xref: /llvm-project/clang/lib/Frontend/CompilerInvocation.cpp (revision 5845688e91d85d46c0f47daaf4edfdfc772853cf)
1 //===- CompilerInvocation.cpp ---------------------------------------------===//
2 //
3 // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
4 // See https://llvm.org/LICENSE.txt for license information.
5 // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
6 //
7 //===----------------------------------------------------------------------===//
8 
9 #include "clang/Frontend/CompilerInvocation.h"
10 #include "TestModuleFileExtension.h"
11 #include "clang/Basic/Builtins.h"
12 #include "clang/Basic/CharInfo.h"
13 #include "clang/Basic/CodeGenOptions.h"
14 #include "clang/Basic/CommentOptions.h"
15 #include "clang/Basic/Diagnostic.h"
16 #include "clang/Basic/DiagnosticDriver.h"
17 #include "clang/Basic/DiagnosticOptions.h"
18 #include "clang/Basic/FileSystemOptions.h"
19 #include "clang/Basic/LLVM.h"
20 #include "clang/Basic/LangOptions.h"
21 #include "clang/Basic/LangStandard.h"
22 #include "clang/Basic/ObjCRuntime.h"
23 #include "clang/Basic/Sanitizers.h"
24 #include "clang/Basic/SourceLocation.h"
25 #include "clang/Basic/TargetOptions.h"
26 #include "clang/Basic/Version.h"
27 #include "clang/Basic/Visibility.h"
28 #include "clang/Basic/XRayInstr.h"
29 #include "clang/Config/config.h"
30 #include "clang/Driver/Driver.h"
31 #include "clang/Driver/DriverDiagnostic.h"
32 #include "clang/Driver/Options.h"
33 #include "clang/Frontend/CommandLineSourceLoc.h"
34 #include "clang/Frontend/DependencyOutputOptions.h"
35 #include "clang/Frontend/FrontendDiagnostic.h"
36 #include "clang/Frontend/FrontendOptions.h"
37 #include "clang/Frontend/FrontendPluginRegistry.h"
38 #include "clang/Frontend/MigratorOptions.h"
39 #include "clang/Frontend/PreprocessorOutputOptions.h"
40 #include "clang/Frontend/TextDiagnosticBuffer.h"
41 #include "clang/Frontend/Utils.h"
42 #include "clang/Lex/HeaderSearchOptions.h"
43 #include "clang/Lex/PreprocessorOptions.h"
44 #include "clang/Sema/CodeCompleteOptions.h"
45 #include "clang/Serialization/ASTBitCodes.h"
46 #include "clang/Serialization/ModuleFileExtension.h"
47 #include "clang/StaticAnalyzer/Core/AnalyzerOptions.h"
48 #include "llvm/ADT/APInt.h"
49 #include "llvm/ADT/ArrayRef.h"
50 #include "llvm/ADT/CachedHashString.h"
51 #include "llvm/ADT/FloatingPointMode.h"
52 #include "llvm/ADT/Hashing.h"
53 #include "llvm/ADT/STLExtras.h"
54 #include "llvm/ADT/SmallString.h"
55 #include "llvm/ADT/SmallVector.h"
56 #include "llvm/ADT/StringRef.h"
57 #include "llvm/ADT/StringSwitch.h"
58 #include "llvm/ADT/Twine.h"
59 #include "llvm/Config/llvm-config.h"
60 #include "llvm/Frontend/Debug/Options.h"
61 #include "llvm/IR/DebugInfoMetadata.h"
62 #include "llvm/Linker/Linker.h"
63 #include "llvm/MC/MCTargetOptions.h"
64 #include "llvm/Option/Arg.h"
65 #include "llvm/Option/ArgList.h"
66 #include "llvm/Option/OptSpecifier.h"
67 #include "llvm/Option/OptTable.h"
68 #include "llvm/Option/Option.h"
69 #include "llvm/ProfileData/InstrProfReader.h"
70 #include "llvm/Remarks/HotnessThresholdParser.h"
71 #include "llvm/Support/CodeGen.h"
72 #include "llvm/Support/Compiler.h"
73 #include "llvm/Support/Error.h"
74 #include "llvm/Support/ErrorHandling.h"
75 #include "llvm/Support/ErrorOr.h"
76 #include "llvm/Support/FileSystem.h"
77 #include "llvm/Support/HashBuilder.h"
78 #include "llvm/Support/MathExtras.h"
79 #include "llvm/Support/MemoryBuffer.h"
80 #include "llvm/Support/Path.h"
81 #include "llvm/Support/Process.h"
82 #include "llvm/Support/Regex.h"
83 #include "llvm/Support/VersionTuple.h"
84 #include "llvm/Support/VirtualFileSystem.h"
85 #include "llvm/Support/raw_ostream.h"
86 #include "llvm/Target/TargetOptions.h"
87 #include "llvm/TargetParser/Host.h"
88 #include "llvm/TargetParser/Triple.h"
89 #include <algorithm>
90 #include <atomic>
91 #include <cassert>
92 #include <cstddef>
93 #include <cstring>
94 #include <ctime>
95 #include <fstream>
96 #include <limits>
97 #include <memory>
98 #include <optional>
99 #include <string>
100 #include <tuple>
101 #include <type_traits>
102 #include <utility>
103 #include <vector>
104 
105 using namespace clang;
106 using namespace driver;
107 using namespace options;
108 using namespace llvm::opt;
109 
110 //===----------------------------------------------------------------------===//
111 // Helpers.
112 //===----------------------------------------------------------------------===//
113 
114 // Parse misexpect tolerance argument value.
115 // Valid option values are integers in the range [0, 100)
116 static Expected<std::optional<uint32_t>> parseToleranceOption(StringRef Arg) {
117   uint32_t Val;
118   if (Arg.getAsInteger(10, Val))
119     return llvm::createStringError(llvm::inconvertibleErrorCode(),
120                                    "Not an integer: %s", Arg.data());
121   return Val;
122 }
123 
124 //===----------------------------------------------------------------------===//
125 // Initialization.
126 //===----------------------------------------------------------------------===//
127 
128 namespace {
129 template <class T> std::shared_ptr<T> make_shared_copy(const T &X) {
130   return std::make_shared<T>(X);
131 }
132 
133 template <class T>
134 llvm::IntrusiveRefCntPtr<T> makeIntrusiveRefCntCopy(const T &X) {
135   return llvm::makeIntrusiveRefCnt<T>(X);
136 }
137 } // namespace
138 
139 CompilerInvocationBase::CompilerInvocationBase()
140     : LangOpts(std::make_shared<LangOptions>()),
141       TargetOpts(std::make_shared<TargetOptions>()),
142       DiagnosticOpts(llvm::makeIntrusiveRefCnt<DiagnosticOptions>()),
143       HSOpts(std::make_shared<HeaderSearchOptions>()),
144       PPOpts(std::make_shared<PreprocessorOptions>()),
145       AnalyzerOpts(llvm::makeIntrusiveRefCnt<AnalyzerOptions>()),
146       MigratorOpts(std::make_shared<MigratorOptions>()),
147       APINotesOpts(std::make_shared<APINotesOptions>()),
148       CodeGenOpts(std::make_shared<CodeGenOptions>()),
149       FSOpts(std::make_shared<FileSystemOptions>()),
150       FrontendOpts(std::make_shared<FrontendOptions>()),
151       DependencyOutputOpts(std::make_shared<DependencyOutputOptions>()),
152       PreprocessorOutputOpts(std::make_shared<PreprocessorOutputOptions>()) {}
153 
154 CompilerInvocationBase &
155 CompilerInvocationBase::deep_copy_assign(const CompilerInvocationBase &X) {
156   if (this != &X) {
157     LangOpts = make_shared_copy(X.getLangOpts());
158     TargetOpts = make_shared_copy(X.getTargetOpts());
159     DiagnosticOpts = makeIntrusiveRefCntCopy(X.getDiagnosticOpts());
160     HSOpts = make_shared_copy(X.getHeaderSearchOpts());
161     PPOpts = make_shared_copy(X.getPreprocessorOpts());
162     AnalyzerOpts = makeIntrusiveRefCntCopy(X.getAnalyzerOpts());
163     MigratorOpts = make_shared_copy(X.getMigratorOpts());
164     APINotesOpts = make_shared_copy(X.getAPINotesOpts());
165     CodeGenOpts = make_shared_copy(X.getCodeGenOpts());
166     FSOpts = make_shared_copy(X.getFileSystemOpts());
167     FrontendOpts = make_shared_copy(X.getFrontendOpts());
168     DependencyOutputOpts = make_shared_copy(X.getDependencyOutputOpts());
169     PreprocessorOutputOpts = make_shared_copy(X.getPreprocessorOutputOpts());
170   }
171   return *this;
172 }
173 
174 CompilerInvocationBase &
175 CompilerInvocationBase::shallow_copy_assign(const CompilerInvocationBase &X) {
176   if (this != &X) {
177     LangOpts = X.LangOpts;
178     TargetOpts = X.TargetOpts;
179     DiagnosticOpts = X.DiagnosticOpts;
180     HSOpts = X.HSOpts;
181     PPOpts = X.PPOpts;
182     AnalyzerOpts = X.AnalyzerOpts;
183     MigratorOpts = X.MigratorOpts;
184     APINotesOpts = X.APINotesOpts;
185     CodeGenOpts = X.CodeGenOpts;
186     FSOpts = X.FSOpts;
187     FrontendOpts = X.FrontendOpts;
188     DependencyOutputOpts = X.DependencyOutputOpts;
189     PreprocessorOutputOpts = X.PreprocessorOutputOpts;
190   }
191   return *this;
192 }
193 
194 CompilerInvocation::CompilerInvocation(const CowCompilerInvocation &X)
195     : CompilerInvocationBase(EmptyConstructor{}) {
196   CompilerInvocationBase::deep_copy_assign(X);
197 }
198 
199 CompilerInvocation &
200 CompilerInvocation::operator=(const CowCompilerInvocation &X) {
201   CompilerInvocationBase::deep_copy_assign(X);
202   return *this;
203 }
204 
205 namespace {
206 template <typename T>
207 T &ensureOwned(std::shared_ptr<T> &Storage) {
208   if (Storage.use_count() > 1)
209     Storage = std::make_shared<T>(*Storage);
210   return *Storage;
211 }
212 
213 template <typename T>
214 T &ensureOwned(llvm::IntrusiveRefCntPtr<T> &Storage) {
215   if (Storage.useCount() > 1)
216     Storage = llvm::makeIntrusiveRefCnt<T>(*Storage);
217   return *Storage;
218 }
219 } // namespace
220 
221 LangOptions &CowCompilerInvocation::getMutLangOpts() {
222   return ensureOwned(LangOpts);
223 }
224 
225 TargetOptions &CowCompilerInvocation::getMutTargetOpts() {
226   return ensureOwned(TargetOpts);
227 }
228 
229 DiagnosticOptions &CowCompilerInvocation::getMutDiagnosticOpts() {
230   return ensureOwned(DiagnosticOpts);
231 }
232 
233 HeaderSearchOptions &CowCompilerInvocation::getMutHeaderSearchOpts() {
234   return ensureOwned(HSOpts);
235 }
236 
237 PreprocessorOptions &CowCompilerInvocation::getMutPreprocessorOpts() {
238   return ensureOwned(PPOpts);
239 }
240 
241 AnalyzerOptions &CowCompilerInvocation::getMutAnalyzerOpts() {
242   return ensureOwned(AnalyzerOpts);
243 }
244 
245 MigratorOptions &CowCompilerInvocation::getMutMigratorOpts() {
246   return ensureOwned(MigratorOpts);
247 }
248 
249 APINotesOptions &CowCompilerInvocation::getMutAPINotesOpts() {
250   return ensureOwned(APINotesOpts);
251 }
252 
253 CodeGenOptions &CowCompilerInvocation::getMutCodeGenOpts() {
254   return ensureOwned(CodeGenOpts);
255 }
256 
257 FileSystemOptions &CowCompilerInvocation::getMutFileSystemOpts() {
258   return ensureOwned(FSOpts);
259 }
260 
261 FrontendOptions &CowCompilerInvocation::getMutFrontendOpts() {
262   return ensureOwned(FrontendOpts);
263 }
264 
265 DependencyOutputOptions &CowCompilerInvocation::getMutDependencyOutputOpts() {
266   return ensureOwned(DependencyOutputOpts);
267 }
268 
269 PreprocessorOutputOptions &
270 CowCompilerInvocation::getMutPreprocessorOutputOpts() {
271   return ensureOwned(PreprocessorOutputOpts);
272 }
273 
274 //===----------------------------------------------------------------------===//
275 // Normalizers
276 //===----------------------------------------------------------------------===//
277 
278 using ArgumentConsumer = CompilerInvocation::ArgumentConsumer;
279 
280 #define SIMPLE_ENUM_VALUE_TABLE
281 #include "clang/Driver/Options.inc"
282 #undef SIMPLE_ENUM_VALUE_TABLE
283 
284 static std::optional<bool> normalizeSimpleFlag(OptSpecifier Opt,
285                                                unsigned TableIndex,
286                                                const ArgList &Args,
287                                                DiagnosticsEngine &Diags) {
288   if (Args.hasArg(Opt))
289     return true;
290   return std::nullopt;
291 }
292 
293 static std::optional<bool> normalizeSimpleNegativeFlag(OptSpecifier Opt,
294                                                        unsigned,
295                                                        const ArgList &Args,
296                                                        DiagnosticsEngine &) {
297   if (Args.hasArg(Opt))
298     return false;
299   return std::nullopt;
300 }
301 
302 /// The tblgen-erated code passes in a fifth parameter of an arbitrary type, but
303 /// denormalizeSimpleFlags never looks at it. Avoid bloating compile-time with
304 /// unnecessary template instantiations and just ignore it with a variadic
305 /// argument.
306 static void denormalizeSimpleFlag(ArgumentConsumer Consumer,
307                                   const Twine &Spelling, Option::OptionClass,
308                                   unsigned, /*T*/...) {
309   Consumer(Spelling);
310 }
311 
312 template <typename T> static constexpr bool is_uint64_t_convertible() {
313   return !std::is_same_v<T, uint64_t> && llvm::is_integral_or_enum<T>::value;
314 }
315 
316 template <typename T,
317           std::enable_if_t<!is_uint64_t_convertible<T>(), bool> = false>
318 static auto makeFlagToValueNormalizer(T Value) {
319   return [Value](OptSpecifier Opt, unsigned, const ArgList &Args,
320                  DiagnosticsEngine &) -> std::optional<T> {
321     if (Args.hasArg(Opt))
322       return Value;
323     return std::nullopt;
324   };
325 }
326 
327 template <typename T,
328           std::enable_if_t<is_uint64_t_convertible<T>(), bool> = false>
329 static auto makeFlagToValueNormalizer(T Value) {
330   return makeFlagToValueNormalizer(uint64_t(Value));
331 }
332 
333 static auto makeBooleanOptionNormalizer(bool Value, bool OtherValue,
334                                         OptSpecifier OtherOpt) {
335   return [Value, OtherValue,
336           OtherOpt](OptSpecifier Opt, unsigned, const ArgList &Args,
337                     DiagnosticsEngine &) -> std::optional<bool> {
338     if (const Arg *A = Args.getLastArg(Opt, OtherOpt)) {
339       return A->getOption().matches(Opt) ? Value : OtherValue;
340     }
341     return std::nullopt;
342   };
343 }
344 
345 static auto makeBooleanOptionDenormalizer(bool Value) {
346   return [Value](ArgumentConsumer Consumer, const Twine &Spelling,
347                  Option::OptionClass, unsigned, bool KeyPath) {
348     if (KeyPath == Value)
349       Consumer(Spelling);
350   };
351 }
352 
353 static void denormalizeStringImpl(ArgumentConsumer Consumer,
354                                   const Twine &Spelling,
355                                   Option::OptionClass OptClass, unsigned,
356                                   const Twine &Value) {
357   switch (OptClass) {
358   case Option::SeparateClass:
359   case Option::JoinedOrSeparateClass:
360   case Option::JoinedAndSeparateClass:
361     Consumer(Spelling);
362     Consumer(Value);
363     break;
364   case Option::JoinedClass:
365   case Option::CommaJoinedClass:
366     Consumer(Spelling + Value);
367     break;
368   default:
369     llvm_unreachable("Cannot denormalize an option with option class "
370                      "incompatible with string denormalization.");
371   }
372 }
373 
374 template <typename T>
375 static void denormalizeString(ArgumentConsumer Consumer, const Twine &Spelling,
376                               Option::OptionClass OptClass, unsigned TableIndex,
377                               T Value) {
378   denormalizeStringImpl(Consumer, Spelling, OptClass, TableIndex, Twine(Value));
379 }
380 
381 static std::optional<SimpleEnumValue>
382 findValueTableByName(const SimpleEnumValueTable &Table, StringRef Name) {
383   for (int I = 0, E = Table.Size; I != E; ++I)
384     if (Name == Table.Table[I].Name)
385       return Table.Table[I];
386 
387   return std::nullopt;
388 }
389 
390 static std::optional<SimpleEnumValue>
391 findValueTableByValue(const SimpleEnumValueTable &Table, unsigned Value) {
392   for (int I = 0, E = Table.Size; I != E; ++I)
393     if (Value == Table.Table[I].Value)
394       return Table.Table[I];
395 
396   return std::nullopt;
397 }
398 
399 static std::optional<unsigned> normalizeSimpleEnum(OptSpecifier Opt,
400                                                    unsigned TableIndex,
401                                                    const ArgList &Args,
402                                                    DiagnosticsEngine &Diags) {
403   assert(TableIndex < SimpleEnumValueTablesSize);
404   const SimpleEnumValueTable &Table = SimpleEnumValueTables[TableIndex];
405 
406   auto *Arg = Args.getLastArg(Opt);
407   if (!Arg)
408     return std::nullopt;
409 
410   StringRef ArgValue = Arg->getValue();
411   if (auto MaybeEnumVal = findValueTableByName(Table, ArgValue))
412     return MaybeEnumVal->Value;
413 
414   Diags.Report(diag::err_drv_invalid_value)
415       << Arg->getAsString(Args) << ArgValue;
416   return std::nullopt;
417 }
418 
419 static void denormalizeSimpleEnumImpl(ArgumentConsumer Consumer,
420                                       const Twine &Spelling,
421                                       Option::OptionClass OptClass,
422                                       unsigned TableIndex, unsigned Value) {
423   assert(TableIndex < SimpleEnumValueTablesSize);
424   const SimpleEnumValueTable &Table = SimpleEnumValueTables[TableIndex];
425   if (auto MaybeEnumVal = findValueTableByValue(Table, Value)) {
426     denormalizeString(Consumer, Spelling, OptClass, TableIndex,
427                       MaybeEnumVal->Name);
428   } else {
429     llvm_unreachable("The simple enum value was not correctly defined in "
430                      "the tablegen option description");
431   }
432 }
433 
434 template <typename T>
435 static void denormalizeSimpleEnum(ArgumentConsumer Consumer,
436                                   const Twine &Spelling,
437                                   Option::OptionClass OptClass,
438                                   unsigned TableIndex, T Value) {
439   return denormalizeSimpleEnumImpl(Consumer, Spelling, OptClass, TableIndex,
440                                    static_cast<unsigned>(Value));
441 }
442 
443 static std::optional<std::string> normalizeString(OptSpecifier Opt,
444                                                   int TableIndex,
445                                                   const ArgList &Args,
446                                                   DiagnosticsEngine &Diags) {
447   auto *Arg = Args.getLastArg(Opt);
448   if (!Arg)
449     return std::nullopt;
450   return std::string(Arg->getValue());
451 }
452 
453 template <typename IntTy>
454 static std::optional<IntTy> normalizeStringIntegral(OptSpecifier Opt, int,
455                                                     const ArgList &Args,
456                                                     DiagnosticsEngine &Diags) {
457   auto *Arg = Args.getLastArg(Opt);
458   if (!Arg)
459     return std::nullopt;
460   IntTy Res;
461   if (StringRef(Arg->getValue()).getAsInteger(0, Res)) {
462     Diags.Report(diag::err_drv_invalid_int_value)
463         << Arg->getAsString(Args) << Arg->getValue();
464     return std::nullopt;
465   }
466   return Res;
467 }
468 
469 static std::optional<std::vector<std::string>>
470 normalizeStringVector(OptSpecifier Opt, int, const ArgList &Args,
471                       DiagnosticsEngine &) {
472   return Args.getAllArgValues(Opt);
473 }
474 
475 static void denormalizeStringVector(ArgumentConsumer Consumer,
476                                     const Twine &Spelling,
477                                     Option::OptionClass OptClass,
478                                     unsigned TableIndex,
479                                     const std::vector<std::string> &Values) {
480   switch (OptClass) {
481   case Option::CommaJoinedClass: {
482     std::string CommaJoinedValue;
483     if (!Values.empty()) {
484       CommaJoinedValue.append(Values.front());
485       for (const std::string &Value : llvm::drop_begin(Values, 1)) {
486         CommaJoinedValue.append(",");
487         CommaJoinedValue.append(Value);
488       }
489     }
490     denormalizeString(Consumer, Spelling, Option::OptionClass::JoinedClass,
491                       TableIndex, CommaJoinedValue);
492     break;
493   }
494   case Option::JoinedClass:
495   case Option::SeparateClass:
496   case Option::JoinedOrSeparateClass:
497     for (const std::string &Value : Values)
498       denormalizeString(Consumer, Spelling, OptClass, TableIndex, Value);
499     break;
500   default:
501     llvm_unreachable("Cannot denormalize an option with option class "
502                      "incompatible with string vector denormalization.");
503   }
504 }
505 
506 static std::optional<std::string> normalizeTriple(OptSpecifier Opt,
507                                                   int TableIndex,
508                                                   const ArgList &Args,
509                                                   DiagnosticsEngine &Diags) {
510   auto *Arg = Args.getLastArg(Opt);
511   if (!Arg)
512     return std::nullopt;
513   return llvm::Triple::normalize(Arg->getValue());
514 }
515 
516 template <typename T, typename U>
517 static T mergeForwardValue(T KeyPath, U Value) {
518   return static_cast<T>(Value);
519 }
520 
521 template <typename T, typename U> static T mergeMaskValue(T KeyPath, U Value) {
522   return KeyPath | Value;
523 }
524 
525 template <typename T> static T extractForwardValue(T KeyPath) {
526   return KeyPath;
527 }
528 
529 template <typename T, typename U, U Value>
530 static T extractMaskValue(T KeyPath) {
531   return ((KeyPath & Value) == Value) ? static_cast<T>(Value) : T();
532 }
533 
534 #define PARSE_OPTION_WITH_MARSHALLING(                                         \
535     ARGS, DIAGS, PREFIX_TYPE, SPELLING, ID, KIND, GROUP, ALIAS, ALIASARGS,     \
536     FLAGS, VISIBILITY, PARAM, HELPTEXT, HELPTEXTSFORVARIANTS, METAVAR, VALUES, \
537     SHOULD_PARSE, ALWAYS_EMIT, KEYPATH, DEFAULT_VALUE, IMPLIED_CHECK,          \
538     IMPLIED_VALUE, NORMALIZER, DENORMALIZER, MERGER, EXTRACTOR, TABLE_INDEX)   \
539   if ((VISIBILITY) & options::CC1Option) {                                     \
540     KEYPATH = MERGER(KEYPATH, DEFAULT_VALUE);                                  \
541     if (IMPLIED_CHECK)                                                         \
542       KEYPATH = MERGER(KEYPATH, IMPLIED_VALUE);                                \
543     if (SHOULD_PARSE)                                                          \
544       if (auto MaybeValue = NORMALIZER(OPT_##ID, TABLE_INDEX, ARGS, DIAGS))    \
545         KEYPATH =                                                              \
546             MERGER(KEYPATH, static_cast<decltype(KEYPATH)>(*MaybeValue));      \
547   }
548 
549 // Capture the extracted value as a lambda argument to avoid potential issues
550 // with lifetime extension of the reference.
551 #define GENERATE_OPTION_WITH_MARSHALLING(                                      \
552     CONSUMER, PREFIX_TYPE, SPELLING, ID, KIND, GROUP, ALIAS, ALIASARGS, FLAGS, \
553     VISIBILITY, PARAM, HELPTEXT, HELPTEXTSFORVARIANTS, METAVAR, VALUES,        \
554     SHOULD_PARSE, ALWAYS_EMIT, KEYPATH, DEFAULT_VALUE, IMPLIED_CHECK,          \
555     IMPLIED_VALUE, NORMALIZER, DENORMALIZER, MERGER, EXTRACTOR, TABLE_INDEX)   \
556   if ((VISIBILITY) & options::CC1Option) {                                     \
557     [&](const auto &Extracted) {                                               \
558       if (ALWAYS_EMIT ||                                                       \
559           (Extracted !=                                                        \
560            static_cast<decltype(KEYPATH)>((IMPLIED_CHECK) ? (IMPLIED_VALUE)    \
561                                                           : (DEFAULT_VALUE)))) \
562         DENORMALIZER(CONSUMER, SPELLING, Option::KIND##Class, TABLE_INDEX,     \
563                      Extracted);                                               \
564     }(EXTRACTOR(KEYPATH));                                                     \
565   }
566 
567 static StringRef GetInputKindName(InputKind IK);
568 
569 static bool FixupInvocation(CompilerInvocation &Invocation,
570                             DiagnosticsEngine &Diags, const ArgList &Args,
571                             InputKind IK) {
572   unsigned NumErrorsBefore = Diags.getNumErrors();
573 
574   LangOptions &LangOpts = Invocation.getLangOpts();
575   CodeGenOptions &CodeGenOpts = Invocation.getCodeGenOpts();
576   TargetOptions &TargetOpts = Invocation.getTargetOpts();
577   FrontendOptions &FrontendOpts = Invocation.getFrontendOpts();
578   CodeGenOpts.XRayInstrumentFunctions = LangOpts.XRayInstrument;
579   CodeGenOpts.XRayAlwaysEmitCustomEvents = LangOpts.XRayAlwaysEmitCustomEvents;
580   CodeGenOpts.XRayAlwaysEmitTypedEvents = LangOpts.XRayAlwaysEmitTypedEvents;
581   CodeGenOpts.DisableFree = FrontendOpts.DisableFree;
582   FrontendOpts.GenerateGlobalModuleIndex = FrontendOpts.UseGlobalModuleIndex;
583   if (FrontendOpts.ShowStats)
584     CodeGenOpts.ClearASTBeforeBackend = false;
585   LangOpts.SanitizeCoverage = CodeGenOpts.hasSanitizeCoverage();
586   LangOpts.ForceEmitVTables = CodeGenOpts.ForceEmitVTables;
587   LangOpts.SpeculativeLoadHardening = CodeGenOpts.SpeculativeLoadHardening;
588   LangOpts.CurrentModule = LangOpts.ModuleName;
589 
590   llvm::Triple T(TargetOpts.Triple);
591   llvm::Triple::ArchType Arch = T.getArch();
592 
593   CodeGenOpts.CodeModel = TargetOpts.CodeModel;
594   CodeGenOpts.LargeDataThreshold = TargetOpts.LargeDataThreshold;
595 
596   if (LangOpts.getExceptionHandling() !=
597           LangOptions::ExceptionHandlingKind::None &&
598       T.isWindowsMSVCEnvironment())
599     Diags.Report(diag::err_fe_invalid_exception_model)
600         << static_cast<unsigned>(LangOpts.getExceptionHandling()) << T.str();
601 
602   if (LangOpts.AppleKext && !LangOpts.CPlusPlus)
603     Diags.Report(diag::warn_c_kext);
604 
605   if (LangOpts.NewAlignOverride &&
606       !llvm::isPowerOf2_32(LangOpts.NewAlignOverride)) {
607     Arg *A = Args.getLastArg(OPT_fnew_alignment_EQ);
608     Diags.Report(diag::err_fe_invalid_alignment)
609         << A->getAsString(Args) << A->getValue();
610     LangOpts.NewAlignOverride = 0;
611   }
612 
613   // The -f[no-]raw-string-literals option is only valid in C and in C++
614   // standards before C++11.
615   if (LangOpts.CPlusPlus11) {
616     if (Args.hasArg(OPT_fraw_string_literals, OPT_fno_raw_string_literals)) {
617       Args.claimAllArgs(OPT_fraw_string_literals, OPT_fno_raw_string_literals);
618       Diags.Report(diag::warn_drv_fraw_string_literals_in_cxx11)
619           << bool(LangOpts.RawStringLiterals);
620     }
621 
622     // Do not allow disabling raw string literals in C++11 or later.
623     LangOpts.RawStringLiterals = true;
624   }
625 
626   // Prevent the user from specifying both -fsycl-is-device and -fsycl-is-host.
627   if (LangOpts.SYCLIsDevice && LangOpts.SYCLIsHost)
628     Diags.Report(diag::err_drv_argument_not_allowed_with) << "-fsycl-is-device"
629                                                           << "-fsycl-is-host";
630 
631   if (Args.hasArg(OPT_fgnu89_inline) && LangOpts.CPlusPlus)
632     Diags.Report(diag::err_drv_argument_not_allowed_with)
633         << "-fgnu89-inline" << GetInputKindName(IK);
634 
635   if (Args.hasArg(OPT_hlsl_entrypoint) && !LangOpts.HLSL)
636     Diags.Report(diag::err_drv_argument_not_allowed_with)
637         << "-hlsl-entry" << GetInputKindName(IK);
638 
639   if (Args.hasArg(OPT_fgpu_allow_device_init) && !LangOpts.HIP)
640     Diags.Report(diag::warn_ignored_hip_only_option)
641         << Args.getLastArg(OPT_fgpu_allow_device_init)->getAsString(Args);
642 
643   if (Args.hasArg(OPT_gpu_max_threads_per_block_EQ) && !LangOpts.HIP)
644     Diags.Report(diag::warn_ignored_hip_only_option)
645         << Args.getLastArg(OPT_gpu_max_threads_per_block_EQ)->getAsString(Args);
646 
647   // When these options are used, the compiler is allowed to apply
648   // optimizations that may affect the final result. For example
649   // (x+y)+z is transformed to x+(y+z) but may not give the same
650   // final result; it's not value safe.
651   // Another example can be to simplify x/x to 1.0 but x could be 0.0, INF
652   // or NaN. Final result may then differ. An error is issued when the eval
653   // method is set with one of these options.
654   if (Args.hasArg(OPT_ffp_eval_method_EQ)) {
655     if (LangOpts.ApproxFunc)
656       Diags.Report(diag::err_incompatible_fp_eval_method_options) << 0;
657     if (LangOpts.AllowFPReassoc)
658       Diags.Report(diag::err_incompatible_fp_eval_method_options) << 1;
659     if (LangOpts.AllowRecip)
660       Diags.Report(diag::err_incompatible_fp_eval_method_options) << 2;
661   }
662 
663   // -cl-strict-aliasing needs to emit diagnostic in the case where CL > 1.0.
664   // This option should be deprecated for CL > 1.0 because
665   // this option was added for compatibility with OpenCL 1.0.
666   if (Args.getLastArg(OPT_cl_strict_aliasing) &&
667       (LangOpts.getOpenCLCompatibleVersion() > 100))
668     Diags.Report(diag::warn_option_invalid_ocl_version)
669         << LangOpts.getOpenCLVersionString()
670         << Args.getLastArg(OPT_cl_strict_aliasing)->getAsString(Args);
671 
672   if (Arg *A = Args.getLastArg(OPT_fdefault_calling_conv_EQ)) {
673     auto DefaultCC = LangOpts.getDefaultCallingConv();
674 
675     bool emitError = (DefaultCC == LangOptions::DCC_FastCall ||
676                       DefaultCC == LangOptions::DCC_StdCall) &&
677                      Arch != llvm::Triple::x86;
678     emitError |= (DefaultCC == LangOptions::DCC_VectorCall ||
679                   DefaultCC == LangOptions::DCC_RegCall) &&
680                  !T.isX86();
681     emitError |= DefaultCC == LangOptions::DCC_RtdCall && Arch != llvm::Triple::m68k;
682     if (emitError)
683       Diags.Report(diag::err_drv_argument_not_allowed_with)
684           << A->getSpelling() << T.getTriple();
685   }
686 
687   return Diags.getNumErrors() == NumErrorsBefore;
688 }
689 
690 //===----------------------------------------------------------------------===//
691 // Deserialization (from args)
692 //===----------------------------------------------------------------------===//
693 
694 static unsigned getOptimizationLevel(ArgList &Args, InputKind IK,
695                                      DiagnosticsEngine &Diags) {
696   unsigned DefaultOpt = 0;
697   if ((IK.getLanguage() == Language::OpenCL ||
698        IK.getLanguage() == Language::OpenCLCXX) &&
699       !Args.hasArg(OPT_cl_opt_disable))
700     DefaultOpt = 2;
701 
702   if (Arg *A = Args.getLastArg(options::OPT_O_Group)) {
703     if (A->getOption().matches(options::OPT_O0))
704       return 0;
705 
706     if (A->getOption().matches(options::OPT_Ofast))
707       return 3;
708 
709     assert(A->getOption().matches(options::OPT_O));
710 
711     StringRef S(A->getValue());
712     if (S == "s" || S == "z")
713       return 2;
714 
715     if (S == "g")
716       return 1;
717 
718     return getLastArgIntValue(Args, OPT_O, DefaultOpt, Diags);
719   }
720 
721   return DefaultOpt;
722 }
723 
724 static unsigned getOptimizationLevelSize(ArgList &Args) {
725   if (Arg *A = Args.getLastArg(options::OPT_O_Group)) {
726     if (A->getOption().matches(options::OPT_O)) {
727       switch (A->getValue()[0]) {
728       default:
729         return 0;
730       case 's':
731         return 1;
732       case 'z':
733         return 2;
734       }
735     }
736   }
737   return 0;
738 }
739 
740 static void GenerateArg(ArgumentConsumer Consumer,
741                         llvm::opt::OptSpecifier OptSpecifier) {
742   Option Opt = getDriverOptTable().getOption(OptSpecifier);
743   denormalizeSimpleFlag(Consumer, Opt.getPrefixedName(),
744                         Option::OptionClass::FlagClass, 0);
745 }
746 
747 static void GenerateArg(ArgumentConsumer Consumer,
748                         llvm::opt::OptSpecifier OptSpecifier,
749                         const Twine &Value) {
750   Option Opt = getDriverOptTable().getOption(OptSpecifier);
751   denormalizeString(Consumer, Opt.getPrefixedName(), Opt.getKind(), 0, Value);
752 }
753 
754 // Parse command line arguments into CompilerInvocation.
