1 //===--- AMDGPU.cpp - AMDGPU ToolChain Implementations ----------*- C++ -*-===// 2 // 3 // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions. 4 // See https://llvm.org/LICENSE.txt for license information. 5 // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception 6 // 7 //===----------------------------------------------------------------------===// 8 9 #include "AMDGPU.h" 10 #include "CommonArgs.h" 11 #include "clang/Basic/TargetID.h" 12 #include "clang/Config/config.h" 13 #include "clang/Driver/Compilation.h" 14 #include "clang/Driver/DriverDiagnostic.h" 15 #include "clang/Driver/InputInfo.h" 16 #include "clang/Driver/Options.h" 17 #include "llvm/ADT/StringExtras.h" 18 #include "llvm/Option/ArgList.h" 19 #include "llvm/Support/Error.h" 20 #include "llvm/Support/LineIterator.h" 21 #include "llvm/Support/Path.h" 22 #include "llvm/Support/Process.h" 23 #include "llvm/Support/VirtualFileSystem.h" 24 #include "llvm/TargetParser/Host.h" 25 #include <optional> 26 #include <system_error> 27 28 using namespace clang::driver; 29 using namespace clang::driver::tools; 30 using namespace clang::driver::toolchains; 31 using namespace clang; 32 using namespace llvm::opt; 33 34 // Look for sub-directory starts with PackageName under ROCm candidate path. 35 // If there is one and only one matching sub-directory found, append the 36 // sub-directory to Path. If there is no matching sub-directory or there are 37 // more than one matching sub-directories, diagnose them. Returns the full 38 // path of the package if there is only one matching sub-directory, otherwise 39 // returns an empty string. 40 llvm::SmallString<0> 41 RocmInstallationDetector::findSPACKPackage(const Candidate &Cand, 42 StringRef PackageName) { 43 if (!Cand.isSPACK()) 44 return {}; 45 std::error_code EC; 46 std::string Prefix = Twine(PackageName + "-" + Cand.SPACKReleaseStr).str(); 47 llvm::SmallVector<llvm::SmallString<0>> SubDirs; 48 for (llvm::vfs::directory_iterator File = D.getVFS().dir_begin(Cand.Path, EC), 49 FileEnd; 50 File != FileEnd && !EC; File.increment(EC)) { 51 llvm::StringRef FileName = llvm::sys::path::filename(File->path()); 52 if (FileName.starts_with(Prefix)) { 53 SubDirs.push_back(FileName); 54 if (SubDirs.size() > 1) 55 break; 56 } 57 } 58 if (SubDirs.size() == 1) { 59 auto PackagePath = Cand.Path; 60 llvm::sys::path::append(PackagePath, SubDirs[0]); 61 return PackagePath; 62 } 63 if (SubDirs.size() == 0 && Verbose) { 64 llvm::errs() << "SPACK package " << Prefix << " not found at " << Cand.Path 65 << '\n'; 66 return {}; 67 } 68 69 if (SubDirs.size() > 1 && Verbose) { 70 llvm::errs() << "Cannot use SPACK package " << Prefix << " at " << Cand.Path 71 << " due to multiple installations for the same version\n"; 72 } 73 return {}; 74 } 75 76 void RocmInstallationDetector::scanLibDevicePath(llvm::StringRef Path) { 77 assert(!Path.empty()); 78 79 const StringRef Suffix(".bc"); 80 const StringRef Suffix2(".amdgcn.bc"); 81 82 std::error_code EC; 83 for (llvm::vfs::directory_iterator LI = D.getVFS().dir_begin(Path, EC), LE; 84 !EC && LI != LE; LI = LI.increment(EC)) { 85 StringRef FilePath = LI->path(); 86 StringRef FileName = llvm::sys::path::filename(FilePath); 87 if (!FileName.ends_with(Suffix)) 88 continue; 89 90 StringRef BaseName; 91 if (FileName.ends_with(Suffix2)) 92 BaseName = FileName.drop_back(Suffix2.size()); 93 else if (FileName.ends_with(Suffix)) 94 BaseName = FileName.drop_back(Suffix.size()); 95 96 const StringRef ABIVersionPrefix = "oclc_abi_version_"; 97 if (BaseName == "ocml") { 98 OCML = FilePath; 99 } else if (BaseName == "ockl") { 100 OCKL = FilePath; 101 } else if (BaseName == "opencl") { 102 OpenCL = FilePath; 103 } else if (BaseName == "hip") { 104 HIP = FilePath; 105 } else if (BaseName == "asanrtl") { 106 AsanRTL = FilePath; 107 } else if (BaseName == "oclc_finite_only_off") { 108 FiniteOnly.Off = FilePath; 109 } else if (BaseName == "oclc_finite_only_on") { 110 FiniteOnly.On = FilePath; 111 } else if (BaseName == "oclc_daz_opt_on") { 112 DenormalsAreZero.On = FilePath; 113 } else if (BaseName == "oclc_daz_opt_off") { 114 DenormalsAreZero.Off = FilePath; 115 } else if (BaseName == "oclc_correctly_rounded_sqrt_on") { 116 CorrectlyRoundedSqrt.On = FilePath; 117 } else if (BaseName == "oclc_correctly_rounded_sqrt_off") { 118 CorrectlyRoundedSqrt.Off = FilePath; 119 } else if (BaseName == "oclc_unsafe_math_on") { 120 UnsafeMath.On = FilePath; 121 } else if (BaseName == "oclc_unsafe_math_off") { 122 UnsafeMath.Off = FilePath; 123 } else if (BaseName == "oclc_wavefrontsize64_on") { 124 WavefrontSize64.On = FilePath; 125 } else if (BaseName == "oclc_wavefrontsize64_off") { 126 WavefrontSize64.Off = FilePath; 127 } else if (BaseName.starts_with(ABIVersionPrefix)) { 128 unsigned ABIVersionNumber; 129 if (BaseName.drop_front(ABIVersionPrefix.size()) 130 .getAsInteger(/*Redex=*/0, ABIVersionNumber)) 131 continue; 132 ABIVersionMap[ABIVersionNumber] = FilePath.str(); 133 } else { 134 // Process all bitcode filenames that look like 135 // ocl_isa_version_XXX.amdgcn.bc 136 const StringRef DeviceLibPrefix = "oclc_isa_version_"; 137 if (!BaseName.starts_with(DeviceLibPrefix)) 138 continue; 139 140 StringRef IsaVersionNumber = 141 BaseName.drop_front(DeviceLibPrefix.size()); 142 143 llvm::Twine GfxName = Twine("gfx") + IsaVersionNumber; 144 SmallString<8> Tmp; 145 LibDeviceMap.insert( 146 std::make_pair(GfxName.toStringRef(Tmp), FilePath.str())); 147 } 148 } 149 } 150 151 // Parse and extract version numbers from `.hipVersion`. Return `true` if 152 // the parsing fails. 153 bool RocmInstallationDetector::parseHIPVersionFile(llvm::StringRef V) { 154 SmallVector<StringRef, 4> VersionParts; 155 V.split(VersionParts, '\n'); 156 unsigned Major = ~0U; 157 unsigned Minor = ~0U; 158 for (auto Part : VersionParts) { 159 auto Splits = Part.rtrim().split('='); 160 if (Splits.first == "HIP_VERSION_MAJOR") { 161 if (Splits.second.getAsInteger(0, Major)) 162 return true; 163 } else if (Splits.first == "HIP_VERSION_MINOR") { 164 if (Splits.second.getAsInteger(0, Minor)) 165 return true; 166 } else if (Splits.first == "HIP_VERSION_PATCH") 167 VersionPatch = Splits.second.str(); 168 } 169 if (Major == ~0U || Minor == ~0U) 170 return true; 171 VersionMajorMinor = llvm::VersionTuple(Major, Minor); 172 DetectedVersion = 173 (Twine(Major) + "." + Twine(Minor) + "." + VersionPatch).str(); 174 return false; 175 } 176 177 /// \returns a list of candidate directories for ROCm installation, which is 178 /// cached and populated only once. 179 const SmallVectorImpl<RocmInstallationDetector::Candidate> & 180 RocmInstallationDetector::getInstallationPathCandidates() { 181 182 // Return the cached candidate list if it has already been populated. 183 if (!ROCmSearchDirs.empty()) 184 return ROCmSearchDirs; 185 186 auto DoPrintROCmSearchDirs = [&]() { 187 if (PrintROCmSearchDirs) 188 for (auto Cand : ROCmSearchDirs) { 189 llvm::errs() << "ROCm installation search path"; 190 if (Cand.isSPACK()) 191 llvm::errs() << " (Spack " << Cand.SPACKReleaseStr << ")"; 192 llvm::errs() << ": " << Cand.Path << '\n'; 193 } 194 }; 195 196 // For candidate specified by --rocm-path we do not do strict check, i.e., 197 // checking existence of HIP version file and device library files. 198 if (!RocmPathArg.empty()) { 199 ROCmSearchDirs.emplace_back(RocmPathArg.str()); 200 DoPrintROCmSearchDirs(); 201 return ROCmSearchDirs; 202 } else if (std::optional<std::string> RocmPathEnv = 203 llvm::sys::Process::GetEnv("ROCM_PATH")) { 204 if (!RocmPathEnv->empty()) { 205 ROCmSearchDirs.emplace_back(std::move(*RocmPathEnv)); 206 DoPrintROCmSearchDirs(); 207 return ROCmSearchDirs; 208 } 209 } 210 211 // Try to find relative to the compiler binary. 212 const char *InstallDir = D.getInstalledDir(); 213 214 // Check both a normal Unix prefix position of the clang binary, as well as 215 // the Windows-esque layout the ROCm packages use with the host architecture 216 // subdirectory of bin. 217 auto DeduceROCmPath = [](StringRef ClangPath) { 218 // Strip off directory (usually bin) 219 StringRef ParentDir = llvm::sys::path::parent_path(ClangPath); 220 StringRef ParentName = llvm::sys::path::filename(ParentDir); 221 222 // Some builds use bin/{host arch}, so go up again. 223 if (ParentName == "bin") { 224 ParentDir = llvm::sys::path::parent_path(ParentDir); 225 ParentName = llvm::sys::path::filename(ParentDir); 226 } 227 228 // Detect ROCm packages built with SPACK. 229 // clang is installed at 230 // <rocm_root>/llvm-amdgpu-<rocm_release_string>-<hash>/bin directory. 231 // We only consider the parent directory of llvm-amdgpu package as ROCm 232 // installation candidate for SPACK. 233 if (ParentName.starts_with("llvm-amdgpu-")) { 234 auto SPACKPostfix = 235 ParentName.drop_front(strlen("llvm-amdgpu-")).split('-'); 236 auto SPACKReleaseStr = SPACKPostfix.first; 237 if (!SPACKReleaseStr.empty()) { 238 ParentDir = llvm::sys::path::parent_path(ParentDir); 239 return Candidate(ParentDir.str(), /*StrictChecking=*/true, 240 SPACKReleaseStr); 241 } 242 } 243 244 // Some versions of the rocm llvm package install to /opt/rocm/llvm/bin 245 // Some versions of the aomp package install to /opt/rocm/aomp/bin 246 if (ParentName == "llvm" || ParentName.starts_with("aomp")) 247 ParentDir = llvm::sys::path::parent_path(ParentDir); 248 249 return Candidate(ParentDir.str(), /*StrictChecking=*/true); 250 }; 251 252 // Deduce ROCm path by the path used to invoke clang. Do not resolve symbolic 253 // link of clang itself. 