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Meador Ingedf796f82012-10-13 16:45:24 +00001//===------ SimplifyLibCalls.cpp - Library calls simplifier ---------------===//
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 is a utility pass used for testing the InstructionSimplify analysis.
11// The analysis is applied to every instruction, and if it simplifies then the
12// instruction is replaced by the simplification. If you are looking for a pass
13// that performs serious instruction folding, use the instcombine pass instead.
14//
15//===----------------------------------------------------------------------===//
16
17#include "llvm/Transforms/Utils/SimplifyLibCalls.h"
Meador Inge20255ef2013-03-12 00:08:29 +000018#include "llvm/ADT/SmallString.h"
Meador Ingedf796f82012-10-13 16:45:24 +000019#include "llvm/ADT/StringMap.h"
Bob Wilsond8d92d92013-11-03 06:48:38 +000020#include "llvm/ADT/Triple.h"
Sanjay Patel82ec8722017-08-21 19:13:14 +000021#include "llvm/Analysis/ConstantFolding.h"
Adam Nemet0965da22017-10-09 23:19:02 +000022#include "llvm/Analysis/OptimizationRemarkEmitter.h"
Weiming Zhao45d4cb92015-11-24 18:57:06 +000023#include "llvm/Analysis/TargetLibraryInfo.h"
Meador Ingedf796f82012-10-13 16:45:24 +000024#include "llvm/Analysis/ValueTracking.h"
Chandler Carruth9fb823b2013-01-02 11:36:10 +000025#include "llvm/IR/DataLayout.h"
26#include "llvm/IR/Function.h"
27#include "llvm/IR/IRBuilder.h"
Meador Inge20255ef2013-03-12 00:08:29 +000028#include "llvm/IR/IntrinsicInst.h"
Chandler Carruth9fb823b2013-01-02 11:36:10 +000029#include "llvm/IR/Intrinsics.h"
30#include "llvm/IR/LLVMContext.h"
31#include "llvm/IR/Module.h"
Sanjay Patelc699a612014-10-16 18:48:17 +000032#include "llvm/IR/PatternMatch.h"
Hal Finkel66cd3f12013-11-17 02:06:35 +000033#include "llvm/Support/CommandLine.h"
Craig Topperb45eabc2017-04-26 16:39:58 +000034#include "llvm/Support/KnownBits.h"
Meador Ingedf796f82012-10-13 16:45:24 +000035#include "llvm/Transforms/Utils/BuildLibCalls.h"
Chad Rosierdc655322015-08-28 18:30:18 +000036#include "llvm/Transforms/Utils/Local.h"
Meador Ingedf796f82012-10-13 16:45:24 +000037
38using namespace llvm;
Sanjay Patelc699a612014-10-16 18:48:17 +000039using namespace PatternMatch;
Meador Ingedf796f82012-10-13 16:45:24 +000040
Hal Finkel66cd3f12013-11-17 02:06:35 +000041static cl::opt<bool>
Sanjay Patela92fa442014-10-22 15:29:23 +000042 EnableUnsafeFPShrink("enable-double-float-shrink", cl::Hidden,
43 cl::init(false),
44 cl::desc("Enable unsafe double to float "
45 "shrinking for math lib calls"));
46
47
Meador Ingedf796f82012-10-13 16:45:24 +000048//===----------------------------------------------------------------------===//
Meador Inged589ac62012-10-31 03:33:06 +000049// Helper Functions
50//===----------------------------------------------------------------------===//
51
David L. Jonesd21529f2017-01-23 23:16:46 +000052static bool ignoreCallingConv(LibFunc Func) {
53 return Func == LibFunc_abs || Func == LibFunc_labs ||
54 Func == LibFunc_llabs || Func == LibFunc_strlen;
Chris Bienemanad070d02014-09-17 20:55:46 +000055}
56
Sam Parker214f7bf2016-09-13 12:10:14 +000057static bool isCallingConvCCompatible(CallInst *CI) {
58 switch(CI->getCallingConv()) {
59 default:
60 return false;
61 case llvm::CallingConv::C:
62 return true;
63 case llvm::CallingConv::ARM_APCS:
64 case llvm::CallingConv::ARM_AAPCS:
65 case llvm::CallingConv::ARM_AAPCS_VFP: {
66
67 // The iOS ABI diverges from the standard in some cases, so for now don't
68 // try to simplify those calls.
69 if (Triple(CI->getModule()->getTargetTriple()).isiOS())
70 return false;
71
72 auto *FuncTy = CI->getFunctionType();
73
74 if (!FuncTy->getReturnType()->isPointerTy() &&
75 !FuncTy->getReturnType()->isIntegerTy() &&
76 !FuncTy->getReturnType()->isVoidTy())
77 return false;
78
79 for (auto Param : FuncTy->params()) {
80 if (!Param->isPointerTy() && !Param->isIntegerTy())
81 return false;
82 }
83 return true;
84 }
85 }
86 return false;
87}
88
Sanjay Pateld707db92015-12-31 16:10:49 +000089/// Return true if it is only used in equality comparisons with With.
Meador Inge56edbc92012-11-11 03:51:48 +000090static bool isOnlyUsedInEqualityComparison(Value *V, Value *With) {
Chandler Carruthcdf47882014-03-09 03:16:01 +000091 for (User *U : V->users()) {
92 if (ICmpInst *IC = dyn_cast<ICmpInst>(U))
Meador Inge56edbc92012-11-11 03:51:48 +000093 if (IC->isEquality() && IC->getOperand(1) == With)
94 continue;
95 // Unknown instruction.
96 return false;
97 }
98 return true;
99}
100
Meador Inge08ca1152012-11-26 20:37:20 +0000101static bool callHasFloatingPointArgument(const CallInst *CI) {
David Majnemer0a16c222016-08-11 21:15:00 +0000102 return any_of(CI->operands(), [](const Use &OI) {
Davide Italianoda3beeb2015-11-28 22:27:48 +0000103 return OI->getType()->isFloatingPointTy();
104 });
Meador Inge08ca1152012-11-26 20:37:20 +0000105}
106
Benjamin Kramer2702caa2013-08-31 18:19:35 +0000107/// \brief Check whether the overloaded unary floating point function
Sanjay Patele24c60e2015-08-12 20:36:18 +0000108/// corresponding to \a Ty is available.
Benjamin Kramer2702caa2013-08-31 18:19:35 +0000109static bool hasUnaryFloatFn(const TargetLibraryInfo *TLI, Type *Ty,
David L. Jonesd21529f2017-01-23 23:16:46 +0000110 LibFunc DoubleFn, LibFunc FloatFn,
111 LibFunc LongDoubleFn) {
Benjamin Kramer2702caa2013-08-31 18:19:35 +0000112 switch (Ty->getTypeID()) {
113 case Type::FloatTyID:
114 return TLI->has(FloatFn);
115 case Type::DoubleTyID:
116 return TLI->has(DoubleFn);
117 default:
118 return TLI->has(LongDoubleFn);
119 }
120}
121
Meador Inged589ac62012-10-31 03:33:06 +0000122//===----------------------------------------------------------------------===//
Meador Inge7fb2f732012-10-13 16:45:32 +0000123// String and Memory Library Call Optimizations
124//===----------------------------------------------------------------------===//
125
Chris Bienemanad070d02014-09-17 20:55:46 +0000126Value *LibCallSimplifier::optimizeStrCat(CallInst *CI, IRBuilder<> &B) {
Chris Bienemanad070d02014-09-17 20:55:46 +0000127 // Extract some information from the instruction
128 Value *Dst = CI->getArgOperand(0);
129 Value *Src = CI->getArgOperand(1);
130
131 // See if we can get the length of the input string.
132 uint64_t Len = GetStringLength(Src);
133 if (Len == 0)
134 return nullptr;
135 --Len; // Unbias length.
136
137 // Handle the simple, do-nothing case: strcat(x, "") -> x
138 if (Len == 0)
139 return Dst;
140
Chris Bienemanad070d02014-09-17 20:55:46 +0000141 return emitStrLenMemCpy(Src, Dst, Len, B);
142}
143
144Value *LibCallSimplifier::emitStrLenMemCpy(Value *Src, Value *Dst, uint64_t Len,
145 IRBuilder<> &B) {
146 // We need to find the end of the destination string. That's where the
147 // memory is to be moved to. We just generate a call to strlen.
Sanjay Pateld3112a52016-01-19 19:46:10 +0000148 Value *DstLen = emitStrLen(Dst, B, DL, TLI);
Chris Bienemanad070d02014-09-17 20:55:46 +0000149 if (!DstLen)
150 return nullptr;
151
152 // Now that we have the destination's length, we must index into the
153 // destination's pointer to get the actual memcpy destination (end of
154 // the string .. we're concatenating).
David Blaikie3909da72015-03-30 20:42:56 +0000155 Value *CpyDst = B.CreateGEP(B.getInt8Ty(), Dst, DstLen, "endptr");
Chris Bienemanad070d02014-09-17 20:55:46 +0000156
157 // We have enough information to now generate the memcpy call to do the
158 // concatenation for us. Make a memcpy to copy the nul byte with align = 1.
Mehdi Aminia28d91d2015-03-10 02:37:25 +0000159 B.CreateMemCpy(CpyDst, Src,
160 ConstantInt::get(DL.getIntPtrType(Src->getContext()), Len + 1),
Pete Cooper67cf9a72015-11-19 05:56:52 +0000161 1);
Chris Bienemanad070d02014-09-17 20:55:46 +0000162 return Dst;
163}
164
165Value *LibCallSimplifier::optimizeStrNCat(CallInst *CI, IRBuilder<> &B) {
Sanjay Pateld707db92015-12-31 16:10:49 +0000166 // Extract some information from the instruction.
Chris Bienemanad070d02014-09-17 20:55:46 +0000167 Value *Dst = CI->getArgOperand(0);
168 Value *Src = CI->getArgOperand(1);
169 uint64_t Len;
170
Sanjay Pateld707db92015-12-31 16:10:49 +0000171 // We don't do anything if length is not constant.
Chris Bienemanad070d02014-09-17 20:55:46 +0000172 if (ConstantInt *LengthArg = dyn_cast<ConstantInt>(CI->getArgOperand(2)))
173 Len = LengthArg->getZExtValue();
174 else
175 return nullptr;
176
177 // See if we can get the length of the input string.
178 uint64_t SrcLen = GetStringLength(Src);
179 if (SrcLen == 0)
180 return nullptr;
181 --SrcLen; // Unbias length.
182
183 // Handle the simple, do-nothing cases:
184 // strncat(x, "", c) -> x
185 // strncat(x, c, 0) -> x
186 if (SrcLen == 0 || Len == 0)
187 return Dst;
188
Sanjay Pateld707db92015-12-31 16:10:49 +0000189 // We don't optimize this case.
Chris Bienemanad070d02014-09-17 20:55:46 +0000190 if (Len < SrcLen)
191 return nullptr;
192
193 // strncat(x, s, c) -> strcat(x, s)
Sanjay Pateld707db92015-12-31 16:10:49 +0000194 // s is constant so the strcat can be optimized further.
Chris Bienemanad070d02014-09-17 20:55:46 +0000195 return emitStrLenMemCpy(Src, Dst, SrcLen, B);
196}
197
198Value *LibCallSimplifier::optimizeStrChr(CallInst *CI, IRBuilder<> &B) {
199 Function *Callee = CI->getCalledFunction();
Chris Bienemanad070d02014-09-17 20:55:46 +0000200 FunctionType *FT = Callee->getFunctionType();
Chris Bienemanad070d02014-09-17 20:55:46 +0000201 Value *SrcStr = CI->getArgOperand(0);
202
203 // If the second operand is non-constant, see if we can compute the length
204 // of the input string and turn this into memchr.
205 ConstantInt *CharC = dyn_cast<ConstantInt>(CI->getArgOperand(1));
206 if (!CharC) {
Chris Bienemanad070d02014-09-17 20:55:46 +0000207 uint64_t Len = GetStringLength(SrcStr);
208 if (Len == 0 || !FT->getParamType(1)->isIntegerTy(32)) // memchr needs i32.
209 return nullptr;
Meador Inge7fb2f732012-10-13 16:45:32 +0000210
Sanjay Pateld3112a52016-01-19 19:46:10 +0000211 return emitMemChr(SrcStr, CI->getArgOperand(1), // include nul.
Mehdi Aminia28d91d2015-03-10 02:37:25 +0000212 ConstantInt::get(DL.getIntPtrType(CI->getContext()), Len),
213 B, DL, TLI);
Meador Inge7fb2f732012-10-13 16:45:32 +0000214 }
215
Chris Bienemanad070d02014-09-17 20:55:46 +0000216 // Otherwise, the character is a constant, see if the first argument is
217 // a string literal. If so, we can constant fold.
218 StringRef Str;
219 if (!getConstantStringInfo(SrcStr, Str)) {
Mehdi Aminia28d91d2015-03-10 02:37:25 +0000220 if (CharC->isZero()) // strchr(p, 0) -> p + strlen(p)
Sanjay Pateld3112a52016-01-19 19:46:10 +0000221 return B.CreateGEP(B.getInt8Ty(), SrcStr, emitStrLen(SrcStr, B, DL, TLI),
Sanjay Pateld707db92015-12-31 16:10:49 +0000222 "strchr");
Chris Bienemanad070d02014-09-17 20:55:46 +0000223 return nullptr;
224 }
225
226 // Compute the offset, make sure to handle the case when we're searching for
227 // zero (a weird way to spell strlen).
228 size_t I = (0xFF & CharC->getSExtValue()) == 0
229 ? Str.size()
230 : Str.find(CharC->getSExtValue());
231 if (I == StringRef::npos) // Didn't find the char. strchr returns null.
232 return Constant::getNullValue(CI->getType());
233
234 // strchr(s+n,c) -> gep(s+n+i,c)
David Blaikie3909da72015-03-30 20:42:56 +0000235 return B.CreateGEP(B.getInt8Ty(), SrcStr, B.getInt64(I), "strchr");
Chris Bienemanad070d02014-09-17 20:55:46 +0000236}
237
238Value *LibCallSimplifier::optimizeStrRChr(CallInst *CI, IRBuilder<> &B) {
Chris Bienemanad070d02014-09-17 20:55:46 +0000239 Value *SrcStr = CI->getArgOperand(0);
240 ConstantInt *CharC = dyn_cast<ConstantInt>(CI->getArgOperand(1));
241
242 // Cannot fold anything if we're not looking for a constant.
243 if (!CharC)
244 return nullptr;
245
246 StringRef Str;
247 if (!getConstantStringInfo(SrcStr, Str)) {
248 // strrchr(s, 0) -> strchr(s, 0)
Mehdi Aminia28d91d2015-03-10 02:37:25 +0000249 if (CharC->isZero())
Sanjay Pateld3112a52016-01-19 19:46:10 +0000250 return emitStrChr(SrcStr, '\0', B, TLI);
Chris Bienemanad070d02014-09-17 20:55:46 +0000251 return nullptr;
252 }
253
254 // Compute the offset.
255 size_t I = (0xFF & CharC->getSExtValue()) == 0
256 ? Str.size()
257 : Str.rfind(CharC->getSExtValue());
258 if (I == StringRef::npos) // Didn't find the char. Return null.
259 return Constant::getNullValue(CI->getType());
260
261 // strrchr(s+n,c) -> gep(s+n+i,c)
David Blaikie3909da72015-03-30 20:42:56 +0000262 return B.CreateGEP(B.getInt8Ty(), SrcStr, B.getInt64(I), "strrchr");
Chris Bienemanad070d02014-09-17 20:55:46 +0000263}
264
265Value *LibCallSimplifier::optimizeStrCmp(CallInst *CI, IRBuilder<> &B) {
Chris Bienemanad070d02014-09-17 20:55:46 +0000266 Value *Str1P = CI->getArgOperand(0), *Str2P = CI->getArgOperand(1);
267 if (Str1P == Str2P) // strcmp(x,x) -> 0
268 return ConstantInt::get(CI->getType(), 0);
269
270 StringRef Str1, Str2;
271 bool HasStr1 = getConstantStringInfo(Str1P, Str1);
272 bool HasStr2 = getConstantStringInfo(Str2P, Str2);
273
274 // strcmp(x, y) -> cnst (if both x and y are constant strings)
275 if (HasStr1 && HasStr2)
276 return ConstantInt::get(CI->getType(), Str1.compare(Str2));
277
278 if (HasStr1 && Str1.empty()) // strcmp("", x) -> -*x
279 return B.CreateNeg(
280 B.CreateZExt(B.CreateLoad(Str2P, "strcmpload"), CI->getType()));
281
282 if (HasStr2 && Str2.empty()) // strcmp(x,"") -> *x
283 return B.CreateZExt(B.CreateLoad(Str1P, "strcmpload"), CI->getType());
284
285 // strcmp(P, "x") -> memcmp(P, "x", 2)
286 uint64_t Len1 = GetStringLength(Str1P);
287 uint64_t Len2 = GetStringLength(Str2P);
288 if (Len1 && Len2) {
Sanjay Pateld3112a52016-01-19 19:46:10 +0000289 return emitMemCmp(Str1P, Str2P,
Mehdi Aminia28d91d2015-03-10 02:37:25 +0000290 ConstantInt::get(DL.getIntPtrType(CI->getContext()),
Chris Bienemanad070d02014-09-17 20:55:46 +0000291 std::min(Len1, Len2)),
292 B, DL, TLI);
293 }
Meador Inge7fb2f732012-10-13 16:45:32 +0000294
Chris Bienemanad070d02014-09-17 20:55:46 +0000295 return nullptr;
296}
297
298Value *LibCallSimplifier::optimizeStrNCmp(CallInst *CI, IRBuilder<> &B) {
Chris Bienemanad070d02014-09-17 20:55:46 +0000299 Value *Str1P = CI->getArgOperand(0), *Str2P = CI->getArgOperand(1);
300 if (Str1P == Str2P) // strncmp(x,x,n) -> 0
301 return ConstantInt::get(CI->getType(), 0);
302
303 // Get the length argument if it is constant.
304 uint64_t Length;
305 if (ConstantInt *LengthArg = dyn_cast<ConstantInt>(CI->getArgOperand(2)))
306 Length = LengthArg->getZExtValue();
307 else
308 return nullptr;
309
310 if (Length == 0) // strncmp(x,y,0) -> 0
311 return ConstantInt::get(CI->getType(), 0);
312
Mehdi Aminia28d91d2015-03-10 02:37:25 +0000313 if (Length == 1) // strncmp(x,y,1) -> memcmp(x,y,1)
Sanjay Pateld3112a52016-01-19 19:46:10 +0000314 return emitMemCmp(Str1P, Str2P, CI->getArgOperand(2), B, DL, TLI);
Chris Bienemanad070d02014-09-17 20:55:46 +0000315
316 StringRef Str1, Str2;
317 bool HasStr1 = getConstantStringInfo(Str1P, Str1);
318 bool HasStr2 = getConstantStringInfo(Str2P, Str2);
319
320 // strncmp(x, y) -> cnst (if both x and y are constant strings)
321 if (HasStr1 && HasStr2) {
322 StringRef SubStr1 = Str1.substr(0, Length);
323 StringRef SubStr2 = Str2.substr(0, Length);
324 return ConstantInt::get(CI->getType(), SubStr1.compare(SubStr2));
325 }
326
327 if (HasStr1 && Str1.empty()) // strncmp("", x, n) -> -*x
328 return B.CreateNeg(
329 B.CreateZExt(B.CreateLoad(Str2P, "strcmpload"), CI->getType()));
330
331 if (HasStr2 && Str2.empty()) // strncmp(x, "", n) -> *x
332 return B.CreateZExt(B.CreateLoad(Str1P, "strcmpload"), CI->getType());
333
334 return nullptr;
335}
336
337Value *LibCallSimplifier::optimizeStrCpy(CallInst *CI, IRBuilder<> &B) {
Chris Bienemanad070d02014-09-17 20:55:46 +0000338 Value *Dst = CI->getArgOperand(0), *Src = CI->getArgOperand(1);
339 if (Dst == Src) // strcpy(x,x) -> x
340 return Src;
341
Chris Bienemanad070d02014-09-17 20:55:46 +0000342 // See if we can get the length of the input string.
343 uint64_t Len = GetStringLength(Src);
344 if (Len == 0)
345 return nullptr;
346
347 // We have enough information to now generate the memcpy call to do the
348 // copy for us. Make a memcpy to copy the nul byte with align = 1.
349 B.CreateMemCpy(Dst, Src,
Pete Cooper67cf9a72015-11-19 05:56:52 +0000350 ConstantInt::get(DL.getIntPtrType(CI->getContext()), Len), 1);
Chris Bienemanad070d02014-09-17 20:55:46 +0000351 return Dst;
352}
353
354Value *LibCallSimplifier::optimizeStpCpy(CallInst *CI, IRBuilder<> &B) {
355 Function *Callee = CI->getCalledFunction();
Chris Bienemanad070d02014-09-17 20:55:46 +0000356 Value *Dst = CI->getArgOperand(0), *Src = CI->getArgOperand(1);
357 if (Dst == Src) { // stpcpy(x,x) -> x+strlen(x)
Sanjay Pateld3112a52016-01-19 19:46:10 +0000358 Value *StrLen = emitStrLen(Src, B, DL, TLI);
David Blaikieaa41cd52015-04-03 21:33:42 +0000359 return StrLen ? B.CreateInBoundsGEP(B.getInt8Ty(), Dst, StrLen) : nullptr;
Chris Bienemanad070d02014-09-17 20:55:46 +0000360 }
361
362 // See if we can get the length of the input string.
