1 //===--- Gnu.cpp - Gnu Tool and 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 "Gnu.h" 10 #include "Arch/ARM.h" 11 #include "Arch/CSKY.h" 12 #include "Arch/Mips.h" 13 #include "Arch/PPC.h" 14 #include "Arch/RISCV.h" 15 #include "Arch/Sparc.h" 16 #include "Arch/SystemZ.h" 17 #include "CommonArgs.h" 18 #include "Linux.h" 19 #include "clang/Config/config.h" // for GCC_INSTALL_PREFIX 20 #include "clang/Driver/Compilation.h" 21 #include "clang/Driver/Driver.h" 22 #include "clang/Driver/DriverDiagnostic.h" 23 #include "clang/Driver/Options.h" 24 #include "clang/Driver/Tool.h" 25 #include "clang/Driver/ToolChain.h" 26 #include "llvm/Option/ArgList.h" 27 #include "llvm/Support/CodeGen.h" 28 #include "llvm/Support/Path.h" 29 #include "llvm/Support/TargetParser.h" 30 #include "llvm/Support/VirtualFileSystem.h" 31 #include <system_error> 32 33 using namespace clang::driver; 34 using namespace clang::driver::toolchains; 35 using namespace clang; 36 using namespace llvm::opt; 37 38 using tools::addMultilibFlag; 39 using tools::addPathIfExists; 40 41 static bool forwardToGCC(const Option &O) { 42 // LinkerInput options have been forwarded. Don't duplicate. 43 if (O.hasFlag(options::LinkerInput)) 44 return false; 45 return O.matches(options::OPT_Link_Group) || O.hasFlag(options::LinkOption); 46 } 47 48 // Switch CPU names not recognized by GNU assembler to a close CPU that it does 49 // recognize, instead of a lower march from being picked in the absence of a cpu 50 // flag. 51 static void normalizeCPUNamesForAssembler(const ArgList &Args, 52 ArgStringList &CmdArgs) { 53 if (Arg *A = Args.getLastArg(options::OPT_mcpu_EQ)) { 54 StringRef CPUArg(A->getValue()); 55 if (CPUArg.equals_insensitive("krait")) 56 CmdArgs.push_back("-mcpu=cortex-a15"); 57 else if (CPUArg.equals_insensitive("kryo")) 58 CmdArgs.push_back("-mcpu=cortex-a57"); 59 else 60 Args.AddLastArg(CmdArgs, options::OPT_mcpu_EQ); 61 } 62 } 63 64 void tools::gcc::Common::ConstructJob(Compilation &C, const JobAction &JA, 65 const InputInfo &Output, 66 const InputInfoList &Inputs, 67 const ArgList &Args, 68 const char *LinkingOutput) const { 69 const Driver &D = getToolChain().getDriver(); 70 ArgStringList CmdArgs; 71 72 for (const auto &A : Args) { 73 if (forwardToGCC(A->getOption())) { 74 // It is unfortunate that we have to claim here, as this means 75 // we will basically never report anything interesting for 76 // platforms using a generic gcc, even if we are just using gcc 77 // to get to the assembler. 78 A->claim(); 79 80 A->render(Args, CmdArgs); 81 } 82 } 83 84 RenderExtraToolArgs(JA, CmdArgs); 85 86 // If using a driver driver, force the arch. 87 if (getToolChain().getTriple().isOSDarwin()) { 88 CmdArgs.push_back("-arch"); 89 CmdArgs.push_back( 90 Args.MakeArgString(getToolChain().getDefaultUniversalArchName())); 91 } 92 93 // Try to force gcc to match the tool chain we want, if we recognize 94 // the arch. 95 // 96 // FIXME: The triple class should directly provide the information we want 97 // here. 98 switch (getToolChain().getArch()) { 99 default: 100 break; 101 case llvm::Triple::x86: 102 case llvm::Triple::ppc: 103 case llvm::Triple::ppcle: 104 CmdArgs.push_back("-m32"); 105 break; 106 case llvm::Triple::x86_64: 107 case llvm::Triple::ppc64: 108 case llvm::Triple::ppc64le: 109 CmdArgs.push_back("-m64"); 110 break; 111 case llvm::Triple::sparcel: 112 CmdArgs.push_back("-EL"); 113 break; 114 } 115 116 if (Output.isFilename()) { 117 CmdArgs.push_back("-o"); 118 CmdArgs.push_back(Output.getFilename()); 119 } else { 120 assert(Output.isNothing() && "Unexpected output"); 121 CmdArgs.push_back("-fsyntax-only"); 122 } 123 124 Args.AddAllArgValues(CmdArgs, options::OPT_Wa_COMMA, options::OPT_Xassembler); 125 126 // Only pass -x if gcc will understand it; otherwise hope gcc 127 // understands the suffix correctly. The main use case this would go 128 // wrong in is for linker inputs if they happened to have an odd 129 // suffix; really the only way to get this to happen is a command 130 // like '-x foobar a.c' which will treat a.c like a linker input. 131 // 132 // FIXME: For the linker case specifically, can we safely convert 133 // inputs into '-Wl,' options? 134 for (const auto &II : Inputs) { 135 // Don't try to pass LLVM or AST inputs to a generic gcc. 136 if (types::isLLVMIR(II.getType())) 137 D.Diag(clang::diag::err_drv_no_linker_llvm_support) 138 << getToolChain().getTripleString(); 139 else if (II.getType() == types::TY_AST) 140 D.Diag(diag::err_drv_no_ast_support) << getToolChain().getTripleString(); 141 else if (II.getType() == types::TY_ModuleFile) 142 D.Diag(diag::err_drv_no_module_support) 143 << getToolChain().getTripleString(); 144 145 if (types::canTypeBeUserSpecified(II.getType())) { 146 CmdArgs.push_back("-x"); 147 CmdArgs.push_back(types::getTypeName(II.getType())); 148 } 149 150 if (II.isFilename()) 151 CmdArgs.push_back(II.getFilename()); 152 else { 153 const Arg &A = II.getInputArg(); 154 155 // Reverse translate some rewritten options. 156 if (A.getOption().matches(options::OPT_Z_reserved_lib_stdcxx)) { 157 CmdArgs.push_back("-lstdc++"); 158 continue; 159 } 160 161 // Don't render as input, we need gcc to do the translations. 162 A.render(Args, CmdArgs); 163 } 164 } 165 166 const std::string &customGCCName = D.getCCCGenericGCCName(); 167 const char *GCCName; 168 if (!customGCCName.empty()) 169 GCCName = customGCCName.c_str(); 170 else if (D.CCCIsCXX()) { 171 GCCName = "g++"; 172 } else 173 GCCName = "gcc"; 174 175 const char *Exec = Args.MakeArgString(getToolChain().GetProgramPath(GCCName)); 176 C.addCommand(std::make_unique<Command>(JA, *this, 177 ResponseFileSupport::AtFileCurCP(), 178 Exec, CmdArgs, Inputs, Output)); 179 } 180 181 void tools::gcc::Preprocessor::RenderExtraToolArgs( 182 const JobAction &JA, ArgStringList &CmdArgs) const { 183 CmdArgs.push_back("-E"); 184 } 185 186 void tools::gcc::Compiler::RenderExtraToolArgs(const JobAction &JA, 187 ArgStringList &CmdArgs) const { 188 const Driver &D = getToolChain().getDriver(); 189 190 switch (JA.getType()) { 191 // If -flto, etc. are present then make sure not to force assembly output. 192 case types::TY_LLVM_IR: 193 case types::TY_LTO_IR: 194 case types::TY_LLVM_BC: 195 case types::TY_LTO_BC: 196 CmdArgs.push_back("-c"); 197 break; 198 // We assume we've got an "integrated" assembler in that gcc will produce an 199 // object file itself. 200 case types::TY_Object: 201 CmdArgs.push_back("-c"); 202 break; 203 case types::TY_PP_Asm: 204 CmdArgs.push_back("-S"); 205 break; 206 case types::TY_Nothing: 207 CmdArgs.push_back("-fsyntax-only"); 208 break; 209 default: 210 D.Diag(diag::err_drv_invalid_gcc_output_type) << getTypeName(JA.getType()); 211 } 212 } 213 214 void tools::gcc::Linker::RenderExtraToolArgs(const JobAction &JA, 215 ArgStringList &CmdArgs) const { 216 // The types are (hopefully) good enough. 217 } 218 219 // On Arm the endianness of the output file is determined by the target and 220 // can be overridden by the pseudo-target flags '-mlittle-endian'/'-EL' and 221 // '-mbig-endian'/'-EB'. Unlike other targets the flag does not result in a 222 // normalized triple so we must handle the flag here. 223 static bool isArmBigEndian(const llvm::Triple &Triple, 224 const ArgList &Args) { 225 bool IsBigEndian = false; 226 switch (Triple.getArch()) { 227 case llvm::Triple::armeb: 228 case llvm::Triple::thumbeb: 229 IsBigEndian = true; 230 LLVM_FALLTHROUGH; 231 case llvm::Triple::arm: 232 case llvm::Triple::thumb: 233 if (Arg *A = Args.getLastArg(options::OPT_mlittle_endian, 234 options::OPT_mbig_endian)) 235 IsBigEndian = !A->getOption().matches(options::OPT_mlittle_endian); 236 break; 237 default: 238 break; 239 } 240 return IsBigEndian; 241 } 242 243 static const char *getLDMOption(const llvm::Triple &T, const ArgList &Args) { 244 switch (T.getArch()) { 245 case llvm::Triple::x86: 246 if (T.isOSIAMCU()) 247 return "elf_iamcu"; 248 return "elf_i386"; 249 case llvm::Triple::aarch64: 250 return "aarch64linux"; 251 case llvm::Triple::aarch64_be: 252 return "aarch64linuxb"; 253 case llvm::Triple::arm: 254 case llvm::Triple::thumb: 255 case llvm::Triple::armeb: 256 case llvm::Triple::thumbeb: 257 return isArmBigEndian(T, Args) ? "armelfb_linux_eabi" : "armelf_linux_eabi"; 258 case llvm::Triple::m68k: 259 return "m68kelf"; 260 case llvm::Triple::ppc: 261 if (T.isOSLinux()) 262 return "elf32ppclinux"; 263 return "elf32ppc"; 264 case llvm::Triple::ppcle: 265 if (T.isOSLinux()) 266 return "elf32lppclinux"; 267 return "elf32lppc"; 268 case llvm::Triple::ppc64: 269 return "elf64ppc"; 270 case llvm::Triple::ppc64le: 271 return "elf64lppc"; 272 case llvm::Triple::riscv32: 273 return "elf32lriscv"; 274 case llvm::Triple::riscv64: 275 return "elf64lriscv"; 276 case llvm::Triple::sparc: 277 case llvm::Triple::sparcel: 278 return "elf32_sparc"; 279 case llvm::Triple::sparcv9: 280 return "elf64_sparc"; 281 case llvm::Triple::mips: 282 return "elf32btsmip"; 283 case llvm::Triple::mipsel: 284 return "elf32ltsmip"; 285 case llvm::Triple::mips64: 286 if (tools::mips::hasMipsAbiArg(Args, "n32") || 287 T.getEnvironment() == llvm::Triple::GNUABIN32) 288 return "elf32btsmipn32"; 289 return "elf64btsmip"; 290 case llvm::Triple::mips64el: 291 if (tools::mips::hasMipsAbiArg(Args, "n32") || 292 T.getEnvironment() == llvm::Triple::GNUABIN32) 293 return "elf32ltsmipn32"; 294 return "elf64ltsmip"; 295 case llvm::Triple::systemz: 296 return "elf64_s390"; 297 case llvm::Triple::x86_64: 298 if (T.isX32()) 299 return "elf32_x86_64"; 300 return "elf_x86_64"; 301 case llvm::Triple::ve: 302 return "elf64ve"; 303 case llvm::Triple::csky: 304 return "cskyelf_linux"; 305 default: 306 return nullptr; 307 } 308 } 309 310 static bool getPIE(const ArgList &Args, const ToolChain &TC) { 311 if (Args.hasArg(options::OPT_shared) || Args.hasArg(options::OPT_static) || 312 Args.hasArg(options::OPT_r) || Args.hasArg(options::OPT_static_pie)) 313 return false; 314 315 Arg *A = Args.getLastArg(options::OPT_pie, options::OPT_no_pie, 316 options::OPT_nopie); 317 if (!A) 318 return TC.isPIEDefault(Args); 319 return A->getOption().matches(options::OPT_pie); 320 } 321 322 static bool getStaticPIE(const ArgList &Args, const ToolChain &TC) { 323 bool HasStaticPIE = Args.hasArg(options::OPT_static_pie); 324 // -no-pie is an alias for -nopie. So, handling -nopie takes care of 325 // -no-pie as well. 326 if (HasStaticPIE && Args.hasArg(options::OPT_nopie)) { 327 const Driver &D = TC.getDriver(); 328 const llvm::opt::OptTable &Opts = D.getOpts(); 329 const char *StaticPIEName = Opts.getOptionName(options::OPT_static_pie); 330 const char *NoPIEName = Opts.getOptionName(options::OPT_nopie); 331 D.Diag(diag::err_drv_cannot_mix_options) << StaticPIEName << NoPIEName; 332 } 333 return HasStaticPIE; 334 } 335 336 static bool getStatic(const ArgList &Args) { 337 return Args.hasArg(options::OPT_static) && 338 !Args.hasArg(options::OPT_static_pie); 339 } 340 341 void tools::gnutools::StaticLibTool::ConstructJob( 342 Compilation &C, const JobAction &JA, const InputInfo &Output, 343 const InputInfoList &Inputs, const ArgList &Args, 344 const char *LinkingOutput) const { 345 const Driver &D = getToolChain().getDriver(); 346 347 // Silence warning for "clang -g foo.o -o foo" 348 Args.ClaimAllArgs(options::OPT_g_Group); 349 // and "clang -emit-llvm foo.o -o foo" 350 Args.ClaimAllArgs(options::OPT_emit_llvm); 351 // and for "clang -w foo.o -o foo". Other warning options are already 352 // handled somewhere else. 353 Args.ClaimAllArgs(options::OPT_w); 354 // Silence warnings when linking C code with a C++ '-stdlib' argument. 355 Args.ClaimAllArgs(options::OPT_stdlib_EQ); 356 357 // ar tool command "llvm-ar <options> <output_file> <input_files>". 358 ArgStringList CmdArgs; 359 // Create and insert file members with a deterministic index. 360 CmdArgs.push_back("rcsD"); 361 CmdArgs.push_back(Output.getFilename()); 362 363 for (const auto &II : Inputs) { 364 if (II.isFilename()) { 365 CmdArgs.push_back(II.getFilename()); 366 } 367 } 368 369 // Delete old output archive file if it already exists before generating a new 370 // archive file. 371 auto OutputFileName = Output.getFilename(); 372 if (Output.isFilename() && llvm::sys::fs::exists(OutputFileName)) { 373 if (std::error_code EC = llvm::sys::fs::remove(OutputFileName)) { 374 D.Diag(diag::err_drv_unable_to_remove_file) << EC.message(); 375 return; 376 } 377 } 378 379 const char *Exec = Args.MakeArgString(getToolChain().GetStaticLibToolPath()); 380 C.addCommand(std::make_unique<Command>(JA, *this, 381 ResponseFileSupport::AtFileCurCP(), 382 Exec, CmdArgs, Inputs, Output)); 383 } 384 385 void tools::gnutools::Linker::ConstructJob(Compilation &C, const JobAction &JA, 386 const InputInfo &Output, 387 const InputInfoList &Inputs, 388 const ArgList &Args, 389 const char *LinkingOutput) const { 390 // FIXME: The Linker class constructor takes a ToolChain and not a 391 // Generic_ELF, so the static_cast might return a reference to a invalid 392 // instance (see PR45061). Ideally, the Linker constructor needs to take a 393 // Generic_ELF instead. 