254 ROCmSearchDirs.emplace_back(DeduceROCmPath(InstallDir)); 255 256 // Deduce ROCm path by the real path of the invoked clang, resolving symbolic 257 // link of clang itself. 258 llvm::SmallString<256> RealClangPath; 259 llvm::sys::fs::real_path(D.getClangProgramPath(), RealClangPath); 260 auto ParentPath = llvm::sys::path::parent_path(RealClangPath); 261 if (ParentPath != InstallDir) 262 ROCmSearchDirs.emplace_back(DeduceROCmPath(ParentPath)); 263 264 // Device library may be installed in clang or resource directory. 265 auto ClangRoot = llvm::sys::path::parent_path(InstallDir); 266 auto RealClangRoot = llvm::sys::path::parent_path(ParentPath); 267 ROCmSearchDirs.emplace_back(ClangRoot.str(), /*StrictChecking=*/true); 268 if (RealClangRoot != ClangRoot) 269 ROCmSearchDirs.emplace_back(RealClangRoot.str(), /*StrictChecking=*/true); 270 ROCmSearchDirs.emplace_back(D.ResourceDir, 271 /*StrictChecking=*/true); 272 273 ROCmSearchDirs.emplace_back(D.SysRoot + "/opt/rocm", 274 /*StrictChecking=*/true); 275 276 // Find the latest /opt/rocm-{release} directory. 277 std::error_code EC; 278 std::string LatestROCm; 279 llvm::VersionTuple LatestVer; 280 // Get ROCm version from ROCm directory name. 281 auto GetROCmVersion = [](StringRef DirName) { 282 llvm::VersionTuple V; 283 std::string VerStr = DirName.drop_front(strlen("rocm-")).str(); 284 // The ROCm directory name follows the format of 285 // rocm-{major}.{minor}.{subMinor}[-{build}] 286 std::replace(VerStr.begin(), VerStr.end(), '-', '.'); 287 V.tryParse(VerStr); 288 return V; 289 }; 290 for (llvm::vfs::directory_iterator 291 File = D.getVFS().dir_begin(D.SysRoot + "/opt", EC), 292 FileEnd; 293 File != FileEnd && !EC; File.increment(EC)) { 294 llvm::StringRef FileName = llvm::sys::path::filename(File->path()); 295 if (!FileName.starts_with("rocm-")) 296 continue; 297 if (LatestROCm.empty()) { 298 LatestROCm = FileName.str(); 299 LatestVer = GetROCmVersion(LatestROCm); 300 continue; 301 } 302 auto Ver = GetROCmVersion(FileName); 303 if (LatestVer < Ver) { 304 LatestROCm = FileName.str(); 305 LatestVer = Ver; 306 } 307 } 308 if (!LatestROCm.empty()) 309 ROCmSearchDirs.emplace_back(D.SysRoot + "/opt/" + LatestROCm, 310 /*StrictChecking=*/true); 311 312 ROCmSearchDirs.emplace_back(D.SysRoot + "/usr/local", 313 /*StrictChecking=*/true); 314 ROCmSearchDirs.emplace_back(D.SysRoot + "/usr", 315 /*StrictChecking=*/true); 316 317 DoPrintROCmSearchDirs(); 318 return ROCmSearchDirs; 319 } 320 321 RocmInstallationDetector::RocmInstallationDetector( 322 const Driver &D, const llvm::Triple &HostTriple, 323 const llvm::opt::ArgList &Args, bool DetectHIPRuntime, bool DetectDeviceLib) 324 : D(D) { 325 Verbose = Args.hasArg(options::OPT_v); 326 RocmPathArg = Args.getLastArgValue(clang::driver::options::OPT_rocm_path_EQ); 327 PrintROCmSearchDirs = 328 Args.hasArg(clang::driver::options::OPT_print_rocm_search_dirs); 329 RocmDeviceLibPathArg = 330 Args.getAllArgValues(clang::driver::options::OPT_rocm_device_lib_path_EQ); 331 HIPPathArg = Args.getLastArgValue(clang::driver::options::OPT_hip_path_EQ); 332 HIPStdParPathArg = 333 Args.getLastArgValue(clang::driver::options::OPT_hipstdpar_path_EQ); 334 HasHIPStdParLibrary = 335 !HIPStdParPathArg.empty() && D.getVFS().exists(HIPStdParPathArg + 336 "/hipstdpar_lib.hpp"); 337 HIPRocThrustPathArg = 338 Args.getLastArgValue(clang::driver::options::OPT_hipstdpar_thrust_path_EQ); 339 HasRocThrustLibrary = !HIPRocThrustPathArg.empty() && 340 D.getVFS().exists(HIPRocThrustPathArg + "/thrust"); 341 HIPRocPrimPathArg = 342 Args.getLastArgValue(clang::driver::options::OPT_hipstdpar_prim_path_EQ); 343 HasRocPrimLibrary = !HIPRocPrimPathArg.empty() && 344 D.getVFS().exists(HIPRocPrimPathArg + "/rocprim"); 345 346 if (auto *A = Args.getLastArg(clang::driver::options::OPT_hip_version_EQ)) { 347 HIPVersionArg = A->getValue(); 348 unsigned Major = ~0U; 349 unsigned Minor = ~0U; 350 SmallVector<StringRef, 3> Parts; 351 HIPVersionArg.split(Parts, '.'); 352 if (Parts.size()) 353 Parts[0].getAsInteger(0, Major); 354 if (Parts.size() > 1) 355 Parts[1].getAsInteger(0, Minor); 356 if (Parts.size() > 2) 357 VersionPatch = Parts[2].str(); 358 if (VersionPatch.empty()) 359 VersionPatch = "0"; 360 if (Major != ~0U && Minor == ~0U) 361 Minor = 0; 362 if (Major == ~0U || Minor == ~0U) 363 D.Diag(diag::err_drv_invalid_value) 364 << A->getAsString(Args) << HIPVersionArg; 365 366 VersionMajorMinor = llvm::VersionTuple(Major, Minor); 367 DetectedVersion = 368 (Twine(Major) + "." + Twine(Minor) + "." + VersionPatch).str(); 369 } else { 370 VersionPatch = DefaultVersionPatch; 371 VersionMajorMinor = 372 