1 //===--- Driver.cpp - Clang GCC Compatible Driver -------------------------===//
2 //
3 //                     The LLVM Compiler Infrastructure
4 //
5 // This file is distributed under the University of Illinois Open Source
6 // License. See LICENSE.TXT for details.
7 //
8 //===----------------------------------------------------------------------===//
9 
10 #include "clang/Driver/Driver.h"
11 #include "InputInfo.h"
12 #include "ToolChains.h"
13 #include "clang/Basic/Version.h"
14 #include "clang/Config/config.h"
15 #include "clang/Driver/Action.h"
16 #include "clang/Driver/Compilation.h"
17 #include "clang/Driver/DriverDiagnostic.h"
18 #include "clang/Driver/Job.h"
19 #include "clang/Driver/Options.h"
20 #include "clang/Driver/SanitizerArgs.h"
21 #include "clang/Driver/Tool.h"
22 #include "clang/Driver/ToolChain.h"
23 #include "llvm/ADT/ArrayRef.h"
24 #include "llvm/ADT/STLExtras.h"
25 #include "llvm/ADT/StringExtras.h"
26 #include "llvm/ADT/StringSet.h"
27 #include "llvm/ADT/StringSwitch.h"
28 #include "llvm/Option/Arg.h"
29 #include "llvm/Option/ArgList.h"
30 #include "llvm/Option/OptSpecifier.h"
31 #include "llvm/Option/OptTable.h"
32 #include "llvm/Option/Option.h"
33 #include "llvm/Support/Debug.h"
34 #include "llvm/Support/ErrorHandling.h"
35 #include "llvm/Support/FileSystem.h"
36 #include "llvm/Support/Path.h"
37 #include "llvm/Support/PrettyStackTrace.h"
38 #include "llvm/Support/Process.h"
39 #include "llvm/Support/Program.h"
40 #include "llvm/Support/raw_ostream.h"
41 #include <map>
42 #include <memory>
43 
44 using namespace clang::driver;
45 using namespace clang;
46 using namespace llvm::opt;
47 
48 Driver::Driver(StringRef ClangExecutable, StringRef DefaultTargetTriple,
49                DiagnosticsEngine &Diags)
50     : Opts(createDriverOptTable()), Diags(Diags), Mode(GCCMode),
51       SaveTemps(SaveTempsNone), ClangExecutable(ClangExecutable),
52       SysRoot(DEFAULT_SYSROOT), UseStdLib(true),
53       DefaultTargetTriple(DefaultTargetTriple),
54       DriverTitle("clang LLVM compiler"), CCPrintOptionsFilename(nullptr),
55       CCPrintHeadersFilename(nullptr), CCLogDiagnosticsFilename(nullptr),
56       CCCPrintBindings(false), CCPrintHeaders(false), CCLogDiagnostics(false),
57       CCGenDiagnostics(false), CCCGenericGCCName(""), CheckInputsExist(true),
58       CCCUsePCH(true), SuppressMissingInputWarning(false) {
59 
60   Name = llvm::sys::path::filename(ClangExecutable);
61   Dir = llvm::sys::path::parent_path(ClangExecutable);
62 
63   // Compute the path to the resource directory.
64   StringRef ClangResourceDir(CLANG_RESOURCE_DIR);
65   SmallString<128> P(Dir);
66   if (ClangResourceDir != "") {
67     llvm::sys::path::append(P, ClangResourceDir);
68   } else {
69     StringRef ClangLibdirSuffix(CLANG_LIBDIR_SUFFIX);
70     llvm::sys::path::append(P, "..", Twine("lib") + ClangLibdirSuffix, "clang",
71                             CLANG_VERSION_STRING);
72   }
73   ResourceDir = P.str();
74 }
75 
76 Driver::~Driver() {
77   delete Opts;
78 
79   llvm::DeleteContainerSeconds(ToolChains);
80 }
81 
82 void Driver::ParseDriverMode(ArrayRef<const char *> Args) {
83   const std::string OptName =
84       getOpts().getOption(options::OPT_driver_mode).getPrefixedName();
85 
86   for (const char *ArgPtr : Args) {
87     // Ingore nullptrs, they are response file's EOL markers
88     if (ArgPtr == nullptr)
89       continue;
90     const StringRef Arg = ArgPtr;
91     if (!Arg.startswith(OptName))
92       continue;
93 
94     const StringRef Value = Arg.drop_front(OptName.size());
95     const unsigned M = llvm::StringSwitch<unsigned>(Value)
96                            .Case("gcc", GCCMode)
97                            .Case("g++", GXXMode)
98                            .Case("cpp", CPPMode)
99                            .Case("cl", CLMode)
100                            .Default(~0U);
101 
102     if (M != ~0U)
103       Mode = static_cast<DriverMode>(M);
104     else
105       Diag(diag::err_drv_unsupported_option_argument) << OptName << Value;
106   }
107 }
108 
109 InputArgList Driver::ParseArgStrings(ArrayRef<const char *> ArgStrings) {
110   llvm::PrettyStackTraceString CrashInfo("Command line argument parsing");
111 
112   unsigned IncludedFlagsBitmask;
113   unsigned ExcludedFlagsBitmask;
114   std::tie(IncludedFlagsBitmask, ExcludedFlagsBitmask) =
115       getIncludeExcludeOptionFlagMasks();
116 
117   unsigned MissingArgIndex, MissingArgCount;
118   InputArgList Args =
119       getOpts().ParseArgs(ArgStrings, MissingArgIndex, MissingArgCount,
120                           IncludedFlagsBitmask, ExcludedFlagsBitmask);
121 
122   // Check for missing argument error.
123   if (MissingArgCount)
124     Diag(clang::diag::err_drv_missing_argument)
125         << Args.getArgString(MissingArgIndex) << MissingArgCount;
126 
127   // Check for unsupported options.
128   for (const Arg *A : Args) {
129     if (A->getOption().hasFlag(options::Unsupported)) {
130       Diag(clang::diag::err_drv_unsupported_opt) << A->getAsString(Args);
131       continue;
132     }
133 
134     // Warn about -mcpu= without an argument.
135     if (A->getOption().matches(options::OPT_mcpu_EQ) && A->containsValue("")) {
136       Diag(clang::diag::warn_drv_empty_joined_argument) << A->getAsString(Args);
137     }
138   }
139 
140   for (const Arg *A : Args.filtered(options::OPT_UNKNOWN))
141     Diags.Report(diag::err_drv_unknown_argument) << A->getAsString(Args);
142 
143   return Args;
144 }
145 
146 // Determine which compilation mode we are in. We look for options which
147 // affect the phase, starting with the earliest phases, and record which
148 // option we used to determine the final phase.
149 phases::ID Driver::getFinalPhase(const DerivedArgList &DAL,
150                                  Arg **FinalPhaseArg) const {
151   Arg *PhaseArg = nullptr;
152   phases::ID FinalPhase;
153 
154   // -{E,EP,P,M,MM} only run the preprocessor.
155   if (CCCIsCPP() || (PhaseArg = DAL.getLastArg(options::OPT_E)) ||
156       (PhaseArg = DAL.getLastArg(options::OPT__SLASH_EP)) ||
157       (PhaseArg = DAL.getLastArg(options::OPT_M, options::OPT_MM)) ||
158       (PhaseArg = DAL.getLastArg(options::OPT__SLASH_P))) {
159     FinalPhase = phases::Preprocess;
160 
161     // -{fsyntax-only,-analyze,emit-ast} only run up to the compiler.
162   } else if ((PhaseArg = DAL.getLastArg(options::OPT_fsyntax_only)) ||
163              (PhaseArg = DAL.getLastArg(options::OPT_module_file_info)) ||
164              (PhaseArg = DAL.getLastArg(options::OPT_verify_pch)) ||
165              (PhaseArg = DAL.getLastArg(options::OPT_rewrite_objc)) ||
166              (PhaseArg = DAL.getLastArg(options::OPT_rewrite_legacy_objc)) ||
167              (PhaseArg = DAL.getLastArg(options::OPT__migrate)) ||
168              (PhaseArg = DAL.getLastArg(options::OPT__analyze,
169                                         options::OPT__analyze_auto)) ||
170              (PhaseArg = DAL.getLastArg(options::OPT_emit_ast))) {
171     FinalPhase = phases::Compile;
172 
173     // -S only runs up to the backend.
174   } else if ((PhaseArg = DAL.getLastArg(options::OPT_S))) {
175     FinalPhase = phases::Backend;
176 
177     // -c compilation only runs up to the assembler.
178   } else if ((PhaseArg = DAL.getLastArg(options::OPT_c))) {
179     FinalPhase = phases::Assemble;
180 
181     // Otherwise do everything.
182   } else
183     FinalPhase = phases::Link;
184 
185   if (FinalPhaseArg)
186     *FinalPhaseArg = PhaseArg;
187 
188   return FinalPhase;
189 }
190 
191 static Arg *MakeInputArg(DerivedArgList &Args, OptTable *Opts,
192                          StringRef Value) {
193   Arg *A = new Arg(Opts->getOption(options::OPT_INPUT), Value,
194                    Args.getBaseArgs().MakeIndex(Value), Value.data());
195   Args.AddSynthesizedArg(A);
196   A->claim();
197   return A;
198 }
199 
200 DerivedArgList *Driver::TranslateInputArgs(const InputArgList &Args) const {
201   DerivedArgList *DAL = new DerivedArgList(Args);
202 
203   bool HasNostdlib = Args.hasArg(options::OPT_nostdlib);
204   for (Arg *A : Args) {
205     // Unfortunately, we have to parse some forwarding options (-Xassembler,
206     // -Xlinker, -Xpreprocessor) because we either integrate their functionality
207     // (assembler and preprocessor), or bypass a previous driver ('collect2').
208 
209     // Rewrite linker options, to replace --no-demangle with a custom internal
210     // option.
211     if ((A->getOption().matches(options::OPT_Wl_COMMA) ||
212          A->getOption().matches(options::OPT_Xlinker)) &&
213         A->containsValue("--no-demangle")) {
214       // Add the rewritten no-demangle argument.
215       DAL->AddFlagArg(A, Opts->getOption(options::OPT_Z_Xlinker__no_demangle));
216 
217       // Add the remaining values as Xlinker arguments.
218       for (const StringRef Val : A->getValues())
219         if (Val != "--no-demangle")
220           DAL->AddSeparateArg(A, Opts->getOption(options::OPT_Xlinker), Val);
221 
222       continue;
223     }
224 
225     // Rewrite preprocessor options, to replace -Wp,-MD,FOO which is used by
226     // some build systems. We don't try to be complete here because we don't
227     // care to encourage this usage model.
228     if (A->getOption().matches(options::OPT_Wp_COMMA) &&
229         (A->getValue(0) == StringRef("-MD") ||
230          A->getValue(0) == StringRef("-MMD"))) {
231       // Rewrite to -MD/-MMD along with -MF.
232       if (A->getValue(0) == StringRef("-MD"))
233         DAL->AddFlagArg(A, Opts->getOption(options::OPT_MD));
234       else
235         DAL->AddFlagArg(A, Opts->getOption(options::OPT_MMD));
236       if (A->getNumValues() == 2)
237         DAL->AddSeparateArg(A, Opts->getOption(options::OPT_MF),
238                             A->getValue(1));
239       continue;
240     }
241 
242     // Rewrite reserved library names.
243     if (A->getOption().matches(options::OPT_l)) {
244       StringRef Value = A->getValue();
245 
246       // Rewrite unless -nostdlib is present.
247       if (!HasNostdlib && Value == "stdc++") {
248         DAL->AddFlagArg(A, Opts->getOption(options::OPT_Z_reserved_lib_stdcxx));
249         continue;
250       }
251 
252       // Rewrite unconditionally.
253       if (Value == "cc_kext") {
254         DAL->AddFlagArg(A, Opts->getOption(options::OPT_Z_reserved_lib_cckext));
255         continue;
256       }
257     }
258 
259     // Pick up inputs via the -- option.
260     if (A->getOption().matches(options::OPT__DASH_DASH)) {
261       A->claim();
262       for (const StringRef Val : A->getValues())
263         DAL->append(MakeInputArg(*DAL, Opts, Val));
264       continue;
265     }
266 
267     DAL->append(A);
268   }
269 
270 // Add a default value of -mlinker-version=, if one was given and the user
271 // didn't specify one.
272 #if defined(HOST_LINK_VERSION)
273   if (!Args.hasArg(options::OPT_mlinker_version_EQ) &&
274       strlen(HOST_LINK_VERSION) > 0) {
275     DAL->AddJoinedArg(0, Opts->getOption(options::OPT_mlinker_version_EQ),
276                       HOST_LINK_VERSION);
277     DAL->getLastArg(options::OPT_mlinker_version_EQ)->claim();
278   }
279 #endif
280 
281   return DAL;
282 }
283 
284 /// \brief Compute target triple from args.
285 ///
286 /// This routine provides the logic to compute a target triple from various
287 /// args passed to the driver and the default triple string.