394 const toolchains::Generic_ELF &ToolChain = 395 static_cast<const toolchains::Generic_ELF &>(getToolChain()); 396 const Driver &D = ToolChain.getDriver(); 397 398 const llvm::Triple &Triple = getToolChain().getEffectiveTriple(); 399 400 const llvm::Triple::ArchType Arch = ToolChain.getArch(); 401 const bool isAndroid = ToolChain.getTriple().isAndroid(); 402 const bool IsIAMCU = ToolChain.getTriple().isOSIAMCU(); 403 const bool IsVE = ToolChain.getTriple().isVE(); 404 const bool IsPIE = getPIE(Args, ToolChain); 405 const bool IsStaticPIE = getStaticPIE(Args, ToolChain); 406 const bool IsStatic = getStatic(Args); 407 const bool HasCRTBeginEndFiles = 408 ToolChain.getTriple().hasEnvironment() || 409 (ToolChain.getTriple().getVendor() != llvm::Triple::MipsTechnologies); 410 411 ArgStringList CmdArgs; 412 413 // Silence warning for "clang -g foo.o -o foo" 414 Args.ClaimAllArgs(options::OPT_g_Group); 415 // and "clang -emit-llvm foo.o -o foo" 416 Args.ClaimAllArgs(options::OPT_emit_llvm); 417 // and for "clang -w foo.o -o foo". Other warning options are already 418 // handled somewhere else. 419 Args.ClaimAllArgs(options::OPT_w); 420 421 if (!D.SysRoot.empty()) 422 CmdArgs.push_back(Args.MakeArgString("--sysroot=" + D.SysRoot)); 423 424 if (IsPIE) 425 CmdArgs.push_back("-pie"); 426 427 if (IsStaticPIE) { 428 CmdArgs.push_back("-static"); 429 CmdArgs.push_back("-pie"); 430 CmdArgs.push_back("--no-dynamic-linker"); 431 CmdArgs.push_back("-z"); 432 CmdArgs.push_back("text"); 433 } 434 435 if (Args.hasArg(options::OPT_rdynamic)) 436 CmdArgs.push_back("-export-dynamic"); 437 438 if (Args.hasArg(options::OPT_s)) 439 CmdArgs.push_back("-s"); 440 441 if (Triple.isARM() || Triple.isThumb() || Triple.isAArch64()) { 442 bool IsBigEndian = isArmBigEndian(Triple, Args); 443 if (IsBigEndian) 444 arm::appendBE8LinkFlag(Args, CmdArgs, Triple); 445 IsBigEndian = IsBigEndian || Arch == llvm::Triple::aarch64_be; 446 CmdArgs.push_back(IsBigEndian ? "-EB" : "-EL"); 447 } 448 449 // Most Android ARM64 targets should enable the linker fix for erratum 450 // 843419. Only non-Cortex-A53 devices are allowed to skip this flag. 451 if (Arch == llvm::Triple::aarch64 && isAndroid) { 452 std::string CPU = getCPUName(D, Args, Triple); 453 if (CPU.empty() || CPU == "generic" || CPU == "cortex-a53") 454 CmdArgs.push_back("--fix-cortex-a53-843419"); 455 } 456 457 ToolChain.addExtraOpts(CmdArgs); 458 459 CmdArgs.push_back("--eh-frame-hdr"); 460 461 if (const char *LDMOption = getLDMOption(ToolChain.getTriple(), Args)) { 462 CmdArgs.push_back("-m"); 463 CmdArgs.push_back(LDMOption); 464 } else { 465 D.Diag(diag::err_target_unknown_triple) << Triple.str(); 466 return; 467 } 468 469 if (Args.hasArg(options::OPT_shared)) 470 CmdArgs.push_back("-shared"); 471 472 if (IsStatic) { 473 CmdArgs.push_back("-static"); 474 } else { 475 if (Args.hasArg(options::OPT_rdynamic)) 476 CmdArgs.push_back("-export-dynamic"); 477 478 if (!Args.hasArg(options::OPT_shared) && !IsStaticPIE) { 479 CmdArgs.push_back("-dynamic-linker"); 480 CmdArgs.push_back(Args.MakeArgString(Twine(D.DyldPrefix) + 481 ToolChain.getDynamicLinker(Args))); 482 } 483 } 484 485 CmdArgs.push_back("-o"); 486 CmdArgs.push_back(Output.getFilename()); 487 488 if (!Args.hasArg(options::OPT_nostdlib, options::OPT_nostartfiles, 489 options::OPT_r)) { 490 if (!isAndroid && !IsIAMCU) { 491 const char *crt1 = nullptr; 492 if (!Args.hasArg(options::OPT_shared)) { 493 if (Args.hasArg(options::OPT_pg)) 494 crt1 = "gcrt1.o"; 495 else if (IsPIE) 496 crt1 = "Scrt1.o"; 497 else if (IsStaticPIE) 498 crt1 = "rcrt1.o"; 499 else 500 crt1 = "crt1.o"; 501 } 502 if (crt1) 503 CmdArgs.push_back(Args.MakeArgString(ToolChain.GetFilePath(crt1))); 504 505 CmdArgs.push_back(Args.MakeArgString(ToolChain.GetFilePath("crti.o"))); 506 } 507 508 if (IsVE) { 509 CmdArgs.push_back("-z"); 510 CmdArgs.push_back("max-page-size=0x4000000"); 511 } 512 513 if (IsIAMCU) 514 CmdArgs.push_back(Args.MakeArgString(ToolChain.GetFilePath("crt0.o"))); 515 else if (HasCRTBeginEndFiles) { 516 std::string P; 517 if (ToolChain.GetRuntimeLibType(Args) == ToolChain::RLT_CompilerRT && 518 !isAndroid) { 519 std::string crtbegin = ToolChain.getCompilerRT(Args, "crtbegin", 520 ToolChain::FT_Object); 521 if (ToolChain.getVFS().exists(crtbegin)) 522 P = crtbegin; 523 } 524 if (P.empty()) { 525 const char *crtbegin; 526 if (Args.hasArg(options::OPT_shared)) 527 crtbegin = isAndroid ? "crtbegin_so.o" : "crtbeginS.o"; 528 else if (IsStatic) 529 crtbegin = isAndroid ? "crtbegin_static.o" : "crtbeginT.o"; 530 else if (IsPIE || IsStaticPIE) 531 crtbegin = isAndroid ? "crtbegin_dynamic.o" : "crtbeginS.o"; 532 else 533 crtbegin = isAndroid ? "crtbegin_dynamic.o" : "crtbegin.o"; 534 P = ToolChain.GetFilePath(crtbegin); 535 } 536 CmdArgs.push_back(Args.MakeArgString(P)); 537 } 538 539 // Add crtfastmath.o if available and fast math is enabled. 540 ToolChain.addFastMathRuntimeIfAvailable(Args, CmdArgs); 541 } 542 543 Args.AddAllArgs(CmdArgs, options::OPT_L); 544 Args.AddAllArgs(CmdArgs, options::OPT_u); 545 546 ToolChain.AddFilePathLibArgs(Args, CmdArgs); 547 548 if (D.isUsingLTO()) { 549 assert(!Inputs.empty() && "Must have at least one input."); 550 addLTOOptions(ToolChain, Args, CmdArgs, Output, Inputs[0], 551 D.getLTOMode() == LTOK_Thin); 552 } 553 554 if (Args.hasArg(options::OPT_Z_Xlinker__no_demangle)) 555 CmdArgs.push_back("--no-demangle"); 556 557 bool NeedsSanitizerDeps = addSanitizerRuntimes(ToolChain, Args, CmdArgs); 558 bool NeedsXRayDeps = addXRayRuntime(ToolChain, Args, CmdArgs); 559 addLinkerCompressDebugSectionsOption(ToolChain, Args, CmdArgs); 560 AddLinkerInputs(ToolChain, Inputs, Args, CmdArgs, JA); 561 // The profile runtime also needs access to system libraries. 562 getToolChain().addProfileRTLibs(Args, CmdArgs); 563 564 if (D.CCCIsCXX() && 565 !Args.hasArg(options::OPT_nostdlib, options::OPT_nodefaultlibs, 566 options::OPT_r)) { 567 if (ToolChain.ShouldLinkCXXStdlib(Args)) { 568 bool OnlyLibstdcxxStatic = Args.hasArg(options::OPT_static_libstdcxx) && 569 !Args.hasArg(options::OPT_static); 570 if (OnlyLibstdcxxStatic) 571 CmdArgs.push_back("-Bstatic"); 572 ToolChain.AddCXXStdlibLibArgs(Args, CmdArgs); 573 if (OnlyLibstdcxxStatic) 574 CmdArgs.push_back("-Bdynamic"); 575 } 576 CmdArgs.push_back("-lm"); 577 } 578 579 // If we are linking for the device all symbols should be bound locally. The 580 // symbols are already protected which makes this redundant. This is only 581 // necessary to work around a problem in bfd. 582 // TODO: Remove this once 'lld' becomes the only linker for offloading. 583 if (JA.isDeviceOffloading(Action::OFK_OpenMP)) 584 CmdArgs.push_back("-Bsymbolic"); 585 586 // Silence warnings when linking C code with a C++ '-stdlib' argument. 587 Args.ClaimAllArgs(options::OPT_stdlib_EQ); 588 589 if (!Args.hasArg(options::OPT_nostdlib, options::OPT_r)) { 590 if (!Args.hasArg(options::OPT_nodefaultlibs)) { 591 if (IsStatic || IsStaticPIE) 592 CmdArgs.push_back("--start-group"); 593 594 if (NeedsSanitizerDeps) 595 linkSanitizerRuntimeDeps(ToolChain, CmdArgs); 596 597 if (NeedsXRayDeps) 598 linkXRayRuntimeDeps(ToolChain, CmdArgs); 599 600 bool WantPthread = Args.hasArg(options::OPT_pthread) || 601 Args.hasArg(options::OPT_pthreads); 602 603 // Use the static OpenMP runtime with -static-openmp 604 bool StaticOpenMP = Args.hasArg(options::OPT_static_openmp) && 605 !Args.hasArg(options::OPT_static); 606 607 // FIXME: Only pass GompNeedsRT = true for platforms with libgomp that 608 // require librt. Most modern Linux platforms do, but some may not. 609 if (addOpenMPRuntime(CmdArgs, ToolChain, Args, StaticOpenMP, 610 JA.isHostOffloading(Action::OFK_OpenMP), 611 /* GompNeedsRT= */ true)) 612 // OpenMP runtimes implies pthreads when using the GNU toolchain. 613 // FIXME: Does this really make sense for all GNU toolchains? 614 WantPthread = true; 615 616 AddRunTimeLibs(ToolChain, D, CmdArgs, Args); 617 618 if (WantPthread && !isAndroid) 619 CmdArgs.push_back("-lpthread"); 620 621 if (Args.hasArg(options::OPT_fsplit_stack)) 622 CmdArgs.push_back("--wrap=pthread_create"); 623 624 if (!Args.hasArg(options::OPT_nolibc)) 625 CmdArgs.push_back("-lc"); 626 627 // Add IAMCU specific libs, if needed. 628 if (IsIAMCU) 629 CmdArgs.push_back("-lgloss"); 630 631 if (IsStatic || IsStaticPIE) 632 CmdArgs.push_back("--end-group"); 633 else 634 AddRunTimeLibs(ToolChain, D, CmdArgs, Args); 635 636 // Add IAMCU specific libs (outside the group), if needed. 637 if (IsIAMCU) { 638 CmdArgs.push_back("--as-needed"); 639 CmdArgs.push_back("-lsoftfp"); 640 CmdArgs.push_back("--no-as-needed"); 641 } 642 } 643 644 if (!Args.hasArg(options::OPT_nostartfiles) && !IsIAMCU) { 645 if (HasCRTBeginEndFiles) { 646 std::string P; 647 if (ToolChain.GetRuntimeLibType(Args) == ToolChain::RLT_CompilerRT && 648 !isAndroid) { 649 std::string crtend = ToolChain.getCompilerRT(Args, "crtend", 650 ToolChain::FT_Object); 651 if (ToolChain.getVFS().exists(crtend)) 652 P = crtend; 653 } 654 if (P.empty()) { 655 const char *crtend; 656 if (Args.hasArg(options::OPT_shared)) 657 crtend = isAndroid ? "crtend_so.o" : "crtendS.o"; 658 else if (IsPIE || IsStaticPIE) 659 crtend = isAndroid ? "crtend_android.o" : "crtendS.o"; 660 else 661 crtend = isAndroid ? "crtend_android.o" : "crtend.o"; 662 P = ToolChain.GetFilePath(crtend); 663 } 664 CmdArgs.push_back(Args.MakeArgString(P)); 665 } 666 if (!isAndroid) 667 CmdArgs.push_back(Args.MakeArgString(ToolChain.GetFilePath("crtn.o"))); 668 } 669 } 670 671 Args.AddAllArgs(CmdArgs, options::OPT_T); 672 673 const char *Exec = Args.MakeArgString(ToolChain.GetLinkerPath()); 674 C.addCommand(std::make_unique<Command>(JA, *this, 675 ResponseFileSupport::AtFileCurCP(), 676 Exec, CmdArgs, Inputs, Output)); 677 } 678 679 void tools::gnutools::Assembler::ConstructJob(Compilation &C, 680 const JobAction &JA, 681 const InputInfo &Output, 682 const InputInfoList &Inputs, 683 const ArgList &Args, 684 const char *LinkingOutput) const { 685 const auto &D = getToolChain().getDriver(); 686 687 claimNoWarnArgs(Args); 688 689 ArgStringList CmdArgs; 690 691 llvm::Reloc::Model RelocationModel; 692 unsigned PICLevel; 693 bool IsPIE; 694 const char *DefaultAssembler = "as"; 695 std::tie(RelocationModel, PICLevel, IsPIE) = 696 ParsePICArgs(getToolChain(), Args); 697 698 if (const Arg *A = Args.getLastArg(options::OPT_gz, options::OPT_gz_EQ)) { 699 if (A->getOption().getID() == options::OPT_gz) { 700 CmdArgs.push_back("--compress-debug-sections"); 701 } else { 702 StringRef Value = A->getValue(); 703 if (Value == "none" || Value == "zlib") { 704 CmdArgs.push_back( 705 Args.MakeArgString("--compress-debug-sections=" + Twine(Value))); 706 } else { 707 D.Diag(diag::err_drv_unsupported_option_argument) 708 << A->getOption().getName() << Value; 709 } 710 } 711 } 712 713 switch (getToolChain().getArch()) { 714 default: 715 break; 716 // Add --32/--64 to make sure we get the format we want. 717 // This is incomplete 718 case llvm::Triple::x86: 719 CmdArgs.push_back("--32"); 720 break; 721 case llvm::Triple::x86_64: 722 if (getToolChain().getTriple().isX32()) 723 CmdArgs.push_back("--x32"); 724 else 725 CmdArgs.push_back("--64"); 726 break; 727 case llvm::Triple::ppc: { 728 CmdArgs.push_back("-a32"); 729 CmdArgs.push_back("-mppc"); 730 CmdArgs.push_back("-mbig-endian"); 731 CmdArgs.push_back(ppc::getPPCAsmModeForCPU( 732 getCPUName(D, Args, getToolChain().getTriple()))); 733 break; 734 } 735 case llvm::Triple::ppcle: { 736 CmdArgs.push_back("-a32"); 737 CmdArgs.push_back("-mppc"); 738 CmdArgs.push_back("-mlittle-endian"); 739 CmdArgs.push_back(ppc::getPPCAsmModeForCPU( 740 getCPUName(D, Args, getToolChain().getTriple()))); 741 break; 742 } 743 case llvm::Triple::ppc64: { 744 CmdArgs.push_back("-a64"); 745 CmdArgs.push_back("-mppc64"); 746 CmdArgs.push_back("-mbig-endian"); 747 CmdArgs.push_back(ppc::getPPCAsmModeForCPU( 748 getCPUName(D, Args, getToolChain().getTriple()))); 749 break; 750 } 751 case llvm::Triple::ppc64le: { 752 CmdArgs.push_back("-a64"); 753 CmdArgs.push_back("-mppc64"); 754 CmdArgs.push_back("-mlittle-endian"); 755 CmdArgs.push_back(ppc::getPPCAsmModeForCPU( 756 getCPUName(D, Args, getToolChain().getTriple()))); 757 break; 758 } 759 case llvm::Triple::riscv32: 760 case llvm::Triple::riscv64: { 761 StringRef ABIName = riscv::getRISCVABI(Args, getToolChain().getTriple()); 762 CmdArgs.push_back("-mabi"); 763 CmdArgs.push_back(ABIName.data()); 764 StringRef MArchName = riscv::getRISCVArch(Args, getToolChain().getTriple()); 765 CmdArgs.push_back("-march"); 766 CmdArgs.push_back(MArchName.data()); 767 break; 768 } 769 case llvm::Triple::sparc: 770 case llvm::Triple::sparcel: { 771 CmdArgs.push_back("-32"); 772 std::string CPU = getCPUName(D, Args, getToolChain().getTriple()); 773 CmdArgs.push_back( 774 sparc::getSparcAsmModeForCPU(CPU, getToolChain().getTriple())); 775 AddAssemblerKPIC(getToolChain(), Args, CmdArgs); 776 break; 777 } 778 case llvm::Triple::sparcv9: { 779 CmdArgs.push_back("-64"); 780 std::string CPU = getCPUName(D, Args, getToolChain().getTriple()); 781 CmdArgs.push_back( 782 sparc::getSparcAsmModeForCPU(CPU, getToolChain().getTriple())); 783 AddAssemblerKPIC(getToolChain(), Args, CmdArgs); 784 break; 785 } 786 case llvm::Triple::arm: 787 case llvm::Triple::armeb: 788 case llvm::Triple::thumb: 789 case llvm::Triple::thumbeb: { 790 const llvm::Triple &Triple2 = getToolChain().getTriple(); 791 CmdArgs.push_back(isArmBigEndian(Triple2, Args) ? "-EB" : "-EL"); 792 switch (Triple2.getSubArch()) { 793 case llvm::Triple::ARMSubArch_v7: 794 CmdArgs.push_back("-mfpu=neon"); 795 break; 796 case llvm::Triple::ARMSubArch_v8: 797 CmdArgs.push_back("-mfpu=crypto-neon-fp-armv8"); 798 break; 799 default: 800 break; 801 } 802 803 switch (arm::getARMFloatABI(getToolChain(), Args)) { 804 case arm::FloatABI::Invalid: llvm_unreachable("must have an ABI!"); 805 case arm::FloatABI::Soft: 806 CmdArgs.push_back(Args.MakeArgString("-mfloat-abi=soft")); 807 break; 808 case arm::FloatABI::SoftFP: 809 CmdArgs.push_back(Args.MakeArgString("-mfloat-abi=softfp")); 810 break; 811 case arm::FloatABI::Hard: 812 CmdArgs.push_back(Args.MakeArgString("-mfloat-abi=hard")); 813 break; 814 } 815 816 Args.AddLastArg(CmdArgs, options::OPT_march_EQ); 817 normalizeCPUNamesForAssembler(Args, CmdArgs); 818 819 Args.AddLastArg(CmdArgs, options::OPT_mfpu_EQ); 820 break; 821 } 822 case llvm::Triple::aarch64: 823 case llvm::Triple::aarch64_be: { 824 CmdArgs.push_back( 825 getToolChain().getArch() == llvm::Triple::aarch64_be ? "-EB" : "-EL"); 826 Args.AddLastArg(CmdArgs, options::OPT_march_EQ); 827 normalizeCPUNamesForAssembler(Args, CmdArgs); 828 829 break; 830 } 831 case llvm::Triple::mips: 832 case llvm::Triple::mipsel: 833 case llvm::Triple::mips64: 834 case llvm::Triple::mips64el: { 835 StringRef CPUName; 836 StringRef ABIName; 837 mips::getMipsCPUAndABI(Args, getToolChain().getTriple(), CPUName, ABIName); 838 ABIName = mips::getGnuCompatibleMipsABIName(ABIName); 839 840 CmdArgs.push_back("-march"); 841 CmdArgs.push_back(CPUName.data()); 842 843 CmdArgs.push_back("-mabi"); 844 CmdArgs.push_back(ABIName.data()); 845 846 // -mno-shared should be emitted unless -fpic, -fpie, -fPIC, -fPIE, 847 // or -mshared (not implemented) is in effect. 848 if (RelocationModel == llvm::Reloc::Static) 849 CmdArgs.push_back("-mno-shared"); 850 851 // LLVM doesn't support -mplt yet and acts as if it is always given. 852 // However, -mplt has no effect with the N64 ABI. 853 if (ABIName != "64" && !Args.hasArg(options::OPT_mno_abicalls)) 854 CmdArgs.push_back("-call_nonpic"); 855 856 if (getToolChain().getTriple().isLittleEndian()) 857 CmdArgs.push_back("-EL"); 858 else 859 CmdArgs.push_back("-EB"); 860 861 if (Arg *A = Args.getLastArg(options::OPT_mnan_EQ)) { 862 if (StringRef(A->getValue()) == "2008") 863 CmdArgs.push_back(Args.MakeArgString("-mnan=2008")); 864 } 865 866 // Add the last -mfp32/-mfpxx/-mfp64 or -mfpxx if it is enabled by default. 867 if (Arg *A = Args.getLastArg(options::OPT_mfp32, options::OPT_mfpxx, 868 options::OPT_mfp64)) { 869 A->claim(); 870 A->render(Args, CmdArgs); 871 } else if (mips::shouldUseFPXX( 872 Args, getToolChain().getTriple(), CPUName, ABIName, 873 mips::getMipsFloatABI(getToolChain().getDriver(), Args, 874 getToolChain().getTriple()))) 875 CmdArgs.push_back("-mfpxx"); 876 877 // Pass on -mmips16 or -mno-mips16. However, the assembler equivalent of 878 // -mno-mips16 is actually -no-mips16. 879 if (Arg *A = 880 Args.getLastArg(options::OPT_mips16, options::OPT_mno_mips16)) { 881 if (A->getOption().matches(options::OPT_mips16)) { 882 A->claim(); 883 A->render(Args, CmdArgs); 884 } else { 885 A->claim(); 886 CmdArgs.push_back("-no-mips16"); 887 } 888 } 889 890 Args.AddLastArg(CmdArgs, options::OPT_mmicromips, 891 options::OPT_mno_micromips); 892 Args.AddLastArg(CmdArgs, options::OPT_mdsp, options::OPT_mno_dsp); 893 Args.AddLastArg(CmdArgs, options::OPT_mdspr2, options::OPT_mno_dspr2); 894 895 if (Arg *A = Args.getLastArg(options::OPT_mmsa, options::OPT_mno_msa)) { 896 // Do not use AddLastArg because not all versions of MIPS assembler 897 // support -mmsa / -mno-msa options. 