xref: /llvm-project/clang/lib/Parse/ParseObjc.cpp (revision 387ff7f8d6dae7ae39e73f4d7bc081a7f4fbca5d)
1 //===--- ParseObjC.cpp - Objective C Parsing ------------------------------===//
2 //
3 //                     The LLVM Compiler Infrastructure
4 //
5 // This file is distributed under the University of Illinois Open Source
6 // License. See LICENSE.TXT for details.
7 //
8 //===----------------------------------------------------------------------===//
9 //
10 //  This file implements the Objective-C portions of the Parser interface.
11 //
12 //===----------------------------------------------------------------------===//
13 
14 #include "clang/Parse/Parser.h"
15 #include "RAIIObjectsForParser.h"
16 #include "clang/AST/ASTContext.h"
17 #include "clang/Basic/CharInfo.h"
18 #include "clang/Parse/ParseDiagnostic.h"
19 #include "clang/Sema/DeclSpec.h"
20 #include "clang/Sema/PrettyDeclStackTrace.h"
21 #include "clang/Sema/Scope.h"
22 #include "llvm/ADT/SmallVector.h"
23 #include "llvm/ADT/StringExtras.h"
24 using namespace clang;
25 
26 /// Skips attributes after an Objective-C @ directive. Emits a diagnostic.
27 void Parser::MaybeSkipAttributes(tok::ObjCKeywordKind Kind) {
28   ParsedAttributes attrs(AttrFactory);
29   if (Tok.is(tok::kw___attribute)) {
30     if (Kind == tok::objc_interface || Kind == tok::objc_protocol)
31       Diag(Tok, diag::err_objc_postfix_attribute_hint)
32           << (Kind == tok::objc_protocol);
33     else
34       Diag(Tok, diag::err_objc_postfix_attribute);
35     ParseGNUAttributes(attrs);
36   }
37 }
38 
39 /// ParseObjCAtDirectives - Handle parts of the external-declaration production:
40 ///       external-declaration: [C99 6.9]
41 /// [OBJC]  objc-class-definition
42 /// [OBJC]  objc-class-declaration
43 /// [OBJC]  objc-alias-declaration
44 /// [OBJC]  objc-protocol-definition
45 /// [OBJC]  objc-method-definition
46 /// [OBJC]  '@' 'end'
47 Parser::DeclGroupPtrTy Parser::ParseObjCAtDirectives() {
48   SourceLocation AtLoc = ConsumeToken(); // the "@"
49 
50   if (Tok.is(tok::code_completion)) {
51     Actions.CodeCompleteObjCAtDirective(getCurScope());
52     cutOffParsing();
53     return nullptr;
54   }
55 
56   Decl *SingleDecl = nullptr;
57   switch (Tok.getObjCKeywordID()) {
58   case tok::objc_class:
59     return ParseObjCAtClassDeclaration(AtLoc);
60   case tok::objc_interface: {
61     ParsedAttributes attrs(AttrFactory);
62     SingleDecl = ParseObjCAtInterfaceDeclaration(AtLoc, attrs);
63     break;
64   }
65   case tok::objc_protocol: {
66     ParsedAttributes attrs(AttrFactory);
67     return ParseObjCAtProtocolDeclaration(AtLoc, attrs);
68   }
69   case tok::objc_implementation:
70     return ParseObjCAtImplementationDeclaration(AtLoc);
71   case tok::objc_end:
72     return ParseObjCAtEndDeclaration(AtLoc);
73   case tok::objc_compatibility_alias:
74     SingleDecl = ParseObjCAtAliasDeclaration(AtLoc);
75     break;
76   case tok::objc_synthesize:
77     SingleDecl = ParseObjCPropertySynthesize(AtLoc);
78     break;
79   case tok::objc_dynamic:
80     SingleDecl = ParseObjCPropertyDynamic(AtLoc);
81     break;
82   case tok::objc_import:
83     if (getLangOpts().Modules || getLangOpts().DebuggerSupport)
84       return ParseModuleImport(AtLoc);
85     Diag(AtLoc, diag::err_atimport);
86     SkipUntil(tok::semi);
87     return Actions.ConvertDeclToDeclGroup(nullptr);
88   default:
89     Diag(AtLoc, diag::err_unexpected_at);
90     SkipUntil(tok::semi);
91     SingleDecl = nullptr;
92     break;
93   }
94   return Actions.ConvertDeclToDeclGroup(SingleDecl);
95 }
96 
97 /// Class to handle popping type parameters when leaving the scope.
98 class Parser::ObjCTypeParamListScope {
99   Sema &Actions;
100   Scope *S;
101   ObjCTypeParamList *Params;
102 public:
103   ObjCTypeParamListScope(Sema &Actions, Scope *S)
104       : Actions(Actions), S(S), Params(nullptr) {}
105   ~ObjCTypeParamListScope() {
106     leave();
107   }
108   void enter(ObjCTypeParamList *P) {
109     assert(!Params);
110     Params = P;
111   }
112   void leave() {
113     if (Params)
114       Actions.popObjCTypeParamList(S, Params);
115     Params = nullptr;
116   }
117 };
118 
119 ///
120 /// objc-class-declaration:
121 ///    '@' 'class' objc-class-forward-decl (',' objc-class-forward-decl)* ';'
122 ///
123 /// objc-class-forward-decl:
124 ///   identifier objc-type-parameter-list[opt]
125 ///
126 Parser::DeclGroupPtrTy
127 Parser::ParseObjCAtClassDeclaration(SourceLocation atLoc) {
128   ConsumeToken(); // the identifier "class"
129   SmallVector<IdentifierInfo *, 8> ClassNames;
130   SmallVector<SourceLocation, 8> ClassLocs;
131   SmallVector<ObjCTypeParamList *, 8> ClassTypeParams;
132 
133   while (1) {
134     MaybeSkipAttributes(tok::objc_class);
135     if (Tok.isNot(tok::identifier)) {
136       Diag(Tok, diag::err_expected) << tok::identifier;
137       SkipUntil(tok::semi);
138       return Actions.ConvertDeclToDeclGroup(nullptr);
139     }
140     ClassNames.push_back(Tok.getIdentifierInfo());
141     ClassLocs.push_back(Tok.getLocation());
142     ConsumeToken();
143 
144     // Parse the optional objc-type-parameter-list.
145     ObjCTypeParamList *TypeParams = nullptr;
146     if (Tok.is(tok::less))
147       TypeParams = parseObjCTypeParamList();
148     ClassTypeParams.push_back(TypeParams);
149     if (!TryConsumeToken(tok::comma))
150       break;
151   }
152 
153   // Consume the ';'.
154   if (ExpectAndConsume(tok::semi, diag::err_expected_after, "@class"))
155     return Actions.ConvertDeclToDeclGroup(nullptr);
156 
157   return Actions.ActOnForwardClassDeclaration(atLoc, ClassNames.data(),
158                                               ClassLocs.data(),
159                                               ClassTypeParams,
160                                               ClassNames.size());
161 }
162 
163 void Parser::CheckNestedObjCContexts(SourceLocation AtLoc)
164 {
165   Sema::ObjCContainerKind ock = Actions.getObjCContainerKind();
166   if (ock == Sema::OCK_None)
167     return;
168 
169   Decl *Decl = Actions.getObjCDeclContext();
170   if (CurParsedObjCImpl) {
171     CurParsedObjCImpl->finish(AtLoc);
172   } else {
173     Actions.ActOnAtEnd(getCurScope(), AtLoc);
174   }
175   Diag(AtLoc, diag::err_objc_missing_end)
176       << FixItHint::CreateInsertion(AtLoc, "@end\n");
177   if (Decl)
178     Diag(Decl->getLocStart(), diag::note_objc_container_start)
179         << (int) ock;
180 }
181 
182 ///
183 ///   objc-interface:
184 ///     objc-class-interface-attributes[opt] objc-class-interface
185 ///     objc-category-interface
186 ///
187 ///   objc-class-interface:
188 ///     '@' 'interface' identifier objc-type-parameter-list[opt]
189 ///       objc-superclass[opt] objc-protocol-refs[opt]
190 ///       objc-class-instance-variables[opt]
191 ///       objc-interface-decl-list
192 ///     @end
193 ///
194 ///   objc-category-interface:
195 ///     '@' 'interface' identifier objc-type-parameter-list[opt]
196 ///       '(' identifier[opt] ')' objc-protocol-refs[opt]
197 ///       objc-interface-decl-list
198 ///     @end
199 ///
200 ///   objc-superclass:
201 ///     ':' identifier objc-type-arguments[opt]
202 ///
203 ///   objc-class-interface-attributes:
204 ///     __attribute__((visibility("default")))
205 ///     __attribute__((visibility("hidden")))
206 ///     __attribute__((deprecated))
207 ///     __attribute__((unavailable))
208 ///     __attribute__((objc_exception)) - used by NSException on 64-bit
209 ///     __attribute__((objc_root_class))
210 ///
211 Decl *Parser::ParseObjCAtInterfaceDeclaration(SourceLocation AtLoc,
212                                               ParsedAttributes &attrs) {
213   assert(Tok.isObjCAtKeyword(tok::objc_interface) &&
214          "ParseObjCAtInterfaceDeclaration(): Expected @interface");
215   CheckNestedObjCContexts(AtLoc);
216   ConsumeToken(); // the "interface" identifier
217 
218   // Code completion after '@interface'.
219   if (Tok.is(tok::code_completion)) {
220     Actions.CodeCompleteObjCInterfaceDecl(getCurScope());
221     cutOffParsing();
222     return nullptr;
223   }
224 
225   MaybeSkipAttributes(tok::objc_interface);
226 
227   if (Tok.isNot(tok::identifier)) {
228     Diag(Tok, diag::err_expected)
229         << tok::identifier; // missing class or category name.
230     return nullptr;
231   }
232 
233   // We have a class or category name - consume it.
234   IdentifierInfo *nameId = Tok.getIdentifierInfo();
235   SourceLocation nameLoc = ConsumeToken();
236 
237   // Parse the objc-type-parameter-list or objc-protocol-refs. For the latter
238   // case, LAngleLoc will be valid and ProtocolIdents will capture the
239   // protocol references (that have not yet been resolved).
240   SourceLocation LAngleLoc, EndProtoLoc;
241   SmallVector<IdentifierLocPair, 8> ProtocolIdents;
242   ObjCTypeParamList *typeParameterList = nullptr;
243   ObjCTypeParamListScope typeParamScope(Actions, getCurScope());
244   if (Tok.is(tok::less))
245     typeParameterList = parseObjCTypeParamListOrProtocolRefs(
246         typeParamScope, LAngleLoc, ProtocolIdents, EndProtoLoc);
247 
248   if (Tok.is(tok::l_paren) &&
249       !isKnownToBeTypeSpecifier(GetLookAheadToken(1))) { // we have a category.
250 
251     BalancedDelimiterTracker T(*this, tok::l_paren);
252     T.consumeOpen();
253 
254     SourceLocation categoryLoc;
255     IdentifierInfo *categoryId = nullptr;
256     if (Tok.is(tok::code_completion)) {
257       Actions.CodeCompleteObjCInterfaceCategory(getCurScope(), nameId, nameLoc);
258       cutOffParsing();
259       return nullptr;
260     }
261 
262     // For ObjC2, the category name is optional (not an error).
263     if (Tok.is(tok::identifier)) {
264       categoryId = Tok.getIdentifierInfo();
265       categoryLoc = ConsumeToken();
266     }
267     else if (!getLangOpts().ObjC2) {
268       Diag(Tok, diag::err_expected)
269           << tok::identifier; // missing category name.
270       return nullptr;
271     }
272 
273     T.consumeClose();
274     if (T.getCloseLocation().isInvalid())
275       return nullptr;
276 
277     if (!attrs.empty()) { // categories don't support attributes.
278       Diag(nameLoc, diag::err_objc_no_attributes_on_category);
279       attrs.clear();
280     }
281 
282     // Next, we need to check for any protocol references.
283     assert(LAngleLoc.isInvalid() && "Cannot have already parsed protocols");
284     SmallVector<Decl *, 8> ProtocolRefs;
285     SmallVector<SourceLocation, 8> ProtocolLocs;
286     if (Tok.is(tok::less) &&
287         ParseObjCProtocolReferences(ProtocolRefs, ProtocolLocs, true, true,
288                                     LAngleLoc, EndProtoLoc,
289                                     /*consumeLastToken=*/true))
290       return nullptr;
291 
292     Decl *CategoryType =
293     Actions.ActOnStartCategoryInterface(AtLoc,
294                                         nameId, nameLoc,
295                                         typeParameterList,
296                                         categoryId, categoryLoc,
297                                         ProtocolRefs.data(),
298                                         ProtocolRefs.size(),
299                                         ProtocolLocs.data(),
300                                         EndProtoLoc);
301 
302     if (Tok.is(tok::l_brace))
303       ParseObjCClassInstanceVariables(CategoryType, tok::objc_private, AtLoc);
304 
305     ParseObjCInterfaceDeclList(tok::objc_not_keyword, CategoryType);
306 
307     return CategoryType;
308   }
309   // Parse a class interface.
310   IdentifierInfo *superClassId = nullptr;
311   SourceLocation superClassLoc;
312   SourceLocation typeArgsLAngleLoc;
313   SmallVector<ParsedType, 4> typeArgs;
314   SourceLocation typeArgsRAngleLoc;
315   SmallVector<Decl *, 4> protocols;
316   SmallVector<SourceLocation, 4> protocolLocs;
317   if (Tok.is(tok::colon)) { // a super class is specified.
318     ConsumeToken();
319 
320     // Code completion of superclass names.
321     if (Tok.is(tok::code_completion)) {
322       Actions.CodeCompleteObjCSuperclass(getCurScope(), nameId, nameLoc);
323       cutOffParsing();
324       return nullptr;
325     }
326 
327     if (Tok.isNot(tok::identifier)) {
328       Diag(Tok, diag::err_expected)
329           << tok::identifier; // missing super class name.
330       return nullptr;
331     }
332     superClassId = Tok.getIdentifierInfo();
333     superClassLoc = ConsumeToken();
334 
335     // Type arguments for the superclass or protocol conformances.
336     if (Tok.is(tok::less)) {
337       parseObjCTypeArgsOrProtocolQualifiers(
338           nullptr, typeArgsLAngleLoc, typeArgs, typeArgsRAngleLoc, LAngleLoc,
339           protocols, protocolLocs, EndProtoLoc,
340           /*consumeLastToken=*/true,
341           /*warnOnIncompleteProtocols=*/true);
342     }
343   }
344 
345   // Next, we need to check for any protocol references.
346   if (LAngleLoc.isValid()) {
347     if (!ProtocolIdents.empty()) {
348       // We already parsed the protocols named when we thought we had a
349       // type parameter list. Translate them into actual protocol references.
350       for (const auto &pair : ProtocolIdents) {
351         protocolLocs.push_back(pair.second);
352       }
353       Actions.FindProtocolDeclaration(/*WarnOnDeclarations=*/true,
354                                       /*ForObjCContainer=*/true,
355                                       ProtocolIdents, protocols);
356     }
357   } else if (protocols.empty() && Tok.is(tok::less) &&
358              ParseObjCProtocolReferences(protocols, protocolLocs, true, true,
359                                          LAngleLoc, EndProtoLoc,
360                                          /*consumeLastToken=*/true)) {
361     return nullptr;
362   }
363 
364   if (Tok.isNot(tok::less))
365     Actions.ActOnTypedefedProtocols(protocols, superClassId, superClassLoc);
366 
367   Decl *ClsType =
368     Actions.ActOnStartClassInterface(getCurScope(), AtLoc, nameId, nameLoc,
369                                      typeParameterList, superClassId,
370                                      superClassLoc,
371                                      typeArgs,
372                                      SourceRange(typeArgsLAngleLoc,
373                                                  typeArgsRAngleLoc),
374                                      protocols.data(), protocols.size(),
375                                      protocolLocs.data(),
376                                      EndProtoLoc, attrs.getList());
377 
378   if (Tok.is(tok::l_brace))
379     ParseObjCClassInstanceVariables(ClsType, tok::objc_protected, AtLoc);
380 
381   ParseObjCInterfaceDeclList(tok::objc_interface, ClsType);
382 
383   return ClsType;
384 }
385 
386 /// Add an attribute for a context-sensitive type nullability to the given
387 /// declarator.
388 static void addContextSensitiveTypeNullability(Parser &P,
389                                                Declarator &D,
390                                                NullabilityKind nullability,
391                                                SourceLocation nullabilityLoc,
392                                                bool &addedToDeclSpec) {
393   // Create the attribute.
394   auto getNullabilityAttr = [&]() -> AttributeList * {
395     return D.getAttributePool().create(
396              P.getNullabilityKeyword(nullability),
397              SourceRange(nullabilityLoc),
398              nullptr, SourceLocation(),
399              nullptr, 0,
400              AttributeList::AS_ContextSensitiveKeyword);
401   };
402 
403   if (D.getNumTypeObjects() > 0) {
404     // Add the attribute to the declarator chunk nearest the declarator.
