrunc(BitWidth));
316 auto ShiftVec = Builder.CreateVectorSplat(VWidth, ShiftAmt);
Simon Pilgrim18617d12015-08-05 08:18:00 +0000317
318 if (ShiftLeft)
Simon Pilgrim3815c162015-08-07 18:22:50 +0000319 return Builder.CreateShl(Vec, ShiftVec);
Simon Pilgrim18617d12015-08-05 08:18:00 +0000320
Simon Pilgrima3a72b42015-08-10 20:21:15 +0000321 if (LogicalShift)
322 return Builder.CreateLShr(Vec, ShiftVec);
323
324 return Builder.CreateAShr(Vec, ShiftVec);
Simon Pilgrim18617d12015-08-05 08:18:00 +0000325}
326
Sanjay Patel6038d3e2016-01-29 23:27:03 +0000327static Value *simplifyX86extend(const IntrinsicInst &II,
Simon Pilgrim18617d12015-08-05 08:18:00 +0000328 InstCombiner::BuilderTy &Builder,
329 bool SignExtend) {
Simon Pilgrim15c0a592015-07-27 18:52:15 +0000330 VectorType *SrcTy = cast<VectorType>(II.getArgOperand(0)->getType());
331 VectorType *DstTy = cast<VectorType>(II.getType());
332 unsigned NumDstElts = DstTy->getNumElements();
333
334 // Extract a subvector of the first NumDstElts lanes and sign/zero extend.
335 SmallVector<int, 8> ShuffleMask;
Simon Pilgrim074c0d92015-07-27 19:07:15 +0000336 for (int i = 0; i != (int)NumDstElts; ++i)
Simon Pilgrim15c0a592015-07-27 18:52:15 +0000337 ShuffleMask.push_back(i);
338
339 Value *SV = Builder.CreateShuffleVector(II.getArgOperand(0),
340 UndefValue::get(SrcTy), ShuffleMask);
341 return SignExtend ? Builder.CreateSExt(SV, DstTy)
342 : Builder.CreateZExt(SV, DstTy);
343}
344
Sanjay Patel6038d3e2016-01-29 23:27:03 +0000345static Value *simplifyX86insertps(const IntrinsicInst &II,
Sanjay Patelc86867c2015-04-16 17:52:13 +0000346 InstCombiner::BuilderTy &Builder) {
Sanjay Patel03c03f52016-01-28 00:03:16 +0000347 auto *CInt = dyn_cast<ConstantInt>(II.getArgOperand(2));
348 if (!CInt)
349 return nullptr;
Simon Pilgrim54fcd622015-07-25 20:41:00 +0000350
Sanjay Patel03c03f52016-01-28 00:03:16 +0000351 VectorType *VecTy = cast<VectorType>(II.getType());
352 assert(VecTy->getNumElements() == 4 && "insertps with wrong vector type");
Sanjay Patelc86867c2015-04-16 17:52:13 +0000353
Sanjay Patel03c03f52016-01-28 00:03:16 +0000354 // The immediate permute control byte looks like this:
355 // [3:0] - zero mask for each 32-bit lane
356 // [5:4] - select one 32-bit destination lane
357 // [7:6] - select one 32-bit source lane
Sanjay Patelc86867c2015-04-16 17:52:13 +0000358
Sanjay Patel03c03f52016-01-28 00:03:16 +0000359 uint8_t Imm = CInt->getZExtValue();
360 uint8_t ZMask = Imm & 0xf;
361 uint8_t DestLane = (Imm >> 4) & 0x3;
362 uint8_t SourceLane = (Imm >> 6) & 0x3;
Sanjay Patelc1d20a32015-04-25 20:55:25 +0000363
Sanjay Patel03c03f52016-01-28 00:03:16 +0000364 ConstantAggregateZero *ZeroVector = ConstantAggregateZero::get(VecTy);
Sanjay Patelc86867c2015-04-16 17:52:13 +0000365
Sanjay Patel03c03f52016-01-28 00:03:16 +0000366 // If all zero mask bits are set, this was just a weird way to
367 // generate a zero vector.
368 if (ZMask == 0xf)
369 return ZeroVector;
Sanjay Patelc1d20a32015-04-25 20:55:25 +0000370
Sanjay Patel03c03f52016-01-28 00:03:16 +0000371 // Initialize by passing all of the first source bits through.
372 int ShuffleMask[4] = { 0, 1, 2, 3 };
Sanjay Patelc1d20a32015-04-25 20:55:25 +0000373
Sanjay Patel03c03f52016-01-28 00:03:16 +0000374 // We may replace the second operand with the zero vector.
375 Value *V1 = II.getArgOperand(1);
376
377 if (ZMask) {
378 // If the zero mask is being used with a single input or the zero mask
379 // overrides the destination lane, this is a shuffle with the zero vector.
380 if ((II.getArgOperand(0) == II.getArgOperand(1)) ||
381 (ZMask & (1 << DestLane))) {
382 V1 = ZeroVector;
383 // We may still move 32-bits of the first source vector from one lane
384 // to another.
385 ShuffleMask[DestLane] = SourceLane;
386 // The zero mask may override the previous insert operation.
387 for (unsigned i = 0; i < 4; ++i)
388 if ((ZMask >> i) & 0x1)
389 ShuffleMask[i] = i + 4;
Sanjay Patelc1d20a32015-04-25 20:55:25 +0000390 } else {
Sanjay Patel03c03f52016-01-28 00:03:16 +0000391 // TODO: Model this case as 2 shuffles or a 'logical and' plus shuffle?
392 return nullptr;
Sanjay Patelc1d20a32015-04-25 20:55:25 +0000393 }
Sanjay Patel03c03f52016-01-28 00:03:16 +0000394 } else {
395 // Replace the selected destination lane with the selected source lane.
396 ShuffleMask[DestLane] = SourceLane + 4;
Sanjay Patelc86867c2015-04-16 17:52:13 +0000397 }
Sanjay Patel03c03f52016-01-28 00:03:16 +0000398
399 return Builder.CreateShuffleVector(II.getArgOperand(0), V1, ShuffleMask);
Sanjay Patelc86867c2015-04-16 17:52:13 +0000400}
401
Simon Pilgrim216b1bf2015-10-17 11:40:05 +0000402/// Attempt to simplify SSE4A EXTRQ/EXTRQI instructions using constant folding
403/// or conversion to a shuffle vector.
Sanjay Patel6038d3e2016-01-29 23:27:03 +0000404static Value *simplifyX86extrq(IntrinsicInst &II, Value *Op0,
Simon Pilgrim216b1bf2015-10-17 11:40:05 +0000405 ConstantInt *CILength, ConstantInt *CIIndex,
406 InstCombiner::BuilderTy &Builder) {
407 auto LowConstantHighUndef = [&](uint64_t Val) {
408 Type *IntTy64 = Type::getInt64Ty(II.getContext());
409 Constant *Args[] = {ConstantInt::get(IntTy64, Val),
410 UndefValue::get(IntTy64)};
411 return ConstantVector::get(Args);
412 };
413
414 // See if we're dealing with constant values.
415 Constant *C0 = dyn_cast<Constant>(Op0);
416 ConstantInt *CI0 =
417 C0 ? dyn_cast<ConstantInt>(C0->getAggregateElement((unsigned)0))
418 : nullptr;
419
420 // Attempt to constant fold.
421 if (CILength && CIIndex) {
422 // From AMD documentation: "The bit index and field length are each six
423 // bits in length other bits of the field are ignored."
424 APInt APIndex = CIIndex->getValue().zextOrTrunc(6);
425 APInt APLength = CILength->getValue().zextOrTrunc(6);
426
427 unsigned Index = APIndex.getZExtValue();
428
429 // From AMD documentation: "a value of zero in the field length is
430 // defined as length of 64".
431 unsigned Length = APLength == 0 ? 64 : APLength.getZExtValue();
432
433 // From AMD documentation: "If the sum of the bit index + length field
434 // is greater than 64, the results are undefined".
435 unsigned End = Index + Length;
436
437 // Note that both field index and field length are 8-bit quantities.
438 // Since variables 'Index' and 'Length' are unsigned values
439 // obtained from zero-extending field index and field length
440 // respectively, their sum should never wrap around.
441 if (End > 64)
442 return UndefValue::get(II.getType());
443
444 // If we are inserting whole bytes, we can convert this to a shuffle.
445 // Lowering can recognize EXTRQI shuffle masks.
446 if ((Length % 8) == 0 && (Index % 8) == 0) {
447 // Convert bit indices to byte indices.
448 Length /= 8;
449 Index /= 8;
450
451 Type *IntTy8 = Type::getInt8Ty(II.getContext());
452 Type *IntTy32 = Type::getInt32Ty(II.getContext());
453 VectorType *ShufTy = VectorType::get(IntTy8, 16);
454
455 SmallVector<Constant *, 16> ShuffleMask;
456 for (int i = 0; i != (int)Length; ++i)
457 ShuffleMask.push_back(
458 Constant::getIntegerValue(IntTy32, APInt(32, i + Index)));
459 for (int i = Length; i != 8; ++i)
460 ShuffleMask.push_back(
461 Constant::getIntegerValue(IntTy32, APInt(32, i + 16)));
462 for (int i = 8; i != 16; ++i)
463 ShuffleMask.push_back(UndefValue::get(IntTy32));
464
465 Value *SV = Builder.CreateShuffleVector(
466 Builder.CreateBitCast(Op0, ShufTy),
467 ConstantAggregateZero::get(ShufTy), ConstantVector::get(ShuffleMask));
468 return Builder.CreateBitCast(SV, II.getType());
469 }
470
471 // Constant Fold - shift Index'th bit to lowest position and mask off
472 // Length bits.
473 if (CI0) {
474 APInt Elt = CI0->getValue();
475 Elt = Elt.lshr(Index).zextOrTrunc(Length);
476 return LowConstantHighUndef(Elt.getZExtValue());
477 }
478
479 // If we were an EXTRQ call, we'll save registers if we convert to EXTRQI.
480 if (II.getIntrinsicID() == Intrinsic::x86_sse4a_extrq) {
481 Value *Args[] = {Op0, CILength, CIIndex};
Sanjay Patelaf674fb2015-12-14 17:24:23 +0000482 Module *M = II.getModule();
Simon Pilgrim216b1bf2015-10-17 11:40:05 +0000483 Value *F = Intrinsic::getDeclaration(M, Intrinsic::x86_sse4a_extrqi);
484 return Builder.CreateCall(F, Args);
485 }
486 }
487
488 // Constant Fold - extraction from zero is always {zero, undef}.
489 if (CI0 && CI0->equalsInt(0))
490 return LowConstantHighUndef(0);
491
492 return nullptr;
493}
494
495/// Attempt to simplify SSE4A INSERTQ/INSERTQI instructions using constant
496/// folding or conversion to a shuffle vector.
Sanjay Patel6038d3e2016-01-29 23:27:03 +0000497static Value *simplifyX86insertq(IntrinsicInst &II, Value *Op0, Value *Op1,
Simon Pilgrim216b1bf2015-10-17 11:40:05 +0000498 APInt APLength, APInt APIndex,
499 InstCombiner::BuilderTy &Builder) {
500
501 // From AMD documentation: "The bit index and field length are each six bits
502 // in length other bits of the field are ignored."
503 APIndex = APIndex.zextOrTrunc(6);
504 APLength = APLength.zextOrTrunc(6);
505
506 // Attempt to constant fold.
507 unsigned Index = APIndex.getZExtValue();
508
509 // From AMD documentation: "a value of zero in the field length is
510 // defined as length of 64".
511 unsigned Length = APLength == 0 ? 64 : APLength.getZExtValue();
512
513 // From AMD documentation: "If the sum of the bit index + length field
514 // is greater than 64, the results are undefined".
515 unsigned End = Index + Length;
516
517 // Note that both field index and field length are 8-bit quantities.
518 // Since variables 'Index' and 'Length' are unsigned values
519 // obtained from zero-extending field index and field length
520 // respectively, their sum should never wrap around.
521 if (End > 64)
522 return UndefValue::get(II.getType());
523
524 // If we are inserting whole bytes, we can convert this to a shuffle.
525 // Lowering can recognize INSERTQI shuffle masks.
526 if ((Length % 8) == 0 && (Index % 8) == 0) {
527 // Convert bit indices to byte indices.
528 Length /= 8;
529 Index /= 8;
530
531 Type *IntTy8 = Type::getInt8Ty(II.getContext());
532 Type *IntTy32 = Type::getInt32Ty(II.getContext());
533 VectorType *ShufTy = VectorType::get(IntTy8, 16);
534
535 SmallVector<Constant *, 16> ShuffleMask;
536 for (int i = 0; i != (int)Index; ++i)
537 ShuffleMask.push_back(Constant::getIntegerValue(IntTy32, APInt(32, i)));
538 for (int i = 0; i != (int)Length; ++i)
539 ShuffleMask.push_back(
540 Constant::getIntegerValue(IntTy32, APInt(32, i + 16)));
541 for (int i = Index + Length; i != 8; ++i)
542 ShuffleMask.push_back(Constant::getIntegerValue(IntTy32, APInt(32, i)));
543 for (int i = 8; i != 16; ++i)
544 ShuffleMask.push_back(UndefValue::get(IntTy32));
545
546 Value *SV = Builder.CreateShuffleVector(Builder.CreateBitCast(Op0, ShufTy),
547 Builder.CreateBitCast(Op1, ShufTy),
548 ConstantVector::get(ShuffleMask));
549 return Builder.CreateBitCast(SV, II.getType());
550 }
551
552 // See if we're dealing with constant values.
553 Constant *C0 = dyn_cast<Constant>(Op0);
554 Constant *C1 = dyn_cast<Constant>(Op1);
555 ConstantInt *CI00 =
556 C0 ? dyn_cast<ConstantInt>(C0->getAggregateElement((unsigned)0))
557 : nullptr;
558 ConstantInt *CI10 =
559 C1 ? dyn_cast<ConstantInt>(C1->getAggregateElement((unsigned)0))
560 : nullptr;
561
562 // Constant Fold - insert bottom Length bits starting at the Index'th bit.
563 if (CI00 && CI10) {
564 APInt V00 = CI00->getValue();
565 APInt V10 = CI10->getValue();
566 APInt Mask = APInt::getLowBitsSet(64, Length).shl(Index);
567 V00 = V00 & ~Mask;
568 V10 = V10.zextOrTrunc(Length).zextOrTrunc(64).shl(Index);
569 APInt Val = V00 | V10;
570 Type *IntTy64 = Type::getInt64Ty(II.getContext());
571 Constant *Args[] = {ConstantInt::get(IntTy64, Val.getZExtValue()),
572 UndefValue::get(IntTy64)};
573 return ConstantVector::get(Args);
574 }
575
576 // If we were an INSERTQ call, we'll save demanded elements if we convert to
577 // INSERTQI.
578 if (II.getIntrinsicID() == Intrinsic::x86_sse4a_insertq) {
579 Type *IntTy8 = Type::getInt8Ty(II.getContext());
580 Constant *CILength = ConstantInt::get(IntTy8, Length, false);
581 Constant *CIIndex = ConstantInt::get(IntTy8, Index, false);
582
583 Value *Args[] = {Op0, Op1, CILength, CIIndex};
Sanjay Patelaf674fb2015-12-14 17:24:23 +0000584 Module *M = II.getModule();
Simon Pilgrim216b1bf2015-10-17 11:40:05 +0000585 Value *F = Intrinsic::getDeclaration(M, Intrinsic::x86_sse4a_insertqi);
586 return Builder.CreateCall(F, Args);
587 }
588
589 return nullptr;
590}
591
Sanjay Patelccf5f242015-03-20 21:47:56 +0000592/// The shuffle mask for a perm2*128 selects any two halves of two 256-bit
593/// source vectors, unless a zero bit is set. If a zero bit is set,
594/// then ignore that half of the mask and clear that half of the vector.
Sanjay Patel6038d3e2016-01-29 23:27:03 +0000595static Value *simplifyX86vperm2(const IntrinsicInst &II,
Sanjay Patelccf5f242015-03-20 21:47:56 +0000596 InstCombiner::BuilderTy &Builder) {
Sanjay Patel03c03f52016-01-28 00:03:16 +0000597 auto *CInt = dyn_cast<ConstantInt>(II.getArgOperand(2));
598 if (!CInt)
599 return nullptr;
Sanjay Patelccf5f242015-03-20 21:47:56 +0000600
Sanjay Patel03c03f52016-01-28 00:03:16 +0000601 VectorType *VecTy = cast<VectorType>(II.getType());
602 ConstantAggregateZero *ZeroVector = ConstantAggregateZero::get(VecTy);
Sanjay Patel43a87fd2015-03-24 20:36:42 +0000603
Sanjay Patel03c03f52016-01-28 00:03:16 +0000604 // The immediate permute control byte looks like this:
605 // [1:0] - select 128 bits from sources for low half of destination
606 // [2] - ignore
607 // [3] - zero low half of destination
608 // [5:4] - select 128 bits from sources for high half of destination
609 // [6] - ignore
610 // [7] - zero high half of destination
Sanjay Patel43a87fd2015-03-24 20:36:42 +0000611
Sanjay Patel03c03f52016-01-28 00:03:16 +0000612 uint8_t Imm = CInt->getZExtValue();
Sanjay Patel43a87fd2015-03-24 20:36:42 +0000613
Sanjay Patel03c03f52016-01-28 00:03:16 +0000614 bool LowHalfZero = Imm & 0x08;
615 bool HighHalfZero = Imm & 0x80;
Sanjay Patel43a87fd2015-03-24 20:36:42 +0000616
Sanjay Patel03c03f52016-01-28 00:03:16 +0000617 // If both zero mask bits are set, this was just a weird way to
618 // generate a zero vector.
619 if (LowHalfZero && HighHalfZero)
620 return ZeroVector;
Sanjay Patel43a87fd2015-03-24 20:36:42 +0000621
Sanjay Patel03c03f52016-01-28 00:03:16 +0000622 // If 0 or 1 zero mask bits are set, this is a simple shuffle.
623 unsigned NumElts = VecTy->getNumElements();
624 unsigned HalfSize = NumElts / 2;
625 SmallVector<int, 8> ShuffleMask(NumElts);
Simon Pilgrim54fcd622015-07-25 20:41:00 +0000626
Sanjay Patel03c03f52016-01-28 00:03:16 +0000627 // The high bit of the selection field chooses the 1st or 2nd operand.
628 bool LowInputSelect = Imm & 0x02;
629 bool HighInputSelect = Imm & 0x20;
Sanjay Patelccf5f242015-03-20 21:47:56 +0000630
Sanjay Patel03c03f52016-01-28 00:03:16 +0000631 // The low bit of the selection field chooses the low or high half
632 // of the selected operand.
633 bool LowHalfSelect = Imm & 0x01;
634 bool HighHalfSelect = Imm & 0x10;
Simon Pilgrim54fcd622015-07-25 20:41:00 +0000635
Sanjay Patel03c03f52016-01-28 00:03:16 +0000636 // Determine which operand(s) are actually in use for this instruction.
637 Value *V0 = LowInputSelect ? II.getArgOperand(1) : II.getArgOperand(0);
638 Value *V1 = HighInputSelect ? II.getArgOperand(1) : II.getArgOperand(0);
Simon Pilgrim54fcd622015-07-25 20:41:00 +0000639
Sanjay Patel03c03f52016-01-28 00:03:16 +0000640 // If needed, replace operands based on zero mask.
641 V0 = LowHalfZero ? ZeroVector : V0;
642 V1 = HighHalfZero ? ZeroVector : V1;
Sanjay Patelccf5f242015-03-20 21:47:56 +0000643
Sanjay Patel03c03f52016-01-28 00:03:16 +0000644 // Permute low half of result.
645 unsigned StartIndex = LowHalfSelect ? HalfSize : 0;
646 for (unsigned i = 0; i < HalfSize; ++i)
647 ShuffleMask[i] = StartIndex + i;
Sanjay Patel43a87fd2015-03-24 20:36:42 +0000648
Sanjay Patel03c03f52016-01-28 00:03:16 +0000649 // Permute high half of result.
