1 //===--- DeclSpec.cpp - Declaration Specifier Semantic Analysis -----------===//
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 // This file implements semantic analysis for declaration specifiers.
10 //
11 //===----------------------------------------------------------------------===//
12
13 #include "clang/Sema/DeclSpec.h"
14 #include "clang/AST/ASTContext.h"
15 #include "clang/AST/DeclCXX.h"
16 #include "clang/AST/Expr.h"
17 #include "clang/AST/LocInfoType.h"
18 #include "clang/AST/TypeLoc.h"
19 #include "clang/Basic/LangOptions.h"
20 #include "clang/Basic/SourceManager.h"
21 #include "clang/Basic/TargetInfo.h"
22 #include "clang/Sema/ParsedTemplate.h"
23 #include "clang/Sema/Sema.h"
24 #include "clang/Sema/SemaDiagnostic.h"
25 #include "llvm/ADT/STLExtras.h"
26 #include "llvm/ADT/SmallString.h"
27 #include <cstring>
28 using namespace clang;
29
30
setTemplateId(TemplateIdAnnotation * TemplateId)31 void UnqualifiedId::setTemplateId(TemplateIdAnnotation *TemplateId) {
32 assert(TemplateId && "NULL template-id annotation?");
33 assert(!TemplateId->isInvalid() &&
34 "should not convert invalid template-ids to unqualified-ids");
35
36 Kind = UnqualifiedIdKind::IK_TemplateId;
37 this->TemplateId = TemplateId;
38 StartLocation = TemplateId->TemplateNameLoc;
39 EndLocation = TemplateId->RAngleLoc;
40 }
41
setConstructorTemplateId(TemplateIdAnnotation * TemplateId)42 void UnqualifiedId::setConstructorTemplateId(TemplateIdAnnotation *TemplateId) {
43 assert(TemplateId && "NULL template-id annotation?");
44 assert(!TemplateId->isInvalid() &&
45 "should not convert invalid template-ids to unqualified-ids");
46
47 Kind = UnqualifiedIdKind::IK_ConstructorTemplateId;
48 this->TemplateId = TemplateId;
49 StartLocation = TemplateId->TemplateNameLoc;
50 EndLocation = TemplateId->RAngleLoc;
51 }
52
Extend(ASTContext & Context,SourceLocation TemplateKWLoc,TypeLoc TL,SourceLocation ColonColonLoc)53 void CXXScopeSpec::Extend(ASTContext &Context, SourceLocation TemplateKWLoc,
54 TypeLoc TL, SourceLocation ColonColonLoc) {
55 Builder.Extend(Context, TemplateKWLoc, TL, ColonColonLoc);
56 if (Range.getBegin().isInvalid())
57 Range.setBegin(TL.getBeginLoc());
58 Range.setEnd(ColonColonLoc);
59
60 assert(Range == Builder.getSourceRange() &&
61 "NestedNameSpecifierLoc range computation incorrect");
62 }
63
Extend(ASTContext & Context,IdentifierInfo * Identifier,SourceLocation IdentifierLoc,SourceLocation ColonColonLoc)64 void CXXScopeSpec::Extend(ASTContext &Context, IdentifierInfo *Identifier,
65 SourceLocation IdentifierLoc,
66 SourceLocation ColonColonLoc) {
67 Builder.Extend(Context, Identifier, IdentifierLoc, ColonColonLoc);
68
69 if (Range.getBegin().isInvalid())
70 Range.setBegin(IdentifierLoc);
71 Range.setEnd(ColonColonLoc);
72
73 assert(Range == Builder.getSourceRange() &&
74 "NestedNameSpecifierLoc range computation incorrect");
75 }
76
Extend(ASTContext & Context,NamespaceDecl * Namespace,SourceLocation NamespaceLoc,SourceLocation ColonColonLoc)77 void CXXScopeSpec::Extend(ASTContext &Context, NamespaceDecl *Namespace,
78 SourceLocation NamespaceLoc,
79 SourceLocation ColonColonLoc) {
80 Builder.Extend(Context, Namespace, NamespaceLoc, ColonColonLoc);
81
82 if (Range.getBegin().isInvalid())
83 Range.setBegin(NamespaceLoc);
84 Range.setEnd(ColonColonLoc);
85
86 assert(Range == Builder.getSourceRange() &&
87 "NestedNameSpecifierLoc range computation incorrect");
88 }
89
Extend(ASTContext & Context,NamespaceAliasDecl * Alias,SourceLocation AliasLoc,SourceLocation ColonColonLoc)90 void CXXScopeSpec::Extend(ASTContext &Context, NamespaceAliasDecl *Alias,
91 SourceLocation AliasLoc,
92 SourceLocation ColonColonLoc) {
93 Builder.Extend(Context, Alias, AliasLoc, ColonColonLoc);
94
95 if (Range.getBegin().isInvalid())
96 Range.setBegin(AliasLoc);
97 Range.setEnd(ColonColonLoc);
98
99 assert(Range == Builder.getSourceRange() &&
100 "NestedNameSpecifierLoc range computation incorrect");
101 }
102
MakeGlobal(ASTContext & Context,SourceLocation ColonColonLoc)103 void CXXScopeSpec::MakeGlobal(ASTContext &Context,
104 SourceLocation ColonColonLoc) {
105 Builder.MakeGlobal(Context, ColonColonLoc);
106
107 Range = SourceRange(ColonColonLoc);
108
109 assert(Range == Builder.getSourceRange() &&
110 "NestedNameSpecifierLoc range computation incorrect");
111 }
112
MakeSuper(ASTContext & Context,CXXRecordDecl * RD,SourceLocation SuperLoc,SourceLocation ColonColonLoc)113 void CXXScopeSpec::MakeSuper(ASTContext &Context, CXXRecordDecl *RD,
114 SourceLocation SuperLoc,
115 SourceLocation ColonColonLoc) {
116 Builder.MakeSuper(Context, RD, SuperLoc, ColonColonLoc);
117
118 Range.setBegin(SuperLoc);
119 Range.setEnd(ColonColonLoc);
120
121 assert(Range == Builder.getSourceRange() &&
122 "NestedNameSpecifierLoc range computation incorrect");
123 }
124
MakeTrivial(ASTContext & Context,NestedNameSpecifier * Qualifier,SourceRange R)125 void CXXScopeSpec::MakeTrivial(ASTContext &Context,
126 NestedNameSpecifier *Qualifier, SourceRange R) {
127 Builder.MakeTrivial(Context, Qualifier, R);
128 Range = R;
129 }
130
Adopt(NestedNameSpecifierLoc Other)131 void CXXScopeSpec::Adopt(NestedNameSpecifierLoc Other) {
132 if (!Other) {
133 Range = SourceRange();
134 Builder.Clear();
135 return;
136 }
137
138 Range = Other.getSourceRange();
139 Builder.Adopt(Other);
140 assert(Range == Builder.getSourceRange() &&
141 "NestedNameSpecifierLoc range computation incorrect");
142 }
143
getLastQualifierNameLoc() const144 SourceLocation CXXScopeSpec::getLastQualifierNameLoc() const {
145 if (!Builder.getRepresentation())
146 return SourceLocation();
147 return Builder.getTemporary().getLocalBeginLoc();
148 }
149
150 NestedNameSpecifierLoc
getWithLocInContext(ASTContext & Context) const151 CXXScopeSpec::getWithLocInContext(ASTContext &Context) const {
152 if (!Builder.getRepresentation())
153 return NestedNameSpecifierLoc();
154
155 return Builder.getWithLocInContext(Context);
156 }
157
158 /// DeclaratorChunk::getFunction - Return a DeclaratorChunk for a function.
159 /// "TheDeclarator" is the declarator that this will be added to.