405     auto nullabilityAttr = getNullabilityAttr();
406     DeclaratorChunk &chunk = D.getTypeObject(0);
407     nullabilityAttr->setNext(chunk.getAttrListRef());
408     chunk.getAttrListRef() = nullabilityAttr;
409   } else if (!addedToDeclSpec) {
410     // Otherwise, just put it on the declaration specifiers (if one
411     // isn't there already).
412     D.getMutableDeclSpec().addAttributes(getNullabilityAttr());
413     addedToDeclSpec = true;
414   }
415 }
416 
417 /// Parse an Objective-C type parameter list, if present, or capture
418 /// the locations of the protocol identifiers for a list of protocol
419 /// references.
420 ///
421 ///   objc-type-parameter-list:
422 ///     '<' objc-type-parameter (',' objc-type-parameter)* '>'
423 ///
424 ///   objc-type-parameter:
425 ///     objc-type-parameter-variance? identifier objc-type-parameter-bound[opt]
426 ///
427 ///   objc-type-parameter-bound:
428 ///     ':' type-name
429 ///
430 ///   objc-type-parameter-variance:
431 ///     '__covariant'
432 ///     '__contravariant'
433 ///
434 /// \param lAngleLoc The location of the starting '<'.
435 ///
436 /// \param protocolIdents Will capture the list of identifiers, if the
437 /// angle brackets contain a list of protocol references rather than a
438 /// type parameter list.
439 ///
440 /// \param rAngleLoc The location of the ending '>'.
441 ObjCTypeParamList *Parser::parseObjCTypeParamListOrProtocolRefs(
442     ObjCTypeParamListScope &Scope, SourceLocation &lAngleLoc,
443     SmallVectorImpl<IdentifierLocPair> &protocolIdents,
444     SourceLocation &rAngleLoc, bool mayBeProtocolList) {
445   assert(Tok.is(tok::less) && "Not at the beginning of a type parameter list");
446 
447   // Within the type parameter list, don't treat '>' as an operator.
448   GreaterThanIsOperatorScope G(GreaterThanIsOperator, false);
449 
450   // Local function to "flush" the protocol identifiers, turning them into
451   // type parameters.
452   SmallVector<Decl *, 4> typeParams;
453   auto makeProtocolIdentsIntoTypeParameters = [&]() {
454     unsigned index = 0;
455     for (const auto &pair : protocolIdents) {
456       DeclResult typeParam = Actions.actOnObjCTypeParam(
457           getCurScope(), ObjCTypeParamVariance::Invariant, SourceLocation(),
458           index++, pair.first, pair.second, SourceLocation(), nullptr);
459       if (typeParam.isUsable())
460         typeParams.push_back(typeParam.get());
461     }
462 
463     protocolIdents.clear();
464     mayBeProtocolList = false;
465   };
466 
467   bool invalid = false;
468   lAngleLoc = ConsumeToken();
469 
470   do {
471     // Parse the variance, if any.
472     SourceLocation varianceLoc;
473     ObjCTypeParamVariance variance = ObjCTypeParamVariance::Invariant;
474     if (Tok.is(tok::kw___covariant) || Tok.is(tok::kw___contravariant)) {
475       variance = Tok.is(tok::kw___covariant)
476                    ? ObjCTypeParamVariance::Covariant
477                    : ObjCTypeParamVariance::Contravariant;
478       varianceLoc = ConsumeToken();
479 
480       // Once we've seen a variance specific , we know this is not a
481       // list of protocol references.
482       if (mayBeProtocolList) {
483         // Up until now, we have been queuing up parameters because they
484         // might be protocol references. Turn them into parameters now.
485         makeProtocolIdentsIntoTypeParameters();
486       }
487     }
488 
489     // Parse the identifier.
490     if (!Tok.is(tok::identifier)) {
491       // Code completion.
492       if (Tok.is(tok::code_completion)) {
493         // FIXME: If these aren't protocol references, we'll need different
494         // completions.
495         Actions.CodeCompleteObjCProtocolReferences(protocolIdents);
496         cutOffParsing();
497 
498         // FIXME: Better recovery here?.
499         return nullptr;
500       }
501 
502       Diag(Tok, diag::err_objc_expected_type_parameter);
503       invalid = true;
504       break;
505     }
506 
507     IdentifierInfo *paramName = Tok.getIdentifierInfo();
508     SourceLocation paramLoc = ConsumeToken();
509 
510     // If there is a bound, parse it.
511     SourceLocation colonLoc;
512     TypeResult boundType;
513     if (TryConsumeToken(tok::colon, colonLoc)) {
514       // Once we've seen a bound, we know this is not a list of protocol
515       // references.
516       if (mayBeProtocolList) {
517         // Up until now, we have been queuing up parameters because they
518         // might be protocol references. Turn them into parameters now.
519         makeProtocolIdentsIntoTypeParameters();
520       }
521 
522       // type-name
523       boundType = ParseTypeName();
524       if (boundType.isInvalid())
525         invalid = true;
526     } else if (mayBeProtocolList) {
527       // If this could still be a protocol list, just capture the identifier.
528       // We don't want to turn it into a parameter.
529       protocolIdents.push_back(std::make_pair(paramName, paramLoc));
530       continue;
531     }
532 
533     // Create the type parameter.
534     DeclResult typeParam = Actions.actOnObjCTypeParam(
535         getCurScope(), variance, varianceLoc, typeParams.size(), paramName,
536         paramLoc, colonLoc, boundType.isUsable() ? boundType.get() : nullptr);
537     if (typeParam.isUsable())
538       typeParams.push_back(typeParam.get());
539   } while (TryConsumeToken(tok::comma));
540 
541   // Parse the '>'.
542   if (invalid) {
543     SkipUntil(tok::greater, tok::at, StopBeforeMatch);
544     if (Tok.is(tok::greater))
545       ConsumeToken();
546   } else if (ParseGreaterThanInTemplateList(rAngleLoc,
547                                             /*ConsumeLastToken=*/true,
548                                             /*ObjCGenericList=*/true)) {
549     Diag(lAngleLoc, diag::note_matching) << "'<'";
550     SkipUntil({tok::greater, tok::greaterequal, tok::at, tok::minus,
551                tok::minus, tok::plus, tok::colon, tok::l_paren, tok::l_brace,
552                tok::comma, tok::semi },
553               StopBeforeMatch);
554     if (Tok.is(tok::greater))
555       ConsumeToken();
556   }
557 
558   if (mayBeProtocolList) {
559     // A type parameter list must be followed by either a ':' (indicating the
560     // presence of a superclass) or a '(' (indicating that this is a category
561     // or extension). This disambiguates between an objc-type-parameter-list
562     // and a objc-protocol-refs.
563     if (Tok.isNot(tok::colon) && Tok.isNot(tok::l_paren)) {
564       // Returning null indicates that we don't have a type parameter list.
565       // The results the caller needs to handle the protocol references are
566       // captured in the reference parameters already.
567       return nullptr;
568     }
569 
570     // We have a type parameter list that looks like a list of protocol
571     // references. Turn that parameter list into type parameters.
572     makeProtocolIdentsIntoTypeParameters();
573   }
574 
575   // Form the type parameter list and enter its scope.
576   ObjCTypeParamList *list = Actions.actOnObjCTypeParamList(
577                               getCurScope(),
578                               lAngleLoc,
579                               typeParams,
580                               rAngleLoc);
581   Scope.enter(list);
582 
583   // Clear out the angle locations; they're used by the caller to indicate
584   // whether there are any protocol references.
585   lAngleLoc = SourceLocation();
586   rAngleLoc = SourceLocation();
587   return invalid ? nullptr : list;
588 }
589 
590 /// Parse an objc-type-parameter-list.
591 ObjCTypeParamList *Parser::parseObjCTypeParamList() {
592   SourceLocation lAngleLoc;
593   SmallVector<IdentifierLocPair, 1> protocolIdents;
594   SourceLocation rAngleLoc;
595 
596   ObjCTypeParamListScope Scope(Actions, getCurScope());
597   return parseObjCTypeParamListOrProtocolRefs(Scope, lAngleLoc, protocolIdents,
598                                               rAngleLoc,
599                                               /*mayBeProtocolList=*/false);
600 }
601 
602 ///   objc-interface-decl-list:
603 ///     empty
604 ///     objc-interface-decl-list objc-property-decl [OBJC2]
605 ///     objc-interface-decl-list objc-method-requirement [OBJC2]
606 ///     objc-interface-decl-list objc-method-proto ';'
607 ///     objc-interface-decl-list declaration
608 ///     objc-interface-decl-list ';'
609 ///
610 ///   objc-method-requirement: [OBJC2]
611 ///     @required
612 ///     @optional
613 ///
614 void Parser::ParseObjCInterfaceDeclList(tok::ObjCKeywordKind contextKey,
615                                         Decl *CDecl) {
616   SmallVector<Decl *, 32> allMethods;
617   SmallVector<DeclGroupPtrTy, 8> allTUVariables;
618   tok::ObjCKeywordKind MethodImplKind = tok::objc_not_keyword;
619 
620   SourceRange AtEnd;
621 
622   while (1) {
623     // If this is a method prototype, parse it.
624     if (Tok.isOneOf(tok::minus, tok::plus)) {
625       if (Decl *methodPrototype =
626           ParseObjCMethodPrototype(MethodImplKind, false))
627         allMethods.push_back(methodPrototype);
628       // Consume the ';' here, since ParseObjCMethodPrototype() is re-used for
629       // method definitions.
630       if (ExpectAndConsumeSemi(diag::err_expected_semi_after_method_proto)) {
631         // We didn't find a semi and we error'ed out. Skip until a ';' or '@'.
632         SkipUntil(tok::at, StopAtSemi | StopBeforeMatch);
633         if (Tok.is(tok::semi))
634           ConsumeToken();
635       }
636       continue;
637     }
638     if (Tok.is(tok::l_paren)) {
639       Diag(Tok, diag::err_expected_minus_or_plus);
640       ParseObjCMethodDecl(Tok.getLocation(),
641                           tok::minus,
642                           MethodImplKind, false);
643       continue;
644     }
645     // Ignore excess semicolons.
646     if (Tok.is(tok::semi)) {
647       ConsumeToken();
648       continue;
649     }
650 
651     // If we got to the end of the file, exit the loop.
652     if (isEofOrEom())
653       break;
654 
655     // Code completion within an Objective-C interface.
656     if (Tok.is(tok::code_completion)) {
657       Actions.CodeCompleteOrdinaryName(getCurScope(),
658                             CurParsedObjCImpl? Sema::PCC_ObjCImplementation
659                                              : Sema::PCC_ObjCInterface);
660       return cutOffParsing();
661     }
662 
663     // If we don't have an @ directive, parse it as a function definition.
664     if (Tok.isNot(tok::at)) {
665       // The code below does not consume '}'s because it is afraid of eating the
666       // end of a namespace.  Because of the way this code is structured, an
667       // erroneous r_brace would cause an infinite loop if not handled here.
668       if (Tok.is(tok::r_brace))
669         break;
670       ParsedAttributesWithRange attrs(AttrFactory);
671       allTUVariables.push_back(ParseDeclarationOrFunctionDefinition(attrs));
672       continue;
673     }
674 
675     // Otherwise, we have an @ directive, eat the @.
676     SourceLocation AtLoc = ConsumeToken(); // the "@"
677     if (Tok.is(tok::code_completion)) {
678       Actions.CodeCompleteObjCAtDirective(getCurScope());
679       return cutOffParsing();
680     }
681 
682     tok::ObjCKeywordKind DirectiveKind = Tok.getObjCKeywordID();
683 
684     if (DirectiveKind == tok::objc_end) { // @end -> terminate list
685       AtEnd.setBegin(AtLoc);
686       AtEnd.setEnd(Tok.getLocation());
687       break;
688     } else if (DirectiveKind == tok::objc_not_keyword) {
689       Diag(Tok, diag::err_objc_unknown_at);
690       SkipUntil(tok::semi);
691       continue;
692     }
693 
694     // Eat the identifier.
695     ConsumeToken();
696 
697     switch (DirectiveKind) {
698     default:
699       // FIXME: If someone forgets an @end on a protocol, this loop will
700       // continue to eat up tons of stuff and spew lots of nonsense errors.  It
701       // would probably be better to bail out if we saw an @class or @interface
702       // or something like that.
703       Diag(AtLoc, diag::err_objc_illegal_interface_qual);
704       // Skip until we see an '@' or '}' or ';'.
705       SkipUntil(tok::r_brace, tok::at, StopAtSemi);
706       break;
707 
708     case tok::objc_implementation:
709     case tok::objc_interface:
710       Diag(AtLoc, diag::err_objc_missing_end)
711           << FixItHint::CreateInsertion(AtLoc, "@end\n");
712       Diag(CDecl->getLocStart(), diag::note_objc_container_start)
713           << (int) Actions.getObjCContainerKind();
714       ConsumeToken();
715       break;
716 
717     case tok::objc_required:
718     case tok::objc_optional:
719       // This is only valid on protocols.
720       // FIXME: Should this check for ObjC2 being enabled?
721       if (contextKey != tok::objc_protocol)
722         Diag(AtLoc, diag::err_objc_directive_only_in_protocol);
723       else
724         MethodImplKind = DirectiveKind;
725       break;
726 
727     case tok::objc_property:
728       if (!getLangOpts().ObjC2)
729         Diag(AtLoc, diag::err_objc_properties_require_objc2);
730 
731       ObjCDeclSpec OCDS;
732       SourceLocation LParenLoc;
733       // Parse property attribute list, if any.
734       if (Tok.is(tok::l_paren)) {
735         LParenLoc = Tok.getLocation();
736         ParseObjCPropertyAttribute(OCDS);
737       }
738 
739       bool addedToDeclSpec = false;
740       auto ObjCPropertyCallback = [&](ParsingFieldDeclarator &FD) {
741         if (FD.D.getIdentifier() == nullptr) {
742           Diag(AtLoc, diag::err_objc_property_requires_field_name)
743               << FD.D.getSourceRange();
744           return;
745         }
746         if (FD.BitfieldSize) {
747           Diag(AtLoc, diag::err_objc_property_bitfield)
748               << FD.D.getSourceRange();
749           return;
750         }
751 
752         // Map a nullability property attribute to a context-sensitive keyword
753         // attribute.
754         if (OCDS.getPropertyAttributes() & ObjCDeclSpec::DQ_PR_nullability)
755           addContextSensitiveTypeNullability(*this, FD.D, OCDS.getNullability(),
756                                              OCDS.getNullabilityLoc(),
757                                              addedToDeclSpec);
758 
759         // Install the property declarator into interfaceDecl.
760         IdentifierInfo *SelName =
761             OCDS.getGetterName() ? OCDS.getGetterName() : FD.D.getIdentifier();
762 
763         Selector GetterSel = PP.getSelectorTable().getNullarySelector(SelName);
764         IdentifierInfo *SetterName = OCDS.getSetterName();
765         Selector SetterSel;
766         if (SetterName)
767           SetterSel = PP.getSelectorTable().getSelector(1, &SetterName);
768         else
769           SetterSel = SelectorTable::constructSetterSelector(
770               PP.getIdentifierTable(), PP.getSelectorTable(),
771               FD.D.getIdentifier());
772         Decl *Property = Actions.ActOnProperty(
773             getCurScope(), AtLoc, LParenLoc, FD, OCDS, GetterSel, SetterSel,
774             MethodImplKind);
775 
776         FD.complete(Property);
777       };
778 
779       // Parse all the comma separated declarators.
780       ParsingDeclSpec DS(*this);
781       ParseStructDeclaration(DS, ObjCPropertyCallback);
782 
783       ExpectAndConsume(tok::semi, diag::err_expected_semi_decl_list);
784       break;
785     }
786   }
787 
788   // We break out of the big loop in two cases: when we see @end or when we see
789   // EOF.  In the former case, eat the @end.  In the later case, emit an error.
790   if (Tok.is(tok::code_completion)) {
791     Actions.CodeCompleteObjCAtDirective(getCurScope());
792     return cutOffParsing();
793   } else if (Tok.isObjCAtKeyword(tok::objc_end)) {
794     ConsumeToken(); // the "end" identifier
795   } else {
796     Diag(Tok, diag::err_objc_missing_end)
797         << FixItHint::CreateInsertion(Tok.getLocation(), "\n@end\n");
798     Diag(CDecl->getLocStart(), diag::note_objc_container_start)
799         << (int) Actions.getObjCContainerKind();
800     AtEnd.setBegin(Tok.getLocation());
801     AtEnd.setEnd(Tok.getLocation());
802   }
803 
804   // Insert collected methods declarations into the @interface object.
805   // This passes in an invalid SourceLocation for AtEndLoc when EOF is hit.
