1 //===-- TargetLibraryInfo.cpp - Runtime library information ----------------==// 2 // 3 // The LLVM Compiler Infrastructure 4 // 5 // This file is distributed under the University of Illinois Open Source 6 // License. See LICENSE.TXT for details. 7 // 8 //===----------------------------------------------------------------------===// 9 // 10 // This file implements the TargetLibraryInfo class. 11 // 12 //===----------------------------------------------------------------------===// 13 14 #include "llvm/Analysis/TargetLibraryInfo.h" 15 #include "llvm/ADT/Triple.h" 16 #include "llvm/Support/CommandLine.h" 17 using namespace llvm; 18 19 static cl::opt<TargetLibraryInfoImpl::VectorLibrary> ClVectorLibrary( 20 "vector-library", cl::Hidden, cl::desc("Vector functions library"), 21 cl::init(TargetLibraryInfoImpl::NoLibrary), 22 cl::values(clEnumValN(TargetLibraryInfoImpl::NoLibrary, "none", 23 "No vector functions library"), 24 clEnumValN(TargetLibraryInfoImpl::Accelerate, "Accelerate", 25 "Accelerate framework"), 26 clEnumValEnd)); 27 28 const char *const TargetLibraryInfoImpl::StandardNames[LibFunc::NumLibFuncs] = { 29 #define TLI_DEFINE_STRING 30 #include "llvm/Analysis/TargetLibraryInfo.def" 31 }; 32 33 static bool hasSinCosPiStret(const Triple &T) { 34 // Only Darwin variants have _stret versions of combined trig functions. 35 if (!T.isOSDarwin()) 36 return false; 37 38 // The ABI is rather complicated on x86, so don't do anything special there. 39 if (T.getArch() == Triple::x86) 40 return false; 41 42 if (T.isMacOSX() && T.isMacOSXVersionLT(10, 9)) 43 return false; 44 45 if (T.isiOS() && T.isOSVersionLT(7, 0)) 46 return false; 47 48 return true; 49 } 50 51 /// initialize - Initialize the set of available library functions based on the 52 /// specified target triple. This should be carefully written so that a missing 53 /// target triple gets a sane set of defaults. 54 static void initialize(TargetLibraryInfoImpl &TLI, const Triple &T, 55 ArrayRef<const char *> StandardNames) { 56 // Verify that the StandardNames array is in alphabetical order. 57 assert(std::is_sorted(StandardNames.begin(), StandardNames.end(), 58 [](const char *LHS, const char *RHS) { 59 return strcmp(LHS, RHS) < 0; 60 }) && 61 "TargetLibraryInfoImpl function names must be sorted"); 62 63 if (T.getArch() == Triple::r600 || 64 T.getArch() == Triple::amdgcn) { 65 TLI.setUnavailable(LibFunc::ldexp); 66 TLI.setUnavailable(LibFunc::ldexpf); 67 TLI.setUnavailable(LibFunc::ldexpl); 68 } 69 70 // There are no library implementations of mempcy and memset for AMD gpus and 71 // these can be difficult to lower in the backend. 72 if (T.getArch() == Triple::r600 || 73 T.getArch() == Triple::amdgcn) { 74 TLI.setUnavailable(LibFunc::memcpy); 75 TLI.setUnavailable(LibFunc::memset); 76 TLI.setUnavailable(LibFunc::memset_pattern16); 77 return; 78 } 79 80 // memset_pattern16 is only available on iOS 3.0 and Mac OS X 10.5 and later. 81 // All versions of watchOS support it. 82 if (T.isMacOSX()) { 83 if (T.isMacOSXVersionLT(10, 5)) 84 TLI.setUnavailable(LibFunc::memset_pattern16); 85 } else if (T.isiOS()) { 86 if (T.isOSVersionLT(3, 0)) 87 TLI.setUnavailable(LibFunc::memset_pattern16); 88 } else if (!T.isWatchOS()) { 89 TLI.setUnavailable(LibFunc::memset_pattern16); 90 } 91 92 if (!hasSinCosPiStret(T)) { 93 TLI.setUnavailable(LibFunc::sinpi); 94 TLI.setUnavailable(LibFunc::sinpif); 95 TLI.setUnavailable(LibFunc::cospi); 96 TLI.setUnavailable(LibFunc::cospif); 97 TLI.setUnavailable(LibFunc::sincospi_stret); 98 TLI.setUnavailable(LibFunc::sincospif_stret); 99 } 100 101 if (T.isMacOSX() && T.getArch() == Triple::x86 && 102 !T.isMacOSXVersionLT(10, 7)) { 103 // x86-32 OSX has a scheme where fwrite and fputs (and some other functions 104 // we don't care about) have two versions; on recent OSX, the one we want 105 // has a $UNIX2003 suffix. The two implementations are identical except 106 // for the return value in some edge cases. However, we don't want to 107 // generate code that depends on the old symbols. 108 TLI.setAvailableWithName(LibFunc::fwrite, "fwrite$UNIX2003"); 109 TLI.setAvailableWithName(LibFunc::fputs, "fputs$UNIX2003"); 110 } 111 112 // iprintf and friends are only available on XCore and TCE. 113 if (T.getArch() != Triple::xcore && T.getArch() != Triple::tce) { 114 TLI.setUnavailable(LibFunc::iprintf); 115 TLI.setUnavailable(LibFunc::siprintf); 116 TLI.setUnavailable(LibFunc::fiprintf); 117 } 118 119 if (T.isOSWindows() && !T.isOSCygMing()) { 120 // Win32 does not support long double 121 TLI.setUnavailable(LibFunc::acosl); 122 TLI.setUnavailable(LibFunc::asinl); 123 TLI.setUnavailable(LibFunc::atanl); 124 TLI.setUnavailable(LibFunc::atan2l); 125 TLI.setUnavailable(LibFunc::ceill); 126 TLI.setUnavailable(LibFunc::copysignl); 127 TLI.setUnavailable(LibFunc::cosl); 128 TLI.setUnavailable(LibFunc::coshl); 129 TLI.setUnavailable(LibFunc::expl); 130 TLI.setUnavailable(LibFunc::fabsf); // Win32 and Win64 both lack fabsf 131 TLI.setUnavailable(LibFunc::fabsl); 132 TLI.setUnavailable(LibFunc::floorl); 133 TLI.setUnavailable(LibFunc::fmaxl); 134 TLI.setUnavailable(LibFunc::fminl); 135 TLI.setUnavailable(LibFunc::fmodl); 136 TLI.setUnavailable(LibFunc::frexpl); 137 TLI.setUnavailable(LibFunc::ldexpf); 138 TLI.setUnavailable(LibFunc::ldexpl); 139 TLI.setUnavailable(LibFunc::logl); 140 