llvm::VersionTuple(DefaultVersionMajor, DefaultVersionMinor); 373 DetectedVersion = (Twine(DefaultVersionMajor) + "." + 374 Twine(DefaultVersionMinor) + "." + VersionPatch) 375 .str(); 376 } 377 378 if (DetectHIPRuntime) 379 detectHIPRuntime(); 380 if (DetectDeviceLib) 381 detectDeviceLibrary(); 382 } 383 384 void RocmInstallationDetector::detectDeviceLibrary() { 385 assert(LibDevicePath.empty()); 386 387 if (!RocmDeviceLibPathArg.empty()) 388 LibDevicePath = RocmDeviceLibPathArg[RocmDeviceLibPathArg.size() - 1]; 389 else if (std::optional<std::string> LibPathEnv = 390 llvm::sys::Process::GetEnv("HIP_DEVICE_LIB_PATH")) 391 LibDevicePath = std::move(*LibPathEnv); 392 393 auto &FS = D.getVFS(); 394 if (!LibDevicePath.empty()) { 395 // Maintain compatability with HIP flag/envvar pointing directly at the 396 // bitcode library directory. This points directly at the library path instead 397 // of the rocm root installation. 398 if (!FS.exists(LibDevicePath)) 399 return; 400 401 scanLibDevicePath(LibDevicePath); 402 HasDeviceLibrary = allGenericLibsValid() && !LibDeviceMap.empty(); 403 return; 404 } 405 406 // Check device library exists at the given path. 407 auto CheckDeviceLib = [&](StringRef Path, bool StrictChecking) { 408 bool CheckLibDevice = (!NoBuiltinLibs || StrictChecking); 409 if (CheckLibDevice && !FS.exists(Path)) 410 return false; 411 412 scanLibDevicePath(Path); 413 414 if (!NoBuiltinLibs) { 415 // Check that the required non-target libraries are all available. 416 if (!allGenericLibsValid()) 417 return false; 418 419 // Check that we have found at least one libdevice that we can link in 420 // if -nobuiltinlib hasn't been specified. 421 if (LibDeviceMap.empty()) 422 return false; 423 } 424 return true; 425 }; 426 427 // Find device libraries in <LLVM_DIR>/lib/clang/<ver>/lib/amdgcn/bitcode 428 LibDevicePath = D.ResourceDir; 429 llvm::sys::path::append(LibDevicePath, CLANG_INSTALL_LIBDIR_BASENAME, 430 "amdgcn", "bitcode"); 431 HasDeviceLibrary = CheckDeviceLib(LibDevicePath, true); 432 if (HasDeviceLibrary) 433 return; 434 435 // Find device libraries in a legacy ROCm directory structure 436 // ${ROCM_ROOT}/amdgcn/bitcode/* 437 auto &ROCmDirs = getInstallationPathCandidates(); 438 for (const auto &Candidate : ROCmDirs) { 439 LibDevicePath = Candidate.Path; 440 llvm::sys::path::append(LibDevicePath, "amdgcn", "bitcode"); 441 HasDeviceLibrary = CheckDeviceLib(LibDevicePath, Candidate.StrictChecking); 442 if (HasDeviceLibrary) 443 return; 444 } 445 } 446 447 void RocmInstallationDetector::detectHIPRuntime() { 448 SmallVector<Candidate, 4> HIPSearchDirs; 449 if (!HIPPathArg.empty()) 450 HIPSearchDirs.emplace_back(HIPPathArg.str()); 451 else if (std::optional<std::string> HIPPathEnv = 452 llvm::sys::Process::GetEnv("HIP_PATH")) { 453 if (!HIPPathEnv->empty()) 454 HIPSearchDirs.emplace_back(std::move(*HIPPathEnv)); 455 } 456 if (HIPSearchDirs.empty()) 457 HIPSearchDirs.append(getInstallationPathCandidates()); 458 auto &FS = D.getVFS(); 459 460 for (const auto &Candidate : HIPSearchDirs) { 461 InstallPath = Candidate.Path; 462 if (InstallPath.empty() || !FS.exists(InstallPath)) 463 continue; 464 // HIP runtime built by SPACK is installed to 465 // <rocm_root>/hip-<rocm_release_string>-<hash> directory. 466 auto SPACKPath = findSPACKPackage(Candidate, "hip"); 467 InstallPath = SPACKPath.empty() ? InstallPath : SPACKPath; 468 469 BinPath = InstallPath; 470 llvm::sys::path::append(BinPath, "bin"); 471 IncludePath = InstallPath; 472 llvm::sys::path::append(IncludePath, "include"); 473 LibPath = InstallPath; 474 llvm::sys::path::append(LibPath, "lib"); 475 SharePath = InstallPath; 476 llvm::sys::path::append(SharePath, "share"); 477 478 // Get parent of InstallPath and append "share" 479 SmallString<0> ParentSharePath = llvm::sys::path::parent_path(InstallPath); 480 llvm::sys::path::append(ParentSharePath, "share"); 481 482 auto Append = [](SmallString<0> &path, const Twine &a, const Twine &b = "", 483 const Twine &c = "", const Twine &d = "") { 484 SmallString<0> newpath = path; 485 llvm::sys::path::append(newpath, a, b, c, d); 486 return newpath; 487 }; 488 // If HIP version file can be found and parsed, use HIP version from there. 489 for (const auto &VersionFilePath : 490 {Append(SharePath, "hip", "version"), 491 Append(ParentSharePath, "hip", "version"), 492 Append(BinPath, ".hipVersion")}) { 493 llvm::ErrorOr<std::unique_ptr<llvm::MemoryBuffer>> VersionFile = 494 FS.getBufferForFile(VersionFilePath); 495 if (!VersionFile) 496 continue; 497 if (HIPVersionArg.empty() && VersionFile) 498 if (parseHIPVersionFile((*VersionFile)->getBuffer())) 499 continue; 500 501 HasHIPRuntime = true; 502 return; 503 } 504 // Otherwise, if -rocm-path is specified (no strict checking), use the 505 // default HIP version or specified by --hip-version. 