getFunction(bool hasProto,bool isAmbiguous,SourceLocation LParenLoc,ParamInfo * Params,unsigned NumParams,SourceLocation EllipsisLoc,SourceLocation RParenLoc,bool RefQualifierIsLvalueRef,SourceLocation RefQualifierLoc,SourceLocation MutableLoc,ExceptionSpecificationType ESpecType,SourceRange ESpecRange,ParsedType * Exceptions,SourceRange * ExceptionRanges,unsigned NumExceptions,Expr * NoexceptExpr,CachedTokens * ExceptionSpecTokens,ArrayRef<NamedDecl * > DeclsInPrototype,SourceLocation LocalRangeBegin,SourceLocation LocalRangeEnd,Declarator & TheDeclarator,TypeResult TrailingReturnType,DeclSpec * MethodQualifiers)160 DeclaratorChunk DeclaratorChunk::getFunction(bool hasProto,
161 bool isAmbiguous,
162 SourceLocation LParenLoc,
163 ParamInfo *Params,
164 unsigned NumParams,
165 SourceLocation EllipsisLoc,
166 SourceLocation RParenLoc,
167 bool RefQualifierIsLvalueRef,
168 SourceLocation RefQualifierLoc,
169 SourceLocation MutableLoc,
170 ExceptionSpecificationType
171 ESpecType,
172 SourceRange ESpecRange,
173 ParsedType *Exceptions,
174 SourceRange *ExceptionRanges,
175 unsigned NumExceptions,
176 Expr *NoexceptExpr,
177 CachedTokens *ExceptionSpecTokens,
178 ArrayRef<NamedDecl*>
179 DeclsInPrototype,
180 SourceLocation LocalRangeBegin,
181 SourceLocation LocalRangeEnd,
182 Declarator &TheDeclarator,
183 TypeResult TrailingReturnType,
184 DeclSpec *MethodQualifiers) {
185 assert(!(MethodQualifiers && MethodQualifiers->getTypeQualifiers() & DeclSpec::TQ_atomic) &&
186 "function cannot have _Atomic qualifier");
187
188 DeclaratorChunk I;
189 I.Kind = Function;
190 I.Loc = LocalRangeBegin;
191 I.EndLoc = LocalRangeEnd;
192 I.Fun.hasPrototype = hasProto;
193 I.Fun.isVariadic = EllipsisLoc.isValid();
194 I.Fun.isAmbiguous = isAmbiguous;
195 I.Fun.LParenLoc = LParenLoc.getRawEncoding();
196 I.Fun.EllipsisLoc = EllipsisLoc.getRawEncoding();
197 I.Fun.RParenLoc = RParenLoc.getRawEncoding();
198 I.Fun.DeleteParams = false;
199 I.Fun.NumParams = NumParams;
200 I.Fun.Params = nullptr;
201 I.Fun.RefQualifierIsLValueRef = RefQualifierIsLvalueRef;
202 I.Fun.RefQualifierLoc = RefQualifierLoc.getRawEncoding();
203 I.Fun.MutableLoc = MutableLoc.getRawEncoding();
204 I.Fun.ExceptionSpecType = ESpecType;
205 I.Fun.ExceptionSpecLocBeg = ESpecRange.getBegin().getRawEncoding();
206 I.Fun.ExceptionSpecLocEnd = ESpecRange.getEnd().getRawEncoding();
207 I.Fun.NumExceptionsOrDecls = 0;
208 I.Fun.Exceptions = nullptr;
209 I.Fun.NoexceptExpr = nullptr;
210 I.Fun.HasTrailingReturnType = TrailingReturnType.isUsable() ||
211 TrailingReturnType.isInvalid();
212 I.Fun.TrailingReturnType = TrailingReturnType.get();
213 I.Fun.MethodQualifiers = nullptr;
214 I.Fun.QualAttrFactory = nullptr;
215
216 if (MethodQualifiers && (MethodQualifiers->getTypeQualifiers() ||
217 MethodQualifiers->getAttributes().size())) {
218 auto &attrs = MethodQualifiers->getAttributes();
219 I.Fun.MethodQualifiers = new DeclSpec(attrs.getPool().getFactory());
220 MethodQualifiers->forEachCVRUQualifier(
221 [&](DeclSpec::TQ TypeQual, StringRef PrintName, SourceLocation SL) {
222 I.Fun.MethodQualifiers->SetTypeQual(TypeQual, SL);
223 });
224 I.Fun.MethodQualifiers->getAttributes().takeAllFrom(attrs);
225 I.Fun.MethodQualifiers->getAttributePool().takeAllFrom(attrs.getPool());
226 }
227
228 assert(I.Fun.ExceptionSpecType == ESpecType && "bitfield overflow");
229
230 // new[] a parameter array if needed.
231 if (NumParams) {
232 // If the 'InlineParams' in Declarator is unused and big enough, put our
233 // parameter list there (in an effort to avoid new/delete traffic). If it
234 // is already used (consider a function returning a function pointer) or too
235 // small (function with too many parameters), go to the heap.
236 if (!TheDeclarator.InlineStorageUsed &&
237 NumParams <= llvm::array_lengthof(TheDeclarator.InlineParams)) {
238 I.Fun.Params = TheDeclarator.InlineParams;
239 new (I.Fun.Params) ParamInfo[NumParams];
240 I.Fun.DeleteParams = false;
241 TheDeclarator.InlineStorageUsed = true;
242 } else {
243 I.Fun.Params = new DeclaratorChunk::ParamInfo[NumParams];
244 I.Fun.DeleteParams = true;
245 }
246 for (unsigned i = 0; i < NumParams; i++)
247 I.Fun.Params[i] = std::move(Params[i]);
248 }
249
250 // Check what exception specification information we should actually store.
251 switch (ESpecType) {
252 default: break; // By default, save nothing.
253 case EST_Dynamic:
254 // new[] an exception array if needed
255 if (NumExceptions) {
256 I.Fun.NumExceptionsOrDecls = NumExceptions;
257 I.Fun.Exceptions = new DeclaratorChunk::TypeAndRange[NumExceptions];
258 for (unsigned i = 0; i != NumExceptions; ++i) {
259 I.Fun.Exceptions[i].Ty = Exceptions[i];
260 I.Fun.Exceptions[i].Range = ExceptionRanges[i];
261 }
262 }
263 break;
264
265 case EST_DependentNoexcept:
266 case EST_NoexceptFalse:
267 case EST_NoexceptTrue:
268 I.Fun.NoexceptExpr = NoexceptExpr;
269 break;
270
271 case EST_Unparsed:
272 I.Fun.ExceptionSpecTokens = ExceptionSpecTokens;
273 break;
274 }
275
276 if (!DeclsInPrototype.empty()) {
277 assert(ESpecType == EST_None && NumExceptions == 0 &&
278 "cannot have exception specifiers and decls in prototype");
279 I.Fun.NumExceptionsOrDecls = DeclsInPrototype.size();
280 // Copy the array of decls into stable heap storage.
281 I.Fun.DeclsInPrototype = new NamedDecl *[DeclsInPrototype.size()];
282 for (size_t J = 0; J < DeclsInPrototype.size(); ++J)
283 I.Fun.DeclsInPrototype[J] = DeclsInPrototype[J];
284 }
285
286 return I;
287 }
288
setDecompositionBindings(SourceLocation LSquareLoc,ArrayRef<DecompositionDeclarator::Binding> Bindings,SourceLocation RSquareLoc)289 void Declarator::setDecompositionBindings(
290 SourceLocation LSquareLoc,
291 ArrayRef<DecompositionDeclarator::Binding> Bindings,
292 SourceLocation RSquareLoc) {
293 assert(!hasName() && "declarator given multiple names!");
294
295 BindingGroup.LSquareLoc = LSquareLoc;
296 BindingGroup.RSquareLoc = RSquareLoc;
297 BindingGroup.NumBindings = Bindings.size();
298 Range.setEnd(RSquareLoc);
299
300 // We're now past the identifier.
301 SetIdentifier(nullptr, LSquareLoc);
302 Name.EndLocation = RSquareLoc;
303
304 // Allocate storage for bindings and stash them away.
305 if (Bindings.size()) {
306 if (!InlineStorageUsed &&
307 Bindings.size() <= llvm::array_lengthof(InlineBindings)) {
308 BindingGroup.Bindings = InlineBindings;
309 BindingGroup.DeleteBindings = false;
310 InlineStorageUsed = true;
311 } else {
312 BindingGroup.Bindings =
313 new DecompositionDeclarator::Binding[Bindings.size()];
314 BindingGroup.DeleteBindings = true;
315 }
316 std::uninitialized_copy(Bindings.begin(), Bindings.end(),
317 BindingGroup.Bindings);
318 }
319 }
320
isDeclarationOfFunction() const321 bool Declarator::isDeclarationOfFunction() const {
322 for (unsigned i = 0, i_end = DeclTypeInfo.size(); i < i_end; ++i) {
323 switch (DeclTypeInfo[i].Kind) {
324 case DeclaratorChunk::Function:
325 return true;
326 case DeclaratorChunk::Paren:
327 continue;
328 case DeclaratorChunk::Pointer:
329 case DeclaratorChunk::Reference:
330 case DeclaratorChunk::Array:
331 case DeclaratorChunk::BlockPointer:
332 case DeclaratorChunk::MemberPointer:
333 case DeclaratorChunk::Pipe:
334 return false;
335 }
336 llvm_unreachable("Invalid type chunk");
337 }
338
339 switch (DS.getTypeSpecType()) {
340 case TST_atomic:
341 case TST_auto:
342 case TST_auto_type:
343 case TST_bool:
344 case TST_char:
345 case TST_char8:
346 case TST_char16:
347 case TST_char32:
348 case TST_class:
349 case TST_decimal128:
350 case TST_decimal32:
351 case TST_decimal64:
352 case TST_double:
353 case TST_Accum:
354 case TST_Fract:
355 case TST_Float16:
356 case TST_float128:
357 case TST_enum:
358 case TST_error:
359 case TST_float:
360 case TST_half:
361 case TST_int:
362 case TST_int128:
363 case TST_extint:
364 case TST_struct:
365 case TST_interface:
366 case TST_union:
367 case TST_unknown_anytype:
368 case TST_unspecified:
369 case TST_void:
370 case TST_wchar:
371 case TST_BFloat16:
372 #define GENERIC_IMAGE_TYPE(ImgType, Id) case TST_##ImgType##_t:
373 #include "clang/Basic/OpenCLImageTypes.def"
374 return false;
375
376 case TST_decltype_auto:
377 // This must have an initializer, so can't be a function declaration,
378 // even if the initializer has function type.