755 using ParseFn =
756     llvm::function_ref<bool(CompilerInvocation &, ArrayRef<const char *>,
757                             DiagnosticsEngine &, const char *)>;
758 
759 // Generate command line arguments from CompilerInvocation.
760 using GenerateFn = llvm::function_ref<void(
761     CompilerInvocation &, SmallVectorImpl<const char *> &,
762     CompilerInvocation::StringAllocator)>;
763 
764 /// May perform round-trip of command line arguments. By default, the round-trip
765 /// is enabled in assert builds. This can be overwritten at run-time via the
766 /// "-round-trip-args" and "-no-round-trip-args" command line flags, or via the
767 /// ForceRoundTrip parameter.
768 ///
769 /// During round-trip, the command line arguments are parsed into a dummy
770 /// CompilerInvocation, which is used to generate the command line arguments
771 /// again. The real CompilerInvocation is then created by parsing the generated
772 /// arguments, not the original ones. This (in combination with tests covering
773 /// argument behavior) ensures the generated command line is complete (doesn't
774 /// drop/mangle any arguments).
775 ///
776 /// Finally, we check the command line that was used to create the real
777 /// CompilerInvocation instance. By default, we compare it to the command line
778 /// the real CompilerInvocation generates. This checks whether the generator is
779 /// deterministic. If \p CheckAgainstOriginalInvocation is enabled, we instead
780 /// compare it to the original command line to verify the original command-line
781 /// was canonical and can round-trip exactly.
782 static bool RoundTrip(ParseFn Parse, GenerateFn Generate,
783                       CompilerInvocation &RealInvocation,
784                       CompilerInvocation &DummyInvocation,
785                       ArrayRef<const char *> CommandLineArgs,
786                       DiagnosticsEngine &Diags, const char *Argv0,
787                       bool CheckAgainstOriginalInvocation = false,
788                       bool ForceRoundTrip = false) {
789 #ifndef NDEBUG
790   bool DoRoundTripDefault = true;
791 #else
792   bool DoRoundTripDefault = false;
793 #endif
794 
795   bool DoRoundTrip = DoRoundTripDefault;
796   if (ForceRoundTrip) {
797     DoRoundTrip = true;
798   } else {
799     for (const auto *Arg : CommandLineArgs) {
800       if (Arg == StringRef("-round-trip-args"))
801         DoRoundTrip = true;
802       if (Arg == StringRef("-no-round-trip-args"))
803         DoRoundTrip = false;
804     }
805   }
806 
807   // If round-trip was not requested, simply run the parser with the real
808   // invocation diagnostics.
809   if (!DoRoundTrip)
810     return Parse(RealInvocation, CommandLineArgs, Diags, Argv0);
811 
812   // Serializes quoted (and potentially escaped) arguments.
813   auto SerializeArgs = [](ArrayRef<const char *> Args) {
814     std::string Buffer;
815     llvm::raw_string_ostream OS(Buffer);
816     for (const char *Arg : Args) {
817       llvm::sys::printArg(OS, Arg, /*Quote=*/true);
818       OS << ' ';
819     }
820     return Buffer;
821   };
822 
823   // Setup a dummy DiagnosticsEngine.
824   DiagnosticsEngine DummyDiags(new DiagnosticIDs(), new DiagnosticOptions());
825   DummyDiags.setClient(new TextDiagnosticBuffer());
826 
827   // Run the first parse on the original arguments with the dummy invocation and
828   // diagnostics.
829   if (!Parse(DummyInvocation, CommandLineArgs, DummyDiags, Argv0) ||
830       DummyDiags.getNumWarnings() != 0) {
831     // If the first parse did not succeed, it must be user mistake (invalid
832     // command line arguments). We won't be able to generate arguments that
833     // would reproduce the same result. Let's fail again with the real
834     // invocation and diagnostics, so all side-effects of parsing are visible.
835     unsigned NumWarningsBefore = Diags.getNumWarnings();
836     auto Success = Parse(RealInvocation, CommandLineArgs, Diags, Argv0);
837     if (!Success || Diags.getNumWarnings() != NumWarningsBefore)
838       return Success;
839 
840     // Parse with original options and diagnostics succeeded even though it
841     // shouldn't have. Something is off.
842     Diags.Report(diag::err_cc1_round_trip_fail_then_ok);
843     Diags.Report(diag::note_cc1_round_trip_original)
844         << SerializeArgs(CommandLineArgs);
845     return false;
846   }
847 
848   // Setup string allocator.
849   llvm::BumpPtrAllocator Alloc;
850   llvm::StringSaver StringPool(Alloc);
851   auto SA = [&StringPool](const Twine &Arg) {
852     return StringPool.save(Arg).data();
853   };
854 
855   // Generate arguments from the dummy invocation. If Generate is the
856   // inverse of Parse, the newly generated arguments must have the same
857   // semantics as the original.
858   SmallVector<const char *> GeneratedArgs;
859   Generate(DummyInvocation, GeneratedArgs, SA);
860 
861   // Run the second parse, now on the generated arguments, and with the real
862   // invocation and diagnostics. The result is what we will end up using for the
863   // rest of compilation, so if Generate is not inverse of Parse, something down
864   // the line will break.
865   bool Success2 = Parse(RealInvocation, GeneratedArgs, Diags, Argv0);
866 
867   // The first parse on original arguments succeeded, but second parse of
868   // generated arguments failed. Something must be wrong with the generator.
869   if (!Success2) {
870     Diags.Report(diag::err_cc1_round_trip_ok_then_fail);
871     Diags.Report(diag::note_cc1_round_trip_generated)
872         << 1 << SerializeArgs(GeneratedArgs);
873     return false;
874   }
875 
876   SmallVector<const char *> ComparisonArgs;
877   if (CheckAgainstOriginalInvocation)
878     // Compare against original arguments.
879     ComparisonArgs.assign(CommandLineArgs.begin(), CommandLineArgs.end());
880   else
881     // Generate arguments again, this time from the options we will end up using
882     // for the rest of the compilation.
883     Generate(RealInvocation, ComparisonArgs, SA);
884 
885   // Compares two lists of arguments.
886   auto Equal = [](const ArrayRef<const char *> A,
887                   const ArrayRef<const char *> B) {
888     return std::equal(A.begin(), A.end(), B.begin(), B.end(),
889                       [](const char *AElem, const char *BElem) {
890                         return StringRef(AElem) == StringRef(BElem);
891                       });
892   };
893 
894   // If we generated different arguments from what we assume are two
895   // semantically equivalent CompilerInvocations, the Generate function may
896   // be non-deterministic.
897   if (!Equal(GeneratedArgs, ComparisonArgs)) {
898     Diags.Report(diag::err_cc1_round_trip_mismatch);
899     Diags.Report(diag::note_cc1_round_trip_generated)
900         << 1 << SerializeArgs(GeneratedArgs);
901     Diags.Report(diag::note_cc1_round_trip_generated)
902         << 2 << SerializeArgs(ComparisonArgs);
903     return false;
904   }
905 
906   Diags.Report(diag::remark_cc1_round_trip_generated)
907       << 1 << SerializeArgs(GeneratedArgs);
908   Diags.Report(diag::remark_cc1_round_trip_generated)
909       << 2 << SerializeArgs(ComparisonArgs);
910 
911   return Success2;
912 }
913 
914 bool CompilerInvocation::checkCC1RoundTrip(ArrayRef<const char *> Args,
915                                            DiagnosticsEngine &Diags,
916                                            const char *Argv0) {
917   CompilerInvocation DummyInvocation1, DummyInvocation2;
918   return RoundTrip(
919       [](CompilerInvocation &Invocation, ArrayRef<const char *> CommandLineArgs,
920          DiagnosticsEngine &Diags, const char *Argv0) {
921         return CreateFromArgsImpl(Invocation, CommandLineArgs, Diags, Argv0);
922       },
923       [](CompilerInvocation &Invocation, SmallVectorImpl<const char *> &Args,
924          StringAllocator SA) {
925         Args.push_back("-cc1");
926         Invocation.generateCC1CommandLine(Args, SA);
927       },
928       DummyInvocation1, DummyInvocation2, Args, Diags, Argv0,
929       /*CheckAgainstOriginalInvocation=*/true, /*ForceRoundTrip=*/true);
930 }
931 
932 static void addDiagnosticArgs(ArgList &Args, OptSpecifier Group,
933                               OptSpecifier GroupWithValue,
934                               std::vector<std::string> &Diagnostics) {
935   for (auto *A : Args.filtered(Group)) {
936     if (A->getOption().getKind() == Option::FlagClass) {
937       // The argument is a pure flag (such as OPT_Wall or OPT_Wdeprecated). Add
938       // its name (minus the "W" or "R" at the beginning) to the diagnostics.
939       Diagnostics.push_back(
940           std::string(A->getOption().getName().drop_front(1)));
941     } else if (A->getOption().matches(GroupWithValue)) {
942       // This is -Wfoo= or -Rfoo=, where foo is the name of the diagnostic
943       // group. Add only the group name to the diagnostics.
944       Diagnostics.push_back(
945           std::string(A->getOption().getName().drop_front(1).rtrim("=-")));
946     } else {
947       // Otherwise, add its value (for OPT_W_Joined and similar).
948       Diagnostics.push_back(A->getValue());
949     }
950   }
951 }
952 
953 // Parse the Static Analyzer configuration. If \p Diags is set to nullptr,
954 // it won't verify the input.
955 static void parseAnalyzerConfigs(AnalyzerOptions &AnOpts,
956                                  DiagnosticsEngine *Diags);
957 
958 static void getAllNoBuiltinFuncValues(ArgList &Args,
959                                       std::vector<std::string> &Funcs) {
960   std::vector<std::string> Values = Args.getAllArgValues(OPT_fno_builtin_);
961   auto BuiltinEnd = llvm::partition(Values, Builtin::Context::isBuiltinFunc);
962   Funcs.insert(Funcs.end(), Values.begin(), BuiltinEnd);
963 }
964 
965 static void GenerateAnalyzerArgs(const AnalyzerOptions &Opts,
966                                  ArgumentConsumer Consumer) {
967   const AnalyzerOptions *AnalyzerOpts = &Opts;
968 
969 #define ANALYZER_OPTION_WITH_MARSHALLING(...)                                  \
970   GENERATE_OPTION_WITH_MARSHALLING(Consumer, __VA_ARGS__)
971 #include "clang/Driver/Options.inc"
972 #undef ANALYZER_OPTION_WITH_MARSHALLING
973 
974   if (Opts.AnalysisConstraintsOpt != RangeConstraintsModel) {
975     switch (Opts.AnalysisConstraintsOpt) {
976 #define ANALYSIS_CONSTRAINTS(NAME, CMDFLAG, DESC, CREATFN)                     \
977   case NAME##Model:                                                            \
978     GenerateArg(Consumer, OPT_analyzer_constraints, CMDFLAG);                  \
979     break;
980 #include "clang/StaticAnalyzer/Core/Analyses.def"
981     default:
982       llvm_unreachable("Tried to generate unknown analysis constraint.");
983     }
984   }
985 
986   if (Opts.AnalysisDiagOpt != PD_HTML) {
987     switch (Opts.AnalysisDiagOpt) {
988 #define ANALYSIS_DIAGNOSTICS(NAME, CMDFLAG, DESC, CREATFN)                     \
989   case PD_##NAME:                                                              \
990     GenerateArg(Consumer, OPT_analyzer_output, CMDFLAG);                       \
991     break;
992 #include "clang/StaticAnalyzer/Core/Analyses.def"
993     default:
994       llvm_unreachable("Tried to generate unknown analysis diagnostic client.");
995     }
996   }
997 
998   if (Opts.AnalysisPurgeOpt != PurgeStmt) {
999     switch (Opts.AnalysisPurgeOpt) {
1000 #define ANALYSIS_PURGE(NAME, CMDFLAG, DESC)                                    \
1001   case NAME:                                                                   \
1002     GenerateArg(Consumer, OPT_analyzer_purge, CMDFLAG);                        \
1003     break;
1004 #include "clang/StaticAnalyzer/Core/Analyses.def"
1005     default:
1006       llvm_unreachable("Tried to generate unknown analysis purge mode.");
1007     }
1008   }
1009 
1010   if (Opts.InliningMode != NoRedundancy) {
1011     switch (Opts.InliningMode) {
1012 #define ANALYSIS_INLINING_MODE(NAME, CMDFLAG, DESC)                            \
1013   case NAME:                                                                   \
1014     GenerateArg(Consumer, OPT_analyzer_inlining_mode, CMDFLAG);                \
1015     break;
1016 #include "clang/StaticAnalyzer/Core/Analyses.def"
1017     default:
1018       llvm_unreachable("Tried to generate unknown analysis inlining mode.");
1019     }
1020   }
1021 
1022   for (const auto &CP : Opts.CheckersAndPackages) {
1023     OptSpecifier Opt =
1024         CP.second ? OPT_analyzer_checker : OPT_analyzer_disable_checker;
1025     GenerateArg(Consumer, Opt, CP.first);
1026   }
1027 
1028   AnalyzerOptions ConfigOpts;
1029   parseAnalyzerConfigs(ConfigOpts, nullptr);
1030 
1031   // Sort options by key to avoid relying on StringMap iteration order.
1032   SmallVector<std::pair<StringRef, StringRef>, 4> SortedConfigOpts;
1033   for (const auto &C : Opts.Config)
1034     SortedConfigOpts.emplace_back(C.getKey(), C.getValue());
1035   llvm::sort(SortedConfigOpts, llvm::less_first());
1036 
1037   for (const auto &[Key, Value] : SortedConfigOpts) {
1038     // Don't generate anything that came from parseAnalyzerConfigs. It would be
1039     // redundant and may not be valid on the command line.
1040     auto Entry = ConfigOpts.Config.find(Key);
1041     if (Entry != ConfigOpts.Config.end() && Entry->getValue() == Value)
1042       continue;
1043 
1044     GenerateArg(Consumer, OPT_analyzer_config, Key + "=" + Value);
1045   }
1046 
1047   // Nothing to generate for FullCompilerInvocation.
1048 }
1049 
1050 static bool ParseAnalyzerArgs(AnalyzerOptions &Opts, ArgList &Args,
1051                               DiagnosticsEngine &Diags) {
1052   unsigned NumErrorsBefore = Diags.getNumErrors();
1053 
1054   AnalyzerOptions *AnalyzerOpts = &Opts;
1055 
1056 #define ANALYZER_OPTION_WITH_MARSHALLING(...)                                  \
1057   PARSE_OPTION_WITH_MARSHALLING(Args, Diags, __VA_ARGS__)
1058 #include "clang/Driver/Options.inc"
1059 #undef ANALYZER_OPTION_WITH_MARSHALLING
1060 
1061   if (Arg *A = Args.getLastArg(OPT_analyzer_constraints)) {
1062     StringRef Name = A->getValue();
1063     AnalysisConstraints Value = llvm::StringSwitch<AnalysisConstraints>(Name)
1064 #define ANALYSIS_CONSTRAINTS(NAME, CMDFLAG, DESC, CREATFN) \
1065       .Case(CMDFLAG, NAME##Model)
1066 #include "clang/StaticAnalyzer/Core/Analyses.def"
1067       .Default(NumConstraints);
1068     if (Value == NumConstraints) {
1069       Diags.Report(diag::err_drv_invalid_value)
1070         << A->getAsString(Args) << Name;
1071     } else {
1072 #ifndef LLVM_WITH_Z3
1073       if (Value == AnalysisConstraints::Z3ConstraintsModel) {
1074         Diags.Report(diag::err_analyzer_not_built_with_z3);
1075       }
1076 #endif // LLVM_WITH_Z3
1077       Opts.AnalysisConstraintsOpt = Value;
1078     }
1079   }
1080 
1081   if (Arg *A = Args.getLastArg(OPT_analyzer_output)) {
1082     StringRef Name = A->getValue();
1083     AnalysisDiagClients Value = llvm::StringSwitch<AnalysisDiagClients>(Name)
1084 #define ANALYSIS_DIAGNOSTICS(NAME, CMDFLAG, DESC, CREATFN) \
1085       .Case(CMDFLAG, PD_##NAME)
1086 #include "clang/StaticAnalyzer/Core/Analyses.def"
1087       .Default(NUM_ANALYSIS_DIAG_CLIENTS);
1088     if (Value == NUM_ANALYSIS_DIAG_CLIENTS) {
1089       Diags.Report(diag::err_drv_invalid_value)
1090         << A->getAsString(Args) << Name;
1091     } else {
1092       Opts.AnalysisDiagOpt = Value;
1093     }
1094   }
1095 
1096   if (Arg *A = Args.getLastArg(OPT_analyzer_purge)) {
1097     StringRef Name = A->getValue();
1098     AnalysisPurgeMode Value = llvm::StringSwitch<AnalysisPurgeMode>(Name)
1099 #define ANALYSIS_PURGE(NAME, CMDFLAG, DESC) \
1100       .Case(CMDFLAG, NAME)
1101 #include "clang/StaticAnalyzer/Core/Analyses.def"
1102       .Default(NumPurgeModes);
1103     if (Value == NumPurgeModes) {
1104       Diags.Report(diag::err_drv_invalid_value)
1105         << A->getAsString(Args) << Name;
1106     } else {
1107       Opts.AnalysisPurgeOpt = Value;
1108     }
1109   }
1110 
1111   if (Arg *A = Args.getLastArg(OPT_analyzer_inlining_mode)) {
1112     StringRef Name = A->getValue();
1113     AnalysisInliningMode Value = llvm::StringSwitch<AnalysisInliningMode>(Name)
1114 #define ANALYSIS_INLINING_MODE(NAME, CMDFLAG, DESC) \
1115       .Case(CMDFLAG, NAME)
1116 #include "clang/StaticAnalyzer/Core/Analyses.def"
1117       .Default(NumInliningModes);
1118     if (Value == NumInliningModes) {
1119       Diags.Report(diag::err_drv_invalid_value)
1120         << A->getAsString(Args) << Name;
1121     } else {
1122       Opts.InliningMode = Value;
1123     }
1124   }
1125 
1126   Opts.CheckersAndPackages.clear();
1127   for (const Arg *A :
1128        Args.filtered(OPT_analyzer_checker, OPT_analyzer_disable_checker)) {
1129     A->claim();
1130     bool IsEnabled = A->getOption().getID() == OPT_analyzer_checker;
1131     // We can have a list of comma separated checker names, e.g:
1132     // '-analyzer-checker=cocoa,unix'
1133     StringRef CheckerAndPackageList = A->getValue();
1134     SmallVector<StringRef, 16> CheckersAndPackages;
1135     CheckerAndPackageList.split(CheckersAndPackages, ",");
1136     for (const StringRef &CheckerOrPackage : CheckersAndPackages)
1137       Opts.CheckersAndPackages.emplace_back(std::string(CheckerOrPackage),
1138                                             IsEnabled);
1139   }
1140 
1141   // Go through the analyzer configuration options.
1142   for (const auto *A : Args.filtered(OPT_analyzer_config)) {
1143 
1144     // We can have a list of comma separated config names, e.g:
1145     // '-analyzer-config key1=val1,key2=val2'
1146     StringRef configList = A->getValue();
1147     SmallVector<StringRef, 4> configVals;
1148     configList.split(configVals, ",");
1149     for (const auto &configVal : configVals) {
1150       StringRef key, val;
1151       std::tie(key, val) = configVal.split("=");
1152       if (val.empty()) {
1153         Diags.Report(SourceLocation(),
1154                      diag::err_analyzer_config_no_value) << configVal;
1155         break;
1156       }
1157       if (val.contains('=')) {
1158         Diags.Report(SourceLocation(),
1159                      diag::err_analyzer_config_multiple_values)
1160           << configVal;
1161         break;
1162       }
1163 
1164       // TODO: Check checker options too, possibly in CheckerRegistry.
1165       // Leave unknown non-checker configs unclaimed.
1166       if (!key.contains(":") && Opts.isUnknownAnalyzerConfig(key)) {
1167         if (Opts.ShouldEmitErrorsOnInvalidConfigValue)
1168           Diags.Report(diag::err_analyzer_config_unknown) << key;
1169         continue;
1170       }
1171 
1172       A->claim();
1173       Opts.Config[key] = std::string(val);
1174     }
1175   }
1176 
1177   if (Opts.ShouldEmitErrorsOnInvalidConfigValue)
1178     parseAnalyzerConfigs(Opts, &Diags);
1179   else
1180     parseAnalyzerConfigs(Opts, nullptr);
1181 
1182   llvm::raw_string_ostream os(Opts.FullCompilerInvocation);
1183   for (unsigned i = 0; i < Args.getNumInputArgStrings(); ++i) {
1184     if (i != 0)
1185       os << " ";
1186     os << Args.getArgString(i);
1187   }
1188 
1189   return Diags.getNumErrors() == NumErrorsBefore;
1190 }
1191 
1192 static StringRef getStringOption(AnalyzerOptions::ConfigTable &Config,
1193                                  StringRef OptionName, StringRef DefaultVal) {
1194   return Config.insert({OptionName, std::string(DefaultVal)}).first->second;
1195 }
1196 
1197 static void initOption(AnalyzerOptions::ConfigTable &Config,
1198                        DiagnosticsEngine *Diags,
1199                        StringRef &OptionField, StringRef Name,
1200                        StringRef DefaultVal) {
1201   // String options may be known to invalid (e.g. if the expected string is a
1202   // file name, but the file does not exist), those will have to be checked in
1203   // parseConfigs.
1204   OptionField = getStringOption(Config, Name, DefaultVal);
1205 }
1206 
1207 static void initOption(AnalyzerOptions::ConfigTable &Config,
1208                        DiagnosticsEngine *Diags,
1209                        bool &OptionField, StringRef Name, bool DefaultVal) {
1210   auto PossiblyInvalidVal =
1211       llvm::StringSwitch<std::optional<bool>>(
1212           getStringOption(Config, Name, (DefaultVal ? "true" : "false")))
1213           .Case("true", true)
1214           .Case("false", false)
1215           .Default(std::nullopt);
1216 
1217   if (!PossiblyInvalidVal) {
1218     if (Diags)
1219       Diags->Report(diag::err_analyzer_config_invalid_input)
1220         << Name << "a boolean";
1221     else
1222       OptionField = DefaultVal;
1223   } else
1224     OptionField = *PossiblyInvalidVal;
1225 }
1226 
1227 static void initOption(AnalyzerOptions::ConfigTable &Config,
1228                        DiagnosticsEngine *Diags,
1229                        unsigned &OptionField, StringRef Name,
1230                        unsigned DefaultVal) {
1231 
1232   OptionField = DefaultVal;
1233   bool HasFailed = getStringOption(Config, Name, std::to_string(DefaultVal))
1234                      .getAsInteger(0, OptionField);
1235   if (Diags && HasFailed)
1236     Diags->Report(diag::err_analyzer_config_invalid_input)
1237       << Name << "an unsigned";
1238 }
1239 
1240 static void parseAnalyzerConfigs(AnalyzerOptions &AnOpts,
1241                                  DiagnosticsEngine *Diags) {
1242   // TODO: There's no need to store the entire configtable, it'd be plenty
1243   // enough to store checker options.
1244 
1245 #define ANALYZER_OPTION(TYPE, NAME, CMDFLAG, DESC, DEFAULT_VAL)                \
1246   initOption(AnOpts.Config, Diags, AnOpts.NAME, CMDFLAG, DEFAULT_VAL);
1247 #define ANALYZER_OPTION_DEPENDS_ON_USER_MODE(...)
1248 #include "clang/StaticAnalyzer/Core/AnalyzerOptions.def"
1249 
1250   assert(AnOpts.UserMode == "shallow" || AnOpts.UserMode == "deep");
1251   const bool InShallowMode = AnOpts.UserMode == "shallow";
1252 
1253 #define ANALYZER_OPTION(...)
1254 #define ANALYZER_OPTION_DEPENDS_ON_USER_MODE(TYPE, NAME, CMDFLAG, DESC,        \
1255                                              SHALLOW_VAL, DEEP_VAL)            \
1256   initOption(AnOpts.Config, Diags, AnOpts.NAME, CMDFLAG,                       \
1257              InShallowMode ? SHALLOW_VAL : DEEP_VAL);
1258 #include "clang/StaticAnalyzer/Core/AnalyzerOptions.def"
1259 
1260   // At this point, AnalyzerOptions is configured. Let's validate some options.
1261 
1262   // FIXME: Here we try to validate the silenced checkers or packages are valid.
1263   // The current approach only validates the registered checkers which does not
1264   // contain the runtime enabled checkers and optimally we would validate both.
1265   if (!AnOpts.RawSilencedCheckersAndPackages.empty()) {
1266     std::vector<StringRef> Checkers =
1267         AnOpts.getRegisteredCheckers(/*IncludeExperimental=*/true);
1268     std::vector<StringRef> Packages =
1269         AnOpts.getRegisteredPackages(/*IncludeExperimental=*/true);
1270 
1271     SmallVector<StringRef, 16> CheckersAndPackages;
1272     AnOpts.RawSilencedCheckersAndPackages.split(CheckersAndPackages, ";");
1273 
1274     for (const StringRef &CheckerOrPackage : CheckersAndPackages) {
1275       if (Diags) {
1276         bool IsChecker = CheckerOrPackage.contains('.');
1277         bool IsValidName = IsChecker
1278                                ? llvm::is_contained(Checkers, CheckerOrPackage)
1279                                : llvm::is_contained(Packages, CheckerOrPackage);
1280 
1281         if (!IsValidName)
1282           Diags->Report(diag::err_unknown_analyzer_checker_or_package)
1283               << CheckerOrPackage;
1284       }
1285 
1286       AnOpts.SilencedCheckersAndPackages.emplace_back(CheckerOrPackage);
1287     }
1288   }
1289 
1290   if (!Diags)
1291     return;
1292 
1293   if (AnOpts.ShouldTrackConditionsDebug && !AnOpts.ShouldTrackConditions)
1294     Diags->Report(diag::err_analyzer_config_invalid_input)
1295         << "track-conditions-debug" << "'track-conditions' to also be enabled";
1296 
1297   if (!AnOpts.CTUDir.empty() && !llvm::sys::fs::is_directory(AnOpts.CTUDir))
1298     Diags->Report(diag::err_analyzer_config_invalid_input) << "ctu-dir"
1299                                                            << "a filename";
1300 
1301   if (!AnOpts.ModelPath.empty() &&
1302       !llvm::sys::fs::is_directory(AnOpts.ModelPath))
1303     Diags->Report(diag::err_analyzer_config_invalid_input) << "model-path"
1304                                                            << "a filename";
1305 }
1306 
1307 /// Generate a remark argument. This is an inverse of `ParseOptimizationRemark`.
1308 static void
1309 GenerateOptimizationRemark(ArgumentConsumer Consumer, OptSpecifier OptEQ,
1310                            StringRef Name,
1311                            const CodeGenOptions::OptRemark &Remark) {
1312   if (Remark.hasValidPattern()) {
1313     GenerateArg(Consumer, OptEQ, Remark.Pattern);
1314   } else if (Remark.Kind == CodeGenOptions::RK_Enabled) {
1315     GenerateArg(Consumer, OPT_R_Joined, Name);
1316   } else if (Remark.Kind == CodeGenOptions::RK_Disabled) {
1317     GenerateArg(Consumer, OPT_R_Joined, StringRef("no-") + Name);
1318   }
1319 }
1320 
1321 /// Parse a remark command line argument. It may be missing, disabled/enabled by
1322 /// '-R[no-]group' or specified with a regular expression by '-Rgroup=regexp'.
1323 /// On top of that, it can be disabled/enabled globally by '-R[no-]everything'.
1324 static CodeGenOptions::OptRemark
1325 ParseOptimizationRemark(DiagnosticsEngine &Diags, ArgList &Args,
1326                         OptSpecifier OptEQ, StringRef Name) {
1327   CodeGenOptions::OptRemark Result;
1328 
1329   auto InitializeResultPattern = [&Diags, &Args, &Result](const Arg *A,
1330                                                           StringRef Pattern) {
1331     Result.Pattern = Pattern.str();
1332 
1333     std::string RegexError;
1334     Result.Regex = std::make_shared<llvm::Regex>(Result.Pattern);
1335     if (!Result.Regex->isValid(RegexError)) {
1336       Diags.Report(diag::err_drv_optimization_remark_pattern)
1337           << RegexError << A->getAsString(Args);
1338       return false;
1339     }
1340 
1341     return true;
1342   };
1343 
1344   for (Arg *A : Args) {
1345     if (A->getOption().matches(OPT_R_Joined)) {
1346       StringRef Value = A->getValue();
1347 
1348       if (Value == Name)
1349         Result.Kind = CodeGenOptions::RK_Enabled;
1350       else if (Value == "everything")
1351         Result.Kind = CodeGenOptions::RK_EnabledEverything;
1352       else if (Value.split('-') == std::make_pair(StringRef("no"), Name))
1353         Result.Kind = CodeGenOptions::RK_Disabled;
1354       else if (Value == "no-everything")
1355         Result.Kind = CodeGenOptions::RK_DisabledEverything;
1356       else
1357         continue;
1358 
1359       if (Result.Kind == CodeGenOptions::RK_Disabled ||
1360           Result.Kind == CodeGenOptions::RK_DisabledEverything) {
1361         Result.Pattern = "";
1362         Result.Regex = nullptr;
1363       } else {
1364         InitializeResultPattern(A, ".*");
1365       }
1366     } else if (A->getOption().matches(OptEQ)) {
1367       Result.Kind = CodeGenOptions::RK_WithPattern;
1368       if (!InitializeResultPattern(A, A->getValue()))
1369         return CodeGenOptions::OptRemark();
1370     }
1371   }
1372 
1373   return Result;
1374 }
1375 
1376 static bool parseDiagnosticLevelMask(StringRef FlagName,
1377                                      const std::vector<std::string> &Levels,
1378                                      DiagnosticsEngine &Diags,
1379                                      DiagnosticLevelMask &M) {
1380   bool Success = true;
1381   for (const auto &Level : Levels) {
1382     DiagnosticLevelMask const PM =
1383       llvm::StringSwitch<DiagnosticLevelMask>(Level)
1384         .Case("note",    DiagnosticLevelMask::Note)
1385         .Case("remark",  DiagnosticLevelMask::Remark)
1386         .Case("warning", DiagnosticLevelMask::Warning)
1387         .Case("error",   DiagnosticLevelMask::Error)
1388         .Default(DiagnosticLevelMask::None);
1389     if (PM == DiagnosticLevelMask::None) {
1390       Success = false;
1391       Diags.Report(diag::err_drv_invalid_value) << FlagName << Level;
1392     }
1393     M = M | PM;
1394   }
1395   return Success;
1396 }
1397 
1398 static void parseSanitizerKinds(StringRef FlagName,
1399                                 const std::vector<std::string> &Sanitizers,
1400                                 DiagnosticsEngine &Diags, SanitizerSet &S) {
1401   for (const auto &Sanitizer : Sanitizers) {
1402     SanitizerMask K = parseSanitizerValue(Sanitizer, /*AllowGroups=*/false);
1403     if (K == SanitizerMask())
1404       Diags.Report(diag::err_drv_invalid_value) << FlagName << Sanitizer;
1405     else
1406       S.set(K, true);
1407   }
1408 }
1409 
1410 static SmallVector<StringRef, 4> serializeSanitizerKinds(SanitizerSet S) {
1411   SmallVector<StringRef, 4> Values;
1412   serializeSanitizerSet(S, Values);
1413   return Values;
1414 }
1415 
1416 static void parseXRayInstrumentationBundle(StringRef FlagName, StringRef Bundle,
1417                                            ArgList &Args, DiagnosticsEngine &D,
1418                                            XRayInstrSet &S) {
1419   llvm::SmallVector<StringRef, 2> BundleParts;
1420   llvm::SplitString(Bundle, BundleParts, ",");
1421   for (const auto &B : BundleParts) {
1422     auto Mask = parseXRayInstrValue(B);
1423     if (Mask == XRayInstrKind::None)
1424       if (B != "none")
1425         D.Report(diag::err_drv_invalid_value) << FlagName << Bundle;
1426       else
1427         S.Mask = Mask;
1428     else if (Mask == XRayInstrKind::All)
1429       S.Mask = Mask;
1430     else
1431       S.set(Mask, true);
1432   }
1433 }
1434 
1435 static std::string serializeXRayInstrumentationBundle(const XRayInstrSet &S) {
1436   llvm::SmallVector<StringRef, 2> BundleParts;
1437   serializeXRayInstrValue(S, BundleParts);
1438   std::string Buffer;
1439   llvm::raw_string_ostream OS(Buffer);
1440   llvm::interleave(BundleParts, OS, [&OS](StringRef Part) { OS << Part; }, ",");
1441   return Buffer;
1442 }
1443 
1444 // Set the profile kind using fprofile-instrument-use-path.
