1 //===--- Driver.cpp - Clang GCC Compatible Driver -------------------------===// 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 #include "clang/Driver/Driver.h" 11 #include "InputInfo.h" 12 #include "ToolChains.h" 13 #include "clang/Basic/Version.h" 14 #include "clang/Basic/VirtualFileSystem.h" 15 #include "clang/Config/config.h" 16 #include "clang/Driver/Action.h" 17 #include "clang/Driver/Compilation.h" 18 #include "clang/Driver/DriverDiagnostic.h" 19 #include "clang/Driver/Job.h" 20 #include "clang/Driver/Options.h" 21 #include "clang/Driver/SanitizerArgs.h" 22 #include "clang/Driver/Tool.h" 23 #include "clang/Driver/ToolChain.h" 24 #include "llvm/ADT/ArrayRef.h" 25 #include "llvm/ADT/STLExtras.h" 26 #include "llvm/ADT/StringExtras.h" 27 #include "llvm/ADT/StringSet.h" 28 #include "llvm/ADT/StringSwitch.h" 29 #include "llvm/Option/Arg.h" 30 #include "llvm/Option/ArgList.h" 31 #include "llvm/Option/OptSpecifier.h" 32 #include "llvm/Option/OptTable.h" 33 #include "llvm/Option/Option.h" 34 #include "llvm/Support/Debug.h" 35 #include "llvm/Support/ErrorHandling.h" 36 #include "llvm/Support/FileSystem.h" 37 #include "llvm/Support/Path.h" 38 #include "llvm/Support/PrettyStackTrace.h" 39 #include "llvm/Support/Process.h" 40 #include "llvm/Support/Program.h" 41 #include "llvm/Support/raw_ostream.h" 42 #include <map> 43 #include <memory> 44 45 using namespace clang::driver; 46 using namespace clang; 47 using namespace llvm::opt; 48 49 Driver::Driver(StringRef ClangExecutable, StringRef DefaultTargetTriple, 50 DiagnosticsEngine &Diags, 51 IntrusiveRefCntPtr<vfs::FileSystem> VFS) 52 : Opts(createDriverOptTable()), Diags(Diags), VFS(VFS), Mode(GCCMode), 53 SaveTemps(SaveTempsNone), LTOMode(LTOK_None), 54 ClangExecutable(ClangExecutable), 55 SysRoot(DEFAULT_SYSROOT), UseStdLib(true), 56 DefaultTargetTriple(DefaultTargetTriple), 57 DriverTitle("clang LLVM compiler"), CCPrintOptionsFilename(nullptr), 58 CCPrintHeadersFilename(nullptr), CCLogDiagnosticsFilename(nullptr), 59 CCCPrintBindings(false), CCPrintHeaders(false), CCLogDiagnostics(false), 60 CCGenDiagnostics(false), CCCGenericGCCName(""), CheckInputsExist(true), 61 CCCUsePCH(true), SuppressMissingInputWarning(false) { 62 63 // Provide a sane fallback if no VFS is specified. 64 if (!this->VFS) 65 this->VFS = vfs::getRealFileSystem(); 66 67 Name = llvm::sys::path::filename(ClangExecutable); 68 Dir = llvm::sys::path::parent_path(ClangExecutable); 69 InstalledDir = Dir; // Provide a sensible default installed dir. 70 71 // Compute the path to the resource directory. 72 StringRef ClangResourceDir(CLANG_RESOURCE_DIR); 73 SmallString<128> P(Dir); 74 if (ClangResourceDir != "") { 75 llvm::sys::path::append(P, ClangResourceDir); 76 } else { 77 StringRef ClangLibdirSuffix(CLANG_LIBDIR_SUFFIX); 78 llvm::sys::path::append(P, "..", Twine("lib") + ClangLibdirSuffix, "clang", 79 CLANG_VERSION_STRING); 80 } 81 ResourceDir = P.str(); 82 } 83 84 Driver::~Driver() { 85 delete Opts; 86 87 llvm::DeleteContainerSeconds(ToolChains); 88 } 89 90 void Driver::ParseDriverMode(ArrayRef<const char *> Args) { 91 const std::string OptName = 92 getOpts().getOption(options::OPT_driver_mode).getPrefixedName(); 93 94 for (const char *ArgPtr : Args) { 95 // Ingore nullptrs, they are response file's EOL markers 96 if (ArgPtr == nullptr) 97 continue; 98 const StringRef Arg = ArgPtr; 99 if (!Arg.startswith(OptName)) 100 continue; 101 102 const StringRef Value = Arg.drop_front(OptName.size()); 103 const unsigned M = llvm::StringSwitch<unsigned>(Value) 104 .Case("gcc", GCCMode) 105 .Case("g++", GXXMode) 106 .Case("cpp", CPPMode) 107 .Case("cl", CLMode) 108 .Default(~0U); 109 110 if (M != ~0U) 111 Mode = static_cast<DriverMode>(M); 112 else 113 Diag(diag::err_drv_unsupported_option_argument) << OptName << Value; 114 } 115 } 116 117 InputArgList Driver::ParseArgStrings(ArrayRef<const char *> ArgStrings) { 118 llvm::PrettyStackTraceString CrashInfo("Command line argument parsing"); 119 120 unsigned IncludedFlagsBitmask; 121 unsigned ExcludedFlagsBitmask; 122 std::tie(IncludedFlagsBitmask, ExcludedFlagsBitmask) = 123 getIncludeExcludeOptionFlagMasks(); 124 125 unsigned MissingArgIndex, MissingArgCount; 126 InputArgList Args = 127 getOpts().ParseArgs(ArgStrings, MissingArgIndex, MissingArgCount, 128 IncludedFlagsBitmask, ExcludedFlagsBitmask); 129 130 // Check for missing argument error. 131 if (MissingArgCount) 132 Diag(clang::diag::err_drv_missing_argument) 133 << Args.getArgString(MissingArgIndex) << MissingArgCount; 134 135 // Check for unsupported options. 136 for (const Arg *A : Args) { 137 if (A->getOption().hasFlag(options::Unsupported)) { 138 Diag(clang::diag::err_drv_unsupported_opt) << A->getAsString(Args); 139 continue; 140 } 141 142 // Warn about -mcpu= without an argument. 143 if (A->getOption().matches(options::OPT_mcpu_EQ) && A->containsValue("")) { 144 Diag(clang::diag::warn_drv_empty_joined_argument) << A->getAsString(Args); 145 } 146 } 147 148 for (const Arg *A : Args.filtered(options::OPT_UNKNOWN)) 149 Diags.Report(IsCLMode() ? diag::warn_drv_unknown_argument_clang_cl : 150 diag::err_drv_unknown_argument) 151 << A->getAsString(Args); 152 153 return Args; 154 } 155 156 // Determine which compilation mode we are in. We look for options which 157 // affect the phase, starting with the earliest phases, and record which 158 // option we used to determine the final phase. 159 phases::ID Driver::getFinalPhase(const DerivedArgList &DAL, 160 Arg **FinalPhaseArg) const { 161 Arg *PhaseArg = nullptr; 162 phases::ID FinalPhase; 163 164 // -{E,EP,P,M,MM} only run the preprocessor. 165 if (CCCIsCPP() || (PhaseArg = DAL.getLastArg(options::OPT_E)) || 166 (PhaseArg = DAL.getLastArg(options::OPT__SLASH_EP)) || 167 (PhaseArg = DAL.getLastArg(options::OPT_M, options::OPT_MM)) || 168 (PhaseArg = DAL.getLastArg(options::OPT__SLASH_P))) { 169 FinalPhase = phases::Preprocess; 170 171 // -{fsyntax-only,-analyze,emit-ast} only run up to the compiler. 172 } else if ((PhaseArg = DAL.getLastArg(options::OPT_fsyntax_only)) || 173 (PhaseArg = DAL.getLastArg(options::OPT_module_file_info)) || 174 (PhaseArg = DAL.getLastArg(options::OPT_verify_pch)) || 175 (PhaseArg = DAL.getLastArg(options::OPT_rewrite_objc)) || 176 (PhaseArg = DAL.getLastArg(options::OPT_rewrite_legacy_objc)) || 177 (PhaseArg = DAL.getLastArg(options::OPT__migrate)) || 178 (PhaseArg = DAL.getLastArg(options::OPT__analyze, 179 options::OPT__analyze_auto)) || 180 (PhaseArg = DAL.getLastArg(options::OPT_emit_ast))) { 181 FinalPhase = phases::Compile; 182 183 // -S only runs up to the backend. 184 } else if ((PhaseArg = DAL.getLastArg(options::OPT_S))) { 185 FinalPhase = phases::Backend; 186 187 // -c compilation only runs up to the assembler. 188 } else if ((PhaseArg = DAL.getLastArg(options::OPT_c))) { 189 FinalPhase = phases::Assemble; 190 191 // Otherwise do everything. 192 } else 193 FinalPhase = phases::Link; 194 195 if (FinalPhaseArg) 196 *FinalPhaseArg = PhaseArg; 197 198 return FinalPhase; 199 } 200 201 static Arg *MakeInputArg(DerivedArgList &Args, OptTable *Opts, 202 StringRef Value) { 203 Arg *A = new Arg(Opts->getOption(options::OPT_INPUT), Value, 204 Args.getBaseArgs().MakeIndex(Value), Value.data()); 205 Args.AddSynthesizedArg(A); 206 A->claim(); 207 return A; 208 } 209 210 DerivedArgList *Driver::TranslateInputArgs(const InputArgList &Args) const { 211 DerivedArgList *DAL = new DerivedArgList(Args); 212 213 bool HasNostdlib = Args.hasArg(options::OPT_nostdlib); 214 bool HasNodefaultlib = Args.hasArg(options::OPT_nodefaultlibs); 215 for (Arg *A : Args) { 216 // Unfortunately, we have to parse some forwarding options (-Xassembler, 217 // -Xlinker, -Xpreprocessor) because we either integrate their functionality 218 // (assembler and preprocessor), or bypass a previous driver ('collect2'). 219 220 // Rewrite linker options, to replace --no-demangle with a custom internal 221 // option. 222 if ((A->getOption().matches(options::OPT_Wl_COMMA) || 223 A->getOption().matches(options::OPT_Xlinker)) && 224 A->containsValue("--no-demangle")) { 225 // Add the rewritten no-demangle argument. 226 DAL->AddFlagArg(A, Opts->getOption(options::OPT_Z_Xlinker__no_demangle)); 227 228 // Add the remaining values as Xlinker arguments. 229 for (StringRef Val : A->getValues()) 230 if (Val != "--no-demangle") 231 DAL->AddSeparateArg(A, Opts->getOption(options::OPT_Xlinker), Val); 232 233 continue; 234 } 235 236 // Rewrite preprocessor options, to replace -Wp,-MD,FOO which is used by 237 // some build systems. We don't try to be complete here because we don't 238 // care to encourage this usage model. 239 if (A->getOption().matches(options::OPT_Wp_COMMA) && 240 (A->getValue(0) == StringRef("-MD") || 241 A->getValue(0) == StringRef("-MMD"))) { 242 // Rewrite to -MD/-MMD along with -MF. 243 if (A->getValue(0) == StringRef("-MD")) 244 DAL->AddFlagArg(A, Opts->getOption(options::OPT_MD)); 245 else 246 DAL->AddFlagArg(A, Opts->getOption(options::OPT_MMD)); 247 if (A->getNumValues() == 2) 248 DAL->AddSeparateArg(A, Opts->getOption(options::OPT_MF), 249 A->getValue(1)); 250 continue; 251 } 252 253 // Rewrite reserved library names. 254 if (A->getOption().matches(options::OPT_l)) { 255 StringRef Value = A->getValue(); 256 257 // Rewrite unless -nostdlib is present. 258 if (!HasNostdlib && !HasNodefaultlib && Value == "stdc++") { 259 DAL->AddFlagArg(A, Opts->getOption(options::OPT_Z_reserved_lib_stdcxx)); 260 continue; 261 } 262 263 // Rewrite unconditionally. 264 if (Value == "cc_kext") { 265 DAL->AddFlagArg(A, Opts->getOption(options::OPT_Z_reserved_lib_cckext)); 266 continue; 267 } 268 } 269 270 // Pick up inputs via the -- option. 271 if (A->getOption().matches(options::OPT__DASH_DASH)) { 272 A->claim(); 273 for (StringRef Val : A->getValues()) 274 DAL->append(MakeInputArg(*DAL, Opts, Val)); 275 continue; 276 } 277 278 DAL->append(A); 279 } 280 281 // Add a default value of -mlinker-version=, if one was given and the user 282 // didn't specify one. 283 #if defined(HOST_LINK_VERSION) 284 if (!Args.hasArg(options::OPT_mlinker_version_EQ) && 285 strlen(HOST_LINK_VERSION) > 0) { 286 DAL->AddJoinedArg(0, Opts->getOption(options::OPT_mlinker_version_EQ), 287 HOST_LINK_VERSION); 288 DAL->getLastArg(options::OPT_mlinker_version_EQ)->claim(); 289 } 290 #endif 291 292 return DAL; 293 } 294 295 /// \brief Compute target triple from args. 296 /// 297 /// This routine provides the logic to compute a target triple from various 298 /// args passed to the driver and the default triple string. 299 static llvm::Triple computeTargetTriple(StringRef DefaultTargetTriple, 300 const ArgList &Args, 301 StringRef DarwinArchName = "") { 302 // FIXME: Already done in Compilation *Driver::BuildCompilation 303 if (const Arg *A = Args.getLastArg(options::OPT_target)) 304 DefaultTargetTriple = A->getValue(); 305 306 llvm::Triple Target(llvm::Triple::normalize(DefaultTargetTriple)); 307 308 // Handle Apple-specific options available here. 309 if (Target.isOSBinFormatMachO()) { 310 // If an explict Darwin arch name is given, that trumps all. 311 if (!DarwinArchName.empty()) { 312 tools::darwin::setTripleTypeForMachOArchName(Target, DarwinArchName); 313 return Target; 314 } 315 316 // Handle the Darwin '-arch' flag. 317 if (Arg *A = Args.getLastArg(options::OPT_arch)) { 318 StringRef ArchName = A->getValue(); 319 tools::darwin::setTripleTypeForMachOArchName(Target, ArchName); 320 } 321 } 322 323 // Handle pseudo-target flags '-mlittle-endian'/'-EL' and 324 // '-mbig-endian'/'-EB'. 