TLI.setUnavailable(LibFunc::modfl); 141 TLI.setUnavailable(LibFunc::powl); 142 TLI.setUnavailable(LibFunc::sinl); 143 TLI.setUnavailable(LibFunc::sinhl); 144 TLI.setUnavailable(LibFunc::sqrtl); 145 TLI.setUnavailable(LibFunc::tanl); 146 TLI.setUnavailable(LibFunc::tanhl); 147 148 // Win32 only has C89 math 149 TLI.setUnavailable(LibFunc::acosh); 150 TLI.setUnavailable(LibFunc::acoshf); 151 TLI.setUnavailable(LibFunc::acoshl); 152 TLI.setUnavailable(LibFunc::asinh); 153 TLI.setUnavailable(LibFunc::asinhf); 154 TLI.setUnavailable(LibFunc::asinhl); 155 TLI.setUnavailable(LibFunc::atanh); 156 TLI.setUnavailable(LibFunc::atanhf); 157 TLI.setUnavailable(LibFunc::atanhl); 158 TLI.setUnavailable(LibFunc::cbrt); 159 TLI.setUnavailable(LibFunc::cbrtf); 160 TLI.setUnavailable(LibFunc::cbrtl); 161 TLI.setUnavailable(LibFunc::exp2); 162 TLI.setUnavailable(LibFunc::exp2f); 163 TLI.setUnavailable(LibFunc::exp2l); 164 TLI.setUnavailable(LibFunc::expm1); 165 TLI.setUnavailable(LibFunc::expm1f); 166 TLI.setUnavailable(LibFunc::expm1l); 167 TLI.setUnavailable(LibFunc::log2); 168 TLI.setUnavailable(LibFunc::log2f); 169 TLI.setUnavailable(LibFunc::log2l); 170 TLI.setUnavailable(LibFunc::log1p); 171 TLI.setUnavailable(LibFunc::log1pf); 172 TLI.setUnavailable(LibFunc::log1pl); 173 TLI.setUnavailable(LibFunc::logb); 174 TLI.setUnavailable(LibFunc::logbf); 175 TLI.setUnavailable(LibFunc::logbl); 176 TLI.setUnavailable(LibFunc::nearbyint); 177 TLI.setUnavailable(LibFunc::nearbyintf); 178 TLI.setUnavailable(LibFunc::nearbyintl); 179 TLI.setUnavailable(LibFunc::rint); 180 TLI.setUnavailable(LibFunc::rintf); 181 TLI.setUnavailable(LibFunc::rintl); 182 TLI.setUnavailable(LibFunc::round); 183 TLI.setUnavailable(LibFunc::roundf); 184 TLI.setUnavailable(LibFunc::roundl); 185 TLI.setUnavailable(LibFunc::trunc); 186 TLI.setUnavailable(LibFunc::truncf); 187 TLI.setUnavailable(LibFunc::truncl); 188 189 // Win32 provides some C99 math with mangled names 190 TLI.setAvailableWithName(LibFunc::copysign, "_copysign"); 191 192 if (T.getArch() == Triple::x86) { 193 // Win32 on x86 implements single-precision math functions as macros 194 TLI.setUnavailable(LibFunc::acosf); 195 TLI.setUnavailable(LibFunc::asinf); 196 TLI.setUnavailable(LibFunc::atanf); 197 TLI.setUnavailable(LibFunc::atan2f); 198 TLI.setUnavailable(LibFunc::ceilf); 199 TLI.setUnavailable(LibFunc::copysignf); 200 TLI.setUnavailable(LibFunc::cosf); 201 TLI.setUnavailable(LibFunc::coshf); 202 TLI.setUnavailable(LibFunc::expf); 203 TLI.setUnavailable(LibFunc::floorf); 204 TLI.setUnavailable(LibFunc::fminf); 205 TLI.setUnavailable(LibFunc::fmaxf); 206 TLI.setUnavailable(LibFunc::fmodf); 207 TLI.setUnavailable(LibFunc::logf); 208 TLI.setUnavailable(LibFunc::log10f); 209 TLI.setUnavailable(LibFunc::modff); 210 TLI.setUnavailable(LibFunc::powf); 211 TLI.setUnavailable(LibFunc::sinf); 212 TLI.setUnavailable(LibFunc::sinhf); 213 TLI.setUnavailable(LibFunc::sqrtf); 214 TLI.setUnavailable(LibFunc::tanf); 215 TLI.setUnavailable(LibFunc::tanhf); 216 } 217 218 // Win32 does *not* provide provide these functions, but they are 219 // generally available on POSIX-compliant systems: 220 TLI.setUnavailable(LibFunc::access); 221 TLI.setUnavailable(LibFunc::bcmp); 222 TLI.setUnavailable(LibFunc::bcopy); 223 TLI.setUnavailable(LibFunc::bzero); 224 TLI.setUnavailable(LibFunc::chmod); 225 TLI.setUnavailable(LibFunc::chown); 226 TLI.setUnavailable(LibFunc::closedir); 227 TLI.setUnavailable(LibFunc::ctermid); 228 TLI.setUnavailable(LibFunc::fdopen); 229 TLI.setUnavailable(LibFunc::ffs); 230 TLI.setUnavailable(LibFunc::fileno); 231 TLI.setUnavailable(LibFunc::flockfile); 232 TLI.setUnavailable(LibFunc::fseeko); 233 TLI.setUnavailable(LibFunc::fstat); 234 TLI.setUnavailable(LibFunc::fstatvfs); 235 TLI.setUnavailable(LibFunc::ftello); 236 TLI.setUnavailable(LibFunc::ftrylockfile); 237 TLI.setUnavailable(LibFunc::funlockfile); 238 TLI.setUnavailable(LibFunc::getc_unlocked); 239 TLI.setUnavailable(LibFunc::getitimer); 240 TLI.setUnavailable(LibFunc::getlogin_r); 241 TLI.setUnavailable(LibFunc::getpwnam); 242 TLI.setUnavailable(LibFunc::gettimeofday); 243 TLI.setUnavailable(LibFunc::htonl); 244 TLI.setUnavailable(LibFunc::htons); 245 TLI.setUnavailable(LibFunc::lchown); 246 TLI.setUnavailable(LibFunc::lstat); 247 TLI.setUnavailable(LibFunc::memccpy); 248 TLI.setUnavailable(LibFunc::mkdir); 249 TLI.setUnavailable(LibFunc::ntohl); 250 TLI.setUnavailable(LibFunc::ntohs); 251 TLI.setUnavailable(LibFunc::open); 252 TLI.setUnavailable(LibFunc::opendir); 253 TLI.setUnavailable(LibFunc::pclose); 254 TLI.setUnavailable(LibFunc::popen); 255 TLI.setUnavailable(LibFunc::pread); 256 TLI.setUnavailable(LibFunc::pwrite); 257 TLI.setUnavailable(LibFunc::read); 258 TLI.setUnavailable(LibFunc::readlink); 259 TLI.setUnavailable(LibFunc::realpath); 260 TLI.setUnavailable(LibFunc::rmdir); 261 TLI.setUnavailable(LibFunc::setitimer); 262 TLI.setUnavailable(LibFunc::stat); 263 TLI.setUnavailable(LibFunc::statvfs); 264 TLI.setUnavailable(LibFunc::stpcpy); 265 TLI.setUnavailable(LibFunc::stpncpy); 266 TLI.setUnavailable(LibFunc::strcasecmp); 267 TLI.setUnavailable(LibFunc::strncasecmp); 268 TLI.setUnavailable(LibFunc::times); 269 TLI.setUnavailable(LibFunc::uname); 270 TLI.setUnavailable(LibFunc::unlink); 271 TLI.setUnavailable(LibFunc::unsetenv); 272 TLI.setUnavailable(LibFunc::utime); 