1445 static void setPGOUseInstrumentor(CodeGenOptions &Opts,
1446                                   const Twine &ProfileName,
1447                                   llvm::vfs::FileSystem &FS,
1448                                   DiagnosticsEngine &Diags) {
1449   auto ReaderOrErr = llvm::IndexedInstrProfReader::create(ProfileName, FS);
1450   if (auto E = ReaderOrErr.takeError()) {
1451     unsigned DiagID = Diags.getCustomDiagID(DiagnosticsEngine::Error,
1452                                             "Error in reading profile %0: %1");
1453     llvm::handleAllErrors(std::move(E), [&](const llvm::ErrorInfoBase &EI) {
1454       Diags.Report(DiagID) << ProfileName.str() << EI.message();
1455     });
1456     return;
1457   }
1458   std::unique_ptr<llvm::IndexedInstrProfReader> PGOReader =
1459     std::move(ReaderOrErr.get());
1460   // Currently memprof profiles are only added at the IR level. Mark the profile
1461   // type as IR in that case as well and the subsequent matching needs to detect
1462   // which is available (might be one or both).
1463   if (PGOReader->isIRLevelProfile() || PGOReader->hasMemoryProfile()) {
1464     if (PGOReader->hasCSIRLevelProfile())
1465       Opts.setProfileUse(CodeGenOptions::ProfileCSIRInstr);
1466     else
1467       Opts.setProfileUse(CodeGenOptions::ProfileIRInstr);
1468   } else
1469     Opts.setProfileUse(CodeGenOptions::ProfileClangInstr);
1470 }
1471 
1472 void CompilerInvocation::setDefaultPointerAuthOptions(
1473     PointerAuthOptions &Opts, const LangOptions &LangOpts,
1474     const llvm::Triple &Triple) {
1475   assert(Triple.getArch() == llvm::Triple::aarch64);
1476   if (LangOpts.PointerAuthCalls) {
1477     using Key = PointerAuthSchema::ARM8_3Key;
1478     using Discrimination = PointerAuthSchema::Discrimination;
1479     // If you change anything here, be sure to update <ptrauth.h>.
1480     Opts.FunctionPointers = PointerAuthSchema(
1481         Key::ASIA, false,
1482         LangOpts.PointerAuthFunctionTypeDiscrimination ? Discrimination::Type
1483                                                        : Discrimination::None);
1484 
1485     Opts.CXXVTablePointers = PointerAuthSchema(
1486         Key::ASDA, LangOpts.PointerAuthVTPtrAddressDiscrimination,
1487         LangOpts.PointerAuthVTPtrTypeDiscrimination ? Discrimination::Type
1488                                                     : Discrimination::None);
1489 
1490     if (LangOpts.PointerAuthTypeInfoVTPtrDiscrimination)
1491       Opts.CXXTypeInfoVTablePointer =
1492           PointerAuthSchema(Key::ASDA, true, Discrimination::Constant,
1493                             StdTypeInfoVTablePointerConstantDiscrimination);
1494     else
1495       Opts.CXXTypeInfoVTablePointer =
1496           PointerAuthSchema(Key::ASDA, false, Discrimination::None);
1497 
1498     Opts.CXXVTTVTablePointers =
1499         PointerAuthSchema(Key::ASDA, false, Discrimination::None);
1500     Opts.CXXVirtualFunctionPointers = Opts.CXXVirtualVariadicFunctionPointers =
1501         PointerAuthSchema(Key::ASIA, true, Discrimination::Decl);
1502     Opts.CXXMemberFunctionPointers =
1503         PointerAuthSchema(Key::ASIA, false, Discrimination::Type);
1504 
1505     if (LangOpts.PointerAuthInitFini) {
1506       Opts.InitFiniPointers = PointerAuthSchema(
1507           Key::ASIA, LangOpts.PointerAuthInitFiniAddressDiscrimination,
1508           Discrimination::Constant, InitFiniPointerConstantDiscriminator);
1509     }
1510   }
1511   Opts.ReturnAddresses = LangOpts.PointerAuthReturns;
1512   Opts.AuthTraps = LangOpts.PointerAuthAuthTraps;
1513   Opts.IndirectGotos = LangOpts.PointerAuthIndirectGotos;
1514 }
1515 
1516 static void parsePointerAuthOptions(PointerAuthOptions &Opts,
1517                                     const LangOptions &LangOpts,
1518                                     const llvm::Triple &Triple,
1519                                     DiagnosticsEngine &Diags) {
1520   if (!LangOpts.PointerAuthCalls && !LangOpts.PointerAuthReturns &&
1521       !LangOpts.PointerAuthAuthTraps && !LangOpts.PointerAuthIndirectGotos)
1522     return;
1523 
1524   CompilerInvocation::setDefaultPointerAuthOptions(Opts, LangOpts, Triple);
1525 }
1526 
1527 void CompilerInvocationBase::GenerateCodeGenArgs(const CodeGenOptions &Opts,
1528                                                  ArgumentConsumer Consumer,
1529                                                  const llvm::Triple &T,
1530                                                  const std::string &OutputFile,
1531                                                  const LangOptions *LangOpts) {
1532   const CodeGenOptions &CodeGenOpts = Opts;
1533 
1534   if (Opts.OptimizationLevel == 0)
1535     GenerateArg(Consumer, OPT_O0);
1536   else
1537     GenerateArg(Consumer, OPT_O, Twine(Opts.OptimizationLevel));
1538 
1539 #define CODEGEN_OPTION_WITH_MARSHALLING(...)                                   \
1540   GENERATE_OPTION_WITH_MARSHALLING(Consumer, __VA_ARGS__)
1541 #include "clang/Driver/Options.inc"
1542 #undef CODEGEN_OPTION_WITH_MARSHALLING
1543 
1544   if (Opts.OptimizationLevel > 0) {
1545     if (Opts.Inlining == CodeGenOptions::NormalInlining)
1546       GenerateArg(Consumer, OPT_finline_functions);
1547     else if (Opts.Inlining == CodeGenOptions::OnlyHintInlining)
1548       GenerateArg(Consumer, OPT_finline_hint_functions);
1549     else if (Opts.Inlining == CodeGenOptions::OnlyAlwaysInlining)
1550       GenerateArg(Consumer, OPT_fno_inline);
1551   }
1552 
1553   if (Opts.DirectAccessExternalData && LangOpts->PICLevel != 0)
1554     GenerateArg(Consumer, OPT_fdirect_access_external_data);
1555   else if (!Opts.DirectAccessExternalData && LangOpts->PICLevel == 0)
1556     GenerateArg(Consumer, OPT_fno_direct_access_external_data);
1557 
1558   std::optional<StringRef> DebugInfoVal;
1559   switch (Opts.DebugInfo) {
1560   case llvm::codegenoptions::DebugLineTablesOnly:
1561     DebugInfoVal = "line-tables-only";
1562     break;
1563   case llvm::codegenoptions::DebugDirectivesOnly:
1564     DebugInfoVal = "line-directives-only";
1565     break;
1566   case llvm::codegenoptions::DebugInfoConstructor:
1567     DebugInfoVal = "constructor";
1568     break;
1569   case llvm::codegenoptions::LimitedDebugInfo:
1570     DebugInfoVal = "limited";
1571     break;
1572   case llvm::codegenoptions::FullDebugInfo:
1573     DebugInfoVal = "standalone";
1574     break;
1575   case llvm::codegenoptions::UnusedTypeInfo:
1576     DebugInfoVal = "unused-types";
1577     break;
1578   case llvm::codegenoptions::NoDebugInfo: // default value
1579     DebugInfoVal = std::nullopt;
1580     break;
1581   case llvm::codegenoptions::LocTrackingOnly: // implied value
1582     DebugInfoVal = std::nullopt;
1583     break;
1584   }
1585   if (DebugInfoVal)
1586     GenerateArg(Consumer, OPT_debug_info_kind_EQ, *DebugInfoVal);
1587 
1588   for (const auto &Prefix : Opts.DebugPrefixMap)
1589     GenerateArg(Consumer, OPT_fdebug_prefix_map_EQ,
1590                 Prefix.first + "=" + Prefix.second);
1591 
1592   for (const auto &Prefix : Opts.CoveragePrefixMap)
1593     GenerateArg(Consumer, OPT_fcoverage_prefix_map_EQ,
1594                 Prefix.first + "=" + Prefix.second);
1595 
1596   if (Opts.NewStructPathTBAA)
1597     GenerateArg(Consumer, OPT_new_struct_path_tbaa);
1598 
1599   if (Opts.OptimizeSize == 1)
1600     GenerateArg(Consumer, OPT_O, "s");
1601   else if (Opts.OptimizeSize == 2)
1602     GenerateArg(Consumer, OPT_O, "z");
1603 
1604   // SimplifyLibCalls is set only in the absence of -fno-builtin and
1605   // -ffreestanding. We'll consider that when generating them.
1606 
1607   // NoBuiltinFuncs are generated by LangOptions.
1608 
1609   if (Opts.UnrollLoops && Opts.OptimizationLevel <= 1)
1610     GenerateArg(Consumer, OPT_funroll_loops);
1611   else if (!Opts.UnrollLoops && Opts.OptimizationLevel > 1)
1612     GenerateArg(Consumer, OPT_fno_unroll_loops);
1613 
1614   if (!Opts.BinutilsVersion.empty())
1615     GenerateArg(Consumer, OPT_fbinutils_version_EQ, Opts.BinutilsVersion);
1616 
1617   if (Opts.DebugNameTable ==
1618       static_cast<unsigned>(llvm::DICompileUnit::DebugNameTableKind::GNU))
1619     GenerateArg(Consumer, OPT_ggnu_pubnames);
1620   else if (Opts.DebugNameTable ==
1621            static_cast<unsigned>(
1622                llvm::DICompileUnit::DebugNameTableKind::Default))
1623     GenerateArg(Consumer, OPT_gpubnames);
1624 
1625   if (Opts.DebugTemplateAlias)
1626     GenerateArg(Consumer, OPT_gtemplate_alias);
1627 
1628   auto TNK = Opts.getDebugSimpleTemplateNames();
1629   if (TNK != llvm::codegenoptions::DebugTemplateNamesKind::Full) {
1630     if (TNK == llvm::codegenoptions::DebugTemplateNamesKind::Simple)
1631       GenerateArg(Consumer, OPT_gsimple_template_names_EQ, "simple");
1632     else if (TNK == llvm::codegenoptions::DebugTemplateNamesKind::Mangled)
1633       GenerateArg(Consumer, OPT_gsimple_template_names_EQ, "mangled");
1634   }
1635   // ProfileInstrumentUsePath is marshalled automatically, no need to generate
1636   // it or PGOUseInstrumentor.
1637 
1638   if (Opts.TimePasses) {
1639     if (Opts.TimePassesPerRun)
1640       GenerateArg(Consumer, OPT_ftime_report_EQ, "per-pass-run");
1641     else
1642       GenerateArg(Consumer, OPT_ftime_report);
1643   }
1644 
1645   if (Opts.PrepareForLTO && !Opts.PrepareForThinLTO)
1646     GenerateArg(Consumer, OPT_flto_EQ, "full");
1647 
1648   if (Opts.PrepareForThinLTO)
1649     GenerateArg(Consumer, OPT_flto_EQ, "thin");
1650 
1651   if (!Opts.ThinLTOIndexFile.empty())
1652     GenerateArg(Consumer, OPT_fthinlto_index_EQ, Opts.ThinLTOIndexFile);
1653 
1654   if (Opts.SaveTempsFilePrefix == OutputFile)
1655     GenerateArg(Consumer, OPT_save_temps_EQ, "obj");
1656 
1657   StringRef MemProfileBasename("memprof.profraw");
1658   if (!Opts.MemoryProfileOutput.empty()) {
1659     if (Opts.MemoryProfileOutput == MemProfileBasename) {
1660       GenerateArg(Consumer, OPT_fmemory_profile);
1661     } else {
1662       size_t ArgLength =
1663           Opts.MemoryProfileOutput.size() - MemProfileBasename.size();
1664       GenerateArg(Consumer, OPT_fmemory_profile_EQ,
1665                   Opts.MemoryProfileOutput.substr(0, ArgLength));
1666     }
1667   }
1668 
1669   if (memcmp(Opts.CoverageVersion, "408*", 4) != 0)
1670     GenerateArg(Consumer, OPT_coverage_version_EQ,
1671                 StringRef(Opts.CoverageVersion, 4));
1672 
1673   // TODO: Check if we need to generate arguments stored in CmdArgs. (Namely
1674   //  '-fembed_bitcode', which does not map to any CompilerInvocation field and
1675   //  won't be generated.)
1676 
1677   if (Opts.XRayInstrumentationBundle.Mask != XRayInstrKind::All) {
1678     std::string InstrBundle =
1679         serializeXRayInstrumentationBundle(Opts.XRayInstrumentationBundle);
1680     if (!InstrBundle.empty())
1681       GenerateArg(Consumer, OPT_fxray_instrumentation_bundle, InstrBundle);
1682   }
1683 
1684   if (Opts.CFProtectionReturn && Opts.CFProtectionBranch)
1685     GenerateArg(Consumer, OPT_fcf_protection_EQ, "full");
1686   else if (Opts.CFProtectionReturn)
1687     GenerateArg(Consumer, OPT_fcf_protection_EQ, "return");
1688   else if (Opts.CFProtectionBranch)
1689     GenerateArg(Consumer, OPT_fcf_protection_EQ, "branch");
1690 
1691   if (Opts.CFProtectionBranch) {
1692     switch (Opts.getCFBranchLabelScheme()) {
1693     case CFBranchLabelSchemeKind::Default:
1694       break;
1695 #define CF_BRANCH_LABEL_SCHEME(Kind, FlagVal)                                  \
1696   case CFBranchLabelSchemeKind::Kind:                                          \
1697     GenerateArg(Consumer, OPT_mcf_branch_label_scheme_EQ, #FlagVal);           \
1698     break;
1699 #include "clang/Basic/CFProtectionOptions.def"
1700     }
1701   }
1702 
1703   if (Opts.FunctionReturnThunks)
1704     GenerateArg(Consumer, OPT_mfunction_return_EQ, "thunk-extern");
1705 
1706   for (const auto &F : Opts.LinkBitcodeFiles) {
1707     bool Builtint = F.LinkFlags == llvm::Linker::Flags::LinkOnlyNeeded &&
1708                     F.PropagateAttrs && F.Internalize;
1709     GenerateArg(Consumer,
1710                 Builtint ? OPT_mlink_builtin_bitcode : OPT_mlink_bitcode_file,
1711                 F.Filename);
1712   }
1713 
1714   if (Opts.EmulatedTLS)
1715     GenerateArg(Consumer, OPT_femulated_tls);
1716 
1717   if (Opts.FPDenormalMode != llvm::DenormalMode::getIEEE())
1718     GenerateArg(Consumer, OPT_fdenormal_fp_math_EQ, Opts.FPDenormalMode.str());
1719 
1720   if ((Opts.FPDenormalMode != Opts.FP32DenormalMode) ||
1721       (Opts.FP32DenormalMode != llvm::DenormalMode::getIEEE()))
1722     GenerateArg(Consumer, OPT_fdenormal_fp_math_f32_EQ,
1723                 Opts.FP32DenormalMode.str());
1724 
1725   if (Opts.StructReturnConvention == CodeGenOptions::SRCK_OnStack) {
1726     OptSpecifier Opt =
1727         T.isPPC32() ? OPT_maix_struct_return : OPT_fpcc_struct_return;
1728     GenerateArg(Consumer, Opt);
1729   } else if (Opts.StructReturnConvention == CodeGenOptions::SRCK_InRegs) {
1730     OptSpecifier Opt =
1731         T.isPPC32() ? OPT_msvr4_struct_return : OPT_freg_struct_return;
1732     GenerateArg(Consumer, Opt);
1733   }
1734 
1735   if (Opts.EnableAIXExtendedAltivecABI)
1736     GenerateArg(Consumer, OPT_mabi_EQ_vec_extabi);
1737 
1738   if (Opts.XCOFFReadOnlyPointers)
1739     GenerateArg(Consumer, OPT_mxcoff_roptr);
1740 
1741   if (!Opts.OptRecordPasses.empty())
1742     GenerateArg(Consumer, OPT_opt_record_passes, Opts.OptRecordPasses);
1743 
1744   if (!Opts.OptRecordFormat.empty())
1745     GenerateArg(Consumer, OPT_opt_record_format, Opts.OptRecordFormat);
1746 
1747   GenerateOptimizationRemark(Consumer, OPT_Rpass_EQ, "pass",
1748                              Opts.OptimizationRemark);
1749 
1750   GenerateOptimizationRemark(Consumer, OPT_Rpass_missed_EQ, "pass-missed",
1751                              Opts.OptimizationRemarkMissed);
1752 
1753   GenerateOptimizationRemark(Consumer, OPT_Rpass_analysis_EQ, "pass-analysis",
1754                              Opts.OptimizationRemarkAnalysis);
1755 
1756   GenerateArg(Consumer, OPT_fdiagnostics_hotness_threshold_EQ,
1757               Opts.DiagnosticsHotnessThreshold
1758                   ? Twine(*Opts.DiagnosticsHotnessThreshold)
1759                   : "auto");
1760 
1761   GenerateArg(Consumer, OPT_fdiagnostics_misexpect_tolerance_EQ,
1762               Twine(*Opts.DiagnosticsMisExpectTolerance));
1763 
1764   for (StringRef Sanitizer : serializeSanitizerKinds(Opts.SanitizeRecover))
1765     GenerateArg(Consumer, OPT_fsanitize_recover_EQ, Sanitizer);
1766 
1767   for (StringRef Sanitizer : serializeSanitizerKinds(Opts.SanitizeTrap))
1768     GenerateArg(Consumer, OPT_fsanitize_trap_EQ, Sanitizer);
1769 
1770   if (!Opts.EmitVersionIdentMetadata)
1771     GenerateArg(Consumer, OPT_Qn);
1772 
1773   switch (Opts.FiniteLoops) {
1774   case CodeGenOptions::FiniteLoopsKind::Language:
1775     break;
1776   case CodeGenOptions::FiniteLoopsKind::Always:
1777     GenerateArg(Consumer, OPT_ffinite_loops);
1778     break;
1779   case CodeGenOptions::FiniteLoopsKind::Never:
1780     GenerateArg(Consumer, OPT_fno_finite_loops);
1781     break;
1782   }
1783 }
1784 
1785 bool CompilerInvocation::ParseCodeGenArgs(CodeGenOptions &Opts, ArgList &Args,
1786                                           InputKind IK,
1787                                           DiagnosticsEngine &Diags,
1788                                           const llvm::Triple &T,
1789                                           const std::string &OutputFile,
1790                                           const LangOptions &LangOptsRef) {
1791   unsigned NumErrorsBefore = Diags.getNumErrors();
1792 
1793   unsigned OptimizationLevel = getOptimizationLevel(Args, IK, Diags);
1794   // TODO: This could be done in Driver
1795   unsigned MaxOptLevel = 3;
1796   if (OptimizationLevel > MaxOptLevel) {
1797     // If the optimization level is not supported, fall back on the default
1798     // optimization
1799     Diags.Report(diag::warn_drv_optimization_value)
1800         << Args.getLastArg(OPT_O)->getAsString(Args) << "-O" << MaxOptLevel;
1801     OptimizationLevel = MaxOptLevel;
1802   }
1803   Opts.OptimizationLevel = OptimizationLevel;
1804 
1805   // The key paths of codegen options defined in Options.td start with
1806   // "CodeGenOpts.". Let's provide the expected variable name and type.
1807   CodeGenOptions &CodeGenOpts = Opts;
1808   // Some codegen options depend on language options. Let's provide the expected
1809   // variable name and type.
1810   const LangOptions *LangOpts = &LangOptsRef;
1811 
1812 #define CODEGEN_OPTION_WITH_MARSHALLING(...)                                   \
1813   PARSE_OPTION_WITH_MARSHALLING(Args, Diags, __VA_ARGS__)
1814 #include "clang/Driver/Options.inc"
1815 #undef CODEGEN_OPTION_WITH_MARSHALLING
1816 
1817   // At O0 we want to fully disable inlining outside of cases marked with
1818   // 'alwaysinline' that are required for correctness.
1819   if (Opts.OptimizationLevel == 0) {
1820     Opts.setInlining(CodeGenOptions::OnlyAlwaysInlining);
1821   } else if (const Arg *A = Args.getLastArg(options::OPT_finline_functions,
1822                                             options::OPT_finline_hint_functions,
1823                                             options::OPT_fno_inline_functions,
1824                                             options::OPT_fno_inline)) {
1825     // Explicit inlining flags can disable some or all inlining even at
1826     // optimization levels above zero.
1827     if (A->getOption().matches(options::OPT_finline_functions))
1828       Opts.setInlining(CodeGenOptions::NormalInlining);
1829     else if (A->getOption().matches(options::OPT_finline_hint_functions))
1830       Opts.setInlining(CodeGenOptions::OnlyHintInlining);
1831     else
1832       Opts.setInlining(CodeGenOptions::OnlyAlwaysInlining);
1833   } else {
1834     Opts.setInlining(CodeGenOptions::NormalInlining);
1835   }
1836 
1837   // PIC defaults to -fno-direct-access-external-data while non-PIC defaults to
1838   // -fdirect-access-external-data.
1839   Opts.DirectAccessExternalData =
1840       Args.hasArg(OPT_fdirect_access_external_data) ||
1841       (!Args.hasArg(OPT_fno_direct_access_external_data) &&
1842        LangOpts->PICLevel == 0);
1843 
1844   if (Arg *A = Args.getLastArg(OPT_debug_info_kind_EQ)) {
1845     unsigned Val =
1846         llvm::StringSwitch<unsigned>(A->getValue())
1847             .Case("line-tables-only", llvm::codegenoptions::DebugLineTablesOnly)
1848             .Case("line-directives-only",
1849                   llvm::codegenoptions::DebugDirectivesOnly)
1850             .Case("constructor", llvm::codegenoptions::DebugInfoConstructor)
1851             .Case("limited", llvm::codegenoptions::LimitedDebugInfo)
1852             .Case("standalone", llvm::codegenoptions::FullDebugInfo)
1853             .Case("unused-types", llvm::codegenoptions::UnusedTypeInfo)
1854             .Default(~0U);
1855     if (Val == ~0U)
1856       Diags.Report(diag::err_drv_invalid_value) << A->getAsString(Args)
1857                                                 << A->getValue();
1858     else
1859       Opts.setDebugInfo(static_cast<llvm::codegenoptions::DebugInfoKind>(Val));
1860   }
1861 
1862   // If -fuse-ctor-homing is set and limited debug info is already on, then use
1863   // constructor homing, and vice versa for -fno-use-ctor-homing.
1864   if (const Arg *A =
1865           Args.getLastArg(OPT_fuse_ctor_homing, OPT_fno_use_ctor_homing)) {
1866     if (A->getOption().matches(OPT_fuse_ctor_homing) &&
1867         Opts.getDebugInfo() == llvm::codegenoptions::LimitedDebugInfo)
1868       Opts.setDebugInfo(llvm::codegenoptions::DebugInfoConstructor);
1869     if (A->getOption().matches(OPT_fno_use_ctor_homing) &&
1870         Opts.getDebugInfo() == llvm::codegenoptions::DebugInfoConstructor)
1871       Opts.setDebugInfo(llvm::codegenoptions::LimitedDebugInfo);
1872   }
1873 
1874   for (const auto &Arg : Args.getAllArgValues(OPT_fdebug_prefix_map_EQ)) {
1875     auto Split = StringRef(Arg).split('=');
1876     Opts.DebugPrefixMap.emplace_back(Split.first, Split.second);
1877   }
1878 
1879   for (const auto &Arg : Args.getAllArgValues(OPT_fcoverage_prefix_map_EQ)) {
1880     auto Split = StringRef(Arg).split('=');
1881     Opts.CoveragePrefixMap.emplace_back(Split.first, Split.second);
1882   }
1883 
1884   const llvm::Triple::ArchType DebugEntryValueArchs[] = {
1885       llvm::Triple::x86, llvm::Triple::x86_64, llvm::Triple::aarch64,
1886       llvm::Triple::arm, llvm::Triple::armeb, llvm::Triple::mips,
1887       llvm::Triple::mipsel, llvm::Triple::mips64, llvm::Triple::mips64el};
1888 
1889   if (Opts.OptimizationLevel > 0 && Opts.hasReducedDebugInfo() &&
1890       llvm::is_contained(DebugEntryValueArchs, T.getArch()))
1891     Opts.EmitCallSiteInfo = true;
1892 
1893   if (!Opts.EnableDIPreservationVerify && Opts.DIBugsReportFilePath.size()) {
1894     Diags.Report(diag::warn_ignoring_verify_debuginfo_preserve_export)
1895         << Opts.DIBugsReportFilePath;
1896     Opts.DIBugsReportFilePath = "";
1897   }
1898 
1899   Opts.NewStructPathTBAA = !Args.hasArg(OPT_no_struct_path_tbaa) &&
1900                            Args.hasArg(OPT_new_struct_path_tbaa);
1901   Opts.OptimizeSize = getOptimizationLevelSize(Args);
1902   Opts.SimplifyLibCalls = !LangOpts->NoBuiltin;
1903   if (Opts.SimplifyLibCalls)
1904     Opts.NoBuiltinFuncs = LangOpts->NoBuiltinFuncs;
1905   Opts.UnrollLoops =
1906       Args.hasFlag(OPT_funroll_loops, OPT_fno_unroll_loops,
1907                    (Opts.OptimizationLevel > 1));
1908   Opts.BinutilsVersion =
1909       std::string(Args.getLastArgValue(OPT_fbinutils_version_EQ));
1910 
1911   Opts.DebugTemplateAlias = Args.hasArg(OPT_gtemplate_alias);
1912 
1913   Opts.DebugNameTable = static_cast<unsigned>(
1914       Args.hasArg(OPT_ggnu_pubnames)
1915           ? llvm::DICompileUnit::DebugNameTableKind::GNU
1916           : Args.hasArg(OPT_gpubnames)
1917                 ? llvm::DICompileUnit::DebugNameTableKind::Default
1918                 : llvm::DICompileUnit::DebugNameTableKind::None);
1919   if (const Arg *A = Args.getLastArg(OPT_gsimple_template_names_EQ)) {
1920     StringRef Value = A->getValue();
1921     if (Value != "simple" && Value != "mangled")
1922       Diags.Report(diag::err_drv_unsupported_option_argument)
1923           << A->getSpelling() << A->getValue();
1924     Opts.setDebugSimpleTemplateNames(
1925         StringRef(A->getValue()) == "simple"
1926             ? llvm::codegenoptions::DebugTemplateNamesKind::Simple
1927             : llvm::codegenoptions::DebugTemplateNamesKind::Mangled);
1928   }
1929 
1930   if (const Arg *A = Args.getLastArg(OPT_ftime_report, OPT_ftime_report_EQ)) {
1931     Opts.TimePasses = true;
1932 
1933     // -ftime-report= is only for new pass manager.
1934     if (A->getOption().getID() == OPT_ftime_report_EQ) {
1935       StringRef Val = A->getValue();
1936       if (Val == "per-pass")
1937         Opts.TimePassesPerRun = false;
1938       else if (Val == "per-pass-run")
1939         Opts.TimePassesPerRun = true;
1940       else
1941         Diags.Report(diag::err_drv_invalid_value)
1942             << A->getAsString(Args) << A->getValue();
1943     }
1944   }
1945 
1946   Opts.PrepareForLTO = false;
1947   Opts.PrepareForThinLTO = false;
1948   if (Arg *A = Args.getLastArg(OPT_flto_EQ)) {
1949     Opts.PrepareForLTO = true;
1950     StringRef S = A->getValue();
1951     if (S == "thin")
1952       Opts.PrepareForThinLTO = true;
1953     else if (S != "full")
1954       Diags.Report(diag::err_drv_invalid_value) << A->getAsString(Args) << S;
1955     if (Args.hasArg(OPT_funified_lto))
1956       Opts.PrepareForThinLTO = true;
1957   }
1958   if (Arg *A = Args.getLastArg(OPT_fthinlto_index_EQ)) {
1959     if (IK.getLanguage() != Language::LLVM_IR)
1960       Diags.Report(diag::err_drv_argument_only_allowed_with)
1961           << A->getAsString(Args) << "-x ir";
1962     Opts.ThinLTOIndexFile =
1963         std::string(Args.getLastArgValue(OPT_fthinlto_index_EQ));
1964   }
1965   if (Arg *A = Args.getLastArg(OPT_save_temps_EQ))
1966     Opts.SaveTempsFilePrefix =
1967         llvm::StringSwitch<std::string>(A->getValue())
1968             .Case("obj", OutputFile)
1969             .Default(llvm::sys::path::filename(OutputFile).str());
1970 
1971   // The memory profile runtime appends the pid to make this name more unique.
1972   const char *MemProfileBasename = "memprof.profraw";
1973   if (Args.hasArg(OPT_fmemory_profile_EQ)) {
1974     SmallString<128> Path(
1975         std::string(Args.getLastArgValue(OPT_fmemory_profile_EQ)));
1976     llvm::sys::path::append(Path, MemProfileBasename);
1977     Opts.MemoryProfileOutput = std::string(Path);
1978   } else if (Args.hasArg(OPT_fmemory_profile))
1979     Opts.MemoryProfileOutput = MemProfileBasename;
1980 
1981   memcpy(Opts.CoverageVersion, "408*", 4);
1982   if (Opts.CoverageNotesFile.size() || Opts.CoverageDataFile.size()) {
1983     if (Args.hasArg(OPT_coverage_version_EQ)) {
1984       StringRef CoverageVersion = Args.getLastArgValue(OPT_coverage_version_EQ);
1985       if (CoverageVersion.size() != 4) {
1986         Diags.Report(diag::err_drv_invalid_value)
1987             << Args.getLastArg(OPT_coverage_version_EQ)->getAsString(Args)
1988             << CoverageVersion;
1989       } else {
1990         memcpy(Opts.CoverageVersion, CoverageVersion.data(), 4);
1991       }
1992     }
1993   }
1994   // FIXME: For backend options that are not yet recorded as function
1995   // attributes in the IR, keep track of them so we can embed them in a
1996   // separate data section and use them when building the bitcode.
1997   for (const auto &A : Args) {
1998     // Do not encode output and input.
1999     if (A->getOption().getID() == options::OPT_o ||
2000         A->getOption().getID() == options::OPT_INPUT ||
2001         A->getOption().getID() == options::OPT_x ||
2002         A->getOption().getID() == options::OPT_fembed_bitcode ||
2003         A->getOption().matches(options::OPT_W_Group))
2004       continue;
2005     ArgStringList ASL;
2006     A->render(Args, ASL);
2007     for (const auto &arg : ASL) {
2008       StringRef ArgStr(arg);
2009       Opts.CmdArgs.insert(Opts.CmdArgs.end(), ArgStr.begin(), ArgStr.end());
2010       // using \00 to separate each commandline options.