325 if (Arg *A = Args.getLastArg(options::OPT_mlittle_endian, 326 options::OPT_mbig_endian)) { 327 if (A->getOption().matches(options::OPT_mlittle_endian)) { 328 llvm::Triple LE = Target.getLittleEndianArchVariant(); 329 if (LE.getArch() != llvm::Triple::UnknownArch) 330 Target = std::move(LE); 331 } else { 332 llvm::Triple BE = Target.getBigEndianArchVariant(); 333 if (BE.getArch() != llvm::Triple::UnknownArch) 334 Target = std::move(BE); 335 } 336 } 337 338 // Skip further flag support on OSes which don't support '-m32' or '-m64'. 339 if (Target.getArch() == llvm::Triple::tce || 340 Target.getOS() == llvm::Triple::Minix) 341 return Target; 342 343 // Handle pseudo-target flags '-m64', '-mx32', '-m32' and '-m16'. 344 if (Arg *A = Args.getLastArg(options::OPT_m64, options::OPT_mx32, 345 options::OPT_m32, options::OPT_m16)) { 346 llvm::Triple::ArchType AT = llvm::Triple::UnknownArch; 347 348 if (A->getOption().matches(options::OPT_m64)) { 349 AT = Target.get64BitArchVariant().getArch(); 350 if (Target.getEnvironment() == llvm::Triple::GNUX32) 351 Target.setEnvironment(llvm::Triple::GNU); 352 } else if (A->getOption().matches(options::OPT_mx32) && 353 Target.get64BitArchVariant().getArch() == llvm::Triple::x86_64) { 354 AT = llvm::Triple::x86_64; 355 Target.setEnvironment(llvm::Triple::GNUX32); 356 } else if (A->getOption().matches(options::OPT_m32)) { 357 AT = Target.get32BitArchVariant().getArch(); 358 if (Target.getEnvironment() == llvm::Triple::GNUX32) 359 Target.setEnvironment(llvm::Triple::GNU); 360 } else if (A->getOption().matches(options::OPT_m16) && 361 Target.get32BitArchVariant().getArch() == llvm::Triple::x86) { 362 AT = llvm::Triple::x86; 363 Target.setEnvironment(llvm::Triple::CODE16); 364 } 365 366 if (AT != llvm::Triple::UnknownArch && AT != Target.getArch()) 367 Target.setArch(AT); 368 } 369 370 return Target; 371 } 372 373 // \brief Parse the LTO options and record the type of LTO compilation 374 // based on which -f(no-)?lto(=.*)? option occurs last. 375 void Driver::setLTOMode(const llvm::opt::ArgList &Args) { 376 LTOMode = LTOK_None; 377 if (!Args.hasFlag(options::OPT_flto, options::OPT_flto_EQ, 378 options::OPT_fno_lto, false)) 379 return; 380 381 StringRef LTOName("full"); 382 383 const Arg *A = Args.getLastArg(options::OPT_flto_EQ); 384 if (A) 385 LTOName = A->getValue(); 386 387 LTOMode = llvm::StringSwitch<LTOKind>(LTOName) 388 .Case("full", LTOK_Full) 389 .Case("thin", LTOK_Thin) 390 .Default(LTOK_Unknown); 391 392 if (LTOMode == LTOK_Unknown) { 393 assert(A); 394 Diag(diag::err_drv_unsupported_option_argument) << A->getOption().getName() 395 << A->getValue(); 396 } 397 } 398 399 Compilation *Driver::BuildCompilation(ArrayRef<const char *> ArgList) { 400 llvm::PrettyStackTraceString CrashInfo("Compilation construction"); 401 402 // FIXME: Handle environment options which affect driver behavior, somewhere 403 // (client?). GCC_EXEC_PREFIX, LPATH, CC_PRINT_OPTIONS. 404 405 if (char *env = ::getenv("COMPILER_PATH")) { 406 StringRef CompilerPath = env; 407 while (!CompilerPath.empty()) { 408 std::pair<StringRef, StringRef> Split = 409 CompilerPath.split(llvm::sys::EnvPathSeparator); 410 PrefixDirs.push_back(Split.first); 411 CompilerPath = Split.second; 412 } 413 } 414 415 // We look for the driver mode option early, because the mode can affect 416 // how other options are parsed. 417 ParseDriverMode(ArgList.slice(1)); 418 419 // FIXME: What are we going to do with -V and -b? 420 421 // FIXME: This stuff needs to go into the Compilation, not the driver. 422 bool CCCPrintPhases; 423 424 InputArgList Args = ParseArgStrings(ArgList.slice(1)); 425 426 // Silence driver warnings if requested 427 Diags.setIgnoreAllWarnings(Args.hasArg(options::OPT_w)); 428 429 // -no-canonical-prefixes is used very early in main. 430 Args.ClaimAllArgs(options::OPT_no_canonical_prefixes); 431 432 // Ignore -pipe. 433 Args.ClaimAllArgs(options::OPT_pipe); 434 435 // Extract -ccc args. 436 // 437 // FIXME: We need to figure out where this behavior should live. Most of it 438 // should be outside in the client; the parts that aren't should have proper 439 // options, either by introducing new ones or by overloading gcc ones like -V 440 // or -b. 441 CCCPrintPhases = Args.hasArg(options::OPT_ccc_print_phases); 442 CCCPrintBindings = Args.hasArg(options::OPT_ccc_print_bindings); 443 if (const Arg *A = Args.getLastArg(options::OPT_ccc_gcc_name)) 444 CCCGenericGCCName = A->getValue(); 445 CCCUsePCH = 446 Args.hasFlag(options::OPT_ccc_pch_is_pch, options::OPT_ccc_pch_is_pth); 447 // FIXME: DefaultTargetTriple is used by the target-prefixed calls to as/ld 448 // and getToolChain is const. 449 if (IsCLMode()) { 450 // clang-cl targets MSVC-style Win32. 451 llvm::Triple T(DefaultTargetTriple); 452 T.setOS(llvm::Triple::Win32); 453 T.setVendor(llvm::Triple::PC); 454 T.setEnvironment(llvm::Triple::MSVC); 455 DefaultTargetTriple = T.str(); 456 } 457 if (const Arg *A = Args.getLastArg(options::OPT_target)) 458 DefaultTargetTriple = A->getValue(); 459 if (const Arg *A = Args.getLastArg(options::OPT_ccc_install_dir)) 460 Dir = InstalledDir = A->getValue(); 461 for (const Arg *A : Args.filtered(options::OPT_B)) { 462 A->claim(); 463 PrefixDirs.push_back(A->getValue(0)); 464 } 465 if (const Arg *A = Args.getLastArg(options::OPT__sysroot_EQ)) 466 SysRoot = A->getValue(); 467 if (const Arg *A = Args.getLastArg(options::OPT__dyld_prefix_EQ)) 468 DyldPrefix = A->getValue(); 469 if (Args.hasArg(options::OPT_nostdlib)) 470 UseStdLib = false; 471 472 if (const Arg *A = Args.getLastArg(options::OPT_resource_dir)) 473 ResourceDir = A->getValue(); 474 475 if (const Arg *A = Args.getLastArg(options::OPT_save_temps_EQ)) { 476 SaveTemps = llvm::StringSwitch<SaveTempsMode>(A->getValue()) 477 .Case("cwd", SaveTempsCwd) 478 .Case("obj", SaveTempsObj) 479 .Default(SaveTempsCwd); 480 } 481 482 setLTOMode(Args); 483 484 std::unique_ptr<llvm::opt::InputArgList> UArgs = 485 llvm::make_unique<InputArgList>(std::move(Args)); 486 487 // Perform the default argument translations. 488 DerivedArgList *TranslatedArgs = TranslateInputArgs(*UArgs); 489 490 // Owned by the host. 491 const ToolChain &TC = 492 getToolChain(*UArgs, computeTargetTriple(DefaultTargetTriple, *UArgs)); 493 494 // The compilation takes ownership of Args. 495 Compilation *C = new Compilation(*this, TC, UArgs.release(), TranslatedArgs); 496 497 C->setCudaDeviceToolChain( 498 &getToolChain(C->getArgs(), llvm::Triple(TC.getTriple().isArch64Bit() 499 ? "nvptx64-nvidia-cuda" 500 : "nvptx-nvidia-cuda"))); 501 if (!HandleImmediateArgs(*C)) 502 return C; 503 504 // Construct the list of inputs. 505 InputList Inputs; 506 BuildInputs(C->getDefaultToolChain(), *TranslatedArgs, Inputs); 507 508 // Construct the list of abstract actions to perform for this compilation. On 509 // MachO targets this uses the driver-driver and universal actions. 510 if (TC.getTriple().isOSBinFormatMachO()) 511 BuildUniversalActions(*C, C->getDefaultToolChain(), Inputs); 512 else 513 BuildActions(*C, C->getDefaultToolChain(), C->getArgs(), Inputs, 514 C->getActions()); 515 516 if (CCCPrintPhases) { 517 PrintActions(*C); 518 return C; 519 } 520 521 BuildJobs(*C); 522 523 return C; 524 } 525 526 static void printArgList(raw_ostream &OS, const llvm::opt::ArgList &Args) { 527 llvm::opt::ArgStringList ASL; 528 for (const auto *A : Args) 529 A->render(Args, ASL); 530 531 for (auto I = ASL.begin(), E = ASL.end(); I != E; ++I) { 532 if (I != ASL.begin()) 533 OS << ' '; 534 Command::printArg(OS, *I, true); 535 } 536 OS << '\n'; 537 } 538 539 // When clang crashes, produce diagnostic information including the fully 540 // preprocessed source file(s). Request that the developer attach the 541 // diagnostic information to a bug report. 542 void Driver::generateCompilationDiagnostics(Compilation &C, 543 const Command &FailingCommand) { 544 if (C.getArgs().hasArg(options::OPT_fno_crash_diagnostics)) 545 return; 546 547 // Don't try to generate diagnostics for link or dsymutil jobs. 548 if (FailingCommand.getCreator().isLinkJob() || 549 FailingCommand.getCreator().isDsymutilJob()) 550 return; 551 552 // Print the version of the compiler. 553 PrintVersion(C, llvm::errs()); 554 555 Diag(clang::diag::note_drv_command_failed_diag_msg) 556 << "PLEASE submit a bug report to " BUG_REPORT_URL " and include the " 557 "crash backtrace, preprocessed source, and associated run script."; 558 559 // Suppress driver output and emit preprocessor output to temp file. 560 Mode = CPPMode; 561 CCGenDiagnostics = true; 562 563 // Save the original job command(s). 564 Command Cmd = FailingCommand; 565 566 // Keep track of whether we produce any errors while trying to produce 567 // preprocessed sources. 568 DiagnosticErrorTrap Trap(Diags); 569 570 // Suppress tool output. 571 C.initCompilationForDiagnostics(); 572 573 // Construct the list of inputs. 574 InputList Inputs; 575 BuildInputs(C.getDefaultToolChain(), C.getArgs(), Inputs); 576 577 for (InputList::iterator it = Inputs.begin(), ie = Inputs.end(); it != ie;) { 578 bool IgnoreInput = false; 579 580 // Ignore input from stdin or any inputs that cannot be preprocessed. 581 // Check type first as not all linker inputs have a value. 582 if (types::getPreprocessedType(it->first) == types::TY_INVALID) { 583 IgnoreInput = true; 584 } else if (!strcmp(it->second->getValue(), "-")) { 585 Diag(clang::diag::note_drv_command_failed_diag_msg) 586 << "Error generating preprocessed source(s) - " 587 "ignoring input from stdin."; 588 IgnoreInput = true; 589 } 590 591 if (IgnoreInput) { 592 it = Inputs.erase(it); 593 ie = Inputs.end(); 594 } else { 595 ++it; 596 } 597 } 598 599 if (Inputs.empty()) { 600 Diag(clang::diag::note_drv_command_failed_diag_msg) 601 << "Error generating preprocessed source(s) - " 602 "no preprocessable inputs."; 603 return; 604 } 605 606 // Don't attempt to generate preprocessed files if multiple -arch options are 607 // used, unless they're all duplicates. 608 llvm::StringSet<> ArchNames; 609 for (const Arg *A : C.getArgs()) { 610 if (A->getOption().matches(options::OPT_arch)) { 611 StringRef ArchName = A->getValue(); 612 ArchNames.insert(ArchName); 613 } 614 } 615 if (ArchNames.size() > 1) { 616 Diag(clang::diag::note_drv_command_failed_diag_msg) 617 << "Error generating preprocessed source(s) - cannot generate " 618 "preprocessed source with multiple -arch options."; 619 return; 620 } 621 622 // Construct the list of abstract actions to perform for this compilation. On 623 // Darwin OSes this uses the driver-driver and builds universal actions. 624 const ToolChain &TC = C.getDefaultToolChain(); 625 if (TC.getTriple().isOSBinFormatMachO()) 626 BuildUniversalActions(C, TC, Inputs); 627 else 628 BuildActions(C, TC, C.getArgs(), Inputs, C.getActions()); 629 630 BuildJobs(C); 631 632 // If there were errors building the compilation, quit now. 633 if (Trap.hasErrorOccurred()) { 634 Diag(clang::diag::note_drv_command_failed_diag_msg) 635 << "Error generating preprocessed source(s)."; 636 return; 637 } 638 639 // Generate preprocessed output. 