273 TLI.setUnavailable(LibFunc::utimes); 274 TLI.setUnavailable(LibFunc::write); 275 276 // Win32 does *not* provide provide these functions, but they are 277 // specified by C99: 278 TLI.setUnavailable(LibFunc::atoll); 279 TLI.setUnavailable(LibFunc::frexpf); 280 TLI.setUnavailable(LibFunc::llabs); 281 } 282 283 switch (T.getOS()) { 284 case Triple::MacOSX: 285 // exp10 and exp10f are not available on OS X until 10.9 and iOS until 7.0 286 // and their names are __exp10 and __exp10f. exp10l is not available on 287 // OS X or iOS. 288 TLI.setUnavailable(LibFunc::exp10l); 289 if (T.isMacOSXVersionLT(10, 9)) { 290 TLI.setUnavailable(LibFunc::exp10); 291 TLI.setUnavailable(LibFunc::exp10f); 292 } else { 293 TLI.setAvailableWithName(LibFunc::exp10, "__exp10"); 294 TLI.setAvailableWithName(LibFunc::exp10f, "__exp10f"); 295 } 296 break; 297 case Triple::IOS: 298 case Triple::TvOS: 299 case Triple::WatchOS: 300 TLI.setUnavailable(LibFunc::exp10l); 301 if (!T.isWatchOS() && (T.isOSVersionLT(7, 0) || 302 (T.isOSVersionLT(9, 0) && 303 (T.getArch() == Triple::x86 || 304 T.getArch() == Triple::x86_64)))) { 305 TLI.setUnavailable(LibFunc::exp10); 306 TLI.setUnavailable(LibFunc::exp10f); 307 } else { 308 TLI.setAvailableWithName(LibFunc::exp10, "__exp10"); 309 TLI.setAvailableWithName(LibFunc::exp10f, "__exp10f"); 310 } 311 break; 312 case Triple::Linux: 313 // exp10, exp10f, exp10l is available on Linux (GLIBC) but are extremely 314 // buggy prior to glibc version 2.18. Until this version is widely deployed 315 // or we have a reasonable detection strategy, we cannot use exp10 reliably 316 // on Linux. 317 // 318 // Fall through to disable all of them. 319 default: 320 TLI.setUnavailable(LibFunc::exp10); 321 TLI.setUnavailable(LibFunc::exp10f); 322 TLI.setUnavailable(LibFunc::exp10l); 323 } 324 325 // ffsl is available on at least Darwin, Mac OS X, iOS, FreeBSD, and 326 // Linux (GLIBC): 327 // http://developer.apple.com/library/mac/#documentation/Darwin/Reference/ManPages/man3/ffsl.3.html 328 // http://svn.freebsd.org/base/head/lib/libc/string/ffsl.c 329 // http://www.gnu.org/software/gnulib/manual/html_node/ffsl.html 330 switch (T.getOS()) { 331 case Triple::Darwin: 332 case Triple::MacOSX: 333 case Triple::IOS: 334 case Triple::TvOS: 335 case Triple::WatchOS: 336 case Triple::FreeBSD: 337 case Triple::Linux: 338 break; 339 default: 340 TLI.setUnavailable(LibFunc::ffsl); 341 } 342 343 // ffsll is available on at least FreeBSD and Linux (GLIBC): 344 // http://svn.freebsd.org/base/head/lib/libc/string/ffsll.c 345 // http://www.gnu.org/software/gnulib/manual/html_node/ffsll.html 346 switch (T.getOS()) { 347 case Triple::Darwin: 348 case Triple::MacOSX: 349 case Triple::IOS: 350 case Triple::TvOS: 351 case Triple::WatchOS: 352 case Triple::FreeBSD: 353 case Triple::Linux: 354 break; 355 default: 356 TLI.setUnavailable(LibFunc::ffsll); 357 } 358 359 // The following functions are available on at least FreeBSD: 360 // http://svn.freebsd.org/base/head/lib/libc/string/fls.c 361 // http://svn.freebsd.org/base/head/lib/libc/string/flsl.c 362 // http://svn.freebsd.org/base/head/lib/libc/string/flsll.c 363 if (!T.isOSFreeBSD()) { 364 TLI.setUnavailable(LibFunc::fls); 365 TLI.setUnavailable(LibFunc::flsl); 366 TLI.setUnavailable(LibFunc::flsll); 367 } 368 369 // The following functions are available on at least Linux: 370 if (!T.isOSLinux()) { 371 TLI.setUnavailable(LibFunc::dunder_strdup); 372 TLI.setUnavailable(LibFunc::dunder_strtok_r); 373 TLI.setUnavailable(LibFunc::dunder_isoc99_scanf); 374 TLI.setUnavailable(LibFunc::dunder_isoc99_sscanf); 375 TLI.setUnavailable(LibFunc::under_IO_getc); 376 TLI.setUnavailable(LibFunc::under_IO_putc); 377 TLI.setUnavailable(LibFunc::memalign); 378 TLI.setUnavailable(LibFunc::fopen64); 379 TLI.setUnavailable(LibFunc::fseeko64); 380 TLI.setUnavailable(LibFunc::fstat64); 381 TLI.setUnavailable(LibFunc::fstatvfs64); 382 TLI.setUnavailable(LibFunc::ftello64); 383 TLI.setUnavailable(LibFunc::lstat64); 384 TLI.setUnavailable(LibFunc::open64); 385 TLI.setUnavailable(LibFunc::stat64); 386 TLI.setUnavailable(LibFunc::statvfs64); 387 TLI.setUnavailable(LibFunc::tmpfile64); 388 } 389 390 // As currently implemented in clang, NVPTX code has no standard library to 391 // speak of. Headers provide a standard-ish library implementation, but many 392 // of the signatures are wrong -- for example, many libm functions are not 393 // extern "C". 394 // 395 // libdevice, an IR library provided by nvidia, is linked in by the front-end, 396 // but only used functions are provided to llvm. Moreover, most of the 397 // functions in libdevice don't map precisely to standard library functions. 398 // 399 // FIXME: Having no standard library prevents e.g. many fastmath 400 // optimizations, so this situation should be fixed. 401 if (T.isNVPTX()) { 402 TLI.disableAllFunctions(); 403 TLI.setAvailable(LibFunc::nvvm_reflect); 404 } else { 405 TLI.setUnavailable(LibFunc::nvvm_reflect); 406 } 407 408 TLI.addVectorizableFunctionsFromVecLib(ClVectorLibrary); 409 } 410 411 TargetLibraryInfoImpl::TargetLibraryInfoImpl() { 412 // Default to everything being available. 413 memset(AvailableArray, -1, sizeof(AvailableArray)); 414 415 initialize(*this, Triple(), StandardNames); 416 } 417 418 TargetLibraryInfoImpl::TargetLibraryInfoImpl(const Triple &T) { 419 // Default to everything being available. 