363 uint64_t Len = GetStringLength(Src);
364 if (Len == 0)
365 return nullptr;
366
Davide Italianob7487e62015-11-02 23:07:14 +0000367 Type *PT = Callee->getFunctionType()->getParamType(0);
Mehdi Aminia28d91d2015-03-10 02:37:25 +0000368 Value *LenV = ConstantInt::get(DL.getIntPtrType(PT), Len);
Sanjay Pateld707db92015-12-31 16:10:49 +0000369 Value *DstEnd = B.CreateGEP(B.getInt8Ty(), Dst,
370 ConstantInt::get(DL.getIntPtrType(PT), Len - 1));
Chris Bienemanad070d02014-09-17 20:55:46 +0000371
372 // We have enough information to now generate the memcpy call to do the
373 // copy for us. Make a memcpy to copy the nul byte with align = 1.
Pete Cooper67cf9a72015-11-19 05:56:52 +0000374 B.CreateMemCpy(Dst, Src, LenV, 1);
Chris Bienemanad070d02014-09-17 20:55:46 +0000375 return DstEnd;
376}
377
378Value *LibCallSimplifier::optimizeStrNCpy(CallInst *CI, IRBuilder<> &B) {
379 Function *Callee = CI->getCalledFunction();
Chris Bienemanad070d02014-09-17 20:55:46 +0000380 Value *Dst = CI->getArgOperand(0);
381 Value *Src = CI->getArgOperand(1);
382 Value *LenOp = CI->getArgOperand(2);
383
384 // See if we can get the length of the input string.
385 uint64_t SrcLen = GetStringLength(Src);
386 if (SrcLen == 0)
387 return nullptr;
388 --SrcLen;
389
390 if (SrcLen == 0) {
391 // strncpy(x, "", y) -> memset(x, '\0', y, 1)
392 B.CreateMemSet(Dst, B.getInt8('\0'), LenOp, 1);
Meador Inge7fb2f732012-10-13 16:45:32 +0000393 return Dst;
394 }
Meador Inge7fb2f732012-10-13 16:45:32 +0000395
Chris Bienemanad070d02014-09-17 20:55:46 +0000396 uint64_t Len;
397 if (ConstantInt *LengthArg = dyn_cast<ConstantInt>(LenOp))
398 Len = LengthArg->getZExtValue();
399 else
400 return nullptr;
Meador Inge7fb2f732012-10-13 16:45:32 +0000401
Chris Bienemanad070d02014-09-17 20:55:46 +0000402 if (Len == 0)
403 return Dst; // strncpy(x, y, 0) -> x
Meador Inge7fb2f732012-10-13 16:45:32 +0000404
Chris Bienemanad070d02014-09-17 20:55:46 +0000405 // Let strncpy handle the zero padding
406 if (Len > SrcLen + 1)
407 return nullptr;
Meador Inge7fb2f732012-10-13 16:45:32 +0000408
Davide Italianob7487e62015-11-02 23:07:14 +0000409 Type *PT = Callee->getFunctionType()->getParamType(0);
Chris Bienemanad070d02014-09-17 20:55:46 +0000410 // strncpy(x, s, c) -> memcpy(x, s, c, 1) [s and c are constant]
Pete Cooper67cf9a72015-11-19 05:56:52 +0000411 B.CreateMemCpy(Dst, Src, ConstantInt::get(DL.getIntPtrType(PT), Len), 1);
Meador Inge7fb2f732012-10-13 16:45:32 +0000412
Chris Bienemanad070d02014-09-17 20:55:46 +0000413 return Dst;
414}
Meador Inge7fb2f732012-10-13 16:45:32 +0000415
Matthias Braun50ec0b52017-05-19 22:37:09 +0000416Value *LibCallSimplifier::optimizeStringLength(CallInst *CI, IRBuilder<> &B,
417 unsigned CharSize) {
Chris Bienemanad070d02014-09-17 20:55:46 +0000418 Value *Src = CI->getArgOperand(0);
419
420 // Constant folding: strlen("xyz") -> 3
Matthias Braun50ec0b52017-05-19 22:37:09 +0000421 if (uint64_t Len = GetStringLength(Src, CharSize))
Chris Bienemanad070d02014-09-17 20:55:46 +0000422 return ConstantInt::get(CI->getType(), Len - 1);
423
David L Kreitzer752c1442016-04-13 14:31:06 +0000424 // If s is a constant pointer pointing to a string literal, we can fold
Matthias Braun50ec0b52017-05-19 22:37:09 +0000425 // strlen(s + x) to strlen(s) - x, when x is known to be in the range
David L Kreitzer752c1442016-04-13 14:31:06 +0000426 // [0, strlen(s)] or the string has a single null terminator '\0' at the end.
Matthias Braun50ec0b52017-05-19 22:37:09 +0000427 // We only try to simplify strlen when the pointer s points to an array
David L Kreitzer752c1442016-04-13 14:31:06 +0000428 // of i8. Otherwise, we would need to scale the offset x before doing the
Matthias Braun50ec0b52017-05-19 22:37:09 +0000429 // subtraction. This will make the optimization more complex, and it's not
430 // very useful because calling strlen for a pointer of other types is
David L Kreitzer752c1442016-04-13 14:31:06 +0000431 // very uncommon.
432 if (GEPOperator *GEP = dyn_cast<GEPOperator>(Src)) {
Matthias Braun50ec0b52017-05-19 22:37:09 +0000433 if (!isGEPBasedOnPointerToString(GEP, CharSize))
David L Kreitzer752c1442016-04-13 14:31:06 +0000434 return nullptr;
435
Matthias Braun50ec0b52017-05-19 22:37:09 +0000436 ConstantDataArraySlice Slice;
437 if (getConstantDataArrayInfo(GEP->getOperand(0), Slice, CharSize)) {
438 uint64_t NullTermIdx;
439 if (Slice.Array == nullptr) {
440 NullTermIdx = 0;
441 } else {
442 NullTermIdx = ~((uint64_t)0);
443 for (uint64_t I = 0, E = Slice.Length; I < E; ++I) {
444 if (Slice.Array->getElementAsInteger(I + Slice.Offset) == 0) {
445 NullTermIdx = I;
446 break;
447 }
448 }
449 // If the string does not have '\0', leave it to strlen to compute
450 // its length.
451 if (NullTermIdx == ~((uint64_t)0))
452 return nullptr;
453 }
454
David L Kreitzer752c1442016-04-13 14:31:06 +0000455 Value *Offset = GEP->getOperand(2);
Craig Topper8205a1a2017-05-24 16:53:07 +0000456 KnownBits Known = computeKnownBits(Offset, DL, 0, nullptr, CI, nullptr);
Craig Topperb45eabc2017-04-26 16:39:58 +0000457 Known.Zero.flipAllBits();
Matthias Braun50ec0b52017-05-19 22:37:09 +0000458 uint64_t ArrSize =
David L Kreitzer752c1442016-04-13 14:31:06 +0000459 cast<ArrayType>(GEP->getSourceElementType())->getNumElements();
460
Matthias Braun50ec0b52017-05-19 22:37:09 +0000461 // KnownZero's bits are flipped, so zeros in KnownZero now represent
462 // bits known to be zeros in Offset, and ones in KnowZero represent
David L Kreitzer752c1442016-04-13 14:31:06 +0000463 // bits unknown in Offset. Therefore, Offset is known to be in range
Matthias Braun50ec0b52017-05-19 22:37:09 +0000464 // [0, NullTermIdx] when the flipped KnownZero is non-negative and
David L Kreitzer752c1442016-04-13 14:31:06 +0000465 // unsigned-less-than NullTermIdx.
466 //
Matthias Braun50ec0b52017-05-19 22:37:09 +0000467 // If Offset is not provably in the range [0, NullTermIdx], we can still
468 // optimize if we can prove that the program has undefined behavior when
469 // Offset is outside that range. That is the case when GEP->getOperand(0)
David L Kreitzer752c1442016-04-13 14:31:06 +0000470 // is a pointer to an object whose memory extent is NullTermIdx+1.
Matthias Braun50ec0b52017-05-19 22:37:09 +0000471 if ((Known.Zero.isNonNegative() && Known.Zero.ule(NullTermIdx)) ||
David L Kreitzer752c1442016-04-13 14:31:06 +0000472 (GEP->isInBounds() && isa<GlobalVariable>(GEP->getOperand(0)) &&
Matthias Braun50ec0b52017-05-19 22:37:09 +0000473 NullTermIdx == ArrSize - 1)) {
474 Offset = B.CreateSExtOrTrunc(Offset, CI->getType());
475 return B.CreateSub(ConstantInt::get(CI->getType(), NullTermIdx),
David L Kreitzer752c1442016-04-13 14:31:06 +0000476 Offset);
Matthias Braun50ec0b52017-05-19 22:37:09 +0000477 }
David L Kreitzer752c1442016-04-13 14:31:06 +0000478 }
479
480 return nullptr;
481 }
482
Chris Bienemanad070d02014-09-17 20:55:46 +0000483 // strlen(x?"foo":"bars") --> x ? 3 : 4
484 if (SelectInst *SI = dyn_cast<SelectInst>(Src)) {
Matthias Braun50ec0b52017-05-19 22:37:09 +0000485 uint64_t LenTrue = GetStringLength(SI->getTrueValue(), CharSize);
486 uint64_t LenFalse = GetStringLength(SI->getFalseValue(), CharSize);
Chris Bienemanad070d02014-09-17 20:55:46 +0000487 if (LenTrue && LenFalse) {
Vivek Pandya95906582017-10-11 17:12:59 +0000488 ORE.emit([&]() {
489 return OptimizationRemark("instcombine", "simplify-libcalls", CI)
490 << "folded strlen(select) to select of constants";
491 });
Chris Bienemanad070d02014-09-17 20:55:46 +0000492 return B.CreateSelect(SI->getCondition(),
493 ConstantInt::get(CI->getType(), LenTrue - 1),
494 ConstantInt::get(CI->getType(), LenFalse - 1));
495 }
Meador Inge7fb2f732012-10-13 16:45:32 +0000496 }
Meador Inge7fb2f732012-10-13 16:45:32 +0000497
Chris Bienemanad070d02014-09-17 20:55:46 +0000498 // strlen(x) != 0 --> *x != 0
499 // strlen(x) == 0 --> *x == 0
500 if (isOnlyUsedInZeroEqualityComparison(CI))
501 return B.CreateZExt(B.CreateLoad(Src, "strlenfirst"), CI->getType());
Meador Inge17418502012-10-13 16:45:37 +0000502
Chris Bienemanad070d02014-09-17 20:55:46 +0000503 return nullptr;
504}
Meador Inge17418502012-10-13 16:45:37 +0000505
Matthias Braun50ec0b52017-05-19 22:37:09 +0000506Value *LibCallSimplifier::optimizeStrLen(CallInst *CI, IRBuilder<> &B) {
507 return optimizeStringLength(CI, B, 8);
508}
509
510Value *LibCallSimplifier::optimizeWcslen(CallInst *CI, IRBuilder<> &B) {
511 Module &M = *CI->getParent()->getParent()->getParent();
512 unsigned WCharSize = TLI->getWCharSize(M) * 8;
Matthias Brauncc603ee2017-09-26 02:36:57 +0000513 // We cannot perform this optimization without wchar_size metadata.
514 if (WCharSize == 0)
515 return nullptr;
Matthias Braun50ec0b52017-05-19 22:37:09 +0000516
517 return optimizeStringLength(CI, B, WCharSize);
518}
519
Chris Bienemanad070d02014-09-17 20:55:46 +0000520Value *LibCallSimplifier::optimizeStrPBrk(CallInst *CI, IRBuilder<> &B) {
Chris Bienemanad070d02014-09-17 20:55:46 +0000521 StringRef S1, S2;
522 bool HasS1 = getConstantStringInfo(CI->getArgOperand(0), S1);
523 bool HasS2 = getConstantStringInfo(CI->getArgOperand(1), S2);
Meador Inge17418502012-10-13 16:45:37 +0000524
Reid Kleckner971c3ea2014-11-13 22:55:19 +0000525 // strpbrk(s, "") -> nullptr
526 // strpbrk("", s) -> nullptr
Chris Bienemanad070d02014-09-17 20:55:46 +0000527 if ((HasS1 && S1.empty()) || (HasS2 && S2.empty()))
528 return Constant::getNullValue(CI->getType());
Meador Inge17418502012-10-13 16:45:37 +0000529
Chris Bienemanad070d02014-09-17 20:55:46 +0000530 // Constant folding.
531 if (HasS1 && HasS2) {
532 size_t I = S1.find_first_of(S2);
533 if (I == StringRef::npos) // No match.
Meador Inge17418502012-10-13 16:45:37 +0000534 return Constant::getNullValue(CI->getType());
535
Sanjay Pateld707db92015-12-31 16:10:49 +0000536 return B.CreateGEP(B.getInt8Ty(), CI->getArgOperand(0), B.getInt64(I),
537 "strpbrk");
Meador Inge17418502012-10-13 16:45:37 +0000538 }
Meador Inge17418502012-10-13 16:45:37 +0000539
Chris Bienemanad070d02014-09-17 20:55:46 +0000540 // strpbrk(s, "a") -> strchr(s, 'a')
Mehdi Aminia28d91d2015-03-10 02:37:25 +0000541 if (HasS2 && S2.size() == 1)
Sanjay Pateld3112a52016-01-19 19:46:10 +0000542 return emitStrChr(CI->getArgOperand(0), S2[0], B, TLI);
Chris Bienemanad070d02014-09-17 20:55:46 +0000543
544 return nullptr;
545}
546
547Value *LibCallSimplifier::optimizeStrTo(CallInst *CI, IRBuilder<> &B) {
Chris Bienemanad070d02014-09-17 20:55:46 +0000548 Value *EndPtr = CI->getArgOperand(1);
549 if (isa<ConstantPointerNull>(EndPtr)) {
550 // With a null EndPtr, this function won't capture the main argument.
551 // It would be readonly too, except that it still may write to errno.
Reid Klecknera0b45f42017-05-03 18:17:31 +0000552 CI->addParamAttr(0, Attribute::NoCapture);
Chris Bienemanad070d02014-09-17 20:55:46 +0000553 }
554
555 return nullptr;
556}
557
558Value *LibCallSimplifier::optimizeStrSpn(CallInst *CI, IRBuilder<> &B) {
Chris Bienemanad070d02014-09-17 20:55:46 +0000559 StringRef S1, S2;
560 bool HasS1 = getConstantStringInfo(CI->getArgOperand(0), S1);
561 bool HasS2 = getConstantStringInfo(CI->getArgOperand(1), S2);
562
563 // strspn(s, "") -> 0
564 // strspn("", s) -> 0
565 if ((HasS1 && S1.empty()) || (HasS2 && S2.empty()))
566 return Constant::getNullValue(CI->getType());
567
568 // Constant folding.
569 if (HasS1 && HasS2) {
570 size_t Pos = S1.find_first_not_of(S2);
571 if (Pos == StringRef::npos)
572 Pos = S1.size();
573 return ConstantInt::get(CI->getType(), Pos);
574 }
575
576 return nullptr;
577}
578
579Value *LibCallSimplifier::optimizeStrCSpn(CallInst *CI, IRBuilder<> &B) {
Chris Bienemanad070d02014-09-17 20:55:46 +0000580 StringRef S1, S2;
581 bool HasS1 = getConstantStringInfo(CI->getArgOperand(0), S1);
582 bool HasS2 = getConstantStringInfo(CI->getArgOperand(1), S2);
583
584 // strcspn("", s) -> 0
585 if (HasS1 && S1.empty())
586 return Constant::getNullValue(CI->getType());
587
588 // Constant folding.
589 if (HasS1 && HasS2) {
590 size_t Pos = S1.find_first_of(S2);
591 if (Pos == StringRef::npos)
592 Pos = S1.size();
593 return ConstantInt::get(CI->getType(), Pos);
594 }
595
596 // strcspn(s, "") -> strlen(s)
Mehdi Aminia28d91d2015-03-10 02:37:25 +0000597 if (HasS2 && S2.empty())
Sanjay Pateld3112a52016-01-19 19:46:10 +0000598 return emitStrLen(CI->getArgOperand(0), B, DL, TLI);
Chris Bienemanad070d02014-09-17 20:55:46 +0000599
600 return nullptr;
601}
602
603Value *LibCallSimplifier::optimizeStrStr(CallInst *CI, IRBuilder<> &B) {
Chris Bienemanad070d02014-09-17 20:55:46 +0000604 // fold strstr(x, x) -> x.
605 if (CI->getArgOperand(0) == CI->getArgOperand(1))
606 return B.CreateBitCast(CI->getArgOperand(0), CI->getType());
607
608 // fold strstr(a, b) == a -> strncmp(a, b, strlen(b)) == 0
Mehdi Aminia28d91d2015-03-10 02:37:25 +0000609 if (isOnlyUsedInEqualityComparison(CI, CI->getArgOperand(0))) {
Sanjay Pateld3112a52016-01-19 19:46:10 +0000610 Value *StrLen = emitStrLen(CI->getArgOperand(1), B, DL, TLI);
Chris Bienemanad070d02014-09-17 20:55:46 +0000611 if (!StrLen)
Craig Topperf40110f2014-04-25 05:29:35 +0000612 return nullptr;
Sanjay Pateld3112a52016-01-19 19:46:10 +0000613 Value *StrNCmp = emitStrNCmp(CI->getArgOperand(0), CI->getArgOperand(1),
Chris Bienemanad070d02014-09-17 20:55:46 +0000614 StrLen, B, DL, TLI);
615 if (!StrNCmp)
Craig Topperf40110f2014-04-25 05:29:35 +0000616 return nullptr;
Chris Bienemanad070d02014-09-17 20:55:46 +0000617 for (auto UI = CI->user_begin(), UE = CI->user_end(); UI != UE;) {
618 ICmpInst *Old = cast<ICmpInst>(*UI++);
619 Value *Cmp =
620 B.CreateICmp(Old->getPredicate(), StrNCmp,
621 ConstantInt::getNullValue(StrNCmp->getType()), "cmp");
622 replaceAllUsesWith(Old, Cmp);
Meador Inge17418502012-10-13 16:45:37 +0000623 }
Chris Bienemanad070d02014-09-17 20:55:46 +0000624 return CI;
625 }
Meador Inge17418502012-10-13 16:45:37 +0000626
Chris Bienemanad070d02014-09-17 20:55:46 +0000627 // See if either input string is a constant string.
628 StringRef SearchStr, ToFindStr;
629 bool HasStr1 = getConstantStringInfo(CI->getArgOperand(0), SearchStr);
630 bool HasStr2 = getConstantStringInfo(CI->getArgOperand(1), ToFindStr);
631
632 // fold strstr(x, "") -> x.
633 if (HasStr2 && ToFindStr.empty())
634 return B.CreateBitCast(CI->getArgOperand(0), CI->getType());
635
636 // If both strings are known, constant fold it.
637 if (HasStr1 && HasStr2) {
638 size_t Offset = SearchStr.find(ToFindStr);
639
640 if (Offset == StringRef::npos) // strstr("foo", "bar") -> null
Meador Inge17418502012-10-13 16:45:37 +0000641 return Constant::getNullValue(CI->getType());
642
Chris Bienemanad070d02014-09-17 20:55:46 +0000643 // strstr("abcd", "bc") -> gep((char*)"abcd", 1)
Sanjay Pateld3112a52016-01-19 19:46:10 +0000644 Value *Result = castToCStr(CI->getArgOperand(0), B);
Chris Bienemanad070d02014-09-17 20:55:46 +0000645 Result = B.CreateConstInBoundsGEP1_64(Result, Offset, "strstr");
646 return B.CreateBitCast(Result, CI->getType());
Meador Inge17418502012-10-13 16:45:37 +0000647 }
Meador Inge17418502012-10-13 16:45:37 +0000648
Chris Bienemanad070d02014-09-17 20:55:46 +0000649 // fold strstr(x, "y") -> strchr(x, 'y').
650 if (HasStr2 && ToFindStr.size() == 1) {
Sanjay Pateld3112a52016-01-19 19:46:10 +0000651 Value *StrChr = emitStrChr(CI->getArgOperand(0), ToFindStr[0], B, TLI);
Chris Bienemanad070d02014-09-17 20:55:46 +0000652 return StrChr ? B.CreateBitCast(StrChr, CI->getType()) : nullptr;
653 }
654 return nullptr;
655}
Meador Inge40b6fac2012-10-15 03:47:37 +0000656
Benjamin Kramer691363e2015-03-21 15:36:21 +0000657Value *LibCallSimplifier::optimizeMemChr(CallInst *CI, IRBuilder<> &B) {
Benjamin Kramer691363e2015-03-21 15:36:21 +0000658 Value *SrcStr = CI->getArgOperand(0);
659 ConstantInt *CharC = dyn_cast<ConstantInt>(CI->getArgOperand(1));
660 ConstantInt *LenC = dyn_cast<ConstantInt>(CI->getArgOperand(2));
661
662 // memchr(x, y, 0) -> null
Craig Topper79ab6432017-07-06 18:39:47 +0000663 if (LenC && LenC->isZero())
Benjamin Kramer691363e2015-03-21 15:36:21 +0000664 return Constant::getNullValue(CI->getType());
665
Benjamin Kramer7857d722015-03-21 21:09:33 +0000666 // From now on we need at least constant length and string.