506 if (!Candidate.StrictChecking) { 507 HasHIPRuntime = true; 508 return; 509 } 510 } 511 HasHIPRuntime = false; 512 } 513 514 void RocmInstallationDetector::print(raw_ostream &OS) const { 515 if (hasHIPRuntime()) 516 OS << "Found HIP installation: " << InstallPath << ", version " 517 << DetectedVersion << '\n'; 518 } 519 520 void RocmInstallationDetector::AddHIPIncludeArgs(const ArgList &DriverArgs, 521 ArgStringList &CC1Args) const { 522 bool UsesRuntimeWrapper = VersionMajorMinor > llvm::VersionTuple(3, 5) && 523 !DriverArgs.hasArg(options::OPT_nohipwrapperinc); 524 bool HasHipStdPar = DriverArgs.hasArg(options::OPT_hipstdpar); 525 526 if (!DriverArgs.hasArg(options::OPT_nobuiltininc)) { 527 // HIP header includes standard library wrapper headers under clang 528 // cuda_wrappers directory. Since these wrapper headers include_next 529 // standard C++ headers, whereas libc++ headers include_next other clang 530 // headers. The include paths have to follow this order: 531 // - wrapper include path 532 // - standard C++ include path 533 // - other clang include path 534 // Since standard C++ and other clang include paths are added in other 535 // places after this function, here we only need to make sure wrapper 536 // include path is added. 537 // 538 // ROCm 3.5 does not fully support the wrapper headers. Therefore it needs 539 // a workaround. 540 SmallString<128> P(D.ResourceDir); 541 if (UsesRuntimeWrapper) 542 llvm::sys::path::append(P, "include", "cuda_wrappers"); 543 CC1Args.push_back("-internal-isystem"); 544 CC1Args.push_back(DriverArgs.MakeArgString(P)); 545 } 546 547 const auto HandleHipStdPar = [=, &DriverArgs, &CC1Args]() { 548 if (!hasHIPStdParLibrary()) { 549 D.Diag(diag::err_drv_no_hipstdpar_lib); 550 return; 551 } 552 if (!HasRocThrustLibrary && 553 !D.getVFS().exists(getIncludePath() + "/thrust")) { 554 D.Diag(diag::err_drv_no_hipstdpar_thrust_lib); 555 return; 556 } 557 if (!HasRocPrimLibrary && 558 !D.getVFS().exists(getIncludePath() + "/rocprim")) { 559 D.Diag(diag::err_drv_no_hipstdpar_prim_lib); 560 return; 561 } 562 563 const char *ThrustPath; 564 if (HasRocThrustLibrary) 565 ThrustPath = DriverArgs.MakeArgString(HIPRocThrustPathArg); 566 else 567 ThrustPath = DriverArgs.MakeArgString(getIncludePath() + "/thrust"); 568 569 const char *PrimPath; 570 if (HasRocPrimLibrary) 571 PrimPath = DriverArgs.MakeArgString(HIPRocPrimPathArg); 572 else 573 PrimPath = DriverArgs.MakeArgString(getIncludePath() + "/rocprim"); 574 575 CC1Args.append({"-idirafter", ThrustPath, "-idirafter", PrimPath, 576 "-idirafter", DriverArgs.MakeArgString(HIPStdParPathArg), 577 "-include", "hipstdpar_lib.hpp"}); 578 }; 579 580 if (DriverArgs.hasArg(options::OPT_nogpuinc)) { 581 if (HasHipStdPar) 582 HandleHipStdPar(); 583 584 return; 585 } 586 587 if (!hasHIPRuntime()) { 588 D.Diag(diag::err_drv_no_hip_runtime); 589 return; 590 } 591 592 CC1Args.push_back("-idirafter"); 593 CC1Args.push_back(DriverArgs.MakeArgString(getIncludePath())); 594 if (UsesRuntimeWrapper) 595 CC1Args.append({"-include", "__clang_hip_runtime_wrapper.h"}); 596 if (HasHipStdPar) 597 HandleHipStdPar(); 598 } 599 600 void amdgpu::Linker::ConstructJob(Compilation &C, const JobAction &JA, 601 const InputInfo &Output, 602 const InputInfoList &Inputs, 603 const ArgList &Args, 604 const char *LinkingOutput) const { 605 606 std::string Linker = getToolChain().GetProgramPath(getShortName()); 607 ArgStringList CmdArgs; 608 CmdArgs.push_back("--no-undefined"); 609 CmdArgs.push_back("-shared"); 610 611 addLinkerCompressDebugSectionsOption(getToolChain(), Args, CmdArgs); 612 Args.AddAllArgs(CmdArgs, options::OPT_L); 613 AddLinkerInputs(getToolChain(), Inputs, Args, CmdArgs, JA); 614 if (C.getDriver().isUsingLTO()) 615 addLTOOptions(getToolChain(), Args, CmdArgs, Output, Inputs[0], 616 C.getDriver().getLTOMode() == LTOK_Thin); 617 else if (Args.hasArg(options::OPT_mcpu_EQ)) 618 CmdArgs.push_back(Args.MakeArgString( 619 "-plugin-opt=mcpu=" + Args.getLastArgValue(options::OPT_mcpu_EQ))); 620 CmdArgs.push_back("-o"); 621 CmdArgs.push_back(Output.getFilename()); 622 C.addCommand(std::make_unique<Command>( 623 JA, *this, ResponseFileSupport::AtFileCurCP(), Args.MakeArgString(Linker), 624 CmdArgs, Inputs, Output)); 625 } 626 627 void amdgpu::getAMDGPUTargetFeatures(const Driver &D, 628 const llvm::Triple &Triple, 629 const llvm::opt::ArgList &Args, 630 std::vector<StringRef> &Features) { 631 // Add target ID features to -target-feature options. No diagnostics should 632 // be emitted here since invalid target ID is diagnosed at other places. 