288 static llvm::Triple computeTargetTriple(StringRef DefaultTargetTriple,
289                                         const ArgList &Args,
290                                         StringRef DarwinArchName = "") {
291   // FIXME: Already done in Compilation *Driver::BuildCompilation
292   if (const Arg *A = Args.getLastArg(options::OPT_target))
293     DefaultTargetTriple = A->getValue();
294 
295   llvm::Triple Target(llvm::Triple::normalize(DefaultTargetTriple));
296 
297   // Handle Apple-specific options available here.
298   if (Target.isOSBinFormatMachO()) {
299     // If an explict Darwin arch name is given, that trumps all.
300     if (!DarwinArchName.empty()) {
301       tools::darwin::setTripleTypeForMachOArchName(Target, DarwinArchName);
302       return Target;
303     }
304 
305     // Handle the Darwin '-arch' flag.
306     if (Arg *A = Args.getLastArg(options::OPT_arch)) {
307       StringRef ArchName = A->getValue();
308       tools::darwin::setTripleTypeForMachOArchName(Target, ArchName);
309     }
310   }
311 
312   // Handle pseudo-target flags '-mlittle-endian'/'-EL' and
313   // '-mbig-endian'/'-EB'.
314   if (Arg *A = Args.getLastArg(options::OPT_mlittle_endian,
315                                options::OPT_mbig_endian)) {
316     if (A->getOption().matches(options::OPT_mlittle_endian)) {
317       llvm::Triple LE = Target.getLittleEndianArchVariant();
318       if (LE.getArch() != llvm::Triple::UnknownArch)
319         Target = std::move(LE);
320     } else {
321       llvm::Triple BE = Target.getBigEndianArchVariant();
322       if (BE.getArch() != llvm::Triple::UnknownArch)
323         Target = std::move(BE);
324     }
325   }
326 
327   // Skip further flag support on OSes which don't support '-m32' or '-m64'.
328   if (Target.getArchName() == "tce" || Target.getOS() == llvm::Triple::Minix)
329     return Target;
330 
331   // Handle pseudo-target flags '-m64', '-mx32', '-m32' and '-m16'.
332   if (Arg *A = Args.getLastArg(options::OPT_m64, options::OPT_mx32,
333                                options::OPT_m32, options::OPT_m16)) {
334     llvm::Triple::ArchType AT = llvm::Triple::UnknownArch;
335 
336     if (A->getOption().matches(options::OPT_m64)) {
337       AT = Target.get64BitArchVariant().getArch();
338       if (Target.getEnvironment() == llvm::Triple::GNUX32)
339         Target.setEnvironment(llvm::Triple::GNU);
340     } else if (A->getOption().matches(options::OPT_mx32) &&
341                Target.get64BitArchVariant().getArch() == llvm::Triple::x86_64) {
342       AT = llvm::Triple::x86_64;
343       Target.setEnvironment(llvm::Triple::GNUX32);
344     } else if (A->getOption().matches(options::OPT_m32)) {
345       AT = Target.get32BitArchVariant().getArch();
346       if (Target.getEnvironment() == llvm::Triple::GNUX32)
347         Target.setEnvironment(llvm::Triple::GNU);
348     } else if (A->getOption().matches(options::OPT_m16) &&
349                Target.get32BitArchVariant().getArch() == llvm::Triple::x86) {
350       AT = llvm::Triple::x86;
351       Target.setEnvironment(llvm::Triple::CODE16);
352     }
353 
354     if (AT != llvm::Triple::UnknownArch && AT != Target.getArch())
355       Target.setArch(AT);
356   }
357 
358   return Target;
359 }
360 
361 Compilation *Driver::BuildCompilation(ArrayRef<const char *> ArgList) {
362   llvm::PrettyStackTraceString CrashInfo("Compilation construction");
363 
364   // FIXME: Handle environment options which affect driver behavior, somewhere
365   // (client?). GCC_EXEC_PREFIX, LPATH, CC_PRINT_OPTIONS.
366 
367   if (char *env = ::getenv("COMPILER_PATH")) {
368     StringRef CompilerPath = env;
369     while (!CompilerPath.empty()) {
370       std::pair<StringRef, StringRef> Split =
371           CompilerPath.split(llvm::sys::EnvPathSeparator);
372       PrefixDirs.push_back(Split.first);
373       CompilerPath = Split.second;
374     }
375   }
376 
377   // We look for the driver mode option early, because the mode can affect
378   // how other options are parsed.
379   ParseDriverMode(ArgList.slice(1));
380 
381   // FIXME: What are we going to do with -V and -b?
382 
383   // FIXME: This stuff needs to go into the Compilation, not the driver.
384   bool CCCPrintPhases;
385 
386   InputArgList Args = ParseArgStrings(ArgList.slice(1));
387 
388   // Silence driver warnings if requested
389   Diags.setIgnoreAllWarnings(Args.hasArg(options::OPT_w));
390 
391   // -no-canonical-prefixes is used very early in main.
392   Args.ClaimAllArgs(options::OPT_no_canonical_prefixes);
393 
394   // Ignore -pipe.
395   Args.ClaimAllArgs(options::OPT_pipe);
396 
397   // Extract -ccc args.
398   //
399   // FIXME: We need to figure out where this behavior should live. Most of it
400   // should be outside in the client; the parts that aren't should have proper
401   // options, either by introducing new ones or by overloading gcc ones like -V
402   // or -b.
403   CCCPrintPhases = Args.hasArg(options::OPT_ccc_print_phases);
404   CCCPrintBindings = Args.hasArg(options::OPT_ccc_print_bindings);
405   if (const Arg *A = Args.getLastArg(options::OPT_ccc_gcc_name))
406     CCCGenericGCCName = A->getValue();
407   CCCUsePCH =
408       Args.hasFlag(options::OPT_ccc_pch_is_pch, options::OPT_ccc_pch_is_pth);
409   // FIXME: DefaultTargetTriple is used by the target-prefixed calls to as/ld
410   // and getToolChain is const.
411   if (IsCLMode()) {
412     // clang-cl targets MSVC-style Win32.
413     llvm::Triple T(DefaultTargetTriple);
414     T.setOS(llvm::Triple::Win32);
415     T.setEnvironment(llvm::Triple::MSVC);
416     DefaultTargetTriple = T.str();
417   }
418   if (const Arg *A = Args.getLastArg(options::OPT_target))
419     DefaultTargetTriple = A->getValue();
420   if (const Arg *A = Args.getLastArg(options::OPT_ccc_install_dir))
421     Dir = InstalledDir = A->getValue();
422   for (const Arg *A : Args.filtered(options::OPT_B)) {
423     A->claim();
424     PrefixDirs.push_back(A->getValue(0));
425   }
426   if (const Arg *A = Args.getLastArg(options::OPT__sysroot_EQ))
427     SysRoot = A->getValue();
428   if (const Arg *A = Args.getLastArg(options::OPT__dyld_prefix_EQ))
429     DyldPrefix = A->getValue();
430   if (Args.hasArg(options::OPT_nostdlib))
431     UseStdLib = false;
432 
433   if (const Arg *A = Args.getLastArg(options::OPT_resource_dir))
434     ResourceDir = A->getValue();
435 
436   if (const Arg *A = Args.getLastArg(options::OPT_save_temps_EQ)) {
437     SaveTemps = llvm::StringSwitch<SaveTempsMode>(A->getValue())
438                     .Case("cwd", SaveTempsCwd)
439                     .Case("obj", SaveTempsObj)
440                     .Default(SaveTempsCwd);
441   }
442 
443   std::unique_ptr<llvm::opt::InputArgList> UArgs =
444       llvm::make_unique<InputArgList>(std::move(Args));
445 
446   // Perform the default argument translations.
447   DerivedArgList *TranslatedArgs = TranslateInputArgs(*UArgs);
448 
449   // Owned by the host.
450   const ToolChain &TC =
451       getToolChain(*UArgs, computeTargetTriple(DefaultTargetTriple, *UArgs));
452 
453   // The compilation takes ownership of Args.
454   Compilation *C = new Compilation(*this, TC, UArgs.release(), TranslatedArgs);
455 
456   if (!HandleImmediateArgs(*C))
457     return C;
458 
459   // Construct the list of inputs.
460   InputList Inputs;
461   BuildInputs(C->getDefaultToolChain(), *TranslatedArgs, Inputs);
462 
463   // Construct the list of abstract actions to perform for this compilation. On
464   // MachO targets this uses the driver-driver and universal actions.
465   if (TC.getTriple().isOSBinFormatMachO())
466     BuildUniversalActions(C->getDefaultToolChain(), C->getArgs(), Inputs,
467                           C->getActions());
468   else
469     BuildActions(C->getDefaultToolChain(), C->getArgs(), Inputs,
470                  C->getActions());
471 
472   if (CCCPrintPhases) {
473     PrintActions(*C);
474     return C;
475   }
476 
477   BuildJobs(*C);
478 
479   return C;
480 }
481 
482 static void printArgList(raw_ostream &OS, const llvm::opt::ArgList &Args) {
483   llvm::opt::ArgStringList ASL;
484   for (const auto *A : Args)
485     A->render(Args, ASL);
486 
487   for (auto I = ASL.begin(), E = ASL.end(); I != E; ++I) {
488     if (I != ASL.begin())
489       OS << ' ';
490     Command::printArg(OS, *I, true);
491   }
492   OS << '\n';
493 }
494 
495 // When clang crashes, produce diagnostic information including the fully
496 // preprocessed source file(s).  Request that the developer attach the
497 // diagnostic information to a bug report.
498 void Driver::generateCompilationDiagnostics(Compilation &C,
499                                             const Command &FailingCommand) {
500   if (C.getArgs().hasArg(options::OPT_fno_crash_diagnostics))
501     return;
502 
503   // Don't try to generate diagnostics for link or dsymutil jobs.
504   if (FailingCommand.getCreator().isLinkJob() ||
505       FailingCommand.getCreator().isDsymutilJob())
506     return;
507 
508   // Print the version of the compiler.
509   PrintVersion(C, llvm::errs());
510 
511   Diag(clang::diag::note_drv_command_failed_diag_msg)
512       << "PLEASE submit a bug report to " BUG_REPORT_URL " and include the "
513          "crash backtrace, preprocessed source, and associated run script.";
514 
515   // Suppress driver output and emit preprocessor output to temp file.
516   Mode = CPPMode;
517   CCGenDiagnostics = true;
518 
519   // Save the original job command(s).
520   Command Cmd = FailingCommand;
521 
522   // Keep track of whether we produce any errors while trying to produce
523   // preprocessed sources.
524   DiagnosticErrorTrap Trap(Diags);
525 
526   // Suppress tool output.
527   C.initCompilationForDiagnostics();
528 
529   // Construct the list of inputs.
530   InputList Inputs;
531   BuildInputs(C.getDefaultToolChain(), C.getArgs(), Inputs);
532 
533   for (InputList::iterator it = Inputs.begin(), ie = Inputs.end(); it != ie;) {
534     bool IgnoreInput = false;
535 
536     // Ignore input from stdin or any inputs that cannot be preprocessed.
537     // Check type first as not all linker inputs have a value.
538     if (types::getPreprocessedType(it->first) == types::TY_INVALID) {
539       IgnoreInput = true;
540     } else if (!strcmp(it->second->getValue(), "-")) {
541       Diag(clang::diag::note_drv_command_failed_diag_msg)
542           << "Error generating preprocessed source(s) - "
543              "ignoring input from stdin.";
544       IgnoreInput = true;
545     }
546 
547     if (IgnoreInput) {
548       it = Inputs.erase(it);
549       ie = Inputs.end();
550     } else {
551       ++it;
552     }
553   }
554 
555   if (Inputs.empty()) {
556     Diag(clang::diag::note_drv_command_failed_diag_msg)
557         << "Error generating preprocessed source(s) - "
558            "no preprocessable inputs.";
559     return;
560   }
561 
562   // Don't attempt to generate preprocessed files if multiple -arch options are
563   // used, unless they're all duplicates.
564   llvm::StringSet<> ArchNames;
565   for (const Arg *A : C.getArgs()) {
566     if (A->getOption().matches(options::OPT_arch)) {
567       StringRef ArchName = A->getValue();
568       ArchNames.insert(ArchName);
569     }
570   }
571   if (ArchNames.size() > 1) {
572     Diag(clang::diag::note_drv_command_failed_diag_msg)
573         << "Error generating preprocessed source(s) - cannot generate "
574            "preprocessed source with multiple -arch options.";
575     return;
576   }
577 
578   // Construct the list of abstract actions to perform for this compilation. On
579   // Darwin OSes this uses the driver-driver and builds universal actions.
580   const ToolChain &TC = C.getDefaultToolChain();
581   if (TC.getTriple().isOSBinFormatMachO())
582     BuildUniversalActions(TC, C.getArgs(), Inputs, C.getActions());
583   else
584     BuildActions(TC, C.getArgs(), Inputs, C.getActions());
585 
586   BuildJobs(C);
587 
588   // If there were errors building the compilation, quit now.
589   if (Trap.hasErrorOccurred()) {
590     Diag(clang::diag::note_drv_command_failed_diag_msg)
591         << "Error generating preprocessed source(s).";
592     return;
593   }
594 
595   // Generate preprocessed output.