379 return false;
380
381 case TST_decltype:
382 case TST_typeofExpr:
383 if (Expr *E = DS.getRepAsExpr())
384 return E->getType()->isFunctionType();
385 return false;
386
387 case TST_underlyingType:
388 case TST_typename:
389 case TST_typeofType: {
390 QualType QT = DS.getRepAsType().get();
391 if (QT.isNull())
392 return false;
393
394 if (const LocInfoType *LIT = dyn_cast<LocInfoType>(QT))
395 QT = LIT->getType();
396
397 if (QT.isNull())
398 return false;
399
400 return QT->isFunctionType();
401 }
402 }
403
404 llvm_unreachable("Invalid TypeSpecType!");
405 }
406
isStaticMember()407 bool Declarator::isStaticMember() {
408 assert(getContext() == DeclaratorContext::MemberContext);
409 return getDeclSpec().getStorageClassSpec() == DeclSpec::SCS_static ||
410 (getName().Kind == UnqualifiedIdKind::IK_OperatorFunctionId &&
411 CXXMethodDecl::isStaticOverloadedOperator(
412 getName().OperatorFunctionId.Operator));
413 }
414
isCtorOrDtor()415 bool Declarator::isCtorOrDtor() {
416 return (getName().getKind() == UnqualifiedIdKind::IK_ConstructorName) ||
417 (getName().getKind() == UnqualifiedIdKind::IK_DestructorName);
418 }
419
forEachCVRUQualifier(llvm::function_ref<void (TQ,StringRef,SourceLocation)> Handle)420 void DeclSpec::forEachCVRUQualifier(
421 llvm::function_ref<void(TQ, StringRef, SourceLocation)> Handle) {
422 if (TypeQualifiers & TQ_const)
423 Handle(TQ_const, "const", TQ_constLoc);
424 if (TypeQualifiers & TQ_volatile)
425 Handle(TQ_volatile, "volatile", TQ_volatileLoc);
426 if (TypeQualifiers & TQ_restrict)
427 Handle(TQ_restrict, "restrict", TQ_restrictLoc);
428 if (TypeQualifiers & TQ_unaligned)
429 Handle(TQ_unaligned, "unaligned", TQ_unalignedLoc);
430 }
431
forEachQualifier(llvm::function_ref<void (TQ,StringRef,SourceLocation)> Handle)432 void DeclSpec::forEachQualifier(
433 llvm::function_ref<void(TQ, StringRef, SourceLocation)> Handle) {
434 forEachCVRUQualifier(Handle);
435 // FIXME: Add code below to iterate through the attributes and call Handle.
436 }
437
hasTagDefinition() const438 bool DeclSpec::hasTagDefinition() const {
439 if (!TypeSpecOwned)
440 return false;
441 return cast<TagDecl>(getRepAsDecl())->isCompleteDefinition();
442 }
443
444 /// getParsedSpecifiers - Return a bitmask of which flavors of specifiers this
445 /// declaration specifier includes.
446 ///
getParsedSpecifiers() const447 unsigned DeclSpec::getParsedSpecifiers() const {
448 unsigned Res = 0;
449 if (StorageClassSpec != SCS_unspecified ||
450 ThreadStorageClassSpec != TSCS_unspecified)
451 Res |= PQ_StorageClassSpecifier;
452
453 if (TypeQualifiers != TQ_unspecified)
454 Res |= PQ_TypeQualifier;
455
456 if (hasTypeSpecifier())
457 Res |= PQ_TypeSpecifier;
458
459 if (FS_inline_specified || FS_virtual_specified || hasExplicitSpecifier() ||
460 FS_noreturn_specified || FS_forceinline_specified)
461 Res |= PQ_FunctionSpecifier;
462 return Res;
463 }
464
BadSpecifier(T TNew,T TPrev,const char * & PrevSpec,unsigned & DiagID,bool IsExtension=true)465 template <class T> static bool BadSpecifier(T TNew, T TPrev,
466 const char *&PrevSpec,
467 unsigned &DiagID,
468 bool IsExtension = true) {
469 PrevSpec = DeclSpec::getSpecifierName(TPrev);
470 if (TNew != TPrev)
471 DiagID = diag::err_invalid_decl_spec_combination;
472 else
473 DiagID = IsExtension ? diag::ext_warn_duplicate_declspec :
474 diag::warn_duplicate_declspec;
475 return true;
476 }
477
getSpecifierName(DeclSpec::SCS S)478 const char *DeclSpec::getSpecifierName(DeclSpec::SCS S) {
479 switch (S) {
480 case DeclSpec::SCS_unspecified: return "unspecified";
481 case DeclSpec::SCS_typedef: return "typedef";
482 case DeclSpec::SCS_extern: return "extern";
483 case DeclSpec::SCS_static: return "static";
484 case DeclSpec::SCS_auto: return "auto";
485 case DeclSpec::SCS_register: return "register";
486 case DeclSpec::SCS_private_extern: return "__private_extern__";
487 case DeclSpec::SCS_mutable: return "mutable";
488 }
489 llvm_unreachable("Unknown typespec!");
490 }
491
getSpecifierName(DeclSpec::TSCS S)492 const char *DeclSpec::getSpecifierName(DeclSpec::TSCS S) {
493 switch (S) {
494 case DeclSpec::TSCS_unspecified: return "unspecified";
495 case DeclSpec::TSCS___thread: return "__thread";
496 case DeclSpec::TSCS_thread_local: return "thread_local";
497 case DeclSpec::TSCS__Thread_local: return "_Thread_local";
498 }
499 llvm_unreachable("Unknown typespec!");
500 }
501
getSpecifierName(TSW W)502 const char *DeclSpec::getSpecifierName(TSW W) {
503 switch (W) {
504 case TSW_unspecified: return "unspecified";
505 case TSW_short: return "short";
506 case TSW_long: return "long";
507 case TSW_longlong: return "long long";
508 }
509 llvm_unreachable("Unknown typespec!");
510 }
511
getSpecifierName(TSC C)512 const char *DeclSpec::getSpecifierName(TSC C) {
513 switch (C) {
514 case TSC_unspecified: return "unspecified";
515 case TSC_imaginary: return "imaginary";
516 case TSC_complex: return "complex";
517 }
518 llvm_unreachable("Unknown typespec!");
519 }
520
521
getSpecifierName(TSS S)522 const char *DeclSpec::getSpecifierName(TSS S) {
523 switch (S) {
524 case TSS_unspecified: return "unspecified";
525 case TSS_signed: return "signed";
526 case TSS_unsigned: return "unsigned";
527 }
528 llvm_unreachable("Unknown typespec!");
529 }
530
getSpecifierName(DeclSpec::TST T,const PrintingPolicy & Policy)531 const char *DeclSpec::getSpecifierName(DeclSpec::TST T,
532 const PrintingPolicy &Policy) {
533 switch (T) {
534 case DeclSpec::TST_unspecified: return "unspecified";
535 case DeclSpec::TST_void: return "void";
536 case DeclSpec::TST_char: return "char";
537 case DeclSpec::TST_wchar: return Policy.MSWChar ? "__wchar_t" : "wchar_t";
538 case DeclSpec::TST_char8: return "char8_t";
539 case DeclSpec::TST_char16: return "char16_t";
540 case DeclSpec::TST_char32: return "char32_t";
541 case DeclSpec::TST_int: return "int";
542 case DeclSpec::TST_int128: return "__int128";
543 case DeclSpec::TST_extint: return "_ExtInt";
544 case DeclSpec::TST_half: return "half";
545 case DeclSpec::TST_float: return "float";
546 case DeclSpec::TST_double: return "double";
547 case DeclSpec::TST_accum: return "_Accum";
548 case DeclSpec::TST_fract: return "_Fract";
549 case DeclSpec::TST_float16: return "_Float16";
550 case DeclSpec::TST_float128: return "__float128";
551 case DeclSpec::TST_bool: return Policy.Bool ? "bool" : "_Bool";
552 case DeclSpec::TST_decimal32: return "_Decimal32";
553 case DeclSpec::TST_decimal64: return "_Decimal64";
554 case DeclSpec::TST_decimal128: return "_Decimal128";
555 case DeclSpec::TST_enum: return "enum";
556 case DeclSpec::TST_class: return "class";
557 case DeclSpec::TST_union: return "union";
558 case DeclSpec::TST_struct: return "struct";
559 case DeclSpec::TST_interface: return "__interface";
560 case DeclSpec::TST_typename: return "type-name";
561 case DeclSpec::TST_typeofType:
562 case DeclSpec::TST_typeofExpr: return "typeof";
563 case DeclSpec::TST_auto: return "auto";
564 case DeclSpec::TST_auto_type: return "__auto_type";
565 case DeclSpec::TST_decltype: return "(decltype)";
566 case DeclSpec::TST_decltype_auto: return "decltype(auto)";
567 case DeclSpec::TST_underlyingType: return "__underlying_type";
568 case DeclSpec::TST_unknown_anytype: return "__unknown_anytype";
569 case DeclSpec::TST_atomic: return "_Atomic";
570 case DeclSpec::TST_BFloat16: return "__bf16";
571 #define GENERIC_IMAGE_TYPE(ImgType, Id) \
572 case DeclSpec::TST_##ImgType##_t: \
573 return #ImgType "_t";
574 #include "clang/Basic/OpenCLImageTypes.def"
575 case DeclSpec::TST_error: return "(error)";
576 }
577 llvm_unreachable("Unknown typespec!");
578 }
579
getSpecifierName(ConstexprSpecKind C)580 const char *DeclSpec::getSpecifierName(ConstexprSpecKind C) {
581 switch (C) {
582 case CSK_unspecified: return "unspecified";
583 case CSK_constexpr: return "constexpr";
584 case CSK_consteval: return "consteval";
585 case CSK_constinit: return "constinit";
586 }
587 llvm_unreachable("Unknown ConstexprSpecKind");
588 }
589
getSpecifierName(TQ T)590 const char *DeclSpec::getSpecifierName(TQ T) {
591 switch (T) {
592 case DeclSpec::TQ_unspecified: return "unspecified";
593 case DeclSpec::TQ_const: return "const";
594 case DeclSpec::TQ_restrict: return "restrict";
595 case DeclSpec::TQ_volatile: return "volatile";
596 case DeclSpec::TQ_atomic: return "_Atomic";
597 case DeclSpec::TQ_unaligned: return "__unaligned";
598 }
599 llvm_unreachable("Unknown typespec!");
600 }
601
SetStorageClassSpec(Sema & S,SCS SC,SourceLocation Loc,const char * & PrevSpec,unsigned & DiagID,const PrintingPolicy & Policy)602 bool DeclSpec::SetStorageClassSpec(Sema &S, SCS SC, SourceLocation Loc,
603 const char *&PrevSpec,
604 unsigned &DiagID,
605 const PrintingPolicy &Policy) {
606 // OpenCL v1.1 s6.8g: "The extern, static, auto and register storage-class
607 // specifiers are not supported.