420 memset(AvailableArray, -1, sizeof(AvailableArray)); 421 422 initialize(*this, T, StandardNames); 423 } 424 425 TargetLibraryInfoImpl::TargetLibraryInfoImpl(const TargetLibraryInfoImpl &TLI) 426 : CustomNames(TLI.CustomNames) { 427 memcpy(AvailableArray, TLI.AvailableArray, sizeof(AvailableArray)); 428 VectorDescs = TLI.VectorDescs; 429 ScalarDescs = TLI.ScalarDescs; 430 } 431 432 TargetLibraryInfoImpl::TargetLibraryInfoImpl(TargetLibraryInfoImpl &&TLI) 433 : CustomNames(std::move(TLI.CustomNames)) { 434 std::move(std::begin(TLI.AvailableArray), std::end(TLI.AvailableArray), 435 AvailableArray); 436 VectorDescs = TLI.VectorDescs; 437 ScalarDescs = TLI.ScalarDescs; 438 } 439 440 TargetLibraryInfoImpl &TargetLibraryInfoImpl::operator=(const TargetLibraryInfoImpl &TLI) { 441 CustomNames = TLI.CustomNames; 442 memcpy(AvailableArray, TLI.AvailableArray, sizeof(AvailableArray)); 443 return *this; 444 } 445 446 TargetLibraryInfoImpl &TargetLibraryInfoImpl::operator=(TargetLibraryInfoImpl &&TLI) { 447 CustomNames = std::move(TLI.CustomNames); 448 std::move(std::begin(TLI.AvailableArray), std::end(TLI.AvailableArray), 449 AvailableArray); 450 return *this; 451 } 452 453 static StringRef sanitizeFunctionName(StringRef funcName) { 454 // Filter out empty names and names containing null bytes, those can't be in 455 // our table. 456 if (funcName.empty() || funcName.find('\0') != StringRef::npos) 457 return StringRef(); 458 459 // Check for \01 prefix that is used to mangle __asm declarations and 460 // strip it if present. 461 return GlobalValue::getRealLinkageName(funcName); 462 } 463 464 bool TargetLibraryInfoImpl::getLibFunc(StringRef funcName, 465 LibFunc::Func &F) const { 466 const char *const *Start = &StandardNames[0]; 467 const char *const *End = &StandardNames[LibFunc::NumLibFuncs]; 468 469 funcName = sanitizeFunctionName(funcName); 470 if (funcName.empty()) 471 return false; 472 473 const char *const *I = std::lower_bound( 474 Start, End, funcName, [](const char *LHS, StringRef RHS) { 475 return std::strncmp(LHS, RHS.data(), RHS.size()) < 0; 476 }); 477 if (I != End && *I == funcName) { 478 F = (LibFunc::Func)(I - Start); 479 return true; 480 } 481 return false; 482 } 483 484 bool TargetLibraryInfoImpl::isValidProtoForLibFunc(const FunctionType &FTy, 485 LibFunc::Func F, 486 const DataLayout *DL) const { 487 LLVMContext &Ctx = FTy.getContext(); 488 Type *PCharTy = Type::getInt8PtrTy(Ctx); 489 Type *SizeTTy = DL ? DL->getIntPtrType(Ctx, /*AS=*/0) : nullptr; 490 auto IsSizeTTy = [SizeTTy](Type *Ty) { 491 return SizeTTy ? Ty == SizeTTy : Ty->isIntegerTy(); 492 }; 493 unsigned NumParams = FTy.getNumParams(); 494 495 switch (F) { 496 case LibFunc::strlen: 497 return (NumParams == 1 && FTy.getParamType(0)->isPointerTy() && 498 FTy.getReturnType()->isIntegerTy()); 499 500 case LibFunc::strchr: 501 case LibFunc::strrchr: 502 return (NumParams == 2 && FTy.getReturnType()->isPointerTy() && 503 FTy.getParamType(0) == FTy.getReturnType() && 504 FTy.getParamType(1)->isIntegerTy()); 505 506 case LibFunc::strtol: 507 case LibFunc::strtod: 508 case LibFunc::strtof: 509 case LibFunc::strtoul: 510 case LibFunc::strtoll: 511 case LibFunc::strtold: 512 case LibFunc::strtoull: 513 return ((NumParams == 2 || NumParams == 3) && 514 FTy.getParamType(0)->isPointerTy() && 515 FTy.getParamType(1)->isPointerTy()); 516 case LibFunc::strcat: 517 return (NumParams == 2 && FTy.getReturnType()->isPointerTy() && 518 FTy.getParamType(0) == FTy.getReturnType() && 519 FTy.getParamType(1) == FTy.getReturnType()); 520 521 case LibFunc::strncat: 522 return (NumParams == 3 && FTy.getReturnType()->isPointerTy() && 523 FTy.getParamType(0) == FTy.getReturnType() && 524 FTy.getParamType(1) == FTy.getReturnType() && 525 FTy.getParamType(2)->isIntegerTy()); 526 527 case LibFunc::strcpy_chk: 528 case LibFunc::stpcpy_chk: 529 --NumParams; 530 if (!IsSizeTTy(FTy.getParamType(NumParams))) 531 return false; 532 // fallthrough 533 case LibFunc::strcpy: 534 case LibFunc::stpcpy: 535 return (NumParams == 2 && FTy.getReturnType() == FTy.getParamType(0) && 536 FTy.getParamType(0) == FTy.getParamType(1) && 537 FTy.getParamType(0) == PCharTy); 538 539 case LibFunc::strncpy_chk: 540 case LibFunc::stpncpy_chk: 541 --NumParams; 542 if (!IsSizeTTy(FTy.getParamType(NumParams))) 543 return false; 544 // fallthrough 545 case LibFunc::strncpy: 546 case LibFunc::stpncpy: 547 return (NumParams == 3 && FTy.getReturnType() == FTy.getParamType(0) && 548 FTy.getParamType(0) == FTy.getParamType(1) && 549 FTy.getParamType(0) == PCharTy && 550 FTy.getParamType(2)->isIntegerTy()); 551 552 case LibFunc::strxfrm: 553 return (NumParams == 3 && FTy.getParamType(0)->isPointerTy() && 554 FTy.getParamType(1)->isPointerTy()); 555 556 case LibFunc::strcmp: 557 return (NumParams == 2 && FTy.getReturnType()->isIntegerTy(32) && 558 FTy.getParamType(0)->isPointerTy() && 559 FTy.getParamType(0) == FTy.getParamType(1)); 560 561 case LibFunc::strncmp: 562 return (NumParams == 3 && FTy.getReturnType()->isIntegerTy(32) && 563 FTy.getParamType(0)->isPointerTy() && 564 FTy.getParamType(0) == FTy.getParamType(1) && 565 FTy.getParamType(2)->isIntegerTy()); 566 567 case LibFunc::strspn: 568 case LibFunc::strcspn: 569 return (NumParams == 2 && FTy.getParamType(0)->isPointerTy() && 570 FTy.getParamType(0) == FTy.getParamType(1) && 