898 if (A->getOption().matches(options::OPT_mmsa)) 899 CmdArgs.push_back(Args.MakeArgString("-mmsa")); 900 } 901 902 Args.AddLastArg(CmdArgs, options::OPT_mhard_float, 903 options::OPT_msoft_float); 904 905 Args.AddLastArg(CmdArgs, options::OPT_mdouble_float, 906 options::OPT_msingle_float); 907 908 Args.AddLastArg(CmdArgs, options::OPT_modd_spreg, 909 options::OPT_mno_odd_spreg); 910 911 AddAssemblerKPIC(getToolChain(), Args, CmdArgs); 912 break; 913 } 914 case llvm::Triple::systemz: { 915 // Always pass an -march option, since our default of z10 is later 916 // than the GNU assembler's default. 917 std::string CPUName = systemz::getSystemZTargetCPU(Args); 918 CmdArgs.push_back(Args.MakeArgString("-march=" + CPUName)); 919 break; 920 } 921 case llvm::Triple::ve: 922 DefaultAssembler = "nas"; 923 } 924 925 for (const Arg *A : Args.filtered(options::OPT_ffile_prefix_map_EQ, 926 options::OPT_fdebug_prefix_map_EQ)) { 927 StringRef Map = A->getValue(); 928 if (!Map.contains('=')) 929 D.Diag(diag::err_drv_invalid_argument_to_option) 930 << Map << A->getOption().getName(); 931 else { 932 CmdArgs.push_back(Args.MakeArgString("--debug-prefix-map")); 933 CmdArgs.push_back(Args.MakeArgString(Map)); 934 } 935 A->claim(); 936 } 937 938 Args.AddAllArgs(CmdArgs, options::OPT_I); 939 Args.AddAllArgValues(CmdArgs, options::OPT_Wa_COMMA, options::OPT_Xassembler); 940 941 CmdArgs.push_back("-o"); 942 CmdArgs.push_back(Output.getFilename()); 943 944 for (const auto &II : Inputs) 945 CmdArgs.push_back(II.getFilename()); 946 947 const char *Exec = 948 Args.MakeArgString(getToolChain().GetProgramPath(DefaultAssembler)); 949 C.addCommand(std::make_unique<Command>(JA, *this, 950 ResponseFileSupport::AtFileCurCP(), 951 Exec, CmdArgs, Inputs, Output)); 952 953 // Handle the debug info splitting at object creation time if we're 954 // creating an object. 955 // TODO: Currently only works on linux with newer objcopy. 956 if (Args.hasArg(options::OPT_gsplit_dwarf) && 957 getToolChain().getTriple().isOSLinux()) 958 SplitDebugInfo(getToolChain(), C, *this, JA, Args, Output, 959 SplitDebugName(JA, Args, Inputs[0], Output)); 960 } 961 962 namespace { 963 // Filter to remove Multilibs that don't exist as a suffix to Path 964 class FilterNonExistent { 965 StringRef Base, File; 966 llvm::vfs::FileSystem &VFS; 967 968 public: 969 FilterNonExistent(StringRef Base, StringRef File, llvm::vfs::FileSystem &VFS) 970 : Base(Base), File(File), VFS(VFS) {} 971 bool operator()(const Multilib &M) { 972 return !VFS.exists(Base + M.gccSuffix() + File); 973 } 974 }; 975 } // end anonymous namespace 976 977 static bool isSoftFloatABI(const ArgList &Args) { 978 Arg *A = Args.getLastArg(options::OPT_msoft_float, options::OPT_mhard_float, 979 options::OPT_mfloat_abi_EQ); 980 if (!A) 981 return false; 982 983 return A->getOption().matches(options::OPT_msoft_float) || 984 (A->getOption().matches(options::OPT_mfloat_abi_EQ) && 985 A->getValue() == StringRef("soft")); 986 } 987 988 static bool isArmOrThumbArch(llvm::Triple::ArchType Arch) { 989 return Arch == llvm::Triple::arm || Arch == llvm::Triple::thumb; 990 } 991 992 static bool isMipsEL(llvm::Triple::ArchType Arch) { 993 return Arch == llvm::Triple::mipsel || Arch == llvm::Triple::mips64el; 994 } 995 996 static bool isMips16(const ArgList &Args) { 997 Arg *A = Args.getLastArg(options::OPT_mips16, options::OPT_mno_mips16); 998 return A && A->getOption().matches(options::OPT_mips16); 999 } 1000 1001 static bool isMicroMips(const ArgList &Args) { 1002 Arg *A = Args.getLastArg(options::OPT_mmicromips, options::OPT_mno_micromips); 1003 return A && A->getOption().matches(options::OPT_mmicromips); 1004 } 1005 1006 static bool isMSP430(llvm::Triple::ArchType Arch) { 1007 return Arch == llvm::Triple::msp430; 1008 } 1009 1010 static Multilib makeMultilib(StringRef commonSuffix) { 1011 return Multilib(commonSuffix, commonSuffix, commonSuffix); 1012 } 1013 1014 static bool findMipsCsMultilibs(const Multilib::flags_list &Flags, 1015 FilterNonExistent &NonExistent, 1016 DetectedMultilibs &Result) { 1017 // Check for Code Sourcery toolchain multilibs 1018 MultilibSet CSMipsMultilibs; 1019 { 1020 auto MArchMips16 = makeMultilib("/mips16").flag("+m32").flag("+mips16"); 1021 1022 auto MArchMicroMips = 1023 makeMultilib("/micromips").flag("+m32").flag("+mmicromips"); 1024 1025 auto MArchDefault = makeMultilib("").flag("-mips16").flag("-mmicromips"); 1026 1027 auto UCLibc = makeMultilib("/uclibc").flag("+muclibc"); 1028 1029 auto SoftFloat = makeMultilib("/soft-float").flag("+msoft-float"); 1030 1031 auto Nan2008 = makeMultilib("/nan2008").flag("+mnan=2008"); 1032 1033 auto DefaultFloat = 1034 makeMultilib("").flag("-msoft-float").flag("-mnan=2008"); 1035 1036 auto BigEndian = makeMultilib("").flag("+EB").flag("-EL"); 1037 1038 auto LittleEndian = makeMultilib("/el").flag("+EL").flag("-EB"); 1039 1040 // Note that this one's osSuffix is "" 1041 auto MAbi64 = makeMultilib("") 1042 .gccSuffix("/64") 1043 .includeSuffix("/64") 1044 .flag("+mabi=n64") 1045 .flag("-mabi=n32") 1046 .flag("-m32"); 1047 1048 CSMipsMultilibs = 1049 MultilibSet() 1050 .Either(MArchMips16, MArchMicroMips, MArchDefault) 1051 .Maybe(UCLibc) 1052 .Either(SoftFloat, Nan2008, DefaultFloat) 1053 .FilterOut("/micromips/nan2008") 1054 .FilterOut("/mips16/nan2008") 1055 .Either(BigEndian, LittleEndian) 1056 .Maybe(MAbi64) 1057 .FilterOut("/mips16.*/64") 1058 .FilterOut("/micromips.*/64") 1059 .FilterOut(NonExistent) 1060 .setIncludeDirsCallback([](const Multilib &M) { 1061 std::vector<std::string> Dirs({"/include"}); 1062 if (StringRef(M.includeSuffix()).startswith("/uclibc")) 1063 Dirs.push_back( 1064 "/../../../../mips-linux-gnu/libc/uclibc/usr/include"); 1065 else 1066 Dirs.push_back("/../../../../mips-linux-gnu/libc/usr/include"); 1067 return Dirs; 1068 }); 1069 } 1070 1071 MultilibSet DebianMipsMultilibs; 1072 { 1073 Multilib MAbiN32 = 1074 Multilib().gccSuffix("/n32").includeSuffix("/n32").flag("+mabi=n32"); 1075 1076 Multilib M64 = Multilib() 1077 .gccSuffix("/64") 1078 .includeSuffix("/64") 1079 .flag("+m64") 1080 .flag("-m32") 1081 .flag("-mabi=n32"); 1082 1083 Multilib M32 = 1084 Multilib().gccSuffix("/32").flag("-m64").flag("+m32").flag("-mabi=n32"); 1085 1086 DebianMipsMultilibs = 1087 MultilibSet().Either(M32, M64, MAbiN32).FilterOut(NonExistent); 1088 } 1089 1090 // Sort candidates. Toolchain that best meets the directories tree goes first. 1091 // Then select the first toolchains matches command line flags. 1092 MultilibSet *Candidates[] = {&CSMipsMultilibs, &DebianMipsMultilibs}; 1093 if (CSMipsMultilibs.size() < DebianMipsMultilibs.size()) 1094 std::iter_swap(Candidates, Candidates + 1); 1095 for (const MultilibSet *Candidate : Candidates) { 1096 if (Candidate->select(Flags, Result.SelectedMultilib)) { 1097 if (Candidate == &DebianMipsMultilibs) 1098 Result.BiarchSibling = Multilib(); 1099 Result.Multilibs = *Candidate; 1100 return true; 1101 } 1102 } 1103 return false; 1104 } 1105 1106 static bool findMipsAndroidMultilibs(llvm::vfs::FileSystem &VFS, StringRef Path, 1107 const Multilib::flags_list &Flags, 1108 FilterNonExistent &NonExistent, 1109 DetectedMultilibs &Result) { 1110 1111 MultilibSet AndroidMipsMultilibs = 1112 MultilibSet() 1113 .Maybe(Multilib("/mips-r2").flag("+march=mips32r2")) 1114 .Maybe(Multilib("/mips-r6").flag("+march=mips32r6")) 1115 .FilterOut(NonExistent); 1116 1117 MultilibSet AndroidMipselMultilibs = 1118 MultilibSet() 1119 .Either(Multilib().flag("+march=mips32"), 1120 Multilib("/mips-r2", "", "/mips-r2").flag("+march=mips32r2"), 1121 Multilib("/mips-r6", "", "/mips-r6").flag("+march=mips32r6")) 1122 .FilterOut(NonExistent); 1123 1124 MultilibSet AndroidMips64elMultilibs = 1125 MultilibSet() 1126 .Either( 1127 Multilib().flag("+march=mips64r6"), 1128 Multilib("/32/mips-r1", "", "/mips-r1").flag("+march=mips32"), 1129 Multilib("/32/mips-r2", "", "/mips-r2").flag("+march=mips32r2"), 1130 Multilib("/32/mips-r6", "", "/mips-r6").flag("+march=mips32r6")) 1131 .FilterOut(NonExistent); 1132 1133 MultilibSet *MS = &AndroidMipsMultilibs; 1134 if (VFS.exists(Path + "/mips-r6")) 1135 MS = &AndroidMipselMultilibs; 1136 else if (VFS.exists(Path + "/32")) 1137 MS = &AndroidMips64elMultilibs; 1138 if (MS->select(Flags, Result.SelectedMultilib)) { 1139 Result.Multilibs = *MS; 1140 return true; 1141 } 1142 return false; 1143 } 1144 1145 static bool findMipsMuslMultilibs(const Multilib::flags_list &Flags, 1146 FilterNonExistent &NonExistent, 1147 DetectedMultilibs &Result) { 1148 // Musl toolchain multilibs 1149 MultilibSet MuslMipsMultilibs; 1150 { 1151 auto MArchMipsR2 = makeMultilib("") 1152 .osSuffix("/mips-r2-hard-musl") 1153 .flag("+EB") 1154 .flag("-EL") 1155 .flag("+march=mips32r2"); 1156 1157 auto MArchMipselR2 = makeMultilib("/mipsel-r2-hard-musl") 1158 .flag("-EB") 1159 .flag("+EL") 1160 .flag("+march=mips32r2"); 1161 1162 MuslMipsMultilibs = MultilibSet().Either(MArchMipsR2, MArchMipselR2); 1163 1164 // Specify the callback that computes the include directories. 1165 MuslMipsMultilibs.setIncludeDirsCallback([](const Multilib &M) { 1166 return std::vector<std::string>( 1167 {"/../sysroot" + M.osSuffix() + "/usr/include"}); 1168 }); 1169 } 1170 if (MuslMipsMultilibs.select(Flags, Result.SelectedMultilib)) { 1171 Result.Multilibs = MuslMipsMultilibs; 1172 return true; 1173 } 1174 return false; 1175 } 1176 1177 static bool findMipsMtiMultilibs(const Multilib::flags_list &Flags, 1178 FilterNonExistent &NonExistent, 1179 DetectedMultilibs &Result) { 1180 // CodeScape MTI toolchain v1.2 and early. 1181 MultilibSet MtiMipsMultilibsV1; 1182 { 1183 auto MArchMips32 = makeMultilib("/mips32") 1184 .flag("+m32") 1185 .flag("-m64") 1186 .flag("-mmicromips") 1187 .flag("+march=mips32"); 1188 1189 auto MArchMicroMips = makeMultilib("/micromips") 1190 .flag("+m32") 1191 .flag("-m64") 1192 .flag("+mmicromips"); 1193 1194 auto MArchMips64r2 = makeMultilib("/mips64r2") 1195 .flag("-m32") 1196 .flag("+m64") 1197 .flag("+march=mips64r2"); 1198 1199 auto MArchMips64 = makeMultilib("/mips64").flag("-m32").flag("+m64").flag( 1200 "-march=mips64r2"); 1201 1202 auto MArchDefault = makeMultilib("") 1203 .flag("+m32") 1204 .flag("-m64") 1205 .flag("-mmicromips") 1206 .flag("+march=mips32r2"); 1207 1208 auto Mips16 = makeMultilib("/mips16").flag("+mips16"); 1209 1210 auto UCLibc = makeMultilib("/uclibc").flag("+muclibc"); 1211 1212 auto MAbi64 = 1213 makeMultilib("/64").flag("+mabi=n64").flag("-mabi=n32").flag("-m32"); 1214 1215 auto BigEndian = makeMultilib("").flag("+EB").flag("-EL"); 1216 1217 auto LittleEndian = makeMultilib("/el").flag("+EL").flag("-EB"); 1218 1219 auto SoftFloat = makeMultilib("/sof").flag("+msoft-float"); 1220 1221 auto Nan2008 = makeMultilib("/nan2008").flag("+mnan=2008"); 1222 1223 MtiMipsMultilibsV1 = 1224 MultilibSet() 1225 .Either(MArchMips32, MArchMicroMips, MArchMips64r2, MArchMips64, 1226 MArchDefault) 1227 .Maybe(UCLibc) 1228 .Maybe(Mips16) 1229 .FilterOut("/mips64/mips16") 1230 .FilterOut("/mips64r2/mips16") 1231 .FilterOut("/micromips/mips16") 1232 .Maybe(MAbi64) 1233 .FilterOut("/micromips/64") 1234 .FilterOut("/mips32/64") 1235 .FilterOut("^/64") 1236 .FilterOut("/mips16/64") 1237 .Either(BigEndian, LittleEndian) 1238 .Maybe(SoftFloat) 1239 .Maybe(Nan2008) 1240 .FilterOut(".*sof/nan2008") 1241 .FilterOut(NonExistent) 1242 .setIncludeDirsCallback([](const Multilib &M) { 1243 std::vector<std::string> Dirs({"/include"}); 1244 if (StringRef(M.includeSuffix()).startswith("/uclibc")) 1245 Dirs.push_back("/../../../../sysroot/uclibc/usr/include"); 1246 else 1247 Dirs.push_back("/../../../../sysroot/usr/include"); 1248 return Dirs; 1249 }); 1250 } 1251 1252 // CodeScape IMG toolchain starting from v1.3. 1253 MultilibSet MtiMipsMultilibsV2; 1254 { 1255 auto BeHard = makeMultilib("/mips-r2-hard") 1256 .flag("+EB") 1257 .flag("-msoft-float") 1258 .flag("-mnan=2008") 1259 .flag("-muclibc"); 1260 auto BeSoft = makeMultilib("/mips-r2-soft") 1261 .flag("+EB") 1262 .flag("+msoft-float") 1263 .flag("-mnan=2008"); 1264 auto ElHard = makeMultilib("/mipsel-r2-hard") 1265 .flag("+EL") 1266 .flag("-msoft-float") 1267 .flag("-mnan=2008") 1268 .flag("-muclibc"); 1269 auto ElSoft = makeMultilib("/mipsel-r2-soft") 1270 .flag("+EL") 1271 .flag("+msoft-float") 1272 .flag("-mnan=2008") 1273 .flag("-mmicromips"); 1274 auto BeHardNan = makeMultilib("/mips-r2-hard-nan2008") 1275 .flag("+EB") 1276 .flag("-msoft-float") 1277 .flag("+mnan=2008") 1278 .flag("-muclibc"); 1279 auto ElHardNan = makeMultilib("/mipsel-r2-hard-nan2008") 1280 .flag("+EL") 1281 .flag("-msoft-float") 1282 .flag("+mnan=2008") 1283 .flag("-muclibc") 1284 .flag("-mmicromips"); 1285 auto BeHardNanUclibc = makeMultilib("/mips-r2-hard-nan2008-uclibc") 1286 .flag("+EB") 1287 .flag("-msoft-float") 1288 .flag("+mnan=2008") 1289 .flag("+muclibc"); 1290 auto ElHardNanUclibc = makeMultilib("/mipsel-r2-hard-nan2008-uclibc") 1291 .flag("+EL") 1292 .flag("-msoft-float") 1293 .flag("+mnan=2008") 1294 .flag("+muclibc"); 1295 auto BeHardUclibc = makeMultilib("/mips-r2-hard-uclibc") 1296 .flag("+EB") 1297 .flag("-msoft-float") 1298 .flag("-mnan=2008") 1299 .flag("+muclibc"); 1300 auto ElHardUclibc = makeMultilib("/mipsel-r2-hard-uclibc") 1301 .flag("+EL") 1302 .flag("-msoft-float") 1303 .flag("-mnan=2008") 1304 .flag("+muclibc"); 1305 auto ElMicroHardNan = makeMultilib("/micromipsel-r2-hard-nan2008") 1306 .flag("+EL") 1307 .flag("-msoft-float") 1308 .flag("+mnan=2008") 1309 .flag("+mmicromips"); 1310 auto ElMicroSoft = makeMultilib("/micromipsel-r2-soft") 1311 .flag("+EL") 1312 .flag("+msoft-float") 1313 .flag("-mnan=2008") 1314 .flag("+mmicromips"); 1315 1316 auto O32 = 1317 makeMultilib("/lib").osSuffix("").flag("-mabi=n32").flag("-mabi=n64"); 1318 auto N32 = 1319 makeMultilib("/lib32").osSuffix("").flag("+mabi=n32").flag("-mabi=n64"); 1320 auto N64 = 1321 makeMultilib("/lib64").osSuffix("").flag("-mabi=n32").flag("+mabi=n64"); 1322 1323 MtiMipsMultilibsV2 = 1324 MultilibSet() 1325 .Either({BeHard, BeSoft, ElHard, ElSoft, BeHardNan, ElHardNan, 1326 BeHardNanUclibc, ElHardNanUclibc, BeHardUclibc, 1327 ElHardUclibc, ElMicroHardNan, ElMicroSoft}) 1328 .Either(O32, N32, N64) 1329 .FilterOut(NonExistent) 1330 .setIncludeDirsCallback([](const Multilib &M) { 1331 return std::vector<std::string>({"/../../../../sysroot" + 1332 M.includeSuffix() + 1333 "/../usr/include"}); 1334 }) 1335 .setFilePathsCallback([](const Multilib &M) { 1336 return std::vector<std::string>( 1337 {"/../../../../mips-mti-linux-gnu/lib" + M.gccSuffix()}); 1338 }); 1339 } 1340 for (auto Candidate : {&MtiMipsMultilibsV1, &MtiMipsMultilibsV2}) { 1341 if (Candidate->select(Flags, Result.SelectedMultilib)) { 1342 Result.Multilibs = *Candidate; 1343 return true; 1344 } 1345 } 1346 return false; 1347 } 1348 1349 static bool findMipsImgMultilibs(const Multilib::flags_list &Flags, 1350 FilterNonExistent &NonExistent, 1351 DetectedMultilibs &Result) { 1352 // CodeScape IMG toolchain v1.2 and early. 