608 // It seems sensible to prohibit private_extern too
609 // The cl_clang_storage_class_specifiers extension enables support for
610 // these storage-class specifiers.
611 // OpenCL v1.2 s6.8 changes this to "The auto and register storage-class
612 // specifiers are not supported."
613 if (S.getLangOpts().OpenCL &&
614 !S.getOpenCLOptions().isEnabled("cl_clang_storage_class_specifiers")) {
615 switch (SC) {
616 case SCS_extern:
617 case SCS_private_extern:
618 case SCS_static:
619 if (S.getLangOpts().OpenCLVersion < 120 &&
620 !S.getLangOpts().OpenCLCPlusPlus) {
621 DiagID = diag::err_opencl_unknown_type_specifier;
622 PrevSpec = getSpecifierName(SC);
623 return true;
624 }
625 break;
626 case SCS_auto:
627 case SCS_register:
628 DiagID = diag::err_opencl_unknown_type_specifier;
629 PrevSpec = getSpecifierName(SC);
630 return true;
631 default:
632 break;
633 }
634 }
635
636 if (StorageClassSpec != SCS_unspecified) {
637 // Maybe this is an attempt to use C++11 'auto' outside of C++11 mode.
638 bool isInvalid = true;
639 if (TypeSpecType == TST_unspecified && S.getLangOpts().CPlusPlus) {
640 if (SC == SCS_auto)
641 return SetTypeSpecType(TST_auto, Loc, PrevSpec, DiagID, Policy);
642 if (StorageClassSpec == SCS_auto) {
643 isInvalid = SetTypeSpecType(TST_auto, StorageClassSpecLoc,
644 PrevSpec, DiagID, Policy);
645 assert(!isInvalid && "auto SCS -> TST recovery failed");
646 }
647 }
648
649 // Changing storage class is allowed only if the previous one
650 // was the 'extern' that is part of a linkage specification and
651 // the new storage class is 'typedef'.
652 if (isInvalid &&
653 !(SCS_extern_in_linkage_spec &&
654 StorageClassSpec == SCS_extern &&
655 SC == SCS_typedef))
656 return BadSpecifier(SC, (SCS)StorageClassSpec, PrevSpec, DiagID);
657 }
658 StorageClassSpec = SC;
659 StorageClassSpecLoc = Loc;
660 assert((unsigned)SC == StorageClassSpec && "SCS constants overflow bitfield");
661 return false;
662 }
663
SetStorageClassSpecThread(TSCS TSC,SourceLocation Loc,const char * & PrevSpec,unsigned & DiagID)664 bool DeclSpec::SetStorageClassSpecThread(TSCS TSC, SourceLocation Loc,
665 const char *&PrevSpec,
666 unsigned &DiagID) {
667 if (ThreadStorageClassSpec != TSCS_unspecified)
668 return BadSpecifier(TSC, (TSCS)ThreadStorageClassSpec, PrevSpec, DiagID);
669
670 ThreadStorageClassSpec = TSC;
671 ThreadStorageClassSpecLoc = Loc;
672 return false;
673 }
674
675 /// These methods set the specified attribute of the DeclSpec, but return true
676 /// and ignore the request if invalid (e.g. "extern" then "auto" is
677 /// specified).
SetTypeSpecWidth(TSW W,SourceLocation Loc,const char * & PrevSpec,unsigned & DiagID,const PrintingPolicy & Policy)678 bool DeclSpec::SetTypeSpecWidth(TSW W, SourceLocation Loc,
679 const char *&PrevSpec,
680 unsigned &DiagID,
681 const PrintingPolicy &Policy) {
682 // Overwrite TSWRange.Begin only if TypeSpecWidth was unspecified, so that
683 // for 'long long' we will keep the source location of the first 'long'.
684 if (TypeSpecWidth == TSW_unspecified)
685 TSWRange.setBegin(Loc);
686 // Allow turning long -> long long.
687 else if (W != TSW_longlong || TypeSpecWidth != TSW_long)
688 return BadSpecifier(W, (TSW)TypeSpecWidth, PrevSpec, DiagID);
689 TypeSpecWidth = W;
690 // Remember location of the last 'long'
691 TSWRange.setEnd(Loc);
692 return false;
693 }
694
SetTypeSpecComplex(TSC C,SourceLocation Loc,const char * & PrevSpec,unsigned & DiagID)695 bool DeclSpec::SetTypeSpecComplex(TSC C, SourceLocation Loc,
696 const char *&PrevSpec,
697 unsigned &DiagID) {
698 if (TypeSpecComplex != TSC_unspecified)
699 return BadSpecifier(C, (TSC)TypeSpecComplex, PrevSpec, DiagID);
700 TypeSpecComplex = C;
701 TSCLoc = Loc;
702 return false;
703 }
704
SetTypeSpecSign(TSS S,SourceLocation Loc,const char * & PrevSpec,unsigned & DiagID)705 bool DeclSpec::SetTypeSpecSign(TSS S, SourceLocation Loc,
706 const char *&PrevSpec,
707 unsigned &DiagID) {
708 if (TypeSpecSign != TSS_unspecified)
709 return BadSpecifier(S, (TSS)TypeSpecSign, PrevSpec, DiagID);
710 TypeSpecSign = S;
711 TSSLoc = Loc;
712 return false;
713 }
714
SetTypeSpecType(TST T,SourceLocation Loc,const char * & PrevSpec,unsigned & DiagID,ParsedType Rep,const PrintingPolicy & Policy)715 bool DeclSpec::SetTypeSpecType(TST T, SourceLocation Loc,
716 const char *&PrevSpec,
717 unsigned &DiagID,
718 ParsedType Rep,
719 const PrintingPolicy &Policy) {
720 return SetTypeSpecType(T, Loc, Loc, PrevSpec, DiagID, Rep, Policy);
721 }
722
SetTypeSpecType(TST T,SourceLocation TagKwLoc,SourceLocation TagNameLoc,const char * & PrevSpec,unsigned & DiagID,ParsedType Rep,const PrintingPolicy & Policy)723 bool DeclSpec::SetTypeSpecType(TST T, SourceLocation TagKwLoc,
724 SourceLocation TagNameLoc,
725 const char *&PrevSpec,
726 unsigned &DiagID,
727 ParsedType Rep,
728 const PrintingPolicy &Policy) {
729 assert(isTypeRep(T) && "T does not store a type");
730 assert(Rep && "no type provided!");
731 if (TypeSpecType == TST_error)
732 return false;
733 if (TypeSpecType != TST_unspecified) {
734 PrevSpec = DeclSpec::getSpecifierName((TST) TypeSpecType, Policy);
735 DiagID = diag::err_invalid_decl_spec_combination;
736 return true;
737 }
738 TypeSpecType = T;
739 TypeRep = Rep;
740 TSTLoc = TagKwLoc;
741 TSTNameLoc = TagNameLoc;
742 TypeSpecOwned = false;
743 return false;
744 }
745
SetTypeSpecType(TST T,SourceLocation Loc,const char * & PrevSpec,unsigned & DiagID,Expr * Rep,const PrintingPolicy & Policy)746 bool DeclSpec::SetTypeSpecType(TST T, SourceLocation Loc,
747 const char *&PrevSpec,
748 unsigned &DiagID,
749 Expr *Rep,
750 const PrintingPolicy &Policy) {
751 assert(isExprRep(T) && "T does not store an expr");
752 assert(Rep && "no expression provided!");
753 if (TypeSpecType == TST_error)
754 return false;
755 if (TypeSpecType != TST_unspecified) {
756 PrevSpec = DeclSpec::getSpecifierName((TST) TypeSpecType, Policy);
757 DiagID = diag::err_invalid_decl_spec_combination;
758 return true;
759 }
760 TypeSpecType = T;
761 ExprRep = Rep;
762 TSTLoc = Loc;
763 TSTNameLoc = Loc;
764 TypeSpecOwned = false;
765 return false;
766 }
767
SetTypeSpecType(TST T,SourceLocation Loc,const char * & PrevSpec,unsigned & DiagID,Decl * Rep,bool Owned,const PrintingPolicy & Policy)768 bool DeclSpec::SetTypeSpecType(TST T, SourceLocation Loc,
769 const char *&PrevSpec,
770 unsigned &DiagID,
771 Decl *Rep, bool Owned,
772 const PrintingPolicy &Policy) {
773 return SetTypeSpecType(T, Loc, Loc, PrevSpec, DiagID, Rep, Owned, Policy);
774 }
775
SetTypeSpecType(TST T,SourceLocation TagKwLoc,SourceLocation TagNameLoc,const char * & PrevSpec,unsigned & DiagID,Decl * Rep,bool Owned,const PrintingPolicy & Policy)776 bool DeclSpec::SetTypeSpecType(TST T, SourceLocation TagKwLoc,
777 SourceLocation TagNameLoc,
778 const char *&PrevSpec,
779 unsigned &DiagID,
780 Decl *Rep, bool Owned,
781 const PrintingPolicy &Policy) {
782 assert(isDeclRep(T) && "T does not store a decl");
783 // Unlike the other cases, we don't assert that we actually get a decl.