571 FTy.getReturnType()->isIntegerTy()); 572 573 case LibFunc::strcoll: 574 case LibFunc::strcasecmp: 575 case LibFunc::strncasecmp: 576 return (NumParams >= 2 && FTy.getParamType(0)->isPointerTy() && 577 FTy.getParamType(1)->isPointerTy()); 578 579 case LibFunc::strstr: 580 return (NumParams == 2 && FTy.getReturnType()->isPointerTy() && 581 FTy.getParamType(0)->isPointerTy() && 582 FTy.getParamType(1)->isPointerTy()); 583 584 case LibFunc::strpbrk: 585 return (NumParams == 2 && FTy.getParamType(0)->isPointerTy() && 586 FTy.getReturnType() == FTy.getParamType(0) && 587 FTy.getParamType(0) == FTy.getParamType(1)); 588 589 case LibFunc::strtok: 590 case LibFunc::strtok_r: 591 return (NumParams >= 2 && FTy.getParamType(1)->isPointerTy()); 592 case LibFunc::scanf: 593 return (NumParams >= 1 && FTy.getParamType(0)->isPointerTy()); 594 case LibFunc::setbuf: 595 case LibFunc::setvbuf: 596 return (NumParams >= 1 && FTy.getParamType(0)->isPointerTy()); 597 case LibFunc::strdup: 598 case LibFunc::strndup: 599 return (NumParams >= 1 && FTy.getReturnType()->isPointerTy() && 600 FTy.getParamType(0)->isPointerTy()); 601 case LibFunc::stat: 602 case LibFunc::statvfs: 603 return (NumParams >= 2 && FTy.getParamType(0)->isPointerTy() && 604 FTy.getParamType(1)->isPointerTy()); 605 case LibFunc::sscanf: 606 return (NumParams >= 2 && FTy.getParamType(0)->isPointerTy() && 607 FTy.getParamType(1)->isPointerTy()); 608 case LibFunc::sprintf: 609 return (NumParams >= 2 && FTy.getParamType(0)->isPointerTy() && 610 FTy.getParamType(1)->isPointerTy()); 611 case LibFunc::snprintf: 612 return (NumParams == 3 && FTy.getParamType(0)->isPointerTy() && 613 FTy.getParamType(2)->isPointerTy()); 614 case LibFunc::setitimer: 615 return (NumParams == 3 && FTy.getParamType(1)->isPointerTy() && 616 FTy.getParamType(2)->isPointerTy()); 617 case LibFunc::system: 618 return (NumParams == 1 && FTy.getParamType(0)->isPointerTy()); 619 case LibFunc::malloc: 620 return (NumParams == 1 && FTy.getReturnType()->isPointerTy()); 621 case LibFunc::memcmp: 622 return (NumParams == 3 && FTy.getParamType(0)->isPointerTy() && 623 FTy.getParamType(1)->isPointerTy() && 624 FTy.getReturnType()->isIntegerTy(32)); 625 626 case LibFunc::memchr: 627 case LibFunc::memrchr: 628 return (NumParams == 3 && FTy.getParamType(0)->isPointerTy() && 629 FTy.getParamType(1)->isIntegerTy(32) && 630 FTy.getParamType(2)->isIntegerTy() && 631 FTy.getReturnType()->isPointerTy()); 632 case LibFunc::modf: 633 case LibFunc::modff: 634 case LibFunc::modfl: 635 return (NumParams >= 2 && FTy.getParamType(1)->isPointerTy()); 636 637 case LibFunc::memcpy_chk: 638 case LibFunc::memmove_chk: 639 --NumParams; 640 if (!IsSizeTTy(FTy.getParamType(NumParams))) 641 return false; 642 // fallthrough 643 case LibFunc::memcpy: 644 case LibFunc::memmove: 645 return (NumParams == 3 && FTy.getReturnType() == FTy.getParamType(0) && 646 FTy.getParamType(0)->isPointerTy() && 647 FTy.getParamType(1)->isPointerTy() && 648 IsSizeTTy(FTy.getParamType(2))); 649 650 case LibFunc::memset_chk: 651 --NumParams; 652 if (!IsSizeTTy(FTy.getParamType(NumParams))) 653 return false; 654 // fallthrough 655 case LibFunc::memset: 656 return (NumParams == 3 && FTy.getReturnType() == FTy.getParamType(0) && 657 FTy.getParamType(0)->isPointerTy() && 658 FTy.getParamType(1)->isIntegerTy() && 659 IsSizeTTy(FTy.getParamType(2))); 660 661 case LibFunc::memccpy: 662 return (NumParams >= 2 && FTy.getParamType(1)->isPointerTy()); 663 case LibFunc::memalign: 664 return (FTy.getReturnType()->isPointerTy()); 665 case LibFunc::realloc: 666 return (NumParams == 2 && FTy.getParamType(0)->isPointerTy() && 667 FTy.getReturnType()->isPointerTy()); 668 case LibFunc::read: 669 return (NumParams == 3 && FTy.getParamType(1)->isPointerTy()); 670 case LibFunc::rewind: 671 return (NumParams >= 1 && FTy.getParamType(0)->isPointerTy()); 672 case LibFunc::rmdir: 673 case LibFunc::remove: 674 case LibFunc::realpath: 675 return (NumParams >= 1 && FTy.getParamType(0)->isPointerTy()); 676 case LibFunc::rename: 677 return (NumParams >= 2 && FTy.getParamType(0)->isPointerTy() && 678 FTy.getParamType(1)->isPointerTy()); 679 case LibFunc::readlink: 680 return (NumParams >= 2 && FTy.getParamType(0)->isPointerTy() && 681 FTy.getParamType(1)->isPointerTy()); 682 case LibFunc::write: 683 return (NumParams == 3 && FTy.getParamType(1)->isPointerTy()); 684 case LibFunc::bcopy: 685 return (NumParams == 3 && FTy.getParamType(0)->isPointerTy() && 686 FTy.getParamType(1)->isPointerTy()); 687 case LibFunc::bcmp: 688 return (NumParams == 3 && FTy.getParamType(0)->isPointerTy() && 689 FTy.getParamType(1)->isPointerTy()); 690 case LibFunc::bzero: 691 return (NumParams == 2 && FTy.getParamType(0)->isPointerTy()); 692 case LibFunc::calloc: 693 return (NumParams == 2 && FTy.getReturnType()->isPointerTy()); 694 695 case LibFunc::atof: 696 case LibFunc::atoi: 697 case LibFunc::atol: 698 case LibFunc::atoll: 699 case LibFunc::ferror: 700 case LibFunc::getenv: 701 case LibFunc::getpwnam: 702 case LibFunc::pclose: 703 case LibFunc::perror: 704 case LibFunc::printf: 705 case LibFunc::puts: 706 case LibFunc::uname: 707 case LibFunc::under_IO_getc: 708 case LibFunc::unlink: 709 case LibFunc::unsetenv: 710 return (NumParams == 1 && FTy.getParamType(0)->isPointerTy()); 711 712 case LibFunc::chmod: 713 case