2011       Opts.CmdArgs.push_back('\0');
2012     }
2013   }
2014 
2015   auto XRayInstrBundles =
2016       Args.getAllArgValues(OPT_fxray_instrumentation_bundle);
2017   if (XRayInstrBundles.empty())
2018     Opts.XRayInstrumentationBundle.Mask = XRayInstrKind::All;
2019   else
2020     for (const auto &A : XRayInstrBundles)
2021       parseXRayInstrumentationBundle("-fxray-instrumentation-bundle=", A, Args,
2022                                      Diags, Opts.XRayInstrumentationBundle);
2023 
2024   if (const Arg *A = Args.getLastArg(OPT_fcf_protection_EQ)) {
2025     StringRef Name = A->getValue();
2026     if (Name == "full") {
2027       Opts.CFProtectionReturn = 1;
2028       Opts.CFProtectionBranch = 1;
2029     } else if (Name == "return")
2030       Opts.CFProtectionReturn = 1;
2031     else if (Name == "branch")
2032       Opts.CFProtectionBranch = 1;
2033     else if (Name != "none")
2034       Diags.Report(diag::err_drv_invalid_value) << A->getAsString(Args) << Name;
2035   }
2036 
2037   if (Opts.CFProtectionBranch && T.isRISCV()) {
2038     if (const Arg *A = Args.getLastArg(OPT_mcf_branch_label_scheme_EQ)) {
2039       const auto Scheme =
2040           llvm::StringSwitch<CFBranchLabelSchemeKind>(A->getValue())
2041 #define CF_BRANCH_LABEL_SCHEME(Kind, FlagVal)                                  \
2042   .Case(#FlagVal, CFBranchLabelSchemeKind::Kind)
2043 #include "clang/Basic/CFProtectionOptions.def"
2044               .Default(CFBranchLabelSchemeKind::Default);
2045       if (Scheme != CFBranchLabelSchemeKind::Default)
2046         Opts.setCFBranchLabelScheme(Scheme);
2047       else
2048         Diags.Report(diag::err_drv_invalid_value)
2049             << A->getAsString(Args) << A->getValue();
2050     }
2051   }
2052 
2053   if (const Arg *A = Args.getLastArg(OPT_mfunction_return_EQ)) {
2054     auto Val = llvm::StringSwitch<llvm::FunctionReturnThunksKind>(A->getValue())
2055                    .Case("keep", llvm::FunctionReturnThunksKind::Keep)
2056                    .Case("thunk-extern", llvm::FunctionReturnThunksKind::Extern)
2057                    .Default(llvm::FunctionReturnThunksKind::Invalid);
2058     // SystemZ might want to add support for "expolines."
2059     if (!T.isX86())
2060       Diags.Report(diag::err_drv_argument_not_allowed_with)
2061           << A->getSpelling() << T.getTriple();
2062     else if (Val == llvm::FunctionReturnThunksKind::Invalid)
2063       Diags.Report(diag::err_drv_invalid_value)
2064           << A->getAsString(Args) << A->getValue();
2065     else if (Val == llvm::FunctionReturnThunksKind::Extern &&
2066              Args.getLastArgValue(OPT_mcmodel_EQ) == "large")
2067       Diags.Report(diag::err_drv_argument_not_allowed_with)
2068           << A->getAsString(Args)
2069           << Args.getLastArg(OPT_mcmodel_EQ)->getAsString(Args);
2070     else
2071       Opts.FunctionReturnThunks = static_cast<unsigned>(Val);
2072   }
2073 
2074   for (auto *A :
2075        Args.filtered(OPT_mlink_bitcode_file, OPT_mlink_builtin_bitcode)) {
2076     CodeGenOptions::BitcodeFileToLink F;
2077     F.Filename = A->getValue();
2078     if (A->getOption().matches(OPT_mlink_builtin_bitcode)) {
2079       F.LinkFlags = llvm::Linker::Flags::LinkOnlyNeeded;
2080       // When linking CUDA bitcode, propagate function attributes so that
2081       // e.g. libdevice gets fast-math attrs if we're building with fast-math.
2082       F.PropagateAttrs = true;
2083       F.Internalize = true;
2084     }
2085     Opts.LinkBitcodeFiles.push_back(F);
2086   }
2087 
2088   if (Arg *A = Args.getLastArg(OPT_fdenormal_fp_math_EQ)) {
2089     StringRef Val = A->getValue();
2090     Opts.FPDenormalMode = llvm::parseDenormalFPAttribute(Val);
2091     Opts.FP32DenormalMode = Opts.FPDenormalMode;
2092     if (!Opts.FPDenormalMode.isValid())
2093       Diags.Report(diag::err_drv_invalid_value) << A->getAsString(Args) << Val;
2094   }
2095 
2096   if (Arg *A = Args.getLastArg(OPT_fdenormal_fp_math_f32_EQ)) {
2097     StringRef Val = A->getValue();
2098     Opts.FP32DenormalMode = llvm::parseDenormalFPAttribute(Val);
2099     if (!Opts.FP32DenormalMode.isValid())
2100       Diags.Report(diag::err_drv_invalid_value) << A->getAsString(Args) << Val;
2101   }
2102 
2103   // X86_32 has -fppc-struct-return and -freg-struct-return.
2104   // PPC32 has -maix-struct-return and -msvr4-struct-return.
2105   if (Arg *A =
2106           Args.getLastArg(OPT_fpcc_struct_return, OPT_freg_struct_return,
2107                           OPT_maix_struct_return, OPT_msvr4_struct_return)) {
2108     // TODO: We might want to consider enabling these options on AIX in the
2109     // future.
2110     if (T.isOSAIX())
2111       Diags.Report(diag::err_drv_unsupported_opt_for_target)
2112           << A->getSpelling() << T.str();
2113 
2114     const Option &O = A->getOption();
2115     if (O.matches(OPT_fpcc_struct_return) ||
2116         O.matches(OPT_maix_struct_return)) {
2117       Opts.setStructReturnConvention(CodeGenOptions::SRCK_OnStack);
2118     } else {
2119       assert(O.matches(OPT_freg_struct_return) ||
2120              O.matches(OPT_msvr4_struct_return));
2121       Opts.setStructReturnConvention(CodeGenOptions::SRCK_InRegs);
2122     }
2123   }
2124 
2125   if (Arg *A = Args.getLastArg(OPT_mxcoff_roptr)) {
2126     if (!T.isOSAIX())
2127       Diags.Report(diag::err_drv_unsupported_opt_for_target)
2128           << A->getSpelling() << T.str();
2129 
2130     // Since the storage mapping class is specified per csect,
2131     // without using data sections, it is less effective to use read-only
2132     // pointers. Using read-only pointers may cause other RO variables in the
2133     // same csect to become RW when the linker acts upon `-bforceimprw`;
2134     // therefore, we require that separate data sections
2135     // are used when `-mxcoff-roptr` is in effect. We respect the setting of
2136     // data-sections since we have not found reasons to do otherwise that
2137     // overcome the user surprise of not respecting the setting.
2138     if (!Args.hasFlag(OPT_fdata_sections, OPT_fno_data_sections, false))
2139       Diags.Report(diag::err_roptr_requires_data_sections);
2140 
2141     Opts.XCOFFReadOnlyPointers = true;
2142   }
2143 
2144   if (Arg *A = Args.getLastArg(OPT_mabi_EQ_quadword_atomics)) {
2145     if (!T.isOSAIX() || T.isPPC32())
2146       Diags.Report(diag::err_drv_unsupported_opt_for_target)
2147         << A->getSpelling() << T.str();
2148   }
2149 
2150   bool NeedLocTracking = false;
2151 
2152   if (!Opts.OptRecordFile.empty())
2153     NeedLocTracking = true;
2154 
2155   if (Arg *A = Args.getLastArg(OPT_opt_record_passes)) {
2156     Opts.OptRecordPasses = A->getValue();
2157     NeedLocTracking = true;
2158   }
2159 
2160   if (Arg *A = Args.getLastArg(OPT_opt_record_format)) {
2161     Opts.OptRecordFormat = A->getValue();
2162     NeedLocTracking = true;
2163   }
2164 
2165   Opts.OptimizationRemark =
2166       ParseOptimizationRemark(Diags, Args, OPT_Rpass_EQ, "pass");
2167 
2168   Opts.OptimizationRemarkMissed =
2169       ParseOptimizationRemark(Diags, Args, OPT_Rpass_missed_EQ, "pass-missed");
2170 
2171   Opts.OptimizationRemarkAnalysis = ParseOptimizationRemark(
2172       Diags, Args, OPT_Rpass_analysis_EQ, "pass-analysis");
2173 
2174   NeedLocTracking |= Opts.OptimizationRemark.hasValidPattern() ||
2175                      Opts.OptimizationRemarkMissed.hasValidPattern() ||
2176                      Opts.OptimizationRemarkAnalysis.hasValidPattern();
2177 
2178   bool UsingSampleProfile = !Opts.SampleProfileFile.empty();
2179   bool UsingProfile =
2180       UsingSampleProfile || !Opts.ProfileInstrumentUsePath.empty();
2181 
2182   if (Opts.DiagnosticsWithHotness && !UsingProfile &&
2183       // An IR file will contain PGO as metadata
2184       IK.getLanguage() != Language::LLVM_IR)
2185     Diags.Report(diag::warn_drv_diagnostics_hotness_requires_pgo)
2186         << "-fdiagnostics-show-hotness";
2187 
2188   // Parse remarks hotness threshold. Valid value is either integer or 'auto'.
2189   if (auto *arg =
2190           Args.getLastArg(options::OPT_fdiagnostics_hotness_threshold_EQ)) {
2191     auto ResultOrErr =
2192         llvm::remarks::parseHotnessThresholdOption(arg->getValue());
2193 
2194     if (!ResultOrErr) {
2195       Diags.Report(diag::err_drv_invalid_diagnotics_hotness_threshold)
2196           << "-fdiagnostics-hotness-threshold=";
2197     } else {
2198       Opts.DiagnosticsHotnessThreshold = *ResultOrErr;
2199       if ((!Opts.DiagnosticsHotnessThreshold ||
2200            *Opts.DiagnosticsHotnessThreshold > 0) &&
2201           !UsingProfile)
2202         Diags.Report(diag::warn_drv_diagnostics_hotness_requires_pgo)
2203             << "-fdiagnostics-hotness-threshold=";
2204     }
2205   }
2206 
2207   if (auto *arg =
2208           Args.getLastArg(options::OPT_fdiagnostics_misexpect_tolerance_EQ)) {
2209     auto ResultOrErr = parseToleranceOption(arg->getValue());
2210 
2211     if (!ResultOrErr) {
2212       Diags.Report(diag::err_drv_invalid_diagnotics_misexpect_tolerance)
2213           << "-fdiagnostics-misexpect-tolerance=";
2214     } else {
2215       Opts.DiagnosticsMisExpectTolerance = *ResultOrErr;
2216       if ((!Opts.DiagnosticsMisExpectTolerance ||
2217            *Opts.DiagnosticsMisExpectTolerance > 0) &&
2218           !UsingProfile)
2219         Diags.Report(diag::warn_drv_diagnostics_misexpect_requires_pgo)
2220             << "-fdiagnostics-misexpect-tolerance=";
2221     }
2222   }
2223 
2224   // If the user requested to use a sample profile for PGO, then the
2225   // backend will need to track source location information so the profile
2226   // can be incorporated into the IR.
2227   if (UsingSampleProfile)
2228     NeedLocTracking = true;
2229 
2230   if (!Opts.StackUsageOutput.empty())
2231     NeedLocTracking = true;
2232 
2233   // If the user requested a flag that requires source locations available in
2234   // the backend, make sure that the backend tracks source location information.
2235   if (NeedLocTracking &&
2236       Opts.getDebugInfo() == llvm::codegenoptions::NoDebugInfo)
2237     Opts.setDebugInfo(llvm::codegenoptions::LocTrackingOnly);
2238 
2239   // Parse -fsanitize-recover= arguments.
2240   // FIXME: Report unrecoverable sanitizers incorrectly specified here.
2241   parseSanitizerKinds("-fsanitize-recover=",
2242                       Args.getAllArgValues(OPT_fsanitize_recover_EQ), Diags,
2243                       Opts.SanitizeRecover);
2244   parseSanitizerKinds("-fsanitize-trap=",
2245                       Args.getAllArgValues(OPT_fsanitize_trap_EQ), Diags,
2246                       Opts.SanitizeTrap);
2247 
2248   Opts.EmitVersionIdentMetadata = Args.hasFlag(OPT_Qy, OPT_Qn, true);
2249 
2250   if (!LangOpts->CUDAIsDevice)
2251     parsePointerAuthOptions(Opts.PointerAuth, *LangOpts, T, Diags);
2252 
2253   if (Args.hasArg(options::OPT_ffinite_loops))
2254     Opts.FiniteLoops = CodeGenOptions::FiniteLoopsKind::Always;
2255   else if (Args.hasArg(options::OPT_fno_finite_loops))
2256     Opts.FiniteLoops = CodeGenOptions::FiniteLoopsKind::Never;
2257 
2258   Opts.EmitIEEENaNCompliantInsts = Args.hasFlag(
2259       options::OPT_mamdgpu_ieee, options::OPT_mno_amdgpu_ieee, true);
2260   if (!Opts.EmitIEEENaNCompliantInsts && !LangOptsRef.NoHonorNaNs)
2261     Diags.Report(diag::err_drv_amdgpu_ieee_without_no_honor_nans);
2262 
2263   return Diags.getNumErrors() == NumErrorsBefore;
2264 }
2265 
2266 static void GenerateDependencyOutputArgs(const DependencyOutputOptions &Opts,
2267                                          ArgumentConsumer Consumer) {
2268   const DependencyOutputOptions &DependencyOutputOpts = Opts;
2269 #define DEPENDENCY_OUTPUT_OPTION_WITH_MARSHALLING(...)                         \
2270   GENERATE_OPTION_WITH_MARSHALLING(Consumer, __VA_ARGS__)
2271 #include "clang/Driver/Options.inc"
2272 #undef DEPENDENCY_OUTPUT_OPTION_WITH_MARSHALLING
2273 
2274   if (Opts.ShowIncludesDest != ShowIncludesDestination::None)
2275     GenerateArg(Consumer, OPT_show_includes);
2276 
2277   for (const auto &Dep : Opts.ExtraDeps) {
2278     switch (Dep.second) {
2279     case EDK_SanitizeIgnorelist:
2280       // Sanitizer ignorelist arguments are generated from LanguageOptions.
2281       continue;
2282     case EDK_ModuleFile:
2283       // Module file arguments are generated from FrontendOptions and
2284       // HeaderSearchOptions.
2285       continue;
2286     case EDK_ProfileList:
2287       // Profile list arguments are generated from LanguageOptions via the
2288       // marshalling infrastructure.
2289       continue;
2290     case EDK_DepFileEntry:
2291       GenerateArg(Consumer, OPT_fdepfile_entry, Dep.first);
2292       break;
2293     }
2294   }
2295 }
2296 
2297 static bool ParseDependencyOutputArgs(DependencyOutputOptions &Opts,
2298                                       ArgList &Args, DiagnosticsEngine &Diags,
2299                                       frontend::ActionKind Action,
2300                                       bool ShowLineMarkers) {
2301   unsigned NumErrorsBefore = Diags.getNumErrors();
2302 
2303   DependencyOutputOptions &DependencyOutputOpts = Opts;
2304 #define DEPENDENCY_OUTPUT_OPTION_WITH_MARSHALLING(...)                         \
2305   PARSE_OPTION_WITH_MARSHALLING(Args, Diags, __VA_ARGS__)
2306 #include "clang/Driver/Options.inc"
2307 #undef DEPENDENCY_OUTPUT_OPTION_WITH_MARSHALLING
2308 
2309   if (Args.hasArg(OPT_show_includes)) {
2310     // Writing both /showIncludes and preprocessor output to stdout
2311     // would produce interleaved output, so use stderr for /showIncludes.
2312     // This behaves the same as cl.exe, when /E, /EP or /P are passed.
2313     if (Action == frontend::PrintPreprocessedInput || !ShowLineMarkers)
2314       Opts.ShowIncludesDest = ShowIncludesDestination::Stderr;
2315     else
2316       Opts.ShowIncludesDest = ShowIncludesDestination::Stdout;
2317   } else {
2318     Opts.ShowIncludesDest = ShowIncludesDestination::None;
2319   }
2320 
2321   // Add sanitizer ignorelists as extra dependencies.
2322   // They won't be discovered by the regular preprocessor, so
2323   // we let make / ninja to know about this implicit dependency.
2324   if (!Args.hasArg(OPT_fno_sanitize_ignorelist)) {
2325     for (const auto *A : Args.filtered(OPT_fsanitize_ignorelist_EQ)) {
2326       StringRef Val = A->getValue();
2327       if (!Val.contains('='))
2328         Opts.ExtraDeps.emplace_back(std::string(Val), EDK_SanitizeIgnorelist);
2329     }
2330     if (Opts.IncludeSystemHeaders) {
2331       for (const auto *A : Args.filtered(OPT_fsanitize_system_ignorelist_EQ)) {
2332         StringRef Val = A->getValue();
2333         if (!Val.contains('='))
2334           Opts.ExtraDeps.emplace_back(std::string(Val), EDK_SanitizeIgnorelist);
2335       }
2336     }
2337   }
2338 
2339   // -fprofile-list= dependencies.
2340   for (const auto &Filename : Args.getAllArgValues(OPT_fprofile_list_EQ))
2341     Opts.ExtraDeps.emplace_back(Filename, EDK_ProfileList);
2342 
2343   // Propagate the extra dependencies.
2344   for (const auto *A : Args.filtered(OPT_fdepfile_entry))
2345     Opts.ExtraDeps.emplace_back(A->getValue(), EDK_DepFileEntry);
2346 
2347   // Only the -fmodule-file=<file> form.
2348   for (const auto *A : Args.filtered(OPT_fmodule_file)) {
2349     StringRef Val = A->getValue();
2350     if (!Val.contains('='))
2351       Opts.ExtraDeps.emplace_back(std::string(Val), EDK_ModuleFile);
2352   }
2353 
2354   // Check for invalid combinations of header-include-format
2355   // and header-include-filtering.
2356   if ((Opts.HeaderIncludeFormat == HIFMT_Textual &&
2357        Opts.HeaderIncludeFiltering != HIFIL_None) ||
2358       (Opts.HeaderIncludeFormat == HIFMT_JSON &&
2359        Opts.HeaderIncludeFiltering != HIFIL_Only_Direct_System))
2360     Diags.Report(diag::err_drv_print_header_env_var_combination_cc1)
2361         << Args.getLastArg(OPT_header_include_format_EQ)->getValue()
2362         << Args.getLastArg(OPT_header_include_filtering_EQ)->getValue();
2363 
2364   return Diags.getNumErrors() == NumErrorsBefore;
2365 }
2366 
2367 static bool parseShowColorsArgs(const ArgList &Args, bool DefaultColor) {
2368   // Color diagnostics default to auto ("on" if terminal supports) in the driver
2369   // but default to off in cc1, needing an explicit OPT_fdiagnostics_color.
2370   // Support both clang's -f[no-]color-diagnostics and gcc's
2371   // -f[no-]diagnostics-colors[=never|always|auto].
2372   enum {
2373     Colors_On,
2374     Colors_Off,
2375     Colors_Auto
2376   } ShowColors = DefaultColor ? Colors_Auto : Colors_Off;
2377   for (auto *A : Args) {
2378     const Option &O = A->getOption();
2379     if (O.matches(options::OPT_fcolor_diagnostics)) {
2380       ShowColors = Colors_On;
2381     } else if (O.matches(options::OPT_fno_color_diagnostics)) {
2382       ShowColors = Colors_Off;
2383     } else if (O.matches(options::OPT_fdiagnostics_color_EQ)) {
2384       StringRef Value(A->getValue());
2385       if (Value == "always")
2386         ShowColors = Colors_On;
2387       else if (Value == "never")
2388         ShowColors = Colors_Off;
2389       else if (Value == "auto")
2390         ShowColors = Colors_Auto;
2391     }
2392   }
2393   return ShowColors == Colors_On ||
2394          (ShowColors == Colors_Auto &&
2395           llvm::sys::Process::StandardErrHasColors());
2396 }
2397 
2398 static bool checkVerifyPrefixes(const std::vector<std::string> &VerifyPrefixes,
2399                                 DiagnosticsEngine &Diags) {
2400   bool Success = true;
2401   for (const auto &Prefix : VerifyPrefixes) {
2402     // Every prefix must start with a letter and contain only alphanumeric
2403     // characters, hyphens, and underscores.
2404     auto BadChar = llvm::find_if(Prefix, [](char C) {
2405       return !isAlphanumeric(C) && C != '-' && C != '_';
2406     });
2407     if (BadChar != Prefix.end() || !isLetter(Prefix[0])) {
2408       Success = false;
2409       Diags.Report(diag::err_drv_invalid_value) << "-verify=" << Prefix;
2410       Diags.Report(diag::note_drv_verify_prefix_spelling);
2411     }
2412   }
2413   return Success;
2414 }
2415 
2416 static void GenerateFileSystemArgs(const FileSystemOptions &Opts,
2417                                    ArgumentConsumer Consumer) {
2418   const FileSystemOptions &FileSystemOpts = Opts;
2419 
2420 #define FILE_SYSTEM_OPTION_WITH_MARSHALLING(...)                               \
2421   GENERATE_OPTION_WITH_MARSHALLING(Consumer, __VA_ARGS__)
2422 #include "clang/Driver/Options.inc"
2423 #undef FILE_SYSTEM_OPTION_WITH_MARSHALLING
2424 }
2425 
2426 static bool ParseFileSystemArgs(FileSystemOptions &Opts, const ArgList &Args,
2427                                 DiagnosticsEngine &Diags) {
2428   unsigned NumErrorsBefore = Diags.getNumErrors();
2429 
2430   FileSystemOptions &FileSystemOpts = Opts;
2431 
2432 #define FILE_SYSTEM_OPTION_WITH_MARSHALLING(...)                               \
2433   PARSE_OPTION_WITH_MARSHALLING(Args, Diags, __VA_ARGS__)
2434 #include "clang/Driver/Options.inc"
2435 #undef FILE_SYSTEM_OPTION_WITH_MARSHALLING
2436 
2437   return Diags.getNumErrors() == NumErrorsBefore;
2438 }
2439 
2440 static void GenerateMigratorArgs(const MigratorOptions &Opts,
2441                                  ArgumentConsumer Consumer) {
2442   const MigratorOptions &MigratorOpts = Opts;
2443 #define MIGRATOR_OPTION_WITH_MARSHALLING(...)                                  \
2444   GENERATE_OPTION_WITH_MARSHALLING(Consumer, __VA_ARGS__)
2445 #include "clang/Driver/Options.inc"
2446 #undef MIGRATOR_OPTION_WITH_MARSHALLING
2447 }
2448 
2449 static bool ParseMigratorArgs(MigratorOptions &Opts, const ArgList &Args,
2450                               DiagnosticsEngine &Diags) {
2451   unsigned NumErrorsBefore = Diags.getNumErrors();
2452 
2453   MigratorOptions &MigratorOpts = Opts;
2454 
2455 #define MIGRATOR_OPTION_WITH_MARSHALLING(...)                                  \
2456   PARSE_OPTION_WITH_MARSHALLING(Args, Diags, __VA_ARGS__)
2457 #include "clang/Driver/Options.inc"
2458 #undef MIGRATOR_OPTION_WITH_MARSHALLING
2459 
2460   return Diags.getNumErrors() == NumErrorsBefore;
2461 }
2462 
2463 void CompilerInvocationBase::GenerateDiagnosticArgs(
2464     const DiagnosticOptions &Opts, ArgumentConsumer Consumer,
2465     bool DefaultDiagColor) {
2466   const DiagnosticOptions *DiagnosticOpts = &Opts;
2467 #define DIAG_OPTION_WITH_MARSHALLING(...)                                      \
2468   GENERATE_OPTION_WITH_MARSHALLING(Consumer, __VA_ARGS__)
2469 #include "clang/Driver/Options.inc"
2470 #undef DIAG_OPTION_WITH_MARSHALLING
2471 
2472   if (!Opts.DiagnosticSerializationFile.empty())
2473     GenerateArg(Consumer, OPT_diagnostic_serialized_file,
2474                 Opts.DiagnosticSerializationFile);
2475 
2476   if (Opts.ShowColors)
2477     GenerateArg(Consumer, OPT_fcolor_diagnostics);
2478 
2479   if (Opts.VerifyDiagnostics &&
2480       llvm::is_contained(Opts.VerifyPrefixes, "expected"))
2481     GenerateArg(Consumer, OPT_verify);
2482 
2483   for (const auto &Prefix : Opts.VerifyPrefixes)
2484     if (Prefix != "expected")
2485       GenerateArg(Consumer, OPT_verify_EQ, Prefix);
2486 
2487   DiagnosticLevelMask VIU = Opts.getVerifyIgnoreUnexpected();
2488   if (VIU == DiagnosticLevelMask::None) {
2489     // This is the default, don't generate anything.
2490   } else if (VIU == DiagnosticLevelMask::All) {
2491     GenerateArg(Consumer, OPT_verify_ignore_unexpected);
2492   } else {
2493     if (static_cast<unsigned>(VIU & DiagnosticLevelMask::Note) != 0)
2494       GenerateArg(Consumer, OPT_verify_ignore_unexpected_EQ, "note");
2495     if (static_cast<unsigned>(VIU & DiagnosticLevelMask::Remark) != 0)
2496       GenerateArg(Consumer, OPT_verify_ignore_unexpected_EQ, "remark");
2497     if (static_cast<unsigned>(VIU & DiagnosticLevelMask::Warning) != 0)
2498       GenerateArg(Consumer, OPT_verify_ignore_unexpected_EQ, "warning");
2499     if (static_cast<unsigned>(VIU & DiagnosticLevelMask::Error) != 0)
2500       GenerateArg(Consumer, OPT_verify_ignore_unexpected_EQ, "error");
2501   }
2502 
2503   for (const auto &Warning : Opts.Warnings) {
2504     // This option is automatically generated from UndefPrefixes.
2505     if (Warning == "undef-prefix")
2506       continue;
2507     // This option is automatically generated from CheckConstexprFunctionBodies.
2508     if (Warning == "invalid-constexpr" || Warning == "no-invalid-constexpr")
2509       continue;
2510     Consumer(StringRef("-W") + Warning);
2511   }
2512 
2513   for (const auto &Remark : Opts.Remarks) {
2514     // These arguments are generated from OptimizationRemark fields of
2515     // CodeGenOptions.
2516     StringRef IgnoredRemarks[] = {"pass",          "no-pass",
2517                                   "pass-analysis", "no-pass-analysis",
2518                                   "pass-missed",   "no-pass-missed"};
2519     if (llvm::is_contained(IgnoredRemarks, Remark))
2520       continue;
2521 
2522     Consumer(StringRef("-R") + Remark);
2523   }
2524 
2525   if (!Opts.DiagnosticSuppressionMappingsFile.empty()) {
2526     GenerateArg(Consumer, OPT_warning_suppression_mappings_EQ,
2527                 Opts.DiagnosticSuppressionMappingsFile);
2528   }
2529 }
2530 
2531 std::unique_ptr<DiagnosticOptions>
2532 clang::CreateAndPopulateDiagOpts(ArrayRef<const char *> Argv) {
2533   auto DiagOpts = std::make_unique<DiagnosticOptions>();
2534   unsigned MissingArgIndex, MissingArgCount;
2535   InputArgList Args = getDriverOptTable().ParseArgs(
2536       Argv.slice(1), MissingArgIndex, MissingArgCount);
2537 
2538   bool ShowColors = true;
2539   if (std::optional<std::string> NoColor =
2540           llvm::sys::Process::GetEnv("NO_COLOR");
2541       NoColor && !NoColor->empty()) {
2542     // If the user set the NO_COLOR environment variable, we'll honor that
2543     // unless the command line overrides it.
2544     ShowColors = false;
2545   }
2546 
2547   // We ignore MissingArgCount and the return value of ParseDiagnosticArgs.
2548   // Any errors that would be diagnosed here will also be diagnosed later,
2549   // when the DiagnosticsEngine actually exists.
2550   (void)ParseDiagnosticArgs(*DiagOpts, Args, /*Diags=*/nullptr, ShowColors);
2551   return DiagOpts;
2552 }
2553 
2554 bool clang::ParseDiagnosticArgs(DiagnosticOptions &Opts, ArgList &Args,
2555                                 DiagnosticsEngine *Diags,
2556                                 bool DefaultDiagColor) {
2557   std::optional<DiagnosticsEngine> IgnoringDiags;
2558   if (!Diags) {
2559     IgnoringDiags.emplace(new DiagnosticIDs(), new DiagnosticOptions(),
2560                           new IgnoringDiagConsumer());
2561     Diags = &*IgnoringDiags;
2562   }
2563 
2564   unsigned NumErrorsBefore = Diags->getNumErrors();
2565 
2566   // The key paths of diagnostic options defined in Options.td start with
2567   // "DiagnosticOpts->". Let's provide the expected variable name and type.
2568   DiagnosticOptions *DiagnosticOpts = &Opts;
2569 
2570 #define DIAG_OPTION_WITH_MARSHALLING(...)                                      \
2571   PARSE_OPTION_WITH_MARSHALLING(Args, *Diags, __VA_ARGS__)
2572 #include "clang/Driver/Options.inc"
2573 #undef DIAG_OPTION_WITH_MARSHALLING
2574 
2575   llvm::sys::Process::UseANSIEscapeCodes(Opts.UseANSIEscapeCodes);
2576 
2577   if (Arg *A =
2578           Args.getLastArg(OPT_diagnostic_serialized_file, OPT__serialize_diags))
2579     Opts.DiagnosticSerializationFile = A->getValue();
2580   Opts.ShowColors = parseShowColorsArgs(Args, DefaultDiagColor);
2581 
2582   Opts.VerifyDiagnostics = Args.hasArg(OPT_verify) || Args.hasArg(OPT_verify_EQ);
2583   Opts.VerifyPrefixes = Args.getAllArgValues(OPT_verify_EQ);
2584   if (Args.hasArg(OPT_verify))
2585     Opts.VerifyPrefixes.push_back("expected");
2586   // Keep VerifyPrefixes in its original order for the sake of diagnostics, and
2587   // then sort it to prepare for fast lookup using std::binary_search.
2588   if (!checkVerifyPrefixes(Opts.VerifyPrefixes, *Diags))
2589     Opts.VerifyDiagnostics = false;
2590   else
2591     llvm::sort(Opts.VerifyPrefixes);
2592   DiagnosticLevelMask DiagMask = DiagnosticLevelMask::None;
2593   parseDiagnosticLevelMask(
2594       "-verify-ignore-unexpected=",
2595       Args.getAllArgValues(OPT_verify_ignore_unexpected_EQ), *Diags, DiagMask);
2596   if (Args.hasArg(OPT_verify_ignore_unexpected))
2597     DiagMask = DiagnosticLevelMask::All;
2598   Opts.setVerifyIgnoreUnexpected(DiagMask);
2599   if (Opts.TabStop == 0 || Opts.TabStop > DiagnosticOptions::MaxTabStop) {
2600     Diags->Report(diag::warn_ignoring_ftabstop_value)
2601         << Opts.TabStop << DiagnosticOptions::DefaultTabStop;
2602     Opts.TabStop = DiagnosticOptions::DefaultTabStop;
2603   }
2604 
2605   if (const Arg *A = Args.getLastArg(OPT_warning_suppression_mappings_EQ))
2606     Opts.DiagnosticSuppressionMappingsFile = A->getValue();
2607 
2608   addDiagnosticArgs(Args, OPT_W_Group, OPT_W_value_Group, Opts.Warnings);
2609   addDiagnosticArgs(Args, OPT_R_Group, OPT_R_value_Group, Opts.Remarks);
2610 
2611   return Diags->getNumErrors() == NumErrorsBefore;
2612 }
2613 
2614 /// Parse the argument to the -ftest-module-file-extension
2615 /// command-line argument.
2616 ///
2617 /// \returns true on error, false on success.
2618 static bool parseTestModuleFileExtensionArg(StringRef Arg,
2619                                             std::string &BlockName,
2620                                             unsigned &MajorVersion,
2621                                             unsigned &MinorVersion,
2622                                             bool &Hashed,
2623                                             std::string &UserInfo) {
2624   SmallVector<StringRef, 5> Args;
2625   Arg.split(Args, ':', 5);
2626   if (Args.size() < 5)
2627     return true;
2628 
2629   BlockName = std::string(Args[0]);
2630   if (Args[1].getAsInteger(10, MajorVersion)) return true;
2631   if (Args[2].getAsInteger(10, MinorVersion)) return true;
2632   if (Args[3].getAsInteger(2, Hashed)) return true;
2633   if (Args.size() > 4)
2634     UserInfo = std::string(Args[4]);
2635   return false;
2636 }
2637 
2638 /// Return a table that associates command line option specifiers with the
2639 /// frontend action. Note: The pair {frontend::PluginAction, OPT_plugin} is
2640 /// intentionally missing, as this case is handled separately from other
2641 /// frontend options.