1353 MultilibSet ImgMultilibsV1; 1354 { 1355 auto Mips64r6 = makeMultilib("/mips64r6").flag("+m64").flag("-m32"); 1356 1357 auto LittleEndian = makeMultilib("/el").flag("+EL").flag("-EB"); 1358 1359 auto MAbi64 = 1360 makeMultilib("/64").flag("+mabi=n64").flag("-mabi=n32").flag("-m32"); 1361 1362 ImgMultilibsV1 = 1363 MultilibSet() 1364 .Maybe(Mips64r6) 1365 .Maybe(MAbi64) 1366 .Maybe(LittleEndian) 1367 .FilterOut(NonExistent) 1368 .setIncludeDirsCallback([](const Multilib &M) { 1369 return std::vector<std::string>( 1370 {"/include", "/../../../../sysroot/usr/include"}); 1371 }); 1372 } 1373 1374 // CodeScape IMG toolchain starting from v1.3. 1375 MultilibSet ImgMultilibsV2; 1376 { 1377 auto BeHard = makeMultilib("/mips-r6-hard") 1378 .flag("+EB") 1379 .flag("-msoft-float") 1380 .flag("-mmicromips"); 1381 auto BeSoft = makeMultilib("/mips-r6-soft") 1382 .flag("+EB") 1383 .flag("+msoft-float") 1384 .flag("-mmicromips"); 1385 auto ElHard = makeMultilib("/mipsel-r6-hard") 1386 .flag("+EL") 1387 .flag("-msoft-float") 1388 .flag("-mmicromips"); 1389 auto ElSoft = makeMultilib("/mipsel-r6-soft") 1390 .flag("+EL") 1391 .flag("+msoft-float") 1392 .flag("-mmicromips"); 1393 auto BeMicroHard = makeMultilib("/micromips-r6-hard") 1394 .flag("+EB") 1395 .flag("-msoft-float") 1396 .flag("+mmicromips"); 1397 auto BeMicroSoft = makeMultilib("/micromips-r6-soft") 1398 .flag("+EB") 1399 .flag("+msoft-float") 1400 .flag("+mmicromips"); 1401 auto ElMicroHard = makeMultilib("/micromipsel-r6-hard") 1402 .flag("+EL") 1403 .flag("-msoft-float") 1404 .flag("+mmicromips"); 1405 auto ElMicroSoft = makeMultilib("/micromipsel-r6-soft") 1406 .flag("+EL") 1407 .flag("+msoft-float") 1408 .flag("+mmicromips"); 1409 1410 auto O32 = 1411 makeMultilib("/lib").osSuffix("").flag("-mabi=n32").flag("-mabi=n64"); 1412 auto N32 = 1413 makeMultilib("/lib32").osSuffix("").flag("+mabi=n32").flag("-mabi=n64"); 1414 auto N64 = 1415 makeMultilib("/lib64").osSuffix("").flag("-mabi=n32").flag("+mabi=n64"); 1416 1417 ImgMultilibsV2 = 1418 MultilibSet() 1419 .Either({BeHard, BeSoft, ElHard, ElSoft, BeMicroHard, BeMicroSoft, 1420 ElMicroHard, ElMicroSoft}) 1421 .Either(O32, N32, N64) 1422 .FilterOut(NonExistent) 1423 .setIncludeDirsCallback([](const Multilib &M) { 1424 return std::vector<std::string>({"/../../../../sysroot" + 1425 M.includeSuffix() + 1426 "/../usr/include"}); 1427 }) 1428 .setFilePathsCallback([](const Multilib &M) { 1429 return std::vector<std::string>( 1430 {"/../../../../mips-img-linux-gnu/lib" + M.gccSuffix()}); 1431 }); 1432 } 1433 for (auto Candidate : {&ImgMultilibsV1, &ImgMultilibsV2}) { 1434 if (Candidate->select(Flags, Result.SelectedMultilib)) { 1435 Result.Multilibs = *Candidate; 1436 return true; 1437 } 1438 } 1439 return false; 1440 } 1441 1442 bool clang::driver::findMIPSMultilibs(const Driver &D, 1443 const llvm::Triple &TargetTriple, 1444 StringRef Path, const ArgList &Args, 1445 DetectedMultilibs &Result) { 1446 FilterNonExistent NonExistent(Path, "/crtbegin.o", D.getVFS()); 1447 1448 StringRef CPUName; 1449 StringRef ABIName; 1450 tools::mips::getMipsCPUAndABI(Args, TargetTriple, CPUName, ABIName); 1451 1452 llvm::Triple::ArchType TargetArch = TargetTriple.getArch(); 1453 1454 Multilib::flags_list Flags; 1455 addMultilibFlag(TargetTriple.isMIPS32(), "m32", Flags); 1456 addMultilibFlag(TargetTriple.isMIPS64(), "m64", Flags); 1457 addMultilibFlag(isMips16(Args), "mips16", Flags); 1458 addMultilibFlag(CPUName == "mips32", "march=mips32", Flags); 1459 addMultilibFlag(CPUName == "mips32r2" || CPUName == "mips32r3" || 1460 CPUName == "mips32r5" || CPUName == "p5600", 1461 "march=mips32r2", Flags); 1462 addMultilibFlag(CPUName == "mips32r6", "march=mips32r6", Flags); 1463 addMultilibFlag(CPUName == "mips64", "march=mips64", Flags); 1464 addMultilibFlag(CPUName == "mips64r2" || CPUName == "mips64r3" || 1465 CPUName == "mips64r5" || CPUName == "octeon" || 1466 CPUName == "octeon+", 1467 "march=mips64r2", Flags); 1468 addMultilibFlag(CPUName == "mips64r6", "march=mips64r6", Flags); 1469 addMultilibFlag(isMicroMips(Args), "mmicromips", Flags); 1470 addMultilibFlag(tools::mips::isUCLibc(Args), "muclibc", Flags); 1471 addMultilibFlag(tools::mips::isNaN2008(D, Args, TargetTriple), "mnan=2008", 1472 Flags); 1473 addMultilibFlag(ABIName == "n32", "mabi=n32", Flags); 1474 addMultilibFlag(ABIName == "n64", "mabi=n64", Flags); 1475 addMultilibFlag(isSoftFloatABI(Args), "msoft-float", Flags); 1476 addMultilibFlag(!isSoftFloatABI(Args), "mhard-float", Flags); 1477 addMultilibFlag(isMipsEL(TargetArch), "EL", Flags); 1478 addMultilibFlag(!isMipsEL(TargetArch), "EB", Flags); 1479 1480 if (TargetTriple.isAndroid()) 1481 return findMipsAndroidMultilibs(D.getVFS(), Path, Flags, NonExistent, 1482 Result); 1483 1484 if (TargetTriple.getVendor() == llvm::Triple::MipsTechnologies && 1485 TargetTriple.getOS() == llvm::Triple::Linux && 1486 TargetTriple.getEnvironment() == llvm::Triple::UnknownEnvironment) 1487 return findMipsMuslMultilibs(Flags, NonExistent, Result); 1488 1489 if (TargetTriple.getVendor() == llvm::Triple::MipsTechnologies && 1490 TargetTriple.getOS() == llvm::Triple::Linux && 1491 TargetTriple.isGNUEnvironment()) 1492 return findMipsMtiMultilibs(Flags, NonExistent, Result); 1493 1494 if (TargetTriple.getVendor() == llvm::Triple::ImaginationTechnologies && 1495 TargetTriple.getOS() == llvm::Triple::Linux && 1496 TargetTriple.isGNUEnvironment()) 1497 return findMipsImgMultilibs(Flags, NonExistent, Result); 1498 1499 if (findMipsCsMultilibs(Flags, NonExistent, Result)) 1500 return true; 1501 1502 // Fallback to the regular toolchain-tree structure. 1503 Multilib Default; 1504 Result.Multilibs.push_back(Default); 1505 Result.Multilibs.FilterOut(NonExistent); 1506 1507 if (Result.Multilibs.select(Flags, Result.SelectedMultilib)) { 1508 Result.BiarchSibling = Multilib(); 1509 return true; 1510 } 1511 1512 return false; 1513 } 1514 1515 static void findAndroidArmMultilibs(const Driver &D, 1516 const llvm::Triple &TargetTriple, 1517 StringRef Path, const ArgList &Args, 1518 DetectedMultilibs &Result) { 1519 // Find multilibs with subdirectories like armv7-a, thumb, armv7-a/thumb. 1520 FilterNonExistent NonExistent(Path, "/crtbegin.o", D.getVFS()); 1521 Multilib ArmV7Multilib = makeMultilib("/armv7-a") 1522 .flag("+march=armv7-a") 1523 .flag("-mthumb"); 1524 Multilib ThumbMultilib = makeMultilib("/thumb") 1525 .flag("-march=armv7-a") 1526 .flag("+mthumb"); 1527 Multilib ArmV7ThumbMultilib = makeMultilib("/armv7-a/thumb") 1528 .flag("+march=armv7-a") 1529 .flag("+mthumb"); 1530 Multilib DefaultMultilib = makeMultilib("") 1531 .flag("-march=armv7-a") 1532 .flag("-mthumb"); 1533 MultilibSet AndroidArmMultilibs = 1534 MultilibSet() 1535 .Either(ThumbMultilib, ArmV7Multilib, 1536 ArmV7ThumbMultilib, DefaultMultilib) 1537 .FilterOut(NonExistent); 1538 1539 Multilib::flags_list Flags; 1540 llvm::StringRef Arch = Args.getLastArgValue(options::OPT_march_EQ); 1541 bool IsArmArch = TargetTriple.getArch() == llvm::Triple::arm; 1542 bool IsThumbArch = TargetTriple.getArch() == llvm::Triple::thumb; 1543 bool IsV7SubArch = TargetTriple.getSubArch() == llvm::Triple::ARMSubArch_v7; 1544 bool IsThumbMode = IsThumbArch || 1545 Args.hasFlag(options::OPT_mthumb, options::OPT_mno_thumb, false) || 1546 (IsArmArch && llvm::ARM::parseArchISA(Arch) == llvm::ARM::ISAKind::THUMB); 1547 bool IsArmV7Mode = (IsArmArch || IsThumbArch) && 1548 (llvm::ARM::parseArchVersion(Arch) == 7 || 1549 (IsArmArch && Arch == "" && IsV7SubArch)); 1550 addMultilibFlag(IsArmV7Mode, "march=armv7-a", Flags); 1551 addMultilibFlag(IsThumbMode, "mthumb", Flags); 1552 1553 if (AndroidArmMultilibs.select(Flags, Result.SelectedMultilib)) 1554 Result.Multilibs = AndroidArmMultilibs; 1555 } 1556 1557 static bool findMSP430Multilibs(const Driver &D, 1558 const llvm::Triple &TargetTriple, 1559 StringRef Path, const ArgList &Args, 1560 DetectedMultilibs &Result) { 1561 FilterNonExistent NonExistent(Path, "/crtbegin.o", D.getVFS()); 1562 Multilib WithoutExceptions = makeMultilib("/430").flag("-exceptions"); 1563 Multilib WithExceptions = makeMultilib("/430/exceptions").flag("+exceptions"); 1564 1565 // FIXME: when clang starts to support msp430x ISA additional logic 1566 // to select between multilib must be implemented 1567 // Multilib MSP430xMultilib = makeMultilib("/large"); 1568 1569 Result.Multilibs.push_back(WithoutExceptions); 1570 Result.Multilibs.push_back(WithExceptions); 1571 Result.Multilibs.FilterOut(NonExistent); 1572 1573 Multilib::flags_list Flags; 1574 addMultilibFlag(Args.hasFlag(options::OPT_fexceptions, 1575 options::OPT_fno_exceptions, false), 1576 "exceptions", Flags); 1577 if (Result.Multilibs.select(Flags, Result.SelectedMultilib)) 1578 return true; 1579 1580 return false; 1581 } 1582 1583 static void findCSKYMultilibs(const Driver &D, const llvm::Triple &TargetTriple, 1584 StringRef Path, const ArgList &Args, 1585 DetectedMultilibs &Result) { 1586 FilterNonExistent NonExistent(Path, "/crtbegin.o", D.getVFS()); 1587 1588 tools::csky::FloatABI TheFloatABI = tools::csky::getCSKYFloatABI(D, Args); 1589 llvm::Optional<llvm::StringRef> Res = tools::csky::getCSKYArchName(D, Args, TargetTriple); 1590 1591 if (!Res) 1592 return; 1593 auto ARCHName = *Res; 1594 1595 Multilib::flags_list Flags; 1596 addMultilibFlag(TheFloatABI == tools::csky::FloatABI::Hard, "hard-fp", Flags); 1597 addMultilibFlag(TheFloatABI == tools::csky::FloatABI::SoftFP, "soft-fp", 1598 Flags); 1599 addMultilibFlag(TheFloatABI == tools::csky::FloatABI::Soft, "soft", Flags); 1600 addMultilibFlag(ARCHName == "ck801", "march=ck801", Flags); 1601 addMultilibFlag(ARCHName == "ck802", "march=ck802", Flags); 1602 addMultilibFlag(ARCHName == "ck803", "march=ck803", Flags); 1603 addMultilibFlag(ARCHName == "ck804", "march=ck804", Flags); 1604 addMultilibFlag(ARCHName == "ck805", "march=ck805", Flags); 1605 addMultilibFlag(ARCHName == "ck807", "march=ck807", Flags); 1606 addMultilibFlag(ARCHName == "ck810", "march=ck810", Flags); 1607 addMultilibFlag(ARCHName == "ck810v", "march=ck810v", Flags); 1608 addMultilibFlag(ARCHName == "ck860", "march=ck860", Flags); 1609 addMultilibFlag(ARCHName == "ck860v", "march=ck860v", Flags); 1610 1611 bool isBigEndian = false; 1612 if (Arg *A = Args.getLastArg(options::OPT_mlittle_endian, 1613 options::OPT_mbig_endian)) 1614 isBigEndian = !A->getOption().matches(options::OPT_mlittle_endian); 1615 addMultilibFlag(isBigEndian, "EB", Flags); 1616 1617 auto HardFloat = makeMultilib("/hard-fp").flag("+hard-fp"); 1618 auto SoftFpFloat = makeMultilib("/soft-fp").flag("+soft-fp"); 1619 auto SoftFloat = makeMultilib("").flag("+soft"); 1620 auto Arch801 = makeMultilib("/ck801").flag("+march=ck801"); 1621 auto Arch802 = makeMultilib("/ck802").flag("+march=ck802"); 1622 auto Arch803 = makeMultilib("/ck803").flag("+march=ck803"); 1623 // CK804 use the same library as CK803 1624 auto Arch804 = makeMultilib("/ck803").flag("+march=ck804"); 1625 auto Arch805 = makeMultilib("/ck805").flag("+march=ck805"); 1626 auto Arch807 = makeMultilib("/ck807").flag("+march=ck807"); 1627 auto Arch810 = makeMultilib("").flag("+march=ck810"); 1628 auto Arch810v = makeMultilib("/ck810v").flag("+march=ck810v"); 1629 auto Arch860 = makeMultilib("/ck860").flag("+march=ck860"); 1630 auto Arch860v = makeMultilib("/ck860v").flag("+march=ck860v"); 1631 auto BigEndian = makeMultilib("/big").flag("+EB"); 1632 1633 MultilibSet CSKYMultilibs = 1634 MultilibSet() 1635 .Maybe(BigEndian) 1636 .Either({Arch801, Arch802, Arch803, Arch804, Arch805, Arch807, 1637 Arch810, Arch810v, Arch860, Arch860v}) 1638 .Either(HardFloat, SoftFpFloat, SoftFloat) 1639 .FilterOut(NonExistent); 1640 1641 if (CSKYMultilibs.select(Flags, Result.SelectedMultilib)) 1642 Result.Multilibs = CSKYMultilibs; 1643 } 1644 1645 static void findRISCVBareMetalMultilibs(const Driver &D, 1646 const llvm::Triple &TargetTriple, 1647 StringRef Path, const ArgList &Args, 1648 DetectedMultilibs &Result) { 1649 FilterNonExistent NonExistent(Path, "/crtbegin.o", D.getVFS()); 1650 struct RiscvMultilib { 1651 StringRef march; 1652 StringRef mabi; 1653 }; 1654 // currently only support the set of multilibs like riscv-gnu-toolchain does. 1655 // TODO: support MULTILIB_REUSE 1656 constexpr RiscvMultilib RISCVMultilibSet[] = { 1657 {"rv32i", "ilp32"}, {"rv32im", "ilp32"}, {"rv32iac", "ilp32"}, 1658 {"rv32imac", "ilp32"}, {"rv32imafc", "ilp32f"}, {"rv64imac", "lp64"}, 1659 {"rv64imafdc", "lp64d"}}; 1660 1661 std::vector<Multilib> Ms; 1662 for (auto Element : RISCVMultilibSet) { 1663 // multilib path rule is ${march}/${mabi} 1664 Ms.emplace_back( 1665 makeMultilib((Twine(Element.march) + "/" + Twine(Element.mabi)).str()) 1666 .flag(Twine("+march=", Element.march).str()) 1667 .flag(Twine("+mabi=", Element.mabi).str())); 1668 } 1669 MultilibSet RISCVMultilibs = 1670 MultilibSet() 1671 .Either(ArrayRef<Multilib>(Ms)) 1672 .FilterOut(NonExistent) 1673 .setFilePathsCallback([](const Multilib &M) { 1674 return std::vector<std::string>( 1675 {M.gccSuffix(), 1676 "/../../../../riscv64-unknown-elf/lib" + M.gccSuffix(), 1677 "/../../../../riscv32-unknown-elf/lib" + M.gccSuffix()}); 1678 }); 1679 1680 1681 Multilib::flags_list Flags; 1682 llvm::StringSet<> Added_ABIs; 1683 StringRef ABIName = tools::riscv::getRISCVABI(Args, TargetTriple); 1684 StringRef MArch = tools::riscv::getRISCVArch(Args, TargetTriple); 1685 for (auto Element : RISCVMultilibSet) { 1686 addMultilibFlag(MArch == Element.march, 1687 Twine("march=", Element.march).str().c_str(), Flags); 1688 if (!Added_ABIs.count(Element.mabi)) { 1689 Added_ABIs.insert(Element.mabi); 1690 addMultilibFlag(ABIName == Element.mabi, 1691 Twine("mabi=", Element.mabi).str().c_str(), Flags); 1692 } 1693 } 1694 1695 if (RISCVMultilibs.select(Flags, Result.SelectedMultilib)) 1696 Result.Multilibs = RISCVMultilibs; 1697 } 1698 1699 static void findRISCVMultilibs(const Driver &D, 1700 const llvm::Triple &TargetTriple, StringRef Path, 1701 const ArgList &Args, DetectedMultilibs &Result) { 1702 if (TargetTriple.getOS() == llvm::Triple::UnknownOS) 1703 return findRISCVBareMetalMultilibs(D, TargetTriple, Path, Args, Result); 1704 1705 FilterNonExistent NonExistent(Path, "/crtbegin.o", D.getVFS()); 1706 Multilib Ilp32 = makeMultilib("lib32/ilp32").flag("+m32").flag("+mabi=ilp32"); 1707 Multilib Ilp32f = 1708 makeMultilib("lib32/ilp32f").flag("+m32").flag("+mabi=ilp32f"); 1709 Multilib Ilp32d = 1710 makeMultilib("lib32/ilp32d").flag("+m32").flag("+mabi=ilp32d"); 1711 Multilib Lp64 = makeMultilib("lib64/lp64").flag("+m64").flag("+mabi=lp64"); 1712 Multilib Lp64f = makeMultilib("lib64/lp64f").flag("+m64").flag("+mabi=lp64f"); 1713 Multilib Lp64d = makeMultilib("lib64/lp64d").flag("+m64").flag("+mabi=lp64d"); 1714 MultilibSet RISCVMultilibs = 1715 MultilibSet() 1716 .Either({Ilp32, Ilp32f, Ilp32d, Lp64, Lp64f, Lp64d}) 1717 .FilterOut(NonExistent); 1718 1719 Multilib::flags_list Flags; 1720 bool IsRV64 = TargetTriple.getArch() == llvm::Triple::riscv64; 1721 StringRef ABIName = tools::riscv::getRISCVABI(Args, TargetTriple); 1722 1723 addMultilibFlag(!IsRV64, "m32", Flags); 1724 addMultilibFlag(IsRV64, "m64", Flags); 1725 addMultilibFlag(ABIName == "ilp32", "mabi=ilp32", Flags); 1726 addMultilibFlag(ABIName == "ilp32f", "mabi=ilp32f", Flags); 1727 addMultilibFlag(ABIName == "ilp32d", "mabi=ilp32d", Flags); 1728 addMultilibFlag(ABIName == "lp64", "mabi=lp64", Flags); 1729 addMultilibFlag(ABIName == "lp64f", "mabi=lp64f", Flags); 1730 addMultilibFlag(ABIName == "lp64d", "mabi=lp64d", Flags); 1731 1732 if (RISCVMultilibs.select(Flags, Result.SelectedMultilib)) 1733 Result.Multilibs = RISCVMultilibs; 1734 } 1735 1736 static bool findBiarchMultilibs(const Driver &D, 1737 const llvm::Triple &TargetTriple, 1738 StringRef Path, const ArgList &Args, 1739 bool NeedsBiarchSuffix, 1740 DetectedMultilibs &Result) { 1741 Multilib Default; 1742 1743 // Some versions of SUSE and Fedora on ppc64 put 32-bit libs 1744 // in what would normally be GCCInstallPath and put the 64-bit 1745 // libs in a subdirectory named 64. The simple logic we follow is that 1746 // *if* there is a subdirectory of the right name with crtbegin.o in it, 1747 // we use that. If not, and if not a biarch triple alias, we look for 1748 // crtbegin.o without the subdirectory. 