650 StartIndex = HighHalfSelect ? HalfSize : 0;
651 StartIndex += NumElts;
652 for (unsigned i = 0; i < HalfSize; ++i)
653 ShuffleMask[i + HalfSize] = StartIndex + i;
654
655 return Builder.CreateShuffleVector(V0, V1, ShuffleMask);
Sanjay Patelccf5f242015-03-20 21:47:56 +0000656}
657
Simon Pilgrim1d1c56e22015-10-11 14:38:34 +0000658/// Decode XOP integer vector comparison intrinsics.
Sanjay Patel6038d3e2016-01-29 23:27:03 +0000659static Value *simplifyX86vpcom(const IntrinsicInst &II,
Sanjay Patelf9f5d3c2016-01-29 23:14:58 +0000660 InstCombiner::BuilderTy &Builder,
661 bool IsSigned) {
Simon Pilgrim1d1c56e22015-10-11 14:38:34 +0000662 if (auto *CInt = dyn_cast<ConstantInt>(II.getArgOperand(2))) {
663 uint64_t Imm = CInt->getZExtValue() & 0x7;
664 VectorType *VecTy = cast<VectorType>(II.getType());
665 CmpInst::Predicate Pred = ICmpInst::BAD_ICMP_PREDICATE;
666
667 switch (Imm) {
668 case 0x0:
669 Pred = IsSigned ? ICmpInst::ICMP_SLT : ICmpInst::ICMP_ULT;
670 break;
671 case 0x1:
672 Pred = IsSigned ? ICmpInst::ICMP_SLE : ICmpInst::ICMP_ULE;
673 break;
674 case 0x2:
675 Pred = IsSigned ? ICmpInst::ICMP_SGT : ICmpInst::ICMP_UGT;
676 break;
677 case 0x3:
678 Pred = IsSigned ? ICmpInst::ICMP_SGE : ICmpInst::ICMP_UGE;
679 break;
680 case 0x4:
681 Pred = ICmpInst::ICMP_EQ; break;
682 case 0x5:
683 Pred = ICmpInst::ICMP_NE; break;
684 case 0x6:
685 return ConstantInt::getSigned(VecTy, 0); // FALSE
686 case 0x7:
687 return ConstantInt::getSigned(VecTy, -1); // TRUE
688 }
689
Sanjay Patelf9f5d3c2016-01-29 23:14:58 +0000690 if (Value *Cmp = Builder.CreateICmp(Pred, II.getArgOperand(0),
691 II.getArgOperand(1)))
Simon Pilgrim1d1c56e22015-10-11 14:38:34 +0000692 return Builder.CreateSExtOrTrunc(Cmp, VecTy);
693 }
694 return nullptr;
695}
696
Sanjay Patel0069f562016-01-31 16:35:23 +0000697static Value *simplifyMinnumMaxnum(const IntrinsicInst &II) {
698 Value *Arg0 = II.getArgOperand(0);
699 Value *Arg1 = II.getArgOperand(1);
700
701 // fmin(x, x) -> x
702 if (Arg0 == Arg1)
703 return Arg0;
704
705 const auto *C1 = dyn_cast<ConstantFP>(Arg1);
706
707 // fmin(x, nan) -> x
708 if (C1 && C1->isNaN())
709 return Arg0;
710
711 // This is the value because if undef were NaN, we would return the other
712 // value and cannot return a NaN unless both operands are.
713 //
714 // fmin(undef, x) -> x
715 if (isa<UndefValue>(Arg0))
716 return Arg1;
717
718 // fmin(x, undef) -> x
719 if (isa<UndefValue>(Arg1))
720 return Arg0;
721
722 Value *X = nullptr;
723 Value *Y = nullptr;
724 if (II.getIntrinsicID() == Intrinsic::minnum) {
725 // fmin(x, fmin(x, y)) -> fmin(x, y)
726 // fmin(y, fmin(x, y)) -> fmin(x, y)
727 if (match(Arg1, m_FMin(m_Value(X), m_Value(Y)))) {
728 if (Arg0 == X || Arg0 == Y)
729 return Arg1;
730 }
731
732 // fmin(fmin(x, y), x) -> fmin(x, y)
733 // fmin(fmin(x, y), y) -> fmin(x, y)
734 if (match(Arg0, m_FMin(m_Value(X), m_Value(Y)))) {
735 if (Arg1 == X || Arg1 == Y)
736 return Arg0;
737 }
738
739 // TODO: fmin(nnan x, inf) -> x
740 // TODO: fmin(nnan ninf x, flt_max) -> x
741 if (C1 && C1->isInfinity()) {
742 // fmin(x, -inf) -> -inf
743 if (C1->isNegative())
744 return Arg1;
745 }
746 } else {
747 assert(II.getIntrinsicID() == Intrinsic::maxnum);
748 // fmax(x, fmax(x, y)) -> fmax(x, y)
749 // fmax(y, fmax(x, y)) -> fmax(x, y)
750 if (match(Arg1, m_FMax(m_Value(X), m_Value(Y)))) {
751 if (Arg0 == X || Arg0 == Y)
752 return Arg1;
753 }
754
755 // fmax(fmax(x, y), x) -> fmax(x, y)
756 // fmax(fmax(x, y), y) -> fmax(x, y)
757 if (match(Arg0, m_FMax(m_Value(X), m_Value(Y)))) {
758 if (Arg1 == X || Arg1 == Y)
759 return Arg0;
760 }
761
762 // TODO: fmax(nnan x, -inf) -> x
763 // TODO: fmax(nnan ninf x, -flt_max) -> x
764 if (C1 && C1->isInfinity()) {
765 // fmax(x, inf) -> inf
766 if (!C1->isNegative())
767 return Arg1;
768 }
769 }
770 return nullptr;
771}
772
Sanjay Patelb695c552016-02-01 17:00:10 +0000773static Value *simplifyMaskedLoad(const IntrinsicInst &II,
774 InstCombiner::BuilderTy &Builder) {
775 auto *ConstMask = dyn_cast<Constant>(II.getArgOperand(2));
776 if (!ConstMask)
777 return nullptr;
778
779 // If the mask is all zeros, the "passthru" argument is the result.
780 if (ConstMask->isNullValue())
781 return II.getArgOperand(3);
782
783 // If the mask is all ones, this is a plain vector load of the 1st argument.
784 if (ConstMask->isAllOnesValue()) {
785 Value *LoadPtr = II.getArgOperand(0);
786 unsigned Alignment = cast<ConstantInt>(II.getArgOperand(1))->getZExtValue();
787 return Builder.CreateAlignedLoad(LoadPtr, Alignment, "unmaskedload");
788 }
789
790 return nullptr;
791}
792
Sanjay Patel04f792b2016-02-01 19:39:52 +0000793static Instruction *simplifyMaskedStore(IntrinsicInst &II, InstCombiner &IC) {
794 auto *ConstMask = dyn_cast<Constant>(II.getArgOperand(3));
795 if (!ConstMask)
796 return nullptr;
797
798 // If the mask is all zeros, this instruction does nothing.
799 if (ConstMask->isNullValue())
Sanjay Patel4b198802016-02-01 22:23:39 +0000800 return IC.eraseInstFromFunction(II);
Sanjay Patel04f792b2016-02-01 19:39:52 +0000801
802 // If the mask is all ones, this is a plain vector store of the 1st argument.
803 if (ConstMask->isAllOnesValue()) {
804 Value *StorePtr = II.getArgOperand(1);
805 unsigned Alignment = cast<ConstantInt>(II.getArgOperand(2))->getZExtValue();
806 return new StoreInst(II.getArgOperand(0), StorePtr, false, Alignment);
807 }
808
809 return nullptr;
810}
811
Sanjay Patel103ab7d2016-02-01 22:10:26 +0000812static Instruction *simplifyMaskedGather(IntrinsicInst &II, InstCombiner &IC) {
813 // If the mask is all zeros, return the "passthru" argument of the gather.
814 auto *ConstMask = dyn_cast<Constant>(II.getArgOperand(2));
815 if (ConstMask && ConstMask->isNullValue())
Sanjay Patel4b198802016-02-01 22:23:39 +0000816 return IC.replaceInstUsesWith(II, II.getArgOperand(3));
Sanjay Patel103ab7d2016-02-01 22:10:26 +0000817
818 return nullptr;
819}
820
821static Instruction *simplifyMaskedScatter(IntrinsicInst &II, InstCombiner &IC) {
822 // If the mask is all zeros, a scatter does nothing.
823 auto *ConstMask = dyn_cast<Constant>(II.getArgOperand(3));
824 if (ConstMask && ConstMask->isNullValue())
Sanjay Patel4b198802016-02-01 22:23:39 +0000825 return IC.eraseInstFromFunction(II);
Sanjay Patel103ab7d2016-02-01 22:10:26 +0000826
827 return nullptr;
828}
829
Sanjay Patelcd4377c2016-01-20 22:24:38 +0000830/// CallInst simplification. This mostly only handles folding of intrinsic
831/// instructions. For normal calls, it allows visitCallSite to do the heavy
832/// lifting.
Chris Lattner7a9e47a2010-01-05 07:32:13 +0000833Instruction *InstCombiner::visitCallInst(CallInst &CI) {
David Majnemer15032582015-05-22 03:56:46 +0000834 auto Args = CI.arg_operands();
835 if (Value *V = SimplifyCall(CI.getCalledValue(), Args.begin(), Args.end(), DL,
836 TLI, DT, AC))
Sanjay Patel4b198802016-02-01 22:23:39 +0000837 return replaceInstUsesWith(CI, V);
David Majnemer15032582015-05-22 03:56:46 +0000838
Benjamin Kramer8bcc9712012-08-29 15:32:21 +0000839 if (isFreeCall(&CI, TLI))
Chris Lattner7a9e47a2010-01-05 07:32:13 +0000840 return visitFree(CI);
841
842 // If the caller function is nounwind, mark the call as nounwind, even if the
843 // callee isn't.
844 if (CI.getParent()->getParent()->doesNotThrow() &&
845 !CI.doesNotThrow()) {
846 CI.setDoesNotThrow();
847 return &CI;
848 }
Jim Grosbach7815f562012-02-03 00:07:04 +0000849
Chris Lattner7a9e47a2010-01-05 07:32:13 +0000850 IntrinsicInst *II = dyn_cast<IntrinsicInst>(&CI);
851 if (!II) return visitCallSite(&CI);
Gabor Greif589a0b92010-06-24 12:58:35 +0000852
Chris Lattner7a9e47a2010-01-05 07:32:13 +0000853 // Intrinsics cannot occur in an invoke, so handle them here instead of in
854 // visitCallSite.
855 if (MemIntrinsic *MI = dyn_cast<MemIntrinsic>(II)) {
856 bool Changed = false;
857
858 // memmove/cpy/set of zero bytes is a noop.
859 if (Constant *NumBytes = dyn_cast<Constant>(MI->getLength())) {
Chris Lattnerc663a672010-10-01 05:51:02 +0000860 if (NumBytes->isNullValue())
Sanjay Patel4b198802016-02-01 22:23:39 +0000861 return eraseInstFromFunction(CI);
Chris Lattner7a9e47a2010-01-05 07:32:13 +0000862
863 if (ConstantInt *CI = dyn_cast<ConstantInt>(NumBytes))
864 if (CI->getZExtValue() == 1) {
865 // Replace the instruction with just byte operations. We would
866 // transform other cases to loads/stores, but we don't know if
867 // alignment is sufficient.
868 }
869 }
Jim Grosbach7815f562012-02-03 00:07:04 +0000870
Chris Lattnerc663a672010-10-01 05:51:02 +0000871 // No other transformations apply to volatile transfers.
872 if (MI->isVolatile())
Craig Topperf40110f2014-04-25 05:29:35 +0000873 return nullptr;
Chris Lattner7a9e47a2010-01-05 07:32:13 +0000874
875 // If we have a memmove and the source operation is a constant global,
876 // then the source and dest pointers can't alias, so we can change this
877 // into a call to memcpy.
878 if (MemMoveInst *MMI = dyn_cast<MemMoveInst>(MI)) {
879 if (GlobalVariable *GVSrc = dyn_cast<GlobalVariable>(MMI->getSource()))
880 if (GVSrc->isConstant()) {
Sanjay Patelaf674fb2015-12-14 17:24:23 +0000881 Module *M = CI.getModule();
Chris Lattner7a9e47a2010-01-05 07:32:13 +0000882 Intrinsic::ID MemCpyID = Intrinsic::memcpy;
Jay Foadb804a2b2011-07-12 14:06:48 +0000883 Type *Tys[3] = { CI.getArgOperand(0)->getType(),
884 CI.getArgOperand(1)->getType(),
885 CI.getArgOperand(2)->getType() };
Benjamin Kramere6e19332011-07-14 17:45:39 +0000886 CI.setCalledFunction(Intrinsic::getDeclaration(M, MemCpyID, Tys));
Chris Lattner7a9e47a2010-01-05 07:32:13 +0000887 Changed = true;
888 }
889 }
890
891 if (MemTransferInst *MTI = dyn_cast<MemTransferInst>(MI)) {
892 // memmove(x,x,size) -> noop.
893 if (MTI->getSource() == MTI->getDest())
Sanjay Patel4b198802016-02-01 22:23:39 +0000894 return eraseInstFromFunction(CI);
Eric Christopher7258dcd2010-04-16 23:37:20 +0000895 }
Chris Lattner7a9e47a2010-01-05 07:32:13 +0000896
Eric Christopher7258dcd2010-04-16 23:37:20 +0000897 // If we can determine a pointer alignment that is bigger than currently
898 // set, update the alignment.
Pete Cooper67cf9a72015-11-19 05:56:52 +0000899 if (isa<MemTransferInst>(MI)) {
900 if (Instruction *I = SimplifyMemTransfer(MI))
Chris Lattner7a9e47a2010-01-05 07:32:13 +0000901 return I;
902 } else if (MemSetInst *MSI = dyn_cast<MemSetInst>(MI)) {
903 if (Instruction *I = SimplifyMemSet(MSI))
904 return I;
905 }
Gabor Greif590d95e2010-06-24 13:42:49 +0000906
Chris Lattner7a9e47a2010-01-05 07:32:13 +0000907 if (Changed) return II;
908 }
Jim Grosbach7815f562012-02-03 00:07:04 +0000909
Sanjay Patel1c600c62016-01-20 16:41:43 +0000910 auto SimplifyDemandedVectorEltsLow = [this](Value *Op, unsigned Width,
911 unsigned DemandedWidth) {
Simon Pilgrim61116dd2015-09-17 20:32:45 +0000912 APInt UndefElts(Width, 0);
913 APInt DemandedElts = APInt::getLowBitsSet(Width, DemandedWidth);
914 return SimplifyDemandedVectorElts(Op, DemandedElts, UndefElts);
915 };
916
Chris Lattner7a9e47a2010-01-05 07:32:13 +0000917 switch (II->getIntrinsicID()) {
918 default: break;
Eric Christopher7b7028f2010-02-09 21:24:27 +0000919 case Intrinsic::objectsize: {
Nuno Lopes55fff832012-06-21 15:45:28 +0000920 uint64_t Size;
Rafael Espindola37dc9e12014-02-21 00:06:31 +0000921 if (getObjectSize(II->getArgOperand(0), Size, DL, TLI))
Sanjay Patel4b198802016-02-01 22:23:39 +0000922 return replaceInstUsesWith(CI, ConstantInt::get(CI.getType(), Size));
Craig Topperf40110f2014-04-25 05:29:35 +0000923 return nullptr;
Eric Christopher7b7028f2010-02-09 21:24:27 +0000924 }
Michael Ilseman536cc322012-12-13 03:13:36 +0000925 case Intrinsic::bswap: {
926 Value *IIOperand = II->getArgOperand(0);
Craig Topperf40110f2014-04-25 05:29:35 +0000927 Value *X = nullptr;
Michael Ilseman536cc322012-12-13 03:13:36 +0000928
Chris Lattner7a9e47a2010-01-05 07:32:13 +0000929 // bswap(bswap(x)) -> x
Michael Ilseman536cc322012-12-13 03:13:36 +0000930 if (match(IIOperand, m_BSwap(m_Value(X))))
Sanjay Patel4b198802016-02-01 22:23:39 +0000931 return replaceInstUsesWith(CI, X);
Jim Grosbach7815f562012-02-03 00:07:04 +0000932
Chris Lattner7a9e47a2010-01-05 07:32:13 +0000933 // bswap(trunc(bswap(x))) -> trunc(lshr(x, c))
Michael Ilseman536cc322012-12-13 03:13:36 +0000934 if (match(IIOperand, m_Trunc(m_BSwap(m_Value(X))))) {
935 unsigned C = X->getType()->getPrimitiveSizeInBits() -
936 IIOperand->getType()->getPrimitiveSizeInBits();
937 Value *CV = ConstantInt::get(X->getType(), C);
938 Value *V = Builder->CreateLShr(X, CV);
939 return new TruncInst(V, IIOperand->getType());
Chris Lattner7a9e47a2010-01-05 07:32:13 +0000940 }
Chris Lattner7a9e47a2010-01-05 07:32:13 +0000941 break;
Michael Ilseman536cc322012-12-13 03:13:36 +0000942 }
943
James Molloy2d09c002015-11-12 12:39:41 +0000944 case Intrinsic::bitreverse: {
945 Value *IIOperand = II->getArgOperand(0);
946 Value *X = nullptr;
947
948 // bitreverse(bitreverse(x)) -> x
949 if (match(IIOperand, m_Intrinsic<Intrinsic::bitreverse>(m_Value(X))))
Sanjay Patel4b198802016-02-01 22:23:39 +0000950 return replaceInstUsesWith(CI, X);
James Molloy2d09c002015-11-12 12:39:41 +0000951 break;
952 }
953
Sanjay Patelb695c552016-02-01 17:00:10 +0000954 case Intrinsic::masked_load:
955 if (Value *SimplifiedMaskedOp = simplifyMaskedLoad(*II, *Builder))
Sanjay Patel4b198802016-02-01 22:23:39 +0000956 return replaceInstUsesWith(CI, SimplifiedMaskedOp);
Sanjay Patelb695c552016-02-01 17:00:10 +0000957 break;
Sanjay Patel04f792b2016-02-01 19:39:52 +0000958 case Intrinsic::masked_store:
959 return simplifyMaskedStore(*II, *this);
Sanjay Patel103ab7d2016-02-01 22:10:26 +0000960 case Intrinsic::masked_gather:
961 return simplifyMaskedGather(*II, *this);
962 case Intrinsic::masked_scatter:
963 return simplifyMaskedScatter(*II, *this);
Sanjay Patelb695c552016-02-01 17:00:10 +0000964
Chris Lattner7a9e47a2010-01-05 07:32:13 +0000965 case Intrinsic::powi:
Gabor Greif589a0b92010-06-24 12:58:35 +0000966 if (ConstantInt *Power = dyn_cast<ConstantInt>(II->getArgOperand(1))) {
Chris Lattner7a9e47a2010-01-05 07:32:13 +0000967 // powi(x, 0) -> 1.0
968 if (Power->isZero())
Sanjay Patel4b198802016-02-01 22:23:39 +0000969 return replaceInstUsesWith(CI, ConstantFP::get(CI.getType(), 1.0));
Chris Lattner7a9e47a2010-01-05 07:32:13 +0000970 // powi(x, 1) -> x
971 if (Power->isOne())
Sanjay Patel4b198802016-02-01 22:23:39 +0000972 return replaceInstUsesWith(CI, II->getArgOperand(0));
Chris Lattner7a9e47a2010-01-05 07:32:13 +0000973 // powi(x, -1) -> 1/x
974 if (Power->isAllOnesValue())
975 return BinaryOperator::CreateFDiv(ConstantFP::get(CI.getType(), 1.0),
Gabor Greif589a0b92010-06-24 12:58:35 +0000976 II->getArgOperand(0));
Chris Lattner7a9e47a2010-01-05 07:32:13 +0000977 }
978 break;
979 case Intrinsic::cttz: {
980 // If all bits below the first known one are known zero,
981 // this value is constant.
Chris Lattner229907c2011-07-18 04:54:35 +0000982 IntegerType *IT = dyn_cast<IntegerType>(II->getArgOperand(0)->getType());
Owen Anderson2f37bdc2011-07-01 21:52:38 +0000983 // FIXME: Try to simplify vectors of integers.