633 StringRef TargetID = Args.getLastArgValue(options::OPT_mcpu_EQ); 634 if (!TargetID.empty()) { 635 llvm::StringMap<bool> FeatureMap; 636 auto OptionalGpuArch = parseTargetID(Triple, TargetID, &FeatureMap); 637 if (OptionalGpuArch) { 638 StringRef GpuArch = *OptionalGpuArch; 639 // Iterate through all possible target ID features for the given GPU. 640 // If it is mapped to true, add +feature. 641 // If it is mapped to false, add -feature. 642 // If it is not in the map (default), do not add it 643 for (auto &&Feature : getAllPossibleTargetIDFeatures(Triple, GpuArch)) { 644 auto Pos = FeatureMap.find(Feature); 645 if (Pos == FeatureMap.end()) 646 continue; 647 Features.push_back(Args.MakeArgStringRef( 648 (Twine(Pos->second ? "+" : "-") + Feature).str())); 649 } 650 } 651 } 652 653 if (Args.hasFlag(options::OPT_mwavefrontsize64, 654 options::OPT_mno_wavefrontsize64, false)) 655 Features.push_back("+wavefrontsize64"); 656 657 handleTargetFeaturesGroup(D, Triple, Args, Features, 658 options::OPT_m_amdgpu_Features_Group); 659 } 660 661 /// AMDGPU Toolchain 662 AMDGPUToolChain::AMDGPUToolChain(const Driver &D, const llvm::Triple &Triple, 663 const ArgList &Args) 664 : Generic_ELF(D, Triple, Args), 665 OptionsDefault( 666 {{options::OPT_O, "3"}, {options::OPT_cl_std_EQ, "CL1.2"}}) { 667 // Check code object version options. Emit warnings for legacy options 668 // and errors for the last invalid code object version options. 669 // It is done here to avoid repeated warning or error messages for 670 // each tool invocation. 671 checkAMDGPUCodeObjectVersion(D, Args); 672 } 673 674 Tool *AMDGPUToolChain::buildLinker() const { 675 return new tools::amdgpu::Linker(*this); 676 } 677 678 DerivedArgList * 679 AMDGPUToolChain::TranslateArgs(const DerivedArgList &Args, StringRef BoundArch, 680 Action::OffloadKind DeviceOffloadKind) const { 681 682 DerivedArgList *DAL = 683 Generic_ELF::TranslateArgs(Args, BoundArch, DeviceOffloadKind); 684 685 const OptTable &Opts = getDriver().getOpts(); 686 687 if (!DAL) 688 DAL = new DerivedArgList(Args.getBaseArgs()); 689 690 for (Arg *A : Args) 691 DAL->append(A); 692 693 // Replace -mcpu=native with detected GPU. 694 Arg *LastMCPUArg = DAL->getLastArg(options::OPT_mcpu_EQ); 695 if (LastMCPUArg && StringRef(LastMCPUArg->getValue()) == "native") { 696 DAL->eraseArg(options::OPT_mcpu_EQ); 697 auto GPUsOrErr = getSystemGPUArchs(Args); 698 if (!GPUsOrErr) { 699 getDriver().Diag(diag::err_drv_undetermined_gpu_arch) 700 << llvm::Triple::getArchTypeName(getArch()) 701 << llvm::toString(GPUsOrErr.takeError()) << "-mcpu"; 702 } else { 703 auto &GPUs = *GPUsOrErr; 704 if (GPUs.size() > 1) { 705 getDriver().Diag(diag::warn_drv_multi_gpu_arch) 706 << llvm::Triple::getArchTypeName(getArch()) 707 << llvm::join(GPUs, ", ") << "-mcpu"; 708 } 709 DAL->AddJoinedArg(nullptr, Opts.getOption(options::OPT_mcpu_EQ), 710 Args.MakeArgString(GPUs.front())); 711 } 712 } 713 714 checkTargetID(*DAL); 715 716 if (!Args.getLastArgValue(options::OPT_x).equals("cl")) 717 return DAL; 718 719 // Phase 1 (.cl -> .bc) 720 if (Args.hasArg(options::OPT_c) && Args.hasArg(options::OPT_emit_llvm)) { 721 DAL->AddFlagArg(nullptr, Opts.getOption(getTriple().isArch64Bit() 722 ? options::OPT_m64 723 : options::OPT_m32)); 724 725 // Have to check OPT_O4, OPT_O0 & OPT_Ofast separately 726 // as they defined that way in Options.td 727 if (!Args.hasArg(options::OPT_O, options::OPT_O0, options::OPT_O4, 728 options::OPT_Ofast)) 729 DAL->AddJoinedArg(nullptr, Opts.getOption(options::OPT_O), 730 getOptionDefault(options::OPT_O)); 731 } 732 733 return DAL; 734 } 735 736 bool AMDGPUToolChain::getDefaultDenormsAreZeroForTarget( 737 llvm::AMDGPU::GPUKind Kind) { 738 739 // Assume nothing without a specific target. 740 if (Kind == llvm::AMDGPU::GK_NONE) 741 return false; 742 743 const unsigned ArchAttr = llvm::AMDGPU::getArchAttrAMDGCN(Kind); 744 745 // Default to enabling f32 denormals by default on subtargets where fma is 746 // fast with denormals 747 const bool BothDenormAndFMAFast = 748 (ArchAttr & llvm::AMDGPU::FEATURE_FAST_FMA_F32) && 749 (ArchAttr & llvm::AMDGPU::FEATURE_FAST_DENORMAL_F32); 750 return !BothDenormAndFMAFast; 751 } 752 753 llvm::DenormalMode AMDGPUToolChain::getDefaultDenormalModeForType( 754 const llvm::opt::ArgList &DriverArgs, const JobAction &JA, 755 const llvm::fltSemantics *FPType) const { 756 // Denormals should always be enabled for f16 and f64. 