806   Actions.ActOnAtEnd(getCurScope(), AtEnd, allMethods, allTUVariables);
807 }
808 
809 /// Diagnose redundant or conflicting nullability information.
810 static void diagnoseRedundantPropertyNullability(Parser &P,
811                                                  ObjCDeclSpec &DS,
812                                                  NullabilityKind nullability,
813                                                  SourceLocation nullabilityLoc){
814   if (DS.getNullability() == nullability) {
815     P.Diag(nullabilityLoc, diag::warn_nullability_duplicate)
816       << DiagNullabilityKind(nullability, true)
817       << SourceRange(DS.getNullabilityLoc());
818     return;
819   }
820 
821   P.Diag(nullabilityLoc, diag::err_nullability_conflicting)
822     << DiagNullabilityKind(nullability, true)
823     << DiagNullabilityKind(DS.getNullability(), true)
824     << SourceRange(DS.getNullabilityLoc());
825 }
826 
827 ///   Parse property attribute declarations.
828 ///
829 ///   property-attr-decl: '(' property-attrlist ')'
830 ///   property-attrlist:
831 ///     property-attribute
832 ///     property-attrlist ',' property-attribute
833 ///   property-attribute:
834 ///     getter '=' identifier
835 ///     setter '=' identifier ':'
836 ///     readonly
837 ///     readwrite
838 ///     assign
839 ///     retain
840 ///     copy
841 ///     nonatomic
842 ///     atomic
843 ///     strong
844 ///     weak
845 ///     unsafe_unretained
846 ///     nonnull
847 ///     nullable
848 ///     null_unspecified
849 ///     null_resettable
850 ///     class
851 ///
852 void Parser::ParseObjCPropertyAttribute(ObjCDeclSpec &DS) {
853   assert(Tok.getKind() == tok::l_paren);
854   BalancedDelimiterTracker T(*this, tok::l_paren);
855   T.consumeOpen();
856 
857   while (1) {
858     if (Tok.is(tok::code_completion)) {
859       Actions.CodeCompleteObjCPropertyFlags(getCurScope(), DS);
860       return cutOffParsing();
861     }
862     const IdentifierInfo *II = Tok.getIdentifierInfo();
863 
864     // If this is not an identifier at all, bail out early.
865     if (!II) {
866       T.consumeClose();
867       return;
868     }
869 
870     SourceLocation AttrName = ConsumeToken(); // consume last attribute name
871 
872     if (II->isStr("readonly"))
873       DS.setPropertyAttributes(ObjCDeclSpec::DQ_PR_readonly);
874     else if (II->isStr("assign"))
875       DS.setPropertyAttributes(ObjCDeclSpec::DQ_PR_assign);
876     else if (II->isStr("unsafe_unretained"))
877       DS.setPropertyAttributes(ObjCDeclSpec::DQ_PR_unsafe_unretained);
878     else if (II->isStr("readwrite"))
879       DS.setPropertyAttributes(ObjCDeclSpec::DQ_PR_readwrite);
880     else if (II->isStr("retain"))
881       DS.setPropertyAttributes(ObjCDeclSpec::DQ_PR_retain);
882     else if (II->isStr("strong"))
883       DS.setPropertyAttributes(ObjCDeclSpec::DQ_PR_strong);
884     else if (II->isStr("copy"))
885       DS.setPropertyAttributes(ObjCDeclSpec::DQ_PR_copy);
886     else if (II->isStr("nonatomic"))
887       DS.setPropertyAttributes(ObjCDeclSpec::DQ_PR_nonatomic);
888     else if (II->isStr("atomic"))
889       DS.setPropertyAttributes(ObjCDeclSpec::DQ_PR_atomic);
890     else if (II->isStr("weak"))
891       DS.setPropertyAttributes(ObjCDeclSpec::DQ_PR_weak);
892     else if (II->isStr("getter") || II->isStr("setter")) {
893       bool IsSetter = II->getNameStart()[0] == 's';
894 
895       // getter/setter require extra treatment.
896       unsigned DiagID = IsSetter ? diag::err_objc_expected_equal_for_setter :
897                                    diag::err_objc_expected_equal_for_getter;
898 
899       if (ExpectAndConsume(tok::equal, DiagID)) {
900         SkipUntil(tok::r_paren, StopAtSemi);
901         return;
902       }
903 
904       if (Tok.is(tok::code_completion)) {
905         if (IsSetter)
906           Actions.CodeCompleteObjCPropertySetter(getCurScope());
907         else
908           Actions.CodeCompleteObjCPropertyGetter(getCurScope());
909         return cutOffParsing();
910       }
911 
912       SourceLocation SelLoc;
913       IdentifierInfo *SelIdent = ParseObjCSelectorPiece(SelLoc);
914 
915       if (!SelIdent) {
916         Diag(Tok, diag::err_objc_expected_selector_for_getter_setter)
917           << IsSetter;
918         SkipUntil(tok::r_paren, StopAtSemi);
919         return;
920       }
921 
922       if (IsSetter) {
923         DS.setPropertyAttributes(ObjCDeclSpec::DQ_PR_setter);
924         DS.setSetterName(SelIdent);
925 
926         if (ExpectAndConsume(tok::colon,
927                              diag::err_expected_colon_after_setter_name)) {
928           SkipUntil(tok::r_paren, StopAtSemi);
929           return;
930         }
931       } else {
932         DS.setPropertyAttributes(ObjCDeclSpec::DQ_PR_getter);
933         DS.setGetterName(SelIdent);
934       }
935     } else if (II->isStr("nonnull")) {
936       if (DS.getPropertyAttributes() & ObjCDeclSpec::DQ_PR_nullability)
937         diagnoseRedundantPropertyNullability(*this, DS,
938                                              NullabilityKind::NonNull,
939                                              Tok.getLocation());
940       DS.setPropertyAttributes(ObjCDeclSpec::DQ_PR_nullability);
941       DS.setNullability(Tok.getLocation(), NullabilityKind::NonNull);
942     } else if (II->isStr("nullable")) {
943       if (DS.getPropertyAttributes() & ObjCDeclSpec::DQ_PR_nullability)
944         diagnoseRedundantPropertyNullability(*this, DS,
945                                              NullabilityKind::Nullable,
946                                              Tok.getLocation());
947       DS.setPropertyAttributes(ObjCDeclSpec::DQ_PR_nullability);
948       DS.setNullability(Tok.getLocation(), NullabilityKind::Nullable);
949     } else if (II->isStr("null_unspecified")) {
950       if (DS.getPropertyAttributes() & ObjCDeclSpec::DQ_PR_nullability)
951         diagnoseRedundantPropertyNullability(*this, DS,
952                                              NullabilityKind::Unspecified,
953                                              Tok.getLocation());
954       DS.setPropertyAttributes(ObjCDeclSpec::DQ_PR_nullability);
955       DS.setNullability(Tok.getLocation(), NullabilityKind::Unspecified);
956     } else if (II->isStr("null_resettable")) {
957       if (DS.getPropertyAttributes() & ObjCDeclSpec::DQ_PR_nullability)
958         diagnoseRedundantPropertyNullability(*this, DS,
959                                              NullabilityKind::Unspecified,
960                                              Tok.getLocation());
961       DS.setPropertyAttributes(ObjCDeclSpec::DQ_PR_nullability);
962       DS.setNullability(Tok.getLocation(), NullabilityKind::Unspecified);
963 
964       // Also set the null_resettable bit.
965       DS.setPropertyAttributes(ObjCDeclSpec::DQ_PR_null_resettable);
966     } else if (II->isStr("class")) {
967       DS.setPropertyAttributes(ObjCDeclSpec::DQ_PR_class);
968     } else {
969       Diag(AttrName, diag::err_objc_expected_property_attr) << II;
970       SkipUntil(tok::r_paren, StopAtSemi);
971       return;
972     }
973 
974     if (Tok.isNot(tok::comma))
975       break;
976 
977     ConsumeToken();
978   }
979 
980   T.consumeClose();
981 }
982 
983 ///   objc-method-proto:
984 ///     objc-instance-method objc-method-decl objc-method-attributes[opt]
985 ///     objc-class-method objc-method-decl objc-method-attributes[opt]
986 ///
987 ///   objc-instance-method: '-'
988 ///   objc-class-method: '+'
989 ///
990 ///   objc-method-attributes:         [OBJC2]
991 ///     __attribute__((deprecated))
992 ///
993 Decl *Parser::ParseObjCMethodPrototype(tok::ObjCKeywordKind MethodImplKind,
994                                        bool MethodDefinition) {
995   assert(Tok.isOneOf(tok::minus, tok::plus) && "expected +/-");
996 
997   tok::TokenKind methodType = Tok.getKind();
998   SourceLocation mLoc = ConsumeToken();
999   Decl *MDecl = ParseObjCMethodDecl(mLoc, methodType, MethodImplKind,
1000                                     MethodDefinition);
1001   // Since this rule is used for both method declarations and definitions,
1002   // the caller is (optionally) responsible for consuming the ';'.
1003   return MDecl;
1004 }
1005 
1006 ///   objc-selector:
1007 ///     identifier
1008 ///     one of
1009 ///       enum struct union if else while do for switch case default
1010 ///       break continue return goto asm sizeof typeof __alignof
1011 ///       unsigned long const short volatile signed restrict _Complex
1012 ///       in out inout bycopy byref oneway int char float double void _Bool
1013 ///
1014 IdentifierInfo *Parser::ParseObjCSelectorPiece(SourceLocation &SelectorLoc) {
1015 
1016   switch (Tok.getKind()) {
1017   default:
1018     return nullptr;
1019   case tok::ampamp:
1020   case tok::ampequal:
1021   case tok::amp:
1022   case tok::pipe:
1023   case tok::tilde:
1024   case tok::exclaim:
1025   case tok::exclaimequal:
1026   case tok::pipepipe:
1027   case tok::pipeequal:
1028   case tok::caret:
1029   case tok::caretequal: {
1030     std::string ThisTok(PP.getSpelling(Tok));
1031     if (isLetter(ThisTok[0])) {
1032       IdentifierInfo *II = &PP.getIdentifierTable().get(ThisTok.data());
1033       Tok.setKind(tok::identifier);
1034       SelectorLoc = ConsumeToken();
1035       return II;
1036     }
1037     return nullptr;
1038   }
1039 
1040   case tok::identifier:
1041   case tok::kw_asm:
1042   case tok::kw_auto:
1043   case tok::kw_bool:
1044   case tok::kw_break:
1045   case tok::kw_case:
1046   case tok::kw_catch:
1047   case tok::kw_char:
1048   case tok::kw_class:
1049   case tok::kw_const:
1050   case tok::kw_const_cast:
1051   case tok::kw_continue:
1052   case tok::kw_default:
1053   case tok::kw_delete:
1054   case tok::kw_do:
1055   case tok::kw_double:
1056   case tok::kw_dynamic_cast:
1057   case tok::kw_else:
1058   case tok::kw_enum:
1059   case tok::kw_explicit:
1060   case tok::kw_export:
1061   case tok::kw_extern:
1062   case tok::kw_false:
1063   case tok::kw_float:
1064   case tok::kw_for:
1065   case tok::kw_friend:
1066   case tok::kw_goto:
1067   case tok::kw_if:
1068   case tok::kw_inline:
1069   case tok::kw_int:
1070   case tok::kw_long:
1071   case tok::kw_mutable:
1072   case tok::kw_namespace:
1073   case tok::kw_new:
1074   case tok::kw_operator:
1075   case tok::kw_private:
1076   case tok::kw_protected:
1077   case tok::kw_public:
1078   case tok::kw_register:
1079   case tok::kw_reinterpret_cast:
1080   case tok::kw_restrict:
1081   case tok::kw_return:
1082   case tok::kw_short:
1083   case tok::kw_signed:
1084   case tok::kw_sizeof:
1085   case tok::kw_static:
1086   case tok::kw_static_cast:
1087   case tok::kw_struct:
1088   case tok::kw_switch:
1089   case tok::kw_template:
1090   case tok::kw_this:
1091   case tok::kw_throw:
1092   case tok::kw_true:
1093   case tok::kw_try:
1094   case tok::kw_typedef:
1095   case tok::kw_typeid:
1096   case tok::kw_typename:
1097   case tok::kw_typeof:
1098   case tok::kw_union:
1099   case tok::kw_unsigned:
1100   case tok::kw_using:
1101   case tok::kw_virtual:
1102   case tok::kw_void:
1103   case tok::kw_volatile:
1104   case tok::kw_wchar_t:
1105   case tok::kw_while:
1106   case tok::kw__Bool:
1107   case tok::kw__Complex:
1108   case tok::kw___alignof:
1109   case tok::kw___auto_type:
1110     IdentifierInfo *II = Tok.getIdentifierInfo();
1111     SelectorLoc = ConsumeToken();
1112     return II;
1113   }
1114 }
1115 
1116 ///  objc-for-collection-in: 'in'
1117 ///
1118 bool Parser::isTokIdentifier_in() const {
1119   // FIXME: May have to do additional look-ahead to only allow for
1120   // valid tokens following an 'in'; such as an identifier, unary operators,
1121   // '[' etc.
1122   return (getLangOpts().ObjC2 && Tok.is(tok::identifier) &&
1123           Tok.getIdentifierInfo() == ObjCTypeQuals[objc_in]);
1124 }
1125 
1126 /// ParseObjCTypeQualifierList - This routine parses the objective-c's type
1127 /// qualifier list and builds their bitmask representation in the input
1128 /// argument.
1129 ///
1130 ///   objc-type-qualifiers:
1131 ///     objc-type-qualifier
1132 ///     objc-type-qualifiers objc-type-qualifier
1133 ///
1134 ///   objc-type-qualifier:
1135 ///     'in'
1136 ///     'out'
1137 ///     'inout'
1138 ///     'oneway'
1139 ///     'bycopy'
1140 ///     'byref'
1141 ///     'nonnull'
1142 ///     'nullable'
1143 ///     'null_unspecified'
1144 ///
1145 void Parser::ParseObjCTypeQualifierList(ObjCDeclSpec &DS,
1146                                         Declarator::TheContext Context) {
1147   assert(Context == Declarator::ObjCParameterContext ||
1148          Context == Declarator::ObjCResultContext);
1149 
1150   while (1) {
1151     if (Tok.is(tok::code_completion)) {
1152       Actions.CodeCompleteObjCPassingType(getCurScope(), DS,
1153                           Context == Declarator::ObjCParameterContext);
1154       return cutOffParsing();
1155     }
1156 
1157     if (Tok.isNot(tok::identifier))
1158       return;
1159 
1160     const IdentifierInfo *II = Tok.getIdentifierInfo();
1161     for (unsigned i = 0; i != objc_NumQuals; ++i) {
1162       if (II != ObjCTypeQuals[i] ||
1163           NextToken().is(tok::less) ||
1164           NextToken().is(tok::coloncolon))
1165         continue;
1166 
1167       ObjCDeclSpec::ObjCDeclQualifier Qual;
1168       NullabilityKind Nullability;
1169       switch (i) {
1170       default: llvm_unreachable("Unknown decl qualifier");
1171       case objc_in:     Qual = ObjCDeclSpec::DQ_In; break;
1172       case objc_out:    Qual = ObjCDeclSpec::DQ_Out; break;
1173       case objc_inout:  Qual = ObjCDeclSpec::DQ_Inout; break;
1174       case objc_oneway: Qual = ObjCDeclSpec::DQ_Oneway; break;
1175       case objc_bycopy: Qual = ObjCDeclSpec::DQ_Bycopy; break;
1176       case objc_byref:  Qual = ObjCDeclSpec::DQ_Byref; break;
1177 
1178       case objc_nonnull:
1179         Qual = ObjCDeclSpec::DQ_CSNullability;
1180         Nullability = NullabilityKind::NonNull;
1181         break;
1182 
1183       case objc_nullable:
1184         Qual = ObjCDeclSpec::DQ_CSNullability;
1185         Nullability = NullabilityKind::Nullable;
1186         break;
1187 
1188       case objc_null_unspecified:
1189         Qual = ObjCDeclSpec::DQ_CSNullability;
1190         Nullability = NullabilityKind::Unspecified;
1191         break;
1192       }
1193 
1194       // FIXME: Diagnose redundant specifiers.
1195       DS.setObjCDeclQualifier(Qual);
1196       if (Qual == ObjCDeclSpec::DQ_CSNullability)
1197         DS.setNullability(Tok.getLocation(), Nullability);
1198 
1199       ConsumeToken();
1200       II = nullptr;
1201       break;
1202     }
1203 
1204     // If this wasn't a recognized qualifier, bail out.
1205     if (II) return;
1206   }
1207 }
1208 
1209 /// Take all the decl attributes out of the given list and add
1210 /// them to the given attribute set.