Benjamin Kramer691363e2015-03-21 15:36:21 +0000667 StringRef Str;
Benjamin Kramer7857d722015-03-21 21:09:33 +0000668 if (!LenC || !getConstantStringInfo(SrcStr, Str, 0, /*TrimAtNul=*/false))
Benjamin Kramer691363e2015-03-21 15:36:21 +0000669 return nullptr;
670
671 // Truncate the string to LenC. If Str is smaller than LenC we will still only
672 // scan the string, as reading past the end of it is undefined and we can just
673 // return null if we don't find the char.
674 Str = Str.substr(0, LenC->getZExtValue());
675
Benjamin Kramer7857d722015-03-21 21:09:33 +0000676 // If the char is variable but the input str and length are not we can turn
677 // this memchr call into a simple bit field test. Of course this only works
678 // when the return value is only checked against null.
679 //
680 // It would be really nice to reuse switch lowering here but we can't change
681 // the CFG at this point.
682 //
683 // memchr("\r\n", C, 2) != nullptr -> (C & ((1 << '\r') | (1 << '\n'))) != 0
684 // after bounds check.
685 if (!CharC && !Str.empty() && isOnlyUsedInZeroEqualityComparison(CI)) {
Benjamin Kramerd6aa0ec2015-03-21 22:04:26 +0000686 unsigned char Max =
687 *std::max_element(reinterpret_cast<const unsigned char *>(Str.begin()),
688 reinterpret_cast<const unsigned char *>(Str.end()));
Benjamin Kramer7857d722015-03-21 21:09:33 +0000689
690 // Make sure the bit field we're about to create fits in a register on the
691 // target.
692 // FIXME: On a 64 bit architecture this prevents us from using the
693 // interesting range of alpha ascii chars. We could do better by emitting
694 // two bitfields or shifting the range by 64 if no lower chars are used.
695 if (!DL.fitsInLegalInteger(Max + 1))
696 return nullptr;
697
698 // For the bit field use a power-of-2 type with at least 8 bits to avoid
699 // creating unnecessary illegal types.
700 unsigned char Width = NextPowerOf2(std::max((unsigned char)7, Max));
701
702 // Now build the bit field.
703 APInt Bitfield(Width, 0);
704 for (char C : Str)
705 Bitfield.setBit((unsigned char)C);
706 Value *BitfieldC = B.getInt(Bitfield);
707
708 // First check that the bit field access is within bounds.
709 Value *C = B.CreateZExtOrTrunc(CI->getArgOperand(1), BitfieldC->getType());
710 Value *Bounds = B.CreateICmp(ICmpInst::ICMP_ULT, C, B.getIntN(Width, Width),
711 "memchr.bounds");
712
713 // Create code that checks if the given bit is set in the field.
714 Value *Shl = B.CreateShl(B.getIntN(Width, 1ULL), C);
715 Value *Bits = B.CreateIsNotNull(B.CreateAnd(Shl, BitfieldC), "memchr.bits");
716
717 // Finally merge both checks and cast to pointer type. The inttoptr
718 // implicitly zexts the i1 to intptr type.
719 return B.CreateIntToPtr(B.CreateAnd(Bounds, Bits, "memchr"), CI->getType());
720 }
721
722 // Check if all arguments are constants. If so, we can constant fold.
723 if (!CharC)
724 return nullptr;
725
Benjamin Kramer691363e2015-03-21 15:36:21 +0000726 // Compute the offset.
727 size_t I = Str.find(CharC->getSExtValue() & 0xFF);
728 if (I == StringRef::npos) // Didn't find the char. memchr returns null.
729 return Constant::getNullValue(CI->getType());
730
731 // memchr(s+n,c,l) -> gep(s+n+i,c)
David Blaikie3909da72015-03-30 20:42:56 +0000732 return B.CreateGEP(B.getInt8Ty(), SrcStr, B.getInt64(I), "memchr");
Benjamin Kramer691363e2015-03-21 15:36:21 +0000733}
734
Chris Bienemanad070d02014-09-17 20:55:46 +0000735Value *LibCallSimplifier::optimizeMemCmp(CallInst *CI, IRBuilder<> &B) {
Chris Bienemanad070d02014-09-17 20:55:46 +0000736 Value *LHS = CI->getArgOperand(0), *RHS = CI->getArgOperand(1);
Meador Inge40b6fac2012-10-15 03:47:37 +0000737
Chris Bienemanad070d02014-09-17 20:55:46 +0000738 if (LHS == RHS) // memcmp(s,s,x) -> 0
739 return Constant::getNullValue(CI->getType());
Meador Inge40b6fac2012-10-15 03:47:37 +0000740
Chris Bienemanad070d02014-09-17 20:55:46 +0000741 // Make sure we have a constant length.
742 ConstantInt *LenC = dyn_cast<ConstantInt>(CI->getArgOperand(2));
743 if (!LenC)
Craig Topperf40110f2014-04-25 05:29:35 +0000744 return nullptr;
Chris Bienemanad070d02014-09-17 20:55:46 +0000745
Sanjay Patel70db4242017-06-09 14:22:03 +0000746 uint64_t Len = LenC->getZExtValue();
Chris Bienemanad070d02014-09-17 20:55:46 +0000747 if (Len == 0) // memcmp(s1,s2,0) -> 0
748 return Constant::getNullValue(CI->getType());
749
750 // memcmp(S1,S2,1) -> *(unsigned char*)LHS - *(unsigned char*)RHS
751 if (Len == 1) {
Sanjay Pateld3112a52016-01-19 19:46:10 +0000752 Value *LHSV = B.CreateZExt(B.CreateLoad(castToCStr(LHS, B), "lhsc"),
Chris Bienemanad070d02014-09-17 20:55:46 +0000753 CI->getType(), "lhsv");
Sanjay Pateld3112a52016-01-19 19:46:10 +0000754 Value *RHSV = B.CreateZExt(B.CreateLoad(castToCStr(RHS, B), "rhsc"),
Chris Bienemanad070d02014-09-17 20:55:46 +0000755 CI->getType(), "rhsv");
756 return B.CreateSub(LHSV, RHSV, "chardiff");
Meador Inge40b6fac2012-10-15 03:47:37 +0000757 }
Meador Inge40b6fac2012-10-15 03:47:37 +0000758
Chad Rosierdc655322015-08-28 18:30:18 +0000759 // memcmp(S1,S2,N/8)==0 -> (*(intN_t*)S1 != *(intN_t*)S2)==0
Sanjay Patel82ec8722017-08-21 19:13:14 +0000760 // TODO: The case where both inputs are constants does not need to be limited
761 // to legal integers or equality comparison. See block below this.
Chad Rosierdc655322015-08-28 18:30:18 +0000762 if (DL.isLegalInteger(Len * 8) && isOnlyUsedInZeroEqualityComparison(CI)) {
Chad Rosierdc655322015-08-28 18:30:18 +0000763 IntegerType *IntType = IntegerType::get(CI->getContext(), Len * 8);
764 unsigned PrefAlignment = DL.getPrefTypeAlignment(IntType);
765
Sanjay Patel82ec8722017-08-21 19:13:14 +0000766 // First, see if we can fold either argument to a constant.
767 Value *LHSV = nullptr;
768 if (auto *LHSC = dyn_cast<Constant>(LHS)) {
769 LHSC = ConstantExpr::getBitCast(LHSC, IntType->getPointerTo());
770 LHSV = ConstantFoldLoadFromConstPtr(LHSC, IntType, DL);
771 }
772 Value *RHSV = nullptr;
773 if (auto *RHSC = dyn_cast<Constant>(RHS)) {
774 RHSC = ConstantExpr::getBitCast(RHSC, IntType->getPointerTo());
775 RHSV = ConstantFoldLoadFromConstPtr(RHSC, IntType, DL);
776 }
Chad Rosierdc655322015-08-28 18:30:18 +0000777
Sanjay Patel82ec8722017-08-21 19:13:14 +0000778 // Don't generate unaligned loads. If either source is constant data,
779 // alignment doesn't matter for that source because there is no load.
780 if ((LHSV || getKnownAlignment(LHS, DL, CI) >= PrefAlignment) &&
781 (RHSV || getKnownAlignment(RHS, DL, CI) >= PrefAlignment)) {
782 if (!LHSV) {
783 Type *LHSPtrTy =
784 IntType->getPointerTo(LHS->getType()->getPointerAddressSpace());
785 LHSV = B.CreateLoad(B.CreateBitCast(LHS, LHSPtrTy), "lhsv");
786 }
787 if (!RHSV) {
788 Type *RHSPtrTy =
789 IntType->getPointerTo(RHS->getType()->getPointerAddressSpace());
790 RHSV = B.CreateLoad(B.CreateBitCast(RHS, RHSPtrTy), "rhsv");
791 }
Sanjay Patel7756edf2017-08-21 13:55:49 +0000792 return B.CreateZExt(B.CreateICmpNE(LHSV, RHSV), CI->getType(), "memcmp");
Sanjay Patel707f7862017-08-21 15:16:25 +0000793 }
Chad Rosierdc655322015-08-28 18:30:18 +0000794 }
795
Sanjay Patel82ec8722017-08-21 19:13:14 +0000796 // Constant folding: memcmp(x, y, Len) -> constant (all arguments are const).
797 // TODO: This is limited to i8 arrays.
Chris Bienemanad070d02014-09-17 20:55:46 +0000798 StringRef LHSStr, RHSStr;
799 if (getConstantStringInfo(LHS, LHSStr) &&
800 getConstantStringInfo(RHS, RHSStr)) {
801 // Make sure we're not reading out-of-bounds memory.
802 if (Len > LHSStr.size() || Len > RHSStr.size())
Craig Topperf40110f2014-04-25 05:29:35 +0000803 return nullptr;
Chris Bienemanad070d02014-09-17 20:55:46 +0000804 // Fold the memcmp and normalize the result. This way we get consistent
805 // results across multiple platforms.
806 uint64_t Ret = 0;
807 int Cmp = memcmp(LHSStr.data(), RHSStr.data(), Len);
808 if (Cmp < 0)
809 Ret = -1;
810 else if (Cmp > 0)
811 Ret = 1;
812 return ConstantInt::get(CI->getType(), Ret);
Meador Inge000dbcc2012-10-18 18:12:40 +0000813 }
Meador Inge000dbcc2012-10-18 18:12:40 +0000814
Chris Bienemanad070d02014-09-17 20:55:46 +0000815 return nullptr;
816}
Meador Inge9a6a1902012-10-31 00:20:56 +0000817
Chris Bienemanad070d02014-09-17 20:55:46 +0000818Value *LibCallSimplifier::optimizeMemCpy(CallInst *CI, IRBuilder<> &B) {
Chris Bienemanad070d02014-09-17 20:55:46 +0000819 // memcpy(x, y, n) -> llvm.memcpy(x, y, n, 1)
820 B.CreateMemCpy(CI->getArgOperand(0), CI->getArgOperand(1),
Pete Cooper67cf9a72015-11-19 05:56:52 +0000821 CI->getArgOperand(2), 1);
Chris Bienemanad070d02014-09-17 20:55:46 +0000822 return CI->getArgOperand(0);
823}
Meador Inge05a625a2012-10-31 14:58:26 +0000824
Chris Bienemanad070d02014-09-17 20:55:46 +0000825Value *LibCallSimplifier::optimizeMemMove(CallInst *CI, IRBuilder<> &B) {
Chris Bienemanad070d02014-09-17 20:55:46 +0000826 // memmove(x, y, n) -> llvm.memmove(x, y, n, 1)
827 B.CreateMemMove(CI->getArgOperand(0), CI->getArgOperand(1),
Pete Cooper67cf9a72015-11-19 05:56:52 +0000828 CI->getArgOperand(2), 1);
Chris Bienemanad070d02014-09-17 20:55:46 +0000829 return CI->getArgOperand(0);
830}
Meador Ingebcd88ef72012-11-10 15:16:48 +0000831
Sanjay Patel980b2802016-01-26 16:17:24 +0000832// TODO: Does this belong in BuildLibCalls or should all of those similar
833// functions be moved here?
Reid Klecknerb5180542017-03-21 16:57:19 +0000834static Value *emitCalloc(Value *Num, Value *Size, const AttributeList &Attrs,
Sanjay Patel980b2802016-01-26 16:17:24 +0000835 IRBuilder<> &B, const TargetLibraryInfo &TLI) {
David L. Jonesd21529f2017-01-23 23:16:46 +0000836 LibFunc Func;
Sanjay Patel980b2802016-01-26 16:17:24 +0000837 if (!TLI.getLibFunc("calloc", Func) || !TLI.has(Func))
838 return nullptr;
839
840 Module *M = B.GetInsertBlock()->getModule();
841 const DataLayout &DL = M->getDataLayout();
842 IntegerType *PtrType = DL.getIntPtrType((B.GetInsertBlock()->getContext()));
843 Value *Calloc = M->getOrInsertFunction("calloc", Attrs, B.getInt8PtrTy(),
Serge Guelton59a2d7b2017-04-11 15:01:18 +0000844 PtrType, PtrType);
Sanjay Patel980b2802016-01-26 16:17:24 +0000845 CallInst *CI = B.CreateCall(Calloc, { Num, Size }, "calloc");
846
847 if (const auto *F = dyn_cast<Function>(Calloc->stripPointerCasts()))
848 CI->setCallingConv(F->getCallingConv());
849
850 return CI;
851}
852
853/// Fold memset[_chk](malloc(n), 0, n) --> calloc(1, n).
854static Value *foldMallocMemset(CallInst *Memset, IRBuilder<> &B,
855 const TargetLibraryInfo &TLI) {
856 // This has to be a memset of zeros (bzero).
857 auto *FillValue = dyn_cast<ConstantInt>(Memset->getArgOperand(1));
858 if (!FillValue || FillValue->getZExtValue() != 0)
859 return nullptr;
860
861 // TODO: We should handle the case where the malloc has more than one use.
862 // This is necessary to optimize common patterns such as when the result of
863 // the malloc is checked against null or when a memset intrinsic is used in
864 // place of a memset library call.
865 auto *Malloc = dyn_cast<CallInst>(Memset->getArgOperand(0));
866 if (!Malloc || !Malloc->hasOneUse())
867 return nullptr;
868
869 // Is the inner call really malloc()?
870 Function *InnerCallee = Malloc->getCalledFunction();
Matthias Braunc36a78c2017-04-25 19:44:25 +0000871 if (!InnerCallee)
872 return nullptr;
873
David L. Jonesd21529f2017-01-23 23:16:46 +0000874 LibFunc Func;
Ahmed Bougachad765a822016-04-27 19:04:35 +0000875 if (!TLI.getLibFunc(*InnerCallee, Func) || !TLI.has(Func) ||
David L. Jonesd21529f2017-01-23 23:16:46 +0000876 Func != LibFunc_malloc)
Sanjay Patel980b2802016-01-26 16:17:24 +0000877 return nullptr;
878
Sanjay Patel980b2802016-01-26 16:17:24 +0000879 // The memset must cover the same number of bytes that are malloc'd.
880 if (Memset->getArgOperand(2) != Malloc->getArgOperand(0))
881 return nullptr;
882
883 // Replace the malloc with a calloc. We need the data layout to know what the
884 // actual size of a 'size_t' parameter is.
885 B.SetInsertPoint(Malloc->getParent(), ++Malloc->getIterator());
886 const DataLayout &DL = Malloc->getModule()->getDataLayout();
887 IntegerType *SizeType = DL.getIntPtrType(B.GetInsertBlock()->getContext());
888 Value *Calloc = emitCalloc(ConstantInt::get(SizeType, 1),
889 Malloc->getArgOperand(0), Malloc->getAttributes(),
890 B, TLI);
891 if (!Calloc)
892 return nullptr;
893
894 Malloc->replaceAllUsesWith(Calloc);
895 Malloc->eraseFromParent();
896
897 return Calloc;
898}
899
Chris Bienemanad070d02014-09-17 20:55:46 +0000900Value *LibCallSimplifier::optimizeMemSet(CallInst *CI, IRBuilder<> &B) {
Sanjay Patel980b2802016-01-26 16:17:24 +0000901 if (auto *Calloc = foldMallocMemset(CI, B, *TLI))
902 return Calloc;
903
Chris Bienemanad070d02014-09-17 20:55:46 +0000904 // memset(p, v, n) -> llvm.memset(p, v, n, 1)
905 Value *Val = B.CreateIntCast(CI->getArgOperand(1), B.getInt8Ty(), false);
906 B.CreateMemSet(CI->getArgOperand(0), Val, CI->getArgOperand(2), 1);
907 return CI->getArgOperand(0);
908}
Meador Inged4825782012-11-11 06:49:03 +0000909
Meador Inge193e0352012-11-13 04:16:17 +0000910//===----------------------------------------------------------------------===//
911// Math Library Optimizations
912//===----------------------------------------------------------------------===//
913
Matthias Braund34e4d22014-12-03 21:46:33 +0000914/// Return a variant of Val with float type.
915/// Currently this works in two cases: If Val is an FPExtension of a float
916/// value to something bigger, simply return the operand.
917/// If Val is a ConstantFP but can be converted to a float ConstantFP without
918/// loss of precision do so.
919static Value *valueHasFloatPrecision(Value *Val) {
920 if (FPExtInst *Cast = dyn_cast<FPExtInst>(Val)) {
921 Value *Op = Cast->getOperand(0);
922 if (Op->getType()->isFloatTy())
923 return Op;
924 }
925 if (ConstantFP *Const = dyn_cast<ConstantFP>(Val)) {
926 APFloat F = Const->getValueAPF();
Matthias Braun395a82f2014-12-03 22:10:39 +0000927 bool losesInfo;
Stephan Bergmann17c7f702016-12-14 11:57:17 +0000928 (void)F.convert(APFloat::IEEEsingle(), APFloat::rmNearestTiesToEven,
Matthias Braun395a82f2014-12-03 22:10:39 +0000929 &losesInfo);
930 if (!losesInfo)
Matthias Braund34e4d22014-12-03 21:46:33 +0000931 return ConstantFP::get(Const->getContext(), F);
932 }
933 return nullptr;
934}
935
Sanjay Patel4e971da2016-01-21 18:01:57 +0000936/// Shrink double -> float for unary functions like 'floor'.
937static Value *optimizeUnaryDoubleFP(CallInst *CI, IRBuilder<> &B,
938 bool CheckRetType) {
Chris Bienemanad070d02014-09-17 20:55:46 +0000939 Function *Callee = CI->getCalledFunction();
Ahmed Bougachad765a822016-04-27 19:04:35 +0000940 // We know this libcall has a valid prototype, but we don't know which.
941 if (!CI->getType()->isDoubleTy())
Chris Bienemanad070d02014-09-17 20:55:46 +0000942 return nullptr;
Meador Inge193e0352012-11-13 04:16:17 +0000943
Chris Bienemanad070d02014-09-17 20:55:46 +0000944 if (CheckRetType) {
945 // Check if all the uses for function like 'sin' are converted to float.
946 for (User *U : CI->users()) {
947 FPTruncInst *Cast = dyn_cast<FPTruncInst>(U);
948 if (!Cast || !Cast->getType()->isFloatTy())
949 return nullptr;
Meador Inge193e0352012-11-13 04:16:17 +0000950 }
Meador Inge193e0352012-11-13 04:16:17 +0000951 }
Chris Bienemanad070d02014-09-17 20:55:46 +0000952
953 // If this is something like 'floor((double)floatval)', convert to floorf.
Matthias Braund34e4d22014-12-03 21:46:33 +0000954 Value *V = valueHasFloatPrecision(CI->getArgOperand(0));
955 if (V == nullptr)
Chris Bienemanad070d02014-09-17 20:55:46 +0000956 return nullptr;
Sanjay Patelaa231142015-12-31 21:52:31 +0000957
Andrew Ng1606fc02017-04-25 12:36:14 +0000958 // If call isn't an intrinsic, check that it isn't within a function with the
959 // same name as the float version of this call.
960 //
961 // e.g. inline float expf(float val) { return (float) exp((double) val); }
962 //
963 // A similar such definition exists in the MinGW-w64 math.h header file which
964 // when compiled with -O2 -ffast-math causes the generation of infinite loops
965 // where expf is called.
966 if (!Callee->isIntrinsic()) {
967 const Function *F = CI->getFunction();
968 StringRef FName = F->getName();
969 StringRef CalleeName = Callee->getName();
970 if ((FName.size() == (CalleeName.size() + 1)) &&
971 (FName.back() == 'f') &&
972 FName.startswith(CalleeName))
973 return nullptr;
974 }
975
Sanjay Patelaa231142015-12-31 21:52:31 +0000976 // Propagate fast-math flags from the existing call to the new call.
977 IRBuilder<>::FastMathFlagGuard Guard(B);
Sanjay Patela2528152016-01-12 18:03:37 +0000978 B.setFastMathFlags(CI->getFastMathFlags());
Chris Bienemanad070d02014-09-17 20:55:46 +0000979
980 // floor((double)floatval) -> (double)floorf(floatval)
Sanjay Patel848309d2014-10-23 21:52:45 +0000981 if (Callee->isIntrinsic()) {
Sanjay Patelaf674fb2015-12-14 17:24:23 +0000982 Module *M = CI->getModule();
Pete Cooper9e1d3352015-05-20 17:16:39 +0000983 Intrinsic::ID IID = Callee->getIntrinsicID();
Sanjay Patel848309d2014-10-23 21:52:45 +0000984 Function *F = Intrinsic::getDeclaration(M, IID, B.getFloatTy());
985 V = B.CreateCall(F, V);
986 } else {
987 // The call is a library call rather than an intrinsic.