784
785 if (TypeSpecType == TST_error)
786 return false;
787 if (TypeSpecType != TST_unspecified) {
788 PrevSpec = DeclSpec::getSpecifierName((TST) TypeSpecType, Policy);
789 DiagID = diag::err_invalid_decl_spec_combination;
790 return true;
791 }
792 TypeSpecType = T;
793 DeclRep = Rep;
794 TSTLoc = TagKwLoc;
795 TSTNameLoc = TagNameLoc;
796 TypeSpecOwned = Owned && Rep != nullptr;
797 return false;
798 }
799
SetTypeSpecType(TST T,SourceLocation Loc,const char * & PrevSpec,unsigned & DiagID,TemplateIdAnnotation * Rep,const PrintingPolicy & Policy)800 bool DeclSpec::SetTypeSpecType(TST T, SourceLocation Loc, const char *&PrevSpec,
801 unsigned &DiagID, TemplateIdAnnotation *Rep,
802 const PrintingPolicy &Policy) {
803 assert(T == TST_auto || T == TST_decltype_auto);
804 ConstrainedAuto = true;
805 TemplateIdRep = Rep;
806 return SetTypeSpecType(T, Loc, PrevSpec, DiagID, Policy);
807 }
808
SetTypeSpecType(TST T,SourceLocation Loc,const char * & PrevSpec,unsigned & DiagID,const PrintingPolicy & Policy)809 bool DeclSpec::SetTypeSpecType(TST T, SourceLocation Loc,
810 const char *&PrevSpec,
811 unsigned &DiagID,
812 const PrintingPolicy &Policy) {
813 assert(!isDeclRep(T) && !isTypeRep(T) && !isExprRep(T) &&
814 "rep required for these type-spec kinds!");
815 if (TypeSpecType == TST_error)
816 return false;
817 if (TypeSpecType != TST_unspecified) {
818 PrevSpec = DeclSpec::getSpecifierName((TST) TypeSpecType, Policy);
819 DiagID = diag::err_invalid_decl_spec_combination;
820 return true;
821 }
822 TSTLoc = Loc;
823 TSTNameLoc = Loc;
824 if (TypeAltiVecVector && (T == TST_bool) && !TypeAltiVecBool) {
825 TypeAltiVecBool = true;
826 return false;
827 }
828 TypeSpecType = T;
829 TypeSpecOwned = false;
830 return false;
831 }
832
SetTypeSpecSat(SourceLocation Loc,const char * & PrevSpec,unsigned & DiagID)833 bool DeclSpec::SetTypeSpecSat(SourceLocation Loc, const char *&PrevSpec,
834 unsigned &DiagID) {
835 // Cannot set twice
836 if (TypeSpecSat) {
837 DiagID = diag::warn_duplicate_declspec;
838 PrevSpec = "_Sat";
839 return true;
840 }
841 TypeSpecSat = true;
842 TSSatLoc = Loc;
843 return false;
844 }
845
SetTypeAltiVecVector(bool isAltiVecVector,SourceLocation Loc,const char * & PrevSpec,unsigned & DiagID,const PrintingPolicy & Policy)846 bool DeclSpec::SetTypeAltiVecVector(bool isAltiVecVector, SourceLocation Loc,
847 const char *&PrevSpec, unsigned &DiagID,
848 const PrintingPolicy &Policy) {
849 if (TypeSpecType == TST_error)
850 return false;
851 if (TypeSpecType != TST_unspecified) {
852 PrevSpec = DeclSpec::getSpecifierName((TST) TypeSpecType, Policy);
853 DiagID = diag::err_invalid_vector_decl_spec_combination;
854 return true;
855 }
856 TypeAltiVecVector = isAltiVecVector;
857 AltiVecLoc = Loc;
858 return false;
859 }
860
SetTypePipe(bool isPipe,SourceLocation Loc,const char * & PrevSpec,unsigned & DiagID,const PrintingPolicy & Policy)861 bool DeclSpec::SetTypePipe(bool isPipe, SourceLocation Loc,
862 const char *&PrevSpec, unsigned &DiagID,
863 const PrintingPolicy &Policy) {
864 if (TypeSpecType == TST_error)
865 return false;
866 if (TypeSpecType != TST_unspecified) {
867 PrevSpec = DeclSpec::getSpecifierName((TST)TypeSpecType, Policy);
868 DiagID = diag::err_invalid_decl_spec_combination;
869 return true;
870 }
871
872 if (isPipe) {
873 TypeSpecPipe = TSP_pipe;
874 }
875 return false;
876 }
877
SetTypeAltiVecPixel(bool isAltiVecPixel,SourceLocation Loc,const char * & PrevSpec,unsigned & DiagID,const PrintingPolicy & Policy)878 bool DeclSpec::SetTypeAltiVecPixel(bool isAltiVecPixel, SourceLocation Loc,
879 const char *&PrevSpec, unsigned &DiagID,
880 const PrintingPolicy &Policy) {
881 if (TypeSpecType == TST_error)
882 return false;
883 if (!TypeAltiVecVector || TypeAltiVecPixel ||
884 (TypeSpecType != TST_unspecified)) {
885 PrevSpec = DeclSpec::getSpecifierName((TST) TypeSpecType, Policy);
886 DiagID = diag::err_invalid_pixel_decl_spec_combination;
887 return true;
888 }
889 TypeAltiVecPixel = isAltiVecPixel;
890 TSTLoc = Loc;
891 TSTNameLoc = Loc;
892 return false;
893 }
894
SetTypeAltiVecBool(bool isAltiVecBool,SourceLocation Loc,const char * & PrevSpec,unsigned & DiagID,const PrintingPolicy & Policy)895 bool DeclSpec::SetTypeAltiVecBool(bool isAltiVecBool, SourceLocation Loc,
896 const char *&PrevSpec, unsigned &DiagID,
897 const PrintingPolicy &Policy) {
898 if (TypeSpecType == TST_error)
899 return false;
900 if (!TypeAltiVecVector || TypeAltiVecBool ||
901 (TypeSpecType != TST_unspecified)) {
902 PrevSpec = DeclSpec::getSpecifierName((TST) TypeSpecType, Policy);
903 DiagID = diag::err_invalid_vector_bool_decl_spec;
904 return true;
905 }
906 TypeAltiVecBool = isAltiVecBool;
907 TSTLoc = Loc;
908 TSTNameLoc = Loc;
909 return false;
910 }
911
SetTypeSpecError()912 bool DeclSpec::SetTypeSpecError() {
913 TypeSpecType = TST_error;
914 TypeSpecOwned = false;
915 TSTLoc = SourceLocation();
916 TSTNameLoc = SourceLocation();
917 return false;
918 }
919
SetExtIntType(SourceLocation KWLoc,Expr * BitsExpr,const char * & PrevSpec,unsigned & DiagID,const PrintingPolicy & Policy)920 bool DeclSpec::SetExtIntType(SourceLocation KWLoc, Expr *BitsExpr,
921 const char *&PrevSpec, unsigned &DiagID,
922 const PrintingPolicy &Policy) {
923 assert(BitsExpr && "no expression provided!");
924 if (TypeSpecType == TST_error)
925 return false;
926
927 if (TypeSpecType != TST_unspecified) {
928 PrevSpec = DeclSpec::getSpecifierName((TST) TypeSpecType, Policy);
929 DiagID = diag::err_invalid_decl_spec_combination;
930 return true;
931 }
932
933 TypeSpecType = TST_extint;
934 ExprRep = BitsExpr;
935 TSTLoc = KWLoc;
936 TSTNameLoc = KWLoc;
937 TypeSpecOwned = false;
938 return false;
939 }
940
SetTypeQual(TQ T,SourceLocation Loc,const char * & PrevSpec,unsigned & DiagID,const LangOptions & Lang)941 bool DeclSpec::SetTypeQual(TQ T, SourceLocation Loc, const char *&PrevSpec,
942 unsigned &DiagID, const LangOptions &Lang) {
943 // Duplicates are permitted in C99 onwards, but are not permitted in C89 or
944 // C++. However, since this is likely not what the user intended, we will
945 // always warn. We do not need to set the qualifier's location since we
946 // already have it.