1211 static void takeDeclAttributes(ParsedAttributes &attrs,
1212                                AttributeList *list) {
1213   while (list) {
1214     AttributeList *cur = list;
1215     list = cur->getNext();
1216 
1217     if (!cur->isUsedAsTypeAttr()) {
1218       // Clear out the next pointer.  We're really completely
1219       // destroying the internal invariants of the declarator here,
1220       // but it doesn't matter because we're done with it.
1221       cur->setNext(nullptr);
1222       attrs.add(cur);
1223     }
1224   }
1225 }
1226 
1227 /// takeDeclAttributes - Take all the decl attributes from the given
1228 /// declarator and add them to the given list.
1229 static void takeDeclAttributes(ParsedAttributes &attrs,
1230                                Declarator &D) {
1231   // First, take ownership of all attributes.
1232   attrs.getPool().takeAllFrom(D.getAttributePool());
1233   attrs.getPool().takeAllFrom(D.getDeclSpec().getAttributePool());
1234 
1235   // Now actually move the attributes over.
1236   takeDeclAttributes(attrs, D.getDeclSpec().getAttributes().getList());
1237   takeDeclAttributes(attrs, D.getAttributes());
1238   for (unsigned i = 0, e = D.getNumTypeObjects(); i != e; ++i)
1239     takeDeclAttributes(attrs,
1240                   const_cast<AttributeList*>(D.getTypeObject(i).getAttrs()));
1241 }
1242 
1243 ///   objc-type-name:
1244 ///     '(' objc-type-qualifiers[opt] type-name ')'
1245 ///     '(' objc-type-qualifiers[opt] ')'
1246 ///
1247 ParsedType Parser::ParseObjCTypeName(ObjCDeclSpec &DS,
1248                                      Declarator::TheContext context,
1249                                      ParsedAttributes *paramAttrs) {
1250   assert(context == Declarator::ObjCParameterContext ||
1251          context == Declarator::ObjCResultContext);
1252   assert((paramAttrs != nullptr) ==
1253          (context == Declarator::ObjCParameterContext));
1254 
1255   assert(Tok.is(tok::l_paren) && "expected (");
1256 
1257   BalancedDelimiterTracker T(*this, tok::l_paren);
1258   T.consumeOpen();
1259 
1260   SourceLocation TypeStartLoc = Tok.getLocation();
1261   ObjCDeclContextSwitch ObjCDC(*this);
1262 
1263   // Parse type qualifiers, in, inout, etc.
1264   ParseObjCTypeQualifierList(DS, context);
1265 
1266   ParsedType Ty;
1267   if (isTypeSpecifierQualifier() || isObjCInstancetype()) {
1268     // Parse an abstract declarator.
1269     DeclSpec declSpec(AttrFactory);
1270     declSpec.setObjCQualifiers(&DS);
1271     DeclSpecContext dsContext = DSC_normal;
1272     if (context == Declarator::ObjCResultContext)
1273       dsContext = DSC_objc_method_result;
1274     ParseSpecifierQualifierList(declSpec, AS_none, dsContext);
1275     declSpec.SetRangeEnd(Tok.getLocation());
1276     Declarator declarator(declSpec, context);
1277     ParseDeclarator(declarator);
1278 
1279     // If that's not invalid, extract a type.
1280     if (!declarator.isInvalidType()) {
1281       // Map a nullability specifier to a context-sensitive keyword attribute.
1282       bool addedToDeclSpec = false;
1283       if (DS.getObjCDeclQualifier() & ObjCDeclSpec::DQ_CSNullability)
1284         addContextSensitiveTypeNullability(*this, declarator,
1285                                            DS.getNullability(),
1286                                            DS.getNullabilityLoc(),
1287                                            addedToDeclSpec);
1288 
1289       TypeResult type = Actions.ActOnTypeName(getCurScope(), declarator);
1290       if (!type.isInvalid())
1291         Ty = type.get();
1292 
1293       // If we're parsing a parameter, steal all the decl attributes
1294       // and add them to the decl spec.
1295       if (context == Declarator::ObjCParameterContext)
1296         takeDeclAttributes(*paramAttrs, declarator);
1297     }
1298   }
1299 
1300   if (Tok.is(tok::r_paren))
1301     T.consumeClose();
1302   else if (Tok.getLocation() == TypeStartLoc) {
1303     // If we didn't eat any tokens, then this isn't a type.
1304     Diag(Tok, diag::err_expected_type);
1305     SkipUntil(tok::r_paren, StopAtSemi);
1306   } else {
1307     // Otherwise, we found *something*, but didn't get a ')' in the right
1308     // place.  Emit an error then return what we have as the type.
1309     T.consumeClose();
1310   }
1311   return Ty;
1312 }
1313 
1314 ///   objc-method-decl:
1315 ///     objc-selector
1316 ///     objc-keyword-selector objc-parmlist[opt]
1317 ///     objc-type-name objc-selector
1318 ///     objc-type-name objc-keyword-selector objc-parmlist[opt]
1319 ///
1320 ///   objc-keyword-selector:
1321 ///     objc-keyword-decl
1322 ///     objc-keyword-selector objc-keyword-decl
1323 ///
1324 ///   objc-keyword-decl:
1325 ///     objc-selector ':' objc-type-name objc-keyword-attributes[opt] identifier
1326 ///     objc-selector ':' objc-keyword-attributes[opt] identifier
1327 ///     ':' objc-type-name objc-keyword-attributes[opt] identifier
1328 ///     ':' objc-keyword-attributes[opt] identifier
1329 ///
1330 ///   objc-parmlist:
1331 ///     objc-parms objc-ellipsis[opt]
1332 ///
1333 ///   objc-parms:
1334 ///     objc-parms , parameter-declaration
1335 ///
1336 ///   objc-ellipsis:
1337 ///     , ...
1338 ///
1339 ///   objc-keyword-attributes:         [OBJC2]
1340 ///     __attribute__((unused))
1341 ///
1342 Decl *Parser::ParseObjCMethodDecl(SourceLocation mLoc,
1343                                   tok::TokenKind mType,
1344                                   tok::ObjCKeywordKind MethodImplKind,
1345                                   bool MethodDefinition) {
1346   ParsingDeclRAIIObject PD(*this, ParsingDeclRAIIObject::NoParent);
1347 
1348   if (Tok.is(tok::code_completion)) {
1349     Actions.CodeCompleteObjCMethodDecl(getCurScope(), mType == tok::minus,
1350                                        /*ReturnType=*/nullptr);
1351     cutOffParsing();
1352     return nullptr;
1353   }
1354 
1355   // Parse the return type if present.
1356   ParsedType ReturnType;
1357   ObjCDeclSpec DSRet;
1358   if (Tok.is(tok::l_paren))
1359     ReturnType = ParseObjCTypeName(DSRet, Declarator::ObjCResultContext,
1360                                    nullptr);
1361 
1362   // If attributes exist before the method, parse them.
1363   ParsedAttributes methodAttrs(AttrFactory);
1364   if (getLangOpts().ObjC2)
1365     MaybeParseGNUAttributes(methodAttrs);
1366 
1367   if (Tok.is(tok::code_completion)) {
1368     Actions.CodeCompleteObjCMethodDecl(getCurScope(), mType == tok::minus,
1369                                        ReturnType);
1370     cutOffParsing();
1371     return nullptr;
1372   }
1373 
1374   // Now parse the selector.
1375   SourceLocation selLoc;
1376   IdentifierInfo *SelIdent = ParseObjCSelectorPiece(selLoc);
1377 
1378   // An unnamed colon is valid.
1379   if (!SelIdent && Tok.isNot(tok::colon)) { // missing selector name.
1380     Diag(Tok, diag::err_expected_selector_for_method)
1381       << SourceRange(mLoc, Tok.getLocation());
1382     // Skip until we get a ; or @.
1383     SkipUntil(tok::at, StopAtSemi | StopBeforeMatch);
1384     return nullptr;
1385   }
1386 
1387   SmallVector<DeclaratorChunk::ParamInfo, 8> CParamInfo;
1388   if (Tok.isNot(tok::colon)) {
1389     // If attributes exist after the method, parse them.
1390     if (getLangOpts().ObjC2)
1391       MaybeParseGNUAttributes(methodAttrs);
1392 
1393     Selector Sel = PP.getSelectorTable().getNullarySelector(SelIdent);
1394     Decl *Result
1395          = Actions.ActOnMethodDeclaration(getCurScope(), mLoc, Tok.getLocation(),
1396                                           mType, DSRet, ReturnType,
1397                                           selLoc, Sel, nullptr,
1398                                           CParamInfo.data(), CParamInfo.size(),
1399                                           methodAttrs.getList(), MethodImplKind,
1400                                           false, MethodDefinition);
1401     PD.complete(Result);
1402     return Result;
1403   }
1404 
1405   SmallVector<IdentifierInfo *, 12> KeyIdents;
1406   SmallVector<SourceLocation, 12> KeyLocs;
1407   SmallVector<Sema::ObjCArgInfo, 12> ArgInfos;
1408   ParseScope PrototypeScope(this, Scope::FunctionPrototypeScope |
1409                             Scope::FunctionDeclarationScope | Scope::DeclScope);
1410 
1411   AttributePool allParamAttrs(AttrFactory);
1412   while (1) {
1413     ParsedAttributes paramAttrs(AttrFactory);
1414     Sema::ObjCArgInfo ArgInfo;
1415 
1416     // Each iteration parses a single keyword argument.
1417     if (ExpectAndConsume(tok::colon))
1418       break;
1419 
1420     ArgInfo.Type = nullptr;
1421     if (Tok.is(tok::l_paren)) // Parse the argument type if present.
1422       ArgInfo.Type = ParseObjCTypeName(ArgInfo.DeclSpec,
1423                                        Declarator::ObjCParameterContext,
1424                                        &paramAttrs);
1425 
1426     // If attributes exist before the argument name, parse them.
1427     // Regardless, collect all the attributes we've parsed so far.
1428     ArgInfo.ArgAttrs = nullptr;
1429     if (getLangOpts().ObjC2) {
1430       MaybeParseGNUAttributes(paramAttrs);
1431       ArgInfo.ArgAttrs = paramAttrs.getList();
1432     }
1433 
1434     // Code completion for the next piece of the selector.
1435     if (Tok.is(tok::code_completion)) {
1436       KeyIdents.push_back(SelIdent);
1437       Actions.CodeCompleteObjCMethodDeclSelector(getCurScope(),
1438                                                  mType == tok::minus,
1439                                                  /*AtParameterName=*/true,
1440                                                  ReturnType, KeyIdents);
1441       cutOffParsing();
1442       return nullptr;
1443     }
1444 
1445     if (Tok.isNot(tok::identifier)) {
1446       Diag(Tok, diag::err_expected)
1447           << tok::identifier; // missing argument name.
1448       break;
1449     }
1450 
1451     ArgInfo.Name = Tok.getIdentifierInfo();
1452     ArgInfo.NameLoc = Tok.getLocation();
1453     ConsumeToken(); // Eat the identifier.
1454 
1455     ArgInfos.push_back(ArgInfo);
1456     KeyIdents.push_back(SelIdent);
1457     KeyLocs.push_back(selLoc);
1458 
1459     // Make sure the attributes persist.
1460     allParamAttrs.takeAllFrom(paramAttrs.getPool());
1461 
1462     // Code completion for the next piece of the selector.
1463     if (Tok.is(tok::code_completion)) {
1464       Actions.CodeCompleteObjCMethodDeclSelector(getCurScope(),
1465                                                  mType == tok::minus,
1466                                                  /*AtParameterName=*/false,
1467                                                  ReturnType, KeyIdents);
1468       cutOffParsing();
1469       return nullptr;
1470     }
1471 
1472     // Check for another keyword selector.
1473     SelIdent = ParseObjCSelectorPiece(selLoc);
1474     if (!SelIdent && Tok.isNot(tok::colon))
1475       break;
1476     if (!SelIdent) {
1477       SourceLocation ColonLoc = Tok.getLocation();
1478       if (PP.getLocForEndOfToken(ArgInfo.NameLoc) == ColonLoc) {
1479         Diag(ArgInfo.NameLoc, diag::warn_missing_selector_name) << ArgInfo.Name;
1480         Diag(ArgInfo.NameLoc, diag::note_missing_selector_name) << ArgInfo.Name;
1481         Diag(ColonLoc, diag::note_force_empty_selector_name) << ArgInfo.Name;
1482       }
1483     }
1484     // We have a selector or a colon, continue parsing.
1485   }
1486 
1487   bool isVariadic = false;
1488   bool cStyleParamWarned = false;
1489   // Parse the (optional) parameter list.
1490   while (Tok.is(tok::comma)) {
1491     ConsumeToken();
1492     if (Tok.is(tok::ellipsis)) {
1493       isVariadic = true;
1494       ConsumeToken();
1495       break;
1496     }
1497     if (!cStyleParamWarned) {
1498       Diag(Tok, diag::warn_cstyle_param);
1499       cStyleParamWarned = true;
1500     }
1501     DeclSpec DS(AttrFactory);
1502     ParseDeclarationSpecifiers(DS);
1503     // Parse the declarator.
1504     Declarator ParmDecl(DS, Declarator::PrototypeContext);
1505     ParseDeclarator(ParmDecl);
1506     IdentifierInfo *ParmII = ParmDecl.getIdentifier();
1507     Decl *Param = Actions.ActOnParamDeclarator(getCurScope(), ParmDecl);
1508     CParamInfo.push_back(DeclaratorChunk::ParamInfo(ParmII,
1509                                                     ParmDecl.getIdentifierLoc(),
1510                                                     Param,
1511                                                     nullptr));
1512   }
1513 
1514   // FIXME: Add support for optional parameter list...
1515   // If attributes exist after the method, parse them.
1516   if (getLangOpts().ObjC2)
1517     MaybeParseGNUAttributes(methodAttrs);
1518 
1519   if (KeyIdents.size() == 0)
1520     return nullptr;
1521 
1522   Selector Sel = PP.getSelectorTable().getSelector(KeyIdents.size(),
1523                                                    &KeyIdents[0]);
1524   Decl *Result
1525        = Actions.ActOnMethodDeclaration(getCurScope(), mLoc, Tok.getLocation(),
1526                                         mType, DSRet, ReturnType,
1527                                         KeyLocs, Sel, &ArgInfos[0],
1528                                         CParamInfo.data(), CParamInfo.size(),
1529                                         methodAttrs.getList(),
1530                                         MethodImplKind, isVariadic, MethodDefinition);
1531 
1532   PD.complete(Result);
1533   return Result;
1534 }
1535 
1536 ///   objc-protocol-refs:
1537 ///     '<' identifier-list '>'
1538 ///
1539 bool Parser::
1540 ParseObjCProtocolReferences(SmallVectorImpl<Decl *> &Protocols,
1541                             SmallVectorImpl<SourceLocation> &ProtocolLocs,
1542                             bool WarnOnDeclarations, bool ForObjCContainer,
1543                             SourceLocation &LAngleLoc, SourceLocation &EndLoc,
1544                             bool consumeLastToken) {
1545   assert(Tok.is(tok::less) && "expected <");
1546 
1547   LAngleLoc = ConsumeToken(); // the "<"
1548 
1549   SmallVector<IdentifierLocPair, 8> ProtocolIdents;
1550 
1551   while (1) {
1552     if (Tok.is(tok::code_completion)) {
1553       Actions.CodeCompleteObjCProtocolReferences(ProtocolIdents);
1554       cutOffParsing();
1555       return true;
1556     }
1557 
1558     if (Tok.isNot(tok::identifier)) {
1559       Diag(Tok, diag::err_expected) << tok::identifier;
1560       SkipUntil(tok::greater, StopAtSemi);
1561       return true;
1562     }
1563     ProtocolIdents.push_back(std::make_pair(Tok.getIdentifierInfo(),
1564                                        Tok.getLocation()));
1565     ProtocolLocs.push_back(Tok.getLocation());
1566     ConsumeToken();
1567 
1568     if (!TryConsumeToken(tok::comma))
1569       break;
1570   }
1571 
1572   // Consume the '>'.
1573   if (ParseGreaterThanInTemplateList(EndLoc, consumeLastToken,
1574                                      /*ObjCGenericList=*/false))
1575     return true;
1576 
1577   // Convert the list of protocols identifiers into a list of protocol decls.
1578   Actions.FindProtocolDeclaration(WarnOnDeclarations, ForObjCContainer,
1579                                   ProtocolIdents, Protocols);
1580   return false;
1581 }
1582 
1583 TypeResult Parser::parseObjCProtocolQualifierType(SourceLocation &rAngleLoc) {
1584   assert(Tok.is(tok::less) && "Protocol qualifiers start with '<'");
1585   assert(getLangOpts().ObjC1 && "Protocol qualifiers only exist in Objective-C");
1586 
1587   SourceLocation lAngleLoc;
1588   SmallVector<Decl *, 8> protocols;
1589   SmallVector<SourceLocation, 8> protocolLocs;
1590   (void)ParseObjCProtocolReferences(protocols, protocolLocs, false, false,
1591                                     lAngleLoc, rAngleLoc,
1592                                     /*consumeLastToken=*/true);
1593   TypeResult result = Actions.actOnObjCProtocolQualifierType(lAngleLoc,
1594                                                              protocols,
1595                                                              protocolLocs,
1596                                                              rAngleLoc);
1597   if (result.isUsable()) {
1598     Diag(lAngleLoc, diag::warn_objc_protocol_qualifier_missing_id)
1599       << FixItHint::CreateInsertion(lAngleLoc, "id")
1600       << SourceRange(lAngleLoc, rAngleLoc);
1601   }
1602 
1603   return result;
1604 }
1605 
1606 /// Parse Objective-C type arguments or protocol qualifiers.