2642 static const auto &getFrontendActionTable() {
2643   static const std::pair<frontend::ActionKind, unsigned> Table[] = {
2644       {frontend::ASTDeclList, OPT_ast_list},
2645 
2646       {frontend::ASTDump, OPT_ast_dump_all_EQ},
2647       {frontend::ASTDump, OPT_ast_dump_all},
2648       {frontend::ASTDump, OPT_ast_dump_EQ},
2649       {frontend::ASTDump, OPT_ast_dump},
2650       {frontend::ASTDump, OPT_ast_dump_lookups},
2651       {frontend::ASTDump, OPT_ast_dump_decl_types},
2652 
2653       {frontend::ASTPrint, OPT_ast_print},
2654       {frontend::ASTView, OPT_ast_view},
2655       {frontend::DumpCompilerOptions, OPT_compiler_options_dump},
2656       {frontend::DumpRawTokens, OPT_dump_raw_tokens},
2657       {frontend::DumpTokens, OPT_dump_tokens},
2658       {frontend::EmitAssembly, OPT_S},
2659       {frontend::EmitBC, OPT_emit_llvm_bc},
2660       {frontend::EmitCIR, OPT_emit_cir},
2661       {frontend::EmitHTML, OPT_emit_html},
2662       {frontend::EmitLLVM, OPT_emit_llvm},
2663       {frontend::EmitLLVMOnly, OPT_emit_llvm_only},
2664       {frontend::EmitCodeGenOnly, OPT_emit_codegen_only},
2665       {frontend::EmitObj, OPT_emit_obj},
2666       {frontend::ExtractAPI, OPT_extract_api},
2667 
2668       {frontend::FixIt, OPT_fixit_EQ},
2669       {frontend::FixIt, OPT_fixit},
2670 
2671       {frontend::GenerateModule, OPT_emit_module},
2672       {frontend::GenerateModuleInterface, OPT_emit_module_interface},
2673       {frontend::GenerateReducedModuleInterface,
2674        OPT_emit_reduced_module_interface},
2675       {frontend::GenerateHeaderUnit, OPT_emit_header_unit},
2676       {frontend::GeneratePCH, OPT_emit_pch},
2677       {frontend::GenerateInterfaceStubs, OPT_emit_interface_stubs},
2678       {frontend::InitOnly, OPT_init_only},
2679       {frontend::ParseSyntaxOnly, OPT_fsyntax_only},
2680       {frontend::ModuleFileInfo, OPT_module_file_info},
2681       {frontend::VerifyPCH, OPT_verify_pch},
2682       {frontend::PrintPreamble, OPT_print_preamble},
2683       {frontend::PrintPreprocessedInput, OPT_E},
2684       {frontend::TemplightDump, OPT_templight_dump},
2685       {frontend::RewriteMacros, OPT_rewrite_macros},
2686       {frontend::RewriteObjC, OPT_rewrite_objc},
2687       {frontend::RewriteTest, OPT_rewrite_test},
2688       {frontend::RunAnalysis, OPT_analyze},
2689       {frontend::MigrateSource, OPT_migrate},
2690       {frontend::RunPreprocessorOnly, OPT_Eonly},
2691       {frontend::PrintDependencyDirectivesSourceMinimizerOutput,
2692        OPT_print_dependency_directives_minimized_source},
2693   };
2694 
2695   return Table;
2696 }
2697 
2698 /// Maps command line option to frontend action.
2699 static std::optional<frontend::ActionKind>
2700 getFrontendAction(OptSpecifier &Opt) {
2701   for (const auto &ActionOpt : getFrontendActionTable())
2702     if (ActionOpt.second == Opt.getID())
2703       return ActionOpt.first;
2704 
2705   return std::nullopt;
2706 }
2707 
2708 /// Maps frontend action to command line option.
2709 static std::optional<OptSpecifier>
2710 getProgramActionOpt(frontend::ActionKind ProgramAction) {
2711   for (const auto &ActionOpt : getFrontendActionTable())
2712     if (ActionOpt.first == ProgramAction)
2713       return OptSpecifier(ActionOpt.second);
2714 
2715   return std::nullopt;
2716 }
2717 
2718 static void GenerateFrontendArgs(const FrontendOptions &Opts,
2719                                  ArgumentConsumer Consumer, bool IsHeader) {
2720   const FrontendOptions &FrontendOpts = Opts;
2721 #define FRONTEND_OPTION_WITH_MARSHALLING(...)                                  \
2722   GENERATE_OPTION_WITH_MARSHALLING(Consumer, __VA_ARGS__)
2723 #include "clang/Driver/Options.inc"
2724 #undef FRONTEND_OPTION_WITH_MARSHALLING
2725 
2726   std::optional<OptSpecifier> ProgramActionOpt =
2727       getProgramActionOpt(Opts.ProgramAction);
2728 
2729   // Generating a simple flag covers most frontend actions.
2730   std::function<void()> GenerateProgramAction = [&]() {
2731     GenerateArg(Consumer, *ProgramActionOpt);
2732   };
2733 
2734   if (!ProgramActionOpt) {
2735     // PluginAction is the only program action handled separately.
2736     assert(Opts.ProgramAction == frontend::PluginAction &&
2737            "Frontend action without option.");
2738     GenerateProgramAction = [&]() {
2739       GenerateArg(Consumer, OPT_plugin, Opts.ActionName);
2740     };
2741   }
2742 
2743   // FIXME: Simplify the complex 'AST dump' command line.
2744   if (Opts.ProgramAction == frontend::ASTDump) {
2745     GenerateProgramAction = [&]() {
2746       // ASTDumpLookups, ASTDumpDeclTypes and ASTDumpFilter are generated via
2747       // marshalling infrastructure.
2748 
2749       if (Opts.ASTDumpFormat != ADOF_Default) {
2750         StringRef Format;
2751         switch (Opts.ASTDumpFormat) {
2752         case ADOF_Default:
2753           llvm_unreachable("Default AST dump format.");
2754         case ADOF_JSON:
2755           Format = "json";
2756           break;
2757         }
2758 
2759         if (Opts.ASTDumpAll)
2760           GenerateArg(Consumer, OPT_ast_dump_all_EQ, Format);
2761         if (Opts.ASTDumpDecls)
2762           GenerateArg(Consumer, OPT_ast_dump_EQ, Format);
2763       } else {
2764         if (Opts.ASTDumpAll)
2765           GenerateArg(Consumer, OPT_ast_dump_all);
2766         if (Opts.ASTDumpDecls)
2767           GenerateArg(Consumer, OPT_ast_dump);
2768       }
2769     };
2770   }
2771 
2772   if (Opts.ProgramAction == frontend::FixIt && !Opts.FixItSuffix.empty()) {
2773     GenerateProgramAction = [&]() {
2774       GenerateArg(Consumer, OPT_fixit_EQ, Opts.FixItSuffix);
2775     };
2776   }
2777 
2778   GenerateProgramAction();
2779 
2780   for (const auto &PluginArgs : Opts.PluginArgs) {
2781     Option Opt = getDriverOptTable().getOption(OPT_plugin_arg);
2782     for (const auto &PluginArg : PluginArgs.second)
2783       denormalizeString(Consumer,
2784                         Opt.getPrefix() + Opt.getName() + PluginArgs.first,
2785                         Opt.getKind(), 0, PluginArg);
2786   }
2787 
2788   for (const auto &Ext : Opts.ModuleFileExtensions)
2789     if (auto *TestExt = dyn_cast_or_null<TestModuleFileExtension>(Ext.get()))
2790       GenerateArg(Consumer, OPT_ftest_module_file_extension_EQ, TestExt->str());
2791 
2792   if (!Opts.CodeCompletionAt.FileName.empty())
2793     GenerateArg(Consumer, OPT_code_completion_at,
2794                 Opts.CodeCompletionAt.ToString());
2795 
2796   for (const auto &Plugin : Opts.Plugins)
2797     GenerateArg(Consumer, OPT_load, Plugin);
2798 
2799   // ASTDumpDecls and ASTDumpAll already handled with ProgramAction.
2800 
2801   for (const auto &ModuleFile : Opts.ModuleFiles)
2802     GenerateArg(Consumer, OPT_fmodule_file, ModuleFile);
2803 
2804   if (Opts.AuxTargetCPU)
2805     GenerateArg(Consumer, OPT_aux_target_cpu, *Opts.AuxTargetCPU);
2806 
2807   if (Opts.AuxTargetFeatures)
2808     for (const auto &Feature : *Opts.AuxTargetFeatures)
2809       GenerateArg(Consumer, OPT_aux_target_feature, Feature);
2810 
2811   {
2812     StringRef Preprocessed = Opts.DashX.isPreprocessed() ? "-cpp-output" : "";
2813     StringRef ModuleMap =
2814         Opts.DashX.getFormat() == InputKind::ModuleMap ? "-module-map" : "";
2815     StringRef HeaderUnit = "";
2816     switch (Opts.DashX.getHeaderUnitKind()) {
2817     case InputKind::HeaderUnit_None:
2818       break;
2819     case InputKind::HeaderUnit_User:
2820       HeaderUnit = "-user";
2821       break;
2822     case InputKind::HeaderUnit_System:
2823       HeaderUnit = "-system";
2824       break;
2825     case InputKind::HeaderUnit_Abs:
2826       HeaderUnit = "-header-unit";
2827       break;
2828     }
2829     StringRef Header = IsHeader ? "-header" : "";
2830 
2831     StringRef Lang;
2832     switch (Opts.DashX.getLanguage()) {
2833     case Language::C:
2834       Lang = "c";
2835       break;
2836     case Language::OpenCL:
2837       Lang = "cl";
2838       break;
2839     case Language::OpenCLCXX:
2840       Lang = "clcpp";
2841       break;
2842     case Language::CUDA:
2843       Lang = "cuda";
2844       break;
2845     case Language::HIP:
2846       Lang = "hip";
2847       break;
2848     case Language::CXX:
2849       Lang = "c++";
2850       break;
2851     case Language::ObjC:
2852       Lang = "objective-c";
2853       break;
2854     case Language::ObjCXX:
2855       Lang = "objective-c++";
2856       break;
2857     case Language::Asm:
2858       Lang = "assembler-with-cpp";
2859       break;
2860     case Language::Unknown:
2861       assert(Opts.DashX.getFormat() == InputKind::Precompiled &&
2862              "Generating -x argument for unknown language (not precompiled).");
2863       Lang = "ast";
2864       break;
2865     case Language::LLVM_IR:
2866       Lang = "ir";
2867       break;
2868     case Language::HLSL:
2869       Lang = "hlsl";
2870       break;
2871     case Language::CIR:
2872       Lang = "cir";
2873       break;
2874     }
2875 
2876     GenerateArg(Consumer, OPT_x,
2877                 Lang + HeaderUnit + Header + ModuleMap + Preprocessed);
2878   }
2879 
2880   // OPT_INPUT has a unique class, generate it directly.
2881   for (const auto &Input : Opts.Inputs)
2882     Consumer(Input.getFile());
2883 }
2884 
2885 static bool ParseFrontendArgs(FrontendOptions &Opts, ArgList &Args,
2886                               DiagnosticsEngine &Diags, bool &IsHeaderFile) {
2887   unsigned NumErrorsBefore = Diags.getNumErrors();
2888 
2889   FrontendOptions &FrontendOpts = Opts;
2890 
2891 #define FRONTEND_OPTION_WITH_MARSHALLING(...)                                  \
2892   PARSE_OPTION_WITH_MARSHALLING(Args, Diags, __VA_ARGS__)
2893 #include "clang/Driver/Options.inc"
2894 #undef FRONTEND_OPTION_WITH_MARSHALLING
2895 
2896   Opts.ProgramAction = frontend::ParseSyntaxOnly;
2897   if (const Arg *A = Args.getLastArg(OPT_Action_Group)) {
2898     OptSpecifier Opt = OptSpecifier(A->getOption().getID());
2899     std::optional<frontend::ActionKind> ProgramAction = getFrontendAction(Opt);
2900     assert(ProgramAction && "Option specifier not in Action_Group.");
2901 
2902     if (ProgramAction == frontend::ASTDump &&
2903         (Opt == OPT_ast_dump_all_EQ || Opt == OPT_ast_dump_EQ)) {
2904       unsigned Val = llvm::StringSwitch<unsigned>(A->getValue())
2905                          .CaseLower("default", ADOF_Default)
2906                          .CaseLower("json", ADOF_JSON)
2907                          .Default(std::numeric_limits<unsigned>::max());
2908 
2909       if (Val != std::numeric_limits<unsigned>::max())
2910         Opts.ASTDumpFormat = static_cast<ASTDumpOutputFormat>(Val);
2911       else {
2912         Diags.Report(diag::err_drv_invalid_value)
2913             << A->getAsString(Args) << A->getValue();
2914         Opts.ASTDumpFormat = ADOF_Default;
2915       }
2916     }
2917 
2918     if (ProgramAction == frontend::FixIt && Opt == OPT_fixit_EQ)
2919       Opts.FixItSuffix = A->getValue();
2920 
2921     if (ProgramAction == frontend::GenerateInterfaceStubs) {
2922       StringRef ArgStr =
2923           Args.hasArg(OPT_interface_stub_version_EQ)
2924               ? Args.getLastArgValue(OPT_interface_stub_version_EQ)
2925               : "ifs-v1";
2926       if (ArgStr == "experimental-yaml-elf-v1" ||
2927           ArgStr == "experimental-ifs-v1" || ArgStr == "experimental-ifs-v2" ||
2928           ArgStr == "experimental-tapi-elf-v1") {
2929         std::string ErrorMessage =
2930             "Invalid interface stub format: " + ArgStr.str() +
2931             " is deprecated.";
2932         Diags.Report(diag::err_drv_invalid_value)
2933             << "Must specify a valid interface stub format type, ie: "
2934                "-interface-stub-version=ifs-v1"
2935             << ErrorMessage;
2936         ProgramAction = frontend::ParseSyntaxOnly;
2937       } else if (!ArgStr.starts_with("ifs-")) {
2938         std::string ErrorMessage =
2939             "Invalid interface stub format: " + ArgStr.str() + ".";
2940         Diags.Report(diag::err_drv_invalid_value)
2941             << "Must specify a valid interface stub format type, ie: "
2942                "-interface-stub-version=ifs-v1"
2943             << ErrorMessage;
2944         ProgramAction = frontend::ParseSyntaxOnly;
2945       }
2946     }
2947 
2948     Opts.ProgramAction = *ProgramAction;
2949 
2950     // Catch common mistakes when multiple actions are specified for cc1 (e.g.
2951     // -S -emit-llvm means -emit-llvm while -emit-llvm -S means -S). However, to
2952     // support driver `-c -Xclang ACTION` (-cc1 -emit-llvm file -main-file-name
2953     // X ACTION), we suppress the error when the two actions are separated by
2954     // -main-file-name.
2955     //
2956     // As an exception, accept composable -ast-dump*.
2957     if (!A->getSpelling().starts_with("-ast-dump")) {
2958       const Arg *SavedAction = nullptr;
2959       for (const Arg *AA :
2960            Args.filtered(OPT_Action_Group, OPT_main_file_name)) {
2961         if (AA->getOption().matches(OPT_main_file_name)) {
2962           SavedAction = nullptr;
2963         } else if (!SavedAction) {
2964           SavedAction = AA;
2965         } else {
2966           if (!A->getOption().matches(OPT_ast_dump_EQ))
2967             Diags.Report(diag::err_fe_invalid_multiple_actions)
2968                 << SavedAction->getSpelling() << A->getSpelling();
2969           break;
2970         }
2971       }
2972     }
2973   }
2974 
2975   if (const Arg* A = Args.getLastArg(OPT_plugin)) {
2976     Opts.Plugins.emplace_back(A->getValue(0));
2977     Opts.ProgramAction = frontend::PluginAction;
2978     Opts.ActionName = A->getValue();
2979   }
2980   for (const auto *AA : Args.filtered(OPT_plugin_arg))
2981     Opts.PluginArgs[AA->getValue(0)].emplace_back(AA->getValue(1));
2982 
2983   for (const std::string &Arg :
2984          Args.getAllArgValues(OPT_ftest_module_file_extension_EQ)) {
2985     std::string BlockName;
2986     unsigned MajorVersion;
2987     unsigned MinorVersion;
2988     bool Hashed;
2989     std::string UserInfo;
2990     if (parseTestModuleFileExtensionArg(Arg, BlockName, MajorVersion,
2991                                         MinorVersion, Hashed, UserInfo)) {
2992       Diags.Report(diag::err_test_module_file_extension_format) << Arg;
2993 
2994       continue;
2995     }
2996 
2997     // Add the testing module file extension.
2998     Opts.ModuleFileExtensions.push_back(
2999         std::make_shared<TestModuleFileExtension>(
3000             BlockName, MajorVersion, MinorVersion, Hashed, UserInfo));
3001   }
3002 
3003   if (const Arg *A = Args.getLastArg(OPT_code_completion_at)) {
3004     Opts.CodeCompletionAt =
3005       ParsedSourceLocation::FromString(A->getValue());
3006     if (Opts.CodeCompletionAt.FileName.empty())
3007       Diags.Report(diag::err_drv_invalid_value)
3008         << A->getAsString(Args) << A->getValue();
3009   }
3010 
3011   Opts.Plugins = Args.getAllArgValues(OPT_load);
3012   Opts.ASTDumpDecls = Args.hasArg(OPT_ast_dump, OPT_ast_dump_EQ);
3013   Opts.ASTDumpAll = Args.hasArg(OPT_ast_dump_all, OPT_ast_dump_all_EQ);
3014   // Only the -fmodule-file=<file> form.
3015   for (const auto *A : Args.filtered(OPT_fmodule_file)) {
3016     StringRef Val = A->getValue();
3017     if (!Val.contains('='))
3018       Opts.ModuleFiles.push_back(std::string(Val));
3019   }
3020 
3021   if (Opts.ProgramAction != frontend::GenerateModule && Opts.IsSystemModule)
3022     Diags.Report(diag::err_drv_argument_only_allowed_with) << "-fsystem-module"
3023                                                            << "-emit-module";
3024   if (Args.hasArg(OPT_fclangir) || Args.hasArg(OPT_emit_cir))
3025     Opts.UseClangIRPipeline = true;
3026 
3027   if (Args.hasArg(OPT_aux_target_cpu))
3028     Opts.AuxTargetCPU = std::string(Args.getLastArgValue(OPT_aux_target_cpu));
3029   if (Args.hasArg(OPT_aux_target_feature))
3030     Opts.AuxTargetFeatures = Args.getAllArgValues(OPT_aux_target_feature);
3031 
3032   if (Opts.ARCMTAction != FrontendOptions::ARCMT_None &&
3033       Opts.ObjCMTAction != FrontendOptions::ObjCMT_None) {
3034     Diags.Report(diag::err_drv_argument_not_allowed_with)
3035       << "ARC migration" << "ObjC migration";
3036   }
3037 
3038   InputKind DashX(Language::Unknown);
3039   if (const Arg *A = Args.getLastArg(OPT_x)) {
3040     StringRef XValue = A->getValue();
3041 
3042     // Parse suffixes:
3043     // '<lang>(-[{header-unit,user,system}-]header|[-module-map][-cpp-output])'.
3044     // FIXME: Supporting '<lang>-header-cpp-output' would be useful.
3045     bool Preprocessed = XValue.consume_back("-cpp-output");
3046     bool ModuleMap = XValue.consume_back("-module-map");
3047     // Detect and consume the header indicator.
3048     bool IsHeader =
3049         XValue != "precompiled-header" && XValue.consume_back("-header");
3050 
3051     // If we have c++-{user,system}-header, that indicates a header unit input
3052     // likewise, if the user put -fmodule-header together with a header with an
3053     // absolute path (header-unit-header).
3054     InputKind::HeaderUnitKind HUK = InputKind::HeaderUnit_None;
3055     if (IsHeader || Preprocessed) {
3056       if (XValue.consume_back("-header-unit"))
3057         HUK = InputKind::HeaderUnit_Abs;
3058       else if (XValue.consume_back("-system"))
3059         HUK = InputKind::HeaderUnit_System;
3060       else if (XValue.consume_back("-user"))
3061         HUK = InputKind::HeaderUnit_User;
3062     }
3063 
3064     // The value set by this processing is an un-preprocessed source which is
3065     // not intended to be a module map or header unit.
3066     IsHeaderFile = IsHeader && !Preprocessed && !ModuleMap &&
3067                    HUK == InputKind::HeaderUnit_None;
3068 
3069     // Principal languages.
3070     DashX = llvm::StringSwitch<InputKind>(XValue)
3071                 .Case("c", Language::C)
3072                 .Case("cl", Language::OpenCL)
3073                 .Case("clcpp", Language::OpenCLCXX)
3074                 .Case("cuda", Language::CUDA)
3075                 .Case("hip", Language::HIP)
3076                 .Case("c++", Language::CXX)
3077                 .Case("objective-c", Language::ObjC)
3078                 .Case("objective-c++", Language::ObjCXX)
3079                 .Case("hlsl", Language::HLSL)
3080                 .Default(Language::Unknown);
3081 
3082     // "objc[++]-cpp-output" is an acceptable synonym for
3083     // "objective-c[++]-cpp-output".
3084     if (DashX.isUnknown() && Preprocessed && !IsHeaderFile && !ModuleMap &&
3085         HUK == InputKind::HeaderUnit_None)
3086       DashX = llvm::StringSwitch<InputKind>(XValue)
3087                   .Case("objc", Language::ObjC)
3088                   .Case("objc++", Language::ObjCXX)
3089                   .Default(Language::Unknown);
3090 
3091     // Some special cases cannot be combined with suffixes.
3092     if (DashX.isUnknown() && !Preprocessed && !IsHeaderFile && !ModuleMap &&
3093         HUK == InputKind::HeaderUnit_None)
3094       DashX = llvm::StringSwitch<InputKind>(XValue)
3095                   .Case("cpp-output", InputKind(Language::C).getPreprocessed())
3096                   .Case("assembler-with-cpp", Language::Asm)
3097                   .Cases("ast", "pcm", "precompiled-header",
3098                          InputKind(Language::Unknown, InputKind::Precompiled))
3099                   .Case("ir", Language::LLVM_IR)
3100                   .Case("cir", Language::CIR)
3101                   .Default(Language::Unknown);
3102 
3103     if (DashX.isUnknown())
3104       Diags.Report(diag::err_drv_invalid_value)
3105         << A->getAsString(Args) << A->getValue();
3106 
3107     if (Preprocessed)
3108       DashX = DashX.getPreprocessed();
3109     // A regular header is considered mutually exclusive with a header unit.
3110     if (HUK != InputKind::HeaderUnit_None) {
3111       DashX = DashX.withHeaderUnit(HUK);
3112       IsHeaderFile = true;
3113     } else if (IsHeaderFile)
3114       DashX = DashX.getHeader();
3115     if (ModuleMap)
3116       DashX = DashX.withFormat(InputKind::ModuleMap);
3117   }
3118 
3119   // '-' is the default input if none is given.
3120   std::vector<std::string> Inputs = Args.getAllArgValues(OPT_INPUT);
3121   Opts.Inputs.clear();
3122   if (Inputs.empty())
3123     Inputs.push_back("-");
3124 
3125   if (DashX.getHeaderUnitKind() != InputKind::HeaderUnit_None &&
3126       Inputs.size() > 1)
3127     Diags.Report(diag::err_drv_header_unit_extra_inputs) << Inputs[1];
3128 
3129   for (unsigned i = 0, e = Inputs.size(); i != e; ++i) {
3130     InputKind IK = DashX;
3131     if (IK.isUnknown()) {
3132       IK = FrontendOptions::getInputKindForExtension(
3133         StringRef(Inputs[i]).rsplit('.').second);
3134       // FIXME: Warn on this?
3135       if (IK.isUnknown())
3136         IK = Language::C;
3137       // FIXME: Remove this hack.
3138       if (i == 0)
3139         DashX = IK;
3140     }
3141 
3142     bool IsSystem = false;
3143 
3144     // The -emit-module action implicitly takes a module map.
3145     if (Opts.ProgramAction == frontend::GenerateModule &&
3146         IK.getFormat() == InputKind::Source) {
3147       IK = IK.withFormat(InputKind::ModuleMap);
3148       IsSystem = Opts.IsSystemModule;
3149     }
3150 
3151     Opts.Inputs.emplace_back(std::move(Inputs[i]), IK, IsSystem);
3152   }
3153 
3154   Opts.DashX = DashX;
3155 
3156   return Diags.getNumErrors() == NumErrorsBefore;
3157 }
3158 
3159 std::string CompilerInvocation::GetResourcesPath(const char *Argv0,
3160                                                  void *MainAddr) {
3161   std::string ClangExecutable =
3162       llvm::sys::fs::getMainExecutable(Argv0, MainAddr);
3163   return Driver::GetResourcesPath(ClangExecutable);
3164 }
3165 
3166 static void GenerateHeaderSearchArgs(const HeaderSearchOptions &Opts,
3167                                      ArgumentConsumer Consumer) {
3168   const HeaderSearchOptions *HeaderSearchOpts = &Opts;
3169 #define HEADER_SEARCH_OPTION_WITH_MARSHALLING(...)                             \
3170   GENERATE_OPTION_WITH_MARSHALLING(Consumer, __VA_ARGS__)
3171 #include "clang/Driver/Options.inc"
3172 #undef HEADER_SEARCH_OPTION_WITH_MARSHALLING
3173 
3174   if (Opts.UseLibcxx)
3175     GenerateArg(Consumer, OPT_stdlib_EQ, "libc++");
3176 
3177   if (!Opts.ModuleCachePath.empty())
3178     GenerateArg(Consumer, OPT_fmodules_cache_path, Opts.ModuleCachePath);
3179 
3180   for (const auto &File : Opts.PrebuiltModuleFiles)
3181     GenerateArg(Consumer, OPT_fmodule_file, File.first + "=" + File.second);
3182 
3183   for (const auto &Path : Opts.PrebuiltModulePaths)
3184     GenerateArg(Consumer, OPT_fprebuilt_module_path, Path);
3185 
3186   for (const auto &Macro : Opts.ModulesIgnoreMacros)
3187     GenerateArg(Consumer, OPT_fmodules_ignore_macro, Macro.val());
3188 
3189   auto Matches = [](const HeaderSearchOptions::Entry &Entry,
3190                     llvm::ArrayRef<frontend::IncludeDirGroup> Groups,
3191                     std::optional<bool> IsFramework,
3192                     std::optional<bool> IgnoreSysRoot) {
3193     return llvm::is_contained(Groups, Entry.Group) &&
3194            (!IsFramework || (Entry.IsFramework == *IsFramework)) &&
3195            (!IgnoreSysRoot || (Entry.IgnoreSysRoot == *IgnoreSysRoot));
3196   };
3197 
3198   auto It = Opts.UserEntries.begin();
3199   auto End = Opts.UserEntries.end();
3200 
3201   // Add -I... and -F... options in order.
3202   for (; It < End && Matches(*It, {frontend::Angled}, std::nullopt, true);
3203        ++It) {
3204     OptSpecifier Opt = [It, Matches]() {
3205       if (Matches(*It, frontend::Angled, true, true))
3206         return OPT_F;
3207       if (Matches(*It, frontend::Angled, false, true))
3208         return OPT_I;
3209       llvm_unreachable("Unexpected HeaderSearchOptions::Entry.");
3210     }();
3211 
3212     GenerateArg(Consumer, Opt, It->Path);
3213   };
3214 
3215   // Note: some paths that came from "[-iprefix=xx] -iwithprefixbefore=yy" may
3216   // have already been generated as "-I[xx]yy". If that's the case, their
3217   // position on command line was such that this has no semantic impact on
3218   // include paths.
3219   for (; It < End &&
3220          Matches(*It, {frontend::After, frontend::Angled}, false, true);
3221        ++It) {
3222     OptSpecifier Opt =
3223         It->Group == frontend::After ? OPT_iwithprefix : OPT_iwithprefixbefore;
3224     GenerateArg(Consumer, Opt, It->Path);
3225   }
3226 
3227   // Note: Some paths that came from "-idirafter=xxyy" may have already been
3228   // generated as "-iwithprefix=xxyy". If that's the case, their position on
3229   // command line was such that this has no semantic impact on include paths.
3230   for (; It < End && Matches(*It, {frontend::After}, false, true); ++It)
3231     GenerateArg(Consumer, OPT_idirafter, It->Path);
3232   for (; It < End && Matches(*It, {frontend::Quoted}, false, true); ++It)
3233     GenerateArg(Consumer, OPT_iquote, It->Path);
3234   for (; It < End && Matches(*It, {frontend::System}, false, std::nullopt);
3235        ++It)
3236     GenerateArg(Consumer, It->IgnoreSysRoot ? OPT_isystem : OPT_iwithsysroot,
3237                 It->Path);
3238   for (; It < End && Matches(*It, {frontend::System}, true, true); ++It)
3239     GenerateArg(Consumer, OPT_iframework, It->Path);
3240   for (; It < End && Matches(*It, {frontend::System}, true, false); ++It)
3241     GenerateArg(Consumer, OPT_iframeworkwithsysroot, It->Path);
3242 
3243   // Add the paths for the various language specific isystem flags.
3244   for (; It < End && Matches(*It, {frontend::CSystem}, false, true); ++It)
3245     GenerateArg(Consumer, OPT_c_isystem, It->Path);
3246   for (; It < End && Matches(*It, {frontend::CXXSystem}, false, true); ++It)
3247     GenerateArg(Consumer, OPT_cxx_isystem, It->Path);
3248   for (; It < End && Matches(*It, {frontend::ObjCSystem}, false, true); ++It)
3249     GenerateArg(Consumer, OPT_objc_isystem, It->Path);
3250   for (; It < End && Matches(*It, {frontend::ObjCXXSystem}, false, true); ++It)
3251     GenerateArg(Consumer, OPT_objcxx_isystem, It->Path);
3252 
3253   // Add the internal paths from a driver that detects standard include paths.
3254   // Note: Some paths that came from "-internal-isystem" arguments may have
3255   // already been generated as "-isystem". If that's the case, their position on
3256   // command line was such that this has no semantic impact on include paths.
3257   for (; It < End &&
3258          Matches(*It, {frontend::System, frontend::ExternCSystem}, false, true);
3259        ++It) {
3260     OptSpecifier Opt = It->Group == frontend::System
3261                            ? OPT_internal_isystem
3262                            : OPT_internal_externc_isystem;
3263     GenerateArg(Consumer, Opt, It->Path);
3264   }
3265 
3266   assert(It == End && "Unhandled HeaderSearchOption::Entry.");
3267 
3268   // Add the path prefixes which are implicitly treated as being system headers.
3269   for (const auto &P : Opts.SystemHeaderPrefixes) {
3270     OptSpecifier Opt = P.IsSystemHeader ? OPT_system_header_prefix
3271                                         : OPT_no_system_header_prefix;
3272     GenerateArg(Consumer, Opt, P.Prefix);
3273   }
3274 
3275   for (const std::string &F : Opts.VFSOverlayFiles)
3276     GenerateArg(Consumer, OPT_ivfsoverlay, F);
3277 }
3278 
3279 static bool ParseHeaderSearchArgs(HeaderSearchOptions &Opts, ArgList &Args,
3280                                   DiagnosticsEngine &Diags,
3281                                   const std::string &WorkingDir) {
3282   unsigned NumErrorsBefore = Diags.getNumErrors();
3283 
3284   HeaderSearchOptions *HeaderSearchOpts = &Opts;
3285 
3286 #define HEADER_SEARCH_OPTION_WITH_MARSHALLING(...)                             \
3287   PARSE_OPTION_WITH_MARSHALLING(Args, Diags, __VA_ARGS__)
3288 #include "clang/Driver/Options.inc"
3289 #undef HEADER_SEARCH_OPTION_WITH_MARSHALLING
3290 
3291   if (const Arg *A = Args.getLastArg(OPT_stdlib_EQ))
3292     Opts.UseLibcxx = (strcmp(A->getValue(), "libc++") == 0);
3293 
3294   // Canonicalize -fmodules-cache-path before storing it.
3295   SmallString<128> P(Args.getLastArgValue(OPT_fmodules_cache_path));
3296   if (!(P.empty() || llvm::sys::path::is_absolute(P))) {
3297     if (WorkingDir.empty())
3298       llvm::sys::fs::make_absolute(P);
3299     else
3300       llvm::sys::fs::make_absolute(WorkingDir, P);
3301   }
3302   llvm::sys::path::remove_dots(P);
3303   Opts.ModuleCachePath = std::string(P);
3304 
3305   // Only the -fmodule-file=<name>=<file> form.
3306   for (const auto *A : Args.filtered(OPT_fmodule_file)) {
3307     StringRef Val = A->getValue();
3308     if (Val.contains('=')) {
3309       auto Split = Val.split('=');
3310       Opts.PrebuiltModuleFiles.insert_or_assign(
3311           std::string(Split.first), std::string(Split.second));
3312     }
3313   }
3314   for (const auto *A : Args.filtered(OPT_fprebuilt_module_path))
3315     Opts.AddPrebuiltModulePath(A->getValue());
3316 
3317   for (const auto *A : Args.filtered(OPT_fmodules_ignore_macro)) {
3318     StringRef MacroDef = A->getValue();
3319     Opts.ModulesIgnoreMacros.insert(
3320         llvm::CachedHashString(MacroDef.split('=').first));
3321   }
3322 
3323   // Add -I... and -F... options in order.
3324   bool IsSysrootSpecified =
3325       Args.hasArg(OPT__sysroot_EQ) || Args.hasArg(OPT_isysroot);
3326 
3327   // Expand a leading `=` to the sysroot if one was passed (and it's not a
3328   // framework flag).