1749 1750 StringRef Suff64 = "/64"; 1751 // Solaris uses platform-specific suffixes instead of /64. 1752 if (TargetTriple.getOS() == llvm::Triple::Solaris) { 1753 switch (TargetTriple.getArch()) { 1754 case llvm::Triple::x86: 1755 case llvm::Triple::x86_64: 1756 Suff64 = "/amd64"; 1757 break; 1758 case llvm::Triple::sparc: 1759 case llvm::Triple::sparcv9: 1760 Suff64 = "/sparcv9"; 1761 break; 1762 default: 1763 break; 1764 } 1765 } 1766 1767 Multilib Alt64 = Multilib() 1768 .gccSuffix(Suff64) 1769 .includeSuffix(Suff64) 1770 .flag("-m32") 1771 .flag("+m64") 1772 .flag("-mx32"); 1773 Multilib Alt32 = Multilib() 1774 .gccSuffix("/32") 1775 .includeSuffix("/32") 1776 .flag("+m32") 1777 .flag("-m64") 1778 .flag("-mx32"); 1779 Multilib Altx32 = Multilib() 1780 .gccSuffix("/x32") 1781 .includeSuffix("/x32") 1782 .flag("-m32") 1783 .flag("-m64") 1784 .flag("+mx32"); 1785 1786 // GCC toolchain for IAMCU doesn't have crtbegin.o, so look for libgcc.a. 1787 FilterNonExistent NonExistent( 1788 Path, TargetTriple.isOSIAMCU() ? "/libgcc.a" : "/crtbegin.o", D.getVFS()); 1789 1790 // Determine default multilib from: 32, 64, x32 1791 // Also handle cases such as 64 on 32, 32 on 64, etc. 1792 enum { UNKNOWN, WANT32, WANT64, WANTX32 } Want = UNKNOWN; 1793 const bool IsX32 = TargetTriple.isX32(); 1794 if (TargetTriple.isArch32Bit() && !NonExistent(Alt32)) 1795 Want = WANT64; 1796 else if (TargetTriple.isArch64Bit() && IsX32 && !NonExistent(Altx32)) 1797 Want = WANT64; 1798 else if (TargetTriple.isArch64Bit() && !IsX32 && !NonExistent(Alt64)) 1799 Want = WANT32; 1800 else { 1801 if (TargetTriple.isArch32Bit()) 1802 Want = NeedsBiarchSuffix ? WANT64 : WANT32; 1803 else if (IsX32) 1804 Want = NeedsBiarchSuffix ? WANT64 : WANTX32; 1805 else 1806 Want = NeedsBiarchSuffix ? WANT32 : WANT64; 1807 } 1808 1809 if (Want == WANT32) 1810 Default.flag("+m32").flag("-m64").flag("-mx32"); 1811 else if (Want == WANT64) 1812 Default.flag("-m32").flag("+m64").flag("-mx32"); 1813 else if (Want == WANTX32) 1814 Default.flag("-m32").flag("-m64").flag("+mx32"); 1815 else 1816 return false; 1817 1818 Result.Multilibs.push_back(Default); 1819 Result.Multilibs.push_back(Alt64); 1820 Result.Multilibs.push_back(Alt32); 1821 Result.Multilibs.push_back(Altx32); 1822 1823 Result.Multilibs.FilterOut(NonExistent); 1824 1825 Multilib::flags_list Flags; 1826 addMultilibFlag(TargetTriple.isArch64Bit() && !IsX32, "m64", Flags); 1827 addMultilibFlag(TargetTriple.isArch32Bit(), "m32", Flags); 1828 addMultilibFlag(TargetTriple.isArch64Bit() && IsX32, "mx32", Flags); 1829 1830 if (!Result.Multilibs.select(Flags, Result.SelectedMultilib)) 1831 return false; 1832 1833 if (Result.SelectedMultilib == Alt64 || Result.SelectedMultilib == Alt32 || 1834 Result.SelectedMultilib == Altx32) 1835 Result.BiarchSibling = Default; 1836 1837 return true; 1838 } 1839 1840 /// Generic_GCC - A tool chain using the 'gcc' command to perform 1841 /// all subcommands; this relies on gcc translating the majority of 1842 /// command line options. 1843 1844 /// Less-than for GCCVersion, implementing a Strict Weak Ordering. 1845 bool Generic_GCC::GCCVersion::isOlderThan(int RHSMajor, int RHSMinor, 1846 int RHSPatch, 1847 StringRef RHSPatchSuffix) const { 1848 if (Major != RHSMajor) 1849 return Major < RHSMajor; 1850 if (Minor != RHSMinor) 1851 return Minor < RHSMinor; 1852 if (Patch != RHSPatch) { 1853 // Note that versions without a specified patch sort higher than those with 1854 // a patch. 1855 if (RHSPatch == -1) 1856 return true; 1857 if (Patch == -1) 1858 return false; 1859 1860 // Otherwise just sort on the patch itself. 1861 return Patch < RHSPatch; 1862 } 1863 if (PatchSuffix != RHSPatchSuffix) { 1864 // Sort empty suffixes higher. 1865 if (RHSPatchSuffix.empty()) 1866 return true; 1867 if (PatchSuffix.empty()) 1868 return false; 1869 1870 // Provide a lexicographic sort to make this a total ordering. 1871 return PatchSuffix < RHSPatchSuffix; 1872 } 1873 1874 // The versions are equal. 1875 return false; 1876 } 1877 1878 /// Parse a GCCVersion object out of a string of text. 1879 /// 1880 /// This is the primary means of forming GCCVersion objects. 1881 /*static*/ 1882 Generic_GCC::GCCVersion Generic_GCC::GCCVersion::Parse(StringRef VersionText) { 1883 const GCCVersion BadVersion = {VersionText.str(), -1, -1, -1, "", "", ""}; 1884 std::pair<StringRef, StringRef> First = VersionText.split('.'); 1885 std::pair<StringRef, StringRef> Second = First.second.split('.'); 1886 1887 GCCVersion GoodVersion = {VersionText.str(), -1, -1, -1, "", "", ""}; 1888 if (First.first.getAsInteger(10, GoodVersion.Major) || GoodVersion.Major < 0) 1889 return BadVersion; 1890 GoodVersion.MajorStr = First.first.str(); 1891 if (First.second.empty()) 1892 return GoodVersion; 1893 StringRef MinorStr = Second.first; 1894 if (Second.second.empty()) { 1895 if (size_t EndNumber = MinorStr.find_first_not_of("0123456789")) { 1896 GoodVersion.PatchSuffix = std::string(MinorStr.substr(EndNumber)); 1897 MinorStr = MinorStr.slice(0, EndNumber); 1898 } 1899 } 1900 if (MinorStr.getAsInteger(10, GoodVersion.Minor) || GoodVersion.Minor < 0) 1901 return BadVersion; 1902 GoodVersion.MinorStr = MinorStr.str(); 1903 1904 // First look for a number prefix and parse that if present. Otherwise just 1905 // stash the entire patch string in the suffix, and leave the number 1906 // unspecified. This covers versions strings such as: 1907 // 5 (handled above) 1908 // 4.4 1909 // 4.4-patched 1910 // 4.4.0 1911 // 4.4.x 1912 // 4.4.2-rc4 1913 // 4.4.x-patched 1914 // And retains any patch number it finds. 1915 StringRef PatchText = Second.second; 1916 if (!PatchText.empty()) { 1917 if (size_t EndNumber = PatchText.find_first_not_of("0123456789")) { 1918 // Try to parse the number and any suffix. 1919 if (PatchText.slice(0, EndNumber).getAsInteger(10, GoodVersion.Patch) || 1920 GoodVersion.Patch < 0) 1921 return BadVersion; 1922 GoodVersion.PatchSuffix = std::string(PatchText.substr(EndNumber)); 1923 } 1924 } 1925 1926 return GoodVersion; 1927 } 1928 1929 static llvm::StringRef getGCCToolchainDir(const ArgList &Args, 1930 llvm::StringRef SysRoot) { 1931 const Arg *A = Args.getLastArg(clang::driver::options::OPT_gcc_toolchain); 1932 if (A) 1933 return A->getValue(); 1934 1935 // If we have a SysRoot, ignore GCC_INSTALL_PREFIX. 1936 // GCC_INSTALL_PREFIX specifies the gcc installation for the default 1937 // sysroot and is likely not valid with a different sysroot. 1938 if (!SysRoot.empty()) 1939 return ""; 1940 1941 return GCC_INSTALL_PREFIX; 1942 } 1943 1944 /// Initialize a GCCInstallationDetector from the driver. 1945 /// 1946 /// This performs all of the autodetection and sets up the various paths. 1947 /// Once constructed, a GCCInstallationDetector is essentially immutable. 1948 /// 1949 /// FIXME: We shouldn't need an explicit TargetTriple parameter here, and 1950 /// should instead pull the target out of the driver. This is currently 1951 /// necessary because the driver doesn't store the final version of the target 1952 /// triple. 1953 void Generic_GCC::GCCInstallationDetector::init( 1954 const llvm::Triple &TargetTriple, const ArgList &Args, 1955 ArrayRef<std::string> ExtraTripleAliases) { 1956 llvm::Triple BiarchVariantTriple = TargetTriple.isArch32Bit() 1957 ? TargetTriple.get64BitArchVariant() 1958 : TargetTriple.get32BitArchVariant(); 1959 // The library directories which may contain GCC installations. 1960 SmallVector<StringRef, 4> CandidateLibDirs, CandidateBiarchLibDirs; 1961 // The compatible GCC triples for this particular architecture. 1962 SmallVector<StringRef, 16> CandidateTripleAliases; 1963 SmallVector<StringRef, 16> CandidateBiarchTripleAliases; 1964 CollectLibDirsAndTriples(TargetTriple, BiarchVariantTriple, CandidateLibDirs, 1965 CandidateTripleAliases, CandidateBiarchLibDirs, 1966 CandidateBiarchTripleAliases); 1967 1968 // Compute the set of prefixes for our search. 1969 SmallVector<std::string, 8> Prefixes; 1970 StringRef GCCToolchainDir = getGCCToolchainDir(Args, D.SysRoot); 1971 if (GCCToolchainDir != "") { 1972 if (GCCToolchainDir.back() == '/') 1973 GCCToolchainDir = GCCToolchainDir.drop_back(); // remove the / 1974 1975 Prefixes.push_back(std::string(GCCToolchainDir)); 1976 } else { 1977 // If we have a SysRoot, try that first. 1978 if (!D.SysRoot.empty()) { 1979 Prefixes.push_back(D.SysRoot); 1980 AddDefaultGCCPrefixes(TargetTriple, Prefixes, D.SysRoot); 1981 } 1982 1983 // Then look for gcc installed alongside clang. 1984 Prefixes.push_back(D.InstalledDir + "/.."); 1985 1986 // Next, look for prefix(es) that correspond to distribution-supplied gcc 1987 // installations. 1988 if (D.SysRoot.empty()) { 1989 // Typically /usr. 1990 AddDefaultGCCPrefixes(TargetTriple, Prefixes, D.SysRoot); 1991 } 1992 1993 // Try to respect gcc-config on Gentoo if --gcc-toolchain is not provided. 1994 // This avoids accidentally enforcing the system GCC version when using a 1995 // custom toolchain. 1996 SmallVector<StringRef, 16> GentooTestTriples; 1997 // Try to match an exact triple as target triple first. 1998 // e.g. crossdev -S x86_64-gentoo-linux-gnu will install gcc libs for 1999 // x86_64-gentoo-linux-gnu. But "clang -target x86_64-gentoo-linux-gnu" 2000 // may pick the libraries for x86_64-pc-linux-gnu even when exact matching 2001 // triple x86_64-gentoo-linux-gnu is present. 2002 GentooTestTriples.push_back(TargetTriple.str()); 2003 // Check rest of triples. 2004 GentooTestTriples.append(ExtraTripleAliases.begin(), 2005 ExtraTripleAliases.end()); 2006 GentooTestTriples.append(CandidateTripleAliases.begin(), 2007 CandidateTripleAliases.end()); 2008 if (ScanGentooConfigs(TargetTriple, Args, GentooTestTriples, 2009 CandidateBiarchTripleAliases)) 2010 return; 2011 } 2012 2013 // Loop over the various components which exist and select the best GCC 2014 // installation available. GCC installs are ranked by version number. 2015 const GCCVersion VersionZero = GCCVersion::Parse("0.0.0"); 2016 Version = VersionZero; 2017 for (const std::string &Prefix : Prefixes) { 2018 auto &VFS = D.getVFS(); 2019 if (!VFS.exists(Prefix)) 2020 continue; 2021 for (StringRef Suffix : CandidateLibDirs) { 2022 const std::string LibDir = Prefix + Suffix.str(); 2023 if (!VFS.exists(LibDir)) 2024 continue; 2025 // Maybe filter out <libdir>/gcc and <libdir>/gcc-cross. 2026 bool GCCDirExists = VFS.exists(LibDir + "/gcc"); 2027 bool GCCCrossDirExists = VFS.exists(LibDir + "/gcc-cross"); 2028 // Try to match the exact target triple first. 2029 ScanLibDirForGCCTriple(TargetTriple, Args, LibDir, TargetTriple.str(), 2030 false, GCCDirExists, GCCCrossDirExists); 2031 // Try rest of possible triples. 2032 for (StringRef Candidate : ExtraTripleAliases) // Try these first. 2033 ScanLibDirForGCCTriple(TargetTriple, Args, LibDir, Candidate, false, 2034 GCCDirExists, GCCCrossDirExists); 2035 for (StringRef Candidate : CandidateTripleAliases) 2036 ScanLibDirForGCCTriple(TargetTriple, Args, LibDir, Candidate, false, 2037 GCCDirExists, GCCCrossDirExists); 2038 } 2039 for (StringRef Suffix : CandidateBiarchLibDirs) { 2040 const std::string LibDir = Prefix + Suffix.str(); 2041 if (!VFS.exists(LibDir)) 2042 continue; 2043 bool GCCDirExists = VFS.exists(LibDir + "/gcc"); 2044 bool GCCCrossDirExists = VFS.exists(LibDir + "/gcc-cross"); 2045 for (StringRef Candidate : CandidateBiarchTripleAliases) 2046 ScanLibDirForGCCTriple(TargetTriple, Args, LibDir, Candidate, true, 2047 GCCDirExists, GCCCrossDirExists); 2048 } 2049 2050 // Skip other prefixes once a GCC installation is found. 2051 if (Version > VersionZero) 2052 break; 2053 } 2054 } 2055 2056 void Generic_GCC::GCCInstallationDetector::print(raw_ostream &OS) const { 2057 for (const auto &InstallPath : CandidateGCCInstallPaths) 2058 OS << "Found candidate GCC installation: " << InstallPath << "\n"; 2059 2060 if (!GCCInstallPath.empty()) 2061 OS << "Selected GCC installation: " << GCCInstallPath << "\n"; 2062 2063 for (const auto &Multilib : Multilibs) 2064 OS << "Candidate multilib: " << Multilib << "\n"; 2065 2066 if (Multilibs.size() != 0 || !SelectedMultilib.isDefault()) 2067 OS << "Selected multilib: " << SelectedMultilib << "\n"; 2068 } 2069 2070 bool Generic_GCC::GCCInstallationDetector::getBiarchSibling(Multilib &M) const { 2071 if (BiarchSibling.hasValue()) { 2072 M = BiarchSibling.getValue(); 2073 return true; 2074 } 2075 return false; 2076 } 2077 2078 void Generic_GCC::GCCInstallationDetector::AddDefaultGCCPrefixes( 2079 const llvm::Triple &TargetTriple, SmallVectorImpl<std::string> &Prefixes, 2080 StringRef SysRoot) { 2081 if (TargetTriple.getOS() == llvm::Triple::Solaris) { 2082 // Solaris is a special case. 2083 // The GCC installation is under 2084 // /usr/gcc/<major>.<minor>/lib/gcc/<triple>/<major>.<minor>.<patch>/ 2085 // so we need to find those /usr/gcc/*/lib/gcc libdirs and go with 2086 // /usr/gcc/<version> as a prefix. 2087 2088 std::string PrefixDir = SysRoot.str() + "/usr/gcc"; 2089 std::error_code EC; 2090 for (llvm::vfs::directory_iterator LI = D.getVFS().dir_begin(PrefixDir, EC), 2091 LE; 2092 !EC && LI != LE; LI = LI.increment(EC)) { 2093 StringRef VersionText = llvm::sys::path::filename(LI->path()); 2094 GCCVersion CandidateVersion = GCCVersion::Parse(VersionText); 2095 2096 // Filter out obviously bad entries. 2097 if (CandidateVersion.Major == -1 || CandidateVersion.isOlderThan(4, 1, 1)) 2098 continue; 2099 2100 std::string CandidatePrefix = PrefixDir + "/" + VersionText.str(); 2101 std::string CandidateLibPath = CandidatePrefix + "/lib/gcc"; 2102 if (!D.getVFS().exists(CandidateLibPath)) 2103 continue; 2104 2105 Prefixes.push_back(CandidatePrefix); 2106 } 2107 return; 2108 } 2109 2110 // Non-Solaris is much simpler - most systems just go with "/usr". 2111 if (SysRoot.empty() && TargetTriple.getOS() == llvm::Triple::Linux) { 2112 // Yet, still look for RHEL/CentOS devtoolsets and gcc-toolsets. 