757 if (!FPType || FPType != &llvm::APFloat::IEEEsingle()) 758 return llvm::DenormalMode::getIEEE(); 759 760 if (JA.getOffloadingDeviceKind() == Action::OFK_HIP || 761 JA.getOffloadingDeviceKind() == Action::OFK_Cuda) { 762 auto Arch = getProcessorFromTargetID(getTriple(), JA.getOffloadingArch()); 763 auto Kind = llvm::AMDGPU::parseArchAMDGCN(Arch); 764 if (FPType && FPType == &llvm::APFloat::IEEEsingle() && 765 DriverArgs.hasFlag(options::OPT_fgpu_flush_denormals_to_zero, 766 options::OPT_fno_gpu_flush_denormals_to_zero, 767 getDefaultDenormsAreZeroForTarget(Kind))) 768 return llvm::DenormalMode::getPreserveSign(); 769 770 return llvm::DenormalMode::getIEEE(); 771 } 772 773 const StringRef GpuArch = getGPUArch(DriverArgs); 774 auto Kind = llvm::AMDGPU::parseArchAMDGCN(GpuArch); 775 776 // TODO: There are way too many flags that change this. Do we need to check 777 // them all? 778 bool DAZ = DriverArgs.hasArg(options::OPT_cl_denorms_are_zero) || 779 getDefaultDenormsAreZeroForTarget(Kind); 780 781 // Outputs are flushed to zero (FTZ), preserving sign. Denormal inputs are 782 // also implicit treated as zero (DAZ). 783 return DAZ ? llvm::DenormalMode::getPreserveSign() : 784 llvm::DenormalMode::getIEEE(); 785 } 786 787 bool AMDGPUToolChain::isWave64(const llvm::opt::ArgList &DriverArgs, 788 llvm::AMDGPU::GPUKind Kind) { 789 const unsigned ArchAttr = llvm::AMDGPU::getArchAttrAMDGCN(Kind); 790 bool HasWave32 = (ArchAttr & llvm::AMDGPU::FEATURE_WAVE32); 791 792 return !HasWave32 || DriverArgs.hasFlag( 793 options::OPT_mwavefrontsize64, options::OPT_mno_wavefrontsize64, false); 794 } 795 796 797 /// ROCM Toolchain 798 ROCMToolChain::ROCMToolChain(const Driver &D, const llvm::Triple &Triple, 799 const ArgList &Args) 800 : AMDGPUToolChain(D, Triple, Args) { 801 RocmInstallation->detectDeviceLibrary(); 802 } 803 804 void AMDGPUToolChain::addClangTargetOptions( 805 const llvm::opt::ArgList &DriverArgs, 806 llvm::opt::ArgStringList &CC1Args, 807 Action::OffloadKind DeviceOffloadingKind) const { 808 // Default to "hidden" visibility, as object level linking will not be 809 // supported for the foreseeable future. 810 if (!DriverArgs.hasArg(options::OPT_fvisibility_EQ, 811 options::OPT_fvisibility_ms_compat)) { 812 CC1Args.push_back("-fvisibility=hidden"); 813 CC1Args.push_back("-fapply-global-visibility-to-externs"); 814 } 815 } 816 817 StringRef 818 AMDGPUToolChain::getGPUArch(const llvm::opt::ArgList &DriverArgs) const { 819 return getProcessorFromTargetID( 820 getTriple(), DriverArgs.getLastArgValue(options::OPT_mcpu_EQ)); 821 } 822 823 AMDGPUToolChain::ParsedTargetIDType 824 AMDGPUToolChain::getParsedTargetID(const llvm::opt::ArgList &DriverArgs) const { 825 StringRef TargetID = DriverArgs.getLastArgValue(options::OPT_mcpu_EQ); 826 if (TargetID.empty()) 827 return {std::nullopt, std::nullopt, std::nullopt}; 828 829 llvm::StringMap<bool> FeatureMap; 830 auto OptionalGpuArch = parseTargetID(getTriple(), TargetID, &FeatureMap); 831 if (!OptionalGpuArch) 832 return {TargetID.str(), std::nullopt, std::nullopt}; 833 834 return {TargetID.str(), OptionalGpuArch->str(), FeatureMap}; 835 } 836 837 void AMDGPUToolChain::checkTargetID( 838 const llvm::opt::ArgList &DriverArgs) const { 839 auto PTID = getParsedTargetID(DriverArgs); 840 if (PTID.OptionalTargetID && !PTID.OptionalGPUArch) { 841 getDriver().Diag(clang::diag::err_drv_bad_target_id) 842 << *PTID.OptionalTargetID; 843 } 844 } 845 846 Expected<SmallVector<std::string>> 847 AMDGPUToolChain::getSystemGPUArchs(const ArgList &Args) const { 848 // Detect AMD GPUs availible on the system. 849 std::string Program; 850 if (Arg *A = Args.getLastArg(options::OPT_amdgpu_arch_tool_EQ)) 851 Program = A->getValue(); 852 else 853 Program = GetProgramPath("amdgpu-arch"); 854 855 auto StdoutOrErr = executeToolChainProgram(Program); 856 if (!StdoutOrErr) 857 return StdoutOrErr.takeError(); 858 859 SmallVector<std::string, 1> GPUArchs; 860 for (StringRef Arch : llvm::split((*StdoutOrErr)->getBuffer(), "\n")) 861 if (!Arch.empty()) 862 GPUArchs.push_back(Arch.str()); 863 864 if (GPUArchs.empty()) 865 return llvm::createStringError(std::error_code(), 866 "No AMD GPU detected in the system"); 867 868 return std::move(GPUArchs); 869 } 870 871 void ROCMToolChain::addClangTargetOptions( 872 const llvm::opt::ArgList &DriverArgs, llvm::opt::ArgStringList &CC1Args, 873 Action::OffloadKind DeviceOffloadingKind) const { 874 AMDGPUToolChain::addClangTargetOptions(DriverArgs, CC1Args, 875 DeviceOffloadingKind); 876 877 // For the OpenCL case where there is no offload target, accept -nostdlib to 878 // disable bitcode linking. 