947 if (TypeQualifiers & T) {
948 bool IsExtension = true;
949 if (Lang.C99)
950 IsExtension = false;
951 return BadSpecifier(T, T, PrevSpec, DiagID, IsExtension);
952 }
953
954 return SetTypeQual(T, Loc);
955 }
956
SetTypeQual(TQ T,SourceLocation Loc)957 bool DeclSpec::SetTypeQual(TQ T, SourceLocation Loc) {
958 TypeQualifiers |= T;
959
960 switch (T) {
961 case TQ_unspecified: break;
962 case TQ_const: TQ_constLoc = Loc; return false;
963 case TQ_restrict: TQ_restrictLoc = Loc; return false;
964 case TQ_volatile: TQ_volatileLoc = Loc; return false;
965 case TQ_unaligned: TQ_unalignedLoc = Loc; return false;
966 case TQ_atomic: TQ_atomicLoc = Loc; return false;
967 }
968
969 llvm_unreachable("Unknown type qualifier!");
970 }
971
setFunctionSpecInline(SourceLocation Loc,const char * & PrevSpec,unsigned & DiagID)972 bool DeclSpec::setFunctionSpecInline(SourceLocation Loc, const char *&PrevSpec,
973 unsigned &DiagID) {
974 // 'inline inline' is ok. However, since this is likely not what the user
975 // intended, we will always warn, similar to duplicates of type qualifiers.
976 if (FS_inline_specified) {
977 DiagID = diag::warn_duplicate_declspec;
978 PrevSpec = "inline";
979 return true;
980 }
981 FS_inline_specified = true;
982 FS_inlineLoc = Loc;
983 return false;
984 }
985
setFunctionSpecForceInline(SourceLocation Loc,const char * & PrevSpec,unsigned & DiagID)986 bool DeclSpec::setFunctionSpecForceInline(SourceLocation Loc, const char *&PrevSpec,
987 unsigned &DiagID) {
988 if (FS_forceinline_specified) {
989 DiagID = diag::warn_duplicate_declspec;
990 PrevSpec = "__forceinline";
991 return true;
992 }
993 FS_forceinline_specified = true;
994 FS_forceinlineLoc = Loc;
995 return false;
996 }
997
setFunctionSpecVirtual(SourceLocation Loc,const char * & PrevSpec,unsigned & DiagID)998 bool DeclSpec::setFunctionSpecVirtual(SourceLocation Loc,
999 const char *&PrevSpec,
1000 unsigned &DiagID) {
1001 // 'virtual virtual' is ok, but warn as this is likely not what the user
1002 // intended.
1003 if (FS_virtual_specified) {
1004 DiagID = diag::warn_duplicate_declspec;
1005 PrevSpec = "virtual";
1006 return true;
1007 }
1008 FS_virtual_specified = true;
1009 FS_virtualLoc = Loc;
1010 return false;
1011 }
1012
setFunctionSpecExplicit(SourceLocation Loc,const char * & PrevSpec,unsigned & DiagID,ExplicitSpecifier ExplicitSpec,SourceLocation CloseParenLoc)1013 bool DeclSpec::setFunctionSpecExplicit(SourceLocation Loc,
1014 const char *&PrevSpec, unsigned &DiagID,
1015 ExplicitSpecifier ExplicitSpec,
1016 SourceLocation CloseParenLoc) {
1017 assert((ExplicitSpec.getKind() == ExplicitSpecKind::ResolvedTrue ||
1018 ExplicitSpec.getExpr()) &&
1019 "invalid ExplicitSpecifier");
1020 // 'explicit explicit' is ok, but warn as this is likely not what the user
1021 // intended.
1022 if (hasExplicitSpecifier()) {
1023 DiagID = (ExplicitSpec.getExpr() || FS_explicit_specifier.getExpr())
1024 ? diag::err_duplicate_declspec
1025 : diag::ext_warn_duplicate_declspec;
1026 PrevSpec = "explicit";
1027 return true;
1028 }
1029 FS_explicit_specifier = ExplicitSpec;
1030 FS_explicitLoc = Loc;
1031 FS_explicitCloseParenLoc = CloseParenLoc;
1032 return false;
1033 }
1034
setFunctionSpecNoreturn(SourceLocation Loc,const char * & PrevSpec,unsigned & DiagID)1035 bool DeclSpec::setFunctionSpecNoreturn(SourceLocation Loc,
1036 const char *&PrevSpec,
1037 unsigned &DiagID) {
1038 // '_Noreturn _Noreturn' is ok, but warn as this is likely not what the user
1039 // intended.
1040 if (FS_noreturn_specified) {
1041 DiagID = diag::warn_duplicate_declspec;
1042 PrevSpec = "_Noreturn";
1043 return true;
1044 }
1045 FS_noreturn_specified = true;
1046 FS_noreturnLoc = Loc;
1047 return false;
1048 }
1049
SetFriendSpec(SourceLocation Loc,const char * & PrevSpec,unsigned & DiagID)1050 bool DeclSpec::SetFriendSpec(SourceLocation Loc, const char *&PrevSpec,
1051 unsigned &DiagID) {
1052 if (Friend_specified) {
1053 PrevSpec = "friend";
1054 // Keep the later location, so that we can later diagnose ill-formed
1055 // declarations like 'friend class X friend;'. Per [class.friend]p3,
1056 // 'friend' must be the first token in a friend declaration that is
1057 // not a function declaration.
1058 FriendLoc = Loc;
1059 DiagID = diag::warn_duplicate_declspec;
1060 return true;
1061 }
1062
1063 Friend_specified = true;
1064 FriendLoc = Loc;
1065 return false;
1066 }
1067
setModulePrivateSpec(SourceLocation Loc,const char * & PrevSpec,unsigned & DiagID)1068 bool DeclSpec::setModulePrivateSpec(SourceLocation Loc, const char *&PrevSpec,
1069 unsigned &DiagID) {
1070 if (isModulePrivateSpecified()) {
1071 PrevSpec = "__module_private__";
1072 DiagID = diag::ext_warn_duplicate_declspec;
1073 return true;
1074 }
1075
1076 ModulePrivateLoc = Loc;
1077 return false;
1078 }
1079
SetConstexprSpec(ConstexprSpecKind ConstexprKind,SourceLocation Loc,const char * & PrevSpec,unsigned & DiagID)1080 bool DeclSpec::SetConstexprSpec(ConstexprSpecKind ConstexprKind,
1081 SourceLocation Loc, const char *&PrevSpec,
1082 unsigned &DiagID) {
1083 if (getConstexprSpecifier() != CSK_unspecified)
1084 return BadSpecifier(ConstexprKind, getConstexprSpecifier(), PrevSpec,
1085 DiagID);
1086 ConstexprSpecifier = ConstexprKind;
1087 ConstexprLoc = Loc;
1088 return false;
1089 }
1090
SaveWrittenBuiltinSpecs()1091 void DeclSpec::SaveWrittenBuiltinSpecs() {
1092 writtenBS.Sign = getTypeSpecSign();
1093 writtenBS.Width = getTypeSpecWidth();
1094 writtenBS.Type = getTypeSpecType();
1095 // Search the list of attributes for the presence of a mode attribute.
1096 writtenBS.ModeAttr = getAttributes().hasAttribute(ParsedAttr::AT_Mode);
1097 }
1098
1099 /// Finish - This does final analysis of the declspec, rejecting things like
1100 /// "_Imaginary" (lacking an FP type). This returns a diagnostic to issue or
1101 /// diag::NUM_DIAGNOSTICS if there is no error. After calling this method,
1102 /// DeclSpec is guaranteed self-consistent, even if an error occurred.
Finish(Sema & S,const PrintingPolicy & Policy)1103 void DeclSpec::Finish(Sema &S, const PrintingPolicy &Policy) {
1104 // Before possibly changing their values, save specs as written.
1105 SaveWrittenBuiltinSpecs();
1106
1107 // Check the type specifier components first. No checking for an invalid
1108 // type.
1109 if (TypeSpecType == TST_error)
1110 return;
1111
1112 // If decltype(auto) is used, no other type specifiers are permitted.