640 SmallVector<std::pair<int, const Command *>, 4> FailingCommands; 641 C.ExecuteJobs(C.getJobs(), FailingCommands); 642 643 // If any of the preprocessing commands failed, clean up and exit. 644 if (!FailingCommands.empty()) { 645 if (!isSaveTempsEnabled()) 646 C.CleanupFileList(C.getTempFiles(), true); 647 648 Diag(clang::diag::note_drv_command_failed_diag_msg) 649 << "Error generating preprocessed source(s)."; 650 return; 651 } 652 653 const ArgStringList &TempFiles = C.getTempFiles(); 654 if (TempFiles.empty()) { 655 Diag(clang::diag::note_drv_command_failed_diag_msg) 656 << "Error generating preprocessed source(s)."; 657 return; 658 } 659 660 Diag(clang::diag::note_drv_command_failed_diag_msg) 661 << "\n********************\n\n" 662 "PLEASE ATTACH THE FOLLOWING FILES TO THE BUG REPORT:\n" 663 "Preprocessed source(s) and associated run script(s) are located at:"; 664 665 SmallString<128> VFS; 666 for (const char *TempFile : TempFiles) { 667 Diag(clang::diag::note_drv_command_failed_diag_msg) << TempFile; 668 if (StringRef(TempFile).endswith(".cache")) { 669 // In some cases (modules) we'll dump extra data to help with reproducing 670 // the crash into a directory next to the output. 671 VFS = llvm::sys::path::filename(TempFile); 672 llvm::sys::path::append(VFS, "vfs", "vfs.yaml"); 673 } 674 } 675 676 // Assume associated files are based off of the first temporary file. 677 CrashReportInfo CrashInfo(TempFiles[0], VFS); 678 679 std::string Script = CrashInfo.Filename.rsplit('.').first.str() + ".sh"; 680 std::error_code EC; 681 llvm::raw_fd_ostream ScriptOS(Script, EC, llvm::sys::fs::F_Excl); 682 if (EC) { 683 Diag(clang::diag::note_drv_command_failed_diag_msg) 684 << "Error generating run script: " + Script + " " + EC.message(); 685 } else { 686 ScriptOS << "# Crash reproducer for " << getClangFullVersion() << "\n" 687 << "# Driver args: "; 688 printArgList(ScriptOS, C.getInputArgs()); 689 ScriptOS << "# Original command: "; 690 Cmd.Print(ScriptOS, "\n", /*Quote=*/true); 691 Cmd.Print(ScriptOS, "\n", /*Quote=*/true, &CrashInfo); 692 Diag(clang::diag::note_drv_command_failed_diag_msg) << Script; 693 } 694 695 for (const auto &A : C.getArgs().filtered(options::OPT_frewrite_map_file, 696 options::OPT_frewrite_map_file_EQ)) 697 Diag(clang::diag::note_drv_command_failed_diag_msg) << A->getValue(); 698 699 Diag(clang::diag::note_drv_command_failed_diag_msg) 700 << "\n\n********************"; 701 } 702 703 void Driver::setUpResponseFiles(Compilation &C, Command &Cmd) { 704 // Since commandLineFitsWithinSystemLimits() may underestimate system's capacity 705 // if the tool does not support response files, there is a chance/ that things 706 // will just work without a response file, so we silently just skip it. 707 if (Cmd.getCreator().getResponseFilesSupport() == Tool::RF_None || 708 llvm::sys::commandLineFitsWithinSystemLimits(Cmd.getExecutable(), Cmd.getArguments())) 709 return; 710 711 std::string TmpName = GetTemporaryPath("response", "txt"); 712 Cmd.setResponseFile( 713 C.addTempFile(C.getArgs().MakeArgString(TmpName.c_str()))); 714 } 715 716 int Driver::ExecuteCompilation( 717 Compilation &C, 718 SmallVectorImpl<std::pair<int, const Command *>> &FailingCommands) { 719 // Just print if -### was present. 720 if (C.getArgs().hasArg(options::OPT__HASH_HASH_HASH)) { 721 C.getJobs().Print(llvm::errs(), "\n", true); 722 return 0; 723 } 724 725 // If there were errors building the compilation, quit now. 726 if (Diags.hasErrorOccurred()) 727 return 1; 728 729 // Set up response file names for each command, if necessary 730 for (auto &Job : C.getJobs()) 731 setUpResponseFiles(C, Job); 732 733 C.ExecuteJobs(C.getJobs(), FailingCommands); 734 735 // Remove temp files. 736 C.CleanupFileList(C.getTempFiles()); 737 738 // If the command succeeded, we are done. 739 if (FailingCommands.empty()) 740 return 0; 741 742 // Otherwise, remove result files and print extra information about abnormal 743 // failures. 744 for (const auto &CmdPair : FailingCommands) { 745 int Res = CmdPair.first; 746 const Command *FailingCommand = CmdPair.second; 747 748 // Remove result files if we're not saving temps. 749 if (!isSaveTempsEnabled()) { 750 const JobAction *JA = cast<JobAction>(&FailingCommand->getSource()); 751 C.CleanupFileMap(C.getResultFiles(), JA, true); 752 753 // Failure result files are valid unless we crashed. 754 if (Res < 0) 755 C.CleanupFileMap(C.getFailureResultFiles(), JA, true); 756 } 757 758 // Print extra information about abnormal failures, if possible. 759 // 760 // This is ad-hoc, but we don't want to be excessively noisy. If the result 761 // status was 1, assume the command failed normally. In particular, if it 762 // was the compiler then assume it gave a reasonable error code. Failures 763 // in other tools are less common, and they generally have worse 764 // diagnostics, so always print the diagnostic there. 765 const Tool &FailingTool = FailingCommand->getCreator(); 766 767 if (!FailingCommand->getCreator().hasGoodDiagnostics() || Res != 1) { 768 // FIXME: See FIXME above regarding result code interpretation. 769 if (Res < 0) 770 Diag(clang::diag::err_drv_command_signalled) 771 << FailingTool.getShortName(); 772 else 773 Diag(clang::diag::err_drv_command_failed) << FailingTool.getShortName() 774 << Res; 775 } 776 } 777 return 0; 778 } 779 780 void Driver::PrintHelp(bool ShowHidden) const { 781 unsigned IncludedFlagsBitmask; 782 unsigned ExcludedFlagsBitmask; 783 std::tie(IncludedFlagsBitmask, ExcludedFlagsBitmask) = 784 getIncludeExcludeOptionFlagMasks(); 785 786 ExcludedFlagsBitmask |= options::NoDriverOption; 787 if (!ShowHidden) 788 ExcludedFlagsBitmask |= HelpHidden; 789 790 getOpts().PrintHelp(llvm::outs(), Name.c_str(), DriverTitle.c_str(), 791 IncludedFlagsBitmask, ExcludedFlagsBitmask); 792 } 793 794 void Driver::PrintVersion(const Compilation &C, raw_ostream &OS) const { 795 // FIXME: The following handlers should use a callback mechanism, we don't 796 // know what the client would like to do. 797 OS << getClangFullVersion() << '\n'; 798 const ToolChain &TC = C.getDefaultToolChain(); 799 OS << "Target: " << TC.getTripleString() << '\n'; 800 801 // Print the threading model. 802 if (Arg *A = C.getArgs().getLastArg(options::OPT_mthread_model)) { 803 // Don't print if the ToolChain would have barfed on it already 804 if (TC.isThreadModelSupported(A->getValue())) 805 OS << "Thread model: " << A->getValue(); 806 } else 807 OS << "Thread model: " << TC.getThreadModel(); 808 OS << '\n'; 809 810 // Print out the install directory. 811 OS << "InstalledDir: " << InstalledDir << '\n'; 812 } 813 814 /// PrintDiagnosticCategories - Implement the --print-diagnostic-categories 815 /// option. 816 static void PrintDiagnosticCategories(raw_ostream &OS) { 817 // Skip the empty category. 818 for (unsigned i = 1, max = DiagnosticIDs::getNumberOfCategories(); i != max; 819 ++i) 820 OS << i << ',' << DiagnosticIDs::getCategoryNameFromID(i) << '\n'; 821 } 822 823 bool Driver::HandleImmediateArgs(const Compilation &C) { 824 // The order these options are handled in gcc is all over the place, but we 825 // don't expect inconsistencies w.r.t. that to matter in practice. 826 827 if (C.getArgs().hasArg(options::OPT_dumpmachine)) { 828 llvm::outs() << C.getDefaultToolChain().getTripleString() << '\n'; 829 return false; 830 } 831 832 if (C.getArgs().hasArg(options::OPT_dumpversion)) { 833 // Since -dumpversion is only implemented for pedantic GCC compatibility, we 834 // return an answer which matches our definition of __VERSION__. 835 // 836 // If we want to return a more correct answer some day, then we should 837 // introduce a non-pedantically GCC compatible mode to Clang in which we 838 // provide sensible definitions for -dumpversion, __VERSION__, etc. 839 llvm::outs() << "4.2.1\n"; 840 return false; 841 } 842 843 if (C.getArgs().hasArg(options::OPT__print_diagnostic_categories)) { 844 PrintDiagnosticCategories(llvm::outs()); 845 return false; 846 } 847 848 if (C.getArgs().hasArg(options::OPT_help) || 849 C.getArgs().hasArg(options::OPT__help_hidden)) { 850 PrintHelp(C.getArgs().hasArg(options::OPT__help_hidden)); 851 return false; 852 } 853 854 if (C.getArgs().hasArg(options::OPT__version)) { 855 // Follow gcc behavior and use stdout for --version and stderr for -v. 856 PrintVersion(C, llvm::outs()); 857 return false; 858 } 859 860 if (C.getArgs().hasArg(options::OPT_v) || 861 C.getArgs().hasArg(options::OPT__HASH_HASH_HASH)) { 862 PrintVersion(C, llvm::errs()); 863 SuppressMissingInputWarning = true; 864 } 865 866 const ToolChain &TC = C.getDefaultToolChain(); 867 868 if (C.getArgs().hasArg(options::OPT_v)) 869 TC.printVerboseInfo(llvm::errs()); 870 871 if (C.getArgs().hasArg(options::OPT_print_search_dirs)) { 872 llvm::outs() << "programs: ="; 873 bool separator = false; 874 for (const std::string &Path : TC.getProgramPaths()) { 875 if (separator) 876 llvm::outs() << ':'; 877 llvm::outs() << Path; 878 separator = true; 879 } 880 llvm::outs() << "\n"; 881 llvm::outs() << "libraries: =" << ResourceDir; 882 883 StringRef sysroot = C.getSysRoot(); 884 885 for (const std::string &Path : TC.getFilePaths()) { 886 // Always print a separator. ResourceDir was the first item shown. 887 llvm::outs() << ':'; 888 // Interpretation of leading '=' is needed only for NetBSD. 889 if (Path[0] == '=') 890 llvm::outs() << sysroot << Path.substr(1); 891 else 892 llvm::outs() << Path; 893 } 894 llvm::outs() << "\n"; 895 return false; 896 } 897 898 // FIXME: The following handlers should use a callback mechanism, we don't 899 // know what the client would like to do. 900 if (Arg *A = C.getArgs().getLastArg(options::OPT_print_file_name_EQ)) { 901 llvm::outs() << GetFilePath(A->getValue(), TC) << "\n"; 902 return false; 903 } 904 905 if (Arg *A = C.getArgs().getLastArg(options::OPT_print_prog_name_EQ)) { 906 llvm::outs() << GetProgramPath(A->getValue(), TC) << "\n"; 907 return false; 908 } 909 910 if (C.getArgs().hasArg(options::OPT_print_libgcc_file_name)) { 911 llvm::outs() << GetFilePath("libgcc.a", TC) << "\n"; 912 return false; 913 } 914 915 if (C.getArgs().hasArg(options::OPT_print_multi_lib)) { 916 for (const Multilib &Multilib : TC.getMultilibs()) 917 llvm::outs() << Multilib << "\n"; 918 return false; 919 } 920 921 if (C.getArgs().hasArg(options::OPT_print_multi_directory)) { 922 for (const Multilib &Multilib : TC.getMultilibs()) { 923 if (Multilib.gccSuffix().empty()) 924 llvm::outs() << ".\n"; 925 else { 926 StringRef Suffix(Multilib.gccSuffix()); 927 assert(Suffix.front() == '/'); 928 llvm::outs() << Suffix.substr(1) << "\n"; 929 } 930 } 931 return false; 932 } 933 return true; 934 } 935 936 // Display an action graph human-readably. Action A is the "sink" node 937 // and latest-occuring action. Traversal is in pre-order, visiting the 938 // inputs to each action before printing the action itself. 939 static unsigned PrintActions1(const Compilation &C, Action *A, 940 std::map<Action *, unsigned> &Ids) { 941 if (Ids.count(A)) // A was already visited. 