Sanjay Pateld3112a52016-01-19 19:46:10 +0000988 V = emitUnaryFloatFnCall(V, Callee->getName(), B, Callee->getAttributes());
Sanjay Patel848309d2014-10-23 21:52:45 +0000989 }
990
Chris Bienemanad070d02014-09-17 20:55:46 +0000991 return B.CreateFPExt(V, B.getDoubleTy());
992}
Meador Inge193e0352012-11-13 04:16:17 +0000993
Matt Arsenault954a6242017-01-23 23:55:08 +0000994// Replace a libcall \p CI with a call to intrinsic \p IID
995static Value *replaceUnaryCall(CallInst *CI, IRBuilder<> &B, Intrinsic::ID IID) {
996 // Propagate fast-math flags from the existing call to the new call.
997 IRBuilder<>::FastMathFlagGuard Guard(B);
998 B.setFastMathFlags(CI->getFastMathFlags());
999
1000 Module *M = CI->getModule();
1001 Value *V = CI->getArgOperand(0);
1002 Function *F = Intrinsic::getDeclaration(M, IID, CI->getType());
1003 CallInst *NewCall = B.CreateCall(F, V);
1004 NewCall->takeName(CI);
1005 return NewCall;
1006}
1007
Sanjay Patel4e971da2016-01-21 18:01:57 +00001008/// Shrink double -> float for binary functions like 'fmin/fmax'.
1009static Value *optimizeBinaryDoubleFP(CallInst *CI, IRBuilder<> &B) {
Chris Bienemanad070d02014-09-17 20:55:46 +00001010 Function *Callee = CI->getCalledFunction();
Ahmed Bougachad765a822016-04-27 19:04:35 +00001011 // We know this libcall has a valid prototype, but we don't know which.
1012 if (!CI->getType()->isDoubleTy())
Craig Topperf40110f2014-04-25 05:29:35 +00001013 return nullptr;
Meador Inge193e0352012-11-13 04:16:17 +00001014
Chris Bienemanad070d02014-09-17 20:55:46 +00001015 // If this is something like 'fmin((double)floatval1, (double)floatval2)',
Matthias Braund34e4d22014-12-03 21:46:33 +00001016 // or fmin(1.0, (double)floatval), then we convert it to fminf.
1017 Value *V1 = valueHasFloatPrecision(CI->getArgOperand(0));
1018 if (V1 == nullptr)
1019 return nullptr;
1020 Value *V2 = valueHasFloatPrecision(CI->getArgOperand(1));
1021 if (V2 == nullptr)
Craig Topperf40110f2014-04-25 05:29:35 +00001022 return nullptr;
Chris Bienemanad070d02014-09-17 20:55:46 +00001023
Sanjay Patelbee05ca2015-12-31 23:40:59 +00001024 // Propagate fast-math flags from the existing call to the new call.
1025 IRBuilder<>::FastMathFlagGuard Guard(B);
Sanjay Patela2528152016-01-12 18:03:37 +00001026 B.setFastMathFlags(CI->getFastMathFlags());
Sanjay Patelbee05ca2015-12-31 23:40:59 +00001027
Chris Bienemanad070d02014-09-17 20:55:46 +00001028 // fmin((double)floatval1, (double)floatval2)
Matthias Braund34e4d22014-12-03 21:46:33 +00001029 // -> (double)fminf(floatval1, floatval2)
Sanjay Patel848309d2014-10-23 21:52:45 +00001030 // TODO: Handle intrinsics in the same way as in optimizeUnaryDoubleFP().
Sanjay Pateld3112a52016-01-19 19:46:10 +00001031 Value *V = emitBinaryFloatFnCall(V1, V2, Callee->getName(), B,
Matthias Braund34e4d22014-12-03 21:46:33 +00001032 Callee->getAttributes());
Chris Bienemanad070d02014-09-17 20:55:46 +00001033 return B.CreateFPExt(V, B.getDoubleTy());
1034}
1035
1036Value *LibCallSimplifier::optimizeCos(CallInst *CI, IRBuilder<> &B) {
1037 Function *Callee = CI->getCalledFunction();
1038 Value *Ret = nullptr;
Davide Italianoa3458772015-11-05 19:18:23 +00001039 StringRef Name = Callee->getName();
1040 if (UnsafeFPShrink && Name == "cos" && hasFloatVersion(Name))
Chris Bienemanad070d02014-09-17 20:55:46 +00001041 Ret = optimizeUnaryDoubleFP(CI, B, true);
Bob Wilsond8d92d92013-11-03 06:48:38 +00001042
Chris Bienemanad070d02014-09-17 20:55:46 +00001043 // cos(-x) -> cos(x)
1044 Value *Op1 = CI->getArgOperand(0);
1045 if (BinaryOperator::isFNeg(Op1)) {
1046 BinaryOperator *BinExpr = cast<BinaryOperator>(Op1);
1047 return B.CreateCall(Callee, BinExpr->getOperand(1), "cos");
1048 }
1049 return Ret;
1050}
Bob Wilsond8d92d92013-11-03 06:48:38 +00001051
Weiming Zhao82130722015-12-04 22:00:47 +00001052static Value *getPow(Value *InnerChain[33], unsigned Exp, IRBuilder<> &B) {
1053 // Multiplications calculated using Addition Chains.
1054 // Refer: http://wwwhomes.uni-bielefeld.de/achim/addition_chain.html
1055
1056 assert(Exp != 0 && "Incorrect exponent 0 not handled");
1057
1058 if (InnerChain[Exp])
1059 return InnerChain[Exp];
1060
1061 static const unsigned AddChain[33][2] = {
1062 {0, 0}, // Unused.
1063 {0, 0}, // Unused (base case = pow1).
1064 {1, 1}, // Unused (pre-computed).
1065 {1, 2}, {2, 2}, {2, 3}, {3, 3}, {2, 5}, {4, 4},
1066 {1, 8}, {5, 5}, {1, 10}, {6, 6}, {4, 9}, {7, 7},
1067 {3, 12}, {8, 8}, {8, 9}, {2, 16}, {1, 18}, {10, 10},
1068 {6, 15}, {11, 11}, {3, 20}, {12, 12}, {8, 17}, {13, 13},
1069 {3, 24}, {14, 14}, {4, 25}, {15, 15}, {3, 28}, {16, 16},
1070 };
1071
1072 InnerChain[Exp] = B.CreateFMul(getPow(InnerChain, AddChain[Exp][0], B),
1073 getPow(InnerChain, AddChain[Exp][1], B));
1074 return InnerChain[Exp];
1075}
1076
Chris Bienemanad070d02014-09-17 20:55:46 +00001077Value *LibCallSimplifier::optimizePow(CallInst *CI, IRBuilder<> &B) {
1078 Function *Callee = CI->getCalledFunction();
Chris Bienemanad070d02014-09-17 20:55:46 +00001079 Value *Ret = nullptr;
Davide Italianoa3458772015-11-05 19:18:23 +00001080 StringRef Name = Callee->getName();
1081 if (UnsafeFPShrink && Name == "pow" && hasFloatVersion(Name))
Chris Bienemanad070d02014-09-17 20:55:46 +00001082 Ret = optimizeUnaryDoubleFP(CI, B, true);
Bob Wilsond8d92d92013-11-03 06:48:38 +00001083
Chris Bienemanad070d02014-09-17 20:55:46 +00001084 Value *Op1 = CI->getArgOperand(0), *Op2 = CI->getArgOperand(1);
Davide Italiano27da1312016-08-07 20:27:03 +00001085
1086 // pow(1.0, x) -> 1.0
1087 if (match(Op1, m_SpecificFP(1.0)))
1088 return Op1;
1089 // pow(2.0, x) -> llvm.exp2(x)
1090 if (match(Op1, m_SpecificFP(2.0))) {
1091 Value *Exp2 = Intrinsic::getDeclaration(CI->getModule(), Intrinsic::exp2,
1092 CI->getType());
1093 return B.CreateCall(Exp2, Op2, "exp2");
1094 }
1095
1096 // There's no llvm.exp10 intrinsic yet, but, maybe, some day there will
1097 // be one.
Chris Bienemanad070d02014-09-17 20:55:46 +00001098 if (ConstantFP *Op1C = dyn_cast<ConstantFP>(Op1)) {
Chris Bienemanad070d02014-09-17 20:55:46 +00001099 // pow(10.0, x) -> exp10(x)
1100 if (Op1C->isExactlyValue(10.0) &&
David L. Jonesd21529f2017-01-23 23:16:46 +00001101 hasUnaryFloatFn(TLI, Op1->getType(), LibFunc_exp10, LibFunc_exp10f,
1102 LibFunc_exp10l))
1103 return emitUnaryFloatFnCall(Op2, TLI->getName(LibFunc_exp10), B,
Chris Bienemanad070d02014-09-17 20:55:46 +00001104 Callee->getAttributes());
Bob Wilsond8d92d92013-11-03 06:48:38 +00001105 }
1106
Sanjay Patel6002e782016-01-12 17:30:37 +00001107 // pow(exp(x), y) -> exp(x * y)
Davide Italianoc8a79132015-11-03 20:32:23 +00001108 // pow(exp2(x), y) -> exp2(x * y)
Sanjay Patel6002e782016-01-12 17:30:37 +00001109 // We enable these only with fast-math. Besides rounding differences, the
1110 // transformation changes overflow and underflow behavior quite dramatically.
Davide Italianoc8a79132015-11-03 20:32:23 +00001111 // Example: x = 1000, y = 0.001.
1112 // pow(exp(x), y) = pow(inf, 0.001) = inf, whereas exp(x*y) = exp(1).
Sanjay Patel6002e782016-01-12 17:30:37 +00001113 auto *OpC = dyn_cast<CallInst>(Op1);
1114 if (OpC && OpC->hasUnsafeAlgebra() && CI->hasUnsafeAlgebra()) {
David L. Jonesd21529f2017-01-23 23:16:46 +00001115 LibFunc Func;
Sanjay Patel6002e782016-01-12 17:30:37 +00001116 Function *OpCCallee = OpC->getCalledFunction();
1117 if (OpCCallee && TLI->getLibFunc(OpCCallee->getName(), Func) &&
David L. Jonesd21529f2017-01-23 23:16:46 +00001118 TLI->has(Func) && (Func == LibFunc_exp || Func == LibFunc_exp2)) {
Davide Italianoc8a79132015-11-03 20:32:23 +00001119 IRBuilder<>::FastMathFlagGuard Guard(B);
Sanjay Patela2528152016-01-12 18:03:37 +00001120 B.setFastMathFlags(CI->getFastMathFlags());
Sanjay Patel6002e782016-01-12 17:30:37 +00001121 Value *FMul = B.CreateFMul(OpC->getArgOperand(0), Op2, "mul");
Sanjay Pateld3112a52016-01-19 19:46:10 +00001122 return emitUnaryFloatFnCall(FMul, OpCCallee->getName(), B,
Sanjay Patel6002e782016-01-12 17:30:37 +00001123 OpCCallee->getAttributes());
Davide Italianoc8a79132015-11-03 20:32:23 +00001124 }
1125 }
1126
Chris Bienemanad070d02014-09-17 20:55:46 +00001127 ConstantFP *Op2C = dyn_cast<ConstantFP>(Op2);
1128 if (!Op2C)
1129 return Ret;
1130
1131 if (Op2C->getValueAPF().isZero()) // pow(x, 0.0) -> 1.0
1132 return ConstantFP::get(CI->getType(), 1.0);
1133
Davide Italiano472684e2017-01-09 21:55:23 +00001134 if (Op2C->isExactlyValue(-0.5) &&
David L. Jonesd21529f2017-01-23 23:16:46 +00001135 hasUnaryFloatFn(TLI, Op2->getType(), LibFunc_sqrt, LibFunc_sqrtf,
1136 LibFunc_sqrtl)) {
Davide Italiano472684e2017-01-09 21:55:23 +00001137 // If -ffast-math:
1138 // pow(x, -0.5) -> 1.0 / sqrt(x)
1139 if (CI->hasUnsafeAlgebra()) {
1140 IRBuilder<>::FastMathFlagGuard Guard(B);
1141 B.setFastMathFlags(CI->getFastMathFlags());
1142
Justin Lebarcb9b41d2017-01-27 00:58:03 +00001143 // TODO: If the pow call is an intrinsic, we should lower to the sqrt
1144 // intrinsic, so we match errno semantics. We also should check that the
1145 // target can in fact lower the sqrt intrinsic -- we currently have no way
1146 // to ask this question other than asking whether the target has a sqrt
1147 // libcall, which is a sufficient but not necessary condition.
David L. Jonesd21529f2017-01-23 23:16:46 +00001148 Value *Sqrt = emitUnaryFloatFnCall(Op1, TLI->getName(LibFunc_sqrt), B,
Davide Italiano472684e2017-01-09 21:55:23 +00001149 Callee->getAttributes());
1150
1151 return B.CreateFDiv(ConstantFP::get(CI->getType(), 1.0), Sqrt, "sqrtrecip");
1152 }
1153 }
1154
Chris Bienemanad070d02014-09-17 20:55:46 +00001155 if (Op2C->isExactlyValue(0.5) &&
David L. Jonesd21529f2017-01-23 23:16:46 +00001156 hasUnaryFloatFn(TLI, Op2->getType(), LibFunc_sqrt, LibFunc_sqrtf,
1157 LibFunc_sqrtl)) {
Davide Italianoc5cedd12015-11-18 23:21:32 +00001158
1159 // In -ffast-math, pow(x, 0.5) -> sqrt(x).
Sanjay Patel53ba88d2016-01-12 19:06:35 +00001160 if (CI->hasUnsafeAlgebra()) {
1161 IRBuilder<>::FastMathFlagGuard Guard(B);
1162 B.setFastMathFlags(CI->getFastMathFlags());
Davide Italiano873219c2016-08-10 06:33:32 +00001163
Justin Lebarcb9b41d2017-01-27 00:58:03 +00001164 // TODO: As above, we should lower to the sqrt intrinsic if the pow is an
1165 // intrinsic, to match errno semantics.
David L. Jonesd21529f2017-01-23 23:16:46 +00001166 return emitUnaryFloatFnCall(Op1, TLI->getName(LibFunc_sqrt), B,
Davide Italiano873219c2016-08-10 06:33:32 +00001167 Callee->getAttributes());
Sanjay Patel53ba88d2016-01-12 19:06:35 +00001168 }
Davide Italianoc5cedd12015-11-18 23:21:32 +00001169
Chris Bienemanad070d02014-09-17 20:55:46 +00001170 // Expand pow(x, 0.5) to (x == -infinity ? +infinity : fabs(sqrt(x))).
1171 // This is faster than calling pow, and still handles negative zero
1172 // and negative infinity correctly.
Chris Bienemanad070d02014-09-17 20:55:46 +00001173 // TODO: In finite-only mode, this could be just fabs(sqrt(x)).
1174 Value *Inf = ConstantFP::getInfinity(CI->getType());
1175 Value *NegInf = ConstantFP::getInfinity(CI->getType(), true);
Justin Lebarcb9b41d2017-01-27 00:58:03 +00001176
1177 // TODO: As above, we should lower to the sqrt intrinsic if the pow is an
1178 // intrinsic, to match errno semantics.
Sanjay Pateld3112a52016-01-19 19:46:10 +00001179 Value *Sqrt = emitUnaryFloatFnCall(Op1, "sqrt", B, Callee->getAttributes());
Matt Arsenaultb948b4d2017-01-17 00:30:31 +00001180
1181 Module *M = Callee->getParent();
1182 Function *FabsF = Intrinsic::getDeclaration(M, Intrinsic::fabs,
1183 CI->getType());
1184 Value *FAbs = B.CreateCall(FabsF, Sqrt);
1185
Chris Bienemanad070d02014-09-17 20:55:46 +00001186 Value *FCmp = B.CreateFCmpOEQ(Op1, NegInf);
1187 Value *Sel = B.CreateSelect(FCmp, Inf, FAbs);
1188 return Sel;
Bob Wilsond8d92d92013-11-03 06:48:38 +00001189 }
1190
Chris Bienemanad070d02014-09-17 20:55:46 +00001191 if (Op2C->isExactlyValue(1.0)) // pow(x, 1.0) -> x
1192 return Op1;
1193 if (Op2C->isExactlyValue(2.0)) // pow(x, 2.0) -> x*x
1194 return B.CreateFMul(Op1, Op1, "pow2");
1195 if (Op2C->isExactlyValue(-1.0)) // pow(x, -1.0) -> 1.0/x
1196 return B.CreateFDiv(ConstantFP::get(CI->getType(), 1.0), Op1, "powrecip");
Weiming Zhao82130722015-12-04 22:00:47 +00001197
1198 // In -ffast-math, generate repeated fmul instead of generating pow(x, n).
Sanjay Patel81a63cd2016-01-19 18:15:12 +00001199 if (CI->hasUnsafeAlgebra()) {
Weiming Zhao82130722015-12-04 22:00:47 +00001200 APFloat V = abs(Op2C->getValueAPF());
1201 // We limit to a max of 7 fmul(s). Thus max exponent is 32.
1202 // This transformation applies to integer exponents only.
1203 if (V.compare(APFloat(V.getSemantics(), 32.0)) == APFloat::cmpGreaterThan ||
1204 !V.isInteger())
1205 return nullptr;
1206
Davide Italianof8711f02017-01-10 18:02:05 +00001207 // Propagate fast math flags.
1208 IRBuilder<>::FastMathFlagGuard Guard(B);
1209 B.setFastMathFlags(CI->getFastMathFlags());
1210
Weiming Zhao82130722015-12-04 22:00:47 +00001211 // We will memoize intermediate products of the Addition Chain.
1212 Value *InnerChain[33] = {nullptr};
1213 InnerChain[1] = Op1;
1214 InnerChain[2] = B.CreateFMul(Op1, Op1);
1215
1216 // We cannot readily convert a non-double type (like float) to a double.
1217 // So we first convert V to something which could be converted to double.
1218 bool ignored;
Stephan Bergmann17c7f702016-12-14 11:57:17 +00001219 V.convert(APFloat::IEEEdouble(), APFloat::rmTowardZero, &ignored);
Sanjay Patel81a63cd2016-01-19 18:15:12 +00001220
Weiming Zhao82130722015-12-04 22:00:47 +00001221 Value *FMul = getPow(InnerChain, V.convertToDouble(), B);
1222 // For negative exponents simply compute the reciprocal.
1223 if (Op2C->isNegative())
1224 FMul = B.CreateFDiv(ConstantFP::get(CI->getType(), 1.0), FMul);
1225 return FMul;
1226 }
1227
Chris Bienemanad070d02014-09-17 20:55:46 +00001228 return nullptr;
1229}
Bob Wilsond8d92d92013-11-03 06:48:38 +00001230
Chris Bienemanad070d02014-09-17 20:55:46 +00001231Value *LibCallSimplifier::optimizeExp2(CallInst *CI, IRBuilder<> &B) {
1232 Function *Callee = CI->getCalledFunction();
Chris Bienemanad070d02014-09-17 20:55:46 +00001233 Value *Ret = nullptr;
Davide Italianoa3458772015-11-05 19:18:23 +00001234 StringRef Name = Callee->getName();
1235 if (UnsafeFPShrink && Name == "exp2" && hasFloatVersion(Name))
Chris Bienemanad070d02014-09-17 20:55:46 +00001236 Ret = optimizeUnaryDoubleFP(CI, B, true);
Bob Wilsond8d92d92013-11-03 06:48:38 +00001237
Chris Bienemanad070d02014-09-17 20:55:46 +00001238 Value *Op = CI->getArgOperand(0);
1239 // Turn exp2(sitofp(x)) -> ldexp(1.0, sext(x)) if sizeof(x) <= 32
1240 // Turn exp2(uitofp(x)) -> ldexp(1.0, zext(x)) if sizeof(x) < 32
David L. Jonesd21529f2017-01-23 23:16:46 +00001241 LibFunc LdExp = LibFunc_ldexpl;
Chris Bienemanad070d02014-09-17 20:55:46 +00001242 if (Op->getType()->isFloatTy())
David L. Jonesd21529f2017-01-23 23:16:46 +00001243 LdExp = LibFunc_ldexpf;
Chris Bienemanad070d02014-09-17 20:55:46 +00001244 else if (Op->getType()->isDoubleTy())
David L. Jonesd21529f2017-01-23 23:16:46 +00001245 LdExp = LibFunc_ldexp;
Chris Bienemanad070d02014-09-17 20:55:46 +00001246
1247 if (TLI->has(LdExp)) {
1248 Value *LdExpArg = nullptr;
1249 if (SIToFPInst *OpC = dyn_cast<SIToFPInst>(Op)) {
1250 if (OpC->getOperand(0)->getType()->getPrimitiveSizeInBits() <= 32)
1251 LdExpArg = B.CreateSExt(OpC->getOperand(0), B.getInt32Ty());
1252 } else if (UIToFPInst *OpC = dyn_cast<UIToFPInst>(Op)) {
1253 if (OpC->getOperand(0)->getType()->getPrimitiveSizeInBits() < 32)
1254 LdExpArg = B.CreateZExt(OpC->getOperand(0), B.getInt32Ty());
1255 }
1256
1257 if (LdExpArg) {
1258 Constant *One = ConstantFP::get(CI->getContext(), APFloat(1.0f));
1259 if (!Op->getType()->isFloatTy())
1260 One = ConstantExpr::getFPExtend(One, Op->getType());
1261
Sanjay Patel0e603fc2016-01-21 22:31:18 +00001262 Module *M = CI->getModule();
Mehdi Aminidb11fdf2017-04-06 20:23:57 +00001263 Value *NewCallee =
1264 M->getOrInsertFunction(TLI->getName(LdExp), Op->getType(),
Serge Guelton59a2d7b2017-04-11 15:01:18 +00001265 Op->getType(), B.getInt32Ty());
Sanjay Patel042aed902016-01-21 22:41:16 +00001266 CallInst *CI = B.CreateCall(NewCallee, {One, LdExpArg});
Chris Bienemanad070d02014-09-17 20:55:46 +00001267 if (const Function *F = dyn_cast<Function>(Callee->stripPointerCasts()))
1268 CI->setCallingConv(F->getCallingConv());
1269
1270 return CI;
1271 }
1272 }
1273 return Ret;
1274}
1275
Sanjay Patel57fd1dc2015-08-16 20:18:19 +00001276Value *LibCallSimplifier::optimizeFMinFMax(CallInst *CI, IRBuilder<> &B) {
Sanjay Patel9beec212016-01-21 22:58:01 +00001277 Function *Callee = CI->getCalledFunction();
Sanjay Patel57fd1dc2015-08-16 20:18:19 +00001278 // If we can shrink the call to a float function rather than a double
1279 // function, do that first.