1113 if (TypeSpecType == TST_decltype_auto &&
1114 (TypeSpecWidth != TSW_unspecified ||
1115 TypeSpecComplex != TSC_unspecified ||
1116 TypeSpecSign != TSS_unspecified ||
1117 TypeAltiVecVector || TypeAltiVecPixel || TypeAltiVecBool ||
1118 TypeQualifiers)) {
1119 const unsigned NumLocs = 9;
1120 SourceLocation ExtraLocs[NumLocs] = {
1121 TSWRange.getBegin(), TSCLoc, TSSLoc,
1122 AltiVecLoc, TQ_constLoc, TQ_restrictLoc,
1123 TQ_volatileLoc, TQ_atomicLoc, TQ_unalignedLoc};
1124 FixItHint Hints[NumLocs];
1125 SourceLocation FirstLoc;
1126 for (unsigned I = 0; I != NumLocs; ++I) {
1127 if (ExtraLocs[I].isValid()) {
1128 if (FirstLoc.isInvalid() ||
1129 S.getSourceManager().isBeforeInTranslationUnit(ExtraLocs[I],
1130 FirstLoc))
1131 FirstLoc = ExtraLocs[I];
1132 Hints[I] = FixItHint::CreateRemoval(ExtraLocs[I]);
1133 }
1134 }
1135 TypeSpecWidth = TSW_unspecified;
1136 TypeSpecComplex = TSC_unspecified;
1137 TypeSpecSign = TSS_unspecified;
1138 TypeAltiVecVector = TypeAltiVecPixel = TypeAltiVecBool = false;
1139 TypeQualifiers = 0;
1140 S.Diag(TSTLoc, diag::err_decltype_auto_cannot_be_combined)
1141 << Hints[0] << Hints[1] << Hints[2] << Hints[3]
1142 << Hints[4] << Hints[5] << Hints[6] << Hints[7];
1143 }
1144
1145 // Validate and finalize AltiVec vector declspec.
1146 if (TypeAltiVecVector) {
1147 if (TypeAltiVecBool) {
1148 // Sign specifiers are not allowed with vector bool. (PIM 2.1)
1149 if (TypeSpecSign != TSS_unspecified) {
1150 S.Diag(TSSLoc, diag::err_invalid_vector_bool_decl_spec)
1151 << getSpecifierName((TSS)TypeSpecSign);
1152 }
1153 // Only char/int are valid with vector bool prior to Power10.
1154 // Power10 adds instructions that produce vector bool data
1155 // for quadwords as well so allow vector bool __int128.
1156 if (((TypeSpecType != TST_unspecified) && (TypeSpecType != TST_char) &&
1157 (TypeSpecType != TST_int) && (TypeSpecType != TST_int128)) ||
1158 TypeAltiVecPixel) {
1159 S.Diag(TSTLoc, diag::err_invalid_vector_bool_decl_spec)
1160 << (TypeAltiVecPixel ? "__pixel" :
1161 getSpecifierName((TST)TypeSpecType, Policy));
1162 }
1163 // vector bool __int128 requires Power10.
1164 if ((TypeSpecType == TST_int128) &&
1165 (!S.Context.getTargetInfo().hasFeature("power10-vector")))
1166 S.Diag(TSTLoc, diag::err_invalid_vector_bool_int128_decl_spec);
1167
1168 // Only 'short' and 'long long' are valid with vector bool. (PIM 2.1)
1169 if ((TypeSpecWidth != TSW_unspecified) && (TypeSpecWidth != TSW_short) &&
1170 (TypeSpecWidth != TSW_longlong))
1171 S.Diag(TSWRange.getBegin(), diag::err_invalid_vector_bool_decl_spec)
1172 << getSpecifierName((TSW)TypeSpecWidth);
1173
1174 // vector bool long long requires VSX support or ZVector.
1175 if ((TypeSpecWidth == TSW_longlong) &&
1176 (!S.Context.getTargetInfo().hasFeature("vsx")) &&
1177 (!S.Context.getTargetInfo().hasFeature("power8-vector")) &&
1178 !S.getLangOpts().ZVector)
1179 S.Diag(TSTLoc, diag::err_invalid_vector_long_long_decl_spec);
1180
1181 // Elements of vector bool are interpreted as unsigned. (PIM 2.1)
1182 if ((TypeSpecType == TST_char) || (TypeSpecType == TST_int) ||
1183 (TypeSpecType == TST_int128) || (TypeSpecWidth != TSW_unspecified))
1184 TypeSpecSign = TSS_unsigned;
1185 } else if (TypeSpecType == TST_double) {
1186 // vector long double and vector long long double are never allowed.
1187 // vector double is OK for Power7 and later, and ZVector.
1188 if (TypeSpecWidth == TSW_long || TypeSpecWidth == TSW_longlong)
1189 S.Diag(TSWRange.getBegin(),
1190 diag::err_invalid_vector_long_double_decl_spec);
1191 else if (!S.Context.getTargetInfo().hasFeature("vsx") &&
1192 !S.getLangOpts().ZVector)
1193 S.Diag(TSTLoc, diag::err_invalid_vector_double_decl_spec);
1194 } else if (TypeSpecType == TST_float) {
1195 // vector float is unsupported for ZVector unless we have the
1196 // vector-enhancements facility 1 (ISA revision 12).
1197 if (S.getLangOpts().ZVector &&
1198 !S.Context.getTargetInfo().hasFeature("arch12"))
1199 S.Diag(TSTLoc, diag::err_invalid_vector_float_decl_spec);
1200 } else if (TypeSpecWidth == TSW_long) {
1201 // vector long is unsupported for ZVector and deprecated for AltiVec.
1202 if (S.getLangOpts().ZVector)
1203 S.Diag(TSWRange.getBegin(), diag::err_invalid_vector_long_decl_spec);
1204 else
1205 S.Diag(TSWRange.getBegin(),
1206 diag::warn_vector_long_decl_spec_combination)
1207 << getSpecifierName((TST)TypeSpecType, Policy);
1208 }
1209
1210 if (TypeAltiVecPixel) {
1211 //TODO: perform validation
1212 TypeSpecType = TST_int;
1213 TypeSpecSign = TSS_unsigned;
1214 TypeSpecWidth = TSW_short;
1215 TypeSpecOwned = false;
1216 }
1217 }
1218
1219 bool IsFixedPointType =
1220 TypeSpecType == TST_accum || TypeSpecType == TST_fract;
1221
1222 // signed/unsigned are only valid with int/char/wchar_t/_Accum.
1223 if (TypeSpecSign != TSS_unspecified) {
1224 if (TypeSpecType == TST_unspecified)
1225 TypeSpecType = TST_int; // unsigned -> unsigned int, signed -> signed int.
1226 else if (TypeSpecType != TST_int && TypeSpecType != TST_int128 &&
1227 TypeSpecType != TST_char && TypeSpecType != TST_wchar &&
1228 !IsFixedPointType && TypeSpecType != TST_extint) {
1229 S.Diag(TSSLoc, diag::err_invalid_sign_spec)
1230 << getSpecifierName((TST)TypeSpecType, Policy);
1231 // signed double -> double.
1232 TypeSpecSign = TSS_unspecified;
1233 }
1234 }
1235
1236 // Validate the width of the type.
1237 switch (TypeSpecWidth) {
1238 case TSW_unspecified: break;
1239 case TSW_short: // short int
1240 case TSW_longlong: // long long int
1241 if (TypeSpecType == TST_unspecified)
1242 TypeSpecType = TST_int; // short -> short int, long long -> long long int.
1243 else if (!(TypeSpecType == TST_int ||
1244 (IsFixedPointType && TypeSpecWidth != TSW_longlong))) {
1245 S.Diag(TSWRange.getBegin(), diag::err_invalid_width_spec)
1246 << (int)TypeSpecWidth << getSpecifierName((TST)TypeSpecType, Policy);
1247 TypeSpecType = TST_int;
1248 TypeSpecSat = false;
1249 TypeSpecOwned = false;
1250 }
1251 break;
1252 case TSW_long: // long double, long int
1253 if (TypeSpecType == TST_unspecified)
1254 TypeSpecType = TST_int; // long -> long int.
1255 else if (TypeSpecType != TST_int && TypeSpecType != TST_double &&
1256 !IsFixedPointType) {
1257 S.Diag(TSWRange.getBegin(), diag::err_invalid_width_spec)
1258 << (int)TypeSpecWidth << getSpecifierName((TST)TypeSpecType, Policy);
1259 TypeSpecType = TST_int;
1260 TypeSpecSat = false;
1261 TypeSpecOwned = false;
1262 }
1263 break;
1264 }
1265
1266 // TODO: if the implementation does not implement _Complex or _Imaginary,
1267 // disallow their use. Need information about the backend.
1268 if (TypeSpecComplex != TSC_unspecified) {
1269 if (TypeSpecType == TST_unspecified) {
1270 S.Diag(TSCLoc, diag::ext_plain_complex)
1271 << FixItHint::CreateInsertion(
1272 S.getLocForEndOfToken(getTypeSpecComplexLoc()),
1273 " double");
1274 TypeSpecType = TST_double; // _Complex -> _Complex double.
1275 } else if (TypeSpecType == TST_int || TypeSpecType == TST_char ||
1276 TypeSpecType == TST_extint) {
1277 // Note that this intentionally doesn't include _Complex _Bool.