596   SmallVector<std::pair<int, const Command *>, 4> FailingCommands;
597   C.ExecuteJobs(C.getJobs(), FailingCommands);
598 
599   // If any of the preprocessing commands failed, clean up and exit.
600   if (!FailingCommands.empty()) {
601     if (!isSaveTempsEnabled())
602       C.CleanupFileList(C.getTempFiles(), true);
603 
604     Diag(clang::diag::note_drv_command_failed_diag_msg)
605         << "Error generating preprocessed source(s).";
606     return;
607   }
608 
609   const ArgStringList &TempFiles = C.getTempFiles();
610   if (TempFiles.empty()) {
611     Diag(clang::diag::note_drv_command_failed_diag_msg)
612         << "Error generating preprocessed source(s).";
613     return;
614   }
615 
616   Diag(clang::diag::note_drv_command_failed_diag_msg)
617       << "\n********************\n\n"
618          "PLEASE ATTACH THE FOLLOWING FILES TO THE BUG REPORT:\n"
619          "Preprocessed source(s) and associated run script(s) are located at:";
620 
621   SmallString<128> VFS;
622   for (const char *TempFile : TempFiles) {
623     Diag(clang::diag::note_drv_command_failed_diag_msg) << TempFile;
624     if (StringRef(TempFile).endswith(".cache")) {
625       // In some cases (modules) we'll dump extra data to help with reproducing
626       // the crash into a directory next to the output.
627       VFS = llvm::sys::path::filename(TempFile);
628       llvm::sys::path::append(VFS, "vfs", "vfs.yaml");
629     }
630   }
631 
632   // Assume associated files are based off of the first temporary file.
633   CrashReportInfo CrashInfo(TempFiles[0], VFS);
634 
635   std::string Script = CrashInfo.Filename.rsplit('.').first.str() + ".sh";
636   std::error_code EC;
637   llvm::raw_fd_ostream ScriptOS(Script, EC, llvm::sys::fs::F_Excl);
638   if (EC) {
639     Diag(clang::diag::note_drv_command_failed_diag_msg)
640         << "Error generating run script: " + Script + " " + EC.message();
641   } else {
642     ScriptOS << "# Crash reproducer for " << getClangFullVersion() << "\n"
643              << "# Driver args: ";
644     printArgList(ScriptOS, C.getInputArgs());
645     ScriptOS << "# Original command: ";
646     Cmd.Print(ScriptOS, "\n", /*Quote=*/true);
647     Cmd.Print(ScriptOS, "\n", /*Quote=*/true, &CrashInfo);
648     Diag(clang::diag::note_drv_command_failed_diag_msg) << Script;
649   }
650 
651   for (const auto &A : C.getArgs().filtered(options::OPT_frewrite_map_file,
652                                             options::OPT_frewrite_map_file_EQ))
653     Diag(clang::diag::note_drv_command_failed_diag_msg) << A->getValue();
654 
655   Diag(clang::diag::note_drv_command_failed_diag_msg)
656       << "\n\n********************";
657 }
658 
659 void Driver::setUpResponseFiles(Compilation &C, Command &Cmd) {
660   // Since argumentsFitWithinSystemLimits() may underestimate system's capacity
661   // if the tool does not support response files, there is a chance/ that things
662   // will just work without a response file, so we silently just skip it.
663   if (Cmd.getCreator().getResponseFilesSupport() == Tool::RF_None ||
664       llvm::sys::argumentsFitWithinSystemLimits(Cmd.getArguments()))
665     return;
666 
667   std::string TmpName = GetTemporaryPath("response", "txt");
668   Cmd.setResponseFile(
669       C.addTempFile(C.getArgs().MakeArgString(TmpName.c_str())));
670 }
671 
672 int Driver::ExecuteCompilation(
673     Compilation &C,
674     SmallVectorImpl<std::pair<int, const Command *>> &FailingCommands) {
675   // Just print if -### was present.
676   if (C.getArgs().hasArg(options::OPT__HASH_HASH_HASH)) {
677     C.getJobs().Print(llvm::errs(), "\n", true);
678     return 0;
679   }
680 
681   // If there were errors building the compilation, quit now.
682   if (Diags.hasErrorOccurred())
683     return 1;
684 
685   // Set up response file names for each command, if necessary
686   for (auto &Job : C.getJobs())
687     setUpResponseFiles(C, Job);
688 
689   C.ExecuteJobs(C.getJobs(), FailingCommands);
690 
691   // Remove temp files.
692   C.CleanupFileList(C.getTempFiles());
693 
694   // If the command succeeded, we are done.
695   if (FailingCommands.empty())
696     return 0;
697 
698   // Otherwise, remove result files and print extra information about abnormal
699   // failures.
700   for (const auto &CmdPair : FailingCommands) {
701     int Res = CmdPair.first;
702     const Command *FailingCommand = CmdPair.second;
703 
704     // Remove result files if we're not saving temps.
705     if (!isSaveTempsEnabled()) {
706       const JobAction *JA = cast<JobAction>(&FailingCommand->getSource());
707       C.CleanupFileMap(C.getResultFiles(), JA, true);
708 
709       // Failure result files are valid unless we crashed.
710       if (Res < 0)
711         C.CleanupFileMap(C.getFailureResultFiles(), JA, true);
712     }
713 
714     // Print extra information about abnormal failures, if possible.
715     //
716     // This is ad-hoc, but we don't want to be excessively noisy. If the result
717     // status was 1, assume the command failed normally. In particular, if it
718     // was the compiler then assume it gave a reasonable error code. Failures
719     // in other tools are less common, and they generally have worse
720     // diagnostics, so always print the diagnostic there.
721     const Tool &FailingTool = FailingCommand->getCreator();
722 
723     if (!FailingCommand->getCreator().hasGoodDiagnostics() || Res != 1) {
724       // FIXME: See FIXME above regarding result code interpretation.
725       if (Res < 0)
726         Diag(clang::diag::err_drv_command_signalled)
727             << FailingTool.getShortName();
728       else
729         Diag(clang::diag::err_drv_command_failed) << FailingTool.getShortName()
730                                                   << Res;
731     }
732   }
733   return 0;
734 }
735 
736 void Driver::PrintHelp(bool ShowHidden) const {
737   unsigned IncludedFlagsBitmask;
738   unsigned ExcludedFlagsBitmask;
739   std::tie(IncludedFlagsBitmask, ExcludedFlagsBitmask) =
740       getIncludeExcludeOptionFlagMasks();
741 
742   ExcludedFlagsBitmask |= options::NoDriverOption;
743   if (!ShowHidden)
744     ExcludedFlagsBitmask |= HelpHidden;
745 
746   getOpts().PrintHelp(llvm::outs(), Name.c_str(), DriverTitle.c_str(),
747                       IncludedFlagsBitmask, ExcludedFlagsBitmask);
748 }
749 
750 void Driver::PrintVersion(const Compilation &C, raw_ostream &OS) const {
751   // FIXME: The following handlers should use a callback mechanism, we don't
752   // know what the client would like to do.
753   OS << getClangFullVersion() << '\n';
754   const ToolChain &TC = C.getDefaultToolChain();
755   OS << "Target: " << TC.getTripleString() << '\n';
756 
757   // Print the threading model.
758   if (Arg *A = C.getArgs().getLastArg(options::OPT_mthread_model)) {
759     // Don't print if the ToolChain would have barfed on it already
760     if (TC.isThreadModelSupported(A->getValue()))
761       OS << "Thread model: " << A->getValue();
762   } else
763     OS << "Thread model: " << TC.getThreadModel();
764   OS << '\n';
765 
766   // Print out the install directory.
767   OS << "InstalledDir: " << InstalledDir << '\n';
768 }
769 
770 /// PrintDiagnosticCategories - Implement the --print-diagnostic-categories
771 /// option.
772 static void PrintDiagnosticCategories(raw_ostream &OS) {
773   // Skip the empty category.
774   for (unsigned i = 1, max = DiagnosticIDs::getNumberOfCategories(); i != max;
775        ++i)
776     OS << i << ',' << DiagnosticIDs::getCategoryNameFromID(i) << '\n';
777 }
778 
779 bool Driver::HandleImmediateArgs(const Compilation &C) {
780   // The order these options are handled in gcc is all over the place, but we
781   // don't expect inconsistencies w.r.t. that to matter in practice.
782 
783   if (C.getArgs().hasArg(options::OPT_dumpmachine)) {
784     llvm::outs() << C.getDefaultToolChain().getTripleString() << '\n';
785     return false;
786   }
787 
788   if (C.getArgs().hasArg(options::OPT_dumpversion)) {
789     // Since -dumpversion is only implemented for pedantic GCC compatibility, we
790     // return an answer which matches our definition of __VERSION__.
791     //
792     // If we want to return a more correct answer some day, then we should
793     // introduce a non-pedantically GCC compatible mode to Clang in which we
794     // provide sensible definitions for -dumpversion, __VERSION__, etc.
795     llvm::outs() << "4.2.1\n";
796     return false;
797   }
798 
799   if (C.getArgs().hasArg(options::OPT__print_diagnostic_categories)) {
800     PrintDiagnosticCategories(llvm::outs());
801     return false;
802   }
803 
804   if (C.getArgs().hasArg(options::OPT_help) ||
805       C.getArgs().hasArg(options::OPT__help_hidden)) {
806     PrintHelp(C.getArgs().hasArg(options::OPT__help_hidden));
807     return false;
808   }
809 
810   if (C.getArgs().hasArg(options::OPT__version)) {
811     // Follow gcc behavior and use stdout for --version and stderr for -v.
812     PrintVersion(C, llvm::outs());
813     return false;
814   }
815 
816   if (C.getArgs().hasArg(options::OPT_v) ||
817       C.getArgs().hasArg(options::OPT__HASH_HASH_HASH)) {
818     PrintVersion(C, llvm::errs());
819     SuppressMissingInputWarning = true;
820   }
821 
822   const ToolChain &TC = C.getDefaultToolChain();
823 
824   if (C.getArgs().hasArg(options::OPT_v))
825     TC.printVerboseInfo(llvm::errs());
826 
827   if (C.getArgs().hasArg(options::OPT_print_search_dirs)) {
828     llvm::outs() << "programs: =";
829     bool separator = false;
830     for (const std::string &Path : TC.getProgramPaths()) {
831       if (separator)
832         llvm::outs() << ':';
833       llvm::outs() << Path;
834       separator = true;
835     }
836     llvm::outs() << "\n";
837     llvm::outs() << "libraries: =" << ResourceDir;
838 
839     StringRef sysroot = C.getSysRoot();
840 
841     for (const std::string &Path : TC.getFilePaths()) {
842       // Always print a separator. ResourceDir was the first item shown.
843       llvm::outs() << ':';
844       // Interpretation of leading '=' is needed only for NetBSD.
845       if (Path[0] == '=')
846         llvm::outs() << sysroot << Path.substr(1);
847       else
848         llvm::outs() << Path;
849     }
850     llvm::outs() << "\n";
851     return false;
852   }
853 
854   // FIXME: The following handlers should use a callback mechanism, we don't
855   // know what the client would like to do.
856   if (Arg *A = C.getArgs().getLastArg(options::OPT_print_file_name_EQ)) {
857     llvm::outs() << GetFilePath(A->getValue(), TC) << "\n";
858     return false;
859   }
860 
861   if (Arg *A = C.getArgs().getLastArg(options::OPT_print_prog_name_EQ)) {
862     llvm::outs() << GetProgramPath(A->getValue(), TC) << "\n";
863     return false;
864   }
865 
866   if (C.getArgs().hasArg(options::OPT_print_libgcc_file_name)) {
867     llvm::outs() << GetFilePath("libgcc.a", TC) << "\n";
868     return false;
869   }
870 
871   if (C.getArgs().hasArg(options::OPT_print_multi_lib)) {
872     for (const Multilib &Multilib : TC.getMultilibs())
873       llvm::outs() << Multilib << "\n";
874     return false;
875   }
876 
877   if (C.getArgs().hasArg(options::OPT_print_multi_directory)) {
878     for (const Multilib &Multilib : TC.getMultilibs()) {
879       if (Multilib.gccSuffix().empty())
880         llvm::outs() << ".\n";
881       else {
882         StringRef Suffix(Multilib.gccSuffix());
883         assert(Suffix.front() == '/');
884         llvm::outs() << Suffix.substr(1) << "\n";
885       }
886     }
887     return false;
888   }
889   return true;
890 }
891 
892 // Display an action graph human-readably.  Action A is the "sink" node
893 // and latest-occuring action. Traversal is in pre-order, visiting the
894 // inputs to each action before printing the action itself.
895 static unsigned PrintActions1(const Compilation &C, Action *A,
896                               std::map<Action *, unsigned> &Ids) {
897   if (Ids.count(A)) // A was already visited.