942 return Ids[A]; 943 944 std::string str; 945 llvm::raw_string_ostream os(str); 946 947 os << Action::getClassName(A->getKind()) << ", "; 948 if (InputAction *IA = dyn_cast<InputAction>(A)) { 949 os << "\"" << IA->getInputArg().getValue() << "\""; 950 } else if (BindArchAction *BIA = dyn_cast<BindArchAction>(A)) { 951 os << '"' << BIA->getArchName() << '"' << ", {" 952 << PrintActions1(C, *BIA->begin(), Ids) << "}"; 953 } else if (CudaDeviceAction *CDA = dyn_cast<CudaDeviceAction>(A)) { 954 os << '"' 955 << (CDA->getGpuArchName() ? CDA->getGpuArchName() : "(multiple archs)") 956 << '"' << ", {" << PrintActions1(C, *CDA->begin(), Ids) << "}"; 957 } else { 958 const ActionList *AL; 959 if (CudaHostAction *CHA = dyn_cast<CudaHostAction>(A)) { 960 os << "{" << PrintActions1(C, *CHA->begin(), Ids) << "}" 961 << ", gpu binaries "; 962 AL = &CHA->getDeviceActions(); 963 } else 964 AL = &A->getInputs(); 965 966 if (AL->size()) { 967 const char *Prefix = "{"; 968 for (Action *PreRequisite : *AL) { 969 os << Prefix << PrintActions1(C, PreRequisite, Ids); 970 Prefix = ", "; 971 } 972 os << "}"; 973 } else 974 os << "{}"; 975 } 976 977 unsigned Id = Ids.size(); 978 Ids[A] = Id; 979 llvm::errs() << Id << ": " << os.str() << ", " 980 << types::getTypeName(A->getType()) << "\n"; 981 982 return Id; 983 } 984 985 // Print the action graphs in a compilation C. 986 // For example "clang -c file1.c file2.c" is composed of two subgraphs. 987 void Driver::PrintActions(const Compilation &C) const { 988 std::map<Action *, unsigned> Ids; 989 for (Action *A : C.getActions()) 990 PrintActions1(C, A, Ids); 991 } 992 993 /// \brief Check whether the given input tree contains any compilation or 994 /// assembly actions. 995 static bool ContainsCompileOrAssembleAction(const Action *A) { 996 if (isa<CompileJobAction>(A) || isa<BackendJobAction>(A) || 997 isa<AssembleJobAction>(A)) 998 return true; 999 1000 for (const Action *Input : *A) 1001 if (ContainsCompileOrAssembleAction(Input)) 1002 return true; 1003 1004 return false; 1005 } 1006 1007 void Driver::BuildUniversalActions(Compilation &C, const ToolChain &TC, 1008 const InputList &BAInputs) const { 1009 DerivedArgList &Args = C.getArgs(); 1010 ActionList &Actions = C.getActions(); 1011 llvm::PrettyStackTraceString CrashInfo("Building universal build actions"); 1012 // Collect the list of architectures. Duplicates are allowed, but should only 1013 // be handled once (in the order seen). 1014 llvm::StringSet<> ArchNames; 1015 SmallVector<const char *, 4> Archs; 1016 for (Arg *A : Args) { 1017 if (A->getOption().matches(options::OPT_arch)) { 1018 // Validate the option here; we don't save the type here because its 1019 // particular spelling may participate in other driver choices. 1020 llvm::Triple::ArchType Arch = 1021 tools::darwin::getArchTypeForMachOArchName(A->getValue()); 1022 if (Arch == llvm::Triple::UnknownArch) { 1023 Diag(clang::diag::err_drv_invalid_arch_name) << A->getAsString(Args); 1024 continue; 1025 } 1026 1027 A->claim(); 1028 if (ArchNames.insert(A->getValue()).second) 1029 Archs.push_back(A->getValue()); 1030 } 1031 } 1032 1033 // When there is no explicit arch for this platform, make sure we still bind 1034 // the architecture (to the default) so that -Xarch_ is handled correctly. 1035 if (!Archs.size()) 1036 Archs.push_back(Args.MakeArgString(TC.getDefaultUniversalArchName())); 1037 1038 ActionList SingleActions; 1039 BuildActions(C, TC, Args, BAInputs, SingleActions); 1040 1041 // Add in arch bindings for every top level action, as well as lipo and 1042 // dsymutil steps if needed. 1043 for (Action* Act : SingleActions) { 1044 // Make sure we can lipo this kind of output. If not (and it is an actual 1045 // output) then we disallow, since we can't create an output file with the 1046 // right name without overwriting it. We could remove this oddity by just 1047 // changing the output names to include the arch, which would also fix 1048 // -save-temps. Compatibility wins for now. 1049 1050 if (Archs.size() > 1 && !types::canLipoType(Act->getType())) 1051 Diag(clang::diag::err_drv_invalid_output_with_multiple_archs) 1052 << types::getTypeName(Act->getType()); 1053 1054 ActionList Inputs; 1055 for (unsigned i = 0, e = Archs.size(); i != e; ++i) 1056 Inputs.push_back(C.MakeAction<BindArchAction>(Act, Archs[i])); 1057 1058 // Lipo if necessary, we do it this way because we need to set the arch flag 1059 // so that -Xarch_ gets overwritten. 1060 if (Inputs.size() == 1 || Act->getType() == types::TY_Nothing) 1061 Actions.append(Inputs.begin(), Inputs.end()); 1062 else 1063 Actions.push_back(C.MakeAction<LipoJobAction>(Inputs, Act->getType())); 1064 1065 // Handle debug info queries. 1066 Arg *A = Args.getLastArg(options::OPT_g_Group); 1067 if (A && !A->getOption().matches(options::OPT_g0) && 1068 !A->getOption().matches(options::OPT_gstabs) && 1069 ContainsCompileOrAssembleAction(Actions.back())) { 1070 1071 // Add a 'dsymutil' step if necessary, when debug info is enabled and we 1072 // have a compile input. We need to run 'dsymutil' ourselves in such cases 1073 // because the debug info will refer to a temporary object file which 1074 // will be removed at the end of the compilation process. 1075 if (Act->getType() == types::TY_Image) { 1076 ActionList Inputs; 1077 Inputs.push_back(Actions.back()); 1078 Actions.pop_back(); 1079 Actions.push_back( 1080 C.MakeAction<DsymutilJobAction>(Inputs, types::TY_dSYM)); 1081 } 1082 1083 // Verify the debug info output. 1084 if (Args.hasArg(options::OPT_verify_debug_info)) { 1085 Action* LastAction = Actions.back(); 1086 Actions.pop_back(); 1087 Actions.push_back(C.MakeAction<VerifyDebugInfoJobAction>( 1088 LastAction, types::TY_Nothing)); 1089 } 1090 } 1091 } 1092 } 1093 1094 /// \brief Check that the file referenced by Value exists. If it doesn't, 1095 /// issue a diagnostic and return false. 1096 static bool DiagnoseInputExistence(const Driver &D, const DerivedArgList &Args, 1097 StringRef Value) { 1098 if (!D.getCheckInputsExist()) 1099 return true; 1100 1101 // stdin always exists. 1102 if (Value == "-") 1103 return true; 1104 1105 SmallString<64> Path(Value); 1106 if (Arg *WorkDir = Args.getLastArg(options::OPT_working_directory)) { 1107 if (!llvm::sys::path::is_absolute(Path)) { 1108 SmallString<64> Directory(WorkDir->getValue()); 1109 llvm::sys::path::append(Directory, Value); 1110 Path.assign(Directory); 1111 } 1112 } 1113 1114 if (llvm::sys::fs::exists(Twine(Path))) 1115 return true; 1116 1117 if (D.IsCLMode() && !llvm::sys::path::is_absolute(Twine(Path)) && 1118 llvm::sys::Process::FindInEnvPath("LIB", Value)) 1119 return true; 1120 1121 D.Diag(clang::diag::err_drv_no_such_file) << Path; 1122 return false; 1123 } 1124 1125 // Construct a the list of inputs and their types. 1126 void Driver::BuildInputs(const ToolChain &TC, DerivedArgList &Args, 1127 InputList &Inputs) const { 1128 // Track the current user specified (-x) input. We also explicitly track the 1129 // argument used to set the type; we only want to claim the type when we 1130 // actually use it, so we warn about unused -x arguments. 1131 types::ID InputType = types::TY_Nothing; 1132 Arg *InputTypeArg = nullptr; 1133 1134 // The last /TC or /TP option sets the input type to C or C++ globally. 1135 if (Arg *TCTP = Args.getLastArgNoClaim(options::OPT__SLASH_TC, 1136 options::OPT__SLASH_TP)) { 1137 InputTypeArg = TCTP; 1138 InputType = TCTP->getOption().matches(options::OPT__SLASH_TC) 1139 ? types::TY_C 1140 : types::TY_CXX; 1141 1142 arg_iterator it = 1143 Args.filtered_begin(options::OPT__SLASH_TC, options::OPT__SLASH_TP); 1144 const arg_iterator ie = Args.filtered_end(); 1145 Arg *Previous = *it++; 1146 bool ShowNote = false; 1147 while (it != ie) { 1148 Diag(clang::diag::warn_drv_overriding_flag_option) 1149 << Previous->getSpelling() << (*it)->getSpelling(); 1150 Previous = *it++; 1151 ShowNote = true; 1152 } 1153 if (ShowNote) 1154 Diag(clang::diag::note_drv_t_option_is_global); 1155 1156 // No driver mode exposes -x and /TC or /TP; we don't support mixing them. 1157 assert(!Args.hasArg(options::OPT_x) && "-x and /TC or /TP is not allowed"); 1158 } 1159 1160 for (Arg *A : Args) { 1161 if (A->getOption().getKind() == Option::InputClass) { 1162 const char *Value = A->getValue(); 1163 types::ID Ty = types::TY_INVALID; 1164 1165 // Infer the input type if necessary. 1166 if (InputType == types::TY_Nothing) { 1167 // If there was an explicit arg for this, claim it. 1168 if (InputTypeArg) 1169 InputTypeArg->claim(); 1170 1171 // stdin must be handled specially. 1172 if (memcmp(Value, "-", 2) == 0) { 1173 // If running with -E, treat as a C input (this changes the builtin 1174 // macros, for example). This may be overridden by -ObjC below. 1175 // 1176 // Otherwise emit an error but still use a valid type to avoid 1177 // spurious errors (e.g., no inputs). 1178 if (!Args.hasArgNoClaim(options::OPT_E) && !CCCIsCPP()) 1179 Diag(IsCLMode() ? clang::diag::err_drv_unknown_stdin_type_clang_cl 1180 : clang::diag::err_drv_unknown_stdin_type); 1181 Ty = types::TY_C; 1182 } else { 1183 // Otherwise lookup by extension. 1184 // Fallback is C if invoked as C preprocessor or Object otherwise. 1185 // We use a host hook here because Darwin at least has its own 1186 // idea of what .s is. 1187 if (const char *Ext = strrchr(Value, '.')) 1188 Ty = TC.LookupTypeForExtension(Ext + 1); 1189 1190 if (Ty == types::TY_INVALID) { 1191 if (CCCIsCPP()) 1192 Ty = types::TY_C; 1193 else 1194 Ty = types::TY_Object; 1195 } 1196 1197 // If the driver is invoked as C++ compiler (like clang++ or c++) it 1198 // should autodetect some input files as C++ for g++ compatibility. 1199 if (CCCIsCXX()) { 1200 types::ID OldTy = Ty; 1201 Ty = types::lookupCXXTypeForCType(Ty); 1202 1203 if (Ty != OldTy) 1204 Diag(clang::diag::warn_drv_treating_input_as_cxx) 1205 << getTypeName(OldTy) << getTypeName(Ty); 1206 } 1207 } 1208 1209 // -ObjC and -ObjC++ override the default language, but only for "source 1210 // files". We just treat everything that isn't a linker input as a 1211 // source file. 1212 // 1213 // FIXME: Clean this up if we move the phase sequence into the type. 1214 if (Ty != types::TY_Object) { 1215 if (Args.hasArg(options::OPT_ObjC)) 1216 Ty = types::TY_ObjC; 1217 else if (Args.hasArg(options::OPT_ObjCXX)) 1218 Ty = types::TY_ObjCXX; 1219 } 1220 } else { 1221 assert(InputTypeArg && "InputType set w/o InputTypeArg"); 1222 if (!InputTypeArg->getOption().matches(options::OPT_x)) { 1223 // If emulating cl.exe, make sure that /TC and /TP don't affect input 1224 // object files. 1225 const char *Ext = strrchr(Value, '.'); 1226 if (Ext && TC.LookupTypeForExtension(Ext + 1) == types::TY_Object) 1227 Ty = types::TY_Object; 1228 } 1229 if (Ty == types::TY_INVALID) { 1230 Ty = InputType; 1231 InputTypeArg->claim(); 1232 } 1233 } 1234 1235 if (DiagnoseInputExistence(*this, Args, Value)) 1236 Inputs.push_back(std::make_pair(Ty, A)); 1237 1238 } else if (A->getOption().matches(options::OPT__SLASH_Tc)) { 1239 StringRef Value = A->getValue(); 1240 if (DiagnoseInputExistence(*this, Args, Value)) { 1241 Arg *InputArg = MakeInputArg(Args, Opts, A->getValue()); 1242 Inputs.push_back(std::make_pair(types::TY_C, InputArg)); 1243 } 1244 A->claim(); 1245 } else if (A->getOption().matches(options::OPT__SLASH_Tp)) { 1246 StringRef Value = A->getValue(); 1247 if (DiagnoseInputExistence(*this, Args, Value)) { 1248 Arg *InputArg = MakeInputArg(Args, Opts, A->getValue()); 1249 Inputs.push_back(std::make_pair(types::TY_CXX, InputArg)); 1250 } 1251 A->claim(); 1252 } else if (A->getOption().hasFlag(options::LinkerInput)) { 1253 // Just treat as object type, we could make a special type for this if 1254 // necessary. 1255 Inputs.push_back(std::make_pair(types::TY_Object, A)); 1256 1257 } else if (A->getOption().matches(options::OPT_x)) { 1258 InputTypeArg = A; 1259 InputType = types::lookupTypeForTypeSpecifier(A->getValue()); 1260 A->claim(); 1261 1262 // Follow gcc behavior and treat as linker input for invalid -x 1263 // options. Its not clear why we shouldn't just revert to unknown; but 1264 // this isn't very important, we might as well be bug compatible. 