2113 Prefixes.push_back("/opt/rh/gcc-toolset-10/root/usr"); 2114 Prefixes.push_back("/opt/rh/devtoolset-10/root/usr"); 2115 Prefixes.push_back("/opt/rh/devtoolset-9/root/usr"); 2116 Prefixes.push_back("/opt/rh/devtoolset-8/root/usr"); 2117 Prefixes.push_back("/opt/rh/devtoolset-7/root/usr"); 2118 Prefixes.push_back("/opt/rh/devtoolset-6/root/usr"); 2119 Prefixes.push_back("/opt/rh/devtoolset-4/root/usr"); 2120 Prefixes.push_back("/opt/rh/devtoolset-3/root/usr"); 2121 Prefixes.push_back("/opt/rh/devtoolset-2/root/usr"); 2122 } 2123 Prefixes.push_back(SysRoot.str() + "/usr"); 2124 } 2125 2126 /*static*/ void Generic_GCC::GCCInstallationDetector::CollectLibDirsAndTriples( 2127 const llvm::Triple &TargetTriple, const llvm::Triple &BiarchTriple, 2128 SmallVectorImpl<StringRef> &LibDirs, 2129 SmallVectorImpl<StringRef> &TripleAliases, 2130 SmallVectorImpl<StringRef> &BiarchLibDirs, 2131 SmallVectorImpl<StringRef> &BiarchTripleAliases) { 2132 // Declare a bunch of static data sets that we'll select between below. These 2133 // are specifically designed to always refer to string literals to avoid any 2134 // lifetime or initialization issues. 2135 // 2136 // The *Triples variables hard code some triples so that, for example, 2137 // --target=aarch64 (incomplete triple) can detect lib/aarch64-linux-gnu. 2138 // They are not needed when the user has correct LLVM_DEFAULT_TARGET_TRIPLE 2139 // and always uses the full --target (e.g. --target=aarch64-linux-gnu). The 2140 // lists should shrink over time. Please don't add more elements to *Triples. 2141 static const char *const AArch64LibDirs[] = {"/lib64", "/lib"}; 2142 static const char *const AArch64Triples[] = { 2143 "aarch64-none-linux-gnu", "aarch64-linux-gnu", "aarch64-redhat-linux", 2144 "aarch64-suse-linux"}; 2145 static const char *const AArch64beLibDirs[] = {"/lib"}; 2146 static const char *const AArch64beTriples[] = {"aarch64_be-none-linux-gnu", 2147 "aarch64_be-linux-gnu"}; 2148 2149 static const char *const ARMLibDirs[] = {"/lib"}; 2150 static const char *const ARMTriples[] = {"arm-linux-gnueabi"}; 2151 static const char *const ARMHFTriples[] = {"arm-linux-gnueabihf", 2152 "armv7hl-redhat-linux-gnueabi", 2153 "armv6hl-suse-linux-gnueabi", 2154 "armv7hl-suse-linux-gnueabi"}; 2155 static const char *const ARMebLibDirs[] = {"/lib"}; 2156 static const char *const ARMebTriples[] = {"armeb-linux-gnueabi"}; 2157 static const char *const ARMebHFTriples[] = { 2158 "armeb-linux-gnueabihf", "armebv7hl-redhat-linux-gnueabi"}; 2159 2160 static const char *const AVRLibDirs[] = {"/lib"}; 2161 static const char *const AVRTriples[] = {"avr"}; 2162 2163 static const char *const CSKYLibDirs[] = {"/lib"}; 2164 static const char *const CSKYTriples[] = { 2165 "csky-linux-gnuabiv2", "csky-linux-uclibcabiv2", "csky-elf-noneabiv2"}; 2166 2167 static const char *const X86_64LibDirs[] = {"/lib64", "/lib"}; 2168 static const char *const X86_64Triples[] = { 2169 "x86_64-linux-gnu", "x86_64-unknown-linux-gnu", 2170 "x86_64-pc-linux-gnu", "x86_64-redhat-linux6E", 2171 "x86_64-redhat-linux", "x86_64-suse-linux", 2172 "x86_64-manbo-linux-gnu", "x86_64-linux-gnu", 2173 "x86_64-slackware-linux", "x86_64-unknown-linux", 2174 "x86_64-amazon-linux"}; 2175 static const char *const X32Triples[] = {"x86_64-linux-gnux32", 2176 "x86_64-pc-linux-gnux32"}; 2177 static const char *const X32LibDirs[] = {"/libx32", "/lib"}; 2178 static const char *const X86LibDirs[] = {"/lib32", "/lib"}; 2179 static const char *const X86Triples[] = { 2180 "i586-linux-gnu", "i686-linux-gnu", "i686-pc-linux-gnu", 2181 "i386-redhat-linux6E", "i686-redhat-linux", "i386-redhat-linux", 2182 "i586-suse-linux", "i686-montavista-linux", "i686-gnu", 2183 }; 2184 2185 static const char *const M68kLibDirs[] = {"/lib"}; 2186 static const char *const M68kTriples[] = { 2187 "m68k-linux-gnu", "m68k-unknown-linux-gnu", "m68k-suse-linux"}; 2188 2189 static const char *const MIPSLibDirs[] = {"/libo32", "/lib"}; 2190 static const char *const MIPSTriples[] = { 2191 "mips-linux-gnu", "mips-mti-linux", "mips-mti-linux-gnu", 2192 "mips-img-linux-gnu", "mipsisa32r6-linux-gnu"}; 2193 static const char *const MIPSELLibDirs[] = {"/libo32", "/lib"}; 2194 static const char *const MIPSELTriples[] = { 2195 "mipsel-linux-gnu", "mips-img-linux-gnu", "mipsisa32r6el-linux-gnu"}; 2196 2197 static const char *const MIPS64LibDirs[] = {"/lib64", "/lib"}; 2198 static const char *const MIPS64Triples[] = { 2199 "mips64-linux-gnu", "mips-mti-linux-gnu", 2200 "mips-img-linux-gnu", "mips64-linux-gnuabi64", 2201 "mipsisa64r6-linux-gnu", "mipsisa64r6-linux-gnuabi64"}; 2202 static const char *const MIPS64ELLibDirs[] = {"/lib64", "/lib"}; 2203 static const char *const MIPS64ELTriples[] = { 2204 "mips64el-linux-gnu", "mips-mti-linux-gnu", 2205 "mips-img-linux-gnu", "mips64el-linux-gnuabi64", 2206 "mipsisa64r6el-linux-gnu", "mipsisa64r6el-linux-gnuabi64"}; 2207 2208 static const char *const MIPSN32LibDirs[] = {"/lib32"}; 2209 static const char *const MIPSN32Triples[] = {"mips64-linux-gnuabin32", 2210 "mipsisa64r6-linux-gnuabin32"}; 2211 static const char *const MIPSN32ELLibDirs[] = {"/lib32"}; 2212 static const char *const MIPSN32ELTriples[] = { 2213 "mips64el-linux-gnuabin32", "mipsisa64r6el-linux-gnuabin32"}; 2214 2215 static const char *const MSP430LibDirs[] = {"/lib"}; 2216 static const char *const MSP430Triples[] = {"msp430-elf"}; 2217 2218 static const char *const PPCLibDirs[] = {"/lib32", "/lib"}; 2219 static const char *const PPCTriples[] = { 2220 "powerpc-linux-gnu", "powerpc-unknown-linux-gnu", "powerpc-linux-gnuspe", 2221 // On 32-bit PowerPC systems running SUSE Linux, gcc is configured as a 2222 // 64-bit compiler which defaults to "-m32", hence "powerpc64-suse-linux". 2223 "powerpc64-suse-linux", "powerpc-montavista-linuxspe"}; 2224 static const char *const PPCLELibDirs[] = {"/lib32", "/lib"}; 2225 static const char *const PPCLETriples[] = {"powerpcle-linux-gnu", 2226 "powerpcle-unknown-linux-gnu", 2227 "powerpcle-linux-musl"}; 2228 2229 static const char *const PPC64LibDirs[] = {"/lib64", "/lib"}; 2230 static const char *const PPC64Triples[] = { 2231 "powerpc64-linux-gnu", "powerpc64-unknown-linux-gnu", 2232 "powerpc64-suse-linux", "ppc64-redhat-linux"}; 2233 static const char *const PPC64LELibDirs[] = {"/lib64", "/lib"}; 2234 static const char *const PPC64LETriples[] = { 2235 "powerpc64le-linux-gnu", "powerpc64le-unknown-linux-gnu", 2236 "powerpc64le-none-linux-gnu", "powerpc64le-suse-linux", 2237 "ppc64le-redhat-linux"}; 2238 2239 static const char *const RISCV32LibDirs[] = {"/lib32", "/lib"}; 2240 static const char *const RISCV32Triples[] = {"riscv32-unknown-linux-gnu", 2241 "riscv32-linux-gnu", 2242 "riscv32-unknown-elf"}; 2243 static const char *const RISCV64LibDirs[] = {"/lib64", "/lib"}; 2244 static const char *const RISCV64Triples[] = {"riscv64-unknown-linux-gnu", 2245 "riscv64-linux-gnu", 2246 "riscv64-unknown-elf"}; 2247 2248 static const char *const SPARCv8LibDirs[] = {"/lib32", "/lib"}; 2249 static const char *const SPARCv8Triples[] = {"sparc-linux-gnu", 2250 "sparcv8-linux-gnu"}; 2251 static const char *const SPARCv9LibDirs[] = {"/lib64", "/lib"}; 2252 static const char *const SPARCv9Triples[] = {"sparc64-linux-gnu", 2253 "sparcv9-linux-gnu"}; 2254 2255 static const char *const SystemZLibDirs[] = {"/lib64", "/lib"}; 2256 static const char *const SystemZTriples[] = { 2257 "s390x-linux-gnu", "s390x-unknown-linux-gnu", "s390x-ibm-linux-gnu", 2258 "s390x-suse-linux", "s390x-redhat-linux"}; 2259 2260 2261 using std::begin; 2262 using std::end; 2263 2264 if (TargetTriple.getOS() == llvm::Triple::Solaris) { 2265 static const char *const SolarisLibDirs[] = {"/lib"}; 2266 static const char *const SolarisSparcV8Triples[] = { 2267 "sparc-sun-solaris2.11", "sparc-sun-solaris2.12"}; 2268 static const char *const SolarisSparcV9Triples[] = { 2269 "sparcv9-sun-solaris2.11", "sparcv9-sun-solaris2.12"}; 2270 static const char *const SolarisX86Triples[] = {"i386-pc-solaris2.11", 2271 "i386-pc-solaris2.12"}; 2272 static const char *const SolarisX86_64Triples[] = {"x86_64-pc-solaris2.11", 2273 "x86_64-pc-solaris2.12"}; 2274 LibDirs.append(begin(SolarisLibDirs), end(SolarisLibDirs)); 2275 BiarchLibDirs.append(begin(SolarisLibDirs), end(SolarisLibDirs)); 2276 switch (TargetTriple.getArch()) { 2277 case llvm::Triple::x86: 2278 TripleAliases.append(begin(SolarisX86Triples), end(SolarisX86Triples)); 2279 BiarchTripleAliases.append(begin(SolarisX86_64Triples), 2280 end(SolarisX86_64Triples)); 2281 break; 2282 case llvm::Triple::x86_64: 2283 TripleAliases.append(begin(SolarisX86_64Triples), 2284 end(SolarisX86_64Triples)); 2285 BiarchTripleAliases.append(begin(SolarisX86Triples), 2286 end(SolarisX86Triples)); 2287 break; 2288 case llvm::Triple::sparc: 2289 TripleAliases.append(begin(SolarisSparcV8Triples), 2290 end(SolarisSparcV8Triples)); 2291 BiarchTripleAliases.append(begin(SolarisSparcV9Triples), 2292 end(SolarisSparcV9Triples)); 2293 break; 2294 case llvm::Triple::sparcv9: 2295 TripleAliases.append(begin(SolarisSparcV9Triples), 2296 end(SolarisSparcV9Triples)); 2297 BiarchTripleAliases.append(begin(SolarisSparcV8Triples), 2298 end(SolarisSparcV8Triples)); 2299 break; 2300 default: 2301 break; 2302 } 2303 return; 2304 } 2305 2306 // Android targets should not use GNU/Linux tools or libraries. 2307 if (TargetTriple.isAndroid()) { 2308 static const char *const AArch64AndroidTriples[] = { 2309 "aarch64-linux-android"}; 2310 static const char *const ARMAndroidTriples[] = {"arm-linux-androideabi"}; 2311 static const char *const MIPSELAndroidTriples[] = {"mipsel-linux-android"}; 2312 static const char *const MIPS64ELAndroidTriples[] = { 2313 "mips64el-linux-android"}; 2314 static const char *const X86AndroidTriples[] = {"i686-linux-android"}; 2315 static const char *const X86_64AndroidTriples[] = {"x86_64-linux-android"}; 2316 2317 switch (TargetTriple.getArch()) { 2318 case llvm::Triple::aarch64: 2319 LibDirs.append(begin(AArch64LibDirs), end(AArch64LibDirs)); 2320 TripleAliases.append(begin(AArch64AndroidTriples), 2321 end(AArch64AndroidTriples)); 2322 break; 2323 case llvm::Triple::arm: 2324 case llvm::Triple::thumb: 2325 LibDirs.append(begin(ARMLibDirs), end(ARMLibDirs)); 2326 TripleAliases.append(begin(ARMAndroidTriples), end(ARMAndroidTriples)); 2327 break; 2328 case llvm::Triple::mipsel: 2329 LibDirs.append(begin(MIPSELLibDirs), end(MIPSELLibDirs)); 2330 TripleAliases.append(begin(MIPSELAndroidTriples), 2331 end(MIPSELAndroidTriples)); 2332 BiarchLibDirs.append(begin(MIPS64ELLibDirs), end(MIPS64ELLibDirs)); 2333 BiarchTripleAliases.append(begin(MIPS64ELAndroidTriples), 2334 end(MIPS64ELAndroidTriples)); 2335 break; 2336 case llvm::Triple::mips64el: 2337 LibDirs.append(begin(MIPS64ELLibDirs), end(MIPS64ELLibDirs)); 2338 TripleAliases.append(begin(MIPS64ELAndroidTriples), 2339 end(MIPS64ELAndroidTriples)); 2340 BiarchLibDirs.append(begin(MIPSELLibDirs), end(MIPSELLibDirs)); 2341 BiarchTripleAliases.append(begin(MIPSELAndroidTriples), 2342 end(MIPSELAndroidTriples)); 2343 break; 2344 case llvm::Triple::x86_64: 2345 LibDirs.append(begin(X86_64LibDirs), end(X86_64LibDirs)); 2346 TripleAliases.append(begin(X86_64AndroidTriples), 2347 end(X86_64AndroidTriples)); 2348 BiarchLibDirs.append(begin(X86LibDirs), end(X86LibDirs)); 2349 BiarchTripleAliases.append(begin(X86AndroidTriples), 2350 end(X86AndroidTriples)); 2351 break; 2352 case llvm::Triple::x86: 2353 LibDirs.append(begin(X86LibDirs), end(X86LibDirs)); 2354 TripleAliases.append(begin(X86AndroidTriples), end(X86AndroidTriples)); 2355 BiarchLibDirs.append(begin(X86_64LibDirs), end(X86_64LibDirs)); 2356 BiarchTripleAliases.append(begin(X86_64AndroidTriples), 2357 end(X86_64AndroidTriples)); 2358 break; 2359 default: 2360 break; 2361 } 2362 2363 return; 2364 } 2365 2366 switch (TargetTriple.getArch()) { 2367 case llvm::Triple::aarch64: 2368 LibDirs.append(begin(AArch64LibDirs), end(AArch64LibDirs)); 2369 TripleAliases.append(begin(AArch64Triples), end(AArch64Triples)); 2370 BiarchLibDirs.append(begin(AArch64LibDirs), end(AArch64LibDirs)); 2371 BiarchTripleAliases.append(begin(AArch64Triples), end(AArch64Triples)); 2372 break; 2373 case llvm::Triple::aarch64_be: 2374 LibDirs.append(begin(AArch64beLibDirs), end(AArch64beLibDirs)); 2375 TripleAliases.append(begin(AArch64beTriples), end(AArch64beTriples)); 2376 BiarchLibDirs.append(begin(AArch64beLibDirs), end(AArch64beLibDirs)); 2377 BiarchTripleAliases.append(begin(AArch64beTriples), end(AArch64beTriples)); 2378 break; 2379 case llvm::Triple::arm: 2380 case llvm::Triple::thumb: 2381 LibDirs.append(begin(ARMLibDirs), end(ARMLibDirs)); 2382 if (TargetTriple.getEnvironment() == llvm::Triple::GNUEABIHF) { 2383 TripleAliases.append(begin(ARMHFTriples), end(ARMHFTriples)); 2384 } else { 2385 TripleAliases.append(begin(ARMTriples), end(ARMTriples)); 2386 } 2387 break; 2388 case llvm::Triple::armeb: 2389 case llvm::Triple::thumbeb: 2390 LibDirs.append(begin(ARMebLibDirs), end(ARMebLibDirs)); 2391 if (TargetTriple.getEnvironment() == llvm::Triple::GNUEABIHF) { 2392 TripleAliases.append(begin(ARMebHFTriples), end(ARMebHFTriples)); 2393 } else { 2394 TripleAliases.append(begin(ARMebTriples), end(ARMebTriples)); 2395 } 2396 break; 2397 case llvm::Triple::avr: 2398 LibDirs.append(begin(AVRLibDirs), end(AVRLibDirs)); 2399 TripleAliases.append(begin(AVRTriples), end(AVRTriples)); 2400 break; 2401 case llvm::Triple::csky: 2402 LibDirs.append(begin(CSKYLibDirs), end(CSKYLibDirs)); 2403 TripleAliases.append(begin(CSKYTriples), end(CSKYTriples)); 2404 break; 2405 case llvm::Triple::x86_64: 2406 if (TargetTriple.isX32()) { 2407 LibDirs.append(begin(X32LibDirs), end(X32LibDirs)); 2408 TripleAliases.append(begin(X32Triples), end(X32Triples)); 2409 BiarchLibDirs.append(begin(X86_64LibDirs), end(X86_64LibDirs)); 2410 BiarchTripleAliases.append(begin(X86_64Triples), end(X86_64Triples)); 2411 } else { 2412 LibDirs.append(begin(X86_64LibDirs), end(X86_64LibDirs)); 2413 TripleAliases.append(begin(X86_64Triples), end(X86_64Triples)); 2414 BiarchLibDirs.append(begin(X32LibDirs), end(X32LibDirs)); 2415 BiarchTripleAliases.append(begin(X32Triples), end(X32Triples)); 2416 } 2417 BiarchLibDirs.append(begin(X86LibDirs), end(X86LibDirs)); 2418 BiarchTripleAliases.append(begin(X86Triples), end(X86Triples)); 2419 break; 2420 case llvm::Triple::x86: 2421 LibDirs.append(begin(X86LibDirs), end(X86LibDirs)); 2422 // MCU toolchain is 32 bit only and its triple alias is TargetTriple 2423 // itself, which will be appended below. 