LibFunc::chown: 714 case LibFunc::clearerr: 715 case LibFunc::closedir: 716 case LibFunc::ctermid: 717 case LibFunc::fclose: 718 case LibFunc::feof: 719 case LibFunc::fflush: 720 case LibFunc::fgetc: 721 case LibFunc::fileno: 722 case LibFunc::flockfile: 723 case LibFunc::free: 724 case LibFunc::fseek: 725 case LibFunc::fseeko64: 726 case LibFunc::fseeko: 727 case LibFunc::fsetpos: 728 case LibFunc::ftell: 729 case LibFunc::ftello64: 730 case LibFunc::ftello: 731 case LibFunc::ftrylockfile: 732 case LibFunc::funlockfile: 733 case LibFunc::getc: 734 case LibFunc::getc_unlocked: 735 case LibFunc::getlogin_r: 736 case LibFunc::mkdir: 737 case LibFunc::mktime: 738 case LibFunc::times: 739 return (NumParams != 0 && FTy.getParamType(0)->isPointerTy()); 740 741 case LibFunc::access: 742 return (NumParams == 2 && FTy.getParamType(0)->isPointerTy()); 743 case LibFunc::fopen: 744 return (NumParams == 2 && FTy.getReturnType()->isPointerTy() && 745 FTy.getParamType(0)->isPointerTy() && 746 FTy.getParamType(1)->isPointerTy()); 747 case LibFunc::fdopen: 748 return (NumParams == 2 && FTy.getReturnType()->isPointerTy() && 749 FTy.getParamType(1)->isPointerTy()); 750 case LibFunc::fputc: 751 case LibFunc::fstat: 752 case LibFunc::frexp: 753 case LibFunc::frexpf: 754 case LibFunc::frexpl: 755 case LibFunc::fstatvfs: 756 return (NumParams == 2 && FTy.getParamType(1)->isPointerTy()); 757 case LibFunc::fgets: 758 return (NumParams == 3 && FTy.getParamType(0)->isPointerTy() && 759 FTy.getParamType(2)->isPointerTy()); 760 case LibFunc::fread: 761 return (NumParams == 4 && FTy.getParamType(0)->isPointerTy() && 762 FTy.getParamType(3)->isPointerTy()); 763 case LibFunc::fwrite: 764 return (NumParams == 4 && FTy.getReturnType()->isIntegerTy() && 765 FTy.getParamType(0)->isPointerTy() && 766 FTy.getParamType(1)->isIntegerTy() && 767 FTy.getParamType(2)->isIntegerTy() && 768 FTy.getParamType(3)->isPointerTy()); 769 case LibFunc::fputs: 770 return (NumParams >= 2 && FTy.getParamType(0)->isPointerTy() && 771 FTy.getParamType(1)->isPointerTy()); 772 case LibFunc::fscanf: 773 case LibFunc::fprintf: 774 return (NumParams >= 2 && FTy.getParamType(0)->isPointerTy() && 775 FTy.getParamType(1)->isPointerTy()); 776 case LibFunc::fgetpos: 777 return (NumParams >= 2 && FTy.getParamType(0)->isPointerTy() && 778 FTy.getParamType(1)->isPointerTy()); 779 case LibFunc::gets: 780 case LibFunc::getchar: 781 case LibFunc::getitimer: 782 return (NumParams == 2 && FTy.getParamType(1)->isPointerTy()); 783 case LibFunc::ungetc: 784 return (NumParams == 2 && FTy.getParamType(1)->isPointerTy()); 785 case LibFunc::utime: 786 case LibFunc::utimes: 787 return (NumParams == 2 && FTy.getParamType(0)->isPointerTy() && 788 FTy.getParamType(1)->isPointerTy()); 789 case LibFunc::putc: 790 return (NumParams == 2 && FTy.getParamType(1)->isPointerTy()); 791 case LibFunc::pread: 792 case LibFunc::pwrite: 793 return (NumParams == 4 && FTy.getParamType(1)->isPointerTy()); 794 case LibFunc::popen: 795 return (NumParams == 2 && FTy.getReturnType()->isPointerTy() && 796 FTy.getParamType(0)->isPointerTy() && 797 FTy.getParamType(1)->isPointerTy()); 798 case LibFunc::vscanf: 799 return (NumParams == 2 && FTy.getParamType(1)->isPointerTy()); 800 case LibFunc::vsscanf: 801 return (NumParams == 3 && FTy.getParamType(1)->isPointerTy() && 802 FTy.getParamType(2)->isPointerTy()); 803 case LibFunc::vfscanf: 804 return (NumParams == 3 && FTy.getParamType(1)->isPointerTy() && 805 FTy.getParamType(2)->isPointerTy()); 806 case LibFunc::valloc: 807 return (FTy.getReturnType()->isPointerTy()); 808 case LibFunc::vprintf: 809 return (NumParams == 2 && FTy.getParamType(0)->isPointerTy()); 810 case LibFunc::vfprintf: 811 case LibFunc::vsprintf: 812 return (NumParams == 3 && FTy.getParamType(0)->isPointerTy() && 813 FTy.getParamType(1)->isPointerTy()); 814 case LibFunc::vsnprintf: 815 return (NumParams == 4 && FTy.getParamType(0)->isPointerTy() && 816 FTy.getParamType(2)->isPointerTy()); 817 case LibFunc::open: 818 return (NumParams >= 2 && FTy.getParamType(0)->isPointerTy()); 819 case LibFunc::opendir: 820 return (NumParams == 1 && FTy.getReturnType()->isPointerTy() && 821 FTy.getParamType(0)->isPointerTy()); 822 case LibFunc::tmpfile: 823 return (FTy.getReturnType()->isPointerTy()); 824 case LibFunc::htonl: 825 case LibFunc::htons: 826 case LibFunc::ntohl: 827 case LibFunc::ntohs: 828 case LibFunc::lstat: 829 return (NumParams == 2 && FTy.getParamType(0)->isPointerTy() && 830 FTy.getParamType(1)->isPointerTy()); 831 case LibFunc::lchown: 832 return (NumParams == 3 && FTy.getParamType(0)->isPointerTy()); 833 case LibFunc::qsort: 834 return (NumParams == 4 && FTy.getParamType(3)->isPointerTy()); 835 case LibFunc::dunder_strdup: 836 case LibFunc::dunder_strndup: 837 return (NumParams >= 1 && FTy.getReturnType()->isPointerTy() && 838 FTy.getParamType(0)->isPointerTy()); 839 case LibFunc::dunder_strtok_r: 840 return (NumParams == 3 && FTy.getParamType(1)->isPointerTy()); 841 case LibFunc::under_IO_putc: 842 return (NumParams == 2 && FTy.getParamType(1)->isPointerTy()); 843 case LibFunc::dunder_isoc99_scanf: 844 return (NumParams >= 1 && FTy.getParamType(0)->isPointerTy()); 845 case LibFunc::stat64: 846 case LibFunc::lstat64: 847 case LibFunc::statvfs64: 848 return (NumParams >= 1 && FTy.getParamType(0)->isPointerTy() && 849 