1265 if (!InputType) { 1266 Diag(clang::diag::err_drv_unknown_language) << A->getValue(); 1267 InputType = types::TY_Object; 1268 } 1269 } 1270 } 1271 if (CCCIsCPP() && Inputs.empty()) { 1272 // If called as standalone preprocessor, stdin is processed 1273 // if no other input is present. 1274 Arg *A = MakeInputArg(Args, Opts, "-"); 1275 Inputs.push_back(std::make_pair(types::TY_C, A)); 1276 } 1277 } 1278 1279 // For each unique --cuda-gpu-arch= argument creates a TY_CUDA_DEVICE 1280 // input action and then wraps each in CudaDeviceAction paired with 1281 // appropriate GPU arch name. In case of partial (i.e preprocessing 1282 // only) or device-only compilation, each device action is added to /p 1283 // Actions and /p Current is released. Otherwise the function creates 1284 // and returns a new CudaHostAction which wraps /p Current and device 1285 // side actions. 1286 static Action *buildCudaActions(Compilation &C, DerivedArgList &Args, 1287 const Arg *InputArg, Action *HostAction, 1288 ActionList &Actions) { 1289 Arg *PartialCompilationArg = Args.getLastArg(options::OPT_cuda_host_only, 1290 options::OPT_cuda_device_only); 1291 // Host-only compilation case. 1292 if (PartialCompilationArg && 1293 PartialCompilationArg->getOption().matches(options::OPT_cuda_host_only)) 1294 return C.MakeAction<CudaHostAction>(HostAction, ActionList()); 1295 1296 // Collect all cuda_gpu_arch parameters, removing duplicates. 1297 SmallVector<const char *, 4> GpuArchList; 1298 llvm::StringSet<> GpuArchNames; 1299 for (Arg *A : Args) { 1300 if (!A->getOption().matches(options::OPT_cuda_gpu_arch_EQ)) 1301 continue; 1302 A->claim(); 1303 1304 const auto& Arch = A->getValue(); 1305 if (!CudaDeviceAction::IsValidGpuArchName(Arch)) 1306 C.getDriver().Diag(clang::diag::err_drv_cuda_bad_gpu_arch) << Arch; 1307 else if (GpuArchNames.insert(Arch).second) 1308 GpuArchList.push_back(Arch); 1309 } 1310 1311 // Default to sm_20 which is the lowest common denominator for supported GPUs. 1312 // sm_20 code should work correctly, if suboptimally, on all newer GPUs. 1313 if (GpuArchList.empty()) 1314 GpuArchList.push_back("sm_20"); 1315 1316 // Replicate inputs for each GPU architecture. 1317 Driver::InputList CudaDeviceInputs; 1318 for (unsigned I = 0, E = GpuArchList.size(); I != E; ++I) 1319 CudaDeviceInputs.push_back(std::make_pair(types::TY_CUDA_DEVICE, InputArg)); 1320 1321 // Build actions for all device inputs. 1322 assert(C.getCudaDeviceToolChain() && 1323 "Missing toolchain for device-side compilation."); 1324 ActionList CudaDeviceActions; 1325 C.getDriver().BuildActions(C, *C.getCudaDeviceToolChain(), Args, 1326 CudaDeviceInputs, CudaDeviceActions); 1327 assert(GpuArchList.size() == CudaDeviceActions.size() && 1328 "Failed to create actions for all devices"); 1329 1330 // Check whether any of device actions stopped before they could generate PTX. 1331 bool PartialCompilation = 1332 llvm::any_of(CudaDeviceActions, [](const Action *a) { 1333 return a->getKind() != Action::AssembleJobClass; 1334 }); 1335 1336 // Figure out what to do with device actions -- pass them as inputs to the 1337 // host action or run each of them independently. 1338 bool DeviceOnlyCompilation = PartialCompilationArg != nullptr; 1339 if (PartialCompilation || DeviceOnlyCompilation) { 1340 // In case of partial or device-only compilation results of device actions 1341 // are not consumed by the host action device actions have to be added to 1342 // top-level actions list with AtTopLevel=true and run independently. 1343 1344 // -o is ambiguous if we have more than one top-level action. 1345 if (Args.hasArg(options::OPT_o) && 1346 (!DeviceOnlyCompilation || GpuArchList.size() > 1)) { 1347 C.getDriver().Diag( 1348 clang::diag::err_drv_output_argument_with_multiple_files); 1349 return nullptr; 1350 } 1351 1352 for (unsigned I = 0, E = GpuArchList.size(); I != E; ++I) 1353 Actions.push_back(C.MakeAction<CudaDeviceAction>(CudaDeviceActions[I], 1354 GpuArchList[I], 1355 /* AtTopLevel */ true)); 1356 // Kill host action in case of device-only compilation. 1357 if (DeviceOnlyCompilation) 1358 return nullptr; 1359 return HostAction; 1360 } 1361 1362 // If we're not a partial or device-only compilation, we compile each arch to 1363 // ptx and assemble to cubin, then feed the cubin *and* the ptx into a device 1364 // "link" action, which uses fatbinary to combine these cubins into one 1365 // fatbin. The fatbin is then an input to the host compilation. 1366 ActionList DeviceActions; 1367 for (unsigned I = 0, E = GpuArchList.size(); I != E; ++I) { 1368 Action* AssembleAction = CudaDeviceActions[I]; 1369 assert(AssembleAction->getType() == types::TY_Object); 1370 assert(AssembleAction->getInputs().size() == 1); 1371 1372 Action* BackendAction = AssembleAction->getInputs()[0]; 1373 assert(BackendAction->getType() == types::TY_PP_Asm); 1374 1375 for (const auto& A : {AssembleAction, BackendAction}) { 1376 DeviceActions.push_back(C.MakeAction<CudaDeviceAction>( 1377 A, GpuArchList[I], /* AtTopLevel */ false)); 1378 } 1379 } 1380 auto FatbinAction = C.MakeAction<CudaDeviceAction>( 1381 C.MakeAction<LinkJobAction>(DeviceActions, types::TY_CUDA_FATBIN), 1382 /* GpuArchName = */ nullptr, 1383 /* AtTopLevel = */ false); 1384 // Return a new host action that incorporates original host action and all 1385 // device actions. 1386 return C.MakeAction<CudaHostAction>(std::move(HostAction), 1387 ActionList({FatbinAction})); 1388 } 1389 1390 void Driver::BuildActions(Compilation &C, const ToolChain &TC, 1391 DerivedArgList &Args, const InputList &Inputs, 1392 ActionList &Actions) const { 1393 llvm::PrettyStackTraceString CrashInfo("Building compilation actions"); 1394 1395 if (!SuppressMissingInputWarning && Inputs.empty()) { 1396 Diag(clang::diag::err_drv_no_input_files); 1397 return; 1398 } 1399 1400 Arg *FinalPhaseArg; 1401 phases::ID FinalPhase = getFinalPhase(Args, &FinalPhaseArg); 1402 1403 if (FinalPhase == phases::Link && Args.hasArg(options::OPT_emit_llvm)) { 1404 Diag(clang::diag::err_drv_emit_llvm_link); 1405 } 1406 1407 // Reject -Z* at the top level, these options should never have been exposed 1408 // by gcc. 1409 if (Arg *A = Args.getLastArg(options::OPT_Z_Joined)) 1410 Diag(clang::diag::err_drv_use_of_Z_option) << A->getAsString(Args); 1411 1412 // Diagnose misuse of /Fo. 1413 if (Arg *A = Args.getLastArg(options::OPT__SLASH_Fo)) { 1414 StringRef V = A->getValue(); 1415 if (Inputs.size() > 1 && !V.empty() && 1416 !llvm::sys::path::is_separator(V.back())) { 1417 // Check whether /Fo tries to name an output file for multiple inputs. 1418 Diag(clang::diag::err_drv_out_file_argument_with_multiple_sources) 1419 << A->getSpelling() << V; 1420 Args.eraseArg(options::OPT__SLASH_Fo); 1421 } 1422 } 1423 1424 // Diagnose misuse of /Fa. 1425 if (Arg *A = Args.getLastArg(options::OPT__SLASH_Fa)) { 1426 StringRef V = A->getValue(); 1427 if (Inputs.size() > 1 && !V.empty() && 1428 !llvm::sys::path::is_separator(V.back())) { 1429 // Check whether /Fa tries to name an asm file for multiple inputs. 1430 Diag(clang::diag::err_drv_out_file_argument_with_multiple_sources) 1431 << A->getSpelling() << V; 1432 Args.eraseArg(options::OPT__SLASH_Fa); 1433 } 1434 } 1435 1436 // Diagnose misuse of /o. 1437 if (Arg *A = Args.getLastArg(options::OPT__SLASH_o)) { 1438 if (A->getValue()[0] == '\0') { 1439 // It has to have a value. 1440 Diag(clang::diag::err_drv_missing_argument) << A->getSpelling() << 1; 1441 Args.eraseArg(options::OPT__SLASH_o); 1442 } 1443 } 1444 1445 // Construct the actions to perform. 1446 ActionList LinkerInputs; 1447 1448 llvm::SmallVector<phases::ID, phases::MaxNumberOfPhases> PL; 1449 for (auto &I : Inputs) { 1450 types::ID InputType = I.first; 1451 const Arg *InputArg = I.second; 1452 1453 PL.clear(); 1454 types::getCompilationPhases(InputType, PL); 1455 1456 // If the first step comes after the final phase we are doing as part of 1457 // this compilation, warn the user about it. 1458 phases::ID InitialPhase = PL[0]; 1459 if (InitialPhase > FinalPhase) { 1460 // Claim here to avoid the more general unused warning. 1461 InputArg->claim(); 1462 1463 // Suppress all unused style warnings with -Qunused-arguments 1464 if (Args.hasArg(options::OPT_Qunused_arguments)) 1465 continue; 1466 1467 // Special case when final phase determined by binary name, rather than 1468 // by a command-line argument with a corresponding Arg. 1469 if (CCCIsCPP()) 1470 Diag(clang::diag::warn_drv_input_file_unused_by_cpp) 1471 << InputArg->getAsString(Args) << getPhaseName(InitialPhase); 1472 // Special case '-E' warning on a previously preprocessed file to make 1473 // more sense. 1474 else if (InitialPhase == phases::Compile && 1475 FinalPhase == phases::Preprocess && 1476 getPreprocessedType(InputType) == types::TY_INVALID) 1477 Diag(clang::diag::warn_drv_preprocessed_input_file_unused) 1478 << InputArg->getAsString(Args) << !!FinalPhaseArg 1479 << (FinalPhaseArg ? FinalPhaseArg->getOption().getName() : ""); 1480 else 1481 Diag(clang::diag::warn_drv_input_file_unused) 1482 << InputArg->getAsString(Args) << getPhaseName(InitialPhase) 1483 << !!FinalPhaseArg 1484 << (FinalPhaseArg ? FinalPhaseArg->getOption().getName() : ""); 1485 continue; 1486 } 1487 1488 phases::ID CudaInjectionPhase = 1489 (phases::Compile < FinalPhase && 1490 llvm::find(PL, phases::Compile) != PL.end()) 1491 ? phases::Compile 1492 : FinalPhase; 1493 1494 // Build the pipeline for this file. 1495 Action *Current = C.MakeAction<InputAction>(*InputArg, InputType); 1496 for (SmallVectorImpl<phases::ID>::iterator i = PL.begin(), e = PL.end(); 1497 i != e; ++i) { 1498 phases::ID Phase = *i; 1499 1500 // We are done if this step is past what the user requested. 1501 if (Phase > FinalPhase) 1502 break; 1503 1504 // Queue linker inputs. 1505 if (Phase == phases::Link) { 1506 assert((i + 1) == e && "linking must be final compilation step."); 1507 LinkerInputs.push_back(Current); 1508 Current = nullptr; 1509 break; 1510 } 1511 1512 // Some types skip the assembler phase (e.g., llvm-bc), but we can't 1513 // encode this in the steps because the intermediate type depends on 1514 // arguments. Just special case here. 1515 if (Phase == phases::Assemble && Current->getType() != types::TY_PP_Asm) 1516 continue; 1517 1518 // Otherwise construct the appropriate action. 1519 Current = ConstructPhaseAction(C, TC, Args, Phase, Current); 1520 1521 if (InputType == types::TY_CUDA && Phase == CudaInjectionPhase) { 1522 Current = buildCudaActions(C, Args, InputArg, Current, Actions); 1523 if (!Current) 1524 break; 1525 } 1526 1527 if (Current->getType() == types::TY_Nothing) 1528 break; 1529 } 1530 1531 // If we ended with something, add to the output list. 1532 if (Current) 1533 Actions.push_back(Current); 1534 } 1535 1536 // Add a link action if necessary. 1537 if (!LinkerInputs.empty()) 1538 Actions.push_back( 1539 C.MakeAction<LinkJobAction>(LinkerInputs, types::TY_Image)); 1540 1541 // If we are linking, claim any options which are obviously only used for 1542 // compilation. 1543 if (FinalPhase == phases::Link && PL.size() == 1) { 1544 Args.ClaimAllArgs(options::OPT_CompileOnly_Group); 1545 Args.ClaimAllArgs(options::OPT_cl_compile_Group); 1546 } 1547 1548 // Claim ignored clang-cl options. 