898     return Ids[A];
899 
900   std::string str;
901   llvm::raw_string_ostream os(str);
902 
903   os << Action::getClassName(A->getKind()) << ", ";
904   if (InputAction *IA = dyn_cast<InputAction>(A)) {
905     os << "\"" << IA->getInputArg().getValue() << "\"";
906   } else if (BindArchAction *BIA = dyn_cast<BindArchAction>(A)) {
907     os << '"' << BIA->getArchName() << '"' << ", {"
908        << PrintActions1(C, *BIA->begin(), Ids) << "}";
909   } else if (CudaDeviceAction *CDA = dyn_cast<CudaDeviceAction>(A)) {
910     os << '"' << CDA->getGpuArchName() << '"' << ", {"
911        << PrintActions1(C, *CDA->begin(), Ids) << "}";
912   } else {
913     ActionList *AL;
914     if (CudaHostAction *CHA = dyn_cast<CudaHostAction>(A)) {
915       os << "{" << PrintActions1(C, *CHA->begin(), Ids) << "}"
916          << ", gpu binaries ";
917       AL = &CHA->getDeviceActions();
918     } else
919       AL = &A->getInputs();
920 
921     const char *Prefix = "{";
922     for (Action *PreRequisite : *AL) {
923       os << Prefix << PrintActions1(C, PreRequisite, Ids);
924       Prefix = ", ";
925     }
926     os << "}";
927   }
928 
929   unsigned Id = Ids.size();
930   Ids[A] = Id;
931   llvm::errs() << Id << ": " << os.str() << ", "
932                << types::getTypeName(A->getType()) << "\n";
933 
934   return Id;
935 }
936 
937 // Print the action graphs in a compilation C.
938 // For example "clang -c file1.c file2.c" is composed of two subgraphs.
939 void Driver::PrintActions(const Compilation &C) const {
940   std::map<Action *, unsigned> Ids;
941   for (Action *A : C.getActions())
942     PrintActions1(C, A, Ids);
943 }
944 
945 /// \brief Check whether the given input tree contains any compilation or
946 /// assembly actions.
947 static bool ContainsCompileOrAssembleAction(const Action *A) {
948   if (isa<CompileJobAction>(A) || isa<BackendJobAction>(A) ||
949       isa<AssembleJobAction>(A))
950     return true;
951 
952   for (Action::const_iterator it = A->begin(), ie = A->end(); it != ie; ++it)
953     if (ContainsCompileOrAssembleAction(*it))
954       return true;
955 
956   return false;
957 }
958 
959 void Driver::BuildUniversalActions(const ToolChain &TC, DerivedArgList &Args,
960                                    const InputList &BAInputs,
961                                    ActionList &Actions) const {
962   llvm::PrettyStackTraceString CrashInfo("Building universal build actions");
963   // Collect the list of architectures. Duplicates are allowed, but should only
964   // be handled once (in the order seen).
965   llvm::StringSet<> ArchNames;
966   SmallVector<const char *, 4> Archs;
967   for (Arg *A : Args) {
968     if (A->getOption().matches(options::OPT_arch)) {
969       // Validate the option here; we don't save the type here because its
970       // particular spelling may participate in other driver choices.
971       llvm::Triple::ArchType Arch =
972           tools::darwin::getArchTypeForMachOArchName(A->getValue());
973       if (Arch == llvm::Triple::UnknownArch) {
974         Diag(clang::diag::err_drv_invalid_arch_name) << A->getAsString(Args);
975         continue;
976       }
977 
978       A->claim();
979       if (ArchNames.insert(A->getValue()).second)
980         Archs.push_back(A->getValue());
981     }
982   }
983 
984   // When there is no explicit arch for this platform, make sure we still bind
985   // the architecture (to the default) so that -Xarch_ is handled correctly.
986   if (!Archs.size())
987     Archs.push_back(Args.MakeArgString(TC.getDefaultUniversalArchName()));
988 
989   ActionList SingleActions;
990   BuildActions(TC, Args, BAInputs, SingleActions);
991 
992   // Add in arch bindings for every top level action, as well as lipo and
993   // dsymutil steps if needed.
994   for (unsigned i = 0, e = SingleActions.size(); i != e; ++i) {
995     Action *Act = SingleActions[i];
996 
997     // Make sure we can lipo this kind of output. If not (and it is an actual
998     // output) then we disallow, since we can't create an output file with the
999     // right name without overwriting it. We could remove this oddity by just
1000     // changing the output names to include the arch, which would also fix
1001     // -save-temps. Compatibility wins for now.
1002 
1003     if (Archs.size() > 1 && !types::canLipoType(Act->getType()))
1004       Diag(clang::diag::err_drv_invalid_output_with_multiple_archs)
1005           << types::getTypeName(Act->getType());
1006 
1007     ActionList Inputs;
1008     for (unsigned i = 0, e = Archs.size(); i != e; ++i) {
1009       Inputs.push_back(
1010           new BindArchAction(std::unique_ptr<Action>(Act), Archs[i]));
1011       if (i != 0)
1012         Inputs.back()->setOwnsInputs(false);
1013     }
1014 
1015     // Lipo if necessary, we do it this way because we need to set the arch flag
1016     // so that -Xarch_ gets overwritten.
1017     if (Inputs.size() == 1 || Act->getType() == types::TY_Nothing)
1018       Actions.append(Inputs.begin(), Inputs.end());
1019     else
1020       Actions.push_back(new LipoJobAction(Inputs, Act->getType()));
1021 
1022     // Handle debug info queries.
1023     Arg *A = Args.getLastArg(options::OPT_g_Group);
1024     if (A && !A->getOption().matches(options::OPT_g0) &&
1025         !A->getOption().matches(options::OPT_gstabs) &&
1026         ContainsCompileOrAssembleAction(Actions.back())) {
1027 
1028       // Add a 'dsymutil' step if necessary, when debug info is enabled and we
1029       // have a compile input. We need to run 'dsymutil' ourselves in such cases
1030       // because the debug info will refer to a temporary object file which
1031       // will be removed at the end of the compilation process.
1032       if (Act->getType() == types::TY_Image) {
1033         ActionList Inputs;
1034         Inputs.push_back(Actions.back());
1035         Actions.pop_back();
1036         Actions.push_back(new DsymutilJobAction(Inputs, types::TY_dSYM));
1037       }
1038 
1039       // Verify the debug info output.
1040       if (Args.hasArg(options::OPT_verify_debug_info)) {
1041         std::unique_ptr<Action> VerifyInput(Actions.back());
1042         Actions.pop_back();
1043         Actions.push_back(new VerifyDebugInfoJobAction(std::move(VerifyInput),
1044                                                        types::TY_Nothing));
1045       }
1046     }
1047   }
1048 }
1049 
1050 /// \brief Check that the file referenced by Value exists. If it doesn't,
1051 /// issue a diagnostic and return false.
1052 static bool DiagnoseInputExistence(const Driver &D, const DerivedArgList &Args,
1053                                    StringRef Value) {
1054   if (!D.getCheckInputsExist())
1055     return true;
1056 
1057   // stdin always exists.
1058   if (Value == "-")
1059     return true;
1060 
1061   SmallString<64> Path(Value);
1062   if (Arg *WorkDir = Args.getLastArg(options::OPT_working_directory)) {
1063     if (!llvm::sys::path::is_absolute(Path)) {
1064       SmallString<64> Directory(WorkDir->getValue());
1065       llvm::sys::path::append(Directory, Value);
1066       Path.assign(Directory);
1067     }
1068   }
1069 
1070   if (llvm::sys::fs::exists(Twine(Path)))
1071     return true;
1072 
1073   if (D.IsCLMode() && !llvm::sys::path::is_absolute(Twine(Path)) &&
1074       llvm::sys::Process::FindInEnvPath("LIB", Value))
1075     return true;
1076 
1077   D.Diag(clang::diag::err_drv_no_such_file) << Path;
1078   return false;
1079 }
1080 
1081 // Construct a the list of inputs and their types.
1082 void Driver::BuildInputs(const ToolChain &TC, DerivedArgList &Args,
1083                          InputList &Inputs) const {
1084   // Track the current user specified (-x) input. We also explicitly track the
1085   // argument used to set the type; we only want to claim the type when we
1086   // actually use it, so we warn about unused -x arguments.
1087   types::ID InputType = types::TY_Nothing;
1088   Arg *InputTypeArg = nullptr;
1089 
1090   // The last /TC or /TP option sets the input type to C or C++ globally.
1091   if (Arg *TCTP = Args.getLastArgNoClaim(options::OPT__SLASH_TC,
1092                                          options::OPT__SLASH_TP)) {
1093     InputTypeArg = TCTP;
1094     InputType = TCTP->getOption().matches(options::OPT__SLASH_TC)
1095                     ? types::TY_C
1096                     : types::TY_CXX;
1097 
1098     arg_iterator it =
1099         Args.filtered_begin(options::OPT__SLASH_TC, options::OPT__SLASH_TP);
1100     const arg_iterator ie = Args.filtered_end();
1101     Arg *Previous = *it++;
1102     bool ShowNote = false;
1103     while (it != ie) {
1104       Diag(clang::diag::warn_drv_overriding_flag_option)
1105           << Previous->getSpelling() << (*it)->getSpelling();
1106       Previous = *it++;
1107       ShowNote = true;
1108     }
1109     if (ShowNote)
1110       Diag(clang::diag::note_drv_t_option_is_global);
1111 
1112     // No driver mode exposes -x and /TC or /TP; we don't support mixing them.
1113     assert(!Args.hasArg(options::OPT_x) && "-x and /TC or /TP is not allowed");
1114   }
1115 
1116   for (Arg *A : Args) {
1117     if (A->getOption().getKind() == Option::InputClass) {
1118       const char *Value = A->getValue();
1119       types::ID Ty = types::TY_INVALID;
1120 
1121       // Infer the input type if necessary.
1122       if (InputType == types::TY_Nothing) {
1123         // If there was an explicit arg for this, claim it.
1124         if (InputTypeArg)
1125           InputTypeArg->claim();
1126 
1127         // stdin must be handled specially.
1128         if (memcmp(Value, "-", 2) == 0) {
1129           // If running with -E, treat as a C input (this changes the builtin
1130           // macros, for example). This may be overridden by -ObjC below.
1131           //
1132           // Otherwise emit an error but still use a valid type to avoid
1133           // spurious errors (e.g., no inputs).
1134           if (!Args.hasArgNoClaim(options::OPT_E) && !CCCIsCPP())
1135             Diag(IsCLMode() ? clang::diag::err_drv_unknown_stdin_type_clang_cl
1136                             : clang::diag::err_drv_unknown_stdin_type);
1137           Ty = types::TY_C;
1138         } else {
1139           // Otherwise lookup by extension.
1140           // Fallback is C if invoked as C preprocessor or Object otherwise.
1141           // We use a host hook here because Darwin at least has its own
1142           // idea of what .s is.
1143           if (const char *Ext = strrchr(Value, '.'))
1144             Ty = TC.LookupTypeForExtension(Ext + 1);
1145 
1146           if (Ty == types::TY_INVALID) {
1147             if (CCCIsCPP())
1148               Ty = types::TY_C;
1149             else
1150               Ty = types::TY_Object;
1151           }
1152 
1153           // If the driver is invoked as C++ compiler (like clang++ or c++) it
1154           // should autodetect some input files as C++ for g++ compatibility.
1155           if (CCCIsCXX()) {
1156             types::ID OldTy = Ty;
1157             Ty = types::lookupCXXTypeForCType(Ty);
1158 
1159             if (Ty != OldTy)
1160               Diag(clang::diag::warn_drv_treating_input_as_cxx)
1161                   << getTypeName(OldTy) << getTypeName(Ty);
1162           }
1163         }
1164 
1165         // -ObjC and -ObjC++ override the default language, but only for "source
1166         // files". We just treat everything that isn't a linker input as a
1167         // source file.
1168         //
1169         // FIXME: Clean this up if we move the phase sequence into the type.
1170         if (Ty != types::TY_Object) {
1171           if (Args.hasArg(options::OPT_ObjC))
1172             Ty = types::TY_ObjC;
1173           else if (Args.hasArg(options::OPT_ObjCXX))
1174             Ty = types::TY_ObjCXX;
1175         }
1176       } else {
1177         assert(InputTypeArg && "InputType set w/o InputTypeArg");
1178         if (!InputTypeArg->getOption().matches(options::OPT_x)) {
1179           // If emulating cl.exe, make sure that /TC and /TP don't affect input
1180           // object files.
1181           const char *Ext = strrchr(Value, '.');
1182           if (Ext && TC.LookupTypeForExtension(Ext + 1) == types::TY_Object)
1183             Ty = types::TY_Object;
1184         }
1185         if (Ty == types::TY_INVALID) {
1186           Ty = InputType;
1187           InputTypeArg->claim();
1188         }
1189       }
1190 
1191       if (DiagnoseInputExistence(*this, Args, Value))
1192         Inputs.push_back(std::make_pair(Ty, A));
1193 
1194     } else if (A->getOption().matches(options::OPT__SLASH_Tc)) {
1195       StringRef Value = A->getValue();
1196       if (DiagnoseInputExistence(*this, Args, Value)) {
1197         Arg *InputArg = MakeInputArg(Args, Opts, A->getValue());
1198         Inputs.push_back(std::make_pair(types::TY_C, InputArg));
1199       }
1200       A->claim();
1201     } else if (A->getOption().matches(options::OPT__SLASH_Tp)) {
1202       StringRef Value = A->getValue();
1203       if (DiagnoseInputExistence(*this, Args, Value)) {
1204         Arg *InputArg = MakeInputArg(Args, Opts, A->getValue());
1205         Inputs.push_back(std::make_pair(types::TY_CXX, InputArg));
1206       }
1207       A->claim();
1208     } else if (A->getOption().hasFlag(options::LinkerInput)) {
1209       // Just treat as object type, we could make a special type for this if
1210       // necessary.