3329   auto PrefixHeaderPath = [IsSysrootSpecified,
3330                            &Opts](const llvm::opt::Arg *A,
3331                                   bool IsFramework = false) -> std::string {
3332     assert(A->getNumValues() && "Unexpected empty search path flag!");
3333     if (IsSysrootSpecified && !IsFramework && A->getValue()[0] == '=') {
3334       SmallString<32> Buffer;
3335       llvm::sys::path::append(Buffer, Opts.Sysroot,
3336                               llvm::StringRef(A->getValue()).substr(1));
3337       return std::string(Buffer);
3338     }
3339     return A->getValue();
3340   };
3341 
3342   for (const auto *A : Args.filtered(OPT_I, OPT_F)) {
3343     bool IsFramework = A->getOption().matches(OPT_F);
3344     Opts.AddPath(PrefixHeaderPath(A, IsFramework), frontend::Angled,
3345                  IsFramework, /*IgnoreSysroot=*/true);
3346   }
3347 
3348   // Add -iprefix/-iwithprefix/-iwithprefixbefore options.
3349   StringRef Prefix = ""; // FIXME: This isn't the correct default prefix.
3350   for (const auto *A :
3351        Args.filtered(OPT_iprefix, OPT_iwithprefix, OPT_iwithprefixbefore)) {
3352     if (A->getOption().matches(OPT_iprefix))
3353       Prefix = A->getValue();
3354     else if (A->getOption().matches(OPT_iwithprefix))
3355       Opts.AddPath(Prefix.str() + A->getValue(), frontend::After, false, true);
3356     else
3357       Opts.AddPath(Prefix.str() + A->getValue(), frontend::Angled, false, true);
3358   }
3359 
3360   for (const auto *A : Args.filtered(OPT_idirafter))
3361     Opts.AddPath(PrefixHeaderPath(A), frontend::After, false, true);
3362   for (const auto *A : Args.filtered(OPT_iquote))
3363     Opts.AddPath(PrefixHeaderPath(A), frontend::Quoted, false, true);
3364 
3365   for (const auto *A : Args.filtered(OPT_isystem, OPT_iwithsysroot)) {
3366     if (A->getOption().matches(OPT_iwithsysroot)) {
3367       Opts.AddPath(A->getValue(), frontend::System, false,
3368                    /*IgnoreSysRoot=*/false);
3369       continue;
3370     }
3371     Opts.AddPath(PrefixHeaderPath(A), frontend::System, false, true);
3372   }
3373   for (const auto *A : Args.filtered(OPT_iframework))
3374     Opts.AddPath(A->getValue(), frontend::System, true, true);
3375   for (const auto *A : Args.filtered(OPT_iframeworkwithsysroot))
3376     Opts.AddPath(A->getValue(), frontend::System, /*IsFramework=*/true,
3377                  /*IgnoreSysRoot=*/false);
3378 
3379   // Add the paths for the various language specific isystem flags.
3380   for (const auto *A : Args.filtered(OPT_c_isystem))
3381     Opts.AddPath(A->getValue(), frontend::CSystem, false, true);
3382   for (const auto *A : Args.filtered(OPT_cxx_isystem))
3383     Opts.AddPath(A->getValue(), frontend::CXXSystem, false, true);
3384   for (const auto *A : Args.filtered(OPT_objc_isystem))
3385     Opts.AddPath(A->getValue(), frontend::ObjCSystem, false,true);
3386   for (const auto *A : Args.filtered(OPT_objcxx_isystem))
3387     Opts.AddPath(A->getValue(), frontend::ObjCXXSystem, false, true);
3388 
3389   // Add the internal paths from a driver that detects standard include paths.
3390   for (const auto *A :
3391        Args.filtered(OPT_internal_isystem, OPT_internal_externc_isystem)) {
3392     frontend::IncludeDirGroup Group = frontend::System;
3393     if (A->getOption().matches(OPT_internal_externc_isystem))
3394       Group = frontend::ExternCSystem;
3395     Opts.AddPath(A->getValue(), Group, false, true);
3396   }
3397 
3398   // Add the path prefixes which are implicitly treated as being system headers.
3399   for (const auto *A :
3400        Args.filtered(OPT_system_header_prefix, OPT_no_system_header_prefix))
3401     Opts.AddSystemHeaderPrefix(
3402         A->getValue(), A->getOption().matches(OPT_system_header_prefix));
3403 
3404   for (const auto *A : Args.filtered(OPT_ivfsoverlay, OPT_vfsoverlay))
3405     Opts.AddVFSOverlayFile(A->getValue());
3406 
3407   return Diags.getNumErrors() == NumErrorsBefore;
3408 }
3409 
3410 static void GenerateAPINotesArgs(const APINotesOptions &Opts,
3411                                  ArgumentConsumer Consumer) {
3412   if (!Opts.SwiftVersion.empty())
3413     GenerateArg(Consumer, OPT_fapinotes_swift_version,
3414                 Opts.SwiftVersion.getAsString());
3415 
3416   for (const auto &Path : Opts.ModuleSearchPaths)
3417     GenerateArg(Consumer, OPT_iapinotes_modules, Path);
3418 }
3419 
3420 static void ParseAPINotesArgs(APINotesOptions &Opts, ArgList &Args,
3421                               DiagnosticsEngine &diags) {
3422   if (const Arg *A = Args.getLastArg(OPT_fapinotes_swift_version)) {
3423     if (Opts.SwiftVersion.tryParse(A->getValue()))
3424       diags.Report(diag::err_drv_invalid_value)
3425           << A->getAsString(Args) << A->getValue();
3426   }
3427   for (const Arg *A : Args.filtered(OPT_iapinotes_modules))
3428     Opts.ModuleSearchPaths.push_back(A->getValue());
3429 }
3430 
3431 static void GeneratePointerAuthArgs(const LangOptions &Opts,
3432                                     ArgumentConsumer Consumer) {
3433   if (Opts.PointerAuthIntrinsics)
3434     GenerateArg(Consumer, OPT_fptrauth_intrinsics);
3435   if (Opts.PointerAuthCalls)
3436     GenerateArg(Consumer, OPT_fptrauth_calls);
3437   if (Opts.PointerAuthReturns)
3438     GenerateArg(Consumer, OPT_fptrauth_returns);
3439   if (Opts.PointerAuthIndirectGotos)
3440     GenerateArg(Consumer, OPT_fptrauth_indirect_gotos);
3441   if (Opts.PointerAuthAuthTraps)
3442     GenerateArg(Consumer, OPT_fptrauth_auth_traps);
3443   if (Opts.PointerAuthVTPtrAddressDiscrimination)
3444     GenerateArg(Consumer, OPT_fptrauth_vtable_pointer_address_discrimination);
3445   if (Opts.PointerAuthVTPtrTypeDiscrimination)
3446     GenerateArg(Consumer, OPT_fptrauth_vtable_pointer_type_discrimination);
3447   if (Opts.PointerAuthTypeInfoVTPtrDiscrimination)
3448     GenerateArg(Consumer, OPT_fptrauth_type_info_vtable_pointer_discrimination);
3449   if (Opts.PointerAuthFunctionTypeDiscrimination)
3450     GenerateArg(Consumer, OPT_fptrauth_function_pointer_type_discrimination);
3451   if (Opts.PointerAuthInitFini)
3452     GenerateArg(Consumer, OPT_fptrauth_init_fini);
3453   if (Opts.PointerAuthInitFiniAddressDiscrimination)
3454     GenerateArg(Consumer, OPT_fptrauth_init_fini_address_discrimination);
3455 }
3456 
3457 static void ParsePointerAuthArgs(LangOptions &Opts, ArgList &Args,
3458                                  DiagnosticsEngine &Diags) {
3459   Opts.PointerAuthIntrinsics = Args.hasArg(OPT_fptrauth_intrinsics);
3460   Opts.PointerAuthCalls = Args.hasArg(OPT_fptrauth_calls);
3461   Opts.PointerAuthReturns = Args.hasArg(OPT_fptrauth_returns);
3462   Opts.PointerAuthIndirectGotos = Args.hasArg(OPT_fptrauth_indirect_gotos);
3463   Opts.PointerAuthAuthTraps = Args.hasArg(OPT_fptrauth_auth_traps);
3464   Opts.PointerAuthVTPtrAddressDiscrimination =
3465       Args.hasArg(OPT_fptrauth_vtable_pointer_address_discrimination);
3466   Opts.PointerAuthVTPtrTypeDiscrimination =
3467       Args.hasArg(OPT_fptrauth_vtable_pointer_type_discrimination);
3468   Opts.PointerAuthTypeInfoVTPtrDiscrimination =
3469       Args.hasArg(OPT_fptrauth_type_info_vtable_pointer_discrimination);
3470   Opts.PointerAuthFunctionTypeDiscrimination =
3471       Args.hasArg(OPT_fptrauth_function_pointer_type_discrimination);
3472   Opts.PointerAuthInitFini = Args.hasArg(OPT_fptrauth_init_fini);
3473   Opts.PointerAuthInitFiniAddressDiscrimination =
3474       Args.hasArg(OPT_fptrauth_init_fini_address_discrimination);
3475 }
3476 
3477 /// Check if input file kind and language standard are compatible.
3478 static bool IsInputCompatibleWithStandard(InputKind IK,
3479                                           const LangStandard &S) {
3480   switch (IK.getLanguage()) {
3481   case Language::Unknown:
3482   case Language::LLVM_IR:
3483   case Language::CIR:
3484     llvm_unreachable("should not parse language flags for this input");
3485 
3486   case Language::C:
3487   case Language::ObjC:
3488     return S.getLanguage() == Language::C;
3489 
3490   case Language::OpenCL:
3491     return S.getLanguage() == Language::OpenCL ||
3492            S.getLanguage() == Language::OpenCLCXX;
3493 
3494   case Language::OpenCLCXX:
3495     return S.getLanguage() == Language::OpenCLCXX;
3496 
3497   case Language::CXX:
3498   case Language::ObjCXX:
3499     return S.getLanguage() == Language::CXX;
3500 
3501   case Language::CUDA:
3502     // FIXME: What -std= values should be permitted for CUDA compilations?
3503     return S.getLanguage() == Language::CUDA ||
3504            S.getLanguage() == Language::CXX;
3505 
3506   case Language::HIP:
3507     return S.getLanguage() == Language::CXX || S.getLanguage() == Language::HIP;
3508 
3509   case Language::Asm:
3510     // Accept (and ignore) all -std= values.
3511     // FIXME: The -std= value is not ignored; it affects the tokenization
3512     // and preprocessing rules if we're preprocessing this asm input.
3513     return true;
3514 
3515   case Language::HLSL:
3516     return S.getLanguage() == Language::HLSL;
3517   }
3518 
3519   llvm_unreachable("unexpected input language");
3520 }
3521 
3522 /// Get language name for given input kind.
3523 static StringRef GetInputKindName(InputKind IK) {
3524   switch (IK.getLanguage()) {
3525   case Language::C:
3526     return "C";
3527   case Language::ObjC:
3528     return "Objective-C";
3529   case Language::CXX:
3530     return "C++";
3531   case Language::ObjCXX:
3532     return "Objective-C++";
3533   case Language::OpenCL:
3534     return "OpenCL";
3535   case Language::OpenCLCXX:
3536     return "C++ for OpenCL";
3537   case Language::CUDA:
3538     return "CUDA";
3539   case Language::HIP:
3540     return "HIP";
3541 
3542   case Language::Asm:
3543     return "Asm";
3544   case Language::LLVM_IR:
3545     return "LLVM IR";
3546   case Language::CIR:
3547     return "Clang IR";
3548 
3549   case Language::HLSL:
3550     return "HLSL";
3551 
3552   case Language::Unknown:
3553     break;
3554   }
3555   llvm_unreachable("unknown input language");
3556 }
3557 
3558 void CompilerInvocationBase::GenerateLangArgs(const LangOptions &Opts,
3559                                               ArgumentConsumer Consumer,
3560                                               const llvm::Triple &T,
3561                                               InputKind IK) {
3562   if (IK.getFormat() == InputKind::Precompiled ||
3563       IK.getLanguage() == Language::LLVM_IR ||
3564       IK.getLanguage() == Language::CIR) {
3565     if (Opts.ObjCAutoRefCount)
3566       GenerateArg(Consumer, OPT_fobjc_arc);
3567     if (Opts.PICLevel != 0)
3568       GenerateArg(Consumer, OPT_pic_level, Twine(Opts.PICLevel));
3569     if (Opts.PIE)
3570       GenerateArg(Consumer, OPT_pic_is_pie);
3571     for (StringRef Sanitizer : serializeSanitizerKinds(Opts.Sanitize))
3572       GenerateArg(Consumer, OPT_fsanitize_EQ, Sanitizer);
3573 
3574     return;
3575   }
3576 
3577   OptSpecifier StdOpt;
3578   switch (Opts.LangStd) {
3579   case LangStandard::lang_opencl10:
3580   case LangStandard::lang_opencl11:
3581   case LangStandard::lang_opencl12:
3582   case LangStandard::lang_opencl20:
3583   case LangStandard::lang_opencl30:
3584   case LangStandard::lang_openclcpp10:
3585   case LangStandard::lang_openclcpp2021:
3586     StdOpt = OPT_cl_std_EQ;
3587     break;
3588   default:
3589     StdOpt = OPT_std_EQ;
3590     break;
3591   }
3592 
3593   auto LangStandard = LangStandard::getLangStandardForKind(Opts.LangStd);
3594   GenerateArg(Consumer, StdOpt, LangStandard.getName());
3595 
3596   if (Opts.IncludeDefaultHeader)
3597     GenerateArg(Consumer, OPT_finclude_default_header);
3598   if (Opts.DeclareOpenCLBuiltins)
3599     GenerateArg(Consumer, OPT_fdeclare_opencl_builtins);
3600 
3601   const LangOptions *LangOpts = &Opts;
3602 
3603 #define LANG_OPTION_WITH_MARSHALLING(...)                                      \
3604   GENERATE_OPTION_WITH_MARSHALLING(Consumer, __VA_ARGS__)
3605 #include "clang/Driver/Options.inc"
3606 #undef LANG_OPTION_WITH_MARSHALLING
3607 
3608   // The '-fcf-protection=' option is generated by CodeGenOpts generator.
3609 
3610   if (Opts.ObjC) {
3611     GenerateArg(Consumer, OPT_fobjc_runtime_EQ, Opts.ObjCRuntime.getAsString());
3612 
3613     if (Opts.GC == LangOptions::GCOnly)
3614       GenerateArg(Consumer, OPT_fobjc_gc_only);
3615     else if (Opts.GC == LangOptions::HybridGC)
3616       GenerateArg(Consumer, OPT_fobjc_gc);
3617     else if (Opts.ObjCAutoRefCount == 1)
3618       GenerateArg(Consumer, OPT_fobjc_arc);
3619 
3620     if (Opts.ObjCWeakRuntime)
3621       GenerateArg(Consumer, OPT_fobjc_runtime_has_weak);
3622 
3623     if (Opts.ObjCWeak)
3624       GenerateArg(Consumer, OPT_fobjc_weak);
3625 
3626     if (Opts.ObjCSubscriptingLegacyRuntime)
3627       GenerateArg(Consumer, OPT_fobjc_subscripting_legacy_runtime);
3628   }
3629 
3630   if (Opts.GNUCVersion != 0) {
3631     unsigned Major = Opts.GNUCVersion / 100 / 100;
3632     unsigned Minor = (Opts.GNUCVersion / 100) % 100;
3633     unsigned Patch = Opts.GNUCVersion % 100;
3634     GenerateArg(Consumer, OPT_fgnuc_version_EQ,
3635                 Twine(Major) + "." + Twine(Minor) + "." + Twine(Patch));
3636   }
3637 
3638   if (Opts.IgnoreXCOFFVisibility)
3639     GenerateArg(Consumer, OPT_mignore_xcoff_visibility);
3640 
3641   if (Opts.SignedOverflowBehavior == LangOptions::SOB_Trapping) {
3642     GenerateArg(Consumer, OPT_ftrapv);
3643     GenerateArg(Consumer, OPT_ftrapv_handler, Opts.OverflowHandler);
3644   } else if (Opts.SignedOverflowBehavior == LangOptions::SOB_Defined) {
3645     GenerateArg(Consumer, OPT_fwrapv);
3646   }
3647 
3648   if (Opts.MSCompatibilityVersion != 0) {
3649     unsigned Major = Opts.MSCompatibilityVersion / 10000000;
3650     unsigned Minor = (Opts.MSCompatibilityVersion / 100000) % 100;
3651     unsigned Subminor = Opts.MSCompatibilityVersion % 100000;
3652     GenerateArg(Consumer, OPT_fms_compatibility_version,
3653                 Twine(Major) + "." + Twine(Minor) + "." + Twine(Subminor));
3654   }
3655 
3656   if ((!Opts.GNUMode && !Opts.MSVCCompat && !Opts.CPlusPlus17 && !Opts.C23) ||
3657       T.isOSzOS()) {
3658     if (!Opts.Trigraphs)
3659       GenerateArg(Consumer, OPT_fno_trigraphs);
3660   } else {
3661     if (Opts.Trigraphs)
3662       GenerateArg(Consumer, OPT_ftrigraphs);
3663   }
3664 
3665   if (T.isOSzOS() && !Opts.ZOSExt)
3666     GenerateArg(Consumer, OPT_fno_zos_extensions);
3667   else if (Opts.ZOSExt)
3668     GenerateArg(Consumer, OPT_fzos_extensions);
3669 
3670   if (Opts.Blocks && !(Opts.OpenCL && Opts.OpenCLVersion == 200))
3671     GenerateArg(Consumer, OPT_fblocks);
3672 
3673   if (Opts.ConvergentFunctions)
3674     GenerateArg(Consumer, OPT_fconvergent_functions);
3675   else
3676     GenerateArg(Consumer, OPT_fno_convergent_functions);
3677 
3678   if (Opts.NoBuiltin && !Opts.Freestanding)
3679     GenerateArg(Consumer, OPT_fno_builtin);
3680 
3681   if (!Opts.NoBuiltin)
3682     for (const auto &Func : Opts.NoBuiltinFuncs)
3683       GenerateArg(Consumer, OPT_fno_builtin_, Func);
3684 
3685   if (Opts.LongDoubleSize == 128)
3686     GenerateArg(Consumer, OPT_mlong_double_128);
3687   else if (Opts.LongDoubleSize == 64)
3688     GenerateArg(Consumer, OPT_mlong_double_64);
3689   else if (Opts.LongDoubleSize == 80)
3690     GenerateArg(Consumer, OPT_mlong_double_80);
3691 
3692   // Not generating '-mrtd', it's just an alias for '-fdefault-calling-conv='.
3693 
3694   // OpenMP was requested via '-fopenmp', not implied by '-fopenmp-simd' or
3695   // '-fopenmp-targets='.
3696   if (Opts.OpenMP && !Opts.OpenMPSimd) {
3697     GenerateArg(Consumer, OPT_fopenmp);
3698 
3699     if (Opts.OpenMP != 51)
3700       GenerateArg(Consumer, OPT_fopenmp_version_EQ, Twine(Opts.OpenMP));
3701 
3702     if (!Opts.OpenMPUseTLS)
3703       GenerateArg(Consumer, OPT_fnoopenmp_use_tls);
3704 
3705     if (Opts.OpenMPIsTargetDevice)
3706       GenerateArg(Consumer, OPT_fopenmp_is_target_device);
3707 
3708     if (Opts.OpenMPIRBuilder)
3709       GenerateArg(Consumer, OPT_fopenmp_enable_irbuilder);
3710   }
3711 
3712   if (Opts.OpenMPSimd) {
3713     GenerateArg(Consumer, OPT_fopenmp_simd);
3714 
3715     if (Opts.OpenMP != 51)
3716       GenerateArg(Consumer, OPT_fopenmp_version_EQ, Twine(Opts.OpenMP));
3717   }
3718 
3719   if (Opts.OpenMPThreadSubscription)
3720     GenerateArg(Consumer, OPT_fopenmp_assume_threads_oversubscription);
3721 
3722   if (Opts.OpenMPTeamSubscription)
3723     GenerateArg(Consumer, OPT_fopenmp_assume_teams_oversubscription);
3724 
3725   if (Opts.OpenMPTargetDebug != 0)
3726     GenerateArg(Consumer, OPT_fopenmp_target_debug_EQ,
3727                 Twine(Opts.OpenMPTargetDebug));
3728 
3729   if (Opts.OpenMPCUDANumSMs != 0)
3730     GenerateArg(Consumer, OPT_fopenmp_cuda_number_of_sm_EQ,
3731                 Twine(Opts.OpenMPCUDANumSMs));
3732 
3733   if (Opts.OpenMPCUDABlocksPerSM != 0)
3734     GenerateArg(Consumer, OPT_fopenmp_cuda_blocks_per_sm_EQ,
3735                 Twine(Opts.OpenMPCUDABlocksPerSM));
3736 
3737   if (Opts.OpenMPCUDAReductionBufNum != 1024)
3738     GenerateArg(Consumer, OPT_fopenmp_cuda_teams_reduction_recs_num_EQ,
3739                 Twine(Opts.OpenMPCUDAReductionBufNum));
3740 
3741   if (!Opts.OMPTargetTriples.empty()) {
3742     std::string Targets;
3743     llvm::raw_string_ostream OS(Targets);
3744     llvm::interleave(
3745         Opts.OMPTargetTriples, OS,
3746         [&OS](const llvm::Triple &T) { OS << T.str(); }, ",");
3747     GenerateArg(Consumer, OPT_fopenmp_targets_EQ, Targets);
3748   }
3749 
3750   if (!Opts.OMPHostIRFile.empty())
3751     GenerateArg(Consumer, OPT_fopenmp_host_ir_file_path, Opts.OMPHostIRFile);
3752 
3753   if (Opts.OpenMPCUDAMode)
3754     GenerateArg(Consumer, OPT_fopenmp_cuda_mode);
3755 
3756   if (Opts.OpenACC) {
3757     GenerateArg(Consumer, OPT_fopenacc);
3758     if (!Opts.OpenACCMacroOverride.empty())
3759       GenerateArg(Consumer, OPT_openacc_macro_override,
3760                   Opts.OpenACCMacroOverride);
3761   }
3762 
3763   // The arguments used to set Optimize, OptimizeSize and NoInlineDefine are
3764   // generated from CodeGenOptions.
3765 
3766   if (Opts.DefaultFPContractMode == LangOptions::FPM_Fast)
3767     GenerateArg(Consumer, OPT_ffp_contract, "fast");
3768   else if (Opts.DefaultFPContractMode == LangOptions::FPM_On)
3769     GenerateArg(Consumer, OPT_ffp_contract, "on");
3770   else if (Opts.DefaultFPContractMode == LangOptions::FPM_Off)
3771     GenerateArg(Consumer, OPT_ffp_contract, "off");
3772   else if (Opts.DefaultFPContractMode == LangOptions::FPM_FastHonorPragmas)
3773     GenerateArg(Consumer, OPT_ffp_contract, "fast-honor-pragmas");
3774 
3775   for (StringRef Sanitizer : serializeSanitizerKinds(Opts.Sanitize))
3776     GenerateArg(Consumer, OPT_fsanitize_EQ, Sanitizer);
3777 
3778   // Conflating '-fsanitize-system-ignorelist' and '-fsanitize-ignorelist'.
3779   for (const std::string &F : Opts.NoSanitizeFiles)
3780     GenerateArg(Consumer, OPT_fsanitize_ignorelist_EQ, F);
3781 
3782   switch (Opts.getClangABICompat()) {
3783   case LangOptions::ClangABI::Ver3_8:
3784     GenerateArg(Consumer, OPT_fclang_abi_compat_EQ, "3.8");
3785     break;
3786   case LangOptions::ClangABI::Ver4:
3787     GenerateArg(Consumer, OPT_fclang_abi_compat_EQ, "4.0");
3788     break;
3789   case LangOptions::ClangABI::Ver6:
3790     GenerateArg(Consumer, OPT_fclang_abi_compat_EQ, "6.0");
3791     break;
3792   case LangOptions::ClangABI::Ver7:
3793     GenerateArg(Consumer, OPT_fclang_abi_compat_EQ, "7.0");
3794     break;
3795   case LangOptions::ClangABI::Ver9:
3796     GenerateArg(Consumer, OPT_fclang_abi_compat_EQ, "9.0");
3797     break;
3798   case LangOptions::ClangABI::Ver11:
3799     GenerateArg(Consumer, OPT_fclang_abi_compat_EQ, "11.0");
3800     break;
3801   case LangOptions::ClangABI::Ver12:
3802     GenerateArg(Consumer, OPT_fclang_abi_compat_EQ, "12.0");
3803     break;
3804   case LangOptions::ClangABI::Ver14:
3805     GenerateArg(Consumer, OPT_fclang_abi_compat_EQ, "14.0");
3806     break;
3807   case LangOptions::ClangABI::Ver15:
3808     GenerateArg(Consumer, OPT_fclang_abi_compat_EQ, "15.0");
3809     break;
3810   case LangOptions::ClangABI::Ver17:
3811     GenerateArg(Consumer, OPT_fclang_abi_compat_EQ, "17.0");
3812     break;
3813   case LangOptions::ClangABI::Ver18:
3814     GenerateArg(Consumer, OPT_fclang_abi_compat_EQ, "18.0");
3815     break;
3816   case LangOptions::ClangABI::Ver19:
3817     GenerateArg(Consumer, OPT_fclang_abi_compat_EQ, "19.0");
3818     break;
3819   case LangOptions::ClangABI::Latest:
3820     break;
3821   }
3822 
3823   if (Opts.getSignReturnAddressScope() ==
3824       LangOptions::SignReturnAddressScopeKind::All)
3825     GenerateArg(Consumer, OPT_msign_return_address_EQ, "all");
3826   else if (Opts.getSignReturnAddressScope() ==
3827            LangOptions::SignReturnAddressScopeKind::NonLeaf)
3828     GenerateArg(Consumer, OPT_msign_return_address_EQ, "non-leaf");
3829 
3830   if (Opts.getSignReturnAddressKey() ==
3831       LangOptions::SignReturnAddressKeyKind::BKey)
3832     GenerateArg(Consumer, OPT_msign_return_address_key_EQ, "b_key");
3833 
3834   if (Opts.CXXABI)
3835     GenerateArg(Consumer, OPT_fcxx_abi_EQ,
3836                 TargetCXXABI::getSpelling(*Opts.CXXABI));
3837 
3838   if (Opts.RelativeCXXABIVTables)
3839     GenerateArg(Consumer, OPT_fexperimental_relative_cxx_abi_vtables);
3840   else
3841     GenerateArg(Consumer, OPT_fno_experimental_relative_cxx_abi_vtables);
3842 
3843   if (Opts.UseTargetPathSeparator)
3844     GenerateArg(Consumer, OPT_ffile_reproducible);
3845   else
3846     GenerateArg(Consumer, OPT_fno_file_reproducible);
3847 
3848   for (const auto &MP : Opts.MacroPrefixMap)
3849     GenerateArg(Consumer, OPT_fmacro_prefix_map_EQ, MP.first + "=" + MP.second);
3850 
3851   if (!Opts.RandstructSeed.empty())
3852     GenerateArg(Consumer, OPT_frandomize_layout_seed_EQ, Opts.RandstructSeed);
3853 }
3854 
3855 bool CompilerInvocation::ParseLangArgs(LangOptions &Opts, ArgList &Args,
3856                                        InputKind IK, const llvm::Triple &T,
3857                                        std::vector<std::string> &Includes,
3858                                        DiagnosticsEngine &Diags) {
3859   unsigned NumErrorsBefore = Diags.getNumErrors();
3860 
3861   if (IK.getFormat() == InputKind::Precompiled ||
3862       IK.getLanguage() == Language::LLVM_IR ||
3863       IK.getLanguage() == Language::CIR) {
3864     // ObjCAAutoRefCount and Sanitize LangOpts are used to setup the
3865     // PassManager in BackendUtil.cpp. They need to be initialized no matter
3866     // what the input type is.
3867     if (Args.hasArg(OPT_fobjc_arc))
3868       Opts.ObjCAutoRefCount = 1;
3869     // PICLevel and PIELevel are needed during code generation and this should
3870     // be set regardless of the input type.
3871     Opts.PICLevel = getLastArgIntValue(Args, OPT_pic_level, 0, Diags);
3872     Opts.PIE = Args.hasArg(OPT_pic_is_pie);
3873     parseSanitizerKinds("-fsanitize=", Args.getAllArgValues(OPT_fsanitize_EQ),
3874                         Diags, Opts.Sanitize);
3875 
3876     return Diags.getNumErrors() == NumErrorsBefore;
3877   }
3878 
3879   // Other LangOpts are only initialized when the input is not AST or LLVM IR.
3880   // FIXME: Should we really be parsing this for an Language::Asm input?
3881 
3882   // FIXME: Cleanup per-file based stuff.
3883   LangStandard::Kind LangStd = LangStandard::lang_unspecified;
3884   if (const Arg *A = Args.getLastArg(OPT_std_EQ)) {
3885     LangStd = LangStandard::getLangKind(A->getValue());
3886     if (LangStd == LangStandard::lang_unspecified) {
3887       Diags.Report(diag::err_drv_invalid_value)
3888         << A->getAsString(Args) << A->getValue();
3889       // Report supported standards with short description.
3890       for (unsigned KindValue = 0;
3891            KindValue != LangStandard::lang_unspecified;
3892            ++KindValue) {
3893         const LangStandard &Std = LangStandard::getLangStandardForKind(
3894           static_cast<LangStandard::Kind>(KindValue));
3895         if (IsInputCompatibleWithStandard(IK, Std)) {
3896           auto Diag = Diags.Report(diag::note_drv_use_standard);
3897           Diag << Std.getName() << Std.getDescription();
3898           unsigned NumAliases = 0;
3899 #define LANGSTANDARD(id, name, lang, desc, features)
3900 #define LANGSTANDARD_ALIAS(id, alias) \
3901           if (KindValue == LangStandard::lang_##id) ++NumAliases;
3902 #define LANGSTANDARD_ALIAS_DEPR(id, alias)
3903 #include "clang/Basic/LangStandards.def"
3904           Diag << NumAliases;
3905 #define LANGSTANDARD(id, name, lang, desc, features)
3906 #define LANGSTANDARD_ALIAS(id, alias) \
3907           if (KindValue == LangStandard::lang_##id) Diag << alias;
3908 #define LANGSTANDARD_ALIAS_DEPR(id, alias)
3909 #include "clang/Basic/LangStandards.def"
3910         }
3911       }
3912     } else {
3913       // Valid standard, check to make sure language and standard are
3914       // compatible.
3915       const LangStandard &Std = LangStandard::getLangStandardForKind(LangStd);
3916       if (!IsInputCompatibleWithStandard(IK, Std)) {
3917         Diags.Report(diag::err_drv_argument_not_allowed_with)
3918           << A->getAsString(Args) << GetInputKindName(IK);
3919       }
3920     }
3921   }
3922 
3923   // -cl-std only applies for OpenCL language standards.
3924   // Override the -std option in this case.
3925   if (const Arg *A = Args.getLastArg(OPT_cl_std_EQ)) {
3926     LangStandard::Kind OpenCLLangStd
3927       = llvm::StringSwitch<LangStandard::Kind>(A->getValue())
3928         .Cases("cl", "CL", LangStandard::lang_opencl10)
3929         .Cases("cl1.0", "CL1.0", LangStandard::lang_opencl10)
3930         .Cases("cl1.1", "CL1.1", LangStandard::lang_opencl11)
3931         .Cases("cl1.2", "CL1.2", LangStandard::lang_opencl12)
3932         .Cases("cl2.0", "CL2.0", LangStandard::lang_opencl20)
3933         .Cases("cl3.0", "CL3.0", LangStandard::lang_opencl30)
3934         .Cases("clc++", "CLC++", LangStandard::lang_openclcpp10)
3935         .Cases("clc++1.0", "CLC++1.0", LangStandard::lang_openclcpp10)
3936         .Cases("clc++2021", "CLC++2021", LangStandard::lang_openclcpp2021)
3937         .Default(LangStandard::lang_unspecified);
3938 
3939     if (OpenCLLangStd == LangStandard::lang_unspecified) {
3940       Diags.Report(diag::err_drv_invalid_value)
3941         << A->getAsString(Args) << A->getValue();
3942     }
3943     else
3944       LangStd = OpenCLLangStd;
3945   }
3946 
3947   // These need to be parsed now. They are used to set OpenCL defaults.
3948   Opts.IncludeDefaultHeader = Args.hasArg(OPT_finclude_default_header);
3949   Opts.DeclareOpenCLBuiltins = Args.hasArg(OPT_fdeclare_opencl_builtins);
3950 
3951   LangOptions::setLangDefaults(Opts, IK.getLanguage(), T, Includes, LangStd);
3952 
3953   // The key paths of codegen options defined in Options.td start with
3954   // "LangOpts->". Let's provide the expected variable name and type.