Davide Italianoa3458772015-11-05 19:18:23 +00001280 StringRef Name = Callee->getName();
Sanjay Patelc7ddb7f2016-01-06 00:32:15 +00001281 if ((Name == "fmin" || Name == "fmax") && hasFloatVersion(Name))
1282 if (Value *Ret = optimizeBinaryDoubleFP(CI, B))
Sanjay Patel57fd1dc2015-08-16 20:18:19 +00001283 return Ret;
Sanjay Patel57fd1dc2015-08-16 20:18:19 +00001284
Benjamin Kramerbb70d752015-08-16 21:16:37 +00001285 IRBuilder<>::FastMathFlagGuard Guard(B);
Sanjay Patel57fd1dc2015-08-16 20:18:19 +00001286 FastMathFlags FMF;
Sanjay Patel29095ea2016-01-05 20:46:19 +00001287 if (CI->hasUnsafeAlgebra()) {
Sanjay Patel57fd1dc2015-08-16 20:18:19 +00001288 // Unsafe algebra sets all fast-math-flags to true.
1289 FMF.setUnsafeAlgebra();
1290 } else {
1291 // At a minimum, no-nans-fp-math must be true.
Sanjay Patel29095ea2016-01-05 20:46:19 +00001292 if (!CI->hasNoNaNs())
Sanjay Patel57fd1dc2015-08-16 20:18:19 +00001293 return nullptr;
1294 // No-signed-zeros is implied by the definitions of fmax/fmin themselves:
1295 // "Ideally, fmax would be sensitive to the sign of zero, for example
NAKAMURA Takumi0d725392015-09-07 00:26:54 +00001296 // fmax(-0. 0, +0. 0) would return +0; however, implementation in software
Sanjay Patel57fd1dc2015-08-16 20:18:19 +00001297 // might be impractical."
1298 FMF.setNoSignedZeros();
1299 FMF.setNoNaNs();
1300 }
Sanjay Patela2528152016-01-12 18:03:37 +00001301 B.setFastMathFlags(FMF);
Sanjay Patel57fd1dc2015-08-16 20:18:19 +00001302
1303 // We have a relaxed floating-point environment. We can ignore NaN-handling
1304 // and transform to a compare and select. We do not have to consider errno or
1305 // exceptions, because fmin/fmax do not have those.
1306 Value *Op0 = CI->getArgOperand(0);
1307 Value *Op1 = CI->getArgOperand(1);
1308 Value *Cmp = Callee->getName().startswith("fmin") ?
1309 B.CreateFCmpOLT(Op0, Op1) : B.CreateFCmpOGT(Op0, Op1);
1310 return B.CreateSelect(Cmp, Op0, Op1);
1311}
1312
Davide Italianob8b71332015-11-29 20:58:04 +00001313Value *LibCallSimplifier::optimizeLog(CallInst *CI, IRBuilder<> &B) {
1314 Function *Callee = CI->getCalledFunction();
1315 Value *Ret = nullptr;
1316 StringRef Name = Callee->getName();
1317 if (UnsafeFPShrink && hasFloatVersion(Name))
1318 Ret = optimizeUnaryDoubleFP(CI, B, true);
Davide Italianob8b71332015-11-29 20:58:04 +00001319
Sanjay Patele896ede2016-01-11 23:31:48 +00001320 if (!CI->hasUnsafeAlgebra())
Davide Italianob8b71332015-11-29 20:58:04 +00001321 return Ret;
1322 Value *Op1 = CI->getArgOperand(0);
1323 auto *OpC = dyn_cast<CallInst>(Op1);
Sanjay Patele896ede2016-01-11 23:31:48 +00001324
1325 // The earlier call must also be unsafe in order to do these transforms.
1326 if (!OpC || !OpC->hasUnsafeAlgebra())
Davide Italianob8b71332015-11-29 20:58:04 +00001327 return Ret;
1328
1329 // log(pow(x,y)) -> y*log(x)
1330 // This is only applicable to log, log2, log10.
1331 if (Name != "log" && Name != "log2" && Name != "log10")
1332 return Ret;
1333
1334 IRBuilder<>::FastMathFlagGuard Guard(B);
1335 FastMathFlags FMF;
1336 FMF.setUnsafeAlgebra();
Sanjay Patela2528152016-01-12 18:03:37 +00001337 B.setFastMathFlags(FMF);
Davide Italianob8b71332015-11-29 20:58:04 +00001338
David L. Jonesd21529f2017-01-23 23:16:46 +00001339 LibFunc Func;
Davide Italianob8b71332015-11-29 20:58:04 +00001340 Function *F = OpC->getCalledFunction();
Davide Italiano0b14f292015-11-29 21:58:56 +00001341 if (F && ((TLI->getLibFunc(F->getName(), Func) && TLI->has(Func) &&
David L. Jonesd21529f2017-01-23 23:16:46 +00001342 Func == LibFunc_pow) || F->getIntrinsicID() == Intrinsic::pow))
Davide Italianob8b71332015-11-29 20:58:04 +00001343 return B.CreateFMul(OpC->getArgOperand(1),
Sanjay Pateld3112a52016-01-19 19:46:10 +00001344 emitUnaryFloatFnCall(OpC->getOperand(0), Callee->getName(), B,
Davide Italianob8b71332015-11-29 20:58:04 +00001345 Callee->getAttributes()), "mul");
Davide Italiano1aeed6a2015-11-30 19:36:35 +00001346
1347 // log(exp2(y)) -> y*log(2)
1348 if (F && Name == "log" && TLI->getLibFunc(F->getName(), Func) &&
David L. Jonesd21529f2017-01-23 23:16:46 +00001349 TLI->has(Func) && Func == LibFunc_exp2)
Davide Italiano1aeed6a2015-11-30 19:36:35 +00001350 return B.CreateFMul(
1351 OpC->getArgOperand(0),
Sanjay Pateld3112a52016-01-19 19:46:10 +00001352 emitUnaryFloatFnCall(ConstantFP::get(CI->getType(), 2.0),
Davide Italiano1aeed6a2015-11-30 19:36:35 +00001353 Callee->getName(), B, Callee->getAttributes()),
1354 "logmul");
Davide Italianob8b71332015-11-29 20:58:04 +00001355 return Ret;
1356}
1357
Sanjay Patelc699a612014-10-16 18:48:17 +00001358Value *LibCallSimplifier::optimizeSqrt(CallInst *CI, IRBuilder<> &B) {
1359 Function *Callee = CI->getCalledFunction();
Sanjay Patelc699a612014-10-16 18:48:17 +00001360 Value *Ret = nullptr;
Justin Lebarcb9b41d2017-01-27 00:58:03 +00001361 // TODO: Once we have a way (other than checking for the existince of the
1362 // libcall) to tell whether our target can lower @llvm.sqrt, relax the
1363 // condition below.
David L. Jonesd21529f2017-01-23 23:16:46 +00001364 if (TLI->has(LibFunc_sqrtf) && (Callee->getName() == "sqrt" ||
Justin Lebarcb9b41d2017-01-27 00:58:03 +00001365 Callee->getIntrinsicID() == Intrinsic::sqrt))
Sanjay Patelc699a612014-10-16 18:48:17 +00001366 Ret = optimizeUnaryDoubleFP(CI, B, true);
Sanjay Patel683f2972016-01-11 22:34:19 +00001367
1368 if (!CI->hasUnsafeAlgebra())
Davide Italianoa904e522015-10-29 02:58:44 +00001369 return Ret;
Sanjay Patelc699a612014-10-16 18:48:17 +00001370
Sanjay Patelc2d64612016-01-06 20:52:21 +00001371 Instruction *I = dyn_cast<Instruction>(CI->getArgOperand(0));
1372 if (!I || I->getOpcode() != Instruction::FMul || !I->hasUnsafeAlgebra())
1373 return Ret;
1374
1375 // We're looking for a repeated factor in a multiplication tree,
1376 // so we can do this fold: sqrt(x * x) -> fabs(x);
Sanjay Patel683f2972016-01-11 22:34:19 +00001377 // or this fold: sqrt((x * x) * y) -> fabs(x) * sqrt(y).
Sanjay Patelc2d64612016-01-06 20:52:21 +00001378 Value *Op0 = I->getOperand(0);
1379 Value *Op1 = I->getOperand(1);
1380 Value *RepeatOp = nullptr;
1381 Value *OtherOp = nullptr;
1382 if (Op0 == Op1) {
1383 // Simple match: the operands of the multiply are identical.
1384 RepeatOp = Op0;
1385 } else {
1386 // Look for a more complicated pattern: one of the operands is itself
1387 // a multiply, so search for a common factor in that multiply.
1388 // Note: We don't bother looking any deeper than this first level or for
1389 // variations of this pattern because instcombine's visitFMUL and/or the
1390 // reassociation pass should give us this form.
1391 Value *OtherMul0, *OtherMul1;
1392 if (match(Op0, m_FMul(m_Value(OtherMul0), m_Value(OtherMul1)))) {
1393 // Pattern: sqrt((x * y) * z)
Sanjay Patel6c1ddbb2016-01-11 22:50:36 +00001394 if (OtherMul0 == OtherMul1 &&
1395 cast<Instruction>(Op0)->hasUnsafeAlgebra()) {
Sanjay Patelc2d64612016-01-06 20:52:21 +00001396 // Matched: sqrt((x * x) * z)
1397 RepeatOp = OtherMul0;
1398 OtherOp = Op1;
Sanjay Patelc699a612014-10-16 18:48:17 +00001399 }
1400 }
1401 }
Sanjay Patelc2d64612016-01-06 20:52:21 +00001402 if (!RepeatOp)
1403 return Ret;
1404
1405 // Fast math flags for any created instructions should match the sqrt
1406 // and multiply.
Sanjay Patelc2d64612016-01-06 20:52:21 +00001407 IRBuilder<>::FastMathFlagGuard Guard(B);
Sanjay Patela2528152016-01-12 18:03:37 +00001408 B.setFastMathFlags(I->getFastMathFlags());
Sanjay Patel9f67dad2016-01-11 22:35:39 +00001409
Sanjay Patelc2d64612016-01-06 20:52:21 +00001410 // If we found a repeated factor, hoist it out of the square root and
1411 // replace it with the fabs of that factor.
1412 Module *M = Callee->getParent();
1413 Type *ArgType = I->getType();
1414 Value *Fabs = Intrinsic::getDeclaration(M, Intrinsic::fabs, ArgType);
1415 Value *FabsCall = B.CreateCall(Fabs, RepeatOp, "fabs");
1416 if (OtherOp) {
1417 // If we found a non-repeated factor, we still need to get its square
1418 // root. We then multiply that by the value that was simplified out
1419 // of the square root calculation.
1420 Value *Sqrt = Intrinsic::getDeclaration(M, Intrinsic::sqrt, ArgType);
1421 Value *SqrtCall = B.CreateCall(Sqrt, OtherOp, "sqrt");
1422 return B.CreateFMul(FabsCall, SqrtCall);
1423 }
1424 return FabsCall;
Sanjay Patelc699a612014-10-16 18:48:17 +00001425}
1426
Sanjay Patelcddcd722016-01-06 19:23:35 +00001427// TODO: Generalize to handle any trig function and its inverse.
Davide Italiano51507d22015-11-04 23:36:56 +00001428Value *LibCallSimplifier::optimizeTan(CallInst *CI, IRBuilder<> &B) {
1429 Function *Callee = CI->getCalledFunction();
1430 Value *Ret = nullptr;
Davide Italianoa3458772015-11-05 19:18:23 +00001431 StringRef Name = Callee->getName();
1432 if (UnsafeFPShrink && Name == "tan" && hasFloatVersion(Name))
Davide Italiano51507d22015-11-04 23:36:56 +00001433 Ret = optimizeUnaryDoubleFP(CI, B, true);
Davide Italiano51507d22015-11-04 23:36:56 +00001434
Davide Italiano51507d22015-11-04 23:36:56 +00001435 Value *Op1 = CI->getArgOperand(0);
1436 auto *OpC = dyn_cast<CallInst>(Op1);
1437 if (!OpC)
1438 return Ret;
1439
Sanjay Patelcddcd722016-01-06 19:23:35 +00001440 // Both calls must allow unsafe optimizations in order to remove them.
1441 if (!CI->hasUnsafeAlgebra() || !OpC->hasUnsafeAlgebra())
1442 return Ret;
1443
Davide Italiano51507d22015-11-04 23:36:56 +00001444 // tan(atan(x)) -> x
1445 // tanf(atanf(x)) -> x
1446 // tanl(atanl(x)) -> x
David L. Jonesd21529f2017-01-23 23:16:46 +00001447 LibFunc Func;
Davide Italiano51507d22015-11-04 23:36:56 +00001448 Function *F = OpC->getCalledFunction();
Benjamin Kramerfb419e72015-11-26 09:51:17 +00001449 if (F && TLI->getLibFunc(F->getName(), Func) && TLI->has(Func) &&
David L. Jonesd21529f2017-01-23 23:16:46 +00001450 ((Func == LibFunc_atan && Callee->getName() == "tan") ||
1451 (Func == LibFunc_atanf && Callee->getName() == "tanf") ||
1452 (Func == LibFunc_atanl && Callee->getName() == "tanl")))
Davide Italiano51507d22015-11-04 23:36:56 +00001453 Ret = OpC->getArgOperand(0);
1454 return Ret;
1455}
1456
Sanjay Patel57747212016-01-21 23:38:43 +00001457static bool isTrigLibCall(CallInst *CI) {
Sanjay Patel57747212016-01-21 23:38:43 +00001458 // We can only hope to do anything useful if we can ignore things like errno
1459 // and floating-point exceptions.
Ahmed Bougachad765a822016-04-27 19:04:35 +00001460 // We already checked the prototype.
1461 return CI->hasFnAttr(Attribute::NoUnwind) &&
1462 CI->hasFnAttr(Attribute::ReadNone);
Sanjay Patel57747212016-01-21 23:38:43 +00001463}
1464
Chris Bienemanad070d02014-09-17 20:55:46 +00001465static void insertSinCosCall(IRBuilder<> &B, Function *OrigCallee, Value *Arg,
1466 bool UseFloat, Value *&Sin, Value *&Cos,
Sanjay Patel57747212016-01-21 23:38:43 +00001467 Value *&SinCos) {
1468 Type *ArgTy = Arg->getType();
1469 Type *ResTy;
1470 StringRef Name;
1471
1472 Triple T(OrigCallee->getParent()->getTargetTriple());
1473 if (UseFloat) {
1474 Name = "__sincospif_stret";
1475
1476 assert(T.getArch() != Triple::x86 && "x86 messy and unsupported for now");
1477 // x86_64 can't use {float, float} since that would be returned in both
1478 // xmm0 and xmm1, which isn't what a real struct would do.
1479 ResTy = T.getArch() == Triple::x86_64
Serge Gueltone38003f2017-05-09 19:31:13 +00001480 ? static_cast<Type *>(VectorType::get(ArgTy, 2))
1481 : static_cast<Type *>(StructType::get(ArgTy, ArgTy));
Sanjay Patel57747212016-01-21 23:38:43 +00001482 } else {
1483 Name = "__sincospi_stret";
Serge Gueltone38003f2017-05-09 19:31:13 +00001484 ResTy = StructType::get(ArgTy, ArgTy);
Sanjay Patel57747212016-01-21 23:38:43 +00001485 }
1486
1487 Module *M = OrigCallee->getParent();
Mehdi Aminidb11fdf2017-04-06 20:23:57 +00001488 Value *Callee = M->getOrInsertFunction(Name, OrigCallee->getAttributes(),
Serge Guelton59a2d7b2017-04-11 15:01:18 +00001489 ResTy, ArgTy);
Sanjay Patel57747212016-01-21 23:38:43 +00001490
1491 if (Instruction *ArgInst = dyn_cast<Instruction>(Arg)) {
1492 // If the argument is an instruction, it must dominate all uses so put our
1493 // sincos call there.
1494 B.SetInsertPoint(ArgInst->getParent(), ++ArgInst->getIterator());
1495 } else {
1496 // Otherwise (e.g. for a constant) the beginning of the function is as
1497 // good a place as any.
1498 BasicBlock &EntryBB = B.GetInsertBlock()->getParent()->getEntryBlock();
1499 B.SetInsertPoint(&EntryBB, EntryBB.begin());
1500 }
1501
1502 SinCos = B.CreateCall(Callee, Arg, "sincospi");
1503
1504 if (SinCos->getType()->isStructTy()) {
1505 Sin = B.CreateExtractValue(SinCos, 0, "sinpi");
1506 Cos = B.CreateExtractValue(SinCos, 1, "cospi");
1507 } else {
1508 Sin = B.CreateExtractElement(SinCos, ConstantInt::get(B.getInt32Ty(), 0),
1509 "sinpi");
1510 Cos = B.CreateExtractElement(SinCos, ConstantInt::get(B.getInt32Ty(), 1),
1511 "cospi");
1512 }
1513}
Chris Bienemanad070d02014-09-17 20:55:46 +00001514
1515Value *LibCallSimplifier::optimizeSinCosPi(CallInst *CI, IRBuilder<> &B) {
Chris Bienemanad070d02014-09-17 20:55:46 +00001516 // Make sure the prototype is as expected, otherwise the rest of the
1517 // function is probably invalid and likely to abort.
1518 if (!isTrigLibCall(CI))
1519 return nullptr;
1520
1521 Value *Arg = CI->getArgOperand(0);
1522 SmallVector<CallInst *, 1> SinCalls;
1523 SmallVector<CallInst *, 1> CosCalls;
1524 SmallVector<CallInst *, 1> SinCosCalls;
1525
1526 bool IsFloat = Arg->getType()->isFloatTy();
1527
1528 // Look for all compatible sinpi, cospi and sincospi calls with the same
1529 // argument. If there are enough (in some sense) we can make the
1530 // substitution.
David Majnemerabae6b52016-03-19 04:53:02 +00001531 Function *F = CI->getFunction();
Chris Bienemanad070d02014-09-17 20:55:46 +00001532 for (User *U : Arg->users())
David Majnemerabae6b52016-03-19 04:53:02 +00001533 classifyArgUse(U, F, IsFloat, SinCalls, CosCalls, SinCosCalls);
Chris Bienemanad070d02014-09-17 20:55:46 +00001534
1535 // It's only worthwhile if both sinpi and cospi are actually used.
1536 if (SinCosCalls.empty() && (SinCalls.empty() || CosCalls.empty()))
1537 return nullptr;
1538
1539 Value *Sin, *Cos, *SinCos;
1540 insertSinCosCall(B, CI->getCalledFunction(), Arg, IsFloat, Sin, Cos, SinCos);
1541
Davide Italianof024a562016-12-16 02:28:38 +00001542 auto replaceTrigInsts = [this](SmallVectorImpl<CallInst *> &Calls,
1543 Value *Res) {
1544 for (CallInst *C : Calls)
1545 replaceAllUsesWith(C, Res);
1546 };
1547
Chris Bienemanad070d02014-09-17 20:55:46 +00001548 replaceTrigInsts(SinCalls, Sin);
1549 replaceTrigInsts(CosCalls, Cos);
1550 replaceTrigInsts(SinCosCalls, SinCos);
1551
1552 return nullptr;
1553}
1554
David Majnemerabae6b52016-03-19 04:53:02 +00001555void LibCallSimplifier::classifyArgUse(
1556 Value *Val, Function *F, bool IsFloat,
1557 SmallVectorImpl<CallInst *> &SinCalls,
1558 SmallVectorImpl<CallInst *> &CosCalls,
1559 SmallVectorImpl<CallInst *> &SinCosCalls) {
Chris Bienemanad070d02014-09-17 20:55:46 +00001560 CallInst *CI = dyn_cast<CallInst>(Val);
1561
1562 if (!CI)
1563 return;
1564
David Majnemerabae6b52016-03-19 04:53:02 +00001565 // Don't consider calls in other functions.