1211       Inputs.push_back(std::make_pair(types::TY_Object, A));
1212 
1213     } else if (A->getOption().matches(options::OPT_x)) {
1214       InputTypeArg = A;
1215       InputType = types::lookupTypeForTypeSpecifier(A->getValue());
1216       A->claim();
1217 
1218       // Follow gcc behavior and treat as linker input for invalid -x
1219       // options. Its not clear why we shouldn't just revert to unknown; but
1220       // this isn't very important, we might as well be bug compatible.
1221       if (!InputType) {
1222         Diag(clang::diag::err_drv_unknown_language) << A->getValue();
1223         InputType = types::TY_Object;
1224       }
1225     }
1226   }
1227   if (CCCIsCPP() && Inputs.empty()) {
1228     // If called as standalone preprocessor, stdin is processed
1229     // if no other input is present.
1230     Arg *A = MakeInputArg(Args, Opts, "-");
1231     Inputs.push_back(std::make_pair(types::TY_C, A));
1232   }
1233 }
1234 
1235 // For each unique --cuda-gpu-arch= argument creates a TY_CUDA_DEVICE input
1236 // action and then wraps each in CudaDeviceAction paired with appropriate GPU
1237 // arch name. If we're only building device-side code, each action remains
1238 // independent. Otherwise we pass device-side actions as inputs to a new
1239 // CudaHostAction which combines both host and device side actions.
1240 static std::unique_ptr<Action>
1241 buildCudaActions(const Driver &D, const ToolChain &TC, DerivedArgList &Args,
1242                  const Arg *InputArg, std::unique_ptr<Action> HostAction,
1243                  ActionList &Actions) {
1244 
1245   // Collect all cuda_gpu_arch parameters, removing duplicates.
1246   SmallVector<const char *, 4> GpuArchList;
1247   llvm::StringSet<> GpuArchNames;
1248   for (Arg *A : Args) {
1249     if (A->getOption().matches(options::OPT_cuda_gpu_arch_EQ)) {
1250       A->claim();
1251       if (GpuArchNames.insert(A->getValue()).second)
1252         GpuArchList.push_back(A->getValue());
1253     }
1254   }
1255 
1256   // Default to sm_20 which is the lowest common denominator for supported GPUs.
1257   // sm_20 code should work correctly, if suboptimally, on all newer GPUs.
1258   if (GpuArchList.empty())
1259     GpuArchList.push_back("sm_20");
1260 
1261   // Replicate inputs for each GPU architecture.
1262   Driver::InputList CudaDeviceInputs;
1263   for (unsigned I = 0, E = GpuArchList.size(); I != E; ++I)
1264     CudaDeviceInputs.push_back(std::make_pair(types::TY_CUDA_DEVICE, InputArg));
1265 
1266   // Build actions for all device inputs.
1267   ActionList CudaDeviceActions;
1268   D.BuildActions(TC, Args, CudaDeviceInputs, CudaDeviceActions);
1269   assert(GpuArchList.size() == CudaDeviceActions.size() &&
1270          "Failed to create actions for all devices");
1271 
1272   // Check whether any of device actions stopped before they could generate PTX.
1273   bool PartialCompilation = false;
1274   for (unsigned I = 0, E = GpuArchList.size(); I != E; ++I) {
1275     if (CudaDeviceActions[I]->getKind() != Action::BackendJobClass) {
1276       PartialCompilation = true;
1277       break;
1278     }
1279   }
1280 
1281   // Figure out which NVPTX triple to use for device-side compilation based on
1282   // whether host is 64-bit.
1283   const char *DeviceTriple = TC.getTriple().isArch64Bit()
1284                                  ? "nvptx64-nvidia-cuda"
1285                                  : "nvptx-nvidia-cuda";
1286 
1287   // Figure out what to do with device actions -- pass them as inputs to the
1288   // host action or run each of them independently.
1289   bool DeviceOnlyCompilation = Args.hasArg(options::OPT_cuda_device_only);
1290   if (PartialCompilation || DeviceOnlyCompilation) {
1291     // In case of partial or device-only compilation results of device actions
1292     // are not consumed by the host action device actions have to be added to
1293     // top-level actions list with AtTopLevel=true and run independently.
1294 
1295     // -o is ambiguous if we have more than one top-level action.
1296     if (Args.hasArg(options::OPT_o) &&
1297         (!DeviceOnlyCompilation || GpuArchList.size() > 1)) {
1298       D.Diag(clang::diag::err_drv_output_argument_with_multiple_files);
1299       return nullptr;
1300     }
1301 
1302     for (unsigned I = 0, E = GpuArchList.size(); I != E; ++I)
1303       Actions.push_back(new CudaDeviceAction(
1304           std::unique_ptr<Action>(CudaDeviceActions[I]), GpuArchList[I],
1305           DeviceTriple, /* AtTopLevel */ true));
1306     // Kill host action in case of device-only compilation.
1307     if (DeviceOnlyCompilation)
1308       HostAction.reset(nullptr);
1309     return HostAction;
1310   }
1311 
1312   // Outputs of device actions during complete CUDA compilation get created
1313   // with AtTopLevel=false and become inputs for the host action.
1314   ActionList DeviceActions;
1315   for (unsigned I = 0, E = GpuArchList.size(); I != E; ++I)
1316     DeviceActions.push_back(new CudaDeviceAction(
1317         std::unique_ptr<Action>(CudaDeviceActions[I]), GpuArchList[I],
1318         DeviceTriple, /* AtTopLevel */ false));
1319   // Return a new host action that incorporates original host action and all
1320   // device actions.
1321   return std::unique_ptr<Action>(
1322       new CudaHostAction(std::move(HostAction), DeviceActions));
1323 }
1324 
1325 void Driver::BuildActions(const ToolChain &TC, DerivedArgList &Args,
1326                           const InputList &Inputs, ActionList &Actions) const {
1327   llvm::PrettyStackTraceString CrashInfo("Building compilation actions");
1328 
1329   if (!SuppressMissingInputWarning && Inputs.empty()) {
1330     Diag(clang::diag::err_drv_no_input_files);
1331     return;
1332   }
1333 
1334   Arg *FinalPhaseArg;
1335   phases::ID FinalPhase = getFinalPhase(Args, &FinalPhaseArg);
1336 
1337   if (FinalPhase == phases::Link && Args.hasArg(options::OPT_emit_llvm)) {
1338     Diag(clang::diag::err_drv_emit_llvm_link);
1339   }
1340 
1341   // Reject -Z* at the top level, these options should never have been exposed
1342   // by gcc.
1343   if (Arg *A = Args.getLastArg(options::OPT_Z_Joined))
1344     Diag(clang::diag::err_drv_use_of_Z_option) << A->getAsString(Args);
1345 
1346   // Diagnose misuse of /Fo.
1347   if (Arg *A = Args.getLastArg(options::OPT__SLASH_Fo)) {
1348     StringRef V = A->getValue();
1349     if (Inputs.size() > 1 && !V.empty() &&
1350         !llvm::sys::path::is_separator(V.back())) {
1351       // Check whether /Fo tries to name an output file for multiple inputs.
1352       Diag(clang::diag::err_drv_out_file_argument_with_multiple_sources)
1353           << A->getSpelling() << V;
1354       Args.eraseArg(options::OPT__SLASH_Fo);
1355     }
1356   }
1357 
1358   // Diagnose misuse of /Fa.
1359   if (Arg *A = Args.getLastArg(options::OPT__SLASH_Fa)) {
1360     StringRef V = A->getValue();
1361     if (Inputs.size() > 1 && !V.empty() &&
1362         !llvm::sys::path::is_separator(V.back())) {
1363       // Check whether /Fa tries to name an asm file for multiple inputs.
1364       Diag(clang::diag::err_drv_out_file_argument_with_multiple_sources)
1365           << A->getSpelling() << V;
1366       Args.eraseArg(options::OPT__SLASH_Fa);
1367     }
1368   }
1369 
1370   // Diagnose misuse of /o.
1371   if (Arg *A = Args.getLastArg(options::OPT__SLASH_o)) {
1372     if (A->getValue()[0] == '\0') {
1373       // It has to have a value.
1374       Diag(clang::diag::err_drv_missing_argument) << A->getSpelling() << 1;
1375       Args.eraseArg(options::OPT__SLASH_o);
1376     }
1377   }
1378 
1379   // Construct the actions to perform.
1380   ActionList LinkerInputs;
1381 
1382   llvm::SmallVector<phases::ID, phases::MaxNumberOfPhases> PL;
1383   for (auto &I : Inputs) {
1384     types::ID InputType = I.first;
1385     const Arg *InputArg = I.second;
1386 
1387     PL.clear();
1388     types::getCompilationPhases(InputType, PL);
1389 
1390     // If the first step comes after the final phase we are doing as part of
1391     // this compilation, warn the user about it.
1392     phases::ID InitialPhase = PL[0];
1393     if (InitialPhase > FinalPhase) {
1394       // Claim here to avoid the more general unused warning.
1395       InputArg->claim();
1396 
1397       // Suppress all unused style warnings with -Qunused-arguments
1398       if (Args.hasArg(options::OPT_Qunused_arguments))
1399         continue;
1400 
1401       // Special case when final phase determined by binary name, rather than
1402       // by a command-line argument with a corresponding Arg.
1403       if (CCCIsCPP())
1404         Diag(clang::diag::warn_drv_input_file_unused_by_cpp)
1405             << InputArg->getAsString(Args) << getPhaseName(InitialPhase);
1406       // Special case '-E' warning on a previously preprocessed file to make
1407       // more sense.
1408       else if (InitialPhase == phases::Compile &&
1409                FinalPhase == phases::Preprocess &&
1410                getPreprocessedType(InputType) == types::TY_INVALID)
1411         Diag(clang::diag::warn_drv_preprocessed_input_file_unused)
1412             << InputArg->getAsString(Args) << !!FinalPhaseArg
1413             << (FinalPhaseArg ? FinalPhaseArg->getOption().getName() : "");
1414       else
1415         Diag(clang::diag::warn_drv_input_file_unused)
1416             << InputArg->getAsString(Args) << getPhaseName(InitialPhase)
1417             << !!FinalPhaseArg
1418             << (FinalPhaseArg ? FinalPhaseArg->getOption().getName() : "");
1419       continue;
1420     }
1421 
1422     phases::ID CudaInjectionPhase;
1423     if (isSaveTempsEnabled()) {
1424       // All phases are done independently, inject GPU blobs during compilation
1425       // phase as that's where we generate glue code to init them.
1426       CudaInjectionPhase = phases::Compile;
1427     } else {
1428       // Assumes that clang does everything up until linking phase, so we inject
1429       // cuda device actions at the last step before linking. Otherwise CUDA
1430       // host action forces preprocessor into a separate invocation.
1431       CudaInjectionPhase = FinalPhase;
1432       if (FinalPhase == phases::Link)
1433         for (auto PI = PL.begin(), PE = PL.end(); PI != PE; ++PI) {
1434           auto next = PI + 1;
1435           if (next != PE && *next == phases::Link)
1436             CudaInjectionPhase = *PI;
1437         }
1438     }
1439 
1440     // Build the pipeline for this file.
1441     std::unique_ptr<Action> Current(new InputAction(*InputArg, InputType));
1442     for (SmallVectorImpl<phases::ID>::iterator i = PL.begin(), e = PL.end();
1443          i != e; ++i) {
1444       phases::ID Phase = *i;
1445 
1446       // We are done if this step is past what the user requested.
1447       if (Phase > FinalPhase)
1448         break;
1449 
1450       // Queue linker inputs.
1451       if (Phase == phases::Link) {
1452         assert((i + 1) == e && "linking must be final compilation step.");
1453         LinkerInputs.push_back(Current.release());
1454         break;
1455       }
1456 
1457       // Some types skip the assembler phase (e.g., llvm-bc), but we can't
1458       // encode this in the steps because the intermediate type depends on
1459       // arguments. Just special case here.
1460       if (Phase == phases::Assemble && Current->getType() != types::TY_PP_Asm)
1461         continue;
1462 
1463       // Otherwise construct the appropriate action.
1464       Current = ConstructPhaseAction(TC, Args, Phase, std::move(Current));
1465 
1466       if (InputType == types::TY_CUDA && Phase == CudaInjectionPhase &&
1467           !Args.hasArg(options::OPT_cuda_host_only)) {
1468         Current = buildCudaActions(*this, TC, Args, InputArg,
1469                                    std::move(Current), Actions);
1470         if (!Current)
1471           break;
1472       }
1473 
1474       if (Current->getType() == types::TY_Nothing)
1475         break;
1476     }
1477 
1478     // If we ended with something, add to the output list.