1549 Args.ClaimAllArgs(options::OPT_cl_ignored_Group); 1550 1551 // Claim --cuda-host-only arg which may be passed to non-CUDA 1552 // compilations and should not trigger warnings there. 1553 Args.ClaimAllArgs(options::OPT_cuda_host_only); 1554 } 1555 1556 Action *Driver::ConstructPhaseAction(Compilation &C, const ToolChain &TC, 1557 const ArgList &Args, phases::ID Phase, 1558 Action *Input) const { 1559 llvm::PrettyStackTraceString CrashInfo("Constructing phase actions"); 1560 // Build the appropriate action. 1561 switch (Phase) { 1562 case phases::Link: 1563 llvm_unreachable("link action invalid here."); 1564 case phases::Preprocess: { 1565 types::ID OutputTy; 1566 // -{M, MM} alter the output type. 1567 if (Args.hasArg(options::OPT_M, options::OPT_MM)) { 1568 OutputTy = types::TY_Dependencies; 1569 } else { 1570 OutputTy = Input->getType(); 1571 if (!Args.hasFlag(options::OPT_frewrite_includes, 1572 options::OPT_fno_rewrite_includes, false) && 1573 !CCGenDiagnostics) 1574 OutputTy = types::getPreprocessedType(OutputTy); 1575 assert(OutputTy != types::TY_INVALID && 1576 "Cannot preprocess this input type!"); 1577 } 1578 return C.MakeAction<PreprocessJobAction>(Input, OutputTy); 1579 } 1580 case phases::Precompile: { 1581 types::ID OutputTy = types::TY_PCH; 1582 if (Args.hasArg(options::OPT_fsyntax_only)) { 1583 // Syntax checks should not emit a PCH file 1584 OutputTy = types::TY_Nothing; 1585 } 1586 return C.MakeAction<PrecompileJobAction>(Input, OutputTy); 1587 } 1588 case phases::Compile: { 1589 if (Args.hasArg(options::OPT_fsyntax_only)) 1590 return C.MakeAction<CompileJobAction>(Input, types::TY_Nothing); 1591 if (Args.hasArg(options::OPT_rewrite_objc)) 1592 return C.MakeAction<CompileJobAction>(Input, types::TY_RewrittenObjC); 1593 if (Args.hasArg(options::OPT_rewrite_legacy_objc)) 1594 return C.MakeAction<CompileJobAction>(Input, 1595 types::TY_RewrittenLegacyObjC); 1596 if (Args.hasArg(options::OPT__analyze, options::OPT__analyze_auto)) 1597 return C.MakeAction<AnalyzeJobAction>(Input, types::TY_Plist); 1598 if (Args.hasArg(options::OPT__migrate)) 1599 return C.MakeAction<MigrateJobAction>(Input, types::TY_Remap); 1600 if (Args.hasArg(options::OPT_emit_ast)) 1601 return C.MakeAction<CompileJobAction>(Input, types::TY_AST); 1602 if (Args.hasArg(options::OPT_module_file_info)) 1603 return C.MakeAction<CompileJobAction>(Input, types::TY_ModuleFile); 1604 if (Args.hasArg(options::OPT_verify_pch)) 1605 return C.MakeAction<VerifyPCHJobAction>(Input, types::TY_Nothing); 1606 return C.MakeAction<CompileJobAction>(Input, types::TY_LLVM_BC); 1607 } 1608 case phases::Backend: { 1609 if (isUsingLTO()) { 1610 types::ID Output = 1611 Args.hasArg(options::OPT_S) ? types::TY_LTO_IR : types::TY_LTO_BC; 1612 return C.MakeAction<BackendJobAction>(Input, Output); 1613 } 1614 if (Args.hasArg(options::OPT_emit_llvm)) { 1615 types::ID Output = 1616 Args.hasArg(options::OPT_S) ? types::TY_LLVM_IR : types::TY_LLVM_BC; 1617 return C.MakeAction<BackendJobAction>(Input, Output); 1618 } 1619 return C.MakeAction<BackendJobAction>(Input, types::TY_PP_Asm); 1620 } 1621 case phases::Assemble: 1622 return C.MakeAction<AssembleJobAction>(std::move(Input), types::TY_Object); 1623 } 1624 1625 llvm_unreachable("invalid phase in ConstructPhaseAction"); 1626 } 1627 1628 void Driver::BuildJobs(Compilation &C) const { 1629 llvm::PrettyStackTraceString CrashInfo("Building compilation jobs"); 1630 1631 Arg *FinalOutput = C.getArgs().getLastArg(options::OPT_o); 1632 1633 // It is an error to provide a -o option if we are making multiple output 1634 // files. 1635 if (FinalOutput) { 1636 unsigned NumOutputs = 0; 1637 for (const Action *A : C.getActions()) 1638 if (A->getType() != types::TY_Nothing) 1639 ++NumOutputs; 1640 1641 if (NumOutputs > 1) { 1642 Diag(clang::diag::err_drv_output_argument_with_multiple_files); 1643 FinalOutput = nullptr; 1644 } 1645 } 1646 1647 // Collect the list of architectures. 1648 llvm::StringSet<> ArchNames; 1649 if (C.getDefaultToolChain().getTriple().isOSBinFormatMachO()) 1650 for (const Arg *A : C.getArgs()) 1651 if (A->getOption().matches(options::OPT_arch)) 1652 ArchNames.insert(A->getValue()); 1653 1654 // Set of (Action, canonical ToolChain triple) pairs we've built jobs for. 1655 std::map<std::pair<const Action *, std::string>, InputInfo> CachedResults; 1656 for (Action *A : C.getActions()) { 1657 // If we are linking an image for multiple archs then the linker wants 1658 // -arch_multiple and -final_output <final image name>. Unfortunately, this 1659 // doesn't fit in cleanly because we have to pass this information down. 1660 // 1661 // FIXME: This is a hack; find a cleaner way to integrate this into the 1662 // process. 1663 const char *LinkingOutput = nullptr; 1664 if (isa<LipoJobAction>(A)) { 1665 if (FinalOutput) 1666 LinkingOutput = FinalOutput->getValue(); 1667 else 1668 LinkingOutput = getDefaultImageName(); 1669 } 1670 1671 BuildJobsForAction(C, A, &C.getDefaultToolChain(), 1672 /*BoundArch*/ nullptr, 1673 /*AtTopLevel*/ true, 1674 /*MultipleArchs*/ ArchNames.size() > 1, 1675 /*LinkingOutput*/ LinkingOutput, CachedResults); 1676 } 1677 1678 // If the user passed -Qunused-arguments or there were errors, don't warn 1679 // about any unused arguments. 1680 if (Diags.hasErrorOccurred() || 1681 C.getArgs().hasArg(options::OPT_Qunused_arguments)) 1682 return; 1683 1684 // Claim -### here. 1685 (void)C.getArgs().hasArg(options::OPT__HASH_HASH_HASH); 1686 1687 // Claim --driver-mode, it was handled earlier. 1688 (void)C.getArgs().hasArg(options::OPT_driver_mode); 1689 1690 for (Arg *A : C.getArgs()) { 1691 // FIXME: It would be nice to be able to send the argument to the 1692 // DiagnosticsEngine, so that extra values, position, and so on could be 1693 // printed. 1694 if (!A->isClaimed()) { 1695 if (A->getOption().hasFlag(options::NoArgumentUnused)) 1696 continue; 1697 1698 // Suppress the warning automatically if this is just a flag, and it is an 1699 // instance of an argument we already claimed. 1700 const Option &Opt = A->getOption(); 1701 if (Opt.getKind() == Option::FlagClass) { 1702 bool DuplicateClaimed = false; 1703 1704 for (const Arg *AA : C.getArgs().filtered(&Opt)) { 1705 if (AA->isClaimed()) { 1706 DuplicateClaimed = true; 1707 break; 1708 } 1709 } 1710 1711 if (DuplicateClaimed) 1712 continue; 1713 } 1714 1715 // In clang-cl, don't mention unknown arguments here since they have 1716 // already been warned about. 1717 if (!IsCLMode() || !A->getOption().matches(options::OPT_UNKNOWN)) 1718 Diag(clang::diag::warn_drv_unused_argument) 1719 << A->getAsString(C.getArgs()); 1720 } 1721 } 1722 } 1723 1724 // Returns a Tool for a given JobAction. In case the action and its 1725 // predecessors can be combined, updates Inputs with the inputs of the 1726 // first combined action. If one of the collapsed actions is a 1727 // CudaHostAction, updates CollapsedCHA with the pointer to it so the 1728 // caller can deal with extra handling such action requires. 1729 static const Tool *selectToolForJob(Compilation &C, bool SaveTemps, 1730 const ToolChain *TC, const JobAction *JA, 1731 const ActionList *&Inputs, 1732 const CudaHostAction *&CollapsedCHA) { 1733 const Tool *ToolForJob = nullptr; 1734 CollapsedCHA = nullptr; 1735 1736 // See if we should look for a compiler with an integrated assembler. We match 1737 // bottom up, so what we are actually looking for is an assembler job with a 1738 // compiler input. 1739 1740 if (TC->useIntegratedAs() && !SaveTemps && 1741 !C.getArgs().hasArg(options::OPT_via_file_asm) && 1742 !C.getArgs().hasArg(options::OPT__SLASH_FA) && 1743 !C.getArgs().hasArg(options::OPT__SLASH_Fa) && 1744 isa<AssembleJobAction>(JA) && Inputs->size() == 1 && 1745 isa<BackendJobAction>(*Inputs->begin())) { 1746 // A BackendJob is always preceded by a CompileJob, and without 1747 // -save-temps they will always get combined together, so instead of 1748 // checking the backend tool, check if the tool for the CompileJob 1749 // has an integrated assembler. 1750 const ActionList *BackendInputs = &(*Inputs)[0]->getInputs(); 1751 // Compile job may be wrapped in CudaHostAction, extract it if 1752 // that's the case and update CollapsedCHA if we combine phases. 1753 CudaHostAction *CHA = dyn_cast<CudaHostAction>(*BackendInputs->begin()); 1754 JobAction *CompileJA = 1755 cast<CompileJobAction>(CHA ? *CHA->begin() : *BackendInputs->begin()); 1756 assert(CompileJA && "Backend job is not preceeded by compile job."); 1757 const Tool *Compiler = TC->SelectTool(*CompileJA); 1758 if (!Compiler) 1759 return nullptr; 1760 if (Compiler->hasIntegratedAssembler()) { 1761 Inputs = &CompileJA->getInputs(); 1762 ToolForJob = Compiler; 1763 CollapsedCHA = CHA; 1764 } 1765 } 1766 1767 // A backend job should always be combined with the preceding compile job 1768 // unless OPT_save_temps is enabled and the compiler is capable of emitting 1769 // LLVM IR as an intermediate output. 1770 if (isa<BackendJobAction>(JA)) { 1771 // Check if the compiler supports emitting LLVM IR. 1772 assert(Inputs->size() == 1); 1773 // Compile job may be wrapped in CudaHostAction, extract it if 1774 // that's the case and update CollapsedCHA if we combine phases. 1775 CudaHostAction *CHA = dyn_cast<CudaHostAction>(*Inputs->begin()); 1776 JobAction *CompileJA = 1777 cast<CompileJobAction>(CHA ? *CHA->begin() : *Inputs->begin()); 1778 assert(CompileJA && "Backend job is not preceeded by compile job."); 1779 const Tool *Compiler = TC->SelectTool(*CompileJA); 1780 if (!Compiler) 1781 return nullptr; 1782 if (!Compiler->canEmitIR() || !SaveTemps) { 1783 Inputs = &CompileJA->getInputs(); 1784 ToolForJob = Compiler; 1785 CollapsedCHA = CHA; 1786 } 1787 } 1788 1789 // Otherwise use the tool for the current job. 1790 if (!ToolForJob) 1791 ToolForJob = TC->SelectTool(*JA); 1792 1793 // See if we should use an integrated preprocessor. We do so when we have 1794 // exactly one input, since this is the only use case we care about 1795 // (irrelevant since we don't support combine yet). 1796 if (Inputs->size() == 1 && isa<PreprocessJobAction>(*Inputs->begin()) && 1797 !C.getArgs().hasArg(options::OPT_no_integrated_cpp) && 1798 !C.getArgs().hasArg(options::OPT_traditional_cpp) && !SaveTemps && 1799 !C.getArgs().hasArg(options::OPT_rewrite_objc) && 1800 ToolForJob->hasIntegratedCPP()) 1801 Inputs = &(*Inputs)[0]->getInputs(); 1802 1803 return ToolForJob; 1804 } 1805 1806 InputInfo Driver::BuildJobsForAction( 1807 Compilation &C, const Action *A, const ToolChain *TC, const char *BoundArch, 1808 bool AtTopLevel, bool MultipleArchs, const char *LinkingOutput, 1809 std::map<std::pair<const Action *, std::string>, InputInfo> &CachedResults) 1810 const { 1811 // The bound arch is not necessarily represented in the toolchain's triple -- 1812 // for example, armv7 and armv7s both map to the same triple -- so we need 1813 // both in our map. 1814 std::string TriplePlusArch = TC->getTriple().normalize(); 1815 if (BoundArch) { 1816 TriplePlusArch += "-"; 1817 TriplePlusArch += BoundArch; 1818 } 1819 std::pair<const Action *, std::string> ActionTC = {A, TriplePlusArch}; 1820 auto CachedResult = CachedResults.find(ActionTC); 1821 if (CachedResult != CachedResults.end()) { 1822 return CachedResult->second; 1823 } 1824 InputInfo Result = 1825 BuildJobsForActionNoCache(C, A, TC, BoundArch, AtTopLevel, MultipleArchs, 1826 LinkingOutput, CachedResults); 1827 CachedResults[ActionTC] = Result; 1828 return Result; 1829 } 1830 1831 InputInfo Driver::BuildJobsForActionNoCache( 1832 Compilation &C, const Action *A, const ToolChain *TC, const char *BoundArch, 1833 bool AtTopLevel, bool MultipleArchs, const char *LinkingOutput, 1834 std::map<std::pair<const Action *, std::string>, InputInfo> &CachedResults) 1835 const { 1836 llvm::PrettyStackTraceString CrashInfo("Building compilation jobs"); 1837 1838 InputInfoList CudaDeviceInputInfos; 1839 if (const CudaHostAction *CHA = dyn_cast<CudaHostAction>(A)) { 1840 // Append outputs of device jobs to the input list. 1841 for (const Action *DA : CHA->getDeviceActions()) { 1842 CudaDeviceInputInfos.push_back(BuildJobsForAction( 1843 C, DA, TC, nullptr, AtTopLevel, 1844 /*MultipleArchs*/ false, LinkingOutput, CachedResults)); 1845 } 1846 // Override current action with a real host compile action and continue 1847 // processing it. 1848 A = *CHA->begin(); 1849 } 1850 1851 if (const InputAction *IA = dyn_cast<InputAction>(A)) { 1852 // FIXME: It would be nice to not claim this here; maybe the old scheme of 1853 // just using Args was better? 