1566 if (CI->getFunction() != F)
1567 return;
1568
Chris Bienemanad070d02014-09-17 20:55:46 +00001569 Function *Callee = CI->getCalledFunction();
David L. Jonesd21529f2017-01-23 23:16:46 +00001570 LibFunc Func;
Ahmed Bougachad765a822016-04-27 19:04:35 +00001571 if (!Callee || !TLI->getLibFunc(*Callee, Func) || !TLI->has(Func) ||
Benjamin Kramer89766e52015-11-28 21:43:12 +00001572 !isTrigLibCall(CI))
Chris Bienemanad070d02014-09-17 20:55:46 +00001573 return;
1574
1575 if (IsFloat) {
David L. Jonesd21529f2017-01-23 23:16:46 +00001576 if (Func == LibFunc_sinpif)
Chris Bienemanad070d02014-09-17 20:55:46 +00001577 SinCalls.push_back(CI);
David L. Jonesd21529f2017-01-23 23:16:46 +00001578 else if (Func == LibFunc_cospif)
Chris Bienemanad070d02014-09-17 20:55:46 +00001579 CosCalls.push_back(CI);
David L. Jonesd21529f2017-01-23 23:16:46 +00001580 else if (Func == LibFunc_sincospif_stret)
Chris Bienemanad070d02014-09-17 20:55:46 +00001581 SinCosCalls.push_back(CI);
1582 } else {
David L. Jonesd21529f2017-01-23 23:16:46 +00001583 if (Func == LibFunc_sinpi)
Chris Bienemanad070d02014-09-17 20:55:46 +00001584 SinCalls.push_back(CI);
David L. Jonesd21529f2017-01-23 23:16:46 +00001585 else if (Func == LibFunc_cospi)
Chris Bienemanad070d02014-09-17 20:55:46 +00001586 CosCalls.push_back(CI);
David L. Jonesd21529f2017-01-23 23:16:46 +00001587 else if (Func == LibFunc_sincospi_stret)
Chris Bienemanad070d02014-09-17 20:55:46 +00001588 SinCosCalls.push_back(CI);
1589 }
1590}
1591
Meador Inge7415f842012-11-25 20:45:27 +00001592//===----------------------------------------------------------------------===//
1593// Integer Library Call Optimizations
1594//===----------------------------------------------------------------------===//
1595
Chris Bienemanad070d02014-09-17 20:55:46 +00001596Value *LibCallSimplifier::optimizeFFS(CallInst *CI, IRBuilder<> &B) {
Chris Bienemanad070d02014-09-17 20:55:46 +00001597 // ffs(x) -> x != 0 ? (i32)llvm.cttz(x)+1 : 0
Davide Italiano890e8502016-12-15 23:11:00 +00001598 Value *Op = CI->getArgOperand(0);
Chris Bienemanad070d02014-09-17 20:55:46 +00001599 Type *ArgType = Op->getType();
Davide Italiano890e8502016-12-15 23:11:00 +00001600 Value *F = Intrinsic::getDeclaration(CI->getCalledFunction()->getParent(),
1601 Intrinsic::cttz, ArgType);
Davide Italianoa1953862015-08-13 20:34:26 +00001602 Value *V = B.CreateCall(F, {Op, B.getTrue()}, "cttz");
Chris Bienemanad070d02014-09-17 20:55:46 +00001603 V = B.CreateAdd(V, ConstantInt::get(V->getType(), 1));
1604 V = B.CreateIntCast(V, B.getInt32Ty(), false);
Meador Ingea0b6d872012-11-26 00:24:07 +00001605
Chris Bienemanad070d02014-09-17 20:55:46 +00001606 Value *Cond = B.CreateICmpNE(Op, Constant::getNullValue(ArgType));
1607 return B.CreateSelect(Cond, V, B.getInt32(0));
1608}
Meador Ingea0b6d872012-11-26 00:24:07 +00001609
Davide Italiano85ad36b2016-12-15 23:45:11 +00001610Value *LibCallSimplifier::optimizeFls(CallInst *CI, IRBuilder<> &B) {
1611 // fls(x) -> (i32)(sizeInBits(x) - llvm.ctlz(x, false))
1612 Value *Op = CI->getArgOperand(0);
1613 Type *ArgType = Op->getType();
1614 Value *F = Intrinsic::getDeclaration(CI->getCalledFunction()->getParent(),
1615 Intrinsic::ctlz, ArgType);
1616 Value *V = B.CreateCall(F, {Op, B.getFalse()}, "ctlz");
1617 V = B.CreateSub(ConstantInt::get(V->getType(), ArgType->getIntegerBitWidth()),
1618 V);
1619 return B.CreateIntCast(V, CI->getType(), false);
1620}
1621
Chris Bienemanad070d02014-09-17 20:55:46 +00001622Value *LibCallSimplifier::optimizeAbs(CallInst *CI, IRBuilder<> &B) {
Chris Bienemanad070d02014-09-17 20:55:46 +00001623 // abs(x) -> x >s -1 ? x : -x
1624 Value *Op = CI->getArgOperand(0);
1625 Value *Pos =
1626 B.CreateICmpSGT(Op, Constant::getAllOnesValue(Op->getType()), "ispos");
1627 Value *Neg = B.CreateNeg(Op, "neg");
1628 return B.CreateSelect(Pos, Op, Neg);
1629}
Meador Inge9a59ab62012-11-26 02:31:59 +00001630
Chris Bienemanad070d02014-09-17 20:55:46 +00001631Value *LibCallSimplifier::optimizeIsDigit(CallInst *CI, IRBuilder<> &B) {
Chris Bienemanad070d02014-09-17 20:55:46 +00001632 // isdigit(c) -> (c-'0') <u 10
1633 Value *Op = CI->getArgOperand(0);
1634 Op = B.CreateSub(Op, B.getInt32('0'), "isdigittmp");
1635 Op = B.CreateICmpULT(Op, B.getInt32(10), "isdigit");
1636 return B.CreateZExt(Op, CI->getType());
1637}
Meador Ingea62a39e2012-11-26 03:10:07 +00001638
Chris Bienemanad070d02014-09-17 20:55:46 +00001639Value *LibCallSimplifier::optimizeIsAscii(CallInst *CI, IRBuilder<> &B) {
Chris Bienemanad070d02014-09-17 20:55:46 +00001640 // isascii(c) -> c <u 128
1641 Value *Op = CI->getArgOperand(0);
1642 Op = B.CreateICmpULT(Op, B.getInt32(128), "isascii");
1643 return B.CreateZExt(Op, CI->getType());
1644}
1645
1646Value *LibCallSimplifier::optimizeToAscii(CallInst *CI, IRBuilder<> &B) {
Chris Bienemanad070d02014-09-17 20:55:46 +00001647 // toascii(c) -> c & 0x7f
1648 return B.CreateAnd(CI->getArgOperand(0),
1649 ConstantInt::get(CI->getType(), 0x7F));
1650}
Meador Inge604937d2012-11-26 03:38:52 +00001651
Meador Inge08ca1152012-11-26 20:37:20 +00001652//===----------------------------------------------------------------------===//
1653// Formatting and IO Library Call Optimizations
1654//===----------------------------------------------------------------------===//
1655
Chris Bienemanad070d02014-09-17 20:55:46 +00001656static bool isReportingError(Function *Callee, CallInst *CI, int StreamArg);
Hal Finkel66cd3f12013-11-17 02:06:35 +00001657
Chris Bienemanad070d02014-09-17 20:55:46 +00001658Value *LibCallSimplifier::optimizeErrorReporting(CallInst *CI, IRBuilder<> &B,
1659 int StreamArg) {
Ahmed Bougachad765a822016-04-27 19:04:35 +00001660 Function *Callee = CI->getCalledFunction();
Chris Bienemanad070d02014-09-17 20:55:46 +00001661 // Error reporting calls should be cold, mark them as such.
1662 // This applies even to non-builtin calls: it is only a hint and applies to
1663 // functions that the frontend might not understand as builtins.
Hal Finkel66cd3f12013-11-17 02:06:35 +00001664
Chris Bienemanad070d02014-09-17 20:55:46 +00001665 // This heuristic was suggested in:
1666 // Improving Static Branch Prediction in a Compiler
1667 // Brian L. Deitrich, Ben-Chung Cheng, Wen-mei W. Hwu
1668 // Proceedings of PACT'98, Oct. 1998, IEEE
Chris Bienemanad070d02014-09-17 20:55:46 +00001669 if (!CI->hasFnAttr(Attribute::Cold) &&
1670 isReportingError(Callee, CI, StreamArg)) {
Reid Klecknerb5180542017-03-21 16:57:19 +00001671 CI->addAttribute(AttributeList::FunctionIndex, Attribute::Cold);
Chris Bienemanad070d02014-09-17 20:55:46 +00001672 }
Hal Finkel66cd3f12013-11-17 02:06:35 +00001673
Chris Bienemanad070d02014-09-17 20:55:46 +00001674 return nullptr;
1675}
1676
1677static bool isReportingError(Function *Callee, CallInst *CI, int StreamArg) {
Davide Italiano5b65f122017-04-25 03:48:47 +00001678 if (!Callee || !Callee->isDeclaration())
Chris Bienemanad070d02014-09-17 20:55:46 +00001679 return false;
1680
1681 if (StreamArg < 0)
1682 return true;
1683
1684 // These functions might be considered cold, but only if their stream
1685 // argument is stderr.
1686
1687 if (StreamArg >= (int)CI->getNumArgOperands())
1688 return false;
1689 LoadInst *LI = dyn_cast<LoadInst>(CI->getArgOperand(StreamArg));
1690 if (!LI)
1691 return false;
1692 GlobalVariable *GV = dyn_cast<GlobalVariable>(LI->getPointerOperand());
1693 if (!GV || !GV->isDeclaration())
1694 return false;
1695 return GV->getName() == "stderr";
1696}
1697
1698Value *LibCallSimplifier::optimizePrintFString(CallInst *CI, IRBuilder<> &B) {
1699 // Check for a fixed format string.
1700 StringRef FormatStr;
1701 if (!getConstantStringInfo(CI->getArgOperand(0), FormatStr))
Craig Topperf40110f2014-04-25 05:29:35 +00001702 return nullptr;
Hal Finkel66cd3f12013-11-17 02:06:35 +00001703
Chris Bienemanad070d02014-09-17 20:55:46 +00001704 // Empty format string -> noop.
1705 if (FormatStr.empty()) // Tolerate printf's declared void.
1706 return CI->use_empty() ? (Value *)CI : ConstantInt::get(CI->getType(), 0);
Hal Finkel66cd3f12013-11-17 02:06:35 +00001707
Chris Bienemanad070d02014-09-17 20:55:46 +00001708 // Do not do any of the following transformations if the printf return value
1709 // is used, in general the printf return value is not compatible with either
1710 // putchar() or puts().
1711 if (!CI->use_empty())
Craig Topperf40110f2014-04-25 05:29:35 +00001712 return nullptr;
Chris Bienemanad070d02014-09-17 20:55:46 +00001713
Joerg Sonnenberger8ffe7ab2016-05-09 14:36:16 +00001714 // printf("x") -> putchar('x'), even for "%" and "%%".
1715 if (FormatStr.size() == 1 || FormatStr == "%%")
Davide Italianod4f5a052016-04-03 01:46:52 +00001716 return emitPutChar(B.getInt32(FormatStr[0]), B, TLI);
Meador Inge08ca1152012-11-26 20:37:20 +00001717
Davide Italiano6db1dcb2016-03-28 15:54:01 +00001718 // printf("%s", "a") --> putchar('a')
1719 if (FormatStr == "%s" && CI->getNumArgOperands() > 1) {
1720 StringRef ChrStr;
1721 if (!getConstantStringInfo(CI->getOperand(1), ChrStr))
1722 return nullptr;
1723 if (ChrStr.size() != 1)
1724 return nullptr;
Davide Italianod4f5a052016-04-03 01:46:52 +00001725 return emitPutChar(B.getInt32(ChrStr[0]), B, TLI);
Davide Italiano6db1dcb2016-03-28 15:54:01 +00001726 }
1727
Chris Bienemanad070d02014-09-17 20:55:46 +00001728 // printf("foo\n") --> puts("foo")
1729 if (FormatStr[FormatStr.size() - 1] == '\n' &&
1730 FormatStr.find('%') == StringRef::npos) { // No format characters.
1731 // Create a string literal with no \n on it. We expect the constant merge
1732 // pass to be run after this pass, to merge duplicate strings.
1733 FormatStr = FormatStr.drop_back();
1734 Value *GV = B.CreateGlobalString(FormatStr, "str");
Davide Italianod4f5a052016-04-03 01:46:52 +00001735 return emitPutS(GV, B, TLI);
Chris Bienemanad070d02014-09-17 20:55:46 +00001736 }
Meador Inge08ca1152012-11-26 20:37:20 +00001737
Chris Bienemanad070d02014-09-17 20:55:46 +00001738 // Optimize specific format strings.
1739 // printf("%c", chr) --> putchar(chr)
1740 if (FormatStr == "%c" && CI->getNumArgOperands() > 1 &&
Davide Italianod4f5a052016-04-03 01:46:52 +00001741 CI->getArgOperand(1)->getType()->isIntegerTy())
1742 return emitPutChar(CI->getArgOperand(1), B, TLI);
Chris Bienemanad070d02014-09-17 20:55:46 +00001743
1744 // printf("%s\n", str) --> puts(str)
1745 if (FormatStr == "%s\n" && CI->getNumArgOperands() > 1 &&
Davide Italianod4f5a052016-04-03 01:46:52 +00001746 CI->getArgOperand(1)->getType()->isPointerTy())
Sanjay Pateld3112a52016-01-19 19:46:10 +00001747 return emitPutS(CI->getArgOperand(1), B, TLI);
Chris Bienemanad070d02014-09-17 20:55:46 +00001748 return nullptr;
1749}
1750
1751Value *LibCallSimplifier::optimizePrintF(CallInst *CI, IRBuilder<> &B) {
1752
1753 Function *Callee = CI->getCalledFunction();
Chris Bienemanad070d02014-09-17 20:55:46 +00001754 FunctionType *FT = Callee->getFunctionType();
Chris Bienemanad070d02014-09-17 20:55:46 +00001755 if (Value *V = optimizePrintFString(CI, B)) {
1756 return V;
1757 }
1758
1759 // printf(format, ...) -> iprintf(format, ...) if no floating point
1760 // arguments.
David L. Jonesd21529f2017-01-23 23:16:46 +00001761 if (TLI->has(LibFunc_iprintf) && !callHasFloatingPointArgument(CI)) {
Chris Bienemanad070d02014-09-17 20:55:46 +00001762 Module *M = B.GetInsertBlock()->getParent()->getParent();
1763 Constant *IPrintFFn =
Meador Inge08ca1152012-11-26 20:37:20 +00001764 M->getOrInsertFunction("iprintf", FT, Callee->getAttributes());
Chris Bienemanad070d02014-09-17 20:55:46 +00001765 CallInst *New = cast<CallInst>(CI->clone());
1766 New->setCalledFunction(IPrintFFn);
1767 B.Insert(New);
1768 return New;
Meador Inge08ca1152012-11-26 20:37:20 +00001769 }
Chris Bienemanad070d02014-09-17 20:55:46 +00001770 return nullptr;
1771}
Meador Inge08ca1152012-11-26 20:37:20 +00001772
Chris Bienemanad070d02014-09-17 20:55:46 +00001773Value *LibCallSimplifier::optimizeSPrintFString(CallInst *CI, IRBuilder<> &B) {
1774 // Check for a fixed format string.
1775 StringRef FormatStr;
1776 if (!getConstantStringInfo(CI->getArgOperand(1), FormatStr))
Craig Topperf40110f2014-04-25 05:29:35 +00001777 return nullptr;
Meador Inge25c9b3b2012-11-27 05:57:54 +00001778
Chris Bienemanad070d02014-09-17 20:55:46 +00001779 // If we just have a format string (nothing else crazy) transform it.
1780 if (CI->getNumArgOperands() == 2) {
1781 // Make sure there's no % in the constant array. We could try to handle
1782 // %% -> % in the future if we cared.
1783 for (unsigned i = 0, e = FormatStr.size(); i != e; ++i)
1784 if (FormatStr[i] == '%')
1785 return nullptr; // we found a format specifier, bail out.
Hal Finkel66cd3f12013-11-17 02:06:35 +00001786
Chris Bienemanad070d02014-09-17 20:55:46 +00001787 // sprintf(str, fmt) -> llvm.memcpy(str, fmt, strlen(fmt)+1, 1)
Mehdi Aminia28d91d2015-03-10 02:37:25 +00001788 B.CreateMemCpy(CI->getArgOperand(0), CI->getArgOperand(1),
1789 ConstantInt::get(DL.getIntPtrType(CI->getContext()),
1790 FormatStr.size() + 1),
Pete Cooper67cf9a72015-11-19 05:56:52 +00001791 1); // Copy the null byte.
Chris Bienemanad070d02014-09-17 20:55:46 +00001792 return ConstantInt::get(CI->getType(), FormatStr.size());
Meador Ingef8e72502012-11-29 15:45:43 +00001793 }
Meador Ingef8e72502012-11-29 15:45:43 +00001794
Chris Bienemanad070d02014-09-17 20:55:46 +00001795 // The remaining optimizations require the format string to be "%s" or "%c"
1796 // and have an extra operand.
1797 if (FormatStr.size() != 2 || FormatStr[0] != '%' ||
1798 CI->getNumArgOperands() < 3)
Craig Topperf40110f2014-04-25 05:29:35 +00001799 return nullptr;
Meador Inge75798bb2012-11-29 19:15:17 +00001800
Chris Bienemanad070d02014-09-17 20:55:46 +00001801 // Decode the second character of the format string.
1802 if (FormatStr[1] == 'c') {
1803 // sprintf(dst, "%c", chr) --> *(i8*)dst = chr; *((i8*)dst+1) = 0
1804 if (!CI->getArgOperand(2)->getType()->isIntegerTy())
1805 return nullptr;
1806 Value *V = B.CreateTrunc(CI->getArgOperand(2), B.getInt8Ty(), "char");
Sanjay Pateld3112a52016-01-19 19:46:10 +00001807 Value *Ptr = castToCStr(CI->getArgOperand(0), B);
Chris Bienemanad070d02014-09-17 20:55:46 +00001808 B.CreateStore(V, Ptr);
David Blaikie3909da72015-03-30 20:42:56 +00001809 Ptr = B.CreateGEP(B.getInt8Ty(), Ptr, B.getInt32(1), "nul");
Chris Bienemanad070d02014-09-17 20:55:46 +00001810 B.CreateStore(B.getInt8(0), Ptr);
Meador Ingedf796f82012-10-13 16:45:24 +00001811
Chris Bienemanad070d02014-09-17 20:55:46 +00001812 return ConstantInt::get(CI->getType(), 1);
Meador Ingedf796f82012-10-13 16:45:24 +00001813 }
1814
Chris Bienemanad070d02014-09-17 20:55:46 +00001815 if (FormatStr[1] == 's') {
Chris Bienemanad070d02014-09-17 20:55:46 +00001816 // sprintf(dest, "%s", str) -> llvm.memcpy(dest, str, strlen(str)+1, 1)
1817 if (!CI->getArgOperand(2)->getType()->isPointerTy())
1818 return nullptr;
1819
Sanjay Pateld3112a52016-01-19 19:46:10 +00001820 Value *Len = emitStrLen(CI->getArgOperand(2), B, DL, TLI);
Chris Bienemanad070d02014-09-17 20:55:46 +00001821 if (!Len)
1822 return nullptr;
David Majnemerabb9f552016-04-26 21:04:47 +00001823 Value *IncLen =
1824 B.CreateAdd(Len, ConstantInt::get(Len->getType(), 1), "leninc");
1825 B.CreateMemCpy(CI->getArgOperand(0), CI->getArgOperand(2), IncLen, 1);
Chris Bienemanad070d02014-09-17 20:55:46 +00001826
1827 // The sprintf result is the unincremented number of bytes in the string.
1828 return B.CreateIntCast(Len, CI->getType(), false);
1829 }
1830 return nullptr;
1831}
1832
1833Value *LibCallSimplifier::optimizeSPrintF(CallInst *CI, IRBuilder<> &B) {
1834 Function *Callee = CI->getCalledFunction();
Chris Bienemanad070d02014-09-17 20:55:46 +00001835 FunctionType *FT = Callee->getFunctionType();
Chris Bienemanad070d02014-09-17 20:55:46 +00001836 if (Value *V = optimizeSPrintFString(CI, B)) {
1837 return V;
1838 }
1839
1840 // sprintf(str, format, ...) -> siprintf(str, format, ...) if no floating
1841 // point arguments.
David L. Jonesd21529f2017-01-23 23:16:46 +00001842 if (TLI->has(LibFunc_siprintf) && !callHasFloatingPointArgument(CI)) {
Chris Bienemanad070d02014-09-17 20:55:46 +00001843 Module *M = B.GetInsertBlock()->getParent()->getParent();
1844 Constant *SIPrintFFn =
1845 M->getOrInsertFunction("siprintf", FT, Callee->getAttributes());
1846 CallInst *New = cast<CallInst>(CI->clone());
1847 New->setCalledFunction(SIPrintFFn);
1848 B.Insert(New);
1849 return New;
1850 }
1851 return nullptr;
1852}
1853
1854Value *LibCallSimplifier::optimizeFPrintFString(CallInst *CI, IRBuilder<> &B) {
1855 optimizeErrorReporting(CI, B, 0);
1856
1857 // All the optimizations depend on the format string.
1858 StringRef FormatStr;
1859 if (!getConstantStringInfo(CI->getArgOperand(1), FormatStr))
1860 return nullptr;
1861
1862 // Do not do any of the following transformations if the fprintf return
1863 // value is used, in general the fprintf return value is not compatible
1864 // with fwrite(), fputc() or fputs().