984 if (!IT) break;
Chris Lattner7a9e47a2010-01-05 07:32:13 +0000985 uint32_t BitWidth = IT->getBitWidth();
986 APInt KnownZero(BitWidth, 0);
987 APInt KnownOne(BitWidth, 0);
Hal Finkel60db0582014-09-07 18:57:58 +0000988 computeKnownBits(II->getArgOperand(0), KnownZero, KnownOne, 0, II);
Chris Lattner7a9e47a2010-01-05 07:32:13 +0000989 unsigned TrailingZeros = KnownOne.countTrailingZeros();
990 APInt Mask(APInt::getLowBitsSet(BitWidth, TrailingZeros));
991 if ((Mask & KnownZero) == Mask)
Sanjay Patel4b198802016-02-01 22:23:39 +0000992 return replaceInstUsesWith(CI, ConstantInt::get(IT,
Chris Lattner7a9e47a2010-01-05 07:32:13 +0000993 APInt(BitWidth, TrailingZeros)));
Jim Grosbach7815f562012-02-03 00:07:04 +0000994
Chris Lattner7a9e47a2010-01-05 07:32:13 +0000995 }
996 break;
997 case Intrinsic::ctlz: {
998 // If all bits above the first known one are known zero,
999 // this value is constant.
Chris Lattner229907c2011-07-18 04:54:35 +00001000 IntegerType *IT = dyn_cast<IntegerType>(II->getArgOperand(0)->getType());
Owen Anderson2f37bdc2011-07-01 21:52:38 +00001001 // FIXME: Try to simplify vectors of integers.
1002 if (!IT) break;
Chris Lattner7a9e47a2010-01-05 07:32:13 +00001003 uint32_t BitWidth = IT->getBitWidth();
1004 APInt KnownZero(BitWidth, 0);
1005 APInt KnownOne(BitWidth, 0);
Hal Finkel60db0582014-09-07 18:57:58 +00001006 computeKnownBits(II->getArgOperand(0), KnownZero, KnownOne, 0, II);
Chris Lattner7a9e47a2010-01-05 07:32:13 +00001007 unsigned LeadingZeros = KnownOne.countLeadingZeros();
1008 APInt Mask(APInt::getHighBitsSet(BitWidth, LeadingZeros));
1009 if ((Mask & KnownZero) == Mask)
Sanjay Patel4b198802016-02-01 22:23:39 +00001010 return replaceInstUsesWith(CI, ConstantInt::get(IT,
Chris Lattner7a9e47a2010-01-05 07:32:13 +00001011 APInt(BitWidth, LeadingZeros)));
Jim Grosbach7815f562012-02-03 00:07:04 +00001012
Chris Lattner7a9e47a2010-01-05 07:32:13 +00001013 }
1014 break;
Sanjoy Dasb0984472015-04-08 04:27:22 +00001015
Nick Lewyckyabe2cc12015-04-13 19:17:37 +00001016 case Intrinsic::uadd_with_overflow:
1017 case Intrinsic::sadd_with_overflow:
1018 case Intrinsic::umul_with_overflow:
1019 case Intrinsic::smul_with_overflow:
Gabor Greif5b1370e2010-06-28 16:50:57 +00001020 if (isa<Constant>(II->getArgOperand(0)) &&
1021 !isa<Constant>(II->getArgOperand(1))) {
Sanjoy Dasb0984472015-04-08 04:27:22 +00001022 // Canonicalize constants into the RHS.
Gabor Greif5b1370e2010-06-28 16:50:57 +00001023 Value *LHS = II->getArgOperand(0);
1024 II->setArgOperand(0, II->getArgOperand(1));
1025 II->setArgOperand(1, LHS);
Chris Lattner7a9e47a2010-01-05 07:32:13 +00001026 return II;
1027 }
Nick Lewyckyd6f241d2015-04-13 20:03:08 +00001028 // fall through
Chris Lattner7a9e47a2010-01-05 07:32:13 +00001029
Nick Lewyckyabe2cc12015-04-13 19:17:37 +00001030 case Intrinsic::usub_with_overflow:
1031 case Intrinsic::ssub_with_overflow: {
Sanjoy Dasb0984472015-04-08 04:27:22 +00001032 OverflowCheckFlavor OCF =
1033 IntrinsicIDToOverflowCheckFlavor(II->getIntrinsicID());
1034 assert(OCF != OCF_INVALID && "unexpected!");
Jim Grosbach7815f562012-02-03 00:07:04 +00001035
Sanjoy Dasb0984472015-04-08 04:27:22 +00001036 Value *OperationResult = nullptr;
1037 Constant *OverflowResult = nullptr;
1038 if (OptimizeOverflowCheck(OCF, II->getArgOperand(0), II->getArgOperand(1),
1039 *II, OperationResult, OverflowResult))
1040 return CreateOverflowTuple(II, OperationResult, OverflowResult);
Benjamin Kramera420df22014-07-04 10:22:21 +00001041
Chris Lattner7a9e47a2010-01-05 07:32:13 +00001042 break;
Erik Eckstein096ff7d2014-12-11 08:02:30 +00001043 }
Chris Lattner7a9e47a2010-01-05 07:32:13 +00001044
Matt Arsenaultd6511b42014-10-21 23:00:20 +00001045 case Intrinsic::minnum:
1046 case Intrinsic::maxnum: {
1047 Value *Arg0 = II->getArgOperand(0);
1048 Value *Arg1 = II->getArgOperand(1);
Sanjay Patel0069f562016-01-31 16:35:23 +00001049 // Canonicalize constants to the RHS.
1050 if (isa<ConstantFP>(Arg0) && !isa<ConstantFP>(Arg1)) {
Matt Arsenaultd6511b42014-10-21 23:00:20 +00001051 II->setArgOperand(0, Arg1);
1052 II->setArgOperand(1, Arg0);
1053 return II;
1054 }
Sanjay Patel0069f562016-01-31 16:35:23 +00001055 if (Value *V = simplifyMinnumMaxnum(*II))
Sanjay Patel4b198802016-02-01 22:23:39 +00001056 return replaceInstUsesWith(*II, V);
Matt Arsenaultd6511b42014-10-21 23:00:20 +00001057 break;
1058 }
Chris Lattner7a9e47a2010-01-05 07:32:13 +00001059 case Intrinsic::ppc_altivec_lvx:
1060 case Intrinsic::ppc_altivec_lvxl:
Bill Wendlingb902f1d2011-04-13 00:36:11 +00001061 // Turn PPC lvx -> load if the pointer is known aligned.
Mehdi Aminia28d91d2015-03-10 02:37:25 +00001062 if (getOrEnforceKnownAlignment(II->getArgOperand(0), 16, DL, II, AC, DT) >=
Chandler Carruth66b31302015-01-04 12:03:27 +00001063 16) {
Gabor Greif589a0b92010-06-24 12:58:35 +00001064 Value *Ptr = Builder->CreateBitCast(II->getArgOperand(0),
Chris Lattner7a9e47a2010-01-05 07:32:13 +00001065 PointerType::getUnqual(II->getType()));
1066 return new LoadInst(Ptr);
1067 }
1068 break;
Bill Schmidt72954782014-11-12 04:19:40 +00001069 case Intrinsic::ppc_vsx_lxvw4x:
1070 case Intrinsic::ppc_vsx_lxvd2x: {
1071 // Turn PPC VSX loads into normal loads.
1072 Value *Ptr = Builder->CreateBitCast(II->getArgOperand(0),
1073 PointerType::getUnqual(II->getType()));
1074 return new LoadInst(Ptr, Twine(""), false, 1);
1075 }
Chris Lattner7a9e47a2010-01-05 07:32:13 +00001076 case Intrinsic::ppc_altivec_stvx:
1077 case Intrinsic::ppc_altivec_stvxl:
1078 // Turn stvx -> store if the pointer is known aligned.
Mehdi Aminia28d91d2015-03-10 02:37:25 +00001079 if (getOrEnforceKnownAlignment(II->getArgOperand(1), 16, DL, II, AC, DT) >=
Chandler Carruth66b31302015-01-04 12:03:27 +00001080 16) {
Jim Grosbach7815f562012-02-03 00:07:04 +00001081 Type *OpPtrTy =
Gabor Greifa6d75e22010-06-24 15:51:11 +00001082 PointerType::getUnqual(II->getArgOperand(0)->getType());
1083 Value *Ptr = Builder->CreateBitCast(II->getArgOperand(1), OpPtrTy);
1084 return new StoreInst(II->getArgOperand(0), Ptr);
Chris Lattner7a9e47a2010-01-05 07:32:13 +00001085 }
1086 break;
Bill Schmidt72954782014-11-12 04:19:40 +00001087 case Intrinsic::ppc_vsx_stxvw4x:
1088 case Intrinsic::ppc_vsx_stxvd2x: {
1089 // Turn PPC VSX stores into normal stores.
1090 Type *OpPtrTy = PointerType::getUnqual(II->getArgOperand(0)->getType());
1091 Value *Ptr = Builder->CreateBitCast(II->getArgOperand(1), OpPtrTy);
1092 return new StoreInst(II->getArgOperand(0), Ptr, false, 1);
1093 }
Hal Finkel221f4672015-02-26 18:56:03 +00001094 case Intrinsic::ppc_qpx_qvlfs:
1095 // Turn PPC QPX qvlfs -> load if the pointer is known aligned.
Mehdi Aminia28d91d2015-03-10 02:37:25 +00001096 if (getOrEnforceKnownAlignment(II->getArgOperand(0), 16, DL, II, AC, DT) >=
Hal Finkel221f4672015-02-26 18:56:03 +00001097 16) {
Hal Finkelf0d68d72015-05-11 06:37:03 +00001098 Type *VTy = VectorType::get(Builder->getFloatTy(),
1099 II->getType()->getVectorNumElements());
Hal Finkel221f4672015-02-26 18:56:03 +00001100 Value *Ptr = Builder->CreateBitCast(II->getArgOperand(0),
Hal Finkelf0d68d72015-05-11 06:37:03 +00001101 PointerType::getUnqual(VTy));
1102 Value *Load = Builder->CreateLoad(Ptr);
1103 return new FPExtInst(Load, II->getType());
Hal Finkel221f4672015-02-26 18:56:03 +00001104 }
1105 break;
1106 case Intrinsic::ppc_qpx_qvlfd:
1107 // Turn PPC QPX qvlfd -> load if the pointer is known aligned.
Mehdi Aminia28d91d2015-03-10 02:37:25 +00001108 if (getOrEnforceKnownAlignment(II->getArgOperand(0), 32, DL, II, AC, DT) >=
Hal Finkel221f4672015-02-26 18:56:03 +00001109 32) {
1110 Value *Ptr = Builder->CreateBitCast(II->getArgOperand(0),
1111 PointerType::getUnqual(II->getType()));
1112 return new LoadInst(Ptr);
1113 }
1114 break;
1115 case Intrinsic::ppc_qpx_qvstfs:
1116 // Turn PPC QPX qvstfs -> store if the pointer is known aligned.
Mehdi Aminia28d91d2015-03-10 02:37:25 +00001117 if (getOrEnforceKnownAlignment(II->getArgOperand(1), 16, DL, II, AC, DT) >=
Hal Finkel221f4672015-02-26 18:56:03 +00001118 16) {
Hal Finkelf0d68d72015-05-11 06:37:03 +00001119 Type *VTy = VectorType::get(Builder->getFloatTy(),
1120 II->getArgOperand(0)->getType()->getVectorNumElements());
1121 Value *TOp = Builder->CreateFPTrunc(II->getArgOperand(0), VTy);
1122 Type *OpPtrTy = PointerType::getUnqual(VTy);
Hal Finkel221f4672015-02-26 18:56:03 +00001123 Value *Ptr = Builder->CreateBitCast(II->getArgOperand(1), OpPtrTy);
Hal Finkelf0d68d72015-05-11 06:37:03 +00001124 return new StoreInst(TOp, Ptr);
Hal Finkel221f4672015-02-26 18:56:03 +00001125 }
1126 break;
1127 case Intrinsic::ppc_qpx_qvstfd:
1128 // Turn PPC QPX qvstfd -> store if the pointer is known aligned.
Mehdi Aminia28d91d2015-03-10 02:37:25 +00001129 if (getOrEnforceKnownAlignment(II->getArgOperand(1), 32, DL, II, AC, DT) >=
Hal Finkel221f4672015-02-26 18:56:03 +00001130 32) {
1131 Type *OpPtrTy =
1132 PointerType::getUnqual(II->getArgOperand(0)->getType());
1133 Value *Ptr = Builder->CreateBitCast(II->getArgOperand(1), OpPtrTy);
1134 return new StoreInst(II->getArgOperand(0), Ptr);
1135 }
1136 break;
Simon Pilgrim20c607b2015-09-12 13:39:53 +00001137
Chris Lattner7a9e47a2010-01-05 07:32:13 +00001138 case Intrinsic::x86_sse_storeu_ps:
1139 case Intrinsic::x86_sse2_storeu_pd:
1140 case Intrinsic::x86_sse2_storeu_dq:
1141 // Turn X86 storeu -> store if the pointer is known aligned.
Mehdi Aminia28d91d2015-03-10 02:37:25 +00001142 if (getOrEnforceKnownAlignment(II->getArgOperand(0), 16, DL, II, AC, DT) >=
Chandler Carruth66b31302015-01-04 12:03:27 +00001143 16) {
Jim Grosbach7815f562012-02-03 00:07:04 +00001144 Type *OpPtrTy =
Gabor Greifa6d75e22010-06-24 15:51:11 +00001145 PointerType::getUnqual(II->getArgOperand(1)->getType());
1146 Value *Ptr = Builder->CreateBitCast(II->getArgOperand(0), OpPtrTy);
1147 return new StoreInst(II->getArgOperand(1), Ptr);
Chris Lattner7a9e47a2010-01-05 07:32:13 +00001148 }
1149 break;
Chandler Carruthcf414cf2011-01-10 07:19:37 +00001150
Simon Pilgrim20c607b2015-09-12 13:39:53 +00001151 case Intrinsic::x86_vcvtph2ps_128:
1152 case Intrinsic::x86_vcvtph2ps_256: {
1153 auto Arg = II->getArgOperand(0);
1154 auto ArgType = cast<VectorType>(Arg->getType());
1155 auto RetType = cast<VectorType>(II->getType());
1156 unsigned ArgWidth = ArgType->getNumElements();
1157 unsigned RetWidth = RetType->getNumElements();
1158 assert(RetWidth <= ArgWidth && "Unexpected input/return vector widths");
1159 assert(ArgType->isIntOrIntVectorTy() &&
1160 ArgType->getScalarSizeInBits() == 16 &&
1161 "CVTPH2PS input type should be 16-bit integer vector");
1162 assert(RetType->getScalarType()->isFloatTy() &&
1163 "CVTPH2PS output type should be 32-bit float vector");
1164
1165 // Constant folding: Convert to generic half to single conversion.
Simon Pilgrim48ffca02015-09-12 14:00:17 +00001166 if (isa<ConstantAggregateZero>(Arg))
Sanjay Patel4b198802016-02-01 22:23:39 +00001167 return replaceInstUsesWith(*II, ConstantAggregateZero::get(RetType));
Simon Pilgrim20c607b2015-09-12 13:39:53 +00001168
Simon Pilgrim48ffca02015-09-12 14:00:17 +00001169 if (isa<ConstantDataVector>(Arg)) {
Simon Pilgrim20c607b2015-09-12 13:39:53 +00001170 auto VectorHalfAsShorts = Arg;
1171 if (RetWidth < ArgWidth) {
1172 SmallVector<int, 8> SubVecMask;
1173 for (unsigned i = 0; i != RetWidth; ++i)
1174 SubVecMask.push_back((int)i);
1175 VectorHalfAsShorts = Builder->CreateShuffleVector(
1176 Arg, UndefValue::get(ArgType), SubVecMask);
1177 }
1178
1179 auto VectorHalfType =
1180 VectorType::get(Type::getHalfTy(II->getContext()), RetWidth);
1181 auto VectorHalfs =
1182 Builder->CreateBitCast(VectorHalfAsShorts, VectorHalfType);
1183 auto VectorFloats = Builder->CreateFPExt(VectorHalfs, RetType);
Sanjay Patel4b198802016-02-01 22:23:39 +00001184 return replaceInstUsesWith(*II, VectorFloats);
Simon Pilgrim20c607b2015-09-12 13:39:53 +00001185 }
1186
1187 // We only use the lowest lanes of the argument.
Simon Pilgrim996725e2015-09-19 11:41:53 +00001188 if (Value *V = SimplifyDemandedVectorEltsLow(Arg, ArgWidth, RetWidth)) {
Simon Pilgrim20c607b2015-09-12 13:39:53 +00001189 II->setArgOperand(0, V);
1190 return II;
1191 }
1192 break;
1193 }
1194
Chandler Carruthcf414cf2011-01-10 07:19:37 +00001195 case Intrinsic::x86_sse_cvtss2si:
1196 case Intrinsic::x86_sse_cvtss2si64:
1197 case Intrinsic::x86_sse_cvttss2si:
1198 case Intrinsic::x86_sse_cvttss2si64:
1199 case Intrinsic::x86_sse2_cvtsd2si:
1200 case Intrinsic::x86_sse2_cvtsd2si64:
1201 case Intrinsic::x86_sse2_cvttsd2si:
1202 case Intrinsic::x86_sse2_cvttsd2si64: {
1203 // These intrinsics only demand the 0th element of their input vectors. If
Chris Lattner7a9e47a2010-01-05 07:32:13 +00001204 // we can simplify the input based on that, do so now.
Simon Pilgrim996725e2015-09-19 11:41:53 +00001205 Value *Arg = II->getArgOperand(0);
1206 unsigned VWidth = Arg->getType()->getVectorNumElements();
1207 if (Value *V = SimplifyDemandedVectorEltsLow(Arg, VWidth, 1)) {
Gabor Greif5b1370e2010-06-28 16:50:57 +00001208 II->setArgOperand(0, V);
Chris Lattner7a9e47a2010-01-05 07:32:13 +00001209 return II;
1210 }
Simon Pilgrim18617d12015-08-05 08:18:00 +00001211 break;
1212 }
1213
Simon Pilgrim471efd22016-02-20 23:17:35 +00001214 case Intrinsic::x86_sse_comieq_ss:
1215 case Intrinsic::x86_sse_comige_ss:
1216 case Intrinsic::x86_sse_comigt_ss:
1217 case Intrinsic::x86_sse_comile_ss:
1218 case Intrinsic::x86_sse_comilt_ss:
1219 case Intrinsic::x86_sse_comineq_ss:
1220 case Intrinsic::x86_sse_ucomieq_ss:
1221 case Intrinsic::x86_sse_ucomige_ss:
1222 case Intrinsic::x86_sse_ucomigt_ss:
1223 case Intrinsic::x86_sse_ucomile_ss:
1224 case Intrinsic::x86_sse_ucomilt_ss:
1225 case Intrinsic::x86_sse_ucomineq_ss:
1226 case Intrinsic::x86_sse2_comieq_sd:
1227 case Intrinsic::x86_sse2_comige_sd:
1228 case Intrinsic::x86_sse2_comigt_sd:
1229 case Intrinsic::x86_sse2_comile_sd:
1230 case Intrinsic::x86_sse2_comilt_sd:
1231 case Intrinsic::x86_sse2_comineq_sd:
1232 case Intrinsic::x86_sse2_ucomieq_sd:
1233 case Intrinsic::x86_sse2_ucomige_sd:
1234 case Intrinsic::x86_sse2_ucomigt_sd:
1235 case Intrinsic::x86_sse2_ucomile_sd:
1236 case Intrinsic::x86_sse2_ucomilt_sd:
1237 case Intrinsic::x86_sse2_ucomineq_sd: {
1238 // These intrinsics only demand the 0th element of their input vectors. If
1239 // we can simplify the input based on that, do so now.
1240 Value *Arg0 = II->getArgOperand(0);
1241 Value *Arg1 = II->getArgOperand(1);
1242 unsigned VWidth = Arg0->getType()->getVectorNumElements();
1243 if (Value *V = SimplifyDemandedVectorEltsLow(Arg0, VWidth, 1)) {
1244 II->setArgOperand(0, V);
1245 return II;
1246 }
1247 if (Value *V = SimplifyDemandedVectorEltsLow(Arg1, VWidth, 1)) {
1248 II->setArgOperand(1, V);
1249 return II;
1250 }
1251 break;
1252 }
1253
Simon Pilgrima3a72b42015-08-10 20:21:15 +00001254 // Constant fold ashr( <A x Bi>, Ci ).