2424 if (!TargetTriple.isOSIAMCU()) { 2425 TripleAliases.append(begin(X86Triples), end(X86Triples)); 2426 BiarchLibDirs.append(begin(X86_64LibDirs), end(X86_64LibDirs)); 2427 BiarchTripleAliases.append(begin(X86_64Triples), end(X86_64Triples)); 2428 BiarchLibDirs.append(begin(X32LibDirs), end(X32LibDirs)); 2429 BiarchTripleAliases.append(begin(X32Triples), end(X32Triples)); 2430 } 2431 break; 2432 case llvm::Triple::m68k: 2433 LibDirs.append(begin(M68kLibDirs), end(M68kLibDirs)); 2434 TripleAliases.append(begin(M68kTriples), end(M68kTriples)); 2435 break; 2436 case llvm::Triple::mips: 2437 LibDirs.append(begin(MIPSLibDirs), end(MIPSLibDirs)); 2438 TripleAliases.append(begin(MIPSTriples), end(MIPSTriples)); 2439 BiarchLibDirs.append(begin(MIPS64LibDirs), end(MIPS64LibDirs)); 2440 BiarchTripleAliases.append(begin(MIPS64Triples), end(MIPS64Triples)); 2441 BiarchLibDirs.append(begin(MIPSN32LibDirs), end(MIPSN32LibDirs)); 2442 BiarchTripleAliases.append(begin(MIPSN32Triples), end(MIPSN32Triples)); 2443 break; 2444 case llvm::Triple::mipsel: 2445 LibDirs.append(begin(MIPSELLibDirs), end(MIPSELLibDirs)); 2446 TripleAliases.append(begin(MIPSELTriples), end(MIPSELTriples)); 2447 TripleAliases.append(begin(MIPSTriples), end(MIPSTriples)); 2448 BiarchLibDirs.append(begin(MIPS64ELLibDirs), end(MIPS64ELLibDirs)); 2449 BiarchTripleAliases.append(begin(MIPS64ELTriples), end(MIPS64ELTriples)); 2450 BiarchLibDirs.append(begin(MIPSN32ELLibDirs), end(MIPSN32ELLibDirs)); 2451 BiarchTripleAliases.append(begin(MIPSN32ELTriples), end(MIPSN32ELTriples)); 2452 break; 2453 case llvm::Triple::mips64: 2454 LibDirs.append(begin(MIPS64LibDirs), end(MIPS64LibDirs)); 2455 TripleAliases.append(begin(MIPS64Triples), end(MIPS64Triples)); 2456 BiarchLibDirs.append(begin(MIPSLibDirs), end(MIPSLibDirs)); 2457 BiarchTripleAliases.append(begin(MIPSTriples), end(MIPSTriples)); 2458 BiarchLibDirs.append(begin(MIPSN32LibDirs), end(MIPSN32LibDirs)); 2459 BiarchTripleAliases.append(begin(MIPSN32Triples), end(MIPSN32Triples)); 2460 break; 2461 case llvm::Triple::mips64el: 2462 LibDirs.append(begin(MIPS64ELLibDirs), end(MIPS64ELLibDirs)); 2463 TripleAliases.append(begin(MIPS64ELTriples), end(MIPS64ELTriples)); 2464 BiarchLibDirs.append(begin(MIPSELLibDirs), end(MIPSELLibDirs)); 2465 BiarchTripleAliases.append(begin(MIPSELTriples), end(MIPSELTriples)); 2466 BiarchLibDirs.append(begin(MIPSN32ELLibDirs), end(MIPSN32ELLibDirs)); 2467 BiarchTripleAliases.append(begin(MIPSN32ELTriples), end(MIPSN32ELTriples)); 2468 BiarchTripleAliases.append(begin(MIPSTriples), end(MIPSTriples)); 2469 break; 2470 case llvm::Triple::msp430: 2471 LibDirs.append(begin(MSP430LibDirs), end(MSP430LibDirs)); 2472 TripleAliases.append(begin(MSP430Triples), end(MSP430Triples)); 2473 break; 2474 case llvm::Triple::ppc: 2475 LibDirs.append(begin(PPCLibDirs), end(PPCLibDirs)); 2476 TripleAliases.append(begin(PPCTriples), end(PPCTriples)); 2477 BiarchLibDirs.append(begin(PPC64LibDirs), end(PPC64LibDirs)); 2478 BiarchTripleAliases.append(begin(PPC64Triples), end(PPC64Triples)); 2479 break; 2480 case llvm::Triple::ppcle: 2481 LibDirs.append(begin(PPCLELibDirs), end(PPCLELibDirs)); 2482 TripleAliases.append(begin(PPCLETriples), end(PPCLETriples)); 2483 BiarchLibDirs.append(begin(PPC64LELibDirs), end(PPC64LELibDirs)); 2484 BiarchTripleAliases.append(begin(PPC64LETriples), end(PPC64LETriples)); 2485 break; 2486 case llvm::Triple::ppc64: 2487 LibDirs.append(begin(PPC64LibDirs), end(PPC64LibDirs)); 2488 TripleAliases.append(begin(PPC64Triples), end(PPC64Triples)); 2489 BiarchLibDirs.append(begin(PPCLibDirs), end(PPCLibDirs)); 2490 BiarchTripleAliases.append(begin(PPCTriples), end(PPCTriples)); 2491 break; 2492 case llvm::Triple::ppc64le: 2493 LibDirs.append(begin(PPC64LELibDirs), end(PPC64LELibDirs)); 2494 TripleAliases.append(begin(PPC64LETriples), end(PPC64LETriples)); 2495 BiarchLibDirs.append(begin(PPCLELibDirs), end(PPCLELibDirs)); 2496 BiarchTripleAliases.append(begin(PPCLETriples), end(PPCLETriples)); 2497 break; 2498 case llvm::Triple::riscv32: 2499 LibDirs.append(begin(RISCV32LibDirs), end(RISCV32LibDirs)); 2500 TripleAliases.append(begin(RISCV32Triples), end(RISCV32Triples)); 2501 BiarchLibDirs.append(begin(RISCV64LibDirs), end(RISCV64LibDirs)); 2502 BiarchTripleAliases.append(begin(RISCV64Triples), end(RISCV64Triples)); 2503 break; 2504 case llvm::Triple::riscv64: 2505 LibDirs.append(begin(RISCV64LibDirs), end(RISCV64LibDirs)); 2506 TripleAliases.append(begin(RISCV64Triples), end(RISCV64Triples)); 2507 BiarchLibDirs.append(begin(RISCV32LibDirs), end(RISCV32LibDirs)); 2508 BiarchTripleAliases.append(begin(RISCV32Triples), end(RISCV32Triples)); 2509 break; 2510 case llvm::Triple::sparc: 2511 case llvm::Triple::sparcel: 2512 LibDirs.append(begin(SPARCv8LibDirs), end(SPARCv8LibDirs)); 2513 TripleAliases.append(begin(SPARCv8Triples), end(SPARCv8Triples)); 2514 BiarchLibDirs.append(begin(SPARCv9LibDirs), end(SPARCv9LibDirs)); 2515 BiarchTripleAliases.append(begin(SPARCv9Triples), end(SPARCv9Triples)); 2516 break; 2517 case llvm::Triple::sparcv9: 2518 LibDirs.append(begin(SPARCv9LibDirs), end(SPARCv9LibDirs)); 2519 TripleAliases.append(begin(SPARCv9Triples), end(SPARCv9Triples)); 2520 BiarchLibDirs.append(begin(SPARCv8LibDirs), end(SPARCv8LibDirs)); 2521 BiarchTripleAliases.append(begin(SPARCv8Triples), end(SPARCv8Triples)); 2522 break; 2523 case llvm::Triple::systemz: 2524 LibDirs.append(begin(SystemZLibDirs), end(SystemZLibDirs)); 2525 TripleAliases.append(begin(SystemZTriples), end(SystemZTriples)); 2526 break; 2527 default: 2528 // By default, just rely on the standard lib directories and the original 2529 // triple. 2530 break; 2531 } 2532 2533 // Always append the drivers target triple to the end, in case it doesn't 2534 // match any of our aliases. 2535 TripleAliases.push_back(TargetTriple.str()); 2536 2537 // Also include the multiarch variant if it's different. 2538 if (TargetTriple.str() != BiarchTriple.str()) 2539 BiarchTripleAliases.push_back(BiarchTriple.str()); 2540 } 2541 2542 bool Generic_GCC::GCCInstallationDetector::ScanGCCForMultilibs( 2543 const llvm::Triple &TargetTriple, const ArgList &Args, 2544 StringRef Path, bool NeedsBiarchSuffix) { 2545 llvm::Triple::ArchType TargetArch = TargetTriple.getArch(); 2546 DetectedMultilibs Detected; 2547 2548 // Android standalone toolchain could have multilibs for ARM and Thumb. 2549 // Debian mips multilibs behave more like the rest of the biarch ones, 2550 // so handle them there 2551 if (isArmOrThumbArch(TargetArch) && TargetTriple.isAndroid()) { 2552 // It should also work without multilibs in a simplified toolchain. 2553 findAndroidArmMultilibs(D, TargetTriple, Path, Args, Detected); 2554 } else if (TargetTriple.isCSKY()) { 2555 findCSKYMultilibs(D, TargetTriple, Path, Args, Detected); 2556 } else if (TargetTriple.isMIPS()) { 2557 if (!findMIPSMultilibs(D, TargetTriple, Path, Args, Detected)) 2558 return false; 2559 } else if (TargetTriple.isRISCV()) { 2560 findRISCVMultilibs(D, TargetTriple, Path, Args, Detected); 2561 } else if (isMSP430(TargetArch)) { 2562 findMSP430Multilibs(D, TargetTriple, Path, Args, Detected); 2563 } else if (TargetArch == llvm::Triple::avr) { 2564 // AVR has no multilibs. 2565 } else if (!findBiarchMultilibs(D, TargetTriple, Path, Args, 2566 NeedsBiarchSuffix, Detected)) { 2567 return false; 2568 } 2569 2570 Multilibs = Detected.Multilibs; 2571 SelectedMultilib = Detected.SelectedMultilib; 2572 BiarchSibling = Detected.BiarchSibling; 2573 2574 return true; 2575 } 2576 2577 void Generic_GCC::GCCInstallationDetector::ScanLibDirForGCCTriple( 2578 const llvm::Triple &TargetTriple, const ArgList &Args, 2579 const std::string &LibDir, StringRef CandidateTriple, 2580 bool NeedsBiarchSuffix, bool GCCDirExists, bool GCCCrossDirExists) { 2581 // Locations relative to the system lib directory where GCC's triple-specific 2582 // directories might reside. 2583 struct GCCLibSuffix { 2584 // Path from system lib directory to GCC triple-specific directory. 2585 std::string LibSuffix; 2586 // Path from GCC triple-specific directory back to system lib directory. 2587 // This is one '..' component per component in LibSuffix. 2588 StringRef ReversePath; 2589 // Whether this library suffix is relevant for the triple. 2590 bool Active; 2591 } Suffixes[] = { 2592 // This is the normal place. 2593 {"gcc/" + CandidateTriple.str(), "../..", GCCDirExists}, 2594 2595 // Debian puts cross-compilers in gcc-cross. 2596 {"gcc-cross/" + CandidateTriple.str(), "../..", GCCCrossDirExists}, 2597 2598 // The Freescale PPC SDK has the gcc libraries in 2599 // <sysroot>/usr/lib/<triple>/x.y.z so have a look there as well. Only do 2600 // this on Freescale triples, though, since some systems put a *lot* of 2601 // files in that location, not just GCC installation data. 2602 {CandidateTriple.str(), "..", 2603 TargetTriple.getVendor() == llvm::Triple::Freescale || 2604 TargetTriple.getVendor() == llvm::Triple::OpenEmbedded}}; 2605 2606 for (auto &Suffix : Suffixes) { 2607 if (!Suffix.Active) 2608 continue; 2609 2610 StringRef LibSuffix = Suffix.LibSuffix; 2611 std::error_code EC; 2612 for (llvm::vfs::directory_iterator 2613 LI = D.getVFS().dir_begin(LibDir + "/" + LibSuffix, EC), 2614 LE; 2615 !EC && LI != LE; LI = LI.increment(EC)) { 2616 StringRef VersionText = llvm::sys::path::filename(LI->path()); 2617 GCCVersion CandidateVersion = GCCVersion::Parse(VersionText); 2618 if (CandidateVersion.Major != -1) // Filter obviously bad entries. 2619 if (!CandidateGCCInstallPaths.insert(std::string(LI->path())).second) 2620 continue; // Saw this path before; no need to look at it again. 2621 if (CandidateVersion.isOlderThan(4, 1, 1)) 2622 continue; 2623 if (CandidateVersion <= Version) 2624 continue; 2625 2626 if (!ScanGCCForMultilibs(TargetTriple, Args, LI->path(), 2627 NeedsBiarchSuffix)) 2628 continue; 2629 2630 Version = CandidateVersion; 2631 GCCTriple.setTriple(CandidateTriple); 2632 // FIXME: We hack together the directory name here instead of 2633 // using LI to ensure stable path separators across Windows and 2634 // Linux. 2635 GCCInstallPath = (LibDir + "/" + LibSuffix + "/" + VersionText).str(); 2636 GCCParentLibPath = (GCCInstallPath + "/../" + Suffix.ReversePath).str(); 2637 IsValid = true; 2638 } 2639 } 2640 } 2641 2642 bool Generic_GCC::GCCInstallationDetector::ScanGentooConfigs( 2643 const llvm::Triple &TargetTriple, const ArgList &Args, 2644 const SmallVectorImpl<StringRef> &CandidateTriples, 2645 const SmallVectorImpl<StringRef> &CandidateBiarchTriples) { 2646 if (!D.getVFS().exists(D.SysRoot + GentooConfigDir)) 2647 return false; 2648 2649 for (StringRef CandidateTriple : CandidateTriples) { 2650 if (ScanGentooGccConfig(TargetTriple, Args, CandidateTriple)) 2651 return true; 2652 } 2653 2654 for (StringRef CandidateTriple : CandidateBiarchTriples) { 2655 if (ScanGentooGccConfig(TargetTriple, Args, CandidateTriple, true)) 2656 return true; 2657 } 2658 return false; 2659 } 2660 2661 bool Generic_GCC::GCCInstallationDetector::ScanGentooGccConfig( 2662 const llvm::Triple &TargetTriple, const ArgList &Args, 2663 StringRef CandidateTriple, bool NeedsBiarchSuffix) { 2664 llvm::ErrorOr<std::unique_ptr<llvm::MemoryBuffer>> File = 2665 D.getVFS().getBufferForFile(D.SysRoot + GentooConfigDir + "/config-" + 2666 CandidateTriple.str()); 2667 if (File) { 2668 SmallVector<StringRef, 2> Lines; 2669 File.get()->getBuffer().split(Lines, "\n"); 2670 for (StringRef Line : Lines) { 2671 Line = Line.trim(); 2672 // CURRENT=triple-version 2673 if (!Line.consume_front("CURRENT=")) 2674 continue; 2675 // Process the config file pointed to by CURRENT. 2676 llvm::ErrorOr<std::unique_ptr<llvm::MemoryBuffer>> ConfigFile = 2677 D.getVFS().getBufferForFile(D.SysRoot + GentooConfigDir + "/" + 2678 Line.str()); 2679 std::pair<StringRef, StringRef> ActiveVersion = Line.rsplit('-'); 2680 // List of paths to scan for libraries. 2681 SmallVector<StringRef, 4> GentooScanPaths; 2682 // Scan the Config file to find installed GCC libraries path. 2683 // Typical content of the GCC config file: 2684 // LDPATH="/usr/lib/gcc/x86_64-pc-linux-gnu/4.9.x:/usr/lib/gcc/ 2685 // (continued from previous line) x86_64-pc-linux-gnu/4.9.x/32" 2686 // MANPATH="/usr/share/gcc-data/x86_64-pc-linux-gnu/4.9.x/man" 2687 // INFOPATH="/usr/share/gcc-data/x86_64-pc-linux-gnu/4.9.x/info" 2688 // STDCXX_INCDIR="/usr/lib/gcc/x86_64-pc-linux-gnu/4.9.x/include/g++-v4" 2689 // We are looking for the paths listed in LDPATH=... . 2690 if (ConfigFile) { 2691 SmallVector<StringRef, 2> ConfigLines; 2692 ConfigFile.get()->getBuffer().split(ConfigLines, "\n"); 2693 for (StringRef ConfLine : ConfigLines) { 2694 ConfLine = ConfLine.trim(); 2695 if (ConfLine.consume_front("LDPATH=")) { 2696 // Drop '"' from front and back if present. 2697 ConfLine.consume_back("\""); 2698 ConfLine.consume_front("\""); 2699 // Get all paths sperated by ':' 2700 ConfLine.split(GentooScanPaths, ':', -1, /*AllowEmpty*/ false); 2701 } 2702 } 2703 } 2704 // Test the path based on the version in /etc/env.d/gcc/config-{tuple}. 2705 std::string basePath = "/usr/lib/gcc/" + ActiveVersion.first.str() + "/" 2706 + ActiveVersion.second.str(); 2707 GentooScanPaths.push_back(StringRef(basePath)); 2708 2709 // Scan all paths for GCC libraries. 2710 for (const auto &GentooScanPath : GentooScanPaths) { 2711 std::string GentooPath = D.SysRoot + std::string(GentooScanPath); 2712 if (D.getVFS().exists(GentooPath + "/crtbegin.o")) { 2713 if (!ScanGCCForMultilibs(TargetTriple, Args, GentooPath, 2714 NeedsBiarchSuffix)) 2715 continue; 2716 2717 Version = GCCVersion::Parse(ActiveVersion.second); 2718 GCCInstallPath = GentooPath; 2719 GCCParentLibPath = GentooPath + std::string("/../../.."); 2720 GCCTriple.setTriple(ActiveVersion.first); 2721 IsValid = true; 2722 return true; 2723 } 2724 } 2725 } 2726 } 2727 2728 return false; 2729 } 2730 2731 Generic_GCC::Generic_GCC(const Driver &D, const llvm::Triple &Triple, 2732 const ArgList &Args) 2733 : ToolChain(D, Triple, Args), GCCInstallation(D), 2734 CudaInstallation(D, Triple, Args), RocmInstallation(D, Triple, Args) { 2735 getProgramPaths().push_back(getDriver().getInstalledDir()); 2736 if (getDriver().getInstalledDir() != getDriver().Dir) 2737 getProgramPaths().push_back(getDriver().Dir); 2738 } 2739 2740 Generic_GCC::~Generic_GCC() {} 2741 2742 Tool *Generic_GCC::getTool(Action::ActionClass AC) const { 2743 switch (AC) { 2744 case Action::PreprocessJobClass: 2745 if (!Preprocess) 2746 Preprocess.reset(new clang::driver::tools::gcc::Preprocessor(*this)); 2747 return Preprocess.get(); 2748 case Action::CompileJobClass: 2749 if (!Compile) 2750 Compile.reset(new tools::gcc::Compiler(*this)); 2751 return Compile.get(); 2752 default: 2753 return ToolChain::getTool(AC); 2754 } 2755 } 2756 2757 Tool *Generic_GCC::buildAssembler() const { 2758 return new tools::gnutools::Assembler(*this); 2759 } 2760 2761 Tool *Generic_GCC::buildLinker() const { return new tools::gcc::Linker(*this); } 2762 2763 void Generic_GCC::printVerboseInfo(raw_ostream &OS) const { 2764 // Print the information about how we detected the GCC installation. 