1607 ///
1608 ///   objc-type-arguments:
1609 ///     '<' type-name '...'[opt] (',' type-name '...'[opt])* '>'
1610 ///
1611 void Parser::parseObjCTypeArgsOrProtocolQualifiers(
1612        ParsedType baseType,
1613        SourceLocation &typeArgsLAngleLoc,
1614        SmallVectorImpl<ParsedType> &typeArgs,
1615        SourceLocation &typeArgsRAngleLoc,
1616        SourceLocation &protocolLAngleLoc,
1617        SmallVectorImpl<Decl *> &protocols,
1618        SmallVectorImpl<SourceLocation> &protocolLocs,
1619        SourceLocation &protocolRAngleLoc,
1620        bool consumeLastToken,
1621        bool warnOnIncompleteProtocols) {
1622   assert(Tok.is(tok::less) && "Not at the start of type args or protocols");
1623   SourceLocation lAngleLoc = ConsumeToken();
1624 
1625   // Whether all of the elements we've parsed thus far are single
1626   // identifiers, which might be types or might be protocols.
1627   bool allSingleIdentifiers = true;
1628   SmallVector<IdentifierInfo *, 4> identifiers;
1629   SmallVectorImpl<SourceLocation> &identifierLocs = protocolLocs;
1630 
1631   // Parse a list of comma-separated identifiers, bailing out if we
1632   // see something different.
1633   do {
1634     // Parse a single identifier.
1635     if (Tok.is(tok::identifier) &&
1636         (NextToken().is(tok::comma) ||
1637          NextToken().is(tok::greater) ||
1638          NextToken().is(tok::greatergreater))) {
1639       identifiers.push_back(Tok.getIdentifierInfo());
1640       identifierLocs.push_back(ConsumeToken());
1641       continue;
1642     }
1643 
1644     if (Tok.is(tok::code_completion)) {
1645       // FIXME: Also include types here.
1646       SmallVector<IdentifierLocPair, 4> identifierLocPairs;
1647       for (unsigned i = 0, n = identifiers.size(); i != n; ++i) {
1648         identifierLocPairs.push_back(IdentifierLocPair(identifiers[i],
1649                                                        identifierLocs[i]));
1650       }
1651 
1652       QualType BaseT = Actions.GetTypeFromParser(baseType);
1653       if (!BaseT.isNull() && BaseT->acceptsObjCTypeParams()) {
1654         Actions.CodeCompleteOrdinaryName(getCurScope(), Sema::PCC_Type);
1655       } else {
1656         Actions.CodeCompleteObjCProtocolReferences(identifierLocPairs);
1657       }
1658       cutOffParsing();
1659       return;
1660     }
1661 
1662     allSingleIdentifiers = false;
1663     break;
1664   } while (TryConsumeToken(tok::comma));
1665 
1666   // If we parsed an identifier list, semantic analysis sorts out
1667   // whether it refers to protocols or to type arguments.
1668   if (allSingleIdentifiers) {
1669     // Parse the closing '>'.
1670     SourceLocation rAngleLoc;
1671     (void)ParseGreaterThanInTemplateList(rAngleLoc, consumeLastToken,
1672                                          /*ObjCGenericList=*/true);
1673 
1674     // Let Sema figure out what we parsed.
1675     Actions.actOnObjCTypeArgsOrProtocolQualifiers(getCurScope(),
1676                                                   baseType,
1677                                                   lAngleLoc,
1678                                                   identifiers,
1679                                                   identifierLocs,
1680                                                   rAngleLoc,
1681                                                   typeArgsLAngleLoc,
1682                                                   typeArgs,
1683                                                   typeArgsRAngleLoc,
1684                                                   protocolLAngleLoc,
1685                                                   protocols,
1686                                                   protocolRAngleLoc,
1687                                                   warnOnIncompleteProtocols);
1688     return;
1689   }
1690 
1691   // We syntactically matched a type argument, so commit to parsing
1692   // type arguments.
1693 
1694   // Convert the identifiers into type arguments.
1695   bool invalid = false;
1696   for (unsigned i = 0, n = identifiers.size(); i != n; ++i) {
1697     ParsedType typeArg
1698       = Actions.getTypeName(*identifiers[i], identifierLocs[i], getCurScope());
1699     if (typeArg) {
1700       DeclSpec DS(AttrFactory);
1701       const char *prevSpec = nullptr;
1702       unsigned diagID;
1703       DS.SetTypeSpecType(TST_typename, identifierLocs[i], prevSpec, diagID,
1704                          typeArg, Actions.getASTContext().getPrintingPolicy());
1705 
1706       // Form a declarator to turn this into a type.
1707       Declarator D(DS, Declarator::TypeNameContext);
1708       TypeResult fullTypeArg = Actions.ActOnTypeName(getCurScope(), D);
1709       if (fullTypeArg.isUsable())
1710         typeArgs.push_back(fullTypeArg.get());
1711       else
1712         invalid = true;
1713     } else {
1714       invalid = true;
1715     }
1716   }
1717 
1718   // Continue parsing type-names.
1719   do {
1720     TypeResult typeArg = ParseTypeName();
1721 
1722     // Consume the '...' for a pack expansion.
1723     SourceLocation ellipsisLoc;
1724     TryConsumeToken(tok::ellipsis, ellipsisLoc);
1725     if (typeArg.isUsable() && ellipsisLoc.isValid()) {
1726       typeArg = Actions.ActOnPackExpansion(typeArg.get(), ellipsisLoc);
1727     }
1728 
1729     if (typeArg.isUsable()) {
1730       typeArgs.push_back(typeArg.get());
1731     } else {
1732       invalid = true;
1733     }
1734   } while (TryConsumeToken(tok::comma));
1735 
1736   // Parse the closing '>'.
1737   SourceLocation rAngleLoc;
1738   (void)ParseGreaterThanInTemplateList(rAngleLoc, consumeLastToken,
1739                                        /*ObjCGenericList=*/true);
1740 
1741   if (invalid) {
1742     typeArgs.clear();
1743     return;
1744   }
1745 
1746   // Record left/right angle locations.
1747   typeArgsLAngleLoc = lAngleLoc;
1748   typeArgsRAngleLoc = rAngleLoc;
1749 }
1750 
1751 void Parser::parseObjCTypeArgsAndProtocolQualifiers(
1752        ParsedType baseType,
1753        SourceLocation &typeArgsLAngleLoc,
1754        SmallVectorImpl<ParsedType> &typeArgs,
1755        SourceLocation &typeArgsRAngleLoc,
1756        SourceLocation &protocolLAngleLoc,
1757        SmallVectorImpl<Decl *> &protocols,
1758        SmallVectorImpl<SourceLocation> &protocolLocs,
1759        SourceLocation &protocolRAngleLoc,
1760        bool consumeLastToken) {
1761   assert(Tok.is(tok::less));
1762 
1763   // Parse the first angle-bracket-delimited clause.
1764   parseObjCTypeArgsOrProtocolQualifiers(baseType,
1765                                         typeArgsLAngleLoc,
1766                                         typeArgs,
1767                                         typeArgsRAngleLoc,
1768                                         protocolLAngleLoc,
1769                                         protocols,
1770                                         protocolLocs,
1771                                         protocolRAngleLoc,
1772                                         consumeLastToken,
1773                                         /*warnOnIncompleteProtocols=*/false);
1774 
1775   // An Objective-C object pointer followed by type arguments
1776   // can then be followed again by a set of protocol references, e.g.,
1777   // \c NSArray<NSView><NSTextDelegate>
1778   if ((consumeLastToken && Tok.is(tok::less)) ||
1779       (!consumeLastToken && NextToken().is(tok::less))) {
1780     // If we aren't consuming the last token, the prior '>' is still hanging
1781     // there. Consume it before we parse the protocol qualifiers.
1782     if (!consumeLastToken)
1783       ConsumeToken();
1784 
1785     if (!protocols.empty()) {
1786       SkipUntilFlags skipFlags = SkipUntilFlags();
1787       if (!consumeLastToken)
1788         skipFlags = skipFlags | StopBeforeMatch;
1789       Diag(Tok, diag::err_objc_type_args_after_protocols)
1790         << SourceRange(protocolLAngleLoc, protocolRAngleLoc);
1791       SkipUntil(tok::greater, tok::greatergreater, skipFlags);
1792     } else {
1793       ParseObjCProtocolReferences(protocols, protocolLocs,
1794                                   /*WarnOnDeclarations=*/false,
1795                                   /*ForObjCContainer=*/false,
1796                                   protocolLAngleLoc, protocolRAngleLoc,
1797                                   consumeLastToken);
1798     }
1799   }
1800 }
1801 
1802 TypeResult Parser::parseObjCTypeArgsAndProtocolQualifiers(
1803              SourceLocation loc,
1804              ParsedType type,
1805              bool consumeLastToken,
1806              SourceLocation &endLoc) {
1807   assert(Tok.is(tok::less));
1808   SourceLocation typeArgsLAngleLoc;
1809   SmallVector<ParsedType, 4> typeArgs;
1810   SourceLocation typeArgsRAngleLoc;
1811   SourceLocation protocolLAngleLoc;
1812   SmallVector<Decl *, 4> protocols;
1813   SmallVector<SourceLocation, 4> protocolLocs;
1814   SourceLocation protocolRAngleLoc;
1815 
1816   // Parse type arguments and protocol qualifiers.
1817   parseObjCTypeArgsAndProtocolQualifiers(type, typeArgsLAngleLoc, typeArgs,
1818                                          typeArgsRAngleLoc, protocolLAngleLoc,
1819                                          protocols, protocolLocs,
1820                                          protocolRAngleLoc, consumeLastToken);
1821 
1822   // Compute the location of the last token.
1823   if (consumeLastToken)
1824     endLoc = PrevTokLocation;
1825   else
1826     endLoc = Tok.getLocation();
1827 
1828   return Actions.actOnObjCTypeArgsAndProtocolQualifiers(
1829            getCurScope(),
1830            loc,
1831            type,
1832            typeArgsLAngleLoc,
1833            typeArgs,
1834            typeArgsRAngleLoc,
1835            protocolLAngleLoc,
1836            protocols,
1837            protocolLocs,
1838            protocolRAngleLoc);
1839 }
1840 
1841 void Parser::HelperActionsForIvarDeclarations(Decl *interfaceDecl, SourceLocation atLoc,
1842                                  BalancedDelimiterTracker &T,
1843                                  SmallVectorImpl<Decl *> &AllIvarDecls,
1844                                  bool RBraceMissing) {
1845   if (!RBraceMissing)
1846     T.consumeClose();
1847 
1848   Actions.ActOnObjCContainerStartDefinition(interfaceDecl);
1849   Actions.ActOnLastBitfield(T.getCloseLocation(), AllIvarDecls);
1850   Actions.ActOnObjCContainerFinishDefinition();
1851   // Call ActOnFields() even if we don't have any decls. This is useful
1852   // for code rewriting tools that need to be aware of the empty list.
1853   Actions.ActOnFields(getCurScope(), atLoc, interfaceDecl,
1854                       AllIvarDecls,
1855                       T.getOpenLocation(), T.getCloseLocation(), nullptr);
1856 }
1857 
1858 ///   objc-class-instance-variables:
1859 ///     '{' objc-instance-variable-decl-list[opt] '}'
1860 ///
1861 ///   objc-instance-variable-decl-list:
1862 ///     objc-visibility-spec
1863 ///     objc-instance-variable-decl ';'
1864 ///     ';'
1865 ///     objc-instance-variable-decl-list objc-visibility-spec
1866 ///     objc-instance-variable-decl-list objc-instance-variable-decl ';'
1867 ///     objc-instance-variable-decl-list ';'
1868 ///
1869 ///   objc-visibility-spec:
1870 ///     @private
1871 ///     @protected
1872 ///     @public
1873 ///     @package [OBJC2]
1874 ///
1875 ///   objc-instance-variable-decl:
1876 ///     struct-declaration
1877 ///
1878 void Parser::ParseObjCClassInstanceVariables(Decl *interfaceDecl,
1879                                              tok::ObjCKeywordKind visibility,
1880                                              SourceLocation atLoc) {
1881   assert(Tok.is(tok::l_brace) && "expected {");
1882   SmallVector<Decl *, 32> AllIvarDecls;
1883 
1884   ParseScope ClassScope(this, Scope::DeclScope|Scope::ClassScope);
1885   ObjCDeclContextSwitch ObjCDC(*this);
1886 
1887   BalancedDelimiterTracker T(*this, tok::l_brace);
1888   T.consumeOpen();
1889   // While we still have something to read, read the instance variables.
1890   while (Tok.isNot(tok::r_brace) && !isEofOrEom()) {
1891     // Each iteration of this loop reads one objc-instance-variable-decl.
1892 
1893     // Check for extraneous top-level semicolon.
1894     if (Tok.is(tok::semi)) {
1895       ConsumeExtraSemi(InstanceVariableList);
1896       continue;
1897     }
1898 
1899     // Set the default visibility to private.
1900     if (TryConsumeToken(tok::at)) { // parse objc-visibility-spec
1901       if (Tok.is(tok::code_completion)) {
1902         Actions.CodeCompleteObjCAtVisibility(getCurScope());
1903         return cutOffParsing();
1904       }
1905 
1906       switch (Tok.getObjCKeywordID()) {
1907       case tok::objc_private:
1908       case tok::objc_public:
1909       case tok::objc_protected:
1910       case tok::objc_package:
1911         visibility = Tok.getObjCKeywordID();
1912         ConsumeToken();
1913         continue;
1914 
1915       case tok::objc_end:
1916         Diag(Tok, diag::err_objc_unexpected_atend);
1917         Tok.setLocation(Tok.getLocation().getLocWithOffset(-1));
1918         Tok.setKind(tok::at);
1919         Tok.setLength(1);
1920         PP.EnterToken(Tok);
1921         HelperActionsForIvarDeclarations(interfaceDecl, atLoc,
1922                                          T, AllIvarDecls, true);
1923         return;
1924 
1925       default:
1926         Diag(Tok, diag::err_objc_illegal_visibility_spec);
1927         continue;
1928       }
1929     }
1930 
1931     if (Tok.is(tok::code_completion)) {
1932       Actions.CodeCompleteOrdinaryName(getCurScope(),
1933                                        Sema::PCC_ObjCInstanceVariableList);
1934       return cutOffParsing();
1935     }
1936 
1937     auto ObjCIvarCallback = [&](ParsingFieldDeclarator &FD) {
1938       Actions.ActOnObjCContainerStartDefinition(interfaceDecl);
1939       // Install the declarator into the interface decl.
1940       FD.D.setObjCIvar(true);
1941       Decl *Field = Actions.ActOnIvar(
1942           getCurScope(), FD.D.getDeclSpec().getSourceRange().getBegin(), FD.D,
1943           FD.BitfieldSize, visibility);
1944       Actions.ActOnObjCContainerFinishDefinition();
1945       if (Field)
1946         AllIvarDecls.push_back(Field);
1947       FD.complete(Field);
1948     };
1949 
1950     // Parse all the comma separated declarators.
1951     ParsingDeclSpec DS(*this);
1952     ParseStructDeclaration(DS, ObjCIvarCallback);
1953 
1954     if (Tok.is(tok::semi)) {
1955       ConsumeToken();
1956     } else {
1957       Diag(Tok, diag::err_expected_semi_decl_list);
1958       // Skip to end of block or statement
1959       SkipUntil(tok::r_brace, StopAtSemi | StopBeforeMatch);
1960     }
1961   }
1962   HelperActionsForIvarDeclarations(interfaceDecl, atLoc,
1963                                    T, AllIvarDecls, false);
1964   return;
1965 }
1966 
1967 ///   objc-protocol-declaration:
1968 ///     objc-protocol-definition
1969 ///     objc-protocol-forward-reference
1970 ///
1971 ///   objc-protocol-definition:
1972 ///     \@protocol identifier
1973 ///       objc-protocol-refs[opt]
1974 ///       objc-interface-decl-list
1975 ///     \@end
1976 ///
1977 ///   objc-protocol-forward-reference:
1978 ///     \@protocol identifier-list ';'
1979 ///
1980 ///   "\@protocol identifier ;" should be resolved as "\@protocol
1981 ///   identifier-list ;": objc-interface-decl-list may not start with a
1982 ///   semicolon in the first alternative if objc-protocol-refs are omitted.