Simon Pilgrimbecd5e82015-08-13 07:39:03 +00001255 // Constant fold lshr( <A x Bi>, Ci ).
1256 // Constant fold shl( <A x Bi>, Ci ).
Simon Pilgrima3a72b42015-08-10 20:21:15 +00001257 case Intrinsic::x86_sse2_psrai_d:
1258 case Intrinsic::x86_sse2_psrai_w:
Simon Pilgrima3a72b42015-08-10 20:21:15 +00001259 case Intrinsic::x86_avx2_psrai_d:
1260 case Intrinsic::x86_avx2_psrai_w:
Simon Pilgrim18617d12015-08-05 08:18:00 +00001261 case Intrinsic::x86_sse2_psrli_d:
1262 case Intrinsic::x86_sse2_psrli_q:
1263 case Intrinsic::x86_sse2_psrli_w:
Simon Pilgrim18617d12015-08-05 08:18:00 +00001264 case Intrinsic::x86_avx2_psrli_d:
1265 case Intrinsic::x86_avx2_psrli_q:
1266 case Intrinsic::x86_avx2_psrli_w:
Michael J. Spencerdee4b2c2014-04-24 00:58:18 +00001267 case Intrinsic::x86_sse2_pslli_d:
1268 case Intrinsic::x86_sse2_pslli_q:
1269 case Intrinsic::x86_sse2_pslli_w:
Simon Pilgrim18617d12015-08-05 08:18:00 +00001270 case Intrinsic::x86_avx2_pslli_d:
1271 case Intrinsic::x86_avx2_pslli_q:
1272 case Intrinsic::x86_avx2_pslli_w:
Sanjay Patel6038d3e2016-01-29 23:27:03 +00001273 if (Value *V = simplifyX86immShift(*II, *Builder))
Sanjay Patel4b198802016-02-01 22:23:39 +00001274 return replaceInstUsesWith(*II, V);
Simon Pilgrim18617d12015-08-05 08:18:00 +00001275 break;
1276
Simon Pilgrimbecd5e82015-08-13 07:39:03 +00001277 case Intrinsic::x86_sse2_psra_d:
1278 case Intrinsic::x86_sse2_psra_w:
1279 case Intrinsic::x86_avx2_psra_d:
1280 case Intrinsic::x86_avx2_psra_w:
1281 case Intrinsic::x86_sse2_psrl_d:
1282 case Intrinsic::x86_sse2_psrl_q:
1283 case Intrinsic::x86_sse2_psrl_w:
1284 case Intrinsic::x86_avx2_psrl_d:
1285 case Intrinsic::x86_avx2_psrl_q:
1286 case Intrinsic::x86_avx2_psrl_w:
1287 case Intrinsic::x86_sse2_psll_d:
1288 case Intrinsic::x86_sse2_psll_q:
1289 case Intrinsic::x86_sse2_psll_w:
1290 case Intrinsic::x86_avx2_psll_d:
1291 case Intrinsic::x86_avx2_psll_q:
1292 case Intrinsic::x86_avx2_psll_w: {
Sanjay Patel6038d3e2016-01-29 23:27:03 +00001293 if (Value *V = simplifyX86immShift(*II, *Builder))
Sanjay Patel4b198802016-02-01 22:23:39 +00001294 return replaceInstUsesWith(*II, V);
Simon Pilgrimbecd5e82015-08-13 07:39:03 +00001295
1296 // SSE2/AVX2 uses only the first 64-bits of the 128-bit vector
1297 // operand to compute the shift amount.
Simon Pilgrim996725e2015-09-19 11:41:53 +00001298 Value *Arg1 = II->getArgOperand(1);
1299 assert(Arg1->getType()->getPrimitiveSizeInBits() == 128 &&
Simon Pilgrimbecd5e82015-08-13 07:39:03 +00001300 "Unexpected packed shift size");
Simon Pilgrim996725e2015-09-19 11:41:53 +00001301 unsigned VWidth = Arg1->getType()->getVectorNumElements();
Simon Pilgrimbecd5e82015-08-13 07:39:03 +00001302
Simon Pilgrim996725e2015-09-19 11:41:53 +00001303 if (Value *V = SimplifyDemandedVectorEltsLow(Arg1, VWidth, VWidth / 2)) {
Simon Pilgrimbecd5e82015-08-13 07:39:03 +00001304 II->setArgOperand(1, V);
1305 return II;
1306 }
1307 break;
1308 }
1309
Simon Pilgrim15c0a592015-07-27 18:52:15 +00001310 case Intrinsic::x86_avx2_pmovsxbd:
1311 case Intrinsic::x86_avx2_pmovsxbq:
1312 case Intrinsic::x86_avx2_pmovsxbw:
1313 case Intrinsic::x86_avx2_pmovsxdq:
1314 case Intrinsic::x86_avx2_pmovsxwd:
1315 case Intrinsic::x86_avx2_pmovsxwq:
Sanjay Patel6038d3e2016-01-29 23:27:03 +00001316 if (Value *V = simplifyX86extend(*II, *Builder, true))
Sanjay Patel4b198802016-02-01 22:23:39 +00001317 return replaceInstUsesWith(*II, V);
Stuart Hastings5bd18b62011-05-17 22:13:31 +00001318 break;
Simon Pilgrim15c0a592015-07-27 18:52:15 +00001319
1320 case Intrinsic::x86_sse41_pmovzxbd:
1321 case Intrinsic::x86_sse41_pmovzxbq:
1322 case Intrinsic::x86_sse41_pmovzxbw:
1323 case Intrinsic::x86_sse41_pmovzxdq:
1324 case Intrinsic::x86_sse41_pmovzxwd:
1325 case Intrinsic::x86_sse41_pmovzxwq:
1326 case Intrinsic::x86_avx2_pmovzxbd:
1327 case Intrinsic::x86_avx2_pmovzxbq:
1328 case Intrinsic::x86_avx2_pmovzxbw:
1329 case Intrinsic::x86_avx2_pmovzxdq:
1330 case Intrinsic::x86_avx2_pmovzxwd:
1331 case Intrinsic::x86_avx2_pmovzxwq:
Sanjay Patel6038d3e2016-01-29 23:27:03 +00001332 if (Value *V = simplifyX86extend(*II, *Builder, false))
Sanjay Patel4b198802016-02-01 22:23:39 +00001333 return replaceInstUsesWith(*II, V);
Simon Pilgrim15c0a592015-07-27 18:52:15 +00001334 break;
1335
Sanjay Patelc86867c2015-04-16 17:52:13 +00001336 case Intrinsic::x86_sse41_insertps:
Sanjay Patel6038d3e2016-01-29 23:27:03 +00001337 if (Value *V = simplifyX86insertps(*II, *Builder))
Sanjay Patel4b198802016-02-01 22:23:39 +00001338 return replaceInstUsesWith(*II, V);
Sanjay Patelc86867c2015-04-16 17:52:13 +00001339 break;
Simon Pilgrim54fcd622015-07-25 20:41:00 +00001340
Simon Pilgrim61116dd2015-09-17 20:32:45 +00001341 case Intrinsic::x86_sse4a_extrq: {
Simon Pilgrim61116dd2015-09-17 20:32:45 +00001342 Value *Op0 = II->getArgOperand(0);
1343 Value *Op1 = II->getArgOperand(1);
1344 unsigned VWidth0 = Op0->getType()->getVectorNumElements();
1345 unsigned VWidth1 = Op1->getType()->getVectorNumElements();
Simon Pilgrim216b1bf2015-10-17 11:40:05 +00001346 assert(Op0->getType()->getPrimitiveSizeInBits() == 128 &&
1347 Op1->getType()->getPrimitiveSizeInBits() == 128 && VWidth0 == 2 &&
1348 VWidth1 == 16 && "Unexpected operand sizes");
Simon Pilgrim61116dd2015-09-17 20:32:45 +00001349
Simon Pilgrim216b1bf2015-10-17 11:40:05 +00001350 // See if we're dealing with constant values.
1351 Constant *C1 = dyn_cast<Constant>(Op1);
1352 ConstantInt *CILength =
1353 C1 ? dyn_cast<ConstantInt>(C1->getAggregateElement((unsigned)0))
1354 : nullptr;
1355 ConstantInt *CIIndex =
1356 C1 ? dyn_cast<ConstantInt>(C1->getAggregateElement((unsigned)1))
1357 : nullptr;
1358
1359 // Attempt to simplify to a constant, shuffle vector or EXTRQI call.
Sanjay Patel6038d3e2016-01-29 23:27:03 +00001360 if (Value *V = simplifyX86extrq(*II, Op0, CILength, CIIndex, *Builder))
Sanjay Patel4b198802016-02-01 22:23:39 +00001361 return replaceInstUsesWith(*II, V);
Simon Pilgrim216b1bf2015-10-17 11:40:05 +00001362
1363 // EXTRQ only uses the lowest 64-bits of the first 128-bit vector
1364 // operands and the lowest 16-bits of the second.
Simon Pilgrim61116dd2015-09-17 20:32:45 +00001365 if (Value *V = SimplifyDemandedVectorEltsLow(Op0, VWidth0, 1)) {
1366 II->setArgOperand(0, V);
1367 return II;
1368 }
1369 if (Value *V = SimplifyDemandedVectorEltsLow(Op1, VWidth1, 2)) {
1370 II->setArgOperand(1, V);
1371 return II;
1372 }
1373 break;
1374 }
1375
1376 case Intrinsic::x86_sse4a_extrqi: {
Simon Pilgrim216b1bf2015-10-17 11:40:05 +00001377 // EXTRQI: Extract Length bits starting from Index. Zero pad the remaining
1378 // bits of the lower 64-bits. The upper 64-bits are undefined.
1379 Value *Op0 = II->getArgOperand(0);
1380 unsigned VWidth = Op0->getType()->getVectorNumElements();
1381 assert(Op0->getType()->getPrimitiveSizeInBits() == 128 && VWidth == 2 &&
1382 "Unexpected operand size");
Simon Pilgrim61116dd2015-09-17 20:32:45 +00001383
Simon Pilgrim216b1bf2015-10-17 11:40:05 +00001384 // See if we're dealing with constant values.
1385 ConstantInt *CILength = dyn_cast<ConstantInt>(II->getArgOperand(1));
1386 ConstantInt *CIIndex = dyn_cast<ConstantInt>(II->getArgOperand(2));
1387
1388 // Attempt to simplify to a constant or shuffle vector.
Sanjay Patel6038d3e2016-01-29 23:27:03 +00001389 if (Value *V = simplifyX86extrq(*II, Op0, CILength, CIIndex, *Builder))
Sanjay Patel4b198802016-02-01 22:23:39 +00001390 return replaceInstUsesWith(*II, V);
Simon Pilgrim216b1bf2015-10-17 11:40:05 +00001391
1392 // EXTRQI only uses the lowest 64-bits of the first 128-bit vector
1393 // operand.
1394 if (Value *V = SimplifyDemandedVectorEltsLow(Op0, VWidth, 1)) {
Simon Pilgrim61116dd2015-09-17 20:32:45 +00001395 II->setArgOperand(0, V);
1396 return II;
1397 }
1398 break;
1399 }
1400
1401 case Intrinsic::x86_sse4a_insertq: {
Simon Pilgrim216b1bf2015-10-17 11:40:05 +00001402 Value *Op0 = II->getArgOperand(0);
1403 Value *Op1 = II->getArgOperand(1);
1404 unsigned VWidth = Op0->getType()->getVectorNumElements();
1405 assert(Op0->getType()->getPrimitiveSizeInBits() == 128 &&
1406 Op1->getType()->getPrimitiveSizeInBits() == 128 && VWidth == 2 &&
1407 Op1->getType()->getVectorNumElements() == 2 &&
1408 "Unexpected operand size");
Simon Pilgrim61116dd2015-09-17 20:32:45 +00001409
Simon Pilgrim216b1bf2015-10-17 11:40:05 +00001410 // See if we're dealing with constant values.
1411 Constant *C1 = dyn_cast<Constant>(Op1);
1412 ConstantInt *CI11 =
1413 C1 ? dyn_cast<ConstantInt>(C1->getAggregateElement((unsigned)1))
1414 : nullptr;
1415
1416 // Attempt to simplify to a constant, shuffle vector or INSERTQI call.
1417 if (CI11) {
1418 APInt V11 = CI11->getValue();
1419 APInt Len = V11.zextOrTrunc(6);
1420 APInt Idx = V11.lshr(8).zextOrTrunc(6);
Sanjay Patel6038d3e2016-01-29 23:27:03 +00001421 if (Value *V = simplifyX86insertq(*II, Op0, Op1, Len, Idx, *Builder))
Sanjay Patel4b198802016-02-01 22:23:39 +00001422 return replaceInstUsesWith(*II, V);
Simon Pilgrim216b1bf2015-10-17 11:40:05 +00001423 }
1424
1425 // INSERTQ only uses the lowest 64-bits of the first 128-bit vector
1426 // operand.
1427 if (Value *V = SimplifyDemandedVectorEltsLow(Op0, VWidth, 1)) {
Simon Pilgrim61116dd2015-09-17 20:32:45 +00001428 II->setArgOperand(0, V);
1429 return II;
1430 }
1431 break;
1432 }
1433
Filipe Cabecinhas1a805952014-04-24 00:38:14 +00001434 case Intrinsic::x86_sse4a_insertqi: {
Simon Pilgrim216b1bf2015-10-17 11:40:05 +00001435 // INSERTQI: Extract lowest Length bits from lower half of second source and
1436 // insert over first source starting at Index bit. The upper 64-bits are
1437 // undefined.
Simon Pilgrim61116dd2015-09-17 20:32:45 +00001438 Value *Op0 = II->getArgOperand(0);
1439 Value *Op1 = II->getArgOperand(1);
1440 unsigned VWidth0 = Op0->getType()->getVectorNumElements();
1441 unsigned VWidth1 = Op1->getType()->getVectorNumElements();
Simon Pilgrim216b1bf2015-10-17 11:40:05 +00001442 assert(Op0->getType()->getPrimitiveSizeInBits() == 128 &&
1443 Op1->getType()->getPrimitiveSizeInBits() == 128 && VWidth0 == 2 &&
1444 VWidth1 == 2 && "Unexpected operand sizes");
Simon Pilgrim61116dd2015-09-17 20:32:45 +00001445
Simon Pilgrim216b1bf2015-10-17 11:40:05 +00001446 // See if we're dealing with constant values.
1447 ConstantInt *CILength = dyn_cast<ConstantInt>(II->getArgOperand(2));
1448 ConstantInt *CIIndex = dyn_cast<ConstantInt>(II->getArgOperand(3));
1449
1450 // Attempt to simplify to a constant or shuffle vector.
1451 if (CILength && CIIndex) {
1452 APInt Len = CILength->getValue().zextOrTrunc(6);
1453 APInt Idx = CIIndex->getValue().zextOrTrunc(6);
Sanjay Patel6038d3e2016-01-29 23:27:03 +00001454 if (Value *V = simplifyX86insertq(*II, Op0, Op1, Len, Idx, *Builder))
Sanjay Patel4b198802016-02-01 22:23:39 +00001455 return replaceInstUsesWith(*II, V);
Simon Pilgrim216b1bf2015-10-17 11:40:05 +00001456 }
1457
1458 // INSERTQI only uses the lowest 64-bits of the first two 128-bit vector
1459 // operands.
Simon Pilgrim61116dd2015-09-17 20:32:45 +00001460 if (Value *V = SimplifyDemandedVectorEltsLow(Op0, VWidth0, 1)) {
1461 II->setArgOperand(0, V);
1462 return II;
1463 }
1464
1465 if (Value *V = SimplifyDemandedVectorEltsLow(Op1, VWidth1, 1)) {
1466 II->setArgOperand(1, V);
1467 return II;
1468 }
Filipe Cabecinhas1a805952014-04-24 00:38:14 +00001469 break;
1470 }
1471
Filipe Cabecinhas82ac07c2014-05-27 03:42:20 +00001472 case Intrinsic::x86_sse41_pblendvb:
1473 case Intrinsic::x86_sse41_blendvps:
1474 case Intrinsic::x86_sse41_blendvpd:
1475 case Intrinsic::x86_avx_blendv_ps_256:
1476 case Intrinsic::x86_avx_blendv_pd_256:
1477 case Intrinsic::x86_avx2_pblendvb: {
1478 // Convert blendv* to vector selects if the mask is constant.
1479 // This optimization is convoluted because the intrinsic is defined as
1480 // getting a vector of floats or doubles for the ps and pd versions.
1481 // FIXME: That should be changed.
Simon Pilgrim8c049d52015-08-12 08:08:56 +00001482
1483 Value *Op0 = II->getArgOperand(0);
1484 Value *Op1 = II->getArgOperand(1);
Filipe Cabecinhas82ac07c2014-05-27 03:42:20 +00001485 Value *Mask = II->getArgOperand(2);
Simon Pilgrim8c049d52015-08-12 08:08:56 +00001486
1487 // fold (blend A, A, Mask) -> A
1488 if (Op0 == Op1)
Sanjay Patel4b198802016-02-01 22:23:39 +00001489 return replaceInstUsesWith(CI, Op0);
Simon Pilgrim8c049d52015-08-12 08:08:56 +00001490
1491 // Zero Mask - select 1st argument.
Simon Pilgrim93f59f52015-08-12 08:23:36 +00001492 if (isa<ConstantAggregateZero>(Mask))
Sanjay Patel4b198802016-02-01 22:23:39 +00001493 return replaceInstUsesWith(CI, Op0);
Simon Pilgrim8c049d52015-08-12 08:08:56 +00001494
1495 // Constant Mask - select 1st/2nd argument lane based on top bit of mask.
Sanjay Patel368ac5d2016-02-21 17:29:33 +00001496 if (auto *ConstantMask = dyn_cast<ConstantDataVector>(Mask)) {
1497 Constant *NewSelector = getNegativeIsTrueBoolVec(ConstantMask);
Simon Pilgrim8c049d52015-08-12 08:08:56 +00001498 return SelectInst::Create(NewSelector, Op1, Op0, "blendv");
Filipe Cabecinhas82ac07c2014-05-27 03:42:20 +00001499 }
Simon Pilgrim8c049d52015-08-12 08:08:56 +00001500 break;
Filipe Cabecinhas82ac07c2014-05-27 03:42:20 +00001501 }
1502
Andrea Di Biagio0594e2a2015-09-30 16:44:39 +00001503 case Intrinsic::x86_ssse3_pshuf_b_128:
1504 case Intrinsic::x86_avx2_pshuf_b: {
1505 // Turn pshufb(V1,mask) -> shuffle(V1,Zero,mask) if mask is a constant.
1506 auto *V = II->getArgOperand(1);
1507 auto *VTy = cast<VectorType>(V->getType());
1508 unsigned NumElts = VTy->getNumElements();
1509 assert((NumElts == 16 || NumElts == 32) &&
1510 "Unexpected number of elements in shuffle mask!");
1511 // Initialize the resulting shuffle mask to all zeroes.
1512 uint32_t Indexes[32] = {0};
1513
1514 if (auto *Mask = dyn_cast<ConstantDataVector>(V)) {
1515 // Each byte in the shuffle control mask forms an index to permute the
1516 // corresponding byte in the destination operand.
1517 for (unsigned I = 0; I < NumElts; ++I) {
1518 int8_t Index = Mask->getElementAsInteger(I);
1519 // If the most significant bit (bit[7]) of each byte of the shuffle
1520 // control mask is set, then zero is written in the result byte.
1521 // The zero vector is in the right-hand side of the resulting
1522 // shufflevector.
Simon Pilgrim3c2b30f2015-10-13 14:48:54 +00001523
Andrea Di Biagio0594e2a2015-09-30 16:44:39 +00001524 // The value of each index is the least significant 4 bits of the
Simon Pilgrim3c2b30f2015-10-13 14:48:54 +00001525 // shuffle control byte.