3955   LangOptions *LangOpts = &Opts;
3956 
3957 #define LANG_OPTION_WITH_MARSHALLING(...)                                      \
3958   PARSE_OPTION_WITH_MARSHALLING(Args, Diags, __VA_ARGS__)
3959 #include "clang/Driver/Options.inc"
3960 #undef LANG_OPTION_WITH_MARSHALLING
3961 
3962   if (const Arg *A = Args.getLastArg(OPT_fcf_protection_EQ)) {
3963     StringRef Name = A->getValue();
3964     if (Name == "full" || Name == "branch") {
3965       Opts.CFProtectionBranch = 1;
3966     }
3967   }
3968 
3969   if (Opts.CFProtectionBranch) {
3970     if (const Arg *A = Args.getLastArg(OPT_mcf_branch_label_scheme_EQ)) {
3971       const auto Scheme =
3972           llvm::StringSwitch<CFBranchLabelSchemeKind>(A->getValue())
3973 #define CF_BRANCH_LABEL_SCHEME(Kind, FlagVal)                                  \
3974   .Case(#FlagVal, CFBranchLabelSchemeKind::Kind)
3975 #include "clang/Basic/CFProtectionOptions.def"
3976               .Default(CFBranchLabelSchemeKind::Default);
3977       Opts.setCFBranchLabelScheme(Scheme);
3978     }
3979   }
3980 
3981   if ((Args.hasArg(OPT_fsycl_is_device) || Args.hasArg(OPT_fsycl_is_host)) &&
3982       !Args.hasArg(OPT_sycl_std_EQ)) {
3983     // If the user supplied -fsycl-is-device or -fsycl-is-host, but failed to
3984     // provide -sycl-std=, we want to default it to whatever the default SYCL
3985     // version is. I could not find a way to express this with the options
3986     // tablegen because we still want this value to be SYCL_None when the user
3987     // is not in device or host mode.
3988     Opts.setSYCLVersion(LangOptions::SYCL_Default);
3989   }
3990 
3991   if (Opts.ObjC) {
3992     if (Arg *arg = Args.getLastArg(OPT_fobjc_runtime_EQ)) {
3993       StringRef value = arg->getValue();
3994       if (Opts.ObjCRuntime.tryParse(value))
3995         Diags.Report(diag::err_drv_unknown_objc_runtime) << value;
3996     }
3997 
3998     if (Args.hasArg(OPT_fobjc_gc_only))
3999       Opts.setGC(LangOptions::GCOnly);
4000     else if (Args.hasArg(OPT_fobjc_gc))
4001       Opts.setGC(LangOptions::HybridGC);
4002     else if (Args.hasArg(OPT_fobjc_arc)) {
4003       Opts.ObjCAutoRefCount = 1;
4004       if (!Opts.ObjCRuntime.allowsARC())
4005         Diags.Report(diag::err_arc_unsupported_on_runtime);
4006     }
4007 
4008     // ObjCWeakRuntime tracks whether the runtime supports __weak, not
4009     // whether the feature is actually enabled.  This is predominantly
4010     // determined by -fobjc-runtime, but we allow it to be overridden
4011     // from the command line for testing purposes.
4012     if (Args.hasArg(OPT_fobjc_runtime_has_weak))
4013       Opts.ObjCWeakRuntime = 1;
4014     else
4015       Opts.ObjCWeakRuntime = Opts.ObjCRuntime.allowsWeak();
4016 
4017     // ObjCWeak determines whether __weak is actually enabled.
4018     // Note that we allow -fno-objc-weak to disable this even in ARC mode.
4019     if (auto weakArg = Args.getLastArg(OPT_fobjc_weak, OPT_fno_objc_weak)) {
4020       if (!weakArg->getOption().matches(OPT_fobjc_weak)) {
4021         assert(!Opts.ObjCWeak);
4022       } else if (Opts.getGC() != LangOptions::NonGC) {
4023         Diags.Report(diag::err_objc_weak_with_gc);
4024       } else if (!Opts.ObjCWeakRuntime) {
4025         Diags.Report(diag::err_objc_weak_unsupported);
4026       } else {
4027         Opts.ObjCWeak = 1;
4028       }
4029     } else if (Opts.ObjCAutoRefCount) {
4030       Opts.ObjCWeak = Opts.ObjCWeakRuntime;
4031     }
4032 
4033     if (Args.hasArg(OPT_fobjc_subscripting_legacy_runtime))
4034       Opts.ObjCSubscriptingLegacyRuntime =
4035         (Opts.ObjCRuntime.getKind() == ObjCRuntime::FragileMacOSX);
4036   }
4037 
4038   if (Arg *A = Args.getLastArg(options::OPT_fgnuc_version_EQ)) {
4039     // Check that the version has 1 to 3 components and the minor and patch
4040     // versions fit in two decimal digits.
4041     VersionTuple GNUCVer;
4042     bool Invalid = GNUCVer.tryParse(A->getValue());
4043     unsigned Major = GNUCVer.getMajor();
4044     unsigned Minor = GNUCVer.getMinor().value_or(0);
4045     unsigned Patch = GNUCVer.getSubminor().value_or(0);
4046     if (Invalid || GNUCVer.getBuild() || Minor >= 100 || Patch >= 100) {
4047       Diags.Report(diag::err_drv_invalid_value)
4048           << A->getAsString(Args) << A->getValue();
4049     }
4050     Opts.GNUCVersion = Major * 100 * 100 + Minor * 100 + Patch;
4051   }
4052 
4053   if (T.isOSAIX() && (Args.hasArg(OPT_mignore_xcoff_visibility)))
4054     Opts.IgnoreXCOFFVisibility = 1;
4055 
4056   if (Args.hasArg(OPT_ftrapv)) {
4057     Opts.setSignedOverflowBehavior(LangOptions::SOB_Trapping);
4058     // Set the handler, if one is specified.
4059     Opts.OverflowHandler =
4060         std::string(Args.getLastArgValue(OPT_ftrapv_handler));
4061   }
4062   else if (Args.hasArg(OPT_fwrapv))
4063     Opts.setSignedOverflowBehavior(LangOptions::SOB_Defined);
4064 
4065   Opts.MSCompatibilityVersion = 0;
4066   if (const Arg *A = Args.getLastArg(OPT_fms_compatibility_version)) {
4067     VersionTuple VT;
4068     if (VT.tryParse(A->getValue()))
4069       Diags.Report(diag::err_drv_invalid_value) << A->getAsString(Args)
4070                                                 << A->getValue();
4071     Opts.MSCompatibilityVersion = VT.getMajor() * 10000000 +
4072                                   VT.getMinor().value_or(0) * 100000 +
4073                                   VT.getSubminor().value_or(0);
4074   }
4075 
4076   // Mimicking gcc's behavior, trigraphs are only enabled if -trigraphs
4077   // is specified, or -std is set to a conforming mode.
4078   // Trigraphs are disabled by default in C++17 and C23 onwards.
4079   // For z/OS, trigraphs are enabled by default (without regard to the above).
4080   Opts.Trigraphs =
4081       (!Opts.GNUMode && !Opts.MSVCCompat && !Opts.CPlusPlus17 && !Opts.C23) ||
4082       T.isOSzOS();
4083   Opts.Trigraphs =
4084       Args.hasFlag(OPT_ftrigraphs, OPT_fno_trigraphs, Opts.Trigraphs);
4085 
4086   Opts.ZOSExt =
4087       Args.hasFlag(OPT_fzos_extensions, OPT_fno_zos_extensions, T.isOSzOS());
4088 
4089   Opts.Blocks = Args.hasArg(OPT_fblocks) || (Opts.OpenCL
4090     && Opts.OpenCLVersion == 200);
4091 
4092   bool HasConvergentOperations = Opts.OpenMPIsTargetDevice || Opts.OpenCL ||
4093                                  Opts.CUDAIsDevice || Opts.SYCLIsDevice ||
4094                                  Opts.HLSL || T.isAMDGPU() || T.isNVPTX();
4095   Opts.ConvergentFunctions =
4096       Args.hasFlag(OPT_fconvergent_functions, OPT_fno_convergent_functions,
4097                    HasConvergentOperations);
4098 
4099   Opts.NoBuiltin = Args.hasArg(OPT_fno_builtin) || Opts.Freestanding;
4100   if (!Opts.NoBuiltin)
4101     getAllNoBuiltinFuncValues(Args, Opts.NoBuiltinFuncs);
4102   if (Arg *A = Args.getLastArg(options::OPT_LongDouble_Group)) {
4103     if (A->getOption().matches(options::OPT_mlong_double_64))
4104       Opts.LongDoubleSize = 64;
4105     else if (A->getOption().matches(options::OPT_mlong_double_80))
4106       Opts.LongDoubleSize = 80;
4107     else if (A->getOption().matches(options::OPT_mlong_double_128))
4108       Opts.LongDoubleSize = 128;
4109     else
4110       Opts.LongDoubleSize = 0;
4111   }
4112   if (Opts.FastRelaxedMath || Opts.CLUnsafeMath)
4113     Opts.setDefaultFPContractMode(LangOptions::FPM_Fast);
4114 
4115   llvm::sort(Opts.ModuleFeatures);
4116 
4117   // -mrtd option
4118   if (Arg *A = Args.getLastArg(OPT_mrtd)) {
4119     if (Opts.getDefaultCallingConv() != LangOptions::DCC_None)
4120       Diags.Report(diag::err_drv_argument_not_allowed_with)
4121           << A->getSpelling() << "-fdefault-calling-conv";
4122     else {
4123       switch (T.getArch()) {
4124       case llvm::Triple::x86:
4125         Opts.setDefaultCallingConv(LangOptions::DCC_StdCall);
4126         break;
4127       case llvm::Triple::m68k:
4128         Opts.setDefaultCallingConv(LangOptions::DCC_RtdCall);
4129         break;
4130       default:
4131         Diags.Report(diag::err_drv_argument_not_allowed_with)
4132             << A->getSpelling() << T.getTriple();
4133       }
4134     }
4135   }
4136 
4137   // Check if -fopenmp is specified and set default version to 5.0.
4138   Opts.OpenMP = Args.hasArg(OPT_fopenmp) ? 51 : 0;
4139   // Check if -fopenmp-simd is specified.
4140   bool IsSimdSpecified =
4141       Args.hasFlag(options::OPT_fopenmp_simd, options::OPT_fno_openmp_simd,
4142                    /*Default=*/false);
4143   Opts.OpenMPSimd = !Opts.OpenMP && IsSimdSpecified;
4144   Opts.OpenMPUseTLS =
4145       Opts.OpenMP && !Args.hasArg(options::OPT_fnoopenmp_use_tls);
4146   Opts.OpenMPIsTargetDevice =
4147       Opts.OpenMP && Args.hasArg(options::OPT_fopenmp_is_target_device);
4148   Opts.OpenMPIRBuilder =
4149       Opts.OpenMP && Args.hasArg(options::OPT_fopenmp_enable_irbuilder);
4150   bool IsTargetSpecified =
4151       Opts.OpenMPIsTargetDevice || Args.hasArg(options::OPT_fopenmp_targets_EQ);
4152 
4153   if (Opts.OpenMP || Opts.OpenMPSimd) {
4154     if (int Version = getLastArgIntValue(
4155             Args, OPT_fopenmp_version_EQ,
4156             (IsSimdSpecified || IsTargetSpecified) ? 51 : Opts.OpenMP, Diags))
4157       Opts.OpenMP = Version;
4158     // Provide diagnostic when a given target is not expected to be an OpenMP
4159     // device or host.
4160     if (!Opts.OpenMPIsTargetDevice) {
4161       switch (T.getArch()) {
4162       default:
4163         break;
4164       // Add unsupported host targets here:
4165       case llvm::Triple::nvptx:
4166       case llvm::Triple::nvptx64:
4167         Diags.Report(diag::err_drv_omp_host_target_not_supported) << T.str();
4168         break;
4169       }
4170     }
4171   }
4172 
4173   // Set the flag to prevent the implementation from emitting device exception
4174   // handling code for those requiring so.
4175   if ((Opts.OpenMPIsTargetDevice && (T.isNVPTX() || T.isAMDGCN())) ||
4176       Opts.OpenCLCPlusPlus) {
4177 
4178     Opts.Exceptions = 0;
4179     Opts.CXXExceptions = 0;
4180   }
4181   if (Opts.OpenMPIsTargetDevice && T.isNVPTX()) {
4182     Opts.OpenMPCUDANumSMs =
4183         getLastArgIntValue(Args, options::OPT_fopenmp_cuda_number_of_sm_EQ,
4184                            Opts.OpenMPCUDANumSMs, Diags);
4185     Opts.OpenMPCUDABlocksPerSM =
4186         getLastArgIntValue(Args, options::OPT_fopenmp_cuda_blocks_per_sm_EQ,
4187                            Opts.OpenMPCUDABlocksPerSM, Diags);
4188     Opts.OpenMPCUDAReductionBufNum = getLastArgIntValue(
4189         Args, options::OPT_fopenmp_cuda_teams_reduction_recs_num_EQ,
4190         Opts.OpenMPCUDAReductionBufNum, Diags);
4191   }
4192 
4193   // Set the value of the debugging flag used in the new offloading device RTL.
4194   // Set either by a specific value or to a default if not specified.
4195   if (Opts.OpenMPIsTargetDevice && (Args.hasArg(OPT_fopenmp_target_debug) ||
4196                                     Args.hasArg(OPT_fopenmp_target_debug_EQ))) {
4197     Opts.OpenMPTargetDebug = getLastArgIntValue(
4198         Args, OPT_fopenmp_target_debug_EQ, Opts.OpenMPTargetDebug, Diags);
4199     if (!Opts.OpenMPTargetDebug && Args.hasArg(OPT_fopenmp_target_debug))
4200       Opts.OpenMPTargetDebug = 1;
4201   }
4202 
4203   if (Opts.OpenMPIsTargetDevice) {
4204     if (Args.hasArg(OPT_fopenmp_assume_teams_oversubscription))
4205       Opts.OpenMPTeamSubscription = true;
4206     if (Args.hasArg(OPT_fopenmp_assume_threads_oversubscription))
4207       Opts.OpenMPThreadSubscription = true;
4208   }
4209 
4210   // Get the OpenMP target triples if any.
4211   if (Arg *A = Args.getLastArg(options::OPT_fopenmp_targets_EQ)) {
4212     enum ArchPtrSize { Arch16Bit, Arch32Bit, Arch64Bit };
4213     auto getArchPtrSize = [](const llvm::Triple &T) {
4214       if (T.isArch16Bit())
4215         return Arch16Bit;
4216       if (T.isArch32Bit())
4217         return Arch32Bit;
4218       assert(T.isArch64Bit() && "Expected 64-bit architecture");
4219       return Arch64Bit;
4220     };
4221 
4222     for (unsigned i = 0; i < A->getNumValues(); ++i) {
4223       llvm::Triple TT(A->getValue(i));
4224 
4225       if (TT.getArch() == llvm::Triple::UnknownArch ||
4226           !(TT.getArch() == llvm::Triple::aarch64 || TT.isPPC() ||
4227             TT.getArch() == llvm::Triple::systemz ||
4228             TT.getArch() == llvm::Triple::nvptx ||
4229             TT.getArch() == llvm::Triple::nvptx64 ||
4230             TT.getArch() == llvm::Triple::amdgcn ||
4231             TT.getArch() == llvm::Triple::x86 ||
4232             TT.getArch() == llvm::Triple::x86_64))
4233         Diags.Report(diag::err_drv_invalid_omp_target) << A->getValue(i);
4234       else if (getArchPtrSize(T) != getArchPtrSize(TT))
4235         Diags.Report(diag::err_drv_incompatible_omp_arch)
4236             << A->getValue(i) << T.str();
4237       else
4238         Opts.OMPTargetTriples.push_back(TT);
4239     }
4240   }
4241 
4242   // Get OpenMP host file path if any and report if a non existent file is
4243   // found
4244   if (Arg *A = Args.getLastArg(options::OPT_fopenmp_host_ir_file_path)) {
4245     Opts.OMPHostIRFile = A->getValue();
4246     if (!llvm::sys::fs::exists(Opts.OMPHostIRFile))
4247       Diags.Report(diag::err_drv_omp_host_ir_file_not_found)
4248           << Opts.OMPHostIRFile;
4249   }
4250 
4251   // Set CUDA mode for OpenMP target NVPTX/AMDGCN if specified in options
4252   Opts.OpenMPCUDAMode = Opts.OpenMPIsTargetDevice &&
4253                         (T.isNVPTX() || T.isAMDGCN()) &&
4254                         Args.hasArg(options::OPT_fopenmp_cuda_mode);
4255 
4256   // OpenACC Configuration.
4257   if (Args.hasArg(options::OPT_fopenacc)) {
4258     Opts.OpenACC = true;
4259 
4260     if (Arg *A = Args.getLastArg(options::OPT_openacc_macro_override))
4261       Opts.OpenACCMacroOverride = A->getValue();
4262   }
4263 
4264   // FIXME: Eliminate this dependency.
4265   unsigned Opt = getOptimizationLevel(Args, IK, Diags),
4266        OptSize = getOptimizationLevelSize(Args);
4267   Opts.Optimize = Opt != 0;
4268   Opts.OptimizeSize = OptSize != 0;
4269 
4270   // This is the __NO_INLINE__ define, which just depends on things like the
4271   // optimization level and -fno-inline, not actually whether the backend has
4272   // inlining enabled.
4273   Opts.NoInlineDefine = !Opts.Optimize;
4274   if (Arg *InlineArg = Args.getLastArg(
4275           options::OPT_finline_functions, options::OPT_finline_hint_functions,
4276           options::OPT_fno_inline_functions, options::OPT_fno_inline))
4277     if (InlineArg->getOption().matches(options::OPT_fno_inline))
4278       Opts.NoInlineDefine = true;
4279 
4280   if (Arg *A = Args.getLastArg(OPT_ffp_contract)) {
4281     StringRef Val = A->getValue();
4282     if (Val == "fast")
4283       Opts.setDefaultFPContractMode(LangOptions::FPM_Fast);
4284     else if (Val == "on")
4285       Opts.setDefaultFPContractMode(LangOptions::FPM_On);
4286     else if (Val == "off")
4287       Opts.setDefaultFPContractMode(LangOptions::FPM_Off);
4288     else if (Val == "fast-honor-pragmas")
4289       Opts.setDefaultFPContractMode(LangOptions::FPM_FastHonorPragmas);
4290     else
4291       Diags.Report(diag::err_drv_invalid_value) << A->getAsString(Args) << Val;
4292   }
4293 
4294   if (auto *A =
4295           Args.getLastArg(OPT_fsanitize_undefined_ignore_overflow_pattern_EQ)) {
4296     for (int i = 0, n = A->getNumValues(); i != n; ++i) {
4297       Opts.OverflowPatternExclusionMask |=
4298           llvm::StringSwitch<unsigned>(A->getValue(i))
4299               .Case("none", LangOptionsBase::None)
4300               .Case("all", LangOptionsBase::All)
4301               .Case("add-unsigned-overflow-test",
4302                     LangOptionsBase::AddUnsignedOverflowTest)
4303               .Case("add-signed-overflow-test",
4304                     LangOptionsBase::AddSignedOverflowTest)
4305               .Case("negated-unsigned-const", LangOptionsBase::NegUnsignedConst)
4306               .Case("unsigned-post-decr-while",
4307                     LangOptionsBase::PostDecrInWhile)
4308               .Default(0);
4309     }
4310   }
4311 
4312   // Parse -fsanitize= arguments.
4313   parseSanitizerKinds("-fsanitize=", Args.getAllArgValues(OPT_fsanitize_EQ),
4314                       Diags, Opts.Sanitize);
4315   Opts.NoSanitizeFiles = Args.getAllArgValues(OPT_fsanitize_ignorelist_EQ);
4316   std::vector<std::string> systemIgnorelists =
4317       Args.getAllArgValues(OPT_fsanitize_system_ignorelist_EQ);
4318   Opts.NoSanitizeFiles.insert(Opts.NoSanitizeFiles.end(),
4319                               systemIgnorelists.begin(),
4320                               systemIgnorelists.end());
4321 
4322   if (Arg *A = Args.getLastArg(OPT_fclang_abi_compat_EQ)) {
4323     Opts.setClangABICompat(LangOptions::ClangABI::Latest);
4324 
4325     StringRef Ver = A->getValue();
4326     std::pair<StringRef, StringRef> VerParts = Ver.split('.');
4327     unsigned Major, Minor = 0;
4328 
4329     // Check the version number is valid: either 3.x (0 <= x <= 9) or
4330     // y or y.0 (4 <= y <= current version).
4331     if (!VerParts.first.starts_with("0") &&
4332         !VerParts.first.getAsInteger(10, Major) && 3 <= Major &&
4333         Major <= CLANG_VERSION_MAJOR &&
4334         (Major == 3
4335              ? VerParts.second.size() == 1 &&
4336                    !VerParts.second.getAsInteger(10, Minor)
4337              : VerParts.first.size() == Ver.size() || VerParts.second == "0")) {
4338       // Got a valid version number.
4339       if (Major == 3 && Minor <= 8)
4340         Opts.setClangABICompat(LangOptions::ClangABI::Ver3_8);
4341       else if (Major <= 4)
4342         Opts.setClangABICompat(LangOptions::ClangABI::Ver4);
4343       else if (Major <= 6)
4344         Opts.setClangABICompat(LangOptions::ClangABI::Ver6);
4345       else if (Major <= 7)
4346         Opts.setClangABICompat(LangOptions::ClangABI::Ver7);
4347       else if (Major <= 9)
4348         Opts.setClangABICompat(LangOptions::ClangABI::Ver9);
4349       else if (Major <= 11)
4350         Opts.setClangABICompat(LangOptions::ClangABI::Ver11);
4351       else if (Major <= 12)
4352         Opts.setClangABICompat(LangOptions::ClangABI::Ver12);
4353       else if (Major <= 14)
4354         Opts.setClangABICompat(LangOptions::ClangABI::Ver14);
4355       else if (Major <= 15)
4356         Opts.setClangABICompat(LangOptions::ClangABI::Ver15);
4357       else if (Major <= 17)
4358         Opts.setClangABICompat(LangOptions::ClangABI::Ver17);
4359       else if (Major <= 18)
4360         Opts.setClangABICompat(LangOptions::ClangABI::Ver18);
4361       else if (Major <= 19)
4362         Opts.setClangABICompat(LangOptions::ClangABI::Ver19);
4363     } else if (Ver != "latest") {
4364       Diags.Report(diag::err_drv_invalid_value)
4365           << A->getAsString(Args) << A->getValue();
4366     }
4367   }
4368 
4369   if (Arg *A = Args.getLastArg(OPT_msign_return_address_EQ)) {
4370     StringRef SignScope = A->getValue();
4371 
4372     if (SignScope.equals_insensitive("none"))
4373       Opts.setSignReturnAddressScope(
4374           LangOptions::SignReturnAddressScopeKind::None);
4375     else if (SignScope.equals_insensitive("all"))
4376       Opts.setSignReturnAddressScope(
4377           LangOptions::SignReturnAddressScopeKind::All);
4378     else if (SignScope.equals_insensitive("non-leaf"))
4379       Opts.setSignReturnAddressScope(
4380           LangOptions::SignReturnAddressScopeKind::NonLeaf);
4381     else
4382       Diags.Report(diag::err_drv_invalid_value)
4383           << A->getAsString(Args) << SignScope;
4384 
4385     if (Arg *A = Args.getLastArg(OPT_msign_return_address_key_EQ)) {
4386       StringRef SignKey = A->getValue();
4387       if (!SignScope.empty() && !SignKey.empty()) {
4388         if (SignKey == "a_key")
4389           Opts.setSignReturnAddressKey(
4390               LangOptions::SignReturnAddressKeyKind::AKey);
4391         else if (SignKey == "b_key")
4392           Opts.setSignReturnAddressKey(
4393               LangOptions::SignReturnAddressKeyKind::BKey);
4394         else
4395           Diags.Report(diag::err_drv_invalid_value)
4396               << A->getAsString(Args) << SignKey;
4397       }
4398     }
4399   }
4400 
4401   // The value can be empty, which indicates the system default should be used.
4402   StringRef CXXABI = Args.getLastArgValue(OPT_fcxx_abi_EQ);
4403   if (!CXXABI.empty()) {
4404     if (!TargetCXXABI::isABI(CXXABI)) {
4405       Diags.Report(diag::err_invalid_cxx_abi) << CXXABI;
4406     } else {
4407       auto Kind = TargetCXXABI::getKind(CXXABI);
4408       if (!TargetCXXABI::isSupportedCXXABI(T, Kind))
4409         Diags.Report(diag::err_unsupported_cxx_abi) << CXXABI << T.str();
4410       else
4411         Opts.CXXABI = Kind;
4412     }
4413   }
4414 
4415   Opts.RelativeCXXABIVTables =
4416       Args.hasFlag(options::OPT_fexperimental_relative_cxx_abi_vtables,
4417                    options::OPT_fno_experimental_relative_cxx_abi_vtables,
4418                    TargetCXXABI::usesRelativeVTables(T));
4419 
4420   // RTTI is on by default.
4421   bool HasRTTI = !Args.hasArg(options::OPT_fno_rtti);
4422   Opts.OmitVTableRTTI =
4423       Args.hasFlag(options::OPT_fexperimental_omit_vtable_rtti,
4424                    options::OPT_fno_experimental_omit_vtable_rtti, false);
4425   if (Opts.OmitVTableRTTI && HasRTTI)
4426     Diags.Report(diag::err_drv_using_omit_rtti_component_without_no_rtti);
4427 
4428   for (const auto &A : Args.getAllArgValues(OPT_fmacro_prefix_map_EQ)) {
4429     auto Split = StringRef(A).split('=');
4430     Opts.MacroPrefixMap.insert(
4431         {std::string(Split.first), std::string(Split.second)});
4432   }
4433 
4434   Opts.UseTargetPathSeparator =
4435       !Args.getLastArg(OPT_fno_file_reproducible) &&
4436       (Args.getLastArg(OPT_ffile_compilation_dir_EQ) ||
4437        Args.getLastArg(OPT_fmacro_prefix_map_EQ) ||
4438        Args.getLastArg(OPT_ffile_reproducible));
4439 
4440   // Error if -mvscale-min is unbounded.
4441   if (Arg *A = Args.getLastArg(options::OPT_mvscale_min_EQ)) {
4442     unsigned VScaleMin;
4443     if (StringRef(A->getValue()).getAsInteger(10, VScaleMin) || VScaleMin == 0)
4444       Diags.Report(diag::err_cc1_unbounded_vscale_min);
4445   }
4446 
4447   if (const Arg *A = Args.getLastArg(OPT_frandomize_layout_seed_file_EQ)) {
4448     std::ifstream SeedFile(A->getValue(0));
4449 
4450     if (!SeedFile.is_open())
4451       Diags.Report(diag::err_drv_cannot_open_randomize_layout_seed_file)
4452           << A->getValue(0);
4453 
4454     std::getline(SeedFile, Opts.RandstructSeed);
4455   }
4456 
4457   if (const Arg *A = Args.getLastArg(OPT_frandomize_layout_seed_EQ))
4458     Opts.RandstructSeed = A->getValue(0);
4459 
4460   // Validate options for HLSL
4461   if (Opts.HLSL) {
4462     // TODO: Revisit restricting SPIR-V to logical once we've figured out how to
4463     // handle PhysicalStorageBuffer64 memory model
4464     if (T.isDXIL() || T.isSPIRVLogical()) {
4465       enum { ShaderModel, VulkanEnv, ShaderStage };
4466       enum { OS, Environment };
4467 
4468       int ExpectedOS = T.isSPIRVLogical() ? VulkanEnv : ShaderModel;
4469 
4470       if (T.getOSName().empty()) {
4471         Diags.Report(diag::err_drv_hlsl_bad_shader_required_in_target)
4472             << ExpectedOS << OS << T.str();
4473       } else if (T.getEnvironmentName().empty()) {
4474         Diags.Report(diag::err_drv_hlsl_bad_shader_required_in_target)
4475             << ShaderStage << Environment << T.str();
4476       } else if (!T.isShaderStageEnvironment()) {
4477         Diags.Report(diag::err_drv_hlsl_bad_shader_unsupported)
4478             << ShaderStage << T.getEnvironmentName() << T.str();
4479       }
4480 
4481       if (T.isDXIL()) {
4482         if (!T.isShaderModelOS() || T.getOSVersion() == VersionTuple(0)) {
4483           Diags.Report(diag::err_drv_hlsl_bad_shader_unsupported)
4484               << ShaderModel << T.getOSName() << T.str();
4485         }
4486         // Validate that if fnative-half-type is given, that
4487         // the language standard is at least hlsl2018, and that
4488         // the target shader model is at least 6.2.
4489         if (Args.getLastArg(OPT_fnative_half_type)) {
4490           const LangStandard &Std =
4491               LangStandard::getLangStandardForKind(Opts.LangStd);
4492           if (!(Opts.LangStd >= LangStandard::lang_hlsl2018 &&
4493                 T.getOSVersion() >= VersionTuple(6, 2)))
4494             Diags.Report(diag::err_drv_hlsl_16bit_types_unsupported)
4495                 << "-enable-16bit-types" << true << Std.getName()
4496                 << T.getOSVersion().getAsString();
4497         }
4498       } else if (T.isSPIRVLogical()) {
4499         if (!T.isVulkanOS() || T.getVulkanVersion() == VersionTuple(0)) {
4500           Diags.Report(diag::err_drv_hlsl_bad_shader_unsupported)
4501               << VulkanEnv << T.getOSName() << T.str();
4502         }
4503         if (Args.getLastArg(OPT_fnative_half_type)) {
4504           const LangStandard &Std =
4505               LangStandard::getLangStandardForKind(Opts.LangStd);
4506           if (!(Opts.LangStd >= LangStandard::lang_hlsl2018))
4507             Diags.Report(diag::err_drv_hlsl_16bit_types_unsupported)
4508                 << "-fnative-half-type" << false << Std.getName();
4509         }
4510       } else {
4511         llvm_unreachable("expected DXIL or SPIR-V target");
4512       }
4513     } else
4514       Diags.Report(diag::err_drv_hlsl_unsupported_target) << T.str();
4515 
4516     if (Opts.LangStd < LangStandard::lang_hlsl202x) {
4517       const LangStandard &Requested =
4518           LangStandard::getLangStandardForKind(Opts.LangStd);
4519       const LangStandard &Recommended =
4520           LangStandard::getLangStandardForKind(LangStandard::lang_hlsl202x);
4521       Diags.Report(diag::warn_hlsl_langstd_minimal)
4522           << Requested.getName() << Recommended.getName();
4523     }
4524   }
4525 
4526   return Diags.getNumErrors() == NumErrorsBefore;
4527 }
4528 
4529 static bool isStrictlyPreprocessorAction(frontend::ActionKind Action) {
4530   switch (Action) {
4531   case frontend::ASTDeclList:
4532   case frontend::ASTDump:
4533   case frontend::ASTPrint:
4534   case frontend::ASTView:
4535   case frontend::EmitAssembly:
4536   case frontend::EmitBC:
4537   case frontend::EmitCIR:
4538   case frontend::EmitHTML:
4539   case frontend::EmitLLVM:
4540   case frontend::EmitLLVMOnly:
4541   case frontend::EmitCodeGenOnly:
4542   case frontend::EmitObj:
4543   case frontend::ExtractAPI:
4544   case frontend::FixIt:
4545   case frontend::GenerateModule:
4546   case frontend::GenerateModuleInterface:
4547   case frontend::GenerateReducedModuleInterface:
4548   case frontend::GenerateHeaderUnit:
4549   case frontend::GeneratePCH:
4550   case frontend::GenerateInterfaceStubs:
4551   case frontend::ParseSyntaxOnly:
4552   case frontend::ModuleFileInfo:
4553   case frontend::VerifyPCH:
4554   case frontend::PluginAction:
4555   case frontend::RewriteObjC:
4556   case frontend::RewriteTest:
4557   case frontend::RunAnalysis:
4558   case frontend::TemplightDump:
4559   case frontend::MigrateSource:
4560     return false;
4561 
4562   case frontend::DumpCompilerOptions:
4563   case frontend::DumpRawTokens:
4564   case frontend::DumpTokens:
4565   case frontend::InitOnly:
4566   case frontend::PrintPreamble:
4567   case frontend::PrintPreprocessedInput:
4568   case frontend::RewriteMacros:
4569   case frontend::RunPreprocessorOnly:
4570   case frontend::PrintDependencyDirectivesSourceMinimizerOutput:
4571     return true;
4572   }
4573   llvm_unreachable("invalid frontend action");
4574 }
4575 
4576 static void GeneratePreprocessorArgs(const PreprocessorOptions &Opts,
4577                                      ArgumentConsumer Consumer,
4578                                      const LangOptions &LangOpts,
4579                                      const FrontendOptions &FrontendOpts,
4580                                      const CodeGenOptions &CodeGenOpts) {
4581   const PreprocessorOptions *PreprocessorOpts = &Opts;
4582 
4583 #define PREPROCESSOR_OPTION_WITH_MARSHALLING(...)                              \
4584   GENERATE_OPTION_WITH_MARSHALLING(Consumer, __VA_ARGS__)
4585 #include "clang/Driver/Options.inc"
4586 #undef PREPROCESSOR_OPTION_WITH_MARSHALLING
4587 
4588   if (Opts.PCHWithHdrStop && !Opts.PCHWithHdrStopCreate)
4589     GenerateArg(Consumer, OPT_pch_through_hdrstop_use);
4590 
4591   for (const auto &D : Opts.DeserializedPCHDeclsToErrorOn)
4592     GenerateArg(Consumer, OPT_error_on_deserialized_pch_decl, D);
4593 
4594   if (Opts.PrecompiledPreambleBytes != std::make_pair(0u, false))
4595     GenerateArg(Consumer, OPT_preamble_bytes_EQ,
4596                 Twine(Opts.PrecompiledPreambleBytes.first) + "," +
4597                     (Opts.PrecompiledPreambleBytes.second ? "1" : "0"));
4598 
4599   for (const auto &M : Opts.Macros) {
4600     // Don't generate __CET__ macro definitions. They are implied by the
4601     // -fcf-protection option that is generated elsewhere.