1479     if (Current)
1480       Actions.push_back(Current.release());
1481   }
1482 
1483   // Add a link action if necessary.
1484   if (!LinkerInputs.empty())
1485     Actions.push_back(new LinkJobAction(LinkerInputs, types::TY_Image));
1486 
1487   // If we are linking, claim any options which are obviously only used for
1488   // compilation.
1489   if (FinalPhase == phases::Link && PL.size() == 1) {
1490     Args.ClaimAllArgs(options::OPT_CompileOnly_Group);
1491     Args.ClaimAllArgs(options::OPT_cl_compile_Group);
1492   }
1493 
1494   // Claim ignored clang-cl options.
1495   Args.ClaimAllArgs(options::OPT_cl_ignored_Group);
1496 
1497   // Claim --cuda-host-only arg which may be passed to non-CUDA
1498   // compilations and should not trigger warnings there.
1499   Args.ClaimAllArgs(options::OPT_cuda_host_only);
1500 }
1501 
1502 std::unique_ptr<Action>
1503 Driver::ConstructPhaseAction(const ToolChain &TC, const ArgList &Args,
1504                              phases::ID Phase,
1505                              std::unique_ptr<Action> Input) const {
1506   llvm::PrettyStackTraceString CrashInfo("Constructing phase actions");
1507   // Build the appropriate action.
1508   switch (Phase) {
1509   case phases::Link:
1510     llvm_unreachable("link action invalid here.");
1511   case phases::Preprocess: {
1512     types::ID OutputTy;
1513     // -{M, MM} alter the output type.
1514     if (Args.hasArg(options::OPT_M, options::OPT_MM)) {
1515       OutputTy = types::TY_Dependencies;
1516     } else {
1517       OutputTy = Input->getType();
1518       if (!Args.hasFlag(options::OPT_frewrite_includes,
1519                         options::OPT_fno_rewrite_includes, false) &&
1520           !CCGenDiagnostics)
1521         OutputTy = types::getPreprocessedType(OutputTy);
1522       assert(OutputTy != types::TY_INVALID &&
1523              "Cannot preprocess this input type!");
1524     }
1525     return llvm::make_unique<PreprocessJobAction>(std::move(Input), OutputTy);
1526   }
1527   case phases::Precompile: {
1528     types::ID OutputTy = types::TY_PCH;
1529     if (Args.hasArg(options::OPT_fsyntax_only)) {
1530       // Syntax checks should not emit a PCH file
1531       OutputTy = types::TY_Nothing;
1532     }
1533     return llvm::make_unique<PrecompileJobAction>(std::move(Input), OutputTy);
1534   }
1535   case phases::Compile: {
1536     if (Args.hasArg(options::OPT_fsyntax_only))
1537       return llvm::make_unique<CompileJobAction>(std::move(Input),
1538                                                  types::TY_Nothing);
1539     if (Args.hasArg(options::OPT_rewrite_objc))
1540       return llvm::make_unique<CompileJobAction>(std::move(Input),
1541                                                  types::TY_RewrittenObjC);
1542     if (Args.hasArg(options::OPT_rewrite_legacy_objc))
1543       return llvm::make_unique<CompileJobAction>(std::move(Input),
1544                                                  types::TY_RewrittenLegacyObjC);
1545     if (Args.hasArg(options::OPT__analyze, options::OPT__analyze_auto))
1546       return llvm::make_unique<AnalyzeJobAction>(std::move(Input),
1547                                                  types::TY_Plist);
1548     if (Args.hasArg(options::OPT__migrate))
1549       return llvm::make_unique<MigrateJobAction>(std::move(Input),
1550                                                  types::TY_Remap);
1551     if (Args.hasArg(options::OPT_emit_ast))
1552       return llvm::make_unique<CompileJobAction>(std::move(Input),
1553                                                  types::TY_AST);
1554     if (Args.hasArg(options::OPT_module_file_info))
1555       return llvm::make_unique<CompileJobAction>(std::move(Input),
1556                                                  types::TY_ModuleFile);
1557     if (Args.hasArg(options::OPT_verify_pch))
1558       return llvm::make_unique<VerifyPCHJobAction>(std::move(Input),
1559                                                    types::TY_Nothing);
1560     return llvm::make_unique<CompileJobAction>(std::move(Input),
1561                                                types::TY_LLVM_BC);
1562   }
1563   case phases::Backend: {
1564     if (IsUsingLTO(Args)) {
1565       types::ID Output =
1566           Args.hasArg(options::OPT_S) ? types::TY_LTO_IR : types::TY_LTO_BC;
1567       return llvm::make_unique<BackendJobAction>(std::move(Input), Output);
1568     }
1569     if (Args.hasArg(options::OPT_emit_llvm)) {
1570       types::ID Output =
1571           Args.hasArg(options::OPT_S) ? types::TY_LLVM_IR : types::TY_LLVM_BC;
1572       return llvm::make_unique<BackendJobAction>(std::move(Input), Output);
1573     }
1574     return llvm::make_unique<BackendJobAction>(std::move(Input),
1575                                                types::TY_PP_Asm);
1576   }
1577   case phases::Assemble:
1578     return llvm::make_unique<AssembleJobAction>(std::move(Input),
1579                                                 types::TY_Object);
1580   }
1581 
1582   llvm_unreachable("invalid phase in ConstructPhaseAction");
1583 }
1584 
1585 bool Driver::IsUsingLTO(const ArgList &Args) const {
1586   return Args.hasFlag(options::OPT_flto, options::OPT_fno_lto, false);
1587 }
1588 
1589 void Driver::BuildJobs(Compilation &C) const {
1590   llvm::PrettyStackTraceString CrashInfo("Building compilation jobs");
1591 
1592   Arg *FinalOutput = C.getArgs().getLastArg(options::OPT_o);
1593 
1594   // It is an error to provide a -o option if we are making multiple output
1595   // files.
1596   if (FinalOutput) {
1597     unsigned NumOutputs = 0;
1598     for (const Action *A : C.getActions())
1599       if (A->getType() != types::TY_Nothing)
1600         ++NumOutputs;
1601 
1602     if (NumOutputs > 1) {
1603       Diag(clang::diag::err_drv_output_argument_with_multiple_files);
1604       FinalOutput = nullptr;
1605     }
1606   }
1607 
1608   // Collect the list of architectures.
1609   llvm::StringSet<> ArchNames;
1610   if (C.getDefaultToolChain().getTriple().isOSBinFormatMachO())
1611     for (const Arg *A : C.getArgs())
1612       if (A->getOption().matches(options::OPT_arch))
1613         ArchNames.insert(A->getValue());
1614 
1615   for (Action *A : C.getActions()) {
1616     // If we are linking an image for multiple archs then the linker wants
1617     // -arch_multiple and -final_output <final image name>. Unfortunately, this
1618     // doesn't fit in cleanly because we have to pass this information down.
1619     //
1620     // FIXME: This is a hack; find a cleaner way to integrate this into the
1621     // process.
1622     const char *LinkingOutput = nullptr;
1623     if (isa<LipoJobAction>(A)) {
1624       if (FinalOutput)
1625         LinkingOutput = FinalOutput->getValue();
1626       else
1627         LinkingOutput = getDefaultImageName();
1628     }
1629 
1630     InputInfo II;
1631     BuildJobsForAction(C, A, &C.getDefaultToolChain(),
1632                        /*BoundArch*/ nullptr,
1633                        /*AtTopLevel*/ true,
1634                        /*MultipleArchs*/ ArchNames.size() > 1,
1635                        /*LinkingOutput*/ LinkingOutput, II);
1636   }
1637 
1638   // If the user passed -Qunused-arguments or there were errors, don't warn
1639   // about any unused arguments.
1640   if (Diags.hasErrorOccurred() ||
1641       C.getArgs().hasArg(options::OPT_Qunused_arguments))
1642     return;
1643 
1644   // Claim -### here.
1645   (void)C.getArgs().hasArg(options::OPT__HASH_HASH_HASH);
1646 
1647   // Claim --driver-mode, it was handled earlier.
1648   (void)C.getArgs().hasArg(options::OPT_driver_mode);
1649 
1650   for (Arg *A : C.getArgs()) {
1651     // FIXME: It would be nice to be able to send the argument to the
1652     // DiagnosticsEngine, so that extra values, position, and so on could be
1653     // printed.
1654     if (!A->isClaimed()) {
1655       if (A->getOption().hasFlag(options::NoArgumentUnused))
1656         continue;
1657 
1658       // Suppress the warning automatically if this is just a flag, and it is an
1659       // instance of an argument we already claimed.
1660       const Option &Opt = A->getOption();
1661       if (Opt.getKind() == Option::FlagClass) {
1662         bool DuplicateClaimed = false;
1663 
1664         for (const Arg *AA : C.getArgs().filtered(&Opt)) {
1665           if (AA->isClaimed()) {
1666             DuplicateClaimed = true;
1667             break;
1668           }
1669         }
1670 
1671         if (DuplicateClaimed)
1672           continue;
1673       }
1674 
1675       Diag(clang::diag::warn_drv_unused_argument)
1676           << A->getAsString(C.getArgs());
1677     }
1678   }
1679 }
1680 
1681 static const Tool *SelectToolForJob(Compilation &C, bool SaveTemps,
1682                                     const ToolChain *TC, const JobAction *JA,
1683                                     const ActionList *&Inputs) {
1684   const Tool *ToolForJob = nullptr;
1685 
1686   // See if we should look for a compiler with an integrated assembler. We match
1687   // bottom up, so what we are actually looking for is an assembler job with a
1688   // compiler input.
1689 
1690   if (TC->useIntegratedAs() && !SaveTemps &&
1691       !C.getArgs().hasArg(options::OPT_via_file_asm) &&
1692       !C.getArgs().hasArg(options::OPT__SLASH_FA) &&
1693       !C.getArgs().hasArg(options::OPT__SLASH_Fa) &&
1694       isa<AssembleJobAction>(JA) && Inputs->size() == 1 &&
1695       isa<BackendJobAction>(*Inputs->begin())) {
1696     // A BackendJob is always preceded by a CompileJob, and without
1697     // -save-temps they will always get combined together, so instead of
1698     // checking the backend tool, check if the tool for the CompileJob
1699     // has an integrated assembler.
1700     const ActionList *BackendInputs = &(*Inputs)[0]->getInputs();
1701     JobAction *CompileJA = cast<CompileJobAction>(*BackendInputs->begin());
1702     const Tool *Compiler = TC->SelectTool(*CompileJA);
1703     if (!Compiler)
1704       return nullptr;
1705     if (Compiler->hasIntegratedAssembler()) {
1706       Inputs = &(*BackendInputs)[0]->getInputs();
1707       ToolForJob = Compiler;
1708     }
1709   }
1710 
1711   // A backend job should always be combined with the preceding compile job
1712   // unless OPT_save_temps is enabled and the compiler is capable of emitting
1713   // LLVM IR as an intermediate output.
1714   if (isa<BackendJobAction>(JA)) {
1715     // Check if the compiler supports emitting LLVM IR.
1716     assert(Inputs->size() == 1);
1717     JobAction *CompileJA;
1718     // Extract real host action, if it's a CudaHostAction.
1719     if (CudaHostAction *CudaHA = dyn_cast<CudaHostAction>(*Inputs->begin()))
1720       CompileJA = cast<CompileJobAction>(*CudaHA->begin());
1721     else
1722       CompileJA = cast<CompileJobAction>(*Inputs->begin());
1723 
1724     const Tool *Compiler = TC->SelectTool(*CompileJA);
1725     if (!Compiler)
1726       return nullptr;
1727     if (!Compiler->canEmitIR() || !SaveTemps) {
1728       Inputs = &(*Inputs)[0]->getInputs();
1729       ToolForJob = Compiler;
1730     }
1731   }
1732 
1733   // Otherwise use the tool for the current job.
1734   if (!ToolForJob)
1735     ToolForJob = TC->SelectTool(*JA);
1736 
1737   // See if we should use an integrated preprocessor. We do so when we have
1738   // exactly one input, since this is the only use case we care about
1739   // (irrelevant since we don't support combine yet).
1740   if (Inputs->size() == 1 && isa<PreprocessJobAction>(*Inputs->begin()) &&
1741       !C.getArgs().hasArg(options::OPT_no_integrated_cpp) &&
1742       !C.getArgs().hasArg(options::OPT_traditional_cpp) && !SaveTemps &&
1743       !C.getArgs().hasArg(options::OPT_rewrite_objc) &&
1744       ToolForJob->hasIntegratedCPP())
1745     Inputs = &(*Inputs)[0]->getInputs();
1746 
1747   return ToolForJob;
1748 }
1749 
1750 void Driver::BuildJobsForAction(Compilation &C, const Action *A,
1751                                 const ToolChain *TC, const char *BoundArch,
1752                                 bool AtTopLevel, bool MultipleArchs,
1753                                 const char *LinkingOutput,
1754                                 InputInfo &Result) const {
1755   llvm::PrettyStackTraceString CrashInfo("Building compilation jobs");
1756 
1757   InputInfoList CudaDeviceInputInfos;
1758   if (const CudaHostAction *CHA = dyn_cast<CudaHostAction>(A)) {
1759     InputInfo II;
1760     // Append outputs of device jobs to the input list.