1278 if (!S.getLangOpts().CPlusPlus)
1279 S.Diag(TSTLoc, diag::ext_integer_complex);
1280 } else if (TypeSpecType != TST_float && TypeSpecType != TST_double &&
1281 TypeSpecType != TST_float128) {
1282 S.Diag(TSCLoc, diag::err_invalid_complex_spec)
1283 << getSpecifierName((TST)TypeSpecType, Policy);
1284 TypeSpecComplex = TSC_unspecified;
1285 }
1286 }
1287
1288 // C11 6.7.1/3, C++11 [dcl.stc]p1, GNU TLS: __thread, thread_local and
1289 // _Thread_local can only appear with the 'static' and 'extern' storage class
1290 // specifiers. We also allow __private_extern__ as an extension.
1291 if (ThreadStorageClassSpec != TSCS_unspecified) {
1292 switch (StorageClassSpec) {
1293 case SCS_unspecified:
1294 case SCS_extern:
1295 case SCS_private_extern:
1296 case SCS_static:
1297 break;
1298 default:
1299 if (S.getSourceManager().isBeforeInTranslationUnit(
1300 getThreadStorageClassSpecLoc(), getStorageClassSpecLoc()))
1301 S.Diag(getStorageClassSpecLoc(),
1302 diag::err_invalid_decl_spec_combination)
1303 << DeclSpec::getSpecifierName(getThreadStorageClassSpec())
1304 << SourceRange(getThreadStorageClassSpecLoc());
1305 else
1306 S.Diag(getThreadStorageClassSpecLoc(),
1307 diag::err_invalid_decl_spec_combination)
1308 << DeclSpec::getSpecifierName(getStorageClassSpec())
1309 << SourceRange(getStorageClassSpecLoc());
1310 // Discard the thread storage class specifier to recover.
1311 ThreadStorageClassSpec = TSCS_unspecified;
1312 ThreadStorageClassSpecLoc = SourceLocation();
1313 }
1314 }
1315
1316 // If no type specifier was provided and we're parsing a language where
1317 // the type specifier is not optional, but we got 'auto' as a storage
1318 // class specifier, then assume this is an attempt to use C++0x's 'auto'
1319 // type specifier.
1320 if (S.getLangOpts().CPlusPlus &&
1321 TypeSpecType == TST_unspecified && StorageClassSpec == SCS_auto) {
1322 TypeSpecType = TST_auto;
1323 StorageClassSpec = SCS_unspecified;
1324 TSTLoc = TSTNameLoc = StorageClassSpecLoc;
1325 StorageClassSpecLoc = SourceLocation();
1326 }
1327 // Diagnose if we've recovered from an ill-formed 'auto' storage class
1328 // specifier in a pre-C++11 dialect of C++.
1329 if (!S.getLangOpts().CPlusPlus11 && TypeSpecType == TST_auto)
1330 S.Diag(TSTLoc, diag::ext_auto_type_specifier);
1331 if (S.getLangOpts().CPlusPlus && !S.getLangOpts().CPlusPlus11 &&
1332 StorageClassSpec == SCS_auto)
1333 S.Diag(StorageClassSpecLoc, diag::warn_auto_storage_class)
1334 << FixItHint::CreateRemoval(StorageClassSpecLoc);
1335 if (TypeSpecType == TST_char8)
1336 S.Diag(TSTLoc, diag::warn_cxx17_compat_unicode_type);
1337 else if (TypeSpecType == TST_char16 || TypeSpecType == TST_char32)
1338 S.Diag(TSTLoc, diag::warn_cxx98_compat_unicode_type)
1339 << (TypeSpecType == TST_char16 ? "char16_t" : "char32_t");
1340 if (getConstexprSpecifier() == CSK_constexpr)
1341 S.Diag(ConstexprLoc, diag::warn_cxx98_compat_constexpr);
1342 else if (getConstexprSpecifier() == CSK_consteval)
1343 S.Diag(ConstexprLoc, diag::warn_cxx20_compat_consteval);
1344 else if (getConstexprSpecifier() == CSK_constinit)
1345 S.Diag(ConstexprLoc, diag::warn_cxx20_compat_constinit);
1346 // C++ [class.friend]p6:
1347 // No storage-class-specifier shall appear in the decl-specifier-seq
1348 // of a friend declaration.
1349 if (isFriendSpecified() &&
1350 (getStorageClassSpec() || getThreadStorageClassSpec())) {
1351 SmallString<32> SpecName;
1352 SourceLocation SCLoc;
1353 FixItHint StorageHint, ThreadHint;
1354
1355 if (DeclSpec::SCS SC = getStorageClassSpec()) {
1356 SpecName = getSpecifierName(SC);
1357 SCLoc = getStorageClassSpecLoc();
1358 StorageHint = FixItHint::CreateRemoval(SCLoc);
1359 }
1360
1361 if (DeclSpec::TSCS TSC = getThreadStorageClassSpec()) {
1362 if (!SpecName.empty()) SpecName += " ";
1363 SpecName += getSpecifierName(TSC);
1364 SCLoc = getThreadStorageClassSpecLoc();
1365 ThreadHint = FixItHint::CreateRemoval(SCLoc);
1366 }
1367
1368 S.Diag(SCLoc, diag::err_friend_decl_spec)
1369 << SpecName << StorageHint << ThreadHint;
1370
1371 ClearStorageClassSpecs();
1372 }
1373
1374 // C++11 [dcl.fct.spec]p5:
1375 // The virtual specifier shall be used only in the initial
1376 // declaration of a non-static class member function;
1377 // C++11 [dcl.fct.spec]p6:
1378 // The explicit specifier shall be used only in the declaration of
1379 // a constructor or conversion function within its class
1380 // definition;
1381 if (isFriendSpecified() && (isVirtualSpecified() || hasExplicitSpecifier())) {
1382 StringRef Keyword;
1383 FixItHint Hint;
1384 SourceLocation SCLoc;
1385
1386 if (isVirtualSpecified()) {
1387 Keyword = "virtual";
1388 SCLoc = getVirtualSpecLoc();
1389 Hint = FixItHint::CreateRemoval(SCLoc);
1390 } else {
1391 Keyword = "explicit";
1392 SCLoc = getExplicitSpecLoc();
1393 Hint = FixItHint::CreateRemoval(getExplicitSpecRange());
1394 }
1395
1396 S.Diag(SCLoc, diag::err_friend_decl_spec)
1397 << Keyword << Hint;
1398
1399 FS_virtual_specified = false;
1400 FS_explicit_specifier = ExplicitSpecifier();
1401 FS_virtualLoc = FS_explicitLoc = SourceLocation();
1402 }
1403
1404 assert(!TypeSpecOwned || isDeclRep((TST) TypeSpecType));
1405
1406 // Okay, now we can infer the real type.
1407
1408 // TODO: return "auto function" and other bad things based on the real type.
1409
1410 // 'data definition has no type or storage class'?
1411 }
1412
isMissingDeclaratorOk()1413 bool DeclSpec::isMissingDeclaratorOk() {
1414 TST tst = getTypeSpecType();
1415 return isDeclRep(tst) && getRepAsDecl() != nullptr &&
1416 StorageClassSpec != DeclSpec::SCS_typedef;
1417 }
1418
setOperatorFunctionId(SourceLocation OperatorLoc,OverloadedOperatorKind Op,SourceLocation SymbolLocations[3])1419 void UnqualifiedId::setOperatorFunctionId(SourceLocation OperatorLoc,
1420 OverloadedOperatorKind Op,
1421 SourceLocation SymbolLocations[3]) {
1422 Kind = UnqualifiedIdKind::IK_OperatorFunctionId;
1423 StartLocation = OperatorLoc;
1424 EndLocation = OperatorLoc;
1425 OperatorFunctionId.Operator = Op;
1426 for (unsigned I = 0; I != 3; ++I) {
1427 OperatorFunctionId.SymbolLocations[I] = SymbolLocations[I].getRawEncoding();
1428
1429 if (SymbolLocations[I].isValid())
1430 EndLocation = SymbolLocations[I];
1431 }
1432 }
1433
SetSpecifier(Specifier VS,SourceLocation Loc,const char * & PrevSpec)1434 bool VirtSpecifiers::SetSpecifier(Specifier VS, SourceLocation Loc,
1435 const char *&PrevSpec) {
1436 if (!FirstLocation.isValid())
1437 FirstLocation = Loc;
1438 LastLocation = Loc;
1439 LastSpecifier = VS;
1440
1441 if (Specifiers & VS) {
1442 PrevSpec = getSpecifierName(VS);
1443 return true;
1444 }
1445
1446 Specifiers |= VS;
1447
1448 switch (VS) {
1449 default: llvm_unreachable("Unknown specifier!");
1450 case VS_Override: VS_overrideLoc = Loc; break;
1451 case VS_GNU_Final:
1452 case VS_Sealed:
1453 case VS_Final: VS_finalLoc = Loc; break;
1454 }
1455
1456 return false;
1457 }
1458
getSpecifierName(Specifier VS)1459 const char *VirtSpecifiers::getSpecifierName(Specifier VS) {
1460 switch (VS) {
1461 default: llvm_unreachable("Unknown specifier");
1462 case VS_Override: return "override";
1463 case VS_Final: return "final";
1464 case VS_GNU_Final: return "__final";
1465 case VS_Sealed: return "sealed";
1466 }
1467 }
1468