Andrea Di Biagio0594e2a2015-09-30 16:44:39 +00001526 Indexes[I] = (Index < 0) ? NumElts : Index & 0xF;
1527 }
1528 } else if (!isa<ConstantAggregateZero>(V))
1529 break;
1530
1531 // The value of each index for the high 128-bit lane is the least
1532 // significant 4 bits of the respective shuffle control byte.
1533 for (unsigned I = 16; I < NumElts; ++I)
1534 Indexes[I] += I & 0xF0;
1535
1536 auto NewC = ConstantDataVector::get(V->getContext(),
1537 makeArrayRef(Indexes, NumElts));
1538 auto V1 = II->getArgOperand(0);
1539 auto V2 = Constant::getNullValue(II->getType());
1540 auto Shuffle = Builder->CreateShuffleVector(V1, V2, NewC);
Sanjay Patel4b198802016-02-01 22:23:39 +00001541 return replaceInstUsesWith(CI, Shuffle);
Andrea Di Biagio0594e2a2015-09-30 16:44:39 +00001542 }
1543
Rafael Espindolabad3f772014-04-21 22:06:04 +00001544 case Intrinsic::x86_avx_vpermilvar_ps:
1545 case Intrinsic::x86_avx_vpermilvar_ps_256:
1546 case Intrinsic::x86_avx_vpermilvar_pd:
1547 case Intrinsic::x86_avx_vpermilvar_pd_256: {
1548 // Convert vpermil* to shufflevector if the mask is constant.
1549 Value *V = II->getArgOperand(1);
Rafael Espindola85f36102014-04-29 22:20:40 +00001550 unsigned Size = cast<VectorType>(V->getType())->getNumElements();
1551 assert(Size == 8 || Size == 4 || Size == 2);
1552 uint32_t Indexes[8];
Rafael Espindolabad3f772014-04-21 22:06:04 +00001553 if (auto C = dyn_cast<ConstantDataVector>(V)) {
Rafael Espindolaeb7bdbd2014-04-29 20:41:54 +00001554 // The intrinsics only read one or two bits, clear the rest.
1555 for (unsigned I = 0; I < Size; ++I) {
Rafael Espindola152ee212014-04-29 21:02:37 +00001556 uint32_t Index = C->getElementAsInteger(I) & 0x3;
1557 if (II->getIntrinsicID() == Intrinsic::x86_avx_vpermilvar_pd ||
1558 II->getIntrinsicID() == Intrinsic::x86_avx_vpermilvar_pd_256)
1559 Index >>= 1;
Rafael Espindolaeb7bdbd2014-04-29 20:41:54 +00001560 Indexes[I] = Index;
1561 }
Rafael Espindola85f36102014-04-29 22:20:40 +00001562 } else if (isa<ConstantAggregateZero>(V)) {
1563 for (unsigned I = 0; I < Size; ++I)
1564 Indexes[I] = 0;
1565 } else {
1566 break;
Rafael Espindolabad3f772014-04-21 22:06:04 +00001567 }
Rafael Espindola85f36102014-04-29 22:20:40 +00001568 // The _256 variants are a bit trickier since the mask bits always index
1569 // into the corresponding 128 half. In order to convert to a generic
1570 // shuffle, we have to make that explicit.
1571 if (II->getIntrinsicID() == Intrinsic::x86_avx_vpermilvar_ps_256 ||
1572 II->getIntrinsicID() == Intrinsic::x86_avx_vpermilvar_pd_256) {
1573 for (unsigned I = Size / 2; I < Size; ++I)
1574 Indexes[I] += Size / 2;
1575 }
1576 auto NewC =
1577 ConstantDataVector::get(V->getContext(), makeArrayRef(Indexes, Size));
1578 auto V1 = II->getArgOperand(0);
1579 auto V2 = UndefValue::get(V1->getType());
1580 auto Shuffle = Builder->CreateShuffleVector(V1, V2, NewC);
Sanjay Patel4b198802016-02-01 22:23:39 +00001581 return replaceInstUsesWith(CI, Shuffle);
Rafael Espindolabad3f772014-04-21 22:06:04 +00001582 }
1583
Sanjay Patelccf5f242015-03-20 21:47:56 +00001584 case Intrinsic::x86_avx_vperm2f128_pd_256:
1585 case Intrinsic::x86_avx_vperm2f128_ps_256:
1586 case Intrinsic::x86_avx_vperm2f128_si_256:
Sanjay Patele304bea2015-03-24 22:39:29 +00001587 case Intrinsic::x86_avx2_vperm2i128:
Sanjay Patel6038d3e2016-01-29 23:27:03 +00001588 if (Value *V = simplifyX86vperm2(*II, *Builder))
Sanjay Patel4b198802016-02-01 22:23:39 +00001589 return replaceInstUsesWith(*II, V);
Sanjay Patelccf5f242015-03-20 21:47:56 +00001590 break;
1591
Simon Pilgrim1d1c56e22015-10-11 14:38:34 +00001592 case Intrinsic::x86_xop_vpcomb:
1593 case Intrinsic::x86_xop_vpcomd:
1594 case Intrinsic::x86_xop_vpcomq:
1595 case Intrinsic::x86_xop_vpcomw:
Sanjay Patel6038d3e2016-01-29 23:27:03 +00001596 if (Value *V = simplifyX86vpcom(*II, *Builder, true))
Sanjay Patel4b198802016-02-01 22:23:39 +00001597 return replaceInstUsesWith(*II, V);
Simon Pilgrim1d1c56e22015-10-11 14:38:34 +00001598 break;
1599
1600 case Intrinsic::x86_xop_vpcomub:
1601 case Intrinsic::x86_xop_vpcomud:
1602 case Intrinsic::x86_xop_vpcomuq:
1603 case Intrinsic::x86_xop_vpcomuw:
Sanjay Patel6038d3e2016-01-29 23:27:03 +00001604 if (Value *V = simplifyX86vpcom(*II, *Builder, false))
Sanjay Patel4b198802016-02-01 22:23:39 +00001605 return replaceInstUsesWith(*II, V);
Simon Pilgrim1d1c56e22015-10-11 14:38:34 +00001606 break;
1607
Chris Lattner7a9e47a2010-01-05 07:32:13 +00001608 case Intrinsic::ppc_altivec_vperm:
1609 // Turn vperm(V1,V2,mask) -> shuffle(V1,V2,mask) if mask is a constant.
Bill Schmidta1184632014-06-05 19:46:04 +00001610 // Note that ppc_altivec_vperm has a big-endian bias, so when creating
1611 // a vectorshuffle for little endian, we must undo the transformation
1612 // performed on vec_perm in altivec.h. That is, we must complement
1613 // the permutation mask with respect to 31 and reverse the order of
1614 // V1 and V2.
Chris Lattner0256be92012-01-27 03:08:05 +00001615 if (Constant *Mask = dyn_cast<Constant>(II->getArgOperand(2))) {
1616 assert(Mask->getType()->getVectorNumElements() == 16 &&
1617 "Bad type for intrinsic!");
Jim Grosbach7815f562012-02-03 00:07:04 +00001618
Chris Lattner7a9e47a2010-01-05 07:32:13 +00001619 // Check that all of the elements are integer constants or undefs.
1620 bool AllEltsOk = true;
1621 for (unsigned i = 0; i != 16; ++i) {
Chris Lattner0256be92012-01-27 03:08:05 +00001622 Constant *Elt = Mask->getAggregateElement(i);
Craig Topperf40110f2014-04-25 05:29:35 +00001623 if (!Elt || !(isa<ConstantInt>(Elt) || isa<UndefValue>(Elt))) {
Chris Lattner7a9e47a2010-01-05 07:32:13 +00001624 AllEltsOk = false;
1625 break;
1626 }
1627 }
Jim Grosbach7815f562012-02-03 00:07:04 +00001628
Chris Lattner7a9e47a2010-01-05 07:32:13 +00001629 if (AllEltsOk) {
1630 // Cast the input vectors to byte vectors.
Gabor Greif3e44ea12010-07-22 10:37:47 +00001631 Value *Op0 = Builder->CreateBitCast(II->getArgOperand(0),
1632 Mask->getType());
1633 Value *Op1 = Builder->CreateBitCast(II->getArgOperand(1),
1634 Mask->getType());
Chris Lattner7a9e47a2010-01-05 07:32:13 +00001635 Value *Result = UndefValue::get(Op0->getType());
Jim Grosbach7815f562012-02-03 00:07:04 +00001636
Chris Lattner7a9e47a2010-01-05 07:32:13 +00001637 // Only extract each element once.
1638 Value *ExtractedElts[32];
1639 memset(ExtractedElts, 0, sizeof(ExtractedElts));
Jim Grosbach7815f562012-02-03 00:07:04 +00001640
Chris Lattner7a9e47a2010-01-05 07:32:13 +00001641 for (unsigned i = 0; i != 16; ++i) {
Chris Lattner0256be92012-01-27 03:08:05 +00001642 if (isa<UndefValue>(Mask->getAggregateElement(i)))
Chris Lattner7a9e47a2010-01-05 07:32:13 +00001643 continue;
Jim Grosbach7815f562012-02-03 00:07:04 +00001644 unsigned Idx =
Chris Lattner0256be92012-01-27 03:08:05 +00001645 cast<ConstantInt>(Mask->getAggregateElement(i))->getZExtValue();
Chris Lattner7a9e47a2010-01-05 07:32:13 +00001646 Idx &= 31; // Match the hardware behavior.
Mehdi Aminia28d91d2015-03-10 02:37:25 +00001647 if (DL.isLittleEndian())
Bill Schmidta1184632014-06-05 19:46:04 +00001648 Idx = 31 - Idx;
Jim Grosbach7815f562012-02-03 00:07:04 +00001649
Craig Topperf40110f2014-04-25 05:29:35 +00001650 if (!ExtractedElts[Idx]) {
Mehdi Aminia28d91d2015-03-10 02:37:25 +00001651 Value *Op0ToUse = (DL.isLittleEndian()) ? Op1 : Op0;
1652 Value *Op1ToUse = (DL.isLittleEndian()) ? Op0 : Op1;
Jim Grosbach7815f562012-02-03 00:07:04 +00001653 ExtractedElts[Idx] =
Bill Schmidta1184632014-06-05 19:46:04 +00001654 Builder->CreateExtractElement(Idx < 16 ? Op0ToUse : Op1ToUse,
Benjamin Kramer547b6c52011-09-27 20:39:19 +00001655 Builder->getInt32(Idx&15));
Chris Lattner7a9e47a2010-01-05 07:32:13 +00001656 }
Jim Grosbach7815f562012-02-03 00:07:04 +00001657
Chris Lattner7a9e47a2010-01-05 07:32:13 +00001658 // Insert this value into the result vector.
1659 Result = Builder->CreateInsertElement(Result, ExtractedElts[Idx],
Benjamin Kramer547b6c52011-09-27 20:39:19 +00001660 Builder->getInt32(i));
Chris Lattner7a9e47a2010-01-05 07:32:13 +00001661 }
1662 return CastInst::Create(Instruction::BitCast, Result, CI.getType());
1663 }
1664 }
1665 break;
1666
Bob Wilsona4e231c2010-10-22 21:41:48 +00001667 case Intrinsic::arm_neon_vld1:
1668 case Intrinsic::arm_neon_vld2:
1669 case Intrinsic::arm_neon_vld3:
1670 case Intrinsic::arm_neon_vld4:
1671 case Intrinsic::arm_neon_vld2lane:
1672 case Intrinsic::arm_neon_vld3lane:
1673 case Intrinsic::arm_neon_vld4lane:
1674 case Intrinsic::arm_neon_vst1:
1675 case Intrinsic::arm_neon_vst2:
1676 case Intrinsic::arm_neon_vst3:
1677 case Intrinsic::arm_neon_vst4:
1678 case Intrinsic::arm_neon_vst2lane:
1679 case Intrinsic::arm_neon_vst3lane:
1680 case Intrinsic::arm_neon_vst4lane: {
Mehdi Aminia28d91d2015-03-10 02:37:25 +00001681 unsigned MemAlign = getKnownAlignment(II->getArgOperand(0), DL, II, AC, DT);
Bob Wilsona4e231c2010-10-22 21:41:48 +00001682 unsigned AlignArg = II->getNumArgOperands() - 1;
1683 ConstantInt *IntrAlign = dyn_cast<ConstantInt>(II->getArgOperand(AlignArg));
1684 if (IntrAlign && IntrAlign->getZExtValue() < MemAlign) {
1685 II->setArgOperand(AlignArg,
1686 ConstantInt::get(Type::getInt32Ty(II->getContext()),
1687 MemAlign, false));
1688 return II;
1689 }
1690 break;
1691 }
1692
Lang Hames3a90fab2012-05-01 00:20:38 +00001693 case Intrinsic::arm_neon_vmulls:
Tim Northover00ed9962014-03-29 10:18:08 +00001694 case Intrinsic::arm_neon_vmullu:
Tim Northover3b0846e2014-05-24 12:50:23 +00001695 case Intrinsic::aarch64_neon_smull:
1696 case Intrinsic::aarch64_neon_umull: {
Lang Hames3a90fab2012-05-01 00:20:38 +00001697 Value *Arg0 = II->getArgOperand(0);
1698 Value *Arg1 = II->getArgOperand(1);
1699
1700 // Handle mul by zero first:
1701 if (isa<ConstantAggregateZero>(Arg0) || isa<ConstantAggregateZero>(Arg1)) {
Sanjay Patel4b198802016-02-01 22:23:39 +00001702 return replaceInstUsesWith(CI, ConstantAggregateZero::get(II->getType()));
Lang Hames3a90fab2012-05-01 00:20:38 +00001703 }
1704
1705 // Check for constant LHS & RHS - in this case we just simplify.
Tim Northover00ed9962014-03-29 10:18:08 +00001706 bool Zext = (II->getIntrinsicID() == Intrinsic::arm_neon_vmullu ||
Tim Northover3b0846e2014-05-24 12:50:23 +00001707 II->getIntrinsicID() == Intrinsic::aarch64_neon_umull);
Lang Hames3a90fab2012-05-01 00:20:38 +00001708 VectorType *NewVT = cast<VectorType>(II->getType());
Benjamin Kramer92040952014-02-13 18:23:24 +00001709 if (Constant *CV0 = dyn_cast<Constant>(Arg0)) {
1710 if (Constant *CV1 = dyn_cast<Constant>(Arg1)) {
1711 CV0 = ConstantExpr::getIntegerCast(CV0, NewVT, /*isSigned=*/!Zext);
1712 CV1 = ConstantExpr::getIntegerCast(CV1, NewVT, /*isSigned=*/!Zext);
1713
Sanjay Patel4b198802016-02-01 22:23:39 +00001714 return replaceInstUsesWith(CI, ConstantExpr::getMul(CV0, CV1));
Lang Hames3a90fab2012-05-01 00:20:38 +00001715 }
1716
Alp Tokercb402912014-01-24 17:20:08 +00001717 // Couldn't simplify - canonicalize constant to the RHS.
Lang Hames3a90fab2012-05-01 00:20:38 +00001718 std::swap(Arg0, Arg1);
1719 }
1720
1721 // Handle mul by one:
Benjamin Kramer92040952014-02-13 18:23:24 +00001722 if (Constant *CV1 = dyn_cast<Constant>(Arg1))
Lang Hames3a90fab2012-05-01 00:20:38 +00001723 if (ConstantInt *Splat =
Benjamin Kramer92040952014-02-13 18:23:24 +00001724 dyn_cast_or_null<ConstantInt>(CV1->getSplatValue()))
1725 if (Splat->isOne())
1726 return CastInst::CreateIntegerCast(Arg0, II->getType(),
1727 /*isSigned=*/!Zext);
Lang Hames3a90fab2012-05-01 00:20:38 +00001728
1729 break;
1730 }
1731
Matt Arsenaultbef34e22016-01-22 21:30:34 +00001732 case Intrinsic::amdgcn_rcp: {
Matt Arsenaulta0050b02014-06-19 01:19:19 +00001733 if (const ConstantFP *C = dyn_cast<ConstantFP>(II->getArgOperand(0))) {
1734 const APFloat &ArgVal = C->getValueAPF();
1735 APFloat Val(ArgVal.getSemantics(), 1.0);
1736 APFloat::opStatus Status = Val.divide(ArgVal,
1737 APFloat::rmNearestTiesToEven);
1738 // Only do this if it was exact and therefore not dependent on the
1739 // rounding mode.
1740 if (Status == APFloat::opOK)
Sanjay Patel4b198802016-02-01 22:23:39 +00001741 return replaceInstUsesWith(CI, ConstantFP::get(II->getContext(), Val));
Matt Arsenaulta0050b02014-06-19 01:19:19 +00001742 }
1743
1744 break;
1745 }
Chris Lattner7a9e47a2010-01-05 07:32:13 +00001746 case Intrinsic::stackrestore: {
1747 // If the save is right next to the restore, remove the restore. This can
1748 // happen when variable allocas are DCE'd.
Gabor Greif589a0b92010-06-24 12:58:35 +00001749 if (IntrinsicInst *SS = dyn_cast<IntrinsicInst>(II->getArgOperand(0))) {
Chris Lattner7a9e47a2010-01-05 07:32:13 +00001750 if (SS->getIntrinsicID() == Intrinsic::stacksave) {
Duncan P. N. Exon Smith9f8aaf22015-10-13 16:59:33 +00001751 if (&*++SS->getIterator() == II)
Sanjay Patel4b198802016-02-01 22:23:39 +00001752 return eraseInstFromFunction(CI);
Chris Lattner7a9e47a2010-01-05 07:32:13 +00001753 }
1754 }
Jim Grosbach7815f562012-02-03 00:07:04 +00001755
Chris Lattner7a9e47a2010-01-05 07:32:13 +00001756 // Scan down this block to see if there is another stack restore in the
1757 // same block without an intervening call/alloca.
Duncan P. N. Exon Smith9f8aaf22015-10-13 16:59:33 +00001758 BasicBlock::iterator BI(II);
Chris Lattner7a9e47a2010-01-05 07:32:13 +00001759 TerminatorInst *TI = II->getParent()->getTerminator();
1760 bool CannotRemove = false;
1761 for (++BI; &*BI != TI; ++BI) {
Nuno Lopes55fff832012-06-21 15:45:28 +00001762 if (isa<AllocaInst>(BI)) {
Chris Lattner7a9e47a2010-01-05 07:32:13 +00001763 CannotRemove = true;
1764 break;
1765 }
1766 if (CallInst *BCI = dyn_cast<CallInst>(BI)) {
1767 if (IntrinsicInst *II = dyn_cast<IntrinsicInst>(BCI)) {
1768 // If there is a stackrestore below this one, remove this one.
1769 if (II->getIntrinsicID() == Intrinsic::stackrestore)
Sanjay Patel4b198802016-02-01 22:23:39 +00001770 return eraseInstFromFunction(CI);
Chris Lattner7a9e47a2010-01-05 07:32:13 +00001771 // Otherwise, ignore the intrinsic.
1772 } else {
1773 // If we found a non-intrinsic call, we can't remove the stack
1774 // restore.
1775 CannotRemove = true;
1776 break;
1777 }
1778 }
1779 }
Jim Grosbach7815f562012-02-03 00:07:04 +00001780
Bill Wendlingf891bf82011-07-31 06:30:59 +00001781 // If the stack restore is in a return, resume, or unwind block and if there
1782 // are no allocas or calls between the restore and the return, nuke the
1783 // restore.
Bill Wendlingd5d95b02012-02-06 21:16:41 +00001784 if (!CannotRemove && (isa<ReturnInst>(TI) || isa<ResumeInst>(TI)))
Sanjay Patel4b198802016-02-01 22:23:39 +00001785 return eraseInstFromFunction(CI);
Chris Lattner7a9e47a2010-01-05 07:32:13 +00001786 break;
1787 }
Arnaud A. de Grandmaison849f3bf2015-10-01 14:54:31 +00001788 case Intrinsic::lifetime_start: {
1789 // Remove trivially empty lifetime_start/end ranges, i.e. a start
1790 // immediately followed by an end (ignoring debuginfo or other
1791 // lifetime markers in between).
