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