FTy.getParamType(1)->isPointerTy()); 850 case LibFunc::dunder_isoc99_sscanf: 851 return (NumParams >= 1 && FTy.getParamType(0)->isPointerTy() && 852 FTy.getParamType(1)->isPointerTy()); 853 case LibFunc::fopen64: 854 return (NumParams == 2 && FTy.getReturnType()->isPointerTy() && 855 FTy.getParamType(0)->isPointerTy() && 856 FTy.getParamType(1)->isPointerTy()); 857 case LibFunc::tmpfile64: 858 return (FTy.getReturnType()->isPointerTy()); 859 case LibFunc::fstat64: 860 case LibFunc::fstatvfs64: 861 return (NumParams == 2 && FTy.getParamType(1)->isPointerTy()); 862 case LibFunc::open64: 863 return (NumParams >= 2 && FTy.getParamType(0)->isPointerTy()); 864 case LibFunc::gettimeofday: 865 return (NumParams == 2 && FTy.getParamType(0)->isPointerTy() && 866 FTy.getParamType(1)->isPointerTy()); 867 868 case LibFunc::Znwj: // new(unsigned int); 869 case LibFunc::Znwm: // new(unsigned long); 870 case LibFunc::Znaj: // new[](unsigned int); 871 case LibFunc::Znam: // new[](unsigned long); 872 case LibFunc::msvc_new_int: // new(unsigned int); 873 case LibFunc::msvc_new_longlong: // new(unsigned long long); 874 case LibFunc::msvc_new_array_int: // new[](unsigned int); 875 case LibFunc::msvc_new_array_longlong: // new[](unsigned long long); 876 return (NumParams == 1); 877 878 case LibFunc::memset_pattern16: 879 return (!FTy.isVarArg() && NumParams == 3 && 880 isa<PointerType>(FTy.getParamType(0)) && 881 isa<PointerType>(FTy.getParamType(1)) && 882 isa<IntegerType>(FTy.getParamType(2))); 883 884 // int __nvvm_reflect(const char *); 885 case LibFunc::nvvm_reflect: 886 return (NumParams == 1 && isa<PointerType>(FTy.getParamType(0))); 887 888 case LibFunc::sin: 889 case LibFunc::sinf: 890 case LibFunc::sinl: 891 case LibFunc::cos: 892 case LibFunc::cosf: 893 case LibFunc::cosl: 894 case LibFunc::exp: 895 case LibFunc::expf: 896 case LibFunc::expl: 897 case LibFunc::exp2: 898 case LibFunc::exp2f: 899 case LibFunc::exp2l: 900 case LibFunc::log: 901 case LibFunc::logf: 902 case LibFunc::logl: 903 case LibFunc::log10: 904 case LibFunc::log10f: 905 case LibFunc::log10l: 906 case LibFunc::log2: 907 case LibFunc::log2f: 908 case LibFunc::log2l: 909 case LibFunc::fabs: 910 case LibFunc::fabsf: 911 case LibFunc::fabsl: 912 case LibFunc::floor: 913 case LibFunc::floorf: 914 case LibFunc::floorl: 915 case LibFunc::ceil: 916 case LibFunc::ceilf: 917 case LibFunc::ceill: 918 case LibFunc::trunc: 919 case LibFunc::truncf: 920 case LibFunc::truncl: 921 case LibFunc::rint: 922 case LibFunc::rintf: 923 case LibFunc::rintl: 924 case LibFunc::nearbyint: 925 case LibFunc::nearbyintf: 926 case LibFunc::nearbyintl: 927 case LibFunc::round: 928 case LibFunc::roundf: 929 case LibFunc::roundl: 930 case LibFunc::sqrt: 931 case LibFunc::sqrtf: 932 case LibFunc::sqrtl: 933 return (NumParams == 1 && FTy.getReturnType()->isFloatingPointTy() && 934 FTy.getReturnType() == FTy.getParamType(0)); 935 936 case LibFunc::fmin: 937 case LibFunc::fminf: 938 case LibFunc::fminl: 939 case LibFunc::fmax: 940 case LibFunc::fmaxf: 941 case LibFunc::fmaxl: 942 case LibFunc::copysign: 943 case LibFunc::copysignf: 944 case LibFunc::copysignl: 945 case LibFunc::pow: 946 case LibFunc::powf: 947 case LibFunc::powl: 948 return (NumParams == 2 && FTy.getReturnType()->isFloatingPointTy() && 949 FTy.getReturnType() == FTy.getParamType(0) && 950 FTy.getReturnType() == FTy.getParamType(1)); 951 952 case LibFunc::ffs: 953 case LibFunc::ffsl: 954 case LibFunc::ffsll: 955 case LibFunc::isdigit: 956 case LibFunc::isascii: 957 case LibFunc::toascii: 958 return (NumParams == 1 && FTy.getReturnType()->isIntegerTy(32) && 959 FTy.getParamType(0)->isIntegerTy()); 960 961 case LibFunc::fls: 962 case LibFunc::flsl: 963 case LibFunc::flsll: 964 case LibFunc::abs: 965 case LibFunc::labs: 966 case LibFunc::llabs: 967 return (NumParams == 1 && FTy.getReturnType()->isIntegerTy() && 968 FTy.getReturnType() == FTy.getParamType(0)); 969 970 case LibFunc::cxa_atexit: 971 return (NumParams == 3 && FTy.getReturnType()->isIntegerTy() && 972 FTy.getParamType(0)->isPointerTy() && 973 FTy.getParamType(1)->isPointerTy() && 974 FTy.getParamType(2)->isPointerTy()); 975 976 case LibFunc::sinpi: 977 case LibFunc::cospi: 978 return (NumParams == 1 && FTy.getReturnType()->isDoubleTy() && 979 FTy.getReturnType() == FTy.getParamType(0)); 980 981 case LibFunc::sinpif: 982 case LibFunc::cospif: 983 return (NumParams == 1 && FTy.getReturnType()->isFloatTy() && 984 FTy.getReturnType() == FTy.getParamType(0)); 985 986 default: 987 // Assume the other functions are correct. 988 // FIXME: It'd be really nice to cover them all. 989 return true; 990 } 991 } 992 993 bool TargetLibraryInfoImpl::getLibFunc(const Function &FDecl, 994 LibFunc::Func &F) const { 995 const DataLayout *DL = 996 FDecl.getParent() ? &FDecl.getParent()->getDataLayout() : nullptr; 997 return getLibFunc(FDecl.getName(), F) && 998 isValidProtoForLibFunc(*FDecl.getFunctionType(), F, DL); 999 } 1000 1001 void TargetLibraryInfoImpl::disableAllFunctions() { 1002 memset(AvailableArray, 0, sizeof(AvailableArray)); 1003 } 1004 1005 static bool compareByScalarFnName(const VecDesc &LHS, const VecDesc &RHS) { 1006 return std::strncmp(LHS.ScalarFnName, RHS.ScalarFnName, 1007 std::strlen(RHS.ScalarFnName)) < 0; 1008 } 1009 1010 static bool compareByVectorFnName(const VecDesc &LHS, const VecDesc &RHS) { 1011 return