1854 const Arg &Input = IA->getInputArg(); 1855 Input.claim(); 1856 if (Input.getOption().matches(options::OPT_INPUT)) { 1857 const char *Name = Input.getValue(); 1858 return InputInfo(A, Name, /* BaseInput = */ Name); 1859 } 1860 return InputInfo(A, &Input, /* BaseInput = */ ""); 1861 } 1862 1863 if (const BindArchAction *BAA = dyn_cast<BindArchAction>(A)) { 1864 const ToolChain *TC; 1865 const char *ArchName = BAA->getArchName(); 1866 1867 if (ArchName) 1868 TC = &getToolChain( 1869 C.getArgs(), 1870 computeTargetTriple(DefaultTargetTriple, C.getArgs(), ArchName)); 1871 else 1872 TC = &C.getDefaultToolChain(); 1873 1874 return BuildJobsForAction(C, *BAA->begin(), TC, ArchName, AtTopLevel, 1875 MultipleArchs, LinkingOutput, CachedResults); 1876 } 1877 1878 if (const CudaDeviceAction *CDA = dyn_cast<CudaDeviceAction>(A)) { 1879 // Initial processing of CudaDeviceAction carries host params. 1880 // Call BuildJobsForAction() again, now with correct device parameters. 1881 InputInfo II = BuildJobsForAction( 1882 C, *CDA->begin(), C.getCudaDeviceToolChain(), CDA->getGpuArchName(), 1883 CDA->isAtTopLevel(), /*MultipleArchs*/ true, LinkingOutput, 1884 CachedResults); 1885 // Currently II's Action is *CDA->begin(). Set it to CDA instead, so that 1886 // one can retrieve II's GPU arch. 1887 II.setAction(A); 1888 return II; 1889 } 1890 1891 const ActionList *Inputs = &A->getInputs(); 1892 1893 const JobAction *JA = cast<JobAction>(A); 1894 const CudaHostAction *CollapsedCHA = nullptr; 1895 const Tool *T = 1896 selectToolForJob(C, isSaveTempsEnabled(), TC, JA, Inputs, CollapsedCHA); 1897 if (!T) 1898 return InputInfo(); 1899 1900 // If we've collapsed action list that contained CudaHostAction we 1901 // need to build jobs for device-side inputs it may have held. 1902 if (CollapsedCHA) { 1903 for (const Action *DA : CollapsedCHA->getDeviceActions()) { 1904 CudaDeviceInputInfos.push_back(BuildJobsForAction( 1905 C, DA, TC, "", AtTopLevel, 1906 /*MultipleArchs*/ false, LinkingOutput, CachedResults)); 1907 } 1908 } 1909 1910 // Only use pipes when there is exactly one input. 1911 InputInfoList InputInfos; 1912 for (const Action *Input : *Inputs) { 1913 // Treat dsymutil and verify sub-jobs as being at the top-level too, they 1914 // shouldn't get temporary output names. 1915 // FIXME: Clean this up. 1916 bool SubJobAtTopLevel = 1917 AtTopLevel && (isa<DsymutilJobAction>(A) || isa<VerifyJobAction>(A)); 1918 InputInfos.push_back(BuildJobsForAction(C, Input, TC, BoundArch, 1919 SubJobAtTopLevel, MultipleArchs, 1920 LinkingOutput, CachedResults)); 1921 } 1922 1923 // Always use the first input as the base input. 1924 const char *BaseInput = InputInfos[0].getBaseInput(); 1925 1926 // ... except dsymutil actions, which use their actual input as the base 1927 // input. 1928 if (JA->getType() == types::TY_dSYM) 1929 BaseInput = InputInfos[0].getFilename(); 1930 1931 // Append outputs of cuda device jobs to the input list 1932 if (CudaDeviceInputInfos.size()) 1933 InputInfos.append(CudaDeviceInputInfos.begin(), CudaDeviceInputInfos.end()); 1934 1935 // Determine the place to write output to, if any. 1936 InputInfo Result; 1937 if (JA->getType() == types::TY_Nothing) 1938 Result = InputInfo(A, BaseInput); 1939 else 1940 Result = InputInfo(A, GetNamedOutputPath(C, *JA, BaseInput, BoundArch, 1941 AtTopLevel, MultipleArchs), 1942 BaseInput); 1943 1944 if (CCCPrintBindings && !CCGenDiagnostics) { 1945 llvm::errs() << "# \"" << T->getToolChain().getTripleString() << '"' 1946 << " - \"" << T->getName() << "\", inputs: ["; 1947 for (unsigned i = 0, e = InputInfos.size(); i != e; ++i) { 1948 llvm::errs() << InputInfos[i].getAsString(); 1949 if (i + 1 != e) 1950 llvm::errs() << ", "; 1951 } 1952 llvm::errs() << "], output: " << Result.getAsString() << "\n"; 1953 } else { 1954 T->ConstructJob(C, *JA, Result, InputInfos, 1955 C.getArgsForToolChain(TC, BoundArch), LinkingOutput); 1956 } 1957 return Result; 1958 } 1959 1960 const char *Driver::getDefaultImageName() const { 1961 llvm::Triple Target(llvm::Triple::normalize(DefaultTargetTriple)); 1962 return Target.isOSWindows() ? "a.exe" : "a.out"; 1963 } 1964 1965 /// \brief Create output filename based on ArgValue, which could either be a 1966 /// full filename, filename without extension, or a directory. If ArgValue 1967 /// does not provide a filename, then use BaseName, and use the extension 1968 /// suitable for FileType. 1969 static const char *MakeCLOutputFilename(const ArgList &Args, StringRef ArgValue, 1970 StringRef BaseName, 1971 types::ID FileType) { 1972 SmallString<128> Filename = ArgValue; 1973 1974 if (ArgValue.empty()) { 1975 // If the argument is empty, output to BaseName in the current dir. 1976 Filename = BaseName; 1977 } else if (llvm::sys::path::is_separator(Filename.back())) { 1978 // If the argument is a directory, output to BaseName in that dir. 1979 llvm::sys::path::append(Filename, BaseName); 1980 } 1981 1982 if (!llvm::sys::path::has_extension(ArgValue)) { 1983 // If the argument didn't provide an extension, then set it. 1984 const char *Extension = types::getTypeTempSuffix(FileType, true); 1985 1986 if (FileType == types::TY_Image && 1987 Args.hasArg(options::OPT__SLASH_LD, options::OPT__SLASH_LDd)) { 1988 // The output file is a dll. 1989 Extension = "dll"; 1990 } 1991 1992 llvm::sys::path::replace_extension(Filename, Extension); 1993 } 1994 1995 return Args.MakeArgString(Filename.c_str()); 1996 } 1997 1998 const char *Driver::GetNamedOutputPath(Compilation &C, const JobAction &JA, 1999 const char *BaseInput, 2000 const char *BoundArch, bool AtTopLevel, 2001 bool MultipleArchs) const { 2002 llvm::PrettyStackTraceString CrashInfo("Computing output path"); 2003 // Output to a user requested destination? 2004 if (AtTopLevel && !isa<DsymutilJobAction>(JA) && !isa<VerifyJobAction>(JA)) { 2005 if (Arg *FinalOutput = C.getArgs().getLastArg(options::OPT_o)) 2006 return C.addResultFile(FinalOutput->getValue(), &JA); 2007 } 2008 2009 // For /P, preprocess to file named after BaseInput. 2010 if (C.getArgs().hasArg(options::OPT__SLASH_P)) { 2011 assert(AtTopLevel && isa<PreprocessJobAction>(JA)); 2012 StringRef BaseName = llvm::sys::path::filename(BaseInput); 2013 StringRef NameArg; 2014 if (Arg *A = C.getArgs().getLastArg(options::OPT__SLASH_Fi)) 2015 NameArg = A->getValue(); 2016 return C.addResultFile( 2017 MakeCLOutputFilename(C.getArgs(), NameArg, BaseName, types::TY_PP_C), 2018 &JA); 2019 } 2020 2021 // Default to writing to stdout? 2022 if (AtTopLevel && !CCGenDiagnostics && 2023 (isa<PreprocessJobAction>(JA) || JA.getType() == types::TY_ModuleFile)) 2024 return "-"; 2025 2026 // Is this the assembly listing for /FA? 2027 if (JA.getType() == types::TY_PP_Asm && 2028 (C.getArgs().hasArg(options::OPT__SLASH_FA) || 2029 C.getArgs().hasArg(options::OPT__SLASH_Fa))) { 2030 // Use /Fa and the input filename to determine the asm file name. 2031 StringRef BaseName = llvm::sys::path::filename(BaseInput); 2032 StringRef FaValue = C.getArgs().getLastArgValue(options::OPT__SLASH_Fa); 2033 return C.addResultFile( 2034 MakeCLOutputFilename(C.getArgs(), FaValue, BaseName, JA.getType()), 2035 &JA); 2036 } 2037 2038 // Output to a temporary file? 2039 if ((!AtTopLevel && !isSaveTempsEnabled() && 2040 !C.getArgs().hasArg(options::OPT__SLASH_Fo)) || 2041 CCGenDiagnostics) { 2042 StringRef Name = llvm::sys::path::filename(BaseInput); 2043 std::pair<StringRef, StringRef> Split = Name.split('.'); 2044 std::string TmpName = GetTemporaryPath( 2045 Split.first, types::getTypeTempSuffix(JA.getType(), IsCLMode())); 2046 return C.addTempFile(C.getArgs().MakeArgString(TmpName.c_str())); 2047 } 2048 2049 SmallString<128> BasePath(BaseInput); 2050 StringRef BaseName; 2051 2052 // Dsymutil actions should use the full path. 2053 if (isa<DsymutilJobAction>(JA) || isa<VerifyJobAction>(JA)) 2054 BaseName = BasePath; 2055 else 2056 BaseName = llvm::sys::path::filename(BasePath); 2057 2058 // Determine what the derived output name should be. 2059 const char *NamedOutput; 2060 2061 if (JA.getType() == types::TY_Object && 2062 C.getArgs().hasArg(options::OPT__SLASH_Fo, options::OPT__SLASH_o)) { 2063 // The /Fo or /o flag decides the object filename. 2064 StringRef Val = 2065 C.getArgs() 2066 .getLastArg(options::OPT__SLASH_Fo, options::OPT__SLASH_o) 2067 ->getValue(); 2068 NamedOutput = 2069 MakeCLOutputFilename(C.getArgs(), Val, BaseName, types::TY_Object); 2070 } else if (JA.getType() == types::TY_Image && 2071 C.getArgs().hasArg(options::OPT__SLASH_Fe, 2072 options::OPT__SLASH_o)) { 2073 // The /Fe or /o flag names the linked file. 2074 StringRef Val = 2075 C.getArgs() 2076 .getLastArg(options::OPT__SLASH_Fe, options::OPT__SLASH_o) 2077 ->getValue(); 2078 NamedOutput = 2079 MakeCLOutputFilename(C.getArgs(), Val, BaseName, types::TY_Image); 2080 } else if (JA.getType() == types::TY_Image) { 2081 if (IsCLMode()) { 2082 // clang-cl uses BaseName for the executable name. 2083 NamedOutput = 2084 MakeCLOutputFilename(C.getArgs(), "", BaseName, types::TY_Image); 2085 } else if (MultipleArchs && BoundArch) { 2086 SmallString<128> Output(getDefaultImageName()); 2087 Output += "-"; 2088 Output.append(BoundArch); 2089 NamedOutput = C.getArgs().MakeArgString(Output.c_str()); 2090 } else 2091 NamedOutput = getDefaultImageName(); 2092 } else { 2093 const char *Suffix = types::getTypeTempSuffix(JA.getType(), IsCLMode()); 2094 assert(Suffix && "All types used for output should have a suffix."); 2095 2096 std::string::size_type End = std::string::npos; 2097 if (!types::appendSuffixForType(JA.getType())) 2098 End = BaseName.rfind('.'); 2099 SmallString<128> Suffixed(BaseName.substr(0, End)); 2100 if (MultipleArchs && BoundArch) { 2101 Suffixed += "-"; 2102 Suffixed.append(BoundArch); 2103 } 2104 // When using both -save-temps and -emit-llvm, use a ".tmp.bc" suffix for 2105 // the unoptimized bitcode so that it does not get overwritten by the ".bc" 2106 // optimized bitcode output. 