4602     if (M.first == "__CET__=1" && !M.second &&
4603         !CodeGenOpts.CFProtectionReturn && CodeGenOpts.CFProtectionBranch)
4604       continue;
4605     if (M.first == "__CET__=2" && !M.second && CodeGenOpts.CFProtectionReturn &&
4606         !CodeGenOpts.CFProtectionBranch)
4607       continue;
4608     if (M.first == "__CET__=3" && !M.second && CodeGenOpts.CFProtectionReturn &&
4609         CodeGenOpts.CFProtectionBranch)
4610       continue;
4611 
4612     GenerateArg(Consumer, M.second ? OPT_U : OPT_D, M.first);
4613   }
4614 
4615   for (const auto &I : Opts.Includes) {
4616     // Don't generate OpenCL includes. They are implied by other flags that are
4617     // generated elsewhere.
4618     if (LangOpts.OpenCL && LangOpts.IncludeDefaultHeader &&
4619         ((LangOpts.DeclareOpenCLBuiltins && I == "opencl-c-base.h") ||
4620          I == "opencl-c.h"))
4621       continue;
4622     // Don't generate HLSL includes. They are implied by other flags that are
4623     // generated elsewhere.
4624     if (LangOpts.HLSL && I == "hlsl.h")
4625       continue;
4626 
4627     GenerateArg(Consumer, OPT_include, I);
4628   }
4629 
4630   for (const auto &CI : Opts.ChainedIncludes)
4631     GenerateArg(Consumer, OPT_chain_include, CI);
4632 
4633   for (const auto &RF : Opts.RemappedFiles)
4634     GenerateArg(Consumer, OPT_remap_file, RF.first + ";" + RF.second);
4635 
4636   if (Opts.SourceDateEpoch)
4637     GenerateArg(Consumer, OPT_source_date_epoch, Twine(*Opts.SourceDateEpoch));
4638 
4639   if (Opts.DefineTargetOSMacros)
4640     GenerateArg(Consumer, OPT_fdefine_target_os_macros);
4641 
4642   for (const auto &EmbedEntry : Opts.EmbedEntries)
4643     GenerateArg(Consumer, OPT_embed_dir_EQ, EmbedEntry);
4644 
4645   // Don't handle LexEditorPlaceholders. It is implied by the action that is
4646   // generated elsewhere.
4647 }
4648 
4649 static bool ParsePreprocessorArgs(PreprocessorOptions &Opts, ArgList &Args,
4650                                   DiagnosticsEngine &Diags,
4651                                   frontend::ActionKind Action,
4652                                   const FrontendOptions &FrontendOpts) {
4653   unsigned NumErrorsBefore = Diags.getNumErrors();
4654 
4655   PreprocessorOptions *PreprocessorOpts = &Opts;
4656 
4657 #define PREPROCESSOR_OPTION_WITH_MARSHALLING(...)                              \
4658   PARSE_OPTION_WITH_MARSHALLING(Args, Diags, __VA_ARGS__)
4659 #include "clang/Driver/Options.inc"
4660 #undef PREPROCESSOR_OPTION_WITH_MARSHALLING
4661 
4662   Opts.PCHWithHdrStop = Args.hasArg(OPT_pch_through_hdrstop_create) ||
4663                         Args.hasArg(OPT_pch_through_hdrstop_use);
4664 
4665   for (const auto *A : Args.filtered(OPT_error_on_deserialized_pch_decl))
4666     Opts.DeserializedPCHDeclsToErrorOn.insert(A->getValue());
4667 
4668   if (const Arg *A = Args.getLastArg(OPT_preamble_bytes_EQ)) {
4669     StringRef Value(A->getValue());
4670     size_t Comma = Value.find(',');
4671     unsigned Bytes = 0;
4672     unsigned EndOfLine = 0;
4673 
4674     if (Comma == StringRef::npos ||
4675         Value.substr(0, Comma).getAsInteger(10, Bytes) ||
4676         Value.substr(Comma + 1).getAsInteger(10, EndOfLine))
4677       Diags.Report(diag::err_drv_preamble_format);
4678     else {
4679       Opts.PrecompiledPreambleBytes.first = Bytes;
4680       Opts.PrecompiledPreambleBytes.second = (EndOfLine != 0);
4681     }
4682   }
4683 
4684   // Add the __CET__ macro if a CFProtection option is set.
4685   if (const Arg *A = Args.getLastArg(OPT_fcf_protection_EQ)) {
4686     StringRef Name = A->getValue();
4687     if (Name == "branch")
4688       Opts.addMacroDef("__CET__=1");
4689     else if (Name == "return")
4690       Opts.addMacroDef("__CET__=2");
4691     else if (Name == "full")
4692       Opts.addMacroDef("__CET__=3");
4693   }
4694 
4695   // Add macros from the command line.
4696   for (const auto *A : Args.filtered(OPT_D, OPT_U)) {
4697     if (A->getOption().matches(OPT_D))
4698       Opts.addMacroDef(A->getValue());
4699     else
4700       Opts.addMacroUndef(A->getValue());
4701   }
4702 
4703   // Add the ordered list of -includes.
4704   for (const auto *A : Args.filtered(OPT_include))
4705     Opts.Includes.emplace_back(A->getValue());
4706 
4707   for (const auto *A : Args.filtered(OPT_chain_include))
4708     Opts.ChainedIncludes.emplace_back(A->getValue());
4709 
4710   for (const auto *A : Args.filtered(OPT_remap_file)) {
4711     std::pair<StringRef, StringRef> Split = StringRef(A->getValue()).split(';');
4712 
4713     if (Split.second.empty()) {
4714       Diags.Report(diag::err_drv_invalid_remap_file) << A->getAsString(Args);
4715       continue;
4716     }
4717 
4718     Opts.addRemappedFile(Split.first, Split.second);
4719   }
4720 
4721   if (const Arg *A = Args.getLastArg(OPT_source_date_epoch)) {
4722     StringRef Epoch = A->getValue();
4723     // SOURCE_DATE_EPOCH, if specified, must be a non-negative decimal integer.
4724     // On time64 systems, pick 253402300799 (the UNIX timestamp of
4725     // 9999-12-31T23:59:59Z) as the upper bound.
4726     const uint64_t MaxTimestamp =
4727         std::min<uint64_t>(std::numeric_limits<time_t>::max(), 253402300799);
4728     uint64_t V;
4729     if (Epoch.getAsInteger(10, V) || V > MaxTimestamp) {
4730       Diags.Report(diag::err_fe_invalid_source_date_epoch)
4731           << Epoch << MaxTimestamp;
4732     } else {
4733       Opts.SourceDateEpoch = V;
4734     }
4735   }
4736 
4737   for (const auto *A : Args.filtered(OPT_embed_dir_EQ)) {
4738     StringRef Val = A->getValue();
4739     Opts.EmbedEntries.push_back(std::string(Val));
4740   }
4741 
4742   // Always avoid lexing editor placeholders when we're just running the
4743   // preprocessor as we never want to emit the
4744   // "editor placeholder in source file" error in PP only mode.
4745   if (isStrictlyPreprocessorAction(Action))
4746     Opts.LexEditorPlaceholders = false;
4747 
4748   Opts.DefineTargetOSMacros =
4749       Args.hasFlag(OPT_fdefine_target_os_macros,
4750                    OPT_fno_define_target_os_macros, Opts.DefineTargetOSMacros);
4751 
4752   return Diags.getNumErrors() == NumErrorsBefore;
4753 }
4754 
4755 static void
4756 GeneratePreprocessorOutputArgs(const PreprocessorOutputOptions &Opts,
4757                                ArgumentConsumer Consumer,
4758                                frontend::ActionKind Action) {
4759   const PreprocessorOutputOptions &PreprocessorOutputOpts = Opts;
4760 
4761 #define PREPROCESSOR_OUTPUT_OPTION_WITH_MARSHALLING(...)                       \
4762   GENERATE_OPTION_WITH_MARSHALLING(Consumer, __VA_ARGS__)
4763 #include "clang/Driver/Options.inc"
4764 #undef PREPROCESSOR_OUTPUT_OPTION_WITH_MARSHALLING
4765 
4766   bool Generate_dM = isStrictlyPreprocessorAction(Action) && !Opts.ShowCPP;
4767   if (Generate_dM)
4768     GenerateArg(Consumer, OPT_dM);
4769   if (!Generate_dM && Opts.ShowMacros)
4770     GenerateArg(Consumer, OPT_dD);
4771   if (Opts.DirectivesOnly)
4772     GenerateArg(Consumer, OPT_fdirectives_only);
4773 }
4774 
4775 static bool ParsePreprocessorOutputArgs(PreprocessorOutputOptions &Opts,
4776                                         ArgList &Args, DiagnosticsEngine &Diags,
4777                                         frontend::ActionKind Action) {
4778   unsigned NumErrorsBefore = Diags.getNumErrors();
4779 
4780   PreprocessorOutputOptions &PreprocessorOutputOpts = Opts;
4781 
4782 #define PREPROCESSOR_OUTPUT_OPTION_WITH_MARSHALLING(...)                       \
4783   PARSE_OPTION_WITH_MARSHALLING(Args, Diags, __VA_ARGS__)
4784 #include "clang/Driver/Options.inc"
4785 #undef PREPROCESSOR_OUTPUT_OPTION_WITH_MARSHALLING
4786 
4787   Opts.ShowCPP = isStrictlyPreprocessorAction(Action) && !Args.hasArg(OPT_dM);
4788   Opts.ShowMacros = Args.hasArg(OPT_dM) || Args.hasArg(OPT_dD);
4789   Opts.DirectivesOnly = Args.hasArg(OPT_fdirectives_only);
4790 
4791   return Diags.getNumErrors() == NumErrorsBefore;
4792 }
4793 
4794 static void GenerateTargetArgs(const TargetOptions &Opts,
4795                                ArgumentConsumer Consumer) {
4796   const TargetOptions *TargetOpts = &Opts;
4797 #define TARGET_OPTION_WITH_MARSHALLING(...)                                    \
4798   GENERATE_OPTION_WITH_MARSHALLING(Consumer, __VA_ARGS__)
4799 #include "clang/Driver/Options.inc"
4800 #undef TARGET_OPTION_WITH_MARSHALLING
4801 
4802   if (!Opts.SDKVersion.empty())
4803     GenerateArg(Consumer, OPT_target_sdk_version_EQ,
4804                 Opts.SDKVersion.getAsString());
4805   if (!Opts.DarwinTargetVariantSDKVersion.empty())
4806     GenerateArg(Consumer, OPT_darwin_target_variant_sdk_version_EQ,
4807                 Opts.DarwinTargetVariantSDKVersion.getAsString());
4808 }
4809 
4810 static bool ParseTargetArgs(TargetOptions &Opts, ArgList &Args,
4811                             DiagnosticsEngine &Diags) {
4812   unsigned NumErrorsBefore = Diags.getNumErrors();
4813 
4814   TargetOptions *TargetOpts = &Opts;
4815 
4816 #define TARGET_OPTION_WITH_MARSHALLING(...)                                    \
4817   PARSE_OPTION_WITH_MARSHALLING(Args, Diags, __VA_ARGS__)
4818 #include "clang/Driver/Options.inc"
4819 #undef TARGET_OPTION_WITH_MARSHALLING
4820 
4821   if (Arg *A = Args.getLastArg(options::OPT_target_sdk_version_EQ)) {
4822     llvm::VersionTuple Version;
4823     if (Version.tryParse(A->getValue()))
4824       Diags.Report(diag::err_drv_invalid_value)
4825           << A->getAsString(Args) << A->getValue();
4826     else
4827       Opts.SDKVersion = Version;
4828   }
4829   if (Arg *A =
4830           Args.getLastArg(options::OPT_darwin_target_variant_sdk_version_EQ)) {
4831     llvm::VersionTuple Version;
4832     if (Version.tryParse(A->getValue()))
4833       Diags.Report(diag::err_drv_invalid_value)
4834           << A->getAsString(Args) << A->getValue();
4835     else
4836       Opts.DarwinTargetVariantSDKVersion = Version;
4837   }
4838 
4839   return Diags.getNumErrors() == NumErrorsBefore;
4840 }
4841 
4842 bool CompilerInvocation::CreateFromArgsImpl(
4843     CompilerInvocation &Res, ArrayRef<const char *> CommandLineArgs,
4844     DiagnosticsEngine &Diags, const char *Argv0) {
4845   unsigned NumErrorsBefore = Diags.getNumErrors();
4846 
4847   // Parse the arguments.
4848   const OptTable &Opts = getDriverOptTable();
4849   llvm::opt::Visibility VisibilityMask(options::CC1Option);
4850   unsigned MissingArgIndex, MissingArgCount;
4851   InputArgList Args = Opts.ParseArgs(CommandLineArgs, MissingArgIndex,
4852                                      MissingArgCount, VisibilityMask);
4853   LangOptions &LangOpts = Res.getLangOpts();
4854 
4855   // Check for missing argument error.
4856   if (MissingArgCount)
4857     Diags.Report(diag::err_drv_missing_argument)
4858         << Args.getArgString(MissingArgIndex) << MissingArgCount;
4859 
4860   // Issue errors on unknown arguments.
4861   for (const auto *A : Args.filtered(OPT_UNKNOWN)) {
4862     auto ArgString = A->getAsString(Args);
4863     std::string Nearest;
4864     if (Opts.findNearest(ArgString, Nearest, VisibilityMask) > 1)
4865       Diags.Report(diag::err_drv_unknown_argument) << ArgString;
4866     else
4867       Diags.Report(diag::err_drv_unknown_argument_with_suggestion)
4868           << ArgString << Nearest;
4869   }
4870 
4871   ParseFileSystemArgs(Res.getFileSystemOpts(), Args, Diags);
4872   ParseMigratorArgs(Res.getMigratorOpts(), Args, Diags);
4873   ParseAnalyzerArgs(Res.getAnalyzerOpts(), Args, Diags);
4874   ParseDiagnosticArgs(Res.getDiagnosticOpts(), Args, &Diags,
4875                       /*DefaultDiagColor=*/false);
4876   ParseFrontendArgs(Res.getFrontendOpts(), Args, Diags, LangOpts.IsHeaderFile);
4877   // FIXME: We shouldn't have to pass the DashX option around here
4878   InputKind DashX = Res.getFrontendOpts().DashX;
4879   ParseTargetArgs(Res.getTargetOpts(), Args, Diags);
4880   llvm::Triple T(Res.getTargetOpts().Triple);
4881   ParseHeaderSearchArgs(Res.getHeaderSearchOpts(), Args, Diags,
4882                         Res.getFileSystemOpts().WorkingDir);
4883   ParseAPINotesArgs(Res.getAPINotesOpts(), Args, Diags);
4884 
4885   ParsePointerAuthArgs(LangOpts, Args, Diags);
4886 
4887   ParseLangArgs(LangOpts, Args, DashX, T, Res.getPreprocessorOpts().Includes,
4888                 Diags);
4889   if (Res.getFrontendOpts().ProgramAction == frontend::RewriteObjC)
4890     LangOpts.ObjCExceptions = 1;
4891 
4892   for (auto Warning : Res.getDiagnosticOpts().Warnings) {
4893     if (Warning == "misexpect" &&
4894         !Diags.isIgnored(diag::warn_profile_data_misexpect, SourceLocation())) {
4895       Res.getCodeGenOpts().MisExpect = true;
4896     }
4897   }
4898 
4899   if (LangOpts.CUDA) {
4900     // During CUDA device-side compilation, the aux triple is the
4901     // triple used for host compilation.
4902     if (LangOpts.CUDAIsDevice)
4903       Res.getTargetOpts().HostTriple = Res.getFrontendOpts().AuxTriple;
4904   }
4905 
4906   // Set the triple of the host for OpenMP device compile.
4907   if (LangOpts.OpenMPIsTargetDevice)
4908     Res.getTargetOpts().HostTriple = Res.getFrontendOpts().AuxTriple;
4909 
4910   ParseCodeGenArgs(Res.getCodeGenOpts(), Args, DashX, Diags, T,
4911                    Res.getFrontendOpts().OutputFile, LangOpts);
4912 
4913   // FIXME: Override value name discarding when asan or msan is used because the
4914   // backend passes depend on the name of the alloca in order to print out
4915   // names.
4916   Res.getCodeGenOpts().DiscardValueNames &=
4917       !LangOpts.Sanitize.has(SanitizerKind::Address) &&
4918       !LangOpts.Sanitize.has(SanitizerKind::KernelAddress) &&
4919       !LangOpts.Sanitize.has(SanitizerKind::Memory) &&
4920       !LangOpts.Sanitize.has(SanitizerKind::KernelMemory);
4921 
4922   ParsePreprocessorArgs(Res.getPreprocessorOpts(), Args, Diags,
4923                         Res.getFrontendOpts().ProgramAction,
4924                         Res.getFrontendOpts());
4925   ParsePreprocessorOutputArgs(Res.getPreprocessorOutputOpts(), Args, Diags,
4926                               Res.getFrontendOpts().ProgramAction);
4927 
4928   ParseDependencyOutputArgs(Res.getDependencyOutputOpts(), Args, Diags,
4929                             Res.getFrontendOpts().ProgramAction,
4930                             Res.getPreprocessorOutputOpts().ShowLineMarkers);
4931   if (!Res.getDependencyOutputOpts().OutputFile.empty() &&
4932       Res.getDependencyOutputOpts().Targets.empty())
4933     Diags.Report(diag::err_fe_dependency_file_requires_MT);
4934 
4935   // If sanitizer is enabled, disable OPT_ffine_grained_bitfield_accesses.
4936   if (Res.getCodeGenOpts().FineGrainedBitfieldAccesses &&
4937       !Res.getLangOpts().Sanitize.empty()) {
4938     Res.getCodeGenOpts().FineGrainedBitfieldAccesses = false;
4939     Diags.Report(diag::warn_drv_fine_grained_bitfield_accesses_ignored);
4940   }
4941 
4942   // Store the command-line for using in the CodeView backend.
4943   if (Res.getCodeGenOpts().CodeViewCommandLine) {
4944     Res.getCodeGenOpts().Argv0 = Argv0;
4945     append_range(Res.getCodeGenOpts().CommandLineArgs, CommandLineArgs);
4946   }
4947 
4948   // Set PGOOptions. Need to create a temporary VFS to read the profile
4949   // to determine the PGO type.
4950   if (!Res.getCodeGenOpts().ProfileInstrumentUsePath.empty()) {
4951     auto FS =
4952         createVFSFromOverlayFiles(Res.getHeaderSearchOpts().VFSOverlayFiles,
4953                                   Diags, llvm::vfs::getRealFileSystem());
4954     setPGOUseInstrumentor(Res.getCodeGenOpts(),
4955                           Res.getCodeGenOpts().ProfileInstrumentUsePath, *FS,
4956                           Diags);
4957   }
4958 
4959   FixupInvocation(Res, Diags, Args, DashX);
4960 
4961   return Diags.getNumErrors() == NumErrorsBefore;
4962 }
4963 
4964 bool CompilerInvocation::CreateFromArgs(CompilerInvocation &Invocation,
4965                                         ArrayRef<const char *> CommandLineArgs,
4966                                         DiagnosticsEngine &Diags,
4967                                         const char *Argv0) {
4968   CompilerInvocation DummyInvocation;
4969 
4970   return RoundTrip(
4971       [](CompilerInvocation &Invocation, ArrayRef<const char *> CommandLineArgs,
4972          DiagnosticsEngine &Diags, const char *Argv0) {
4973         return CreateFromArgsImpl(Invocation, CommandLineArgs, Diags, Argv0);
4974       },
4975       [](CompilerInvocation &Invocation, SmallVectorImpl<const char *> &Args,
4976          StringAllocator SA) {
4977         Args.push_back("-cc1");
4978         Invocation.generateCC1CommandLine(Args, SA);
4979       },
4980       Invocation, DummyInvocation, CommandLineArgs, Diags, Argv0);
4981 }
4982 
4983 std::string CompilerInvocation::getModuleHash() const {
4984   // FIXME: Consider using SHA1 instead of MD5.
4985   llvm::HashBuilder<llvm::MD5, llvm::endianness::native> HBuilder;
4986 
4987   // Note: For QoI reasons, the things we use as a hash here should all be
4988   // dumped via the -module-info flag.
4989 
4990   // Start the signature with the compiler version.
4991   HBuilder.add(getClangFullRepositoryVersion());
4992 
4993   // Also include the serialization version, in case LLVM_APPEND_VC_REV is off
4994   // and getClangFullRepositoryVersion() doesn't include git revision.
4995   HBuilder.add(serialization::VERSION_MAJOR, serialization::VERSION_MINOR);
4996 
4997   // Extend the signature with the language options
4998 #define LANGOPT(Name, Bits, Default, Description) HBuilder.add(LangOpts->Name);
4999 #define ENUM_LANGOPT(Name, Type, Bits, Default, Description)                   \
5000   HBuilder.add(static_cast<unsigned>(LangOpts->get##Name()));
5001 #define BENIGN_LANGOPT(Name, Bits, Default, Description)
5002 #define BENIGN_ENUM_LANGOPT(Name, Type, Bits, Default, Description)
5003 #include "clang/Basic/LangOptions.def"
5004 
5005   HBuilder.addRange(getLangOpts().ModuleFeatures);
5006 
5007   HBuilder.add(getLangOpts().ObjCRuntime);
5008   HBuilder.addRange(getLangOpts().CommentOpts.BlockCommandNames);
5009 
5010   // Extend the signature with the target options.
5011   HBuilder.add(getTargetOpts().Triple, getTargetOpts().CPU,
5012                getTargetOpts().TuneCPU, getTargetOpts().ABI);
5013   HBuilder.addRange(getTargetOpts().FeaturesAsWritten);
5014 
5015   // Extend the signature with preprocessor options.
5016   const PreprocessorOptions &ppOpts = getPreprocessorOpts();
5017   HBuilder.add(ppOpts.UsePredefines, ppOpts.DetailedRecord);
5018 
5019   const HeaderSearchOptions &hsOpts = getHeaderSearchOpts();
5020   for (const auto &Macro : getPreprocessorOpts().Macros) {
5021     // If we're supposed to ignore this macro for the purposes of modules,
5022     // don't put it into the hash.
5023     if (!hsOpts.ModulesIgnoreMacros.empty()) {
5024       // Check whether we're ignoring this macro.
5025       StringRef MacroDef = Macro.first;
5026       if (hsOpts.ModulesIgnoreMacros.count(
5027               llvm::CachedHashString(MacroDef.split('=').first)))
5028         continue;
5029     }
5030 
5031     HBuilder.add(Macro);
5032   }
5033 
5034   // Extend the signature with the sysroot and other header search options.
5035   HBuilder.add(hsOpts.Sysroot, hsOpts.ModuleFormat, hsOpts.UseDebugInfo,
5036                hsOpts.UseBuiltinIncludes, hsOpts.UseStandardSystemIncludes,
5037                hsOpts.UseStandardCXXIncludes, hsOpts.UseLibcxx,
5038                hsOpts.ModulesValidateDiagnosticOptions);
5039   HBuilder.add(hsOpts.ResourceDir);
5040 
5041   if (hsOpts.ModulesStrictContextHash) {
5042     HBuilder.addRange(hsOpts.SystemHeaderPrefixes);
5043     HBuilder.addRange(hsOpts.UserEntries);
5044     HBuilder.addRange(hsOpts.VFSOverlayFiles);
5045 
5046     const DiagnosticOptions &diagOpts = getDiagnosticOpts();
5047 #define DIAGOPT(Name, Bits, Default) HBuilder.add(diagOpts.Name);
5048 #define ENUM_DIAGOPT(Name, Type, Bits, Default)                                \
5049   HBuilder.add(diagOpts.get##Name());
5050 #include "clang/Basic/DiagnosticOptions.def"
5051 #undef DIAGOPT
5052 #undef ENUM_DIAGOPT
5053   }
5054 
5055   // Extend the signature with the user build path.
5056   HBuilder.add(hsOpts.ModuleUserBuildPath);
5057 
5058   // Extend the signature with the module file extensions.
5059   for (const auto &ext : getFrontendOpts().ModuleFileExtensions)
5060     ext->hashExtension(HBuilder);
5061 
5062   // Extend the signature with the Swift version for API notes.
5063   const APINotesOptions &APINotesOpts = getAPINotesOpts();
5064   if (!APINotesOpts.SwiftVersion.empty()) {
5065     HBuilder.add(APINotesOpts.SwiftVersion.getMajor());
5066     if (auto Minor = APINotesOpts.SwiftVersion.getMinor())
5067       HBuilder.add(*Minor);
5068     if (auto Subminor = APINotesOpts.SwiftVersion.getSubminor())
5069       HBuilder.add(*Subminor);
5070     if (auto Build = APINotesOpts.SwiftVersion.getBuild())
5071       HBuilder.add(*Build);
5072   }
5073 
5074   // When compiling with -gmodules, also hash -fdebug-prefix-map as it
5075   // affects the debug info in the PCM.
5076   if (getCodeGenOpts().DebugTypeExtRefs)
5077     HBuilder.addRange(getCodeGenOpts().DebugPrefixMap);
5078 
5079   // Extend the signature with the affecting debug options.
5080   if (getHeaderSearchOpts().ModuleFormat == "obj") {
5081 #define DEBUGOPT(Name, Bits, Default) HBuilder.add(CodeGenOpts->Name);
5082 #define VALUE_DEBUGOPT(Name, Bits, Default) HBuilder.add(CodeGenOpts->Name);
5083 #define ENUM_DEBUGOPT(Name, Type, Bits, Default)                               \
5084   HBuilder.add(static_cast<unsigned>(CodeGenOpts->get##Name()));
5085 #define BENIGN_DEBUGOPT(Name, Bits, Default)
5086 #define BENIGN_VALUE_DEBUGOPT(Name, Bits, Default)
5087 #define BENIGN_ENUM_DEBUGOPT(Name, Type, Bits, Default)
5088 #include "clang/Basic/DebugOptions.def"
5089   }
5090 
5091   // Extend the signature with the enabled sanitizers, if at least one is
5092   // enabled. Sanitizers which cannot affect AST generation aren't hashed.
5093   SanitizerSet SanHash = getLangOpts().Sanitize;
5094   SanHash.clear(getPPTransparentSanitizers());
5095   if (!SanHash.empty())
5096     HBuilder.add(SanHash.Mask);
5097 
5098   llvm::MD5::MD5Result Result;
5099   HBuilder.getHasher().final(Result);
5100   uint64_t Hash = Result.high() ^ Result.low();
5101   return toString(llvm::APInt(64, Hash), 36, /*Signed=*/false);
5102 }
5103 
5104 void CompilerInvocationBase::generateCC1CommandLine(
5105     ArgumentConsumer Consumer) const {
5106   llvm::Triple T(getTargetOpts().Triple);
5107 
5108   GenerateFileSystemArgs(getFileSystemOpts(), Consumer);
5109   GenerateMigratorArgs(getMigratorOpts(), Consumer);
5110   GenerateAnalyzerArgs(getAnalyzerOpts(), Consumer);
5111   GenerateDiagnosticArgs(getDiagnosticOpts(), Consumer,
5112                          /*DefaultDiagColor=*/false);
5113   GenerateFrontendArgs(getFrontendOpts(), Consumer, getLangOpts().IsHeaderFile);
5114   GenerateTargetArgs(getTargetOpts(), Consumer);
5115   GenerateHeaderSearchArgs(getHeaderSearchOpts(), Consumer);
5116   GenerateAPINotesArgs(getAPINotesOpts(), Consumer);
5117   GeneratePointerAuthArgs(getLangOpts(), Consumer);
5118   GenerateLangArgs(getLangOpts(), Consumer, T, getFrontendOpts().DashX);
5119   GenerateCodeGenArgs(getCodeGenOpts(), Consumer, T,
5120                       getFrontendOpts().OutputFile, &getLangOpts());
5121   GeneratePreprocessorArgs(getPreprocessorOpts(), Consumer, getLangOpts(),
5122                            getFrontendOpts(), getCodeGenOpts());
5123   GeneratePreprocessorOutputArgs(getPreprocessorOutputOpts(), Consumer,
5124                                  getFrontendOpts().ProgramAction);
5125   GenerateDependencyOutputArgs(getDependencyOutputOpts(), Consumer);
5126 }
5127 
5128 std::vector<std::string> CompilerInvocationBase::getCC1CommandLine() const {
5129   std::vector<std::string> Args{"-cc1"};
5130   generateCC1CommandLine(
5131       [&Args](const Twine &Arg) { Args.push_back(Arg.str()); });
5132   return Args;
5133 }
5134 
5135 void CompilerInvocation::resetNonModularOptions() {
5136   getLangOpts().resetNonModularOptions();
5137   getPreprocessorOpts().resetNonModularOptions();
5138   getCodeGenOpts().resetNonModularOptions(getHeaderSearchOpts().ModuleFormat);
5139 }
5140 
5141 void CompilerInvocation::clearImplicitModuleBuildOptions() {
5142   getLangOpts().ImplicitModules = false;
5143   getHeaderSearchOpts().ImplicitModuleMaps = false;
5144   getHeaderSearchOpts().ModuleCachePath.clear();
5145   getHeaderSearchOpts().ModulesValidateOncePerBuildSession = false;
5146   getHeaderSearchOpts().BuildSessionTimestamp = 0;
5147   // The specific values we canonicalize to for pruning don't affect behaviour,
5148   /// so use the default values so they may be dropped from the command-line.
5149   getHeaderSearchOpts().ModuleCachePruneInterval = 7 * 24 * 60 * 60;
5150   getHeaderSearchOpts().ModuleCachePruneAfter = 31 * 24 * 60 * 60;
5151 }
5152 
5153 IntrusiveRefCntPtr<llvm::vfs::FileSystem>
5154 clang::createVFSFromCompilerInvocation(const CompilerInvocation &CI,
5155                                        DiagnosticsEngine &Diags) {
5156   return createVFSFromCompilerInvocation(CI, Diags,
5157                                          llvm::vfs::getRealFileSystem());
5158 }
5159 
5160 IntrusiveRefCntPtr<llvm::vfs::FileSystem>
5161 clang::createVFSFromCompilerInvocation(
5162     const CompilerInvocation &CI, DiagnosticsEngine &Diags,
5163     IntrusiveRefCntPtr<llvm::vfs::FileSystem> BaseFS) {
5164   return createVFSFromOverlayFiles(CI.getHeaderSearchOpts().VFSOverlayFiles,
5165                                    Diags, std::move(BaseFS));
5166 }
5167 
5168 IntrusiveRefCntPtr<llvm::vfs::FileSystem> clang::createVFSFromOverlayFiles(
5169     ArrayRef<std::string> VFSOverlayFiles, DiagnosticsEngine &Diags,
5170     IntrusiveRefCntPtr<llvm::vfs::FileSystem> BaseFS) {
5171   if (VFSOverlayFiles.empty())
5172     return BaseFS;
5173 
5174   IntrusiveRefCntPtr<llvm::vfs::FileSystem> Result = BaseFS;
5175   // earlier vfs files are on the bottom
5176   for (const auto &File : VFSOverlayFiles) {
5177     llvm::ErrorOr<std::unique_ptr<llvm::MemoryBuffer>> Buffer =
5178         Result->getBufferForFile(File);
5179     if (!Buffer) {
5180       Diags.Report(diag::err_missing_vfs_overlay_file) << File;
5181       continue;
5182     }
5183 
5184     IntrusiveRefCntPtr<llvm::vfs::FileSystem> FS = llvm::vfs::getVFSFromYAML(
5185         std::move(Buffer.get()), /*DiagHandler*/ nullptr, File,
5186         /*DiagContext*/ nullptr, Result);
5187     if (!FS) {
5188       Diags.Report(diag::err_invalid_vfs_overlay) << File;
5189       continue;
5190     }
5191 
5192     Result = FS;
5193   }
5194   return Result;
5195 }
5196