Duncan P. N. Exon Smith9f8aaf22015-10-13 16:59:33 +00001792 BasicBlock::iterator BI = II->getIterator(), BE = II->getParent()->end();
Arnaud A. de Grandmaison849f3bf2015-10-01 14:54:31 +00001793 for (++BI; BI != BE; ++BI) {
1794 if (IntrinsicInst *LTE = dyn_cast<IntrinsicInst>(BI)) {
1795 if (isa<DbgInfoIntrinsic>(LTE) ||
1796 LTE->getIntrinsicID() == Intrinsic::lifetime_start)
1797 continue;
1798 if (LTE->getIntrinsicID() == Intrinsic::lifetime_end) {
1799 if (II->getOperand(0) == LTE->getOperand(0) &&
1800 II->getOperand(1) == LTE->getOperand(1)) {
Sanjay Patel4b198802016-02-01 22:23:39 +00001801 eraseInstFromFunction(*LTE);
1802 return eraseInstFromFunction(*II);
Arnaud A. de Grandmaison849f3bf2015-10-01 14:54:31 +00001803 }
1804 continue;
1805 }
1806 }
1807 break;
1808 }
1809 break;
1810 }
Hal Finkelf5867a72014-07-25 21:45:17 +00001811 case Intrinsic::assume: {
1812 // Canonicalize assume(a && b) -> assume(a); assume(b);
Hal Finkel74c2f352014-09-07 12:44:26 +00001813 // Note: New assumption intrinsics created here are registered by
1814 // the InstCombineIRInserter object.
Hal Finkelf5867a72014-07-25 21:45:17 +00001815 Value *IIOperand = II->getArgOperand(0), *A, *B,
1816 *AssumeIntrinsic = II->getCalledValue();
1817 if (match(IIOperand, m_And(m_Value(A), m_Value(B)))) {
1818 Builder->CreateCall(AssumeIntrinsic, A, II->getName());
1819 Builder->CreateCall(AssumeIntrinsic, B, II->getName());
Sanjay Patel4b198802016-02-01 22:23:39 +00001820 return eraseInstFromFunction(*II);
Hal Finkelf5867a72014-07-25 21:45:17 +00001821 }
1822 // assume(!(a || b)) -> assume(!a); assume(!b);
1823 if (match(IIOperand, m_Not(m_Or(m_Value(A), m_Value(B))))) {
Hal Finkel74c2f352014-09-07 12:44:26 +00001824 Builder->CreateCall(AssumeIntrinsic, Builder->CreateNot(A),
1825 II->getName());
1826 Builder->CreateCall(AssumeIntrinsic, Builder->CreateNot(B),
1827 II->getName());
Sanjay Patel4b198802016-02-01 22:23:39 +00001828 return eraseInstFromFunction(*II);
Hal Finkelf5867a72014-07-25 21:45:17 +00001829 }
Hal Finkel04a15612014-10-04 21:27:06 +00001830
Philip Reames66c6de62014-11-11 23:33:19 +00001831 // assume( (load addr) != null ) -> add 'nonnull' metadata to load
1832 // (if assume is valid at the load)
1833 if (ICmpInst* ICmp = dyn_cast<ICmpInst>(IIOperand)) {
1834 Value *LHS = ICmp->getOperand(0);
1835 Value *RHS = ICmp->getOperand(1);
1836 if (ICmpInst::ICMP_NE == ICmp->getPredicate() &&
1837 isa<LoadInst>(LHS) &&
1838 isa<Constant>(RHS) &&
1839 RHS->getType()->isPointerTy() &&
1840 cast<Constant>(RHS)->isNullValue()) {
1841 LoadInst* LI = cast<LoadInst>(LHS);
Mehdi Aminia28d91d2015-03-10 02:37:25 +00001842 if (isValidAssumeForContext(II, LI, DT)) {
Duncan P. N. Exon Smith5bf8fef2014-12-09 18:38:53 +00001843 MDNode *MD = MDNode::get(II->getContext(), None);
Philip Reames66c6de62014-11-11 23:33:19 +00001844 LI->setMetadata(LLVMContext::MD_nonnull, MD);
Sanjay Patel4b198802016-02-01 22:23:39 +00001845 return eraseInstFromFunction(*II);
Philip Reames66c6de62014-11-11 23:33:19 +00001846 }
1847 }
Chandler Carruth24969102015-02-10 08:07:32 +00001848 // TODO: apply nonnull return attributes to calls and invokes
Philip Reames66c6de62014-11-11 23:33:19 +00001849 // TODO: apply range metadata for range check patterns?
1850 }
Hal Finkel04a15612014-10-04 21:27:06 +00001851 // If there is a dominating assume with the same condition as this one,
1852 // then this one is redundant, and should be removed.
Hal Finkel45646882014-10-05 00:53:02 +00001853 APInt KnownZero(1, 0), KnownOne(1, 0);
1854 computeKnownBits(IIOperand, KnownZero, KnownOne, 0, II);
1855 if (KnownOne.isAllOnesValue())
Sanjay Patel4b198802016-02-01 22:23:39 +00001856 return eraseInstFromFunction(*II);
Hal Finkel04a15612014-10-04 21:27:06 +00001857
Hal Finkelf5867a72014-07-25 21:45:17 +00001858 break;
1859 }
Philip Reames9db26ff2014-12-29 23:27:30 +00001860 case Intrinsic::experimental_gc_relocate: {
1861 // Translate facts known about a pointer before relocating into
1862 // facts about the relocate value, while being careful to
1863 // preserve relocation semantics.
Manuel Jacob83eefa62016-01-05 04:03:00 +00001864 Value *DerivedPtr = cast<GCRelocateInst>(II)->getDerivedPtr();
Philip Reames9db26ff2014-12-29 23:27:30 +00001865
1866 // Remove the relocation if unused, note that this check is required
1867 // to prevent the cases below from looping forever.
1868 if (II->use_empty())
Sanjay Patel4b198802016-02-01 22:23:39 +00001869 return eraseInstFromFunction(*II);
Philip Reames9db26ff2014-12-29 23:27:30 +00001870
1871 // Undef is undef, even after relocation.
1872 // TODO: provide a hook for this in GCStrategy. This is clearly legal for
1873 // most practical collectors, but there was discussion in the review thread
1874 // about whether it was legal for all possible collectors.
Philip Reamesea4d8e82016-02-09 21:09:22 +00001875 if (isa<UndefValue>(DerivedPtr))
1876 // Use undef of gc_relocate's type to replace it.
1877 return replaceInstUsesWith(*II, UndefValue::get(II->getType()));
Philip Reames9db26ff2014-12-29 23:27:30 +00001878
Philip Reamesea4d8e82016-02-09 21:09:22 +00001879 if (auto *PT = dyn_cast<PointerType>(II->getType())) {
1880 // The relocation of null will be null for most any collector.
1881 // TODO: provide a hook for this in GCStrategy. There might be some
1882 // weird collector this property does not hold for.
1883 if (isa<ConstantPointerNull>(DerivedPtr))
1884 // Use null-pointer of gc_relocate's type to replace it.
1885 return replaceInstUsesWith(*II, ConstantPointerNull::get(PT));
1886
1887 // isKnownNonNull -> nonnull attribute
1888 if (isKnownNonNullAt(DerivedPtr, II, DT, TLI))
1889 II->addAttribute(AttributeSet::ReturnIndex, Attribute::NonNull);
Ramkumar Ramachandra8fcb4982015-02-14 19:37:54 +00001890 }
Philip Reames9db26ff2014-12-29 23:27:30 +00001891
1892 // TODO: bitcast(relocate(p)) -> relocate(bitcast(p))
1893 // Canonicalize on the type from the uses to the defs
Ramkumar Ramachandra8fcb4982015-02-14 19:37:54 +00001894
Philip Reames9db26ff2014-12-29 23:27:30 +00001895 // TODO: relocate((gep p, C, C2, ...)) -> gep(relocate(p), C, C2, ...)
Philip Reamesea4d8e82016-02-09 21:09:22 +00001896 break;
Philip Reames9db26ff2014-12-29 23:27:30 +00001897 }
Chris Lattner7a9e47a2010-01-05 07:32:13 +00001898 }
1899
1900 return visitCallSite(II);
1901}
1902
1903// InvokeInst simplification
1904//
1905Instruction *InstCombiner::visitInvokeInst(InvokeInst &II) {
1906 return visitCallSite(&II);
1907}
1908
Sanjay Patelcd4377c2016-01-20 22:24:38 +00001909/// If this cast does not affect the value passed through the varargs area, we
1910/// can eliminate the use of the cast.
Chris Lattner7a9e47a2010-01-05 07:32:13 +00001911static bool isSafeToEliminateVarargsCast(const CallSite CS,
Mehdi Aminia28d91d2015-03-10 02:37:25 +00001912 const DataLayout &DL,
1913 const CastInst *const CI,
Chris Lattner7a9e47a2010-01-05 07:32:13 +00001914 const int ix) {
1915 if (!CI->isLosslessCast())
1916 return false;
1917
Philip Reames1a1bdb22014-12-02 18:50:36 +00001918 // If this is a GC intrinsic, avoid munging types. We need types for
1919 // statepoint reconstruction in SelectionDAG.
1920 // TODO: This is probably something which should be expanded to all
1921 // intrinsics since the entire point of intrinsics is that
1922 // they are understandable by the optimizer.
1923 if (isStatepoint(CS) || isGCRelocate(CS) || isGCResult(CS))
1924 return false;
1925
Reid Kleckner26af2ca2014-01-28 02:38:36 +00001926 // The size of ByVal or InAlloca arguments is derived from the type, so we
Chris Lattner7a9e47a2010-01-05 07:32:13 +00001927 // can't change to a type with a different size. If the size were
1928 // passed explicitly we could avoid this check.
Reid Kleckner26af2ca2014-01-28 02:38:36 +00001929 if (!CS.isByValOrInAllocaArgument(ix))
Chris Lattner7a9e47a2010-01-05 07:32:13 +00001930 return true;
1931
Jim Grosbach7815f562012-02-03 00:07:04 +00001932 Type* SrcTy =
Chris Lattner7a9e47a2010-01-05 07:32:13 +00001933 cast<PointerType>(CI->getOperand(0)->getType())->getElementType();
Chris Lattner229907c2011-07-18 04:54:35 +00001934 Type* DstTy = cast<PointerType>(CI->getType())->getElementType();
Chris Lattner7a9e47a2010-01-05 07:32:13 +00001935 if (!SrcTy->isSized() || !DstTy->isSized())
1936 return false;
Mehdi Aminia28d91d2015-03-10 02:37:25 +00001937 if (DL.getTypeAllocSize(SrcTy) != DL.getTypeAllocSize(DstTy))
Chris Lattner7a9e47a2010-01-05 07:32:13 +00001938 return false;
1939 return true;
1940}
1941
Mehdi Aminia28d91d2015-03-10 02:37:25 +00001942Instruction *InstCombiner::tryOptimizeCall(CallInst *CI) {
Craig Topperf40110f2014-04-25 05:29:35 +00001943 if (!CI->getCalledFunction()) return nullptr;
Eric Christophera7fb58f2010-03-06 10:50:38 +00001944
Chandler Carruthba4c5172015-01-21 11:23:40 +00001945 auto InstCombineRAUW = [this](Instruction *From, Value *With) {
Sanjay Patel4b198802016-02-01 22:23:39 +00001946 replaceInstUsesWith(*From, With);
Chandler Carruthba4c5172015-01-21 11:23:40 +00001947 };
1948 LibCallSimplifier Simplifier(DL, TLI, InstCombineRAUW);
1949 if (Value *With = Simplifier.optimizeCall(CI)) {
Meador Ingee3f2b262012-11-30 04:05:06 +00001950 ++NumSimplified;
Sanjay Patel4b198802016-02-01 22:23:39 +00001951 return CI->use_empty() ? CI : replaceInstUsesWith(*CI, With);
Meador Ingee3f2b262012-11-30 04:05:06 +00001952 }
Meador Ingedf796f82012-10-13 16:45:24 +00001953
Craig Topperf40110f2014-04-25 05:29:35 +00001954 return nullptr;
Eric Christophera7fb58f2010-03-06 10:50:38 +00001955}
1956
Sanjay Patel6038d3e2016-01-29 23:27:03 +00001957static IntrinsicInst *findInitTrampolineFromAlloca(Value *TrampMem) {
Duncan Sandsa0984362011-09-06 13:37:06 +00001958 // Strip off at most one level of pointer casts, looking for an alloca. This
1959 // is good enough in practice and simpler than handling any number of casts.
1960 Value *Underlying = TrampMem->stripPointerCasts();
1961 if (Underlying != TrampMem &&
Chandler Carruthcdf47882014-03-09 03:16:01 +00001962 (!Underlying->hasOneUse() || Underlying->user_back() != TrampMem))
Craig Topperf40110f2014-04-25 05:29:35 +00001963 return nullptr;
Duncan Sandsa0984362011-09-06 13:37:06 +00001964 if (!isa<AllocaInst>(Underlying))
Craig Topperf40110f2014-04-25 05:29:35 +00001965 return nullptr;
Duncan Sandsa0984362011-09-06 13:37:06 +00001966
Craig Topperf40110f2014-04-25 05:29:35 +00001967 IntrinsicInst *InitTrampoline = nullptr;
Chandler Carruthcdf47882014-03-09 03:16:01 +00001968 for (User *U : TrampMem->users()) {
1969 IntrinsicInst *II = dyn_cast<IntrinsicInst>(U);
Duncan Sandsa0984362011-09-06 13:37:06 +00001970 if (!II)
Craig Topperf40110f2014-04-25 05:29:35 +00001971 return nullptr;
Duncan Sandsa0984362011-09-06 13:37:06 +00001972 if (II->getIntrinsicID() == Intrinsic::init_trampoline) {
1973 if (InitTrampoline)
1974 // More than one init_trampoline writes to this value. Give up.
Craig Topperf40110f2014-04-25 05:29:35 +00001975 return nullptr;
Duncan Sandsa0984362011-09-06 13:37:06 +00001976 InitTrampoline = II;
1977 continue;
1978 }
1979 if (II->getIntrinsicID() == Intrinsic::adjust_trampoline)
1980 // Allow any number of calls to adjust.trampoline.
1981 continue;
Craig Topperf40110f2014-04-25 05:29:35 +00001982 return nullptr;
Duncan Sandsa0984362011-09-06 13:37:06 +00001983 }
1984
1985 // No call to init.trampoline found.
1986 if (!InitTrampoline)
Craig Topperf40110f2014-04-25 05:29:35 +00001987 return nullptr;
Duncan Sandsa0984362011-09-06 13:37:06 +00001988
1989 // Check that the alloca is being used in the expected way.
1990 if (InitTrampoline->getOperand(0) != TrampMem)
Craig Topperf40110f2014-04-25 05:29:35 +00001991 return nullptr;
Duncan Sandsa0984362011-09-06 13:37:06 +00001992
1993 return InitTrampoline;
1994}
1995
Sanjay Patel6038d3e2016-01-29 23:27:03 +00001996static IntrinsicInst *findInitTrampolineFromBB(IntrinsicInst *AdjustTramp,
Duncan Sandsa0984362011-09-06 13:37:06 +00001997 Value *TrampMem) {
1998 // Visit all the previous instructions in the basic block, and try to find a
1999 // init.trampoline which has a direct path to the adjust.trampoline.
Duncan P. N. Exon Smith9f8aaf22015-10-13 16:59:33 +00002000 for (BasicBlock::iterator I = AdjustTramp->getIterator(),
2001 E = AdjustTramp->getParent()->begin();
2002 I != E;) {
2003 Instruction *Inst = &*--I;
Duncan Sandsa0984362011-09-06 13:37:06 +00002004 if (IntrinsicInst *II = dyn_cast<IntrinsicInst>(I))
2005 if (II->getIntrinsicID() == Intrinsic::init_trampoline &&
2006 II->getOperand(0) == TrampMem)
2007 return II;
2008 if (Inst->mayWriteToMemory())
Craig Topperf40110f2014-04-25 05:29:35 +00002009 return nullptr;
Duncan Sandsa0984362011-09-06 13:37:06 +00002010 }
Craig Topperf40110f2014-04-25 05:29:35 +00002011 return nullptr;
Duncan Sandsa0984362011-09-06 13:37:06 +00002012}
2013
2014// Given a call to llvm.adjust.trampoline, find and return the corresponding
2015// call to llvm.init.trampoline if the call to the trampoline can be optimized
2016// to a direct call to a function. Otherwise return NULL.
2017//
Sanjay Patel6038d3e2016-01-29 23:27:03 +00002018static IntrinsicInst *findInitTrampoline(Value *Callee) {
Duncan Sandsa0984362011-09-06 13:37:06 +00002019 Callee = Callee->stripPointerCasts();
2020 IntrinsicInst *AdjustTramp = dyn_cast<IntrinsicInst>(Callee);
2021 if (!AdjustTramp ||
2022 AdjustTramp->getIntrinsicID() != Intrinsic::adjust_trampoline)
Craig Topperf40110f2014-04-25 05:29:35 +00002023 return nullptr;
Duncan Sandsa0984362011-09-06 13:37:06 +00002024
2025 Value *TrampMem = AdjustTramp->getOperand(0);
2026
Sanjay Patel6038d3e2016-01-29 23:27:03 +00002027 if (IntrinsicInst *IT = findInitTrampolineFromAlloca(TrampMem))
Duncan Sandsa0984362011-09-06 13:37:06 +00002028 return IT;
Sanjay Patel6038d3e2016-01-29 23:27:03 +00002029 if (IntrinsicInst *IT = findInitTrampolineFromBB(AdjustTramp, TrampMem))
Duncan Sandsa0984362011-09-06 13:37:06 +00002030 return IT;
Craig Topperf40110f2014-04-25 05:29:35 +00002031 return nullptr;
Duncan Sandsa0984362011-09-06 13:37:06 +00002032}
2033
Sanjay Patelcd4377c2016-01-20 22:24:38 +00002034/// Improvements for call and invoke instructions.
Chris Lattner7a9e47a2010-01-05 07:32:13 +00002035Instruction *InstCombiner::visitCallSite(CallSite CS) {
Philip Reamesc25df112015-06-16 20:24:25 +00002036
Benjamin Kramer8bcc9712012-08-29 15:32:21 +00002037 if (isAllocLikeFn(CS.getInstruction(), TLI))
Nuno Lopes95cc4f32012-07-09 18:38:20 +00002038 return visitAllocSite(*CS.getInstruction());
Nuno Lopesdc6085e2012-06-21 21:25:05 +00002039
Chris Lattner7a9e47a2010-01-05 07:32:13 +00002040 bool Changed = false;
2041
Philip Reamesc25df112015-06-16 20:24:25 +00002042 // Mark any parameters that are known to be non-null with the nonnull
2043 // attribute. This is helpful for inlining calls to functions with null
2044 // checks on their arguments.
Akira Hatanaka237916b2015-12-02 06:58:49 +00002045 SmallVector<unsigned, 4> Indices;
Philip Reamesc25df112015-06-16 20:24:25 +00002046 unsigned ArgNo = 0;
Akira Hatanaka237916b2015-12-02 06:58:49 +00002047
Philip Reamesc25df112015-06-16 20:24:25 +00002048 for (Value *V : CS.args()) {
Sanjay Patelf9f5d3c2016-01-29 23:14:58 +00002049 if (V->getType()->isPointerTy() &&
2050 !CS.paramHasAttr(ArgNo + 1, Attribute::NonNull) &&
Akira Hatanaka237916b2015-12-02 06:58:49 +00002051 isKnownNonNullAt(V, CS.getInstruction(), DT, TLI))
2052 Indices.push_back(ArgNo + 1);
Philip Reamesc25df112015-06-16 20:24:25 +00002053 ArgNo++;
2054 }
Akira Hatanaka237916b2015-12-02 06:58:49 +00002055
Philip Reamesc25df112015-06-16 20:24:25 +00002056 assert(ArgNo == CS.arg_size() && "sanity check");
2057
Akira Hatanaka237916b2015-12-02 06:58:49 +00002058 if (!Indices.empty()) {
2059 AttributeSet AS = CS.getAttributes();
2060 LLVMContext &Ctx = CS.getInstruction()->getContext();
2061 AS = AS.addAttribute(Ctx, Indices,
2062 Attribute::get(Ctx, Attribute::NonNull));
2063 CS.setAttributes(AS);
2064 Changed = true;
2065 }
2066
Chris Lattner73989652010-12-20 08:25:06 +00002067 // If the callee is a pointer to a function, attempt to move any casts to the
2068 // arguments of the call/invoke.