2107 if (!AtTopLevel && C.getArgs().hasArg(options::OPT_emit_llvm) && 2108 JA.getType() == types::TY_LLVM_BC) 2109 Suffixed += ".tmp"; 2110 Suffixed += '.'; 2111 Suffixed += Suffix; 2112 NamedOutput = C.getArgs().MakeArgString(Suffixed.c_str()); 2113 } 2114 2115 // Prepend object file path if -save-temps=obj 2116 if (!AtTopLevel && isSaveTempsObj() && C.getArgs().hasArg(options::OPT_o) && 2117 JA.getType() != types::TY_PCH) { 2118 Arg *FinalOutput = C.getArgs().getLastArg(options::OPT_o); 2119 SmallString<128> TempPath(FinalOutput->getValue()); 2120 llvm::sys::path::remove_filename(TempPath); 2121 StringRef OutputFileName = llvm::sys::path::filename(NamedOutput); 2122 llvm::sys::path::append(TempPath, OutputFileName); 2123 NamedOutput = C.getArgs().MakeArgString(TempPath.c_str()); 2124 } 2125 2126 // If we're saving temps and the temp file conflicts with the input file, 2127 // then avoid overwriting input file. 2128 if (!AtTopLevel && isSaveTempsEnabled() && NamedOutput == BaseName) { 2129 bool SameFile = false; 2130 SmallString<256> Result; 2131 llvm::sys::fs::current_path(Result); 2132 llvm::sys::path::append(Result, BaseName); 2133 llvm::sys::fs::equivalent(BaseInput, Result.c_str(), SameFile); 2134 // Must share the same path to conflict. 2135 if (SameFile) { 2136 StringRef Name = llvm::sys::path::filename(BaseInput); 2137 std::pair<StringRef, StringRef> Split = Name.split('.'); 2138 std::string TmpName = GetTemporaryPath( 2139 Split.first, types::getTypeTempSuffix(JA.getType(), IsCLMode())); 2140 return C.addTempFile(C.getArgs().MakeArgString(TmpName.c_str())); 2141 } 2142 } 2143 2144 // As an annoying special case, PCH generation doesn't strip the pathname. 2145 if (JA.getType() == types::TY_PCH) { 2146 llvm::sys::path::remove_filename(BasePath); 2147 if (BasePath.empty()) 2148 BasePath = NamedOutput; 2149 else 2150 llvm::sys::path::append(BasePath, NamedOutput); 2151 return C.addResultFile(C.getArgs().MakeArgString(BasePath.c_str()), &JA); 2152 } else { 2153 return C.addResultFile(NamedOutput, &JA); 2154 } 2155 } 2156 2157 std::string Driver::GetFilePath(const char *Name, const ToolChain &TC) const { 2158 // Respect a limited subset of the '-Bprefix' functionality in GCC by 2159 // attempting to use this prefix when looking for file paths. 2160 for (const std::string &Dir : PrefixDirs) { 2161 if (Dir.empty()) 2162 continue; 2163 SmallString<128> P(Dir[0] == '=' ? SysRoot + Dir.substr(1) : Dir); 2164 llvm::sys::path::append(P, Name); 2165 if (llvm::sys::fs::exists(Twine(P))) 2166 return P.str(); 2167 } 2168 2169 SmallString<128> P(ResourceDir); 2170 llvm::sys::path::append(P, Name); 2171 if (llvm::sys::fs::exists(Twine(P))) 2172 return P.str(); 2173 2174 for (const std::string &Dir : TC.getFilePaths()) { 2175 if (Dir.empty()) 2176 continue; 2177 SmallString<128> P(Dir[0] == '=' ? SysRoot + Dir.substr(1) : Dir); 2178 llvm::sys::path::append(P, Name); 2179 if (llvm::sys::fs::exists(Twine(P))) 2180 return P.str(); 2181 } 2182 2183 return Name; 2184 } 2185 2186 void Driver::generatePrefixedToolNames( 2187 const char *Tool, const ToolChain &TC, 2188 SmallVectorImpl<std::string> &Names) const { 2189 // FIXME: Needs a better variable than DefaultTargetTriple 2190 Names.emplace_back(DefaultTargetTriple + "-" + Tool); 2191 Names.emplace_back(Tool); 2192 2193 // Allow the discovery of tools prefixed with LLVM's default target triple. 2194 std::string LLVMDefaultTargetTriple = llvm::sys::getDefaultTargetTriple(); 2195 if (LLVMDefaultTargetTriple != DefaultTargetTriple) 2196 Names.emplace_back(LLVMDefaultTargetTriple + "-" + Tool); 2197 } 2198 2199 static bool ScanDirForExecutable(SmallString<128> &Dir, 2200 ArrayRef<std::string> Names) { 2201 for (const auto &Name : Names) { 2202 llvm::sys::path::append(Dir, Name); 2203 if (llvm::sys::fs::can_execute(Twine(Dir))) 2204 return true; 2205 llvm::sys::path::remove_filename(Dir); 2206 } 2207 return false; 2208 } 2209 2210 std::string Driver::GetProgramPath(const char *Name, 2211 const ToolChain &TC) const { 2212 SmallVector<std::string, 2> TargetSpecificExecutables; 2213 generatePrefixedToolNames(Name, TC, TargetSpecificExecutables); 2214 2215 // Respect a limited subset of the '-Bprefix' functionality in GCC by 2216 // attempting to use this prefix when looking for program paths. 2217 for (const auto &PrefixDir : PrefixDirs) { 2218 if (llvm::sys::fs::is_directory(PrefixDir)) { 2219 SmallString<128> P(PrefixDir); 2220 if (ScanDirForExecutable(P, TargetSpecificExecutables)) 2221 return P.str(); 2222 } else { 2223 SmallString<128> P(PrefixDir + Name); 2224 if (llvm::sys::fs::can_execute(Twine(P))) 2225 return P.str(); 2226 } 2227 } 2228 2229 const ToolChain::path_list &List = TC.getProgramPaths(); 2230 for (const auto &Path : List) { 2231 SmallString<128> P(Path); 2232 if (ScanDirForExecutable(P, TargetSpecificExecutables)) 2233 return P.str(); 2234 } 2235 2236 // If all else failed, search the path. 2237 for (const auto &TargetSpecificExecutable : TargetSpecificExecutables) 2238 if (llvm::ErrorOr<std::string> P = 2239 llvm::sys::findProgramByName(TargetSpecificExecutable)) 2240 return *P; 2241 2242 return Name; 2243 } 2244 2245 std::string Driver::GetTemporaryPath(StringRef Prefix, 2246 const char *Suffix) const { 2247 SmallString<128> Path; 2248 std::error_code EC = llvm::sys::fs::createTemporaryFile(Prefix, Suffix, Path); 2249 if (EC) { 2250 Diag(clang::diag::err_unable_to_make_temp) << EC.message(); 2251 return ""; 2252 } 2253 2254 return Path.str(); 2255 } 2256 2257 const ToolChain &Driver::getToolChain(const ArgList &Args, 2258 const llvm::Triple &Target) const { 2259 2260 ToolChain *&TC = ToolChains[Target.str()]; 2261 if (!TC) { 2262 switch (Target.getOS()) { 2263 case llvm::Triple::CloudABI: 2264 TC = new toolchains::CloudABI(*this, Target, Args); 2265 break; 2266 case llvm::Triple::Darwin: 2267 case llvm::Triple::MacOSX: 2268 case llvm::Triple::IOS: 2269 case llvm::Triple::TvOS: 2270 case llvm::Triple::WatchOS: 2271 TC = new toolchains::DarwinClang(*this, Target, Args); 2272 break; 2273 case llvm::Triple::DragonFly: 2274 TC = new toolchains::DragonFly(*this, Target, Args); 2275 break; 2276 case llvm::Triple::OpenBSD: 2277 TC = new toolchains::OpenBSD(*this, Target, Args); 2278 break; 2279 case llvm::Triple::Bitrig: 2280 TC = new toolchains::Bitrig(*this, Target, Args); 2281 break; 2282 case llvm::Triple::NetBSD: 2283 TC = new toolchains::NetBSD(*this, Target, Args); 2284 break; 2285 case llvm::Triple::FreeBSD: 2286 TC = new toolchains::FreeBSD(*this, Target, Args); 2287 break; 2288 case llvm::Triple::Minix: 2289 TC = new toolchains::Minix(*this, Target, Args); 2290 break; 2291 case llvm::Triple::Linux: 2292 if (Target.getArch() == llvm::Triple::hexagon) 2293 TC = new toolchains::HexagonToolChain(*this, Target, Args); 2294 else if ((Target.getVendor() == llvm::Triple::MipsTechnologies) && 2295 !Target.hasEnvironment()) 2296 TC = new toolchains::MipsLLVMToolChain(*this, Target, Args); 2297 else 2298 TC = new toolchains::Linux(*this, Target, Args); 2299 break; 2300 case llvm::Triple::NaCl: 2301 TC = new toolchains::NaClToolChain(*this, Target, Args); 2302 break; 2303 case llvm::Triple::Solaris: 2304 TC = new toolchains::Solaris(*this, Target, Args); 2305 break; 2306 case llvm::Triple::AMDHSA: 2307 TC = new toolchains::AMDGPUToolChain(*this, Target, Args); 2308 break; 2309 case llvm::Triple::Win32: 2310 switch (Target.getEnvironment()) { 2311 default: 2312 if (Target.isOSBinFormatELF()) 2313 TC = new toolchains::Generic_ELF(*this, Target, Args); 2314 else if (Target.isOSBinFormatMachO()) 2315 TC = new toolchains::MachO(*this, Target, Args); 2316 else 2317 TC = new toolchains::Generic_GCC(*this, Target, Args); 2318 break; 2319 case llvm::Triple::GNU: 2320 TC = new toolchains::MinGW(*this, Target, Args); 2321 break; 2322 case llvm::Triple::Itanium: 2323 TC = new toolchains::CrossWindowsToolChain(*this, Target, Args); 2324 break; 2325 case llvm::Triple::MSVC: 2326 case llvm::Triple::UnknownEnvironment: 2327 TC = new toolchains::MSVCToolChain(*this, Target, Args); 2328 break; 2329 } 2330 break; 2331 case llvm::Triple::CUDA: 2332 TC = new toolchains::CudaToolChain(*this, Target, Args); 2333 break; 2334 case llvm::Triple::PS4: 2335 TC = new toolchains::PS4CPU(*this, Target, Args); 2336 break; 2337 default: 2338 // Of these targets, Hexagon is the only one that might have 2339 // an OS of Linux, in which case it got handled above already. 2340 switch (Target.getArch()) { 2341 case llvm::Triple::tce: 2342 TC = new toolchains::TCEToolChain(*this, Target, Args); 2343 break; 2344 case llvm::Triple::hexagon: 2345 TC = new toolchains::HexagonToolChain(*this, Target, Args); 2346 break; 2347 case llvm::Triple::xcore: 2348 TC = new toolchains::XCoreToolChain(*this, Target, Args); 2349 break; 2350 case llvm::Triple::wasm32: 2351 case llvm::Triple::wasm64: 2352 TC = new toolchains::WebAssembly(*this, Target, Args); 2353 break; 2354 default: 2355 if (Target.getVendor() == llvm::Triple::Myriad) 2356 TC = new toolchains::MyriadToolChain(*this, Target, Args); 2357 else if (Target.isOSBinFormatELF()) 2358 TC = new toolchains::Generic_ELF(*this, Target, Args); 2359 else if (Target.isOSBinFormatMachO()) 2360 TC = new toolchains::MachO(*this, Target, Args); 2361 else 2362 TC = new toolchains::Generic_GCC(*this, Target, Args); 2363 } 2364 } 2365 } 2366 return *TC; 2367 } 2368 2369 bool Driver::ShouldUseClangCompiler(const JobAction &JA) const { 2370 // Say "no" if there is not exactly one input of a type clang understands. 2371 if (JA.size() != 1 || !types::isAcceptedByClang((*JA.begin())->getType())) 2372 return false; 2373 2374 // And say "no" if this is not a kind of action clang understands. 2375 if (!isa<PreprocessJobAction>(JA) && !isa<PrecompileJobAction>(JA) && 2376 !isa<CompileJobAction>(JA) && !isa<BackendJobAction>(JA)) 2377 return false; 2378 2379 return true; 2380 } 2381 2382 /// GetReleaseVersion - Parse (([0-9]+)(.([0-9]+)(.([0-9]+)?))?)? and return the 2383 /// grouped values as integers. Numbers which are not provided are set to 0. 2384 /// 2385 /// \return True if the entire string was parsed (9.2), or all groups were 2386 /// parsed (10.3.5extrastuff). 2387 bool Driver::GetReleaseVersion(const char *Str, unsigned &Major, 2388 unsigned &Minor, unsigned &Micro, 2389 bool &HadExtra) { 2390 HadExtra = false; 2391 2392 Major = Minor = Micro = 0; 2393 if (*Str == '\0') 2394 return false; 2395 2396 char *End; 2397 Major = (unsigned)strtol(Str, &End, 10); 2398 if (*Str != '\0' && *End == '\0') 2399 return true; 2400 if (*End != '.') 2401 return false; 2402 2403 Str = End + 1; 2404 Minor = (unsigned)strtol(Str, &End, 10); 2405 if (*Str != '\0' && *End == '\0') 2406 return true; 2407 if (*End != '.') 2408 return false; 2409 2410 Str = End + 1; 2411 Micro = (unsigned)strtol(Str, &End, 10); 2412 if (*Str != '\0' && *End == '\0') 2413 return true; 2414 if (Str == End) 2415 return false; 2416 HadExtra = true; 2417 return true; 2418 } 2419 2420 std::pair<unsigned, unsigned> Driver::getIncludeExcludeOptionFlagMasks() const { 2421 unsigned IncludedFlagsBitmask = 0; 2422 unsigned ExcludedFlagsBitmask = options::NoDriverOption; 2423 2424 if (Mode == CLMode) { 2425 // Include CL and Core options. 2426 IncludedFlagsBitmask |= options::CLOption; 2427 IncludedFlagsBitmask |= options::CoreOption; 2428 } else { 2429 ExcludedFlagsBitmask |= options::CLOption; 2430 } 2431 2432 return std::make_pair(IncludedFlagsBitmask, ExcludedFlagsBitmask); 2433 } 2434 2435 bool clang::driver::isOptimizationLevelFast(const ArgList &Args) { 2436 return Args.hasFlag(options::OPT_Ofast, options::OPT_O_Group, false); 2437 } 2438