1983 Parser::DeclGroupPtrTy
1984 Parser::ParseObjCAtProtocolDeclaration(SourceLocation AtLoc,
1985                                        ParsedAttributes &attrs) {
1986   assert(Tok.isObjCAtKeyword(tok::objc_protocol) &&
1987          "ParseObjCAtProtocolDeclaration(): Expected @protocol");
1988   ConsumeToken(); // the "protocol" identifier
1989 
1990   if (Tok.is(tok::code_completion)) {
1991     Actions.CodeCompleteObjCProtocolDecl(getCurScope());
1992     cutOffParsing();
1993     return nullptr;
1994   }
1995 
1996   MaybeSkipAttributes(tok::objc_protocol);
1997 
1998   if (Tok.isNot(tok::identifier)) {
1999     Diag(Tok, diag::err_expected) << tok::identifier; // missing protocol name.
2000     return nullptr;
2001   }
2002   // Save the protocol name, then consume it.
2003   IdentifierInfo *protocolName = Tok.getIdentifierInfo();
2004   SourceLocation nameLoc = ConsumeToken();
2005 
2006   if (TryConsumeToken(tok::semi)) { // forward declaration of one protocol.
2007     IdentifierLocPair ProtoInfo(protocolName, nameLoc);
2008     return Actions.ActOnForwardProtocolDeclaration(AtLoc, ProtoInfo,
2009                                                    attrs.getList());
2010   }
2011 
2012   CheckNestedObjCContexts(AtLoc);
2013 
2014   if (Tok.is(tok::comma)) { // list of forward declarations.
2015     SmallVector<IdentifierLocPair, 8> ProtocolRefs;
2016     ProtocolRefs.push_back(std::make_pair(protocolName, nameLoc));
2017 
2018     // Parse the list of forward declarations.
2019     while (1) {
2020       ConsumeToken(); // the ','
2021       if (Tok.isNot(tok::identifier)) {
2022         Diag(Tok, diag::err_expected) << tok::identifier;
2023         SkipUntil(tok::semi);
2024         return nullptr;
2025       }
2026       ProtocolRefs.push_back(IdentifierLocPair(Tok.getIdentifierInfo(),
2027                                                Tok.getLocation()));
2028       ConsumeToken(); // the identifier
2029 
2030       if (Tok.isNot(tok::comma))
2031         break;
2032     }
2033     // Consume the ';'.
2034     if (ExpectAndConsume(tok::semi, diag::err_expected_after, "@protocol"))
2035       return nullptr;
2036 
2037     return Actions.ActOnForwardProtocolDeclaration(AtLoc, ProtocolRefs,
2038                                                    attrs.getList());
2039   }
2040 
2041   // Last, and definitely not least, parse a protocol declaration.
2042   SourceLocation LAngleLoc, EndProtoLoc;
2043 
2044   SmallVector<Decl *, 8> ProtocolRefs;
2045   SmallVector<SourceLocation, 8> ProtocolLocs;
2046   if (Tok.is(tok::less) &&
2047       ParseObjCProtocolReferences(ProtocolRefs, ProtocolLocs, false, true,
2048                                   LAngleLoc, EndProtoLoc,
2049                                   /*consumeLastToken=*/true))
2050     return nullptr;
2051 
2052   Decl *ProtoType =
2053     Actions.ActOnStartProtocolInterface(AtLoc, protocolName, nameLoc,
2054                                         ProtocolRefs.data(),
2055                                         ProtocolRefs.size(),
2056                                         ProtocolLocs.data(),
2057                                         EndProtoLoc, attrs.getList());
2058 
2059   ParseObjCInterfaceDeclList(tok::objc_protocol, ProtoType);
2060   return Actions.ConvertDeclToDeclGroup(ProtoType);
2061 }
2062 
2063 ///   objc-implementation:
2064 ///     objc-class-implementation-prologue
2065 ///     objc-category-implementation-prologue
2066 ///
2067 ///   objc-class-implementation-prologue:
2068 ///     @implementation identifier objc-superclass[opt]
2069 ///       objc-class-instance-variables[opt]
2070 ///
2071 ///   objc-category-implementation-prologue:
2072 ///     @implementation identifier ( identifier )
2073 Parser::DeclGroupPtrTy
2074 Parser::ParseObjCAtImplementationDeclaration(SourceLocation AtLoc) {
2075   assert(Tok.isObjCAtKeyword(tok::objc_implementation) &&
2076          "ParseObjCAtImplementationDeclaration(): Expected @implementation");
2077   CheckNestedObjCContexts(AtLoc);
2078   ConsumeToken(); // the "implementation" identifier
2079 
2080   // Code completion after '@implementation'.
2081   if (Tok.is(tok::code_completion)) {
2082     Actions.CodeCompleteObjCImplementationDecl(getCurScope());
2083     cutOffParsing();
2084     return nullptr;
2085   }
2086 
2087   MaybeSkipAttributes(tok::objc_implementation);
2088 
2089   if (Tok.isNot(tok::identifier)) {
2090     Diag(Tok, diag::err_expected)
2091         << tok::identifier; // missing class or category name.
2092     return nullptr;
2093   }
2094   // We have a class or category name - consume it.
2095   IdentifierInfo *nameId = Tok.getIdentifierInfo();
2096   SourceLocation nameLoc = ConsumeToken(); // consume class or category name
2097   Decl *ObjCImpDecl = nullptr;
2098 
2099   // Neither a type parameter list nor a list of protocol references is
2100   // permitted here. Parse and diagnose them.
2101   if (Tok.is(tok::less)) {
2102     SourceLocation lAngleLoc, rAngleLoc;
2103     SmallVector<IdentifierLocPair, 8> protocolIdents;
2104     SourceLocation diagLoc = Tok.getLocation();
2105     ObjCTypeParamListScope typeParamScope(Actions, getCurScope());
2106     if (parseObjCTypeParamListOrProtocolRefs(typeParamScope, lAngleLoc,
2107                                              protocolIdents, rAngleLoc)) {
2108       Diag(diagLoc, diag::err_objc_parameterized_implementation)
2109         << SourceRange(diagLoc, PrevTokLocation);
2110     } else if (lAngleLoc.isValid()) {
2111       Diag(lAngleLoc, diag::err_unexpected_protocol_qualifier)
2112         << FixItHint::CreateRemoval(SourceRange(lAngleLoc, rAngleLoc));
2113     }
2114   }
2115 
2116   if (Tok.is(tok::l_paren)) {
2117     // we have a category implementation.
2118     ConsumeParen();
2119     SourceLocation categoryLoc, rparenLoc;
2120     IdentifierInfo *categoryId = nullptr;
2121 
2122     if (Tok.is(tok::code_completion)) {
2123       Actions.CodeCompleteObjCImplementationCategory(getCurScope(), nameId, nameLoc);
2124       cutOffParsing();
2125       return nullptr;
2126     }
2127 
2128     if (Tok.is(tok::identifier)) {
2129       categoryId = Tok.getIdentifierInfo();
2130       categoryLoc = ConsumeToken();
2131     } else {
2132       Diag(Tok, diag::err_expected)
2133           << tok::identifier; // missing category name.
2134       return nullptr;
2135     }
2136     if (Tok.isNot(tok::r_paren)) {
2137       Diag(Tok, diag::err_expected) << tok::r_paren;
2138       SkipUntil(tok::r_paren); // don't stop at ';'
2139       return nullptr;
2140     }
2141     rparenLoc = ConsumeParen();
2142     if (Tok.is(tok::less)) { // we have illegal '<' try to recover
2143       Diag(Tok, diag::err_unexpected_protocol_qualifier);
2144       SourceLocation protocolLAngleLoc, protocolRAngleLoc;
2145       SmallVector<Decl *, 4> protocols;
2146       SmallVector<SourceLocation, 4> protocolLocs;
2147       (void)ParseObjCProtocolReferences(protocols, protocolLocs,
2148                                         /*warnOnIncompleteProtocols=*/false,
2149                                         /*ForObjCContainer=*/false,
2150                                         protocolLAngleLoc, protocolRAngleLoc,
2151                                         /*consumeLastToken=*/true);
2152     }
2153     ObjCImpDecl = Actions.ActOnStartCategoryImplementation(
2154                                     AtLoc, nameId, nameLoc, categoryId,
2155                                     categoryLoc);
2156 
2157   } else {
2158     // We have a class implementation
2159     SourceLocation superClassLoc;
2160     IdentifierInfo *superClassId = nullptr;
2161     if (TryConsumeToken(tok::colon)) {
2162       // We have a super class
2163       if (Tok.isNot(tok::identifier)) {
2164         Diag(Tok, diag::err_expected)
2165             << tok::identifier; // missing super class name.
2166         return nullptr;
2167       }
2168       superClassId = Tok.getIdentifierInfo();
2169       superClassLoc = ConsumeToken(); // Consume super class name
2170     }
2171     ObjCImpDecl = Actions.ActOnStartClassImplementation(
2172                                     AtLoc, nameId, nameLoc,
2173                                     superClassId, superClassLoc);
2174 
2175     if (Tok.is(tok::l_brace)) // we have ivars
2176       ParseObjCClassInstanceVariables(ObjCImpDecl, tok::objc_private, AtLoc);
2177     else if (Tok.is(tok::less)) { // we have illegal '<' try to recover
2178       Diag(Tok, diag::err_unexpected_protocol_qualifier);
2179 
2180       SourceLocation protocolLAngleLoc, protocolRAngleLoc;
2181       SmallVector<Decl *, 4> protocols;
2182       SmallVector<SourceLocation, 4> protocolLocs;
2183       (void)ParseObjCProtocolReferences(protocols, protocolLocs,
2184                                         /*warnOnIncompleteProtocols=*/false,
2185                                         /*ForObjCContainer=*/false,
2186                                         protocolLAngleLoc, protocolRAngleLoc,
2187                                         /*consumeLastToken=*/true);
2188     }
2189   }
2190   assert(ObjCImpDecl);
2191 
2192   SmallVector<Decl *, 8> DeclsInGroup;
2193 
2194   {
2195     ObjCImplParsingDataRAII ObjCImplParsing(*this, ObjCImpDecl);
2196     while (!ObjCImplParsing.isFinished() && !isEofOrEom()) {
2197       ParsedAttributesWithRange attrs(AttrFactory);
2198       MaybeParseCXX11Attributes(attrs);
2199       MaybeParseMicrosoftAttributes(attrs);
2200       if (DeclGroupPtrTy DGP = ParseExternalDeclaration(attrs)) {
2201         DeclGroupRef DG = DGP.get();
2202         DeclsInGroup.append(DG.begin(), DG.end());
2203       }
2204     }
2205   }
2206 
2207   return Actions.ActOnFinishObjCImplementation(ObjCImpDecl, DeclsInGroup);
2208 }
2209 
2210 Parser::DeclGroupPtrTy
2211 Parser::ParseObjCAtEndDeclaration(SourceRange atEnd) {
2212   assert(Tok.isObjCAtKeyword(tok::objc_end) &&
2213          "ParseObjCAtEndDeclaration(): Expected @end");
2214   ConsumeToken(); // the "end" identifier
2215   if (CurParsedObjCImpl)
2216     CurParsedObjCImpl->finish(atEnd);
2217   else
2218     // missing @implementation
2219     Diag(atEnd.getBegin(), diag::err_expected_objc_container);
2220   return nullptr;
2221 }
2222 
2223 Parser::ObjCImplParsingDataRAII::~ObjCImplParsingDataRAII() {
2224   if (!Finished) {
2225     finish(P.Tok.getLocation());
2226     if (P.isEofOrEom()) {
2227       P.Diag(P.Tok, diag::err_objc_missing_end)
2228           << FixItHint::CreateInsertion(P.Tok.getLocation(), "\n@end\n");
2229       P.Diag(Dcl->getLocStart(), diag::note_objc_container_start)
2230           << Sema::OCK_Implementation;
2231     }
2232   }
2233   P.CurParsedObjCImpl = nullptr;
2234   assert(LateParsedObjCMethods.empty());
2235 }
2236 
2237 void Parser::ObjCImplParsingDataRAII::finish(SourceRange AtEnd) {
2238   assert(!Finished);
2239   P.Actions.DefaultSynthesizeProperties(P.getCurScope(), Dcl);
2240   for (size_t i = 0; i < LateParsedObjCMethods.size(); ++i)
2241     P.ParseLexedObjCMethodDefs(*LateParsedObjCMethods[i],
2242                                true/*Methods*/);
2243 
2244   P.Actions.ActOnAtEnd(P.getCurScope(), AtEnd);
2245 
2246   if (HasCFunction)
2247     for (size_t i = 0; i < LateParsedObjCMethods.size(); ++i)
2248       P.ParseLexedObjCMethodDefs(*LateParsedObjCMethods[i],
2249                                  false/*c-functions*/);
2250 
2251   /// \brief Clear and free the cached objc methods.
2252   for (LateParsedObjCMethodContainer::iterator
2253          I = LateParsedObjCMethods.begin(),
2254          E = LateParsedObjCMethods.end(); I != E; ++I)
2255     delete *I;
2256   LateParsedObjCMethods.clear();
2257 
2258   Finished = true;
2259 }
2260 
2261 ///   compatibility-alias-decl:
2262 ///     @compatibility_alias alias-name  class-name ';'
2263 ///
2264 Decl *Parser::ParseObjCAtAliasDeclaration(SourceLocation atLoc) {
2265   assert(Tok.isObjCAtKeyword(tok::objc_compatibility_alias) &&
2266          "ParseObjCAtAliasDeclaration(): Expected @compatibility_alias");
2267   ConsumeToken(); // consume compatibility_alias
2268   if (Tok.isNot(tok::identifier)) {
2269     Diag(Tok, diag::err_expected) << tok::identifier;
2270     return nullptr;
2271   }
2272   IdentifierInfo *aliasId = Tok.getIdentifierInfo();
2273   SourceLocation aliasLoc = ConsumeToken(); // consume alias-name
2274   if (Tok.isNot(tok::identifier)) {
2275     Diag(Tok, diag::err_expected) << tok::identifier;
2276     return nullptr;
2277   }
2278   IdentifierInfo *classId = Tok.getIdentifierInfo();
2279   SourceLocation classLoc = ConsumeToken(); // consume class-name;
2280   ExpectAndConsume(tok::semi, diag::err_expected_after, "@compatibility_alias");
2281   return Actions.ActOnCompatibilityAlias(atLoc, aliasId, aliasLoc,
2282                                          classId, classLoc);
2283 }
2284 
2285 ///   property-synthesis:
2286 ///     @synthesize property-ivar-list ';'
2287 ///
2288 ///   property-ivar-list:
2289 ///     property-ivar
2290 ///     property-ivar-list ',' property-ivar
2291 ///
2292 ///   property-ivar:
2293 ///     identifier
2294 ///     identifier '=' identifier
2295 ///
2296 Decl *Parser::ParseObjCPropertySynthesize(SourceLocation atLoc) {
2297   assert(Tok.isObjCAtKeyword(tok::objc_synthesize) &&
2298          "ParseObjCPropertySynthesize(): Expected '@synthesize'");
2299   ConsumeToken(); // consume synthesize
2300 
2301   while (true) {
2302     if (Tok.is(tok::code_completion)) {
2303       Actions.CodeCompleteObjCPropertyDefinition(getCurScope());
2304       cutOffParsing();
2305       return nullptr;
2306     }
2307 
2308     if (Tok.isNot(tok::identifier)) {
2309       Diag(Tok, diag::err_synthesized_property_name);
2310       SkipUntil(tok::semi);
2311       return nullptr;
2312     }
2313 
2314     IdentifierInfo *propertyIvar = nullptr;
2315     IdentifierInfo *propertyId = Tok.getIdentifierInfo();
2316     SourceLocation propertyLoc = ConsumeToken(); // consume property name
2317     SourceLocation propertyIvarLoc;
2318     if (TryConsumeToken(tok::equal)) {
2319       // property '=' ivar-name
2320       if (Tok.is(tok::code_completion)) {
2321         Actions.CodeCompleteObjCPropertySynthesizeIvar(getCurScope(), propertyId);
2322         cutOffParsing();
2323         return nullptr;
2324       }
2325 
2326       if (Tok.isNot(tok::identifier)) {
2327         Diag(Tok, diag::err_expected) << tok::identifier;
2328         break;
2329       }
2330       propertyIvar = Tok.getIdentifierInfo();
2331       propertyIvarLoc = ConsumeToken(); // consume ivar-name
2332     }
2333     Actions.ActOnPropertyImplDecl(getCurScope(), atLoc, propertyLoc, true,
2334                                   propertyId, propertyIvar, propertyIvarLoc);
2335     if (Tok.isNot(tok::comma))
2336       break;
2337     ConsumeToken(); // consume ','
2338   }
2339   ExpectAndConsume(tok::semi, diag::err_expected_after, "@synthesize");
2340   return nullptr;
2341 }
2342 
2343 ///   property-dynamic:
2344 ///     @dynamic  property-list
2345 ///
2346 ///   property-list:
2347 ///     identifier
2348 ///     property-list ',' identifier
2349 ///
2350 Decl *Parser::ParseObjCPropertyDynamic(SourceLocation atLoc) {
2351   assert(Tok.isObjCAtKeyword(tok::objc_dynamic) &&
2352          "ParseObjCPropertyDynamic(): Expected '@dynamic'");
2353   ConsumeToken(); // consume dynamic
2354   while (true) {
2355     if (Tok.is(tok::code_completion)) {
2356       Actions.CodeCompleteObjCPropertyDefinition(getCurScope());
2357       cutOffParsing();
2358       return nullptr;
2359     }
2360 
2361     if (Tok.isNot(tok::identifier)) {
2362       Diag(Tok, diag::err_expected) << tok::identifier;
2363       SkipUntil(tok::semi);
2364       return nullptr;
2365     }
2366 
2367     IdentifierInfo *propertyId = Tok.getIdentifierInfo();
2368     SourceLocation propertyLoc = ConsumeToken(); // consume property name
2369     Actions.ActOnPropertyImplDecl(getCurScope(), atLoc, propertyLoc, false,
2370                                   propertyId, nullptr, SourceLocation());
2371 
2372     if (Tok.isNot(tok::comma))
2373       break;
2374     ConsumeToken(); // consume ','
2375   }
2376   ExpectAndConsume(tok::semi, diag::err_expected_after, "@dynamic");
2377   return nullptr;
2378 }
2379 
2380 ///  objc-throw-statement:
2381 ///    throw expression[opt];
2382 ///
2383 StmtResult Parser::ParseObjCThrowStmt(SourceLocation atLoc) {
2384   ExprResult Res;
2385   ConsumeToken(); // consume throw
2386   if (Tok.isNot(tok::semi)) {
2387     Res = ParseExpression();
2388     if (Res.isInvalid()) {
2389       SkipUntil(tok::semi);
2390       return StmtError();
2391     }
2392   }
2393   // consume ';'
2394   ExpectAndConsume(tok::semi, diag::err_expected_after, "@throw");
2395   return Actions.ActOnObjCAtThrowStmt(atLoc, Res.get(), getCurScope());
2396 }
2397 
2398 /// objc-synchronized-statement:
2399 ///   @synchronized '(' expression ')' compound-statement
2400 ///
2401 StmtResult
2402 Parser::ParseObjCSynchronizedStmt(SourceLocation atLoc) {
2403   ConsumeToken(); // consume synchronized
2404   if (Tok.isNot(tok::l_paren)) {
2405     Diag(Tok, diag::err_expected_lparen_after) << "@synchronized";
2406     return StmtError();
2407   }
2408 
2409   // The operand is surrounded with parentheses.