879 if (DeviceOffloadingKind == Action::OFK_None && 880 DriverArgs.hasArg(options::OPT_nostdlib)) 881 return; 882 883 if (DriverArgs.hasArg(options::OPT_nogpulib)) 884 return; 885 886 // Get the device name and canonicalize it 887 const StringRef GpuArch = getGPUArch(DriverArgs); 888 auto Kind = llvm::AMDGPU::parseArchAMDGCN(GpuArch); 889 const StringRef CanonArch = llvm::AMDGPU::getArchNameAMDGCN(Kind); 890 StringRef LibDeviceFile = RocmInstallation->getLibDeviceFile(CanonArch); 891 auto ABIVer = DeviceLibABIVersion::fromCodeObjectVersion( 892 getAMDGPUCodeObjectVersion(getDriver(), DriverArgs)); 893 if (!RocmInstallation->checkCommonBitcodeLibs(CanonArch, LibDeviceFile, 894 ABIVer)) 895 return; 896 897 bool Wave64 = isWave64(DriverArgs, Kind); 898 899 // TODO: There are way too many flags that change this. Do we need to check 900 // them all? 901 bool DAZ = DriverArgs.hasArg(options::OPT_cl_denorms_are_zero) || 902 getDefaultDenormsAreZeroForTarget(Kind); 903 bool FiniteOnly = DriverArgs.hasArg(options::OPT_cl_finite_math_only); 904 905 bool UnsafeMathOpt = 906 DriverArgs.hasArg(options::OPT_cl_unsafe_math_optimizations); 907 bool FastRelaxedMath = DriverArgs.hasArg(options::OPT_cl_fast_relaxed_math); 908 bool CorrectSqrt = 909 DriverArgs.hasArg(options::OPT_cl_fp32_correctly_rounded_divide_sqrt); 910 911 // Add the OpenCL specific bitcode library. 912 llvm::SmallVector<std::string, 12> BCLibs; 913 BCLibs.push_back(RocmInstallation->getOpenCLPath().str()); 914 915 // Add the generic set of libraries. 916 BCLibs.append(RocmInstallation->getCommonBitcodeLibs( 917 DriverArgs, LibDeviceFile, Wave64, DAZ, FiniteOnly, UnsafeMathOpt, 918 FastRelaxedMath, CorrectSqrt, ABIVer, false)); 919 920 for (StringRef BCFile : BCLibs) { 921 CC1Args.push_back("-mlink-builtin-bitcode"); 922 CC1Args.push_back(DriverArgs.MakeArgString(BCFile)); 923 } 924 } 925 926 bool RocmInstallationDetector::checkCommonBitcodeLibs( 927 StringRef GPUArch, StringRef LibDeviceFile, 928 DeviceLibABIVersion ABIVer) const { 929 if (!hasDeviceLibrary()) { 930 D.Diag(diag::err_drv_no_rocm_device_lib) << 0; 931 return false; 932 } 933 if (LibDeviceFile.empty()) { 934 D.Diag(diag::err_drv_no_rocm_device_lib) << 1 << GPUArch; 935 return false; 936 } 937 if (ABIVer.requiresLibrary() && getABIVersionPath(ABIVer).empty()) { 938 D.Diag(diag::err_drv_no_rocm_device_lib) << 2 << ABIVer.toString(); 939 return false; 940 } 941 return true; 942 } 943 944 llvm::SmallVector<std::string, 12> 945 RocmInstallationDetector::getCommonBitcodeLibs( 946 const llvm::opt::ArgList &DriverArgs, StringRef LibDeviceFile, bool Wave64, 947 bool DAZ, bool FiniteOnly, bool UnsafeMathOpt, bool FastRelaxedMath, 948 bool CorrectSqrt, DeviceLibABIVersion ABIVer, bool isOpenMP = false) const { 949 llvm::SmallVector<std::string, 12> BCLibs; 950 951 auto AddBCLib = [&](StringRef BCFile) { BCLibs.push_back(BCFile.str()); }; 952 953 AddBCLib(getOCMLPath()); 954 if (!isOpenMP) 955 AddBCLib(getOCKLPath()); 956 AddBCLib(getDenormalsAreZeroPath(DAZ)); 957 AddBCLib(getUnsafeMathPath(UnsafeMathOpt || FastRelaxedMath)); 958 AddBCLib(getFiniteOnlyPath(FiniteOnly || FastRelaxedMath)); 959 AddBCLib(getCorrectlyRoundedSqrtPath(CorrectSqrt)); 960 AddBCLib(getWavefrontSize64Path(Wave64)); 961 AddBCLib(LibDeviceFile); 962 auto ABIVerPath = getABIVersionPath(ABIVer); 963 if (!ABIVerPath.empty()) 964 AddBCLib(ABIVerPath); 965 966 return BCLibs; 967 } 968 969 llvm::SmallVector<std::string, 12> 970 ROCMToolChain::getCommonDeviceLibNames(const llvm::opt::ArgList &DriverArgs, 971 const std::string &GPUArch, 972 bool isOpenMP) const { 973 auto Kind = llvm::AMDGPU::parseArchAMDGCN(GPUArch); 974 const StringRef CanonArch = llvm::AMDGPU::getArchNameAMDGCN(Kind); 975 976 StringRef LibDeviceFile = RocmInstallation->getLibDeviceFile(CanonArch); 977 auto ABIVer = DeviceLibABIVersion::fromCodeObjectVersion( 978 getAMDGPUCodeObjectVersion(getDriver(), DriverArgs)); 979 if (!RocmInstallation->checkCommonBitcodeLibs(CanonArch, LibDeviceFile, 980 ABIVer)) 981 return {}; 982 983 // If --hip-device-lib is not set, add the default bitcode libraries. 984 // TODO: There are way too many flags that change this. Do we need to check 985 // them all? 986 bool DAZ = DriverArgs.hasFlag(options::OPT_fgpu_flush_denormals_to_zero, 987 options::OPT_fno_gpu_flush_denormals_to_zero, 988 getDefaultDenormsAreZeroForTarget(Kind)); 989 bool FiniteOnly = DriverArgs.hasFlag( 990 options::OPT_ffinite_math_only, options::OPT_fno_finite_math_only, false); 991 bool UnsafeMathOpt = 992 DriverArgs.hasFlag(options::OPT_funsafe_math_optimizations, 993 options::OPT_fno_unsafe_math_optimizations, false); 994 bool FastRelaxedMath = DriverArgs.hasFlag(options::OPT_ffast_math, 995 options::OPT_fno_fast_math, false); 996 bool CorrectSqrt = DriverArgs.hasFlag( 997 options::OPT_fhip_fp32_correctly_rounded_divide_sqrt, 998 options::OPT_fno_hip_fp32_correctly_rounded_divide_sqrt, true); 999 bool Wave64 = isWave64(DriverArgs, Kind); 1000 1001 return RocmInstallation->getCommonBitcodeLibs( 1002 DriverArgs, LibDeviceFile, Wave64, DAZ, FiniteOnly, UnsafeMathOpt, 1003 FastRelaxedMath, CorrectSqrt, ABIVer, isOpenMP); 1004 } 1005