std::strncmp(LHS.VectorFnName, RHS.VectorFnName, 1012 std::strlen(RHS.VectorFnName)) < 0; 1013 } 1014 1015 static bool compareWithScalarFnName(const VecDesc &LHS, StringRef S) { 1016 return std::strncmp(LHS.ScalarFnName, S.data(), S.size()) < 0; 1017 } 1018 1019 static bool compareWithVectorFnName(const VecDesc &LHS, StringRef S) { 1020 return std::strncmp(LHS.VectorFnName, S.data(), S.size()) < 0; 1021 } 1022 1023 void TargetLibraryInfoImpl::addVectorizableFunctions(ArrayRef<VecDesc> Fns) { 1024 VectorDescs.insert(VectorDescs.end(), Fns.begin(), Fns.end()); 1025 std::sort(VectorDescs.begin(), VectorDescs.end(), compareByScalarFnName); 1026 1027 ScalarDescs.insert(ScalarDescs.end(), Fns.begin(), Fns.end()); 1028 std::sort(ScalarDescs.begin(), ScalarDescs.end(), compareByVectorFnName); 1029 } 1030 1031 void TargetLibraryInfoImpl::addVectorizableFunctionsFromVecLib( 1032 enum VectorLibrary VecLib) { 1033 switch (VecLib) { 1034 case Accelerate: { 1035 const VecDesc VecFuncs[] = { 1036 // Floating-Point Arithmetic and Auxiliary Functions 1037 {"ceilf", "vceilf", 4}, 1038 {"fabsf", "vfabsf", 4}, 1039 {"llvm.fabs.f32", "vfabsf", 4}, 1040 {"floorf", "vfloorf", 4}, 1041 {"sqrtf", "vsqrtf", 4}, 1042 {"llvm.sqrt.f32", "vsqrtf", 4}, 1043 1044 // Exponential and Logarithmic Functions 1045 {"expf", "vexpf", 4}, 1046 {"llvm.exp.f32", "vexpf", 4}, 1047 {"expm1f", "vexpm1f", 4}, 1048 {"logf", "vlogf", 4}, 1049 {"llvm.log.f32", "vlogf", 4}, 1050 {"log1pf", "vlog1pf", 4}, 1051 {"log10f", "vlog10f", 4}, 1052 {"llvm.log10.f32", "vlog10f", 4}, 1053 {"logbf", "vlogbf", 4}, 1054 1055 // Trigonometric Functions 1056 {"sinf", "vsinf", 4}, 1057 {"llvm.sin.f32", "vsinf", 4}, 1058 {"cosf", "vcosf", 4}, 1059 {"llvm.cos.f32", "vcosf", 4}, 1060 {"tanf", "vtanf", 4}, 1061 {"asinf", "vasinf", 4}, 1062 {"acosf", "vacosf", 4}, 1063 {"atanf", "vatanf", 4}, 1064 1065 // Hyperbolic Functions 1066 {"sinhf", "vsinhf", 4}, 1067 {"coshf", "vcoshf", 4}, 1068 {"tanhf", "vtanhf", 4}, 1069 {"asinhf", "vasinhf", 4}, 1070 {"acoshf", "vacoshf", 4}, 1071 {"atanhf", "vatanhf", 4}, 1072 }; 1073 addVectorizableFunctions(VecFuncs); 1074 break; 1075 } 1076 case NoLibrary: 1077 break; 1078 } 1079 } 1080 1081 bool TargetLibraryInfoImpl::isFunctionVectorizable(StringRef funcName) const { 1082 funcName = sanitizeFunctionName(funcName); 1083 if (funcName.empty()) 1084 return false; 1085 1086 std::vector<VecDesc>::const_iterator I = std::lower_bound( 1087 VectorDescs.begin(), VectorDescs.end(), funcName, 1088 compareWithScalarFnName); 1089 return I != VectorDescs.end() && StringRef(I->ScalarFnName) == funcName; 1090 } 1091 1092 StringRef TargetLibraryInfoImpl::getVectorizedFunction(StringRef F, 1093 unsigned VF) const { 1094 F = sanitizeFunctionName(F); 1095 if (F.empty()) 1096 return F; 1097 std::vector<VecDesc>::const_iterator I = std::lower_bound( 1098 VectorDescs.begin(), VectorDescs.end(), F, compareWithScalarFnName); 1099 while (I != VectorDescs.end() && StringRef(I->ScalarFnName) == F) { 1100 if (I->VectorizationFactor == VF) 1101 return I->VectorFnName; 1102 ++I; 1103 } 1104 return StringRef(); 1105 } 1106 1107 StringRef TargetLibraryInfoImpl::getScalarizedFunction(StringRef F, 1108 unsigned &VF) const { 1109 F = sanitizeFunctionName(F); 1110 if (F.empty()) 1111 return F; 1112 1113 std::vector<VecDesc>::const_iterator I = std::lower_bound( 1114 ScalarDescs.begin(), ScalarDescs.end(), F, compareWithVectorFnName); 1115 if (I == VectorDescs.end() || StringRef(I->VectorFnName) != F) 1116 return StringRef(); 1117 VF = I->VectorizationFactor; 1118 return I->ScalarFnName; 1119 } 1120 1121 TargetLibraryInfo TargetLibraryAnalysis::run(Module &M) { 1122 if (PresetInfoImpl) 1123 return TargetLibraryInfo(*PresetInfoImpl); 1124 1125 return TargetLibraryInfo(lookupInfoImpl(Triple(M.getTargetTriple()))); 1126 } 1127 1128 TargetLibraryInfo TargetLibraryAnalysis::run(Function &F) { 1129 if (PresetInfoImpl) 1130 return TargetLibraryInfo(*PresetInfoImpl); 1131 1132 return TargetLibraryInfo( 1133 lookupInfoImpl(Triple(F.getParent()->getTargetTriple()))); 1134 } 1135 1136 TargetLibraryInfoImpl &TargetLibraryAnalysis::lookupInfoImpl(Triple T) { 1137 std::unique_ptr<TargetLibraryInfoImpl> &Impl = 1138 Impls[T.normalize()]; 1139 if (!Impl) 1140 Impl.reset(new TargetLibraryInfoImpl(T)); 1141 1142 return *Impl; 1143 } 1144 1145 1146 TargetLibraryInfoWrapperPass::TargetLibraryInfoWrapperPass() 1147 : ImmutablePass(ID), TLIImpl(), TLI(TLIImpl) { 1148 initializeTargetLibraryInfoWrapperPassPass(*PassRegistry::getPassRegistry()); 1149 } 1150 1151 TargetLibraryInfoWrapperPass::TargetLibraryInfoWrapperPass(const Triple &T) 1152 : ImmutablePass(ID), TLIImpl(T), TLI(TLIImpl) { 1153 initializeTargetLibraryInfoWrapperPassPass(*PassRegistry::getPassRegistry()); 1154 } 1155 1156 TargetLibraryInfoWrapperPass::TargetLibraryInfoWrapperPass( 1157 const TargetLibraryInfoImpl &TLIImpl) 1158 : ImmutablePass(ID), TLIImpl(TLIImpl), TLI(this->TLIImpl) { 1159 initializeTargetLibraryInfoWrapperPassPass(*PassRegistry::getPassRegistry()); 1160 } 1161 1162 char TargetLibraryAnalysis::PassID; 1163 1164 // Register the basic pass. 1165 INITIALIZE_PASS(TargetLibraryInfoWrapperPass, "targetlibinfo", 1166 "Target Library Information", false, true) 1167 char TargetLibraryInfoWrapperPass::ID = 0; 1168 1169 void TargetLibraryInfoWrapperPass::anchor() {} 1170