Chris Lattner7a9e47a2010-01-05 07:32:13 +00002069 Value *Callee = CS.getCalledValue();
Chris Lattner73989652010-12-20 08:25:06 +00002070 if (!isa<Function>(Callee) && transformConstExprCastCall(CS))
Craig Topperf40110f2014-04-25 05:29:35 +00002071 return nullptr;
Chris Lattner7a9e47a2010-01-05 07:32:13 +00002072
Justin Lebar7bf91872016-02-22 17:51:35 +00002073 if (Function *CalleeF = dyn_cast<Function>(Callee)) {
2074 // Remove the convergent attr on calls when the callee is not convergent.
2075 if (CS.isConvergent() && !CalleeF->isConvergent()) {
2076 DEBUG(dbgs() << "Removing convergent attr from instr "
2077 << CS.getInstruction() << "\n");
2078 CS.setNotConvergent();
2079 return CS.getInstruction();
2080 }
2081
Chris Lattner846a52e2010-02-01 18:11:34 +00002082 // If the call and callee calling conventions don't match, this call must
2083 // be unreachable, as the call is undefined.
2084 if (CalleeF->getCallingConv() != CS.getCallingConv() &&
2085 // Only do this for calls to a function with a body. A prototype may
2086 // not actually end up matching the implementation's calling conv for a
2087 // variety of reasons (e.g. it may be written in assembly).
2088 !CalleeF->isDeclaration()) {
Chris Lattner7a9e47a2010-01-05 07:32:13 +00002089 Instruction *OldCall = CS.getInstruction();
Chris Lattner7a9e47a2010-01-05 07:32:13 +00002090 new StoreInst(ConstantInt::getTrue(Callee->getContext()),
Jim Grosbach7815f562012-02-03 00:07:04 +00002091 UndefValue::get(Type::getInt1PtrTy(Callee->getContext())),
Chris Lattner7a9e47a2010-01-05 07:32:13 +00002092 OldCall);
Chad Rosiere28ae302012-12-13 00:18:46 +00002093 // If OldCall does not return void then replaceAllUsesWith undef.
Chris Lattner7a9e47a2010-01-05 07:32:13 +00002094 // This allows ValueHandlers and custom metadata to adjust itself.
2095 if (!OldCall->getType()->isVoidTy())
Sanjay Patel4b198802016-02-01 22:23:39 +00002096 replaceInstUsesWith(*OldCall, UndefValue::get(OldCall->getType()));
Chris Lattner2cecedf2010-02-01 18:04:58 +00002097 if (isa<CallInst>(OldCall))
Sanjay Patel4b198802016-02-01 22:23:39 +00002098 return eraseInstFromFunction(*OldCall);
Jim Grosbach7815f562012-02-03 00:07:04 +00002099
Chris Lattner2cecedf2010-02-01 18:04:58 +00002100 // We cannot remove an invoke, because it would change the CFG, just
2101 // change the callee to a null pointer.
Gabor Greiffebf6ab2010-03-20 21:00:25 +00002102 cast<InvokeInst>(OldCall)->setCalledFunction(
Chris Lattner2cecedf2010-02-01 18:04:58 +00002103 Constant::getNullValue(CalleeF->getType()));
Craig Topperf40110f2014-04-25 05:29:35 +00002104 return nullptr;
Chris Lattner7a9e47a2010-01-05 07:32:13 +00002105 }
Justin Lebar7bf91872016-02-22 17:51:35 +00002106 }
Chris Lattner7a9e47a2010-01-05 07:32:13 +00002107
2108 if (isa<ConstantPointerNull>(Callee) || isa<UndefValue>(Callee)) {
Gabor Greif589a0b92010-06-24 12:58:35 +00002109 // If CS does not return void then replaceAllUsesWith undef.
Chris Lattner7a9e47a2010-01-05 07:32:13 +00002110 // This allows ValueHandlers and custom metadata to adjust itself.
2111 if (!CS.getInstruction()->getType()->isVoidTy())
Sanjay Patel4b198802016-02-01 22:23:39 +00002112 replaceInstUsesWith(*CS.getInstruction(),
Eli Friedmanb9ed18f2011-05-18 00:32:01 +00002113 UndefValue::get(CS.getInstruction()->getType()));
Chris Lattner7a9e47a2010-01-05 07:32:13 +00002114
Nuno Lopes771e7bd2012-06-21 23:52:14 +00002115 if (isa<InvokeInst>(CS.getInstruction())) {
2116 // Can't remove an invoke because we cannot change the CFG.
Craig Topperf40110f2014-04-25 05:29:35 +00002117 return nullptr;
Chris Lattner7a9e47a2010-01-05 07:32:13 +00002118 }
Nuno Lopes771e7bd2012-06-21 23:52:14 +00002119
2120 // This instruction is not reachable, just remove it. We insert a store to
2121 // undef so that we know that this code is not reachable, despite the fact
2122 // that we can't modify the CFG here.
2123 new StoreInst(ConstantInt::getTrue(Callee->getContext()),
2124 UndefValue::get(Type::getInt1PtrTy(Callee->getContext())),
2125 CS.getInstruction());
2126
Sanjay Patel4b198802016-02-01 22:23:39 +00002127 return eraseInstFromFunction(*CS.getInstruction());
Chris Lattner7a9e47a2010-01-05 07:32:13 +00002128 }
2129
Sanjay Patel6038d3e2016-01-29 23:27:03 +00002130 if (IntrinsicInst *II = findInitTrampoline(Callee))
Duncan Sandsa0984362011-09-06 13:37:06 +00002131 return transformCallThroughTrampoline(CS, II);
Chris Lattner7a9e47a2010-01-05 07:32:13 +00002132
Chris Lattner229907c2011-07-18 04:54:35 +00002133 PointerType *PTy = cast<PointerType>(Callee->getType());
2134 FunctionType *FTy = cast<FunctionType>(PTy->getElementType());
Chris Lattner7a9e47a2010-01-05 07:32:13 +00002135 if (FTy->isVarArg()) {
Eli Friedman7534b4682011-11-29 01:18:23 +00002136 int ix = FTy->getNumParams();
Chris Lattner7a9e47a2010-01-05 07:32:13 +00002137 // See if we can optimize any arguments passed through the varargs area of
2138 // the call.
Matt Arsenault5d2e85f2013-06-28 00:25:40 +00002139 for (CallSite::arg_iterator I = CS.arg_begin() + FTy->getNumParams(),
Chris Lattner7a9e47a2010-01-05 07:32:13 +00002140 E = CS.arg_end(); I != E; ++I, ++ix) {
2141 CastInst *CI = dyn_cast<CastInst>(*I);
Mehdi Aminia28d91d2015-03-10 02:37:25 +00002142 if (CI && isSafeToEliminateVarargsCast(CS, DL, CI, ix)) {
Chris Lattner7a9e47a2010-01-05 07:32:13 +00002143 *I = CI->getOperand(0);
2144 Changed = true;
2145 }
2146 }
2147 }
2148
2149 if (isa<InlineAsm>(Callee) && !CS.doesNotThrow()) {
2150 // Inline asm calls cannot throw - mark them 'nounwind'.
2151 CS.setDoesNotThrow();
2152 Changed = true;
2153 }
2154
Micah Villmowcdfe20b2012-10-08 16:38:25 +00002155 // Try to optimize the call if possible, we require DataLayout for most of
Eric Christophera7fb58f2010-03-06 10:50:38 +00002156 // this. None of these calls are seen as possibly dead so go ahead and
2157 // delete the instruction now.
2158 if (CallInst *CI = dyn_cast<CallInst>(CS.getInstruction())) {
Mehdi Aminia28d91d2015-03-10 02:37:25 +00002159 Instruction *I = tryOptimizeCall(CI);
Eric Christopher1810d772010-03-06 10:59:25 +00002160 // If we changed something return the result, etc. Otherwise let
2161 // the fallthrough check.
Sanjay Patel4b198802016-02-01 22:23:39 +00002162 if (I) return eraseInstFromFunction(*I);
Eric Christophera7fb58f2010-03-06 10:50:38 +00002163 }
2164
Craig Topperf40110f2014-04-25 05:29:35 +00002165 return Changed ? CS.getInstruction() : nullptr;
Chris Lattner7a9e47a2010-01-05 07:32:13 +00002166}
2167
Sanjay Patelcd4377c2016-01-20 22:24:38 +00002168/// If the callee is a constexpr cast of a function, attempt to move the cast to
2169/// the arguments of the call/invoke.
Chris Lattner7a9e47a2010-01-05 07:32:13 +00002170bool InstCombiner::transformConstExprCastCall(CallSite CS) {
Chris Lattner73989652010-12-20 08:25:06 +00002171 Function *Callee =
2172 dyn_cast<Function>(CS.getCalledValue()->stripPointerCasts());
Craig Topperf40110f2014-04-25 05:29:35 +00002173 if (!Callee)
Chris Lattner7a9e47a2010-01-05 07:32:13 +00002174 return false;
David Majnemer4c0a6e92015-01-21 22:32:04 +00002175 // The prototype of thunks are a lie, don't try to directly call such
2176 // functions.
2177 if (Callee->hasFnAttribute("thunk"))
2178 return false;
Chris Lattner7a9e47a2010-01-05 07:32:13 +00002179 Instruction *Caller = CS.getInstruction();
Bill Wendlinge94d8432012-12-07 23:16:57 +00002180 const AttributeSet &CallerPAL = CS.getAttributes();
Chris Lattner7a9e47a2010-01-05 07:32:13 +00002181
2182 // Okay, this is a cast from a function to a different type. Unless doing so
2183 // would cause a type conversion of one of our arguments, change this call to
2184 // be a direct call with arguments casted to the appropriate types.
2185 //
Chris Lattner229907c2011-07-18 04:54:35 +00002186 FunctionType *FT = Callee->getFunctionType();
2187 Type *OldRetTy = Caller->getType();
2188 Type *NewRetTy = FT->getReturnType();
Chris Lattner7a9e47a2010-01-05 07:32:13 +00002189
Chris Lattner7a9e47a2010-01-05 07:32:13 +00002190 // Check to see if we are changing the return type...
2191 if (OldRetTy != NewRetTy) {
Nick Lewyckya6a17d72014-01-18 22:47:12 +00002192
2193 if (NewRetTy->isStructTy())
2194 return false; // TODO: Handle multiple return values.
2195
David Majnemer9b6b8222015-01-06 08:41:31 +00002196 if (!CastInst::isBitOrNoopPointerCastable(NewRetTy, OldRetTy, DL)) {
Matt Arsenaulte6952f22013-09-17 21:10:14 +00002197 if (Callee->isDeclaration())
2198 return false; // Cannot transform this return value.
Chris Lattner7a9e47a2010-01-05 07:32:13 +00002199
Matt Arsenaulte6952f22013-09-17 21:10:14 +00002200 if (!Caller->use_empty() &&
2201 // void -> non-void is handled specially
2202 !NewRetTy->isVoidTy())
Frederic Rissc1892e22014-10-23 04:08:42 +00002203 return false; // Cannot transform this return value.
Matt Arsenaulte6952f22013-09-17 21:10:14 +00002204 }
Chris Lattner7a9e47a2010-01-05 07:32:13 +00002205
2206 if (!CallerPAL.isEmpty() && !Caller->use_empty()) {
Bill Wendling658d24d2013-01-18 21:53:16 +00002207 AttrBuilder RAttrs(CallerPAL, AttributeSet::ReturnIndex);
Pete Cooper2777d8872015-05-06 23:19:56 +00002208 if (RAttrs.overlaps(AttributeFuncs::typeIncompatible(NewRetTy)))
Chris Lattner7a9e47a2010-01-05 07:32:13 +00002209 return false; // Attribute not compatible with transformed value.
2210 }
2211
2212 // If the callsite is an invoke instruction, and the return value is used by
2213 // a PHI node in a successor, we cannot change the return type of the call
2214 // because there is no place to put the cast instruction (without breaking
2215 // the critical edge). Bail out in this case.
2216 if (!Caller->use_empty())
2217 if (InvokeInst *II = dyn_cast<InvokeInst>(Caller))
Chandler Carruthcdf47882014-03-09 03:16:01 +00002218 for (User *U : II->users())
2219 if (PHINode *PN = dyn_cast<PHINode>(U))
Chris Lattner7a9e47a2010-01-05 07:32:13 +00002220 if (PN->getParent() == II->getNormalDest() ||
2221 PN->getParent() == II->getUnwindDest())
2222 return false;
2223 }
2224
Matt Arsenault5d2e85f2013-06-28 00:25:40 +00002225 unsigned NumActualArgs = CS.arg_size();
Chris Lattner7a9e47a2010-01-05 07:32:13 +00002226 unsigned NumCommonArgs = std::min(FT->getNumParams(), NumActualArgs);
2227
David Majnemer9b6b8222015-01-06 08:41:31 +00002228 // Prevent us turning:
2229 // declare void @takes_i32_inalloca(i32* inalloca)
2230 // call void bitcast (void (i32*)* @takes_i32_inalloca to void (i32)*)(i32 0)
2231 //
2232 // into:
2233 // call void @takes_i32_inalloca(i32* null)
David Majnemerd61a6fd2015-03-11 18:03:05 +00002234 //
2235 // Similarly, avoid folding away bitcasts of byval calls.
2236 if (Callee->getAttributes().hasAttrSomewhere(Attribute::InAlloca) ||
2237 Callee->getAttributes().hasAttrSomewhere(Attribute::ByVal))
David Majnemer9b6b8222015-01-06 08:41:31 +00002238 return false;
2239
Chris Lattner7a9e47a2010-01-05 07:32:13 +00002240 CallSite::arg_iterator AI = CS.arg_begin();
2241 for (unsigned i = 0, e = NumCommonArgs; i != e; ++i, ++AI) {
Chris Lattner229907c2011-07-18 04:54:35 +00002242 Type *ParamTy = FT->getParamType(i);
2243 Type *ActTy = (*AI)->getType();
Chris Lattner7a9e47a2010-01-05 07:32:13 +00002244
David Majnemer9b6b8222015-01-06 08:41:31 +00002245 if (!CastInst::isBitOrNoopPointerCastable(ActTy, ParamTy, DL))
Chris Lattner7a9e47a2010-01-05 07:32:13 +00002246 return false; // Cannot transform this parameter value.
2247
Bill Wendling49bc76c2013-01-23 06:14:59 +00002248 if (AttrBuilder(CallerPAL.getParamAttributes(i + 1), i + 1).
Pete Cooper2777d8872015-05-06 23:19:56 +00002249 overlaps(AttributeFuncs::typeIncompatible(ParamTy)))
Chris Lattner7a9e47a2010-01-05 07:32:13 +00002250 return false; // Attribute not compatible with transformed value.
Jim Grosbach7815f562012-02-03 00:07:04 +00002251
Reid Kleckner26af2ca2014-01-28 02:38:36 +00002252 if (CS.isInAllocaArgument(i))
2253 return false; // Cannot transform to and from inalloca.
2254
Chris Lattner27ca8eb2010-12-20 08:36:38 +00002255 // If the parameter is passed as a byval argument, then we have to have a
2256 // sized type and the sized type has to have the same size as the old type.
Bill Wendling49bc76c2013-01-23 06:14:59 +00002257 if (ParamTy != ActTy &&
2258 CallerPAL.getParamAttributes(i + 1).hasAttribute(i + 1,
2259 Attribute::ByVal)) {
Chris Lattner229907c2011-07-18 04:54:35 +00002260 PointerType *ParamPTy = dyn_cast<PointerType>(ParamTy);
Mehdi Aminia28d91d2015-03-10 02:37:25 +00002261 if (!ParamPTy || !ParamPTy->getElementType()->isSized())
Chris Lattner27ca8eb2010-12-20 08:36:38 +00002262 return false;
Jim Grosbach7815f562012-02-03 00:07:04 +00002263
Matt Arsenaultfa252722013-09-27 22:18:51 +00002264 Type *CurElTy = ActTy->getPointerElementType();
Mehdi Aminia28d91d2015-03-10 02:37:25 +00002265 if (DL.getTypeAllocSize(CurElTy) !=
2266 DL.getTypeAllocSize(ParamPTy->getElementType()))
Chris Lattner27ca8eb2010-12-20 08:36:38 +00002267 return false;
2268 }
Chris Lattner7a9e47a2010-01-05 07:32:13 +00002269 }
2270
Chris Lattneradf38b32011-02-24 05:10:56 +00002271 if (Callee->isDeclaration()) {
2272 // Do not delete arguments unless we have a function body.
2273 if (FT->getNumParams() < NumActualArgs && !FT->isVarArg())
2274 return false;
Chris Lattner7a9e47a2010-01-05 07:32:13 +00002275
Chris Lattneradf38b32011-02-24 05:10:56 +00002276 // If the callee is just a declaration, don't change the varargsness of the
2277 // call. We don't want to introduce a varargs call where one doesn't
2278 // already exist.
Chris Lattner229907c2011-07-18 04:54:35 +00002279 PointerType *APTy = cast<PointerType>(CS.getCalledValue()->getType());
Chris Lattneradf38b32011-02-24 05:10:56 +00002280 if (FT->isVarArg()!=cast<FunctionType>(APTy->getElementType())->isVarArg())
2281 return false;
Jim Grosbache84ae7b2012-02-03 00:00:55 +00002282
2283 // If both the callee and the cast type are varargs, we still have to make
2284 // sure the number of fixed parameters are the same or we have the same
2285 // ABI issues as if we introduce a varargs call.
Jim Grosbach1df8cdc2012-02-03 00:26:07 +00002286 if (FT->isVarArg() &&
2287 cast<FunctionType>(APTy->getElementType())->isVarArg() &&
2288 FT->getNumParams() !=
Jim Grosbache84ae7b2012-02-03 00:00:55 +00002289 cast<FunctionType>(APTy->getElementType())->getNumParams())
2290 return false;
Chris Lattneradf38b32011-02-24 05:10:56 +00002291 }
Jim Grosbach7815f562012-02-03 00:07:04 +00002292
Jim Grosbach0ab54182012-02-03 00:00:50 +00002293 if (FT->getNumParams() < NumActualArgs && FT->isVarArg() &&
2294 !CallerPAL.isEmpty())
2295 // In this case we have more arguments than the new function type, but we
2296 // won't be dropping them. Check that these extra arguments have attributes
2297 // that are compatible with being a vararg call argument.
2298 for (unsigned i = CallerPAL.getNumSlots(); i; --i) {
Bill Wendling57625a42013-01-25 23:09:36 +00002299 unsigned Index = CallerPAL.getSlotIndex(i - 1);
2300 if (Index <= FT->getNumParams())
Jim Grosbach0ab54182012-02-03 00:00:50 +00002301 break;
Bill Wendling57625a42013-01-25 23:09:36 +00002302
Bill Wendlingd97b75d2012-12-19 08:57:40 +00002303 // Check if it has an attribute that's incompatible with varargs.
Bill Wendling57625a42013-01-25 23:09:36 +00002304 AttributeSet PAttrs = CallerPAL.getSlotAttributes(i - 1);
2305 if (PAttrs.hasAttribute(Index, Attribute::StructRet))
Jim Grosbach0ab54182012-02-03 00:00:50 +00002306 return false;
2307 }
Chris Lattner7a9e47a2010-01-05 07:32:13 +00002308
Jim Grosbach7815f562012-02-03 00:07:04 +00002309
Chris Lattner7a9e47a2010-01-05 07:32:13 +00002310 // Okay, we decided that this is a safe thing to do: go ahead and start
Chris Lattneradf38b32011-02-24 05:10:56 +00002311 // inserting cast instructions as necessary.
Chris Lattner7a9e47a2010-01-05 07:32:13 +00002312 std::vector<Value*> Args;
2313 Args.reserve(NumActualArgs);
Bill Wendling3575c8c2013-01-27 02:08:22 +00002314 SmallVector<AttributeSet, 8> attrVec;
Chris Lattner7a9e47a2010-01-05 07:32:13 +00002315 attrVec.reserve(NumCommonArgs);
2316
2317 // Get any return attributes.