2765 GCCInstallation.print(OS); 2766 CudaInstallation.print(OS); 2767 RocmInstallation.print(OS); 2768 } 2769 2770 bool Generic_GCC::IsUnwindTablesDefault(const ArgList &Args) const { 2771 switch (getArch()) { 2772 case llvm::Triple::aarch64: 2773 case llvm::Triple::ppc: 2774 case llvm::Triple::ppcle: 2775 case llvm::Triple::ppc64: 2776 case llvm::Triple::ppc64le: 2777 case llvm::Triple::x86: 2778 case llvm::Triple::x86_64: 2779 return true; 2780 default: 2781 return false; 2782 } 2783 } 2784 2785 bool Generic_GCC::isPICDefault() const { 2786 switch (getArch()) { 2787 case llvm::Triple::x86_64: 2788 return getTriple().isOSWindows(); 2789 case llvm::Triple::mips64: 2790 case llvm::Triple::mips64el: 2791 return true; 2792 default: 2793 return false; 2794 } 2795 } 2796 2797 bool Generic_GCC::isPIEDefault(const llvm::opt::ArgList &Args) const { 2798 return false; 2799 } 2800 2801 bool Generic_GCC::isPICDefaultForced() const { 2802 return getArch() == llvm::Triple::x86_64 && getTriple().isOSWindows(); 2803 } 2804 2805 bool Generic_GCC::IsIntegratedAssemblerDefault() const { 2806 switch (getTriple().getArch()) { 2807 case llvm::Triple::x86: 2808 case llvm::Triple::x86_64: 2809 case llvm::Triple::aarch64: 2810 case llvm::Triple::aarch64_be: 2811 case llvm::Triple::arm: 2812 case llvm::Triple::armeb: 2813 case llvm::Triple::avr: 2814 case llvm::Triple::bpfel: 2815 case llvm::Triple::bpfeb: 2816 case llvm::Triple::csky: 2817 case llvm::Triple::thumb: 2818 case llvm::Triple::thumbeb: 2819 case llvm::Triple::ppc: 2820 case llvm::Triple::ppcle: 2821 case llvm::Triple::ppc64: 2822 case llvm::Triple::ppc64le: 2823 case llvm::Triple::riscv32: 2824 case llvm::Triple::riscv64: 2825 case llvm::Triple::sparc: 2826 case llvm::Triple::sparcel: 2827 case llvm::Triple::sparcv9: 2828 case llvm::Triple::systemz: 2829 case llvm::Triple::mips: 2830 case llvm::Triple::mipsel: 2831 case llvm::Triple::mips64: 2832 case llvm::Triple::mips64el: 2833 case llvm::Triple::msp430: 2834 case llvm::Triple::m68k: 2835 return true; 2836 default: 2837 return false; 2838 } 2839 } 2840 2841 void Generic_GCC::PushPPaths(ToolChain::path_list &PPaths) { 2842 // Cross-compiling binutils and GCC installations (vanilla and openSUSE at 2843 // least) put various tools in a triple-prefixed directory off of the parent 2844 // of the GCC installation. We use the GCC triple here to ensure that we end 2845 // up with tools that support the same amount of cross compiling as the 2846 // detected GCC installation. For example, if we find a GCC installation 2847 // targeting x86_64, but it is a bi-arch GCC installation, it can also be 2848 // used to target i386. 2849 if (GCCInstallation.isValid()) { 2850 PPaths.push_back(Twine(GCCInstallation.getParentLibPath() + "/../" + 2851 GCCInstallation.getTriple().str() + "/bin") 2852 .str()); 2853 } 2854 } 2855 2856 void Generic_GCC::AddMultilibPaths(const Driver &D, 2857 const std::string &SysRoot, 2858 const std::string &OSLibDir, 2859 const std::string &MultiarchTriple, 2860 path_list &Paths) { 2861 // Add the multilib suffixed paths where they are available. 2862 if (GCCInstallation.isValid()) { 2863 const llvm::Triple &GCCTriple = GCCInstallation.getTriple(); 2864 const std::string &LibPath = 2865 std::string(GCCInstallation.getParentLibPath()); 2866 2867 // Sourcery CodeBench MIPS toolchain holds some libraries under 2868 // a biarch-like suffix of the GCC installation. 2869 if (const auto &PathsCallback = Multilibs.filePathsCallback()) 2870 for (const auto &Path : PathsCallback(SelectedMultilib)) 2871 addPathIfExists(D, GCCInstallation.getInstallPath() + Path, Paths); 2872 2873 // Add lib/gcc/$triple/$version, with an optional /multilib suffix. 2874 addPathIfExists( 2875 D, GCCInstallation.getInstallPath() + SelectedMultilib.gccSuffix(), 2876 Paths); 2877 2878 // Add lib/gcc/$triple/$libdir 2879 // For GCC built with --enable-version-specific-runtime-libs. 2880 addPathIfExists(D, GCCInstallation.getInstallPath() + "/../" + OSLibDir, 2881 Paths); 2882 2883 // GCC cross compiling toolchains will install target libraries which ship 2884 // as part of the toolchain under <prefix>/<triple>/<libdir> rather than as 2885 // any part of the GCC installation in 2886 // <prefix>/<libdir>/gcc/<triple>/<version>. This decision is somewhat 2887 // debatable, but is the reality today. We need to search this tree even 2888 // when we have a sysroot somewhere else. It is the responsibility of 2889 // whomever is doing the cross build targeting a sysroot using a GCC 2890 // installation that is *not* within the system root to ensure two things: 2891 // 2892 // 1) Any DSOs that are linked in from this tree or from the install path 2893 // above must be present on the system root and found via an 2894 // appropriate rpath. 2895 // 2) There must not be libraries installed into 2896 // <prefix>/<triple>/<libdir> unless they should be preferred over 2897 // those within the system root. 2898 // 2899 // Note that this matches the GCC behavior. See the below comment for where 2900 // Clang diverges from GCC's behavior. 2901 addPathIfExists(D, 2902 LibPath + "/../" + GCCTriple.str() + "/lib/../" + OSLibDir + 2903 SelectedMultilib.osSuffix(), 2904 Paths); 2905 2906 // If the GCC installation we found is inside of the sysroot, we want to 2907 // prefer libraries installed in the parent prefix of the GCC installation. 2908 // It is important to *not* use these paths when the GCC installation is 2909 // outside of the system root as that can pick up unintended libraries. 2910 // This usually happens when there is an external cross compiler on the 2911 // host system, and a more minimal sysroot available that is the target of 2912 // the cross. Note that GCC does include some of these directories in some 2913 // configurations but this seems somewhere between questionable and simply 2914 // a bug. 2915 if (StringRef(LibPath).startswith(SysRoot)) 2916 addPathIfExists(D, LibPath + "/../" + OSLibDir, Paths); 2917 } 2918 } 2919 2920 void Generic_GCC::AddMultiarchPaths(const Driver &D, 2921 const std::string &SysRoot, 2922 const std::string &OSLibDir, 2923 path_list &Paths) { 2924 if (GCCInstallation.isValid()) { 2925 const std::string &LibPath = 2926 std::string(GCCInstallation.getParentLibPath()); 2927 const llvm::Triple &GCCTriple = GCCInstallation.getTriple(); 2928 const Multilib &Multilib = GCCInstallation.getMultilib(); 2929 addPathIfExists( 2930 D, LibPath + "/../" + GCCTriple.str() + "/lib" + Multilib.osSuffix(), 2931 Paths); 2932 } 2933 } 2934 2935 void Generic_GCC::AddMultilibIncludeArgs(const ArgList &DriverArgs, 2936 ArgStringList &CC1Args) const { 2937 // Add include directories specific to the selected multilib set and multilib. 2938 if (!GCCInstallation.isValid()) 2939 return; 2940 // gcc TOOL_INCLUDE_DIR. 2941 const llvm::Triple &GCCTriple = GCCInstallation.getTriple(); 2942 std::string LibPath(GCCInstallation.getParentLibPath()); 2943 addSystemInclude(DriverArgs, CC1Args, 2944 Twine(LibPath) + "/../" + GCCTriple.str() + "/include"); 2945 2946 const auto &Callback = Multilibs.includeDirsCallback(); 2947 if (Callback) { 2948 for (const auto &Path : Callback(GCCInstallation.getMultilib())) 2949 addExternCSystemIncludeIfExists(DriverArgs, CC1Args, 2950 GCCInstallation.getInstallPath() + Path); 2951 } 2952 } 2953 2954 void Generic_GCC::AddClangCXXStdlibIncludeArgs(const ArgList &DriverArgs, 2955 ArgStringList &CC1Args) const { 2956 if (DriverArgs.hasArg(options::OPT_nostdinc, options::OPT_nostdincxx, 2957 options::OPT_nostdlibinc)) 2958 return; 2959 2960 switch (GetCXXStdlibType(DriverArgs)) { 2961 case ToolChain::CST_Libcxx: 2962 addLibCxxIncludePaths(DriverArgs, CC1Args); 2963 break; 2964 2965 case ToolChain::CST_Libstdcxx: 2966 addLibStdCxxIncludePaths(DriverArgs, CC1Args); 2967 break; 2968 } 2969 } 2970 2971 void 2972 Generic_GCC::addLibCxxIncludePaths(const llvm::opt::ArgList &DriverArgs, 2973 llvm::opt::ArgStringList &CC1Args) const { 2974 const Driver &D = getDriver(); 2975 std::string SysRoot = computeSysRoot(); 2976 std::string Target = getTripleString(); 2977 2978 auto AddIncludePath = [&](std::string Path) { 2979 std::string Version = detectLibcxxVersion(Path); 2980 if (Version.empty()) 2981 return false; 2982 2983 // First add the per-target include path if it exists. 2984 std::string TargetDir = Path + "/" + Target + "/c++/" + Version; 2985 if (D.getVFS().exists(TargetDir)) 2986 addSystemInclude(DriverArgs, CC1Args, TargetDir); 2987 2988 // Second add the generic one. 2989 addSystemInclude(DriverArgs, CC1Args, Path + "/c++/" + Version); 2990 return true; 2991 }; 2992 2993 // Android never uses the libc++ headers installed alongside the toolchain, 2994 // which are generally incompatible with the NDK libraries anyway. 2995 if (!getTriple().isAndroid()) 2996 if (AddIncludePath(getDriver().Dir + "/../include")) 2997 return; 2998 // If this is a development, non-installed, clang, libcxx will 2999 // not be found at ../include/c++ but it likely to be found at 3000 // one of the following two locations: 3001 if (AddIncludePath(SysRoot + "/usr/local/include")) 3002 return; 3003 if (AddIncludePath(SysRoot + "/usr/include")) 3004 return; 3005 } 3006 3007 bool Generic_GCC::addLibStdCXXIncludePaths(Twine IncludeDir, StringRef Triple, 3008 Twine IncludeSuffix, 3009 const llvm::opt::ArgList &DriverArgs, 3010 llvm::opt::ArgStringList &CC1Args, 3011 bool DetectDebian) const { 3012 if (!getVFS().exists(IncludeDir)) 3013 return false; 3014 3015 // Debian native gcc uses g++-multiarch-incdir.diff which uses 3016 // include/x86_64-linux-gnu/c++/10$IncludeSuffix instead of 3017 // include/c++/10/x86_64-linux-gnu$IncludeSuffix. 3018 std::string Dir = IncludeDir.str(); 3019 StringRef Include = 3020 llvm::sys::path::parent_path(llvm::sys::path::parent_path(Dir)); 3021 std::string Path = 3022 (Include + "/" + Triple + Dir.substr(Include.size()) + IncludeSuffix) 3023 .str(); 3024 if (DetectDebian && !getVFS().exists(Path)) 3025 return false; 3026 3027 // GPLUSPLUS_INCLUDE_DIR 3028 addSystemInclude(DriverArgs, CC1Args, IncludeDir); 3029 // GPLUSPLUS_TOOL_INCLUDE_DIR. If Triple is not empty, add a target-dependent 3030 // include directory. 3031 if (DetectDebian) 3032 addSystemInclude(DriverArgs, CC1Args, Path); 3033 else if (!Triple.empty()) 3034 addSystemInclude(DriverArgs, CC1Args, 3035 IncludeDir + "/" + Triple + IncludeSuffix); 3036 // GPLUSPLUS_BACKWARD_INCLUDE_DIR 3037 addSystemInclude(DriverArgs, CC1Args, IncludeDir + "/backward"); 3038 return true; 3039 } 3040 3041 bool Generic_GCC::addGCCLibStdCxxIncludePaths( 3042 const llvm::opt::ArgList &DriverArgs, llvm::opt::ArgStringList &CC1Args, 3043 StringRef DebianMultiarch) const { 3044 assert(GCCInstallation.isValid()); 3045 3046 // By default, look for the C++ headers in an include directory adjacent to 3047 // the lib directory of the GCC installation. Note that this is expect to be 3048 // equivalent to '/usr/include/c++/X.Y' in almost all cases. 3049 StringRef LibDir = GCCInstallation.getParentLibPath(); 3050 StringRef InstallDir = GCCInstallation.getInstallPath(); 3051 StringRef TripleStr = GCCInstallation.getTriple().str(); 3052 const Multilib &Multilib = GCCInstallation.getMultilib(); 3053 const GCCVersion &Version = GCCInstallation.getVersion(); 3054 3055 // Try /../$triple/include/c++/$version (gcc --print-multiarch is not empty). 3056 if (addLibStdCXXIncludePaths( 3057 LibDir.str() + "/../" + TripleStr + "/include/c++/" + Version.Text, 3058 TripleStr, Multilib.includeSuffix(), DriverArgs, CC1Args)) 3059 return true; 3060 3061 // Try /gcc/$triple/$version/include/c++/ (gcc --print-multiarch is not 3062 // empty). Like above but for GCC built with 3063 // --enable-version-specific-runtime-libs. 3064 if (addLibStdCXXIncludePaths(LibDir.str() + "/gcc/" + TripleStr + "/" + 3065 Version.Text + "/include/c++/", 3066 TripleStr, Multilib.includeSuffix(), DriverArgs, 3067 CC1Args)) 3068 return true; 3069 3070 // Detect Debian g++-multiarch-incdir.diff. 3071 if (addLibStdCXXIncludePaths(LibDir.str() + "/../include/c++/" + Version.Text, 3072 DebianMultiarch, Multilib.includeSuffix(), 3073 DriverArgs, CC1Args, /*Debian=*/true)) 3074 return true; 3075 3076 // Try /../include/c++/$version (gcc --print-multiarch is empty). 3077 if (addLibStdCXXIncludePaths(LibDir.str() + "/../include/c++/" + Version.Text, 3078 TripleStr, Multilib.includeSuffix(), DriverArgs, 3079 CC1Args)) 3080 return true; 3081 3082 // Otherwise, fall back on a bunch of options which don't use multiarch 3083 // layouts for simplicity. 3084 const std::string LibStdCXXIncludePathCandidates[] = { 3085 // Gentoo is weird and places its headers inside the GCC install, 3086 // so if the first attempt to find the headers fails, try these patterns. 3087 InstallDir.str() + "/include/g++-v" + Version.Text, 3088 InstallDir.str() + "/include/g++-v" + Version.MajorStr + "." + 3089 Version.MinorStr, 3090 InstallDir.str() + "/include/g++-v" + Version.MajorStr, 3091 }; 3092 3093 for (const auto &IncludePath : LibStdCXXIncludePathCandidates) { 3094 if (addLibStdCXXIncludePaths(IncludePath, TripleStr, 3095 Multilib.includeSuffix(), DriverArgs, CC1Args)) 3096 return true; 3097 } 3098 return false; 3099 } 3100 3101 void 3102 Generic_GCC::addLibStdCxxIncludePaths(const llvm::opt::ArgList &DriverArgs, 3103 llvm::opt::ArgStringList &CC1Args) const { 3104 if (GCCInstallation.isValid()) { 3105 addGCCLibStdCxxIncludePaths(DriverArgs, CC1Args, 3106 GCCInstallation.getTriple().str()); 3107 } 3108 } 3109 3110 llvm::opt::DerivedArgList * 3111 Generic_GCC::TranslateArgs(const llvm::opt::DerivedArgList &Args, StringRef, 3112 Action::OffloadKind DeviceOffloadKind) const { 3113 3114 // If this tool chain is used for an OpenMP offloading device we have to make 3115 // sure we always generate a shared library regardless of the commands the 3116 // user passed to the host. This is required because the runtime library 3117 // is required to load the device image dynamically at run time. 3118 if (DeviceOffloadKind == Action::OFK_OpenMP) { 3119 DerivedArgList *DAL = new DerivedArgList(Args.getBaseArgs()); 3120 const OptTable &Opts = getDriver().getOpts(); 3121 3122 // Request the shared library. Given that these options are decided 3123 // implicitly, they do not refer to any base argument. 3124 DAL->AddFlagArg(/*BaseArg=*/nullptr, Opts.getOption(options::OPT_shared)); 3125 DAL->AddFlagArg(/*BaseArg=*/nullptr, Opts.getOption(options::OPT_fPIC)); 3126 3127 // Filter all the arguments we don't care passing to the offloading 3128 // toolchain as they can mess up with the creation of a shared library. 3129 for (auto *A : Args) { 3130 switch ((options::ID)A->getOption().getID()) { 3131 default: 3132 DAL->append(A); 3133 break; 3134 case options::OPT_shared: 3135 case options::OPT_dynamic: 3136 case options::OPT_static: 3137 case options::OPT_fPIC: 3138 case options::OPT_fno_PIC: 3139 case options::OPT_fpic: 3140 case options::OPT_fno_pic: 3141 case options::OPT_fPIE: 3142 case options::OPT_fno_PIE: 3143 case options::OPT_fpie: 3144 case options::OPT_fno_pie: 3145 break; 3146 } 3147 } 3148 return DAL; 3149 } 3150 return nullptr; 3151 } 3152 3153 void Generic_ELF::anchor() {} 3154 3155 void Generic_ELF::addClangTargetOptions(const ArgList &DriverArgs, 3156 ArgStringList &CC1Args, 3157 Action::OffloadKind) const { 3158 if (!DriverArgs.hasFlag(options::OPT_fuse_init_array, 3159 options::OPT_fno_use_init_array, true)) 3160 CC1Args.push_back("-fno-use-init-array"); 3161 } 3162