1865 if (!CI->use_empty())
1866 return nullptr;
1867
1868 // fprintf(F, "foo") --> fwrite("foo", 3, 1, F)
1869 if (CI->getNumArgOperands() == 2) {
1870 for (unsigned i = 0, e = FormatStr.size(); i != e; ++i)
1871 if (FormatStr[i] == '%') // Could handle %% -> % if we cared.
1872 return nullptr; // We found a format specifier.
1873
Sanjay Pateld3112a52016-01-19 19:46:10 +00001874 return emitFWrite(
Chris Bienemanad070d02014-09-17 20:55:46 +00001875 CI->getArgOperand(1),
Mehdi Aminia28d91d2015-03-10 02:37:25 +00001876 ConstantInt::get(DL.getIntPtrType(CI->getContext()), FormatStr.size()),
Chris Bienemanad070d02014-09-17 20:55:46 +00001877 CI->getArgOperand(0), B, DL, TLI);
1878 }
1879
1880 // The remaining optimizations require the format string to be "%s" or "%c"
1881 // and have an extra operand.
1882 if (FormatStr.size() != 2 || FormatStr[0] != '%' ||
1883 CI->getNumArgOperands() < 3)
1884 return nullptr;
1885
1886 // Decode the second character of the format string.
1887 if (FormatStr[1] == 'c') {
1888 // fprintf(F, "%c", chr) --> fputc(chr, F)
1889 if (!CI->getArgOperand(2)->getType()->isIntegerTy())
1890 return nullptr;
Sanjay Pateld3112a52016-01-19 19:46:10 +00001891 return emitFPutC(CI->getArgOperand(2), CI->getArgOperand(0), B, TLI);
Chris Bienemanad070d02014-09-17 20:55:46 +00001892 }
1893
1894 if (FormatStr[1] == 's') {
1895 // fprintf(F, "%s", str) --> fputs(str, F)
1896 if (!CI->getArgOperand(2)->getType()->isPointerTy())
1897 return nullptr;
Sanjay Pateld3112a52016-01-19 19:46:10 +00001898 return emitFPutS(CI->getArgOperand(2), CI->getArgOperand(0), B, TLI);
Chris Bienemanad070d02014-09-17 20:55:46 +00001899 }
1900 return nullptr;
1901}
1902
1903Value *LibCallSimplifier::optimizeFPrintF(CallInst *CI, IRBuilder<> &B) {
1904 Function *Callee = CI->getCalledFunction();
Chris Bienemanad070d02014-09-17 20:55:46 +00001905 FunctionType *FT = Callee->getFunctionType();
Chris Bienemanad070d02014-09-17 20:55:46 +00001906 if (Value *V = optimizeFPrintFString(CI, B)) {
1907 return V;
1908 }
1909
1910 // fprintf(stream, format, ...) -> fiprintf(stream, format, ...) if no
1911 // floating point arguments.
David L. Jonesd21529f2017-01-23 23:16:46 +00001912 if (TLI->has(LibFunc_fiprintf) && !callHasFloatingPointArgument(CI)) {
Chris Bienemanad070d02014-09-17 20:55:46 +00001913 Module *M = B.GetInsertBlock()->getParent()->getParent();
1914 Constant *FIPrintFFn =
1915 M->getOrInsertFunction("fiprintf", FT, Callee->getAttributes());
1916 CallInst *New = cast<CallInst>(CI->clone());
1917 New->setCalledFunction(FIPrintFFn);
1918 B.Insert(New);
1919 return New;
1920 }
1921 return nullptr;
1922}
1923
1924Value *LibCallSimplifier::optimizeFWrite(CallInst *CI, IRBuilder<> &B) {
1925 optimizeErrorReporting(CI, B, 3);
1926
Chris Bienemanad070d02014-09-17 20:55:46 +00001927 // Get the element size and count.
1928 ConstantInt *SizeC = dyn_cast<ConstantInt>(CI->getArgOperand(1));
1929 ConstantInt *CountC = dyn_cast<ConstantInt>(CI->getArgOperand(2));
1930 if (!SizeC || !CountC)
1931 return nullptr;
1932 uint64_t Bytes = SizeC->getZExtValue() * CountC->getZExtValue();
1933
1934 // If this is writing zero records, remove the call (it's a noop).
1935 if (Bytes == 0)
1936 return ConstantInt::get(CI->getType(), 0);
1937
1938 // If this is writing one byte, turn it into fputc.
1939 // This optimisation is only valid, if the return value is unused.
1940 if (Bytes == 1 && CI->use_empty()) { // fwrite(S,1,1,F) -> fputc(S[0],F)
Sanjay Pateld3112a52016-01-19 19:46:10 +00001941 Value *Char = B.CreateLoad(castToCStr(CI->getArgOperand(0), B), "char");
1942 Value *NewCI = emitFPutC(Char, CI->getArgOperand(3), B, TLI);
Chris Bienemanad070d02014-09-17 20:55:46 +00001943 return NewCI ? ConstantInt::get(CI->getType(), 1) : nullptr;
1944 }
1945
1946 return nullptr;
1947}
1948
1949Value *LibCallSimplifier::optimizeFPuts(CallInst *CI, IRBuilder<> &B) {
1950 optimizeErrorReporting(CI, B, 1);
1951
Sjoerd Meijer7435a912016-07-07 14:31:19 +00001952 // Don't rewrite fputs to fwrite when optimising for size because fwrite
1953 // requires more arguments and thus extra MOVs are required.
1954 if (CI->getParent()->getParent()->optForSize())
1955 return nullptr;
1956
Ahmed Bougachad765a822016-04-27 19:04:35 +00001957 // We can't optimize if return value is used.
1958 if (!CI->use_empty())
Chris Bienemanad070d02014-09-17 20:55:46 +00001959 return nullptr;
1960
1961 // fputs(s,F) --> fwrite(s,1,strlen(s),F)
1962 uint64_t Len = GetStringLength(CI->getArgOperand(0));
1963 if (!Len)
1964 return nullptr;
1965
1966 // Known to have no uses (see above).
Sanjay Pateld3112a52016-01-19 19:46:10 +00001967 return emitFWrite(
Chris Bienemanad070d02014-09-17 20:55:46 +00001968 CI->getArgOperand(0),
Mehdi Aminia28d91d2015-03-10 02:37:25 +00001969 ConstantInt::get(DL.getIntPtrType(CI->getContext()), Len - 1),
Chris Bienemanad070d02014-09-17 20:55:46 +00001970 CI->getArgOperand(1), B, DL, TLI);
1971}
1972
1973Value *LibCallSimplifier::optimizePuts(CallInst *CI, IRBuilder<> &B) {
Chris Bienemanad070d02014-09-17 20:55:46 +00001974 // Check for a constant string.
1975 StringRef Str;
1976 if (!getConstantStringInfo(CI->getArgOperand(0), Str))
1977 return nullptr;
1978
1979 if (Str.empty() && CI->use_empty()) {
1980 // puts("") -> putchar('\n')
Sanjay Pateld3112a52016-01-19 19:46:10 +00001981 Value *Res = emitPutChar(B.getInt32('\n'), B, TLI);
Chris Bienemanad070d02014-09-17 20:55:46 +00001982 if (CI->use_empty() || !Res)
1983 return Res;
1984 return B.CreateIntCast(Res, CI->getType(), true);
1985 }
1986
1987 return nullptr;
1988}
1989
1990bool LibCallSimplifier::hasFloatVersion(StringRef FuncName) {
David L. Jonesd21529f2017-01-23 23:16:46 +00001991 LibFunc Func;
Meador Inge20255ef2013-03-12 00:08:29 +00001992 SmallString<20> FloatFuncName = FuncName;
1993 FloatFuncName += 'f';
1994 if (TLI->getLibFunc(FloatFuncName, Func))
1995 return TLI->has(Func);
1996 return false;
1997}
Meador Inge7fb2f732012-10-13 16:45:32 +00001998
Ahmed Bougacha6722f5e2015-01-12 17:20:06 +00001999Value *LibCallSimplifier::optimizeStringMemoryLibCall(CallInst *CI,
2000 IRBuilder<> &Builder) {
David L. Jonesd21529f2017-01-23 23:16:46 +00002001 LibFunc Func;
Ahmed Bougacha6722f5e2015-01-12 17:20:06 +00002002 Function *Callee = CI->getCalledFunction();
Ahmed Bougacha6722f5e2015-01-12 17:20:06 +00002003 // Check for string/memory library functions.
Ahmed Bougachad765a822016-04-27 19:04:35 +00002004 if (TLI->getLibFunc(*Callee, Func) && TLI->has(Func)) {
Ahmed Bougacha6722f5e2015-01-12 17:20:06 +00002005 // Make sure we never change the calling convention.
2006 assert((ignoreCallingConv(Func) ||
Sam Parker214f7bf2016-09-13 12:10:14 +00002007 isCallingConvCCompatible(CI)) &&
Ahmed Bougacha6722f5e2015-01-12 17:20:06 +00002008 "Optimizing string/memory libcall would change the calling convention");
2009 switch (Func) {
David L. Jonesd21529f2017-01-23 23:16:46 +00002010 case LibFunc_strcat:
Ahmed Bougacha6722f5e2015-01-12 17:20:06 +00002011 return optimizeStrCat(CI, Builder);
David L. Jonesd21529f2017-01-23 23:16:46 +00002012 case LibFunc_strncat:
Ahmed Bougacha6722f5e2015-01-12 17:20:06 +00002013 return optimizeStrNCat(CI, Builder);
David L. Jonesd21529f2017-01-23 23:16:46 +00002014 case LibFunc_strchr:
Ahmed Bougacha6722f5e2015-01-12 17:20:06 +00002015 return optimizeStrChr(CI, Builder);
David L. Jonesd21529f2017-01-23 23:16:46 +00002016 case LibFunc_strrchr:
Ahmed Bougacha6722f5e2015-01-12 17:20:06 +00002017 return optimizeStrRChr(CI, Builder);
David L. Jonesd21529f2017-01-23 23:16:46 +00002018 case LibFunc_strcmp:
Ahmed Bougacha6722f5e2015-01-12 17:20:06 +00002019 return optimizeStrCmp(CI, Builder);
David L. Jonesd21529f2017-01-23 23:16:46 +00002020 case LibFunc_strncmp:
Ahmed Bougacha6722f5e2015-01-12 17:20:06 +00002021 return optimizeStrNCmp(CI, Builder);
David L. Jonesd21529f2017-01-23 23:16:46 +00002022 case LibFunc_strcpy:
Ahmed Bougacha6722f5e2015-01-12 17:20:06 +00002023 return optimizeStrCpy(CI, Builder);
David L. Jonesd21529f2017-01-23 23:16:46 +00002024 case LibFunc_stpcpy:
Ahmed Bougacha6722f5e2015-01-12 17:20:06 +00002025 return optimizeStpCpy(CI, Builder);
David L. Jonesd21529f2017-01-23 23:16:46 +00002026 case LibFunc_strncpy:
Ahmed Bougacha6722f5e2015-01-12 17:20:06 +00002027 return optimizeStrNCpy(CI, Builder);
David L. Jonesd21529f2017-01-23 23:16:46 +00002028 case LibFunc_strlen:
Ahmed Bougacha6722f5e2015-01-12 17:20:06 +00002029 return optimizeStrLen(CI, Builder);
David L. Jonesd21529f2017-01-23 23:16:46 +00002030 case LibFunc_strpbrk:
Ahmed Bougacha6722f5e2015-01-12 17:20:06 +00002031 return optimizeStrPBrk(CI, Builder);
David L. Jonesd21529f2017-01-23 23:16:46 +00002032 case LibFunc_strtol:
2033 case LibFunc_strtod:
2034 case LibFunc_strtof:
2035 case LibFunc_strtoul:
2036 case LibFunc_strtoll:
2037 case LibFunc_strtold:
2038 case LibFunc_strtoull:
Ahmed Bougacha6722f5e2015-01-12 17:20:06 +00002039 return optimizeStrTo(CI, Builder);
David L. Jonesd21529f2017-01-23 23:16:46 +00002040 case LibFunc_strspn:
Ahmed Bougacha6722f5e2015-01-12 17:20:06 +00002041 return optimizeStrSpn(CI, Builder);
David L. Jonesd21529f2017-01-23 23:16:46 +00002042 case LibFunc_strcspn:
Ahmed Bougacha6722f5e2015-01-12 17:20:06 +00002043 return optimizeStrCSpn(CI, Builder);
David L. Jonesd21529f2017-01-23 23:16:46 +00002044 case LibFunc_strstr:
Ahmed Bougacha6722f5e2015-01-12 17:20:06 +00002045 return optimizeStrStr(CI, Builder);
David L. Jonesd21529f2017-01-23 23:16:46 +00002046 case LibFunc_memchr:
Benjamin Kramer691363e2015-03-21 15:36:21 +00002047 return optimizeMemChr(CI, Builder);
David L. Jonesd21529f2017-01-23 23:16:46 +00002048 case LibFunc_memcmp:
Ahmed Bougacha6722f5e2015-01-12 17:20:06 +00002049 return optimizeMemCmp(CI, Builder);
David L. Jonesd21529f2017-01-23 23:16:46 +00002050 case LibFunc_memcpy:
Ahmed Bougacha6722f5e2015-01-12 17:20:06 +00002051 return optimizeMemCpy(CI, Builder);
David L. Jonesd21529f2017-01-23 23:16:46 +00002052 case LibFunc_memmove:
Ahmed Bougacha6722f5e2015-01-12 17:20:06 +00002053 return optimizeMemMove(CI, Builder);
David L. Jonesd21529f2017-01-23 23:16:46 +00002054 case LibFunc_memset:
Ahmed Bougacha6722f5e2015-01-12 17:20:06 +00002055 return optimizeMemSet(CI, Builder);
Matthias Braun50ec0b52017-05-19 22:37:09 +00002056 case LibFunc_wcslen:
2057 return optimizeWcslen(CI, Builder);
Ahmed Bougacha6722f5e2015-01-12 17:20:06 +00002058 default:
2059 break;
2060 }
2061 }
2062 return nullptr;
2063}
2064
Andrew Kaylor53a5fbb2017-08-14 21:15:13 +00002065Value *LibCallSimplifier::optimizeFloatingPointLibCall(CallInst *CI,
2066 LibFunc Func,
2067 IRBuilder<> &Builder) {
2068 // Don't optimize calls that require strict floating point semantics.
2069 if (CI->isStrictFP())
2070 return nullptr;
2071
2072 switch (Func) {
2073 case LibFunc_cosf:
2074 case LibFunc_cos:
2075 case LibFunc_cosl:
2076 return optimizeCos(CI, Builder);
2077 case LibFunc_sinpif:
2078 case LibFunc_sinpi:
2079 case LibFunc_cospif:
2080 case LibFunc_cospi:
2081 return optimizeSinCosPi(CI, Builder);
2082 case LibFunc_powf:
2083 case LibFunc_pow:
2084 case LibFunc_powl:
2085 return optimizePow(CI, Builder);
2086 case LibFunc_exp2l:
2087 case LibFunc_exp2:
2088 case LibFunc_exp2f:
2089 return optimizeExp2(CI, Builder);
2090 case LibFunc_fabsf:
2091 case LibFunc_fabs:
2092 case LibFunc_fabsl:
2093 return replaceUnaryCall(CI, Builder, Intrinsic::fabs);
2094 case LibFunc_sqrtf:
2095 case LibFunc_sqrt:
2096 case LibFunc_sqrtl:
2097 return optimizeSqrt(CI, Builder);
2098 case LibFunc_log:
2099 case LibFunc_log10:
2100 case LibFunc_log1p:
2101 case LibFunc_log2:
2102 case LibFunc_logb:
2103 return optimizeLog(CI, Builder);
2104 case LibFunc_tan:
2105 case LibFunc_tanf:
2106 case LibFunc_tanl:
2107 return optimizeTan(CI, Builder);
2108 case LibFunc_ceil:
2109 return replaceUnaryCall(CI, Builder, Intrinsic::ceil);
2110 case LibFunc_floor:
2111 return replaceUnaryCall(CI, Builder, Intrinsic::floor);
2112 case LibFunc_round:
2113 return replaceUnaryCall(CI, Builder, Intrinsic::round);
2114 case LibFunc_nearbyint:
2115 return replaceUnaryCall(CI, Builder, Intrinsic::nearbyint);
2116 case LibFunc_rint:
2117 return replaceUnaryCall(CI, Builder, Intrinsic::rint);
2118 case LibFunc_trunc:
2119 return replaceUnaryCall(CI, Builder, Intrinsic::trunc);
2120 case LibFunc_acos:
2121 case LibFunc_acosh:
2122 case LibFunc_asin:
2123 case LibFunc_asinh:
2124 case LibFunc_atan:
2125 case LibFunc_atanh:
2126 case LibFunc_cbrt:
2127 case LibFunc_cosh:
2128 case LibFunc_exp:
2129 case LibFunc_exp10:
2130 case LibFunc_expm1:
2131 case LibFunc_sin:
2132 case LibFunc_sinh:
2133 case LibFunc_tanh:
2134 if (UnsafeFPShrink && hasFloatVersion(CI->getCalledFunction()->getName()))
2135 return optimizeUnaryDoubleFP(CI, Builder, true);
2136 return nullptr;
2137 case LibFunc_copysign:
2138 if (hasFloatVersion(CI->getCalledFunction()->getName()))
2139 return optimizeBinaryDoubleFP(CI, Builder);
2140 return nullptr;
2141 case LibFunc_fminf:
2142 case LibFunc_fmin:
2143 case LibFunc_fminl:
2144 case LibFunc_fmaxf:
2145 case LibFunc_fmax:
2146 case LibFunc_fmaxl:
2147 return optimizeFMinFMax(CI, Builder);
2148 default:
2149 return nullptr;
2150 }
2151}
2152
Chris Bienemanad070d02014-09-17 20:55:46 +00002153Value *LibCallSimplifier::optimizeCall(CallInst *CI) {
Andrew Kaylor53a5fbb2017-08-14 21:15:13 +00002154 // TODO: Split out the code below that operates on FP calls so that
2155 // we can all non-FP calls with the StrictFP attribute to be
2156 // optimized.
Chris Bienemanad070d02014-09-17 20:55:46 +00002157 if (CI->isNoBuiltin())
2158 return nullptr;
Meador Inge4d2827c2012-11-11 05:11:20 +00002159
David L. Jonesd21529f2017-01-23 23:16:46 +00002160 LibFunc Func;
Meador Inge20255ef2013-03-12 00:08:29 +00002161 Function *Callee = CI->getCalledFunction();
David Majnemerb70e23c2016-01-06 05:01:34 +00002162
2163 SmallVector<OperandBundleDef, 2> OpBundles;
2164 CI->getOperandBundlesAsDefs(OpBundles);
2165 IRBuilder<> Builder(CI, /*FPMathTag=*/nullptr, OpBundles);
Sam Parker214f7bf2016-09-13 12:10:14 +00002166 bool isCallingConvC = isCallingConvCCompatible(CI);
Meador Inge20255ef2013-03-12 00:08:29 +00002167
Sanjay Pateld1f4f032016-01-19 18:38:52 +00002168 // Command-line parameter overrides instruction attribute.
Andrew Kaylor53a5fbb2017-08-14 21:15:13 +00002169 // This can't be moved to optimizeFloatingPointLibCall() because it may be
2170 // used by the intrinsic optimizations.
Sanjay Patela92fa442014-10-22 15:29:23 +00002171 if (EnableUnsafeFPShrink.getNumOccurrences() > 0)
2172 UnsafeFPShrink = EnableUnsafeFPShrink;
Sanjay Pateld1f4f032016-01-19 18:38:52 +00002173 else if (isa<FPMathOperator>(CI) && CI->hasUnsafeAlgebra())
Davide Italianoa904e522015-10-29 02:58:44 +00002174 UnsafeFPShrink = true;
Sanjay Patela92fa442014-10-22 15:29:23 +00002175
Sanjay Patel848309d2014-10-23 21:52:45 +00002176 // First, check for intrinsics.
Meador Inge20255ef2013-03-12 00:08:29 +00002177 if (IntrinsicInst *II = dyn_cast<IntrinsicInst>(CI)) {
Chris Bienemanad070d02014-09-17 20:55:46 +00002178 if (!isCallingConvC)
2179 return nullptr;
Andrew Kaylor53a5fbb2017-08-14 21:15:13 +00002180 // The FP intrinsics have corresponding constrained versions so we don't
2181 // need to check for the StrictFP attribute here.
Meador Inge20255ef2013-03-12 00:08:29 +00002182 switch (II->getIntrinsicID()) {
2183 case Intrinsic::pow:
Chris Bienemanad070d02014-09-17 20:55:46 +00002184 return optimizePow(CI, Builder);
Meador Inge20255ef2013-03-12 00:08:29 +00002185 case Intrinsic::exp2:
Chris Bienemanad070d02014-09-17 20:55:46 +00002186 return optimizeExp2(CI, Builder);
Davide Italianob8b71332015-11-29 20:58:04 +00002187 case Intrinsic::log:
2188 return optimizeLog(CI, Builder);
Sanjay Patelc699a612014-10-16 18:48:17 +00002189 case Intrinsic::sqrt:
2190 return optimizeSqrt(CI, Builder);
Sanjay Patel980b2802016-01-26 16:17:24 +00002191 // TODO: Use foldMallocMemset() with memset intrinsic.
Meador Inge20255ef2013-03-12 00:08:29 +00002192 default:
Chris Bienemanad070d02014-09-17 20:55:46 +00002193 return nullptr;
Meador Inge20255ef2013-03-12 00:08:29 +00002194 }
2195 }
2196
Ahmed Bougachae03bef72015-01-12 17:22:43 +00002197 // Also try to simplify calls to fortified library functions.