1761     for (const Action *DA : CHA->getDeviceActions()) {
1762       BuildJobsForAction(C, DA, TC, "", AtTopLevel,
1763                          /*MultipleArchs*/ false, LinkingOutput, II);
1764       CudaDeviceInputInfos.push_back(II);
1765     }
1766     // Override current action with a real host compile action and continue
1767     // processing it.
1768     A = *CHA->begin();
1769   }
1770 
1771   if (const InputAction *IA = dyn_cast<InputAction>(A)) {
1772     // FIXME: It would be nice to not claim this here; maybe the old scheme of
1773     // just using Args was better?
1774     const Arg &Input = IA->getInputArg();
1775     Input.claim();
1776     if (Input.getOption().matches(options::OPT_INPUT)) {
1777       const char *Name = Input.getValue();
1778       Result = InputInfo(Name, A->getType(), Name);
1779     } else {
1780       Result = InputInfo(&Input, A->getType(), "");
1781     }
1782     return;
1783   }
1784 
1785   if (const BindArchAction *BAA = dyn_cast<BindArchAction>(A)) {
1786     const ToolChain *TC;
1787     const char *ArchName = BAA->getArchName();
1788 
1789     if (ArchName)
1790       TC = &getToolChain(
1791           C.getArgs(),
1792           computeTargetTriple(DefaultTargetTriple, C.getArgs(), ArchName));
1793     else
1794       TC = &C.getDefaultToolChain();
1795 
1796     BuildJobsForAction(C, *BAA->begin(), TC, ArchName, AtTopLevel,
1797                        MultipleArchs, LinkingOutput, Result);
1798     return;
1799   }
1800 
1801   if (const CudaDeviceAction *CDA = dyn_cast<CudaDeviceAction>(A)) {
1802     BuildJobsForAction(
1803         C, *CDA->begin(),
1804         &getToolChain(C.getArgs(), llvm::Triple(CDA->getDeviceTriple())),
1805         CDA->getGpuArchName(), CDA->isAtTopLevel(),
1806         /*MultipleArchs*/ true, LinkingOutput, Result);
1807     return;
1808   }
1809 
1810   const ActionList *Inputs = &A->getInputs();
1811 
1812   const JobAction *JA = cast<JobAction>(A);
1813   const Tool *T = SelectToolForJob(C, isSaveTempsEnabled(), TC, JA, Inputs);
1814   if (!T)
1815     return;
1816 
1817   // Only use pipes when there is exactly one input.
1818   InputInfoList InputInfos;
1819   for (const Action *Input : *Inputs) {
1820     // Treat dsymutil and verify sub-jobs as being at the top-level too, they
1821     // shouldn't get temporary output names.
1822     // FIXME: Clean this up.
1823     bool SubJobAtTopLevel = false;
1824     if (AtTopLevel && (isa<DsymutilJobAction>(A) || isa<VerifyJobAction>(A)))
1825       SubJobAtTopLevel = true;
1826 
1827     InputInfo II;
1828     BuildJobsForAction(C, Input, TC, BoundArch, SubJobAtTopLevel, MultipleArchs,
1829                        LinkingOutput, II);
1830     InputInfos.push_back(II);
1831   }
1832 
1833   // Always use the first input as the base input.
1834   const char *BaseInput = InputInfos[0].getBaseInput();
1835 
1836   // ... except dsymutil actions, which use their actual input as the base
1837   // input.
1838   if (JA->getType() == types::TY_dSYM)
1839     BaseInput = InputInfos[0].getFilename();
1840 
1841   // Append outputs of cuda device jobs to the input list
1842   if (CudaDeviceInputInfos.size())
1843     InputInfos.append(CudaDeviceInputInfos.begin(), CudaDeviceInputInfos.end());
1844 
1845   // Determine the place to write output to, if any.
1846   if (JA->getType() == types::TY_Nothing)
1847     Result = InputInfo(A->getType(), BaseInput);
1848   else
1849     Result = InputInfo(GetNamedOutputPath(C, *JA, BaseInput, BoundArch,
1850                                           AtTopLevel, MultipleArchs),
1851                        A->getType(), BaseInput);
1852 
1853   if (CCCPrintBindings && !CCGenDiagnostics) {
1854     llvm::errs() << "# \"" << T->getToolChain().getTripleString() << '"'
1855                  << " - \"" << T->getName() << "\", inputs: [";
1856     for (unsigned i = 0, e = InputInfos.size(); i != e; ++i) {
1857       llvm::errs() << InputInfos[i].getAsString();
1858       if (i + 1 != e)
1859         llvm::errs() << ", ";
1860     }
1861     llvm::errs() << "], output: " << Result.getAsString() << "\n";
1862   } else {
1863     T->ConstructJob(C, *JA, Result, InputInfos,
1864                     C.getArgsForToolChain(TC, BoundArch), LinkingOutput);
1865   }
1866 }
1867 
1868 const char *Driver::getDefaultImageName() const {
1869   llvm::Triple Target(llvm::Triple::normalize(DefaultTargetTriple));
1870   return Target.isOSWindows() ? "a.exe" : "a.out";
1871 }
1872 
1873 /// \brief Create output filename based on ArgValue, which could either be a
1874 /// full filename, filename without extension, or a directory. If ArgValue
1875 /// does not provide a filename, then use BaseName, and use the extension
1876 /// suitable for FileType.
1877 static const char *MakeCLOutputFilename(const ArgList &Args, StringRef ArgValue,
1878                                         StringRef BaseName,
1879                                         types::ID FileType) {
1880   SmallString<128> Filename = ArgValue;
1881 
1882   if (ArgValue.empty()) {
1883     // If the argument is empty, output to BaseName in the current dir.
1884     Filename = BaseName;
1885   } else if (llvm::sys::path::is_separator(Filename.back())) {
1886     // If the argument is a directory, output to BaseName in that dir.
1887     llvm::sys::path::append(Filename, BaseName);
1888   }
1889 
1890   if (!llvm::sys::path::has_extension(ArgValue)) {
1891     // If the argument didn't provide an extension, then set it.
1892     const char *Extension = types::getTypeTempSuffix(FileType, true);
1893 
1894     if (FileType == types::TY_Image &&
1895         Args.hasArg(options::OPT__SLASH_LD, options::OPT__SLASH_LDd)) {
1896       // The output file is a dll.
1897       Extension = "dll";
1898     }
1899 
1900     llvm::sys::path::replace_extension(Filename, Extension);
1901   }
1902 
1903   return Args.MakeArgString(Filename.c_str());
1904 }
1905 
1906 const char *Driver::GetNamedOutputPath(Compilation &C, const JobAction &JA,
1907                                        const char *BaseInput,
1908                                        const char *BoundArch, bool AtTopLevel,
1909                                        bool MultipleArchs) const {
1910   llvm::PrettyStackTraceString CrashInfo("Computing output path");
1911   // Output to a user requested destination?
1912   if (AtTopLevel && !isa<DsymutilJobAction>(JA) && !isa<VerifyJobAction>(JA)) {
1913     if (Arg *FinalOutput = C.getArgs().getLastArg(options::OPT_o))
1914       return C.addResultFile(FinalOutput->getValue(), &JA);
1915   }
1916 
1917   // For /P, preprocess to file named after BaseInput.
1918   if (C.getArgs().hasArg(options::OPT__SLASH_P)) {
1919     assert(AtTopLevel && isa<PreprocessJobAction>(JA));
1920     StringRef BaseName = llvm::sys::path::filename(BaseInput);
1921     StringRef NameArg;
1922     if (Arg *A = C.getArgs().getLastArg(options::OPT__SLASH_Fi))
1923       NameArg = A->getValue();
1924     return C.addResultFile(
1925         MakeCLOutputFilename(C.getArgs(), NameArg, BaseName, types::TY_PP_C),
1926         &JA);
1927   }
1928 
1929   // Default to writing to stdout?
1930   if (AtTopLevel && !CCGenDiagnostics &&
1931       (isa<PreprocessJobAction>(JA) || JA.getType() == types::TY_ModuleFile))
1932     return "-";
1933 
1934   // Is this the assembly listing for /FA?
1935   if (JA.getType() == types::TY_PP_Asm &&
1936       (C.getArgs().hasArg(options::OPT__SLASH_FA) ||
1937        C.getArgs().hasArg(options::OPT__SLASH_Fa))) {
1938     // Use /Fa and the input filename to determine the asm file name.
1939     StringRef BaseName = llvm::sys::path::filename(BaseInput);
1940     StringRef FaValue = C.getArgs().getLastArgValue(options::OPT__SLASH_Fa);
1941     return C.addResultFile(
1942         MakeCLOutputFilename(C.getArgs(), FaValue, BaseName, JA.getType()),
1943         &JA);
1944   }
1945 
1946   // Output to a temporary file?
1947   if ((!AtTopLevel && !isSaveTempsEnabled() &&
1948        !C.getArgs().hasArg(options::OPT__SLASH_Fo)) ||
1949       CCGenDiagnostics) {
1950     StringRef Name = llvm::sys::path::filename(BaseInput);
1951     std::pair<StringRef, StringRef> Split = Name.split('.');
1952     std::string TmpName = GetTemporaryPath(
1953         Split.first, types::getTypeTempSuffix(JA.getType(), IsCLMode()));
1954     return C.addTempFile(C.getArgs().MakeArgString(TmpName.c_str()));
1955   }
1956 
1957   SmallString<128> BasePath(BaseInput);
1958   StringRef BaseName;
1959 
1960   // Dsymutil actions should use the full path.
1961   if (isa<DsymutilJobAction>(JA) || isa<VerifyJobAction>(JA))
1962     BaseName = BasePath;
1963   else
1964     BaseName = llvm::sys::path::filename(BasePath);
1965 
1966   // Determine what the derived output name should be.
1967   const char *NamedOutput;
1968 
1969   if (JA.getType() == types::TY_Object &&
1970       C.getArgs().hasArg(options::OPT__SLASH_Fo, options::OPT__SLASH_o)) {
1971     // The /Fo or /o flag decides the object filename.
1972     StringRef Val =
1973         C.getArgs()
1974             .getLastArg(options::OPT__SLASH_Fo, options::OPT__SLASH_o)
1975             ->getValue();
1976     NamedOutput =
1977         MakeCLOutputFilename(C.getArgs(), Val, BaseName, types::TY_Object);
1978   } else if (JA.getType() == types::TY_Image &&
1979              C.getArgs().hasArg(options::OPT__SLASH_Fe,
1980                                 options::OPT__SLASH_o)) {
1981     // The /Fe or /o flag names the linked file.
1982     StringRef Val =
1983         C.getArgs()
1984             .getLastArg(options::OPT__SLASH_Fe, options::OPT__SLASH_o)
1985             ->getValue();
1986     NamedOutput =
1987         MakeCLOutputFilename(C.getArgs(), Val, BaseName, types::TY_Image);
1988   } else if (JA.getType() == types::TY_Image) {
1989     if (IsCLMode()) {
1990       // clang-cl uses BaseName for the executable name.
1991       NamedOutput =
1992           MakeCLOutputFilename(C.getArgs(), "", BaseName, types::TY_Image);
1993     } else if (MultipleArchs && BoundArch) {
1994       SmallString<128> Output(getDefaultImageName());
1995       Output += "-";
1996       Output.append(BoundArch);
1997       NamedOutput = C.getArgs().MakeArgString(Output.c_str());
1998     } else
1999       NamedOutput = getDefaultImageName();
2000   } else {
2001     const char *Suffix = types::getTypeTempSuffix(JA.getType(), IsCLMode());
2002     assert(Suffix && "All types used for output should have a suffix.");
2003 
2004     std::string::size_type End = std::string::npos;
2005     if (!types::appendSuffixForType(JA.getType()))
2006       End = BaseName.rfind('.');
2007     SmallString<128> Suffixed(BaseName.substr(0, End));
2008     if (MultipleArchs && BoundArch) {
2009       Suffixed += "-";
2010       Suffixed.append(BoundArch);
2011     }
2012     // When using both -save-temps and -emit-llvm, use a ".tmp.bc" suffix for
2013     // the unoptimized bitcode so that it does not get overwritten by the ".bc"
2014     // optimized bitcode output.