Bill Wendling658d24d2013-01-18 21:53:16 +00002318 AttrBuilder RAttrs(CallerPAL, AttributeSet::ReturnIndex);
Chris Lattner7a9e47a2010-01-05 07:32:13 +00002319
2320 // If the return value is not being used, the type may not be compatible
2321 // with the existing attributes. Wipe out any problematic attributes.
Pete Cooper2777d8872015-05-06 23:19:56 +00002322 RAttrs.remove(AttributeFuncs::typeIncompatible(NewRetTy));
Chris Lattner7a9e47a2010-01-05 07:32:13 +00002323
2324 // Add the new return attributes.
Bill Wendling70f39172012-10-09 00:01:21 +00002325 if (RAttrs.hasAttributes())
Bill Wendling3575c8c2013-01-27 02:08:22 +00002326 attrVec.push_back(AttributeSet::get(Caller->getContext(),
2327 AttributeSet::ReturnIndex, RAttrs));
Chris Lattner7a9e47a2010-01-05 07:32:13 +00002328
2329 AI = CS.arg_begin();
2330 for (unsigned i = 0; i != NumCommonArgs; ++i, ++AI) {
Chris Lattner229907c2011-07-18 04:54:35 +00002331 Type *ParamTy = FT->getParamType(i);
Matt Arsenaultcacbb232013-07-30 20:45:05 +00002332
Chris Lattner7a9e47a2010-01-05 07:32:13 +00002333 if ((*AI)->getType() == ParamTy) {
2334 Args.push_back(*AI);
2335 } else {
David Majnemer9b6b8222015-01-06 08:41:31 +00002336 Args.push_back(Builder->CreateBitOrPointerCast(*AI, ParamTy));
Chris Lattner7a9e47a2010-01-05 07:32:13 +00002337 }
2338
2339 // Add any parameter attributes.
Bill Wendling49bc76c2013-01-23 06:14:59 +00002340 AttrBuilder PAttrs(CallerPAL.getParamAttributes(i + 1), i + 1);
Bill Wendling76d2cd22012-10-14 08:54:26 +00002341 if (PAttrs.hasAttributes())
Bill Wendling3575c8c2013-01-27 02:08:22 +00002342 attrVec.push_back(AttributeSet::get(Caller->getContext(), i + 1,
2343 PAttrs));
Chris Lattner7a9e47a2010-01-05 07:32:13 +00002344 }
2345
2346 // If the function takes more arguments than the call was taking, add them
2347 // now.
2348 for (unsigned i = NumCommonArgs; i != FT->getNumParams(); ++i)
2349 Args.push_back(Constant::getNullValue(FT->getParamType(i)));
2350
2351 // If we are removing arguments to the function, emit an obnoxious warning.
2352 if (FT->getNumParams() < NumActualArgs) {
Nick Lewycky90053a12012-12-26 22:00:35 +00002353 // TODO: if (!FT->isVarArg()) this call may be unreachable. PR14722
2354 if (FT->isVarArg()) {
Chris Lattner7a9e47a2010-01-05 07:32:13 +00002355 // Add all of the arguments in their promoted form to the arg list.
2356 for (unsigned i = FT->getNumParams(); i != NumActualArgs; ++i, ++AI) {
Chris Lattner229907c2011-07-18 04:54:35 +00002357 Type *PTy = getPromotedType((*AI)->getType());
Chris Lattner7a9e47a2010-01-05 07:32:13 +00002358 if (PTy != (*AI)->getType()) {
2359 // Must promote to pass through va_arg area!
2360 Instruction::CastOps opcode =
2361 CastInst::getCastOpcode(*AI, false, PTy, false);
Benjamin Kramer547b6c52011-09-27 20:39:19 +00002362 Args.push_back(Builder->CreateCast(opcode, *AI, PTy));
Chris Lattner7a9e47a2010-01-05 07:32:13 +00002363 } else {
2364 Args.push_back(*AI);
2365 }
2366
2367 // Add any parameter attributes.
Bill Wendling49bc76c2013-01-23 06:14:59 +00002368 AttrBuilder PAttrs(CallerPAL.getParamAttributes(i + 1), i + 1);
Bill Wendling76d2cd22012-10-14 08:54:26 +00002369 if (PAttrs.hasAttributes())
Bill Wendling3575c8c2013-01-27 02:08:22 +00002370 attrVec.push_back(AttributeSet::get(FT->getContext(), i + 1,
2371 PAttrs));
Chris Lattner7a9e47a2010-01-05 07:32:13 +00002372 }
2373 }
2374 }
2375
Bill Wendlingbd4ea162013-01-21 21:57:28 +00002376 AttributeSet FnAttrs = CallerPAL.getFnAttributes();
Bill Wendling77543892013-01-18 21:11:39 +00002377 if (CallerPAL.hasAttributes(AttributeSet::FunctionIndex))
Bill Wendling3575c8c2013-01-27 02:08:22 +00002378 attrVec.push_back(AttributeSet::get(Callee->getContext(), FnAttrs));
Chris Lattner7a9e47a2010-01-05 07:32:13 +00002379
2380 if (NewRetTy->isVoidTy())
2381 Caller->setName(""); // Void type should not have a name.
2382
Bill Wendlinge94d8432012-12-07 23:16:57 +00002383 const AttributeSet &NewCallerPAL = AttributeSet::get(Callee->getContext(),
Bill Wendlingbd4ea162013-01-21 21:57:28 +00002384 attrVec);
Chris Lattner7a9e47a2010-01-05 07:32:13 +00002385
Sanjoy Das76293462015-11-25 00:42:19 +00002386 SmallVector<OperandBundleDef, 1> OpBundles;
Sanjoy Dasc521c7b2015-11-25 00:42:24 +00002387 CS.getOperandBundlesAsDefs(OpBundles);
Sanjoy Das76293462015-11-25 00:42:19 +00002388
Chris Lattner7a9e47a2010-01-05 07:32:13 +00002389 Instruction *NC;
2390 if (InvokeInst *II = dyn_cast<InvokeInst>(Caller)) {
Sanjoy Das76293462015-11-25 00:42:19 +00002391 NC = Builder->CreateInvoke(Callee, II->getNormalDest(), II->getUnwindDest(),
2392 Args, OpBundles);
Eli Friedman96254a02011-05-18 01:28:27 +00002393 NC->takeName(II);
Chris Lattner7a9e47a2010-01-05 07:32:13 +00002394 cast<InvokeInst>(NC)->setCallingConv(II->getCallingConv());
2395 cast<InvokeInst>(NC)->setAttributes(NewCallerPAL);
2396 } else {
Chris Lattner7a9e47a2010-01-05 07:32:13 +00002397 CallInst *CI = cast<CallInst>(Caller);
Sanjoy Das76293462015-11-25 00:42:19 +00002398 NC = Builder->CreateCall(Callee, Args, OpBundles);
Eli Friedman96254a02011-05-18 01:28:27 +00002399 NC->takeName(CI);
Chris Lattner7a9e47a2010-01-05 07:32:13 +00002400 if (CI->isTailCall())
2401 cast<CallInst>(NC)->setTailCall();
2402 cast<CallInst>(NC)->setCallingConv(CI->getCallingConv());
2403 cast<CallInst>(NC)->setAttributes(NewCallerPAL);
2404 }
2405
2406 // Insert a cast of the return type as necessary.
2407 Value *NV = NC;
2408 if (OldRetTy != NV->getType() && !Caller->use_empty()) {
2409 if (!NV->getType()->isVoidTy()) {
David Majnemer9b6b8222015-01-06 08:41:31 +00002410 NV = NC = CastInst::CreateBitOrPointerCast(NC, OldRetTy);
Eli Friedman35211c62011-05-27 00:19:40 +00002411 NC->setDebugLoc(Caller->getDebugLoc());
Chris Lattner7a9e47a2010-01-05 07:32:13 +00002412
2413 // If this is an invoke instruction, we should insert it after the first
2414 // non-phi, instruction in the normal successor block.
2415 if (InvokeInst *II = dyn_cast<InvokeInst>(Caller)) {
Bill Wendling07efd6f2011-08-25 01:08:34 +00002416 BasicBlock::iterator I = II->getNormalDest()->getFirstInsertionPt();
Chris Lattner7a9e47a2010-01-05 07:32:13 +00002417 InsertNewInstBefore(NC, *I);
2418 } else {
Chris Lattner73989652010-12-20 08:25:06 +00002419 // Otherwise, it's a call, just insert cast right after the call.
Chris Lattner7a9e47a2010-01-05 07:32:13 +00002420 InsertNewInstBefore(NC, *Caller);
2421 }
2422 Worklist.AddUsersToWorkList(*Caller);
2423 } else {
2424 NV = UndefValue::get(Caller->getType());
2425 }
2426 }
2427
Chris Lattner7a9e47a2010-01-05 07:32:13 +00002428 if (!Caller->use_empty())
Sanjay Patel4b198802016-02-01 22:23:39 +00002429 replaceInstUsesWith(*Caller, NV);
Frederic Rissc1892e22014-10-23 04:08:42 +00002430 else if (Caller->hasValueHandle()) {
2431 if (OldRetTy == NV->getType())
2432 ValueHandleBase::ValueIsRAUWd(Caller, NV);
2433 else
2434 // We cannot call ValueIsRAUWd with a different type, and the
2435 // actual tracked value will disappear.
2436 ValueHandleBase::ValueIsDeleted(Caller);
2437 }
Eli Friedmanb9ed18f2011-05-18 00:32:01 +00002438
Sanjay Patel4b198802016-02-01 22:23:39 +00002439 eraseInstFromFunction(*Caller);
Chris Lattner7a9e47a2010-01-05 07:32:13 +00002440 return true;
2441}
2442
Sanjay Patelcd4377c2016-01-20 22:24:38 +00002443/// Turn a call to a function created by init_trampoline / adjust_trampoline
2444/// intrinsic pair into a direct call to the underlying function.
Duncan Sandsa0984362011-09-06 13:37:06 +00002445Instruction *
2446InstCombiner::transformCallThroughTrampoline(CallSite CS,
2447 IntrinsicInst *Tramp) {
Chris Lattner7a9e47a2010-01-05 07:32:13 +00002448 Value *Callee = CS.getCalledValue();
Chris Lattner229907c2011-07-18 04:54:35 +00002449 PointerType *PTy = cast<PointerType>(Callee->getType());
2450 FunctionType *FTy = cast<FunctionType>(PTy->getElementType());
Bill Wendlinge94d8432012-12-07 23:16:57 +00002451 const AttributeSet &Attrs = CS.getAttributes();
Chris Lattner7a9e47a2010-01-05 07:32:13 +00002452
2453 // If the call already has the 'nest' attribute somewhere then give up -
2454 // otherwise 'nest' would occur twice after splicing in the chain.
Bill Wendling6e95ae82012-12-31 00:49:59 +00002455 if (Attrs.hasAttrSomewhere(Attribute::Nest))
Craig Topperf40110f2014-04-25 05:29:35 +00002456 return nullptr;
Chris Lattner7a9e47a2010-01-05 07:32:13 +00002457
Duncan Sandsa0984362011-09-06 13:37:06 +00002458 assert(Tramp &&
2459 "transformCallThroughTrampoline called with incorrect CallSite.");
Chris Lattner7a9e47a2010-01-05 07:32:13 +00002460
Gabor Greif3e44ea12010-07-22 10:37:47 +00002461 Function *NestF =cast<Function>(Tramp->getArgOperand(1)->stripPointerCasts());
Manuel Jacob5f6eaac2016-01-16 20:30:46 +00002462 FunctionType *NestFTy = cast<FunctionType>(NestF->getValueType());
Chris Lattner7a9e47a2010-01-05 07:32:13 +00002463
Bill Wendlinge94d8432012-12-07 23:16:57 +00002464 const AttributeSet &NestAttrs = NestF->getAttributes();
Chris Lattner7a9e47a2010-01-05 07:32:13 +00002465 if (!NestAttrs.isEmpty()) {
2466 unsigned NestIdx = 1;
Craig Topperf40110f2014-04-25 05:29:35 +00002467 Type *NestTy = nullptr;
Bill Wendling49bc76c2013-01-23 06:14:59 +00002468 AttributeSet NestAttr;
Chris Lattner7a9e47a2010-01-05 07:32:13 +00002469
2470 // Look for a parameter marked with the 'nest' attribute.
2471 for (FunctionType::param_iterator I = NestFTy->param_begin(),
2472 E = NestFTy->param_end(); I != E; ++NestIdx, ++I)
Bill Wendling49bc76c2013-01-23 06:14:59 +00002473 if (NestAttrs.hasAttribute(NestIdx, Attribute::Nest)) {
Chris Lattner7a9e47a2010-01-05 07:32:13 +00002474 // Record the parameter type and any other attributes.
2475 NestTy = *I;
2476 NestAttr = NestAttrs.getParamAttributes(NestIdx);
2477 break;
2478 }
2479
2480 if (NestTy) {
2481 Instruction *Caller = CS.getInstruction();
2482 std::vector<Value*> NewArgs;
Matt Arsenault5d2e85f2013-06-28 00:25:40 +00002483 NewArgs.reserve(CS.arg_size() + 1);
Chris Lattner7a9e47a2010-01-05 07:32:13 +00002484
Bill Wendling3575c8c2013-01-27 02:08:22 +00002485 SmallVector<AttributeSet, 8> NewAttrs;
Chris Lattner7a9e47a2010-01-05 07:32:13 +00002486 NewAttrs.reserve(Attrs.getNumSlots() + 1);
2487
2488 // Insert the nest argument into the call argument list, which may
2489 // mean appending it. Likewise for attributes.
2490
2491 // Add any result attributes.
Bill Wendling658d24d2013-01-18 21:53:16 +00002492 if (Attrs.hasAttributes(AttributeSet::ReturnIndex))
Bill Wendling3575c8c2013-01-27 02:08:22 +00002493 NewAttrs.push_back(AttributeSet::get(Caller->getContext(),
2494 Attrs.getRetAttributes()));
Chris Lattner7a9e47a2010-01-05 07:32:13 +00002495
2496 {
2497 unsigned Idx = 1;
2498 CallSite::arg_iterator I = CS.arg_begin(), E = CS.arg_end();
2499 do {
2500 if (Idx == NestIdx) {
2501 // Add the chain argument and attributes.
Gabor Greif589a0b92010-06-24 12:58:35 +00002502 Value *NestVal = Tramp->getArgOperand(2);
Chris Lattner7a9e47a2010-01-05 07:32:13 +00002503 if (NestVal->getType() != NestTy)
Eli Friedman41e509a2011-05-18 23:58:37 +00002504 NestVal = Builder->CreateBitCast(NestVal, NestTy, "nest");
Chris Lattner7a9e47a2010-01-05 07:32:13 +00002505 NewArgs.push_back(NestVal);
Bill Wendling3575c8c2013-01-27 02:08:22 +00002506 NewAttrs.push_back(AttributeSet::get(Caller->getContext(),
2507 NestAttr));
Chris Lattner7a9e47a2010-01-05 07:32:13 +00002508 }
2509
2510 if (I == E)
2511 break;
2512
2513 // Add the original argument and attributes.
2514 NewArgs.push_back(*I);
Bill Wendling49bc76c2013-01-23 06:14:59 +00002515 AttributeSet Attr = Attrs.getParamAttributes(Idx);
2516 if (Attr.hasAttributes(Idx)) {
Bill Wendling3575c8c2013-01-27 02:08:22 +00002517 AttrBuilder B(Attr, Idx);
2518 NewAttrs.push_back(AttributeSet::get(Caller->getContext(),
2519 Idx + (Idx >= NestIdx), B));
Bill Wendling49bc76c2013-01-23 06:14:59 +00002520 }
Chris Lattner7a9e47a2010-01-05 07:32:13 +00002521
Richard Trieu7a083812016-02-18 22:09:30 +00002522 ++Idx;
2523 ++I;
Chris Lattner7a9e47a2010-01-05 07:32:13 +00002524 } while (1);
2525 }
2526
2527 // Add any function attributes.
Bill Wendling77543892013-01-18 21:11:39 +00002528 if (Attrs.hasAttributes(AttributeSet::FunctionIndex))
Bill Wendling3575c8c2013-01-27 02:08:22 +00002529 NewAttrs.push_back(AttributeSet::get(FTy->getContext(),
2530 Attrs.getFnAttributes()));
Chris Lattner7a9e47a2010-01-05 07:32:13 +00002531
2532 // The trampoline may have been bitcast to a bogus type (FTy).
2533 // Handle this by synthesizing a new function type, equal to FTy
2534 // with the chain parameter inserted.
2535
Jay Foadb804a2b2011-07-12 14:06:48 +00002536 std::vector<Type*> NewTypes;
Chris Lattner7a9e47a2010-01-05 07:32:13 +00002537 NewTypes.reserve(FTy->getNumParams()+1);
2538
2539 // Insert the chain's type into the list of parameter types, which may
2540 // mean appending it.
2541 {
2542 unsigned Idx = 1;
2543 FunctionType::param_iterator I = FTy->param_begin(),
2544 E = FTy->param_end();
2545
2546 do {
2547 if (Idx == NestIdx)
2548 // Add the chain's type.
2549 NewTypes.push_back(NestTy);
2550
2551 if (I == E)
2552 break;
2553
2554 // Add the original type.
2555 NewTypes.push_back(*I);
2556
Richard Trieu7a083812016-02-18 22:09:30 +00002557 ++Idx;
2558 ++I;
Chris Lattner7a9e47a2010-01-05 07:32:13 +00002559 } while (1);
2560 }
2561
2562 // Replace the trampoline call with a direct call. Let the generic
2563 // code sort out any function type mismatches.
Jim Grosbach7815f562012-02-03 00:07:04 +00002564 FunctionType *NewFTy = FunctionType::get(FTy->getReturnType(), NewTypes,
Chris Lattner7a9e47a2010-01-05 07:32:13 +00002565 FTy->isVarArg());
2566 Constant *NewCallee =
2567 NestF->getType() == PointerType::getUnqual(NewFTy) ?
Jim Grosbach7815f562012-02-03 00:07:04 +00002568 NestF : ConstantExpr::getBitCast(NestF,
Chris Lattner7a9e47a2010-01-05 07:32:13 +00002569 PointerType::getUnqual(NewFTy));
Jim Grosbachbdbd7342013-04-05 21:20:12 +00002570 const AttributeSet &NewPAL =
2571 AttributeSet::get(FTy->getContext(), NewAttrs);
Chris Lattner7a9e47a2010-01-05 07:32:13 +00002572
2573 Instruction *NewCaller;
2574 if (InvokeInst *II = dyn_cast<InvokeInst>(Caller)) {
2575 NewCaller = InvokeInst::Create(NewCallee,
2576 II->getNormalDest(), II->getUnwindDest(),
Jay Foad5bd375a2011-07-15 08:37:34 +00002577 NewArgs);
Chris Lattner7a9e47a2010-01-05 07:32:13 +00002578 cast<InvokeInst>(NewCaller)->setCallingConv(II->getCallingConv());
2579 cast<InvokeInst>(NewCaller)->setAttributes(NewPAL);
2580 } else {
Jay Foad5bd375a2011-07-15 08:37:34 +00002581 NewCaller = CallInst::Create(NewCallee, NewArgs);
Chris Lattner7a9e47a2010-01-05 07:32:13 +00002582 if (cast<CallInst>(Caller)->isTailCall())
2583 cast<CallInst>(NewCaller)->setTailCall();
2584 cast<CallInst>(NewCaller)->
2585 setCallingConv(cast<CallInst>(Caller)->getCallingConv());
2586 cast<CallInst>(NewCaller)->setAttributes(NewPAL);
2587 }
Eli Friedman49346012011-05-18 19:57:14 +00002588
2589 return NewCaller;
Chris Lattner7a9e47a2010-01-05 07:32:13 +00002590 }
2591 }
2592
2593 // Replace the trampoline call with a direct call. Since there is no 'nest'
2594 // parameter, there is no need to adjust the argument list. Let the generic
2595 // code sort out any function type mismatches.
2596 Constant *NewCallee =
Jim Grosbach7815f562012-02-03 00:07:04 +00002597 NestF->getType() == PTy ? NestF :
Chris Lattner7a9e47a2010-01-05 07:32:13 +00002598 ConstantExpr::getBitCast(NestF, PTy);
2599 CS.setCalledFunction(NewCallee);
2600 return CS.getInstruction();
2601}