2198 if (Value *SimplifiedFortifiedCI = FortifiedSimplifier.optimizeCall(CI)) {
2199 // Try to further simplify the result.
Ahmed Bougacha71d7b182015-01-14 00:55:05 +00002200 CallInst *SimplifiedCI = dyn_cast<CallInst>(SimplifiedFortifiedCI);
Bruno Cardoso Lopesb491a2d2015-10-01 22:43:53 +00002201 if (SimplifiedCI && SimplifiedCI->getCalledFunction()) {
2202 // Use an IR Builder from SimplifiedCI if available instead of CI
2203 // to guarantee we reach all uses we might replace later on.
2204 IRBuilder<> TmpBuilder(SimplifiedCI);
2205 if (Value *V = optimizeStringMemoryLibCall(SimplifiedCI, TmpBuilder)) {
Ahmed Bougacha1ac93562015-01-27 21:52:16 +00002206 // If we were able to further simplify, remove the now redundant call.
2207 SimplifiedCI->replaceAllUsesWith(V);
2208 SimplifiedCI->eraseFromParent();
Ahmed Bougachae03bef72015-01-12 17:22:43 +00002209 return V;
Ahmed Bougacha1ac93562015-01-27 21:52:16 +00002210 }
Bruno Cardoso Lopesb491a2d2015-10-01 22:43:53 +00002211 }
Ahmed Bougachae03bef72015-01-12 17:22:43 +00002212 return SimplifiedFortifiedCI;
2213 }
2214
Meador Inge20255ef2013-03-12 00:08:29 +00002215 // Then check for known library functions.
Ahmed Bougachad765a822016-04-27 19:04:35 +00002216 if (TLI->getLibFunc(*Callee, Func) && TLI->has(Func)) {
Chris Bienemanad070d02014-09-17 20:55:46 +00002217 // We never change the calling convention.
2218 if (!ignoreCallingConv(Func) && !isCallingConvC)
2219 return nullptr;
Ahmed Bougacha6722f5e2015-01-12 17:20:06 +00002220 if (Value *V = optimizeStringMemoryLibCall(CI, Builder))
2221 return V;
Andrew Kaylor53a5fbb2017-08-14 21:15:13 +00002222 if (Value *V = optimizeFloatingPointLibCall(CI, Func, Builder))
2223 return V;
Meador Inge20255ef2013-03-12 00:08:29 +00002224 switch (Func) {
David L. Jonesd21529f2017-01-23 23:16:46 +00002225 case LibFunc_ffs:
2226 case LibFunc_ffsl:
2227 case LibFunc_ffsll:
Chris Bienemanad070d02014-09-17 20:55:46 +00002228 return optimizeFFS(CI, Builder);
David L. Jonesd21529f2017-01-23 23:16:46 +00002229 case LibFunc_fls:
2230 case LibFunc_flsl:
2231 case LibFunc_flsll:
Davide Italiano85ad36b2016-12-15 23:45:11 +00002232 return optimizeFls(CI, Builder);
David L. Jonesd21529f2017-01-23 23:16:46 +00002233 case LibFunc_abs:
2234 case LibFunc_labs:
2235 case LibFunc_llabs:
Chris Bienemanad070d02014-09-17 20:55:46 +00002236 return optimizeAbs(CI, Builder);
David L. Jonesd21529f2017-01-23 23:16:46 +00002237 case LibFunc_isdigit:
Chris Bienemanad070d02014-09-17 20:55:46 +00002238 return optimizeIsDigit(CI, Builder);
David L. Jonesd21529f2017-01-23 23:16:46 +00002239 case LibFunc_isascii:
Chris Bienemanad070d02014-09-17 20:55:46 +00002240 return optimizeIsAscii(CI, Builder);
David L. Jonesd21529f2017-01-23 23:16:46 +00002241 case LibFunc_toascii:
Chris Bienemanad070d02014-09-17 20:55:46 +00002242 return optimizeToAscii(CI, Builder);
David L. Jonesd21529f2017-01-23 23:16:46 +00002243 case LibFunc_printf:
Chris Bienemanad070d02014-09-17 20:55:46 +00002244 return optimizePrintF(CI, Builder);
David L. Jonesd21529f2017-01-23 23:16:46 +00002245 case LibFunc_sprintf:
Chris Bienemanad070d02014-09-17 20:55:46 +00002246 return optimizeSPrintF(CI, Builder);
David L. Jonesd21529f2017-01-23 23:16:46 +00002247 case LibFunc_fprintf:
Chris Bienemanad070d02014-09-17 20:55:46 +00002248 return optimizeFPrintF(CI, Builder);
David L. Jonesd21529f2017-01-23 23:16:46 +00002249 case LibFunc_fwrite:
Chris Bienemanad070d02014-09-17 20:55:46 +00002250 return optimizeFWrite(CI, Builder);
David L. Jonesd21529f2017-01-23 23:16:46 +00002251 case LibFunc_fputs:
Chris Bienemanad070d02014-09-17 20:55:46 +00002252 return optimizeFPuts(CI, Builder);
David L. Jonesd21529f2017-01-23 23:16:46 +00002253 case LibFunc_puts:
Chris Bienemanad070d02014-09-17 20:55:46 +00002254 return optimizePuts(CI, Builder);
David L. Jonesd21529f2017-01-23 23:16:46 +00002255 case LibFunc_perror:
Chris Bienemanad070d02014-09-17 20:55:46 +00002256 return optimizeErrorReporting(CI, Builder);
David L. Jonesd21529f2017-01-23 23:16:46 +00002257 case LibFunc_vfprintf:
2258 case LibFunc_fiprintf:
Chris Bienemanad070d02014-09-17 20:55:46 +00002259 return optimizeErrorReporting(CI, Builder, 0);
David L. Jonesd21529f2017-01-23 23:16:46 +00002260 case LibFunc_fputc:
Chris Bienemanad070d02014-09-17 20:55:46 +00002261 return optimizeErrorReporting(CI, Builder, 1);
Chris Bienemanad070d02014-09-17 20:55:46 +00002262 default:
2263 return nullptr;
2264 }
Meador Inge20255ef2013-03-12 00:08:29 +00002265 }
Craig Topperf40110f2014-04-25 05:29:35 +00002266 return nullptr;
Meador Ingedf796f82012-10-13 16:45:24 +00002267}
2268
Chandler Carruth92803822015-01-21 02:11:59 +00002269LibCallSimplifier::LibCallSimplifier(
Mehdi Aminia28d91d2015-03-10 02:37:25 +00002270 const DataLayout &DL, const TargetLibraryInfo *TLI,
Adam Nemetea06e6e2017-07-26 19:03:18 +00002271 OptimizationRemarkEmitter &ORE,
Chandler Carruth92803822015-01-21 02:11:59 +00002272 function_ref<void(Instruction *, Value *)> Replacer)
Adam Nemetea06e6e2017-07-26 19:03:18 +00002273 : FortifiedSimplifier(TLI), DL(DL), TLI(TLI), ORE(ORE),
2274 UnsafeFPShrink(false), Replacer(Replacer) {}
Chandler Carruth92803822015-01-21 02:11:59 +00002275
2276void LibCallSimplifier::replaceAllUsesWith(Instruction *I, Value *With) {
2277 // Indirect through the replacer used in this instance.
2278 Replacer(I, With);
Meador Ingedf796f82012-10-13 16:45:24 +00002279}
2280
Meador Ingedfb08a22013-06-20 19:48:07 +00002281// TODO:
2282// Additional cases that we need to add to this file:
2283//
2284// cbrt:
2285// * cbrt(expN(X)) -> expN(x/3)
2286// * cbrt(sqrt(x)) -> pow(x,1/6)
David Majnemer3354fe42015-08-26 18:30:16 +00002287// * cbrt(cbrt(x)) -> pow(x,1/9)
Meador Ingedfb08a22013-06-20 19:48:07 +00002288//
2289// exp, expf, expl:
2290// * exp(log(x)) -> x
2291//
2292// log, logf, logl:
2293// * log(exp(x)) -> x
Meador Ingedfb08a22013-06-20 19:48:07 +00002294// * log(exp(y)) -> y*log(e)
Meador Ingedfb08a22013-06-20 19:48:07 +00002295// * log(exp10(y)) -> y*log(10)
2296// * log(sqrt(x)) -> 0.5*log(x)
Meador Ingedfb08a22013-06-20 19:48:07 +00002297//
Meador Ingedfb08a22013-06-20 19:48:07 +00002298// pow, powf, powl:
Meador Ingedfb08a22013-06-20 19:48:07 +00002299// * pow(sqrt(x),y) -> pow(x,y*0.5)
2300// * pow(pow(x,y),z)-> pow(x,y*z)
2301//
Meador Ingedfb08a22013-06-20 19:48:07 +00002302// signbit:
2303// * signbit(cnst) -> cnst'
2304// * signbit(nncst) -> 0 (if pstv is a non-negative constant)
2305//
2306// sqrt, sqrtf, sqrtl:
2307// * sqrt(expN(x)) -> expN(x*0.5)
2308// * sqrt(Nroot(x)) -> pow(x,1/(2*N))
2309// * sqrt(pow(x,y)) -> pow(|x|,y*0.5)
2310//
Ahmed Bougachae03bef72015-01-12 17:22:43 +00002311
2312//===----------------------------------------------------------------------===//
2313// Fortified Library Call Optimizations
2314//===----------------------------------------------------------------------===//
2315
2316bool FortifiedLibCallSimplifier::isFortifiedCallFoldable(CallInst *CI,
2317 unsigned ObjSizeOp,
2318 unsigned SizeOp,
2319 bool isString) {
2320 if (CI->getArgOperand(ObjSizeOp) == CI->getArgOperand(SizeOp))
2321 return true;
2322 if (ConstantInt *ObjSizeCI =
2323 dyn_cast<ConstantInt>(CI->getArgOperand(ObjSizeOp))) {
Craig Topper79ab6432017-07-06 18:39:47 +00002324 if (ObjSizeCI->isMinusOne())
Ahmed Bougachae03bef72015-01-12 17:22:43 +00002325 return true;
2326 // If the object size wasn't -1 (unknown), bail out if we were asked to.
2327 if (OnlyLowerUnknownSize)
2328 return false;
2329 if (isString) {
2330 uint64_t Len = GetStringLength(CI->getArgOperand(SizeOp));
2331 // If the length is 0 we don't know how long it is and so we can't
2332 // remove the check.
2333 if (Len == 0)
2334 return false;
2335 return ObjSizeCI->getZExtValue() >= Len;
2336 }
2337 if (ConstantInt *SizeCI = dyn_cast<ConstantInt>(CI->getArgOperand(SizeOp)))
2338 return ObjSizeCI->getZExtValue() >= SizeCI->getZExtValue();
2339 }
2340 return false;
2341}
2342
Sanjay Pateld707db92015-12-31 16:10:49 +00002343Value *FortifiedLibCallSimplifier::optimizeMemCpyChk(CallInst *CI,
2344 IRBuilder<> &B) {
Ahmed Bougachae03bef72015-01-12 17:22:43 +00002345 if (isFortifiedCallFoldable(CI, 3, 2, false)) {
2346 B.CreateMemCpy(CI->getArgOperand(0), CI->getArgOperand(1),
Pete Cooper67cf9a72015-11-19 05:56:52 +00002347 CI->getArgOperand(2), 1);
Ahmed Bougachae03bef72015-01-12 17:22:43 +00002348 return CI->getArgOperand(0);
2349 }
2350 return nullptr;
2351}
2352
Sanjay Pateld707db92015-12-31 16:10:49 +00002353Value *FortifiedLibCallSimplifier::optimizeMemMoveChk(CallInst *CI,
2354 IRBuilder<> &B) {
Ahmed Bougachae03bef72015-01-12 17:22:43 +00002355 if (isFortifiedCallFoldable(CI, 3, 2, false)) {
2356 B.CreateMemMove(CI->getArgOperand(0), CI->getArgOperand(1),
Pete Cooper67cf9a72015-11-19 05:56:52 +00002357 CI->getArgOperand(2), 1);
Ahmed Bougachae03bef72015-01-12 17:22:43 +00002358 return CI->getArgOperand(0);
2359 }
2360 return nullptr;
2361}
2362
Sanjay Pateld707db92015-12-31 16:10:49 +00002363Value *FortifiedLibCallSimplifier::optimizeMemSetChk(CallInst *CI,
2364 IRBuilder<> &B) {
Sanjay Patel980b2802016-01-26 16:17:24 +00002365 // TODO: Try foldMallocMemset() here.
2366
Ahmed Bougachae03bef72015-01-12 17:22:43 +00002367 if (isFortifiedCallFoldable(CI, 3, 2, false)) {
2368 Value *Val = B.CreateIntCast(CI->getArgOperand(1), B.getInt8Ty(), false);
2369 B.CreateMemSet(CI->getArgOperand(0), Val, CI->getArgOperand(2), 1);
2370 return CI->getArgOperand(0);
2371 }
2372 return nullptr;
2373}
2374
Ahmed Bougacha1ac93562015-01-27 21:52:16 +00002375Value *FortifiedLibCallSimplifier::optimizeStrpCpyChk(CallInst *CI,
2376 IRBuilder<> &B,
David L. Jonesd21529f2017-01-23 23:16:46 +00002377 LibFunc Func) {
Ahmed Bougachae03bef72015-01-12 17:22:43 +00002378 Function *Callee = CI->getCalledFunction();
2379 StringRef Name = Callee->getName();
Mehdi Aminia28d91d2015-03-10 02:37:25 +00002380 const DataLayout &DL = CI->getModule()->getDataLayout();
Ahmed Bougachae03bef72015-01-12 17:22:43 +00002381 Value *Dst = CI->getArgOperand(0), *Src = CI->getArgOperand(1),
2382 *ObjSize = CI->getArgOperand(2);
2383
2384 // __stpcpy_chk(x,x,...) -> x+strlen(x)
David L. Jonesd21529f2017-01-23 23:16:46 +00002385 if (Func == LibFunc_stpcpy_chk && !OnlyLowerUnknownSize && Dst == Src) {
Sanjay Pateld3112a52016-01-19 19:46:10 +00002386 Value *StrLen = emitStrLen(Src, B, DL, TLI);
David Blaikieaa41cd52015-04-03 21:33:42 +00002387 return StrLen ? B.CreateInBoundsGEP(B.getInt8Ty(), Dst, StrLen) : nullptr;
Ahmed Bougachae03bef72015-01-12 17:22:43 +00002388 }
2389
2390 // If a) we don't have any length information, or b) we know this will
2391 // fit then just lower to a plain st[rp]cpy. Otherwise we'll keep our
2392 // st[rp]cpy_chk call which may fail at runtime if the size is too long.
2393 // TODO: It might be nice to get a maximum length out of the possible
2394 // string lengths for varying.
David Blaikie65fab6d2015-04-03 21:32:06 +00002395 if (isFortifiedCallFoldable(CI, 2, 1, true))
Sanjay Pateld3112a52016-01-19 19:46:10 +00002396 return emitStrCpy(Dst, Src, B, TLI, Name.substr(2, 6));
Ahmed Bougachae03bef72015-01-12 17:22:43 +00002397
David Blaikie65fab6d2015-04-03 21:32:06 +00002398 if (OnlyLowerUnknownSize)
2399 return nullptr;
2400
2401 // Maybe we can stil fold __st[rp]cpy_chk to __memcpy_chk.
2402 uint64_t Len = GetStringLength(Src);
2403 if (Len == 0)
2404 return nullptr;
2405
2406 Type *SizeTTy = DL.getIntPtrType(CI->getContext());
2407 Value *LenV = ConstantInt::get(SizeTTy, Len);
Sanjay Pateld3112a52016-01-19 19:46:10 +00002408 Value *Ret = emitMemCpyChk(Dst, Src, LenV, ObjSize, B, DL, TLI);
David Blaikie65fab6d2015-04-03 21:32:06 +00002409 // If the function was an __stpcpy_chk, and we were able to fold it into
2410 // a __memcpy_chk, we still need to return the correct end pointer.
David L. Jonesd21529f2017-01-23 23:16:46 +00002411 if (Ret && Func == LibFunc_stpcpy_chk)
David Blaikie65fab6d2015-04-03 21:32:06 +00002412 return B.CreateGEP(B.getInt8Ty(), Dst, ConstantInt::get(SizeTTy, Len - 1));
2413 return Ret;
Ahmed Bougachae03bef72015-01-12 17:22:43 +00002414}
2415
Ahmed Bougacha1ac93562015-01-27 21:52:16 +00002416Value *FortifiedLibCallSimplifier::optimizeStrpNCpyChk(CallInst *CI,
2417 IRBuilder<> &B,
David L. Jonesd21529f2017-01-23 23:16:46 +00002418 LibFunc Func) {
Ahmed Bougachae03bef72015-01-12 17:22:43 +00002419 Function *Callee = CI->getCalledFunction();
2420 StringRef Name = Callee->getName();
Ahmed Bougachae03bef72015-01-12 17:22:43 +00002421 if (isFortifiedCallFoldable(CI, 3, 2, false)) {
Sanjay Pateld3112a52016-01-19 19:46:10 +00002422 Value *Ret = emitStrNCpy(CI->getArgOperand(0), CI->getArgOperand(1),
Mehdi Aminia28d91d2015-03-10 02:37:25 +00002423 CI->getArgOperand(2), B, TLI, Name.substr(2, 7));
Ahmed Bougachae03bef72015-01-12 17:22:43 +00002424 return Ret;
2425 }
2426 return nullptr;
2427}
2428
2429Value *FortifiedLibCallSimplifier::optimizeCall(CallInst *CI) {
Ahmed Bougacha408d0102015-04-01 00:45:09 +00002430 // FIXME: We shouldn't be changing "nobuiltin" or TLI unavailable calls here.
2431 // Some clang users checked for _chk libcall availability using:
2432 // __has_builtin(__builtin___memcpy_chk)
2433 // When compiling with -fno-builtin, this is always true.
2434 // When passing -ffreestanding/-mkernel, which both imply -fno-builtin, we
2435 // end up with fortified libcalls, which isn't acceptable in a freestanding
2436 // environment which only provides their non-fortified counterparts.
2437 //
2438 // Until we change clang and/or teach external users to check for availability
2439 // differently, disregard the "nobuiltin" attribute and TLI::has.
2440 //
2441 // PR23093.
Ahmed Bougachae03bef72015-01-12 17:22:43 +00002442
David L. Jonesd21529f2017-01-23 23:16:46 +00002443 LibFunc Func;
Ahmed Bougachae03bef72015-01-12 17:22:43 +00002444 Function *Callee = CI->getCalledFunction();
David Majnemerb70e23c2016-01-06 05:01:34 +00002445
2446 SmallVector<OperandBundleDef, 2> OpBundles;
2447 CI->getOperandBundlesAsDefs(OpBundles);
2448 IRBuilder<> Builder(CI, /*FPMathTag=*/nullptr, OpBundles);
Sam Parker214f7bf2016-09-13 12:10:14 +00002449 bool isCallingConvC = isCallingConvCCompatible(CI);
Ahmed Bougachae03bef72015-01-12 17:22:43 +00002450
Ahmed Bougachad765a822016-04-27 19:04:35 +00002451 // First, check that this is a known library functions and that the prototype
2452 // is correct.
2453 if (!TLI->getLibFunc(*Callee, Func))
Ahmed Bougachae03bef72015-01-12 17:22:43 +00002454 return nullptr;
2455
2456 // We never change the calling convention.
2457 if (!ignoreCallingConv(Func) && !isCallingConvC)
2458 return nullptr;
2459
2460 switch (Func) {
David L. Jonesd21529f2017-01-23 23:16:46 +00002461 case LibFunc_memcpy_chk:
Ahmed Bougachae03bef72015-01-12 17:22:43 +00002462 return optimizeMemCpyChk(CI, Builder);
David L. Jonesd21529f2017-01-23 23:16:46 +00002463 case LibFunc_memmove_chk:
Ahmed Bougachae03bef72015-01-12 17:22:43 +00002464 return optimizeMemMoveChk(CI, Builder);
David L. Jonesd21529f2017-01-23 23:16:46 +00002465 case LibFunc_memset_chk:
Ahmed Bougachae03bef72015-01-12 17:22:43 +00002466 return optimizeMemSetChk(CI, Builder);
David L. Jonesd21529f2017-01-23 23:16:46 +00002467 case LibFunc_stpcpy_chk:
2468 case LibFunc_strcpy_chk:
Ahmed Bougacha1ac93562015-01-27 21:52:16 +00002469 return optimizeStrpCpyChk(CI, Builder, Func);
David L. Jonesd21529f2017-01-23 23:16:46 +00002470 case LibFunc_stpncpy_chk:
2471 case LibFunc_strncpy_chk:
Ahmed Bougacha1ac93562015-01-27 21:52:16 +00002472 return optimizeStrpNCpyChk(CI, Builder, Func);
Ahmed Bougachae03bef72015-01-12 17:22:43 +00002473 default:
2474 break;
2475 }
2476 return nullptr;
2477}
2478
Mehdi Aminia28d91d2015-03-10 02:37:25 +00002479FortifiedLibCallSimplifier::FortifiedLibCallSimplifier(
2480 const TargetLibraryInfo *TLI, bool OnlyLowerUnknownSize)
2481 : TLI(TLI), OnlyLowerUnknownSize(OnlyLowerUnknownSize) {}