2015     if (!AtTopLevel && C.getArgs().hasArg(options::OPT_emit_llvm) &&
2016         JA.getType() == types::TY_LLVM_BC)
2017       Suffixed += ".tmp";
2018     Suffixed += '.';
2019     Suffixed += Suffix;
2020     NamedOutput = C.getArgs().MakeArgString(Suffixed.c_str());
2021   }
2022 
2023   // Prepend object file path if -save-temps=obj
2024   if (!AtTopLevel && isSaveTempsObj() && C.getArgs().hasArg(options::OPT_o) &&
2025       JA.getType() != types::TY_PCH) {
2026     Arg *FinalOutput = C.getArgs().getLastArg(options::OPT_o);
2027     SmallString<128> TempPath(FinalOutput->getValue());
2028     llvm::sys::path::remove_filename(TempPath);
2029     StringRef OutputFileName = llvm::sys::path::filename(NamedOutput);
2030     llvm::sys::path::append(TempPath, OutputFileName);
2031     NamedOutput = C.getArgs().MakeArgString(TempPath.c_str());
2032   }
2033 
2034   // If we're saving temps and the temp file conflicts with the input file,
2035   // then avoid overwriting input file.
2036   if (!AtTopLevel && isSaveTempsEnabled() && NamedOutput == BaseName) {
2037     bool SameFile = false;
2038     SmallString<256> Result;
2039     llvm::sys::fs::current_path(Result);
2040     llvm::sys::path::append(Result, BaseName);
2041     llvm::sys::fs::equivalent(BaseInput, Result.c_str(), SameFile);
2042     // Must share the same path to conflict.
2043     if (SameFile) {
2044       StringRef Name = llvm::sys::path::filename(BaseInput);
2045       std::pair<StringRef, StringRef> Split = Name.split('.');
2046       std::string TmpName = GetTemporaryPath(
2047           Split.first, types::getTypeTempSuffix(JA.getType(), IsCLMode()));
2048       return C.addTempFile(C.getArgs().MakeArgString(TmpName.c_str()));
2049     }
2050   }
2051 
2052   // As an annoying special case, PCH generation doesn't strip the pathname.
2053   if (JA.getType() == types::TY_PCH) {
2054     llvm::sys::path::remove_filename(BasePath);
2055     if (BasePath.empty())
2056       BasePath = NamedOutput;
2057     else
2058       llvm::sys::path::append(BasePath, NamedOutput);
2059     return C.addResultFile(C.getArgs().MakeArgString(BasePath.c_str()), &JA);
2060   } else {
2061     return C.addResultFile(NamedOutput, &JA);
2062   }
2063 }
2064 
2065 std::string Driver::GetFilePath(const char *Name, const ToolChain &TC) const {
2066   // Respect a limited subset of the '-Bprefix' functionality in GCC by
2067   // attempting to use this prefix when looking for file paths.
2068   for (const std::string &Dir : PrefixDirs) {
2069     if (Dir.empty())
2070       continue;
2071     SmallString<128> P(Dir[0] == '=' ? SysRoot + Dir.substr(1) : Dir);
2072     llvm::sys::path::append(P, Name);
2073     if (llvm::sys::fs::exists(Twine(P)))
2074       return P.str();
2075   }
2076 
2077   SmallString<128> P(ResourceDir);
2078   llvm::sys::path::append(P, Name);
2079   if (llvm::sys::fs::exists(Twine(P)))
2080     return P.str();
2081 
2082   for (const std::string &Dir : TC.getFilePaths()) {
2083     if (Dir.empty())
2084       continue;
2085     SmallString<128> P(Dir[0] == '=' ? SysRoot + Dir.substr(1) : Dir);
2086     llvm::sys::path::append(P, Name);
2087     if (llvm::sys::fs::exists(Twine(P)))
2088       return P.str();
2089   }
2090 
2091   return Name;
2092 }
2093 
2094 void Driver::generatePrefixedToolNames(
2095     const char *Tool, const ToolChain &TC,
2096     SmallVectorImpl<std::string> &Names) const {
2097   // FIXME: Needs a better variable than DefaultTargetTriple
2098   Names.emplace_back(DefaultTargetTriple + "-" + Tool);
2099   Names.emplace_back(Tool);
2100 }
2101 
2102 static bool ScanDirForExecutable(SmallString<128> &Dir,
2103                                  ArrayRef<std::string> Names) {
2104   for (const auto &Name : Names) {
2105     llvm::sys::path::append(Dir, Name);
2106     if (llvm::sys::fs::can_execute(Twine(Dir)))
2107       return true;
2108     llvm::sys::path::remove_filename(Dir);
2109   }
2110   return false;
2111 }
2112 
2113 std::string Driver::GetProgramPath(const char *Name,
2114                                    const ToolChain &TC) const {
2115   SmallVector<std::string, 2> TargetSpecificExecutables;
2116   generatePrefixedToolNames(Name, TC, TargetSpecificExecutables);
2117 
2118   // Respect a limited subset of the '-Bprefix' functionality in GCC by
2119   // attempting to use this prefix when looking for program paths.
2120   for (const auto &PrefixDir : PrefixDirs) {
2121     if (llvm::sys::fs::is_directory(PrefixDir)) {
2122       SmallString<128> P(PrefixDir);
2123       if (ScanDirForExecutable(P, TargetSpecificExecutables))
2124         return P.str();
2125     } else {
2126       SmallString<128> P(PrefixDir + Name);
2127       if (llvm::sys::fs::can_execute(Twine(P)))
2128         return P.str();
2129     }
2130   }
2131 
2132   const ToolChain::path_list &List = TC.getProgramPaths();
2133   for (const auto &Path : List) {
2134     SmallString<128> P(Path);
2135     if (ScanDirForExecutable(P, TargetSpecificExecutables))
2136       return P.str();
2137   }
2138 
2139   // If all else failed, search the path.
2140   for (const auto &TargetSpecificExecutable : TargetSpecificExecutables)
2141     if (llvm::ErrorOr<std::string> P =
2142             llvm::sys::findProgramByName(TargetSpecificExecutable))
2143       return *P;
2144 
2145   return Name;
2146 }
2147 
2148 std::string Driver::GetTemporaryPath(StringRef Prefix,
2149                                      const char *Suffix) const {
2150   SmallString<128> Path;
2151   std::error_code EC = llvm::sys::fs::createTemporaryFile(Prefix, Suffix, Path);
2152   if (EC) {
2153     Diag(clang::diag::err_unable_to_make_temp) << EC.message();
2154     return "";
2155   }
2156 
2157   return Path.str();
2158 }
2159 
2160 const ToolChain &Driver::getToolChain(const ArgList &Args,
2161                                       const llvm::Triple &Target) const {
2162 
2163   ToolChain *&TC = ToolChains[Target.str()];
2164   if (!TC) {
2165     switch (Target.getOS()) {
2166     case llvm::Triple::CloudABI:
2167       TC = new toolchains::CloudABI(*this, Target, Args);
2168       break;
2169     case llvm::Triple::Darwin:
2170     case llvm::Triple::MacOSX:
2171     case llvm::Triple::IOS:
2172       TC = new toolchains::DarwinClang(*this, Target, Args);
2173       break;
2174     case llvm::Triple::DragonFly:
2175       TC = new toolchains::DragonFly(*this, Target, Args);
2176       break;
2177     case llvm::Triple::OpenBSD:
2178       TC = new toolchains::OpenBSD(*this, Target, Args);
2179       break;
2180     case llvm::Triple::Bitrig:
2181       TC = new toolchains::Bitrig(*this, Target, Args);
2182       break;
2183     case llvm::Triple::NetBSD:
2184       TC = new toolchains::NetBSD(*this, Target, Args);
2185       break;
2186     case llvm::Triple::FreeBSD:
2187       TC = new toolchains::FreeBSD(*this, Target, Args);
2188       break;
2189     case llvm::Triple::Minix:
2190       TC = new toolchains::Minix(*this, Target, Args);
2191       break;
2192     case llvm::Triple::Linux:
2193       if (Target.getArch() == llvm::Triple::hexagon)
2194         TC = new toolchains::HexagonToolChain(*this, Target, Args);
2195       else
2196         TC = new toolchains::Linux(*this, Target, Args);
2197       break;
2198     case llvm::Triple::NaCl:
2199       TC = new toolchains::NaClToolChain(*this, Target, Args);
2200       break;
2201     case llvm::Triple::Solaris:
2202       TC = new toolchains::Solaris(*this, Target, Args);
2203       break;
2204     case llvm::Triple::AMDHSA:
2205       TC = new toolchains::AMDGPUToolChain(*this, Target, Args);
2206       break;
2207     case llvm::Triple::Win32:
2208       switch (Target.getEnvironment()) {
2209       default:
2210         if (Target.isOSBinFormatELF())
2211           TC = new toolchains::Generic_ELF(*this, Target, Args);
2212         else if (Target.isOSBinFormatMachO())
2213           TC = new toolchains::MachO(*this, Target, Args);
2214         else
2215           TC = new toolchains::Generic_GCC(*this, Target, Args);
2216         break;
2217       case llvm::Triple::GNU:
2218         TC = new toolchains::MinGW(*this, Target, Args);
2219         break;
2220       case llvm::Triple::Itanium:
2221         TC = new toolchains::CrossWindowsToolChain(*this, Target, Args);
2222         break;
2223       case llvm::Triple::MSVC:
2224       case llvm::Triple::UnknownEnvironment:
2225         TC = new toolchains::MSVCToolChain(*this, Target, Args);
2226         break;
2227       }
2228       break;
2229     case llvm::Triple::CUDA:
2230       TC = new toolchains::CudaToolChain(*this, Target, Args);
2231       break;
2232     default:
2233       // Of these targets, Hexagon is the only one that might have
2234       // an OS of Linux, in which case it got handled above already.
2235       if (Target.getArchName() == "tce")
2236         TC = new toolchains::TCEToolChain(*this, Target, Args);
2237       else if (Target.getArch() == llvm::Triple::hexagon)
2238         TC = new toolchains::HexagonToolChain(*this, Target, Args);
2239       else if (Target.getArch() == llvm::Triple::xcore)
2240         TC = new toolchains::XCoreToolChain(*this, Target, Args);
2241       else if (Target.getArch() == llvm::Triple::shave)
2242         TC = new toolchains::SHAVEToolChain(*this, Target, Args);
2243       else if (Target.isOSBinFormatELF())
2244         TC = new toolchains::Generic_ELF(*this, Target, Args);
2245       else if (Target.isOSBinFormatMachO())
2246         TC = new toolchains::MachO(*this, Target, Args);
2247       else
2248         TC = new toolchains::Generic_GCC(*this, Target, Args);
2249       break;
2250     }
2251   }
2252   return *TC;
2253 }
2254 
2255 bool Driver::ShouldUseClangCompiler(const JobAction &JA) const {
2256   // Say "no" if there is not exactly one input of a type clang understands.
2257   if (JA.size() != 1 || !types::isAcceptedByClang((*JA.begin())->getType()))
2258     return false;
2259 
2260   // And say "no" if this is not a kind of action clang understands.
2261   if (!isa<PreprocessJobAction>(JA) && !isa<PrecompileJobAction>(JA) &&
2262       !isa<CompileJobAction>(JA) && !isa<BackendJobAction>(JA))
2263     return false;
2264 
2265   return true;
2266 }
2267 
2268 /// GetReleaseVersion - Parse (([0-9]+)(.([0-9]+)(.([0-9]+)?))?)? and return the
2269 /// grouped values as integers. Numbers which are not provided are set to 0.
2270 ///
2271 /// \return True if the entire string was parsed (9.2), or all groups were
2272 /// parsed (10.3.5extrastuff).
2273 bool Driver::GetReleaseVersion(const char *Str, unsigned &Major,
2274                                unsigned &Minor, unsigned &Micro,
2275                                bool &HadExtra) {
2276   HadExtra = false;
2277 
2278   Major = Minor = Micro = 0;
2279   if (*Str == '\0')
2280     return false;
2281 
2282   char *End;
2283   Major = (unsigned)strtol(Str, &End, 10);
2284   if (*Str != '\0' && *End == '\0')
2285     return true;
2286   if (*End != '.')
2287     return false;
2288 
2289   Str = End + 1;
2290   Minor = (unsigned)strtol(Str, &End, 10);
2291   if (*Str != '\0' && *End == '\0')
2292     return true;
2293   if (*End != '.')
2294     return false;
2295 
2296   Str = End + 1;
2297   Micro = (unsigned)strtol(Str, &End, 10);
2298   if (*Str != '\0' && *End == '\0')
2299     return true;
2300   if (Str == End)
2301     return false;
2302   HadExtra = true;
2303   return true;
2304 }
2305 
2306 std::pair<unsigned, unsigned> Driver::getIncludeExcludeOptionFlagMasks() const {
2307   unsigned IncludedFlagsBitmask = 0;
2308   unsigned ExcludedFlagsBitmask = options::NoDriverOption;
2309 
2310   if (Mode == CLMode) {
2311     // Include CL and Core options.
2312     IncludedFlagsBitmask |= options::CLOption;
2313     IncludedFlagsBitmask |= options::CoreOption;
2314   } else {
2315     ExcludedFlagsBitmask |= options::CLOption;
2316   }
2317 
2318   return std::make_pair(IncludedFlagsBitmask, ExcludedFlagsBitmask);
2319 }
2320 
2321 bool clang::driver::isOptimizationLevelFast(const ArgList &Args) {
2322   return Args.hasFlag(options::OPT_Ofast, options::OPT_O_Group, false);
2323 }
2324