2410   ConsumeParen();  // '('
2411   ExprResult operand(ParseExpression());
2412 
2413   if (Tok.is(tok::r_paren)) {
2414     ConsumeParen();  // ')'
2415   } else {
2416     if (!operand.isInvalid())
2417       Diag(Tok, diag::err_expected) << tok::r_paren;
2418 
2419     // Skip forward until we see a left brace, but don't consume it.
2420     SkipUntil(tok::l_brace, StopAtSemi | StopBeforeMatch);
2421   }
2422 
2423   // Require a compound statement.
2424   if (Tok.isNot(tok::l_brace)) {
2425     if (!operand.isInvalid())
2426       Diag(Tok, diag::err_expected) << tok::l_brace;
2427     return StmtError();
2428   }
2429 
2430   // Check the @synchronized operand now.
2431   if (!operand.isInvalid())
2432     operand = Actions.ActOnObjCAtSynchronizedOperand(atLoc, operand.get());
2433 
2434   // Parse the compound statement within a new scope.
2435   ParseScope bodyScope(this, Scope::DeclScope);
2436   StmtResult body(ParseCompoundStatementBody());
2437   bodyScope.Exit();
2438 
2439   // If there was a semantic or parse error earlier with the
2440   // operand, fail now.
2441   if (operand.isInvalid())
2442     return StmtError();
2443 
2444   if (body.isInvalid())
2445     body = Actions.ActOnNullStmt(Tok.getLocation());
2446 
2447   return Actions.ActOnObjCAtSynchronizedStmt(atLoc, operand.get(), body.get());
2448 }
2449 
2450 ///  objc-try-catch-statement:
2451 ///    @try compound-statement objc-catch-list[opt]
2452 ///    @try compound-statement objc-catch-list[opt] @finally compound-statement
2453 ///
2454 ///  objc-catch-list:
2455 ///    @catch ( parameter-declaration ) compound-statement
2456 ///    objc-catch-list @catch ( catch-parameter-declaration ) compound-statement
2457 ///  catch-parameter-declaration:
2458 ///     parameter-declaration
2459 ///     '...' [OBJC2]
2460 ///
2461 StmtResult Parser::ParseObjCTryStmt(SourceLocation atLoc) {
2462   bool catch_or_finally_seen = false;
2463 
2464   ConsumeToken(); // consume try
2465   if (Tok.isNot(tok::l_brace)) {
2466     Diag(Tok, diag::err_expected) << tok::l_brace;
2467     return StmtError();
2468   }
2469   StmtVector CatchStmts;
2470   StmtResult FinallyStmt;
2471   ParseScope TryScope(this, Scope::DeclScope);
2472   StmtResult TryBody(ParseCompoundStatementBody());
2473   TryScope.Exit();
2474   if (TryBody.isInvalid())
2475     TryBody = Actions.ActOnNullStmt(Tok.getLocation());
2476 
2477   while (Tok.is(tok::at)) {
2478     // At this point, we need to lookahead to determine if this @ is the start
2479     // of an @catch or @finally.  We don't want to consume the @ token if this
2480     // is an @try or @encode or something else.
2481     Token AfterAt = GetLookAheadToken(1);
2482     if (!AfterAt.isObjCAtKeyword(tok::objc_catch) &&
2483         !AfterAt.isObjCAtKeyword(tok::objc_finally))
2484       break;
2485 
2486     SourceLocation AtCatchFinallyLoc = ConsumeToken();
2487     if (Tok.isObjCAtKeyword(tok::objc_catch)) {
2488       Decl *FirstPart = nullptr;
2489       ConsumeToken(); // consume catch
2490       if (Tok.is(tok::l_paren)) {
2491         ConsumeParen();
2492         ParseScope CatchScope(this, Scope::DeclScope|Scope::AtCatchScope);
2493         if (Tok.isNot(tok::ellipsis)) {
2494           DeclSpec DS(AttrFactory);
2495           ParseDeclarationSpecifiers(DS);
2496           Declarator ParmDecl(DS, Declarator::ObjCCatchContext);
2497           ParseDeclarator(ParmDecl);
2498 
2499           // Inform the actions module about the declarator, so it
2500           // gets added to the current scope.
2501           FirstPart = Actions.ActOnObjCExceptionDecl(getCurScope(), ParmDecl);
2502         } else
2503           ConsumeToken(); // consume '...'
2504 
2505         SourceLocation RParenLoc;
2506 
2507         if (Tok.is(tok::r_paren))
2508           RParenLoc = ConsumeParen();
2509         else // Skip over garbage, until we get to ')'.  Eat the ')'.
2510           SkipUntil(tok::r_paren, StopAtSemi);
2511 
2512         StmtResult CatchBody(true);
2513         if (Tok.is(tok::l_brace))
2514           CatchBody = ParseCompoundStatementBody();
2515         else
2516           Diag(Tok, diag::err_expected) << tok::l_brace;
2517         if (CatchBody.isInvalid())
2518           CatchBody = Actions.ActOnNullStmt(Tok.getLocation());
2519 
2520         StmtResult Catch = Actions.ActOnObjCAtCatchStmt(AtCatchFinallyLoc,
2521                                                               RParenLoc,
2522                                                               FirstPart,
2523                                                               CatchBody.get());
2524         if (!Catch.isInvalid())
2525           CatchStmts.push_back(Catch.get());
2526 
2527       } else {
2528         Diag(AtCatchFinallyLoc, diag::err_expected_lparen_after)
2529           << "@catch clause";
2530         return StmtError();
2531       }
2532       catch_or_finally_seen = true;
2533     } else {
2534       assert(Tok.isObjCAtKeyword(tok::objc_finally) && "Lookahead confused?");
2535       ConsumeToken(); // consume finally
2536       ParseScope FinallyScope(this, Scope::DeclScope);
2537 
2538       StmtResult FinallyBody(true);
2539       if (Tok.is(tok::l_brace))
2540         FinallyBody = ParseCompoundStatementBody();
2541       else
2542         Diag(Tok, diag::err_expected) << tok::l_brace;
2543       if (FinallyBody.isInvalid())
2544         FinallyBody = Actions.ActOnNullStmt(Tok.getLocation());
2545       FinallyStmt = Actions.ActOnObjCAtFinallyStmt(AtCatchFinallyLoc,
2546                                                    FinallyBody.get());
2547       catch_or_finally_seen = true;
2548       break;
2549     }
2550   }
2551   if (!catch_or_finally_seen) {
2552     Diag(atLoc, diag::err_missing_catch_finally);
2553     return StmtError();
2554   }
2555 
2556   return Actions.ActOnObjCAtTryStmt(atLoc, TryBody.get(),
2557                                     CatchStmts,
2558                                     FinallyStmt.get());
2559 }
2560 
2561 /// objc-autoreleasepool-statement:
2562 ///   @autoreleasepool compound-statement
2563 ///
2564 StmtResult
2565 Parser::ParseObjCAutoreleasePoolStmt(SourceLocation atLoc) {
2566   ConsumeToken(); // consume autoreleasepool
2567   if (Tok.isNot(tok::l_brace)) {
2568     Diag(Tok, diag::err_expected) << tok::l_brace;
2569     return StmtError();
2570   }
2571   // Enter a scope to hold everything within the compound stmt.  Compound
2572   // statements can always hold declarations.
2573   ParseScope BodyScope(this, Scope::DeclScope);
2574 
2575   StmtResult AutoreleasePoolBody(ParseCompoundStatementBody());
2576 
2577   BodyScope.Exit();
2578   if (AutoreleasePoolBody.isInvalid())
2579     AutoreleasePoolBody = Actions.ActOnNullStmt(Tok.getLocation());
2580   return Actions.ActOnObjCAutoreleasePoolStmt(atLoc,
2581                                                 AutoreleasePoolBody.get());
2582 }
2583 
2584 /// StashAwayMethodOrFunctionBodyTokens -  Consume the tokens and store them
2585 /// for later parsing.
2586 void Parser::StashAwayMethodOrFunctionBodyTokens(Decl *MDecl) {
2587   LexedMethod* LM = new LexedMethod(this, MDecl);
2588   CurParsedObjCImpl->LateParsedObjCMethods.push_back(LM);
2589   CachedTokens &Toks = LM->Toks;
2590   // Begin by storing the '{' or 'try' or ':' token.
2591   Toks.push_back(Tok);
2592   if (Tok.is(tok::kw_try)) {
2593     ConsumeToken();
2594     if (Tok.is(tok::colon)) {
2595       Toks.push_back(Tok);
2596       ConsumeToken();
2597       while (Tok.isNot(tok::l_brace)) {
2598         ConsumeAndStoreUntil(tok::l_paren, Toks, /*StopAtSemi=*/false);
2599         ConsumeAndStoreUntil(tok::r_paren, Toks, /*StopAtSemi=*/false);
2600       }
2601     }
2602     Toks.push_back(Tok); // also store '{'
2603   }
2604   else if (Tok.is(tok::colon)) {
2605     ConsumeToken();
2606     // FIXME: This is wrong, due to C++11 braced initialization.
2607     while (Tok.isNot(tok::l_brace)) {
2608       ConsumeAndStoreUntil(tok::l_paren, Toks, /*StopAtSemi=*/false);
2609       ConsumeAndStoreUntil(tok::r_paren, Toks, /*StopAtSemi=*/false);
2610     }
2611     Toks.push_back(Tok); // also store '{'
2612   }
2613   ConsumeBrace();
2614   // Consume everything up to (and including) the matching right brace.
2615   ConsumeAndStoreUntil(tok::r_brace, Toks, /*StopAtSemi=*/false);
2616   while (Tok.is(tok::kw_catch)) {
2617     ConsumeAndStoreUntil(tok::l_brace, Toks, /*StopAtSemi=*/false);
2618     ConsumeAndStoreUntil(tok::r_brace, Toks, /*StopAtSemi=*/false);
2619   }
2620 }
2621 
2622 ///   objc-method-def: objc-method-proto ';'[opt] '{' body '}'
2623 ///
2624 Decl *Parser::ParseObjCMethodDefinition() {
2625   Decl *MDecl = ParseObjCMethodPrototype();
2626 
2627   PrettyDeclStackTraceEntry CrashInfo(Actions, MDecl, Tok.getLocation(),
2628                                       "parsing Objective-C method");
2629 
2630   // parse optional ';'
2631   if (Tok.is(tok::semi)) {
2632     if (CurParsedObjCImpl) {
2633       Diag(Tok, diag::warn_semicolon_before_method_body)
2634         << FixItHint::CreateRemoval(Tok.getLocation());
2635     }
2636     ConsumeToken();
2637   }
2638 
2639   // We should have an opening brace now.
2640   if (Tok.isNot(tok::l_brace)) {
2641     Diag(Tok, diag::err_expected_method_body);
2642 
2643     // Skip over garbage, until we get to '{'.  Don't eat the '{'.
2644     SkipUntil(tok::l_brace, StopAtSemi | StopBeforeMatch);
2645 
2646     // If we didn't find the '{', bail out.
2647     if (Tok.isNot(tok::l_brace))
2648       return nullptr;
2649   }
2650 
2651   if (!MDecl) {
2652     ConsumeBrace();
2653     SkipUntil(tok::r_brace);
2654     return nullptr;
2655   }
2656 
2657   // Allow the rest of sema to find private method decl implementations.
2658   Actions.AddAnyMethodToGlobalPool(MDecl);
2659   assert (CurParsedObjCImpl
2660           && "ParseObjCMethodDefinition - Method out of @implementation");
2661   // Consume the tokens and store them for later parsing.
2662   StashAwayMethodOrFunctionBodyTokens(MDecl);
2663   return MDecl;
2664 }
2665 
2666 StmtResult Parser::ParseObjCAtStatement(SourceLocation AtLoc) {
2667   if (Tok.is(tok::code_completion)) {
2668     Actions.CodeCompleteObjCAtStatement(getCurScope());
2669     cutOffParsing();
2670     return StmtError();
2671   }
2672 
2673   if (Tok.isObjCAtKeyword(tok::objc_try))
2674     return ParseObjCTryStmt(AtLoc);
2675 
2676   if (Tok.isObjCAtKeyword(tok::objc_throw))
2677     return ParseObjCThrowStmt(AtLoc);
2678 
2679   if (Tok.isObjCAtKeyword(tok::objc_synchronized))
2680     return ParseObjCSynchronizedStmt(AtLoc);
2681 
2682   if (Tok.isObjCAtKeyword(tok::objc_autoreleasepool))
2683     return ParseObjCAutoreleasePoolStmt(AtLoc);
2684 
2685   if (Tok.isObjCAtKeyword(tok::objc_import) &&
2686       getLangOpts().DebuggerSupport) {
2687     SkipUntil(tok::semi);
2688     return Actions.ActOnNullStmt(Tok.getLocation());
2689   }
2690 
2691   ExprResult Res(ParseExpressionWithLeadingAt(AtLoc));
2692   if (Res.isInvalid()) {
2693     // If the expression is invalid, skip ahead to the next semicolon. Not
2694     // doing this opens us up to the possibility of infinite loops if
2695     // ParseExpression does not consume any tokens.
2696     SkipUntil(tok::semi);
2697     return StmtError();
2698   }
2699 
2700   // Otherwise, eat the semicolon.
2701   ExpectAndConsumeSemi(diag::err_expected_semi_after_expr);
2702   return Actions.ActOnExprStmt(Res);
2703 }
2704 
2705 ExprResult Parser::ParseObjCAtExpression(SourceLocation AtLoc) {
2706   switch (Tok.getKind()) {
2707   case tok::code_completion:
2708     Actions.CodeCompleteObjCAtExpression(getCurScope());
2709     cutOffParsing();
2710     return ExprError();
2711 
2712   case tok::minus:
2713   case tok::plus: {
2714     tok::TokenKind Kind = Tok.getKind();
2715     SourceLocation OpLoc = ConsumeToken();
2716 
2717     if (!Tok.is(tok::numeric_constant)) {
2718       const char *Symbol = nullptr;
2719       switch (Kind) {
2720       case tok::minus: Symbol = "-"; break;
2721       case tok::plus: Symbol = "+"; break;
2722       default: llvm_unreachable("missing unary operator case");
2723       }
2724       Diag(Tok, diag::err_nsnumber_nonliteral_unary)
2725         << Symbol;
2726       return ExprError();
2727     }
2728 
2729     ExprResult Lit(Actions.ActOnNumericConstant(Tok));
2730     if (Lit.isInvalid()) {
2731       return Lit;
2732     }
2733     ConsumeToken(); // Consume the literal token.
2734 
2735     Lit = Actions.ActOnUnaryOp(getCurScope(), OpLoc, Kind, Lit.get());
2736     if (Lit.isInvalid())
2737       return Lit;
2738 
2739     return ParsePostfixExpressionSuffix(
2740              Actions.BuildObjCNumericLiteral(AtLoc, Lit.get()));
2741   }
2742 
2743   case tok::string_literal:    // primary-expression: string-literal
2744   case tok::wide_string_literal:
2745     return ParsePostfixExpressionSuffix(ParseObjCStringLiteral(AtLoc));
2746 
2747   case tok::char_constant:
2748     return ParsePostfixExpressionSuffix(ParseObjCCharacterLiteral(AtLoc));
2749 
2750   case tok::numeric_constant:
2751     return ParsePostfixExpressionSuffix(ParseObjCNumericLiteral(AtLoc));
2752 
2753   case tok::kw_true:  // Objective-C++, etc.
2754   case tok::kw___objc_yes: // c/c++/objc/objc++ __objc_yes
2755     return ParsePostfixExpressionSuffix(ParseObjCBooleanLiteral(AtLoc, true));
2756   case tok::kw_false: // Objective-C++, etc.
2757   case tok::kw___objc_no: // c/c++/objc/objc++ __objc_no
2758     return ParsePostfixExpressionSuffix(ParseObjCBooleanLiteral(AtLoc, false));
2759 
2760   case tok::l_square:
2761     // Objective-C array literal
2762     return ParsePostfixExpressionSuffix(ParseObjCArrayLiteral(AtLoc));
2763 
2764   case tok::l_brace:
2765     // Objective-C dictionary literal
2766     return ParsePostfixExpressionSuffix(ParseObjCDictionaryLiteral(AtLoc));
2767 
2768   case tok::l_paren:
2769     // Objective-C boxed expression
2770     return ParsePostfixExpressionSuffix(ParseObjCBoxedExpr(AtLoc));
2771 
2772   default:
2773     if (Tok.getIdentifierInfo() == nullptr)
2774       return ExprError(Diag(AtLoc, diag::err_unexpected_at));
2775 
2776     switch (Tok.getIdentifierInfo()->getObjCKeywordID()) {
2777     case tok::objc_encode:
2778       return ParsePostfixExpressionSuffix(ParseObjCEncodeExpression(AtLoc));
2779     case tok::objc_protocol:
2780       return ParsePostfixExpressionSuffix(ParseObjCProtocolExpression(AtLoc));
2781     case tok::objc_selector:
2782       return ParsePostfixExpressionSuffix(ParseObjCSelectorExpression(AtLoc));
2783       default: {
2784         const char *str = nullptr;
2785         if (GetLookAheadToken(1).is(tok::l_brace)) {
2786           char ch = Tok.getIdentifierInfo()->getNameStart()[0];
2787           str =
2788             ch == 't' ? "try"
2789                       : (ch == 'f' ? "finally"
2790                                    : (ch == 'a' ? "autoreleasepool" : nullptr));
2791         }
2792         if (str) {
2793           SourceLocation kwLoc = Tok.getLocation();
2794           return ExprError(Diag(AtLoc, diag::err_unexpected_at) <<
2795                              FixItHint::CreateReplacement(kwLoc, str));
2796         }
2797         else
2798           return ExprError(Diag(AtLoc, diag::err_unexpected_at));
2799       }
2800     }
2801   }
2802 }
2803 
2804 /// \brief Parse the receiver of an Objective-C++ message send.
2805 ///
2806 /// This routine parses the receiver of a message send in
2807 /// Objective-C++ either as a type or as an expression. Note that this
2808 /// routine must not be called to parse a send to 'super', since it
2809 /// has no way to return such a result.
2810 ///
2811 /// \param IsExpr Whether the receiver was parsed as an expression.
2812 ///
2813 /// \param TypeOrExpr If the receiver was parsed as an expression (\c
2814 /// IsExpr is true), the parsed expression. If the receiver was parsed
2815 /// as a type (\c IsExpr is false), the parsed type.
2816 ///
2817 /// \returns True if an error occurred during parsing or semantic
2818 /// analysis, in which case the arguments do not have valid
2819 /// values. Otherwise, returns false for a successful parse.
2820 ///
2821 ///   objc-receiver: [C++]
2822 ///     'super' [not parsed here]
2823 ///     expression
2824 ///     simple-type-specifier
2825 ///     typename-specifier
2826 bool Parser::ParseObjCXXMessageReceiver(bool &IsExpr, void *&TypeOrExpr) {
2827   InMessageExpressionRAIIObject InMessage(*this, true);
2828 
2829   if (Tok.isOneOf(tok::identifier, tok::coloncolon, tok::kw_typename,
2830                   tok::annot_cxxscope))
2831     TryAnnotateTypeOrScopeToken();
2832 
2833   if (!Actions.isSimpleTypeSpecifier(Tok.getKind())) {
2834     //   objc-receiver:
2835     //     expression
2836     // Make sure any typos in the receiver are corrected or diagnosed, so that
2837     // proper recovery can happen. FIXME: Perhaps filter the corrected expr to
2838     // only the things that are valid ObjC receivers?
2839     ExprResult Receiver = Actions.CorrectDelayedTyposInExpr(ParseExpression());
2840     if (Receiver.isInvalid())
2841       return true;
2842 
2843     IsExpr = true;
2844     TypeOrExpr = Receiver.get();
2845     return false;
2846   }
2847 
2848   // objc-receiver:
2849   //   typename-specifier
2850   //   simple-type-specifier
2851   //   expression (that starts with one of the above)
2852   DeclSpec DS(AttrFactory);
2853   ParseCXXSimpleTypeSpecifier(DS);
2854 
2855   if (Tok.is(tok::l_paren)) {
2856     // If we see an opening parentheses at this point, we are
2857     // actually parsing an expression that starts with a
2858     // function-style cast, e.g.,
2859     //
2860     //   postfix-expression:
2861     //     simple-type-specifier ( expression-list [opt] )
2862     //     typename-specifier ( expression-list [opt] )
2863     //
2864     // Parse the remainder of this case, then the (optional)
2865     // postfix-expression suffix, followed by the (optional)
2866     // right-hand side of the binary expression. We have an
2867     // instance method.
2868     ExprResult Receiver = ParseCXXTypeConstructExpression(DS);
2869     if (!Receiver.isInvalid())
2870       Receiver = ParsePostfixExpressionSuffix(Receiver.get());
2871     if (!Receiver.isInvalid())
2872       Receiver = ParseRHSOfBinaryExpression(Receiver.get(), prec::Comma);
2873     if (Receiver.isInvalid())
2874       return true;
2875 
2876     IsExpr = true;
2877     TypeOrExpr = Receiver.get();
2878     return false;
2879   }
2880 
2881   // We have a class message. Turn the simple-type-specifier or
2882   // typename-specifier we parsed into a type and parse the
2883   // remainder of the class message.
2884   Declarator DeclaratorInfo(DS, Declarator::TypeNameContext);
2885   TypeResult Type = Actions.ActOnTypeName(getCurScope(), DeclaratorInfo);
2886   if (Type.isInvalid())
2887     return true;
2888 
2889   IsExpr = false;
2890   TypeOrExpr = Type.get().getAsOpaquePtr();
2891   return false;
2892 }
2893 
2894 /// \brief Determine whether the parser is currently referring to a an
2895 /// Objective-C message send, using a simplified heuristic to avoid overhead.
2896 ///
2897 /// This routine will only return true for a subset of valid message-send
2898 /// expressions.
2899 bool Parser::isSimpleObjCMessageExpression() {
2900   assert(Tok.is(tok::l_square) && getLangOpts().ObjC1 &&
2901          "Incorrect start for isSimpleObjCMessageExpression");
2902   return GetLookAheadToken(1).is(tok::identifier) &&
2903          GetLookAheadToken(2).is(tok::identifier);
2904 }
2905 
2906 bool Parser::isStartOfObjCClassMessageMissingOpenBracket() {
2907   if (!getLangOpts().ObjC1 || !NextToken().is(tok::identifier) ||
2908       InMessageExpression)
2909     return false;
2910 
2911 
2912   ParsedType Type;
2913 
2914   if (Tok.is(tok::annot_typename))
2915     Type = getTypeAnnotation(Tok);
2916   else if (Tok.is(tok::identifier))
2917     Type = Actions.getTypeName(*Tok.getIdentifierInfo(), Tok.getLocation(),
2918                                getCurScope());
2919   else
2920     return false;
2921 
2922   if (!Type.get().isNull() && Type.get()->isObjCObjectOrInterfaceType()) {
2923     const Token &AfterNext = GetLookAheadToken(2);
2924     if (AfterNext.isOneOf(tok::colon, tok::r_square)) {
2925       if (Tok.is(tok::identifier))
2926         TryAnnotateTypeOrScopeToken();
2927 
2928       return Tok.is(tok::annot_typename);
2929     }
2930   }
2931 
2932   return false;
2933 }
2934 
2935 ///   objc-message-expr:
2936 ///     '[' objc-receiver objc-message-args ']'
2937 ///
2938 ///   objc-receiver: [C]
2939 ///     'super'
2940 ///     expression
2941 ///     class-name
2942 ///     type-name
2943 ///
2944 ExprResult Parser::ParseObjCMessageExpression() {
2945   assert(Tok.is(tok::l_square) && "'[' expected");
2946   SourceLocation LBracLoc = ConsumeBracket(); // consume '['
2947 
2948   if (Tok.is(tok::code_completion)) {
2949     Actions.CodeCompleteObjCMessageReceiver(getCurScope());
2950     cutOffParsing();
2951     return ExprError();
2952   }
2953 
2954   InMessageExpressionRAIIObject InMessage(*this, true);
2955 
2956   if (getLangOpts().CPlusPlus) {
2957     // We completely separate the C and C++ cases because C++ requires
2958     // more complicated (read: slower) parsing.
2959 
2960     // Handle send to super.
2961     // FIXME: This doesn't benefit from the same typo-correction we
2962     // get in Objective-C.
2963     if (Tok.is(tok::identifier) && Tok.getIdentifierInfo() == Ident_super &&
2964         NextToken().isNot(tok::period) && getCurScope()->isInObjcMethodScope())
2965       return ParseObjCMessageExpressionBody(LBracLoc, ConsumeToken(), nullptr,
2966                                             nullptr);
2967 
2968     // Parse the receiver, which is either a type or an expression.
2969     bool IsExpr;
2970     void *TypeOrExpr = nullptr;
2971     if (ParseObjCXXMessageReceiver(IsExpr, TypeOrExpr)) {
2972       SkipUntil(tok::r_square, StopAtSemi);
2973       return ExprError();
2974     }
2975 
2976     if (IsExpr)
2977       return ParseObjCMessageExpressionBody(LBracLoc, SourceLocation(), nullptr,
2978                                             static_cast<Expr *>(TypeOrExpr));
2979 
2980     return ParseObjCMessageExpressionBody(LBracLoc, SourceLocation(),
2981                               ParsedType::getFromOpaquePtr(TypeOrExpr),
2982                                           nullptr);
2983   }
2984 
2985   if (Tok.is(tok::identifier)) {
2986     IdentifierInfo *Name = Tok.getIdentifierInfo();
2987     SourceLocation NameLoc = Tok.getLocation();
2988     ParsedType ReceiverType;
2989     switch (Actions.getObjCMessageKind(getCurScope(), Name, NameLoc,
2990                                        Name == Ident_super,
2991                                        NextToken().is(tok::period),
2992                                        ReceiverType)) {
2993     case Sema::ObjCSuperMessage:
2994       return ParseObjCMessageExpressionBody(LBracLoc, ConsumeToken(), nullptr,
2995                                             nullptr);
2996 
2997     case Sema::ObjCClassMessage:
2998       if (!ReceiverType) {
2999         SkipUntil(tok::r_square, StopAtSemi);
3000         return ExprError();
3001       }
3002 
3003       ConsumeToken(); // the type name
3004 
3005       // Parse type arguments and protocol qualifiers.
3006       if (Tok.is(tok::less)) {
3007         SourceLocation NewEndLoc;
3008         TypeResult NewReceiverType
3009           = parseObjCTypeArgsAndProtocolQualifiers(NameLoc, ReceiverType,
3010                                                    /*consumeLastToken=*/true,
3011                                                    NewEndLoc);
3012         if (!NewReceiverType.isUsable()) {
3013           SkipUntil(tok::r_square, StopAtSemi);
3014           return ExprError();
3015         }
3016 
3017         ReceiverType = NewReceiverType.get();
3018       }
3019 
3020       return ParseObjCMessageExpressionBody(LBracLoc, SourceLocation(),
3021                                             ReceiverType, nullptr);
3022 
3023     case Sema::ObjCInstanceMessage:
3024       // Fall through to parse an expression.
3025       break;
3026     }
3027   }
3028 
3029   // Otherwise, an arbitrary expression can be the receiver of a send.
3030   ExprResult Res = Actions.CorrectDelayedTyposInExpr(ParseExpression());
3031   if (Res.isInvalid()) {
3032     SkipUntil(tok::r_square, StopAtSemi);
3033     return Res;
3034   }
3035 
3036   return ParseObjCMessageExpressionBody(LBracLoc, SourceLocation(), nullptr,
3037                                         Res.get());
3038 }
3039 
3040 /// \brief Parse the remainder of an Objective-C message following the
3041 /// '[' objc-receiver.
3042 ///
3043 /// This routine handles sends to super, class messages (sent to a
3044 /// class name), and instance messages (sent to an object), and the
3045 /// target is represented by \p SuperLoc, \p ReceiverType, or \p
3046 /// ReceiverExpr, respectively. Only one of these parameters may have
3047 /// a valid value.
3048 ///
3049 /// \param LBracLoc The location of the opening '['.
3050 ///
3051 /// \param SuperLoc If this is a send to 'super', the location of the
3052 /// 'super' keyword that indicates a send to the superclass.
3053 ///
3054 /// \param ReceiverType If this is a class message, the type of the
3055 /// class we are sending a message to.
3056 ///
3057 /// \param ReceiverExpr If this is an instance message, the expression
3058 /// used to compute the receiver object.
3059 ///
3060 ///   objc-message-args:
3061 ///     objc-selector
3062 ///     objc-keywordarg-list
3063 ///
3064 ///   objc-keywordarg-list:
3065 ///     objc-keywordarg
3066 ///     objc-keywordarg-list objc-keywordarg
3067 ///
3068 ///   objc-keywordarg:
3069 ///     selector-name[opt] ':' objc-keywordexpr
3070 ///
3071 ///   objc-keywordexpr:
3072 ///     nonempty-expr-list
3073 ///
3074 ///   nonempty-expr-list:
3075 ///     assignment-expression
3076 ///     nonempty-expr-list , assignment-expression
3077 ///
3078 ExprResult
3079 Parser::ParseObjCMessageExpressionBody(SourceLocation LBracLoc,
3080                                        SourceLocation SuperLoc,
3081                                        ParsedType ReceiverType,
3082                                        Expr *ReceiverExpr) {
3083   InMessageExpressionRAIIObject InMessage(*this, true);
3084 
3085   if (Tok.is(tok::code_completion)) {
3086     if (SuperLoc.isValid())
3087       Actions.CodeCompleteObjCSuperMessage(getCurScope(), SuperLoc, None,
3088                                            false);
3089     else if (ReceiverType)
3090       Actions.CodeCompleteObjCClassMessage(getCurScope(), ReceiverType, None,
3091                                            false);
3092     else
3093       Actions.CodeCompleteObjCInstanceMessage(getCurScope(), ReceiverExpr,
3094                                               None, false);
3095     cutOffParsing();
3096     return ExprError();
3097   }
3098 
3099   // Parse objc-selector
3100   SourceLocation Loc;
3101   IdentifierInfo *selIdent = ParseObjCSelectorPiece(Loc);
3102 
3103   SmallVector<IdentifierInfo *, 12> KeyIdents;
3104   SmallVector<SourceLocation, 12> KeyLocs;
3105   ExprVector KeyExprs;
3106 
3107   if (Tok.is(tok::colon)) {
3108     while (1) {
3109       // Each iteration parses a single keyword argument.
3110       KeyIdents.push_back(selIdent);
3111       KeyLocs.push_back(Loc);
3112 
3113       if (ExpectAndConsume(tok::colon)) {
3114         // We must manually skip to a ']', otherwise the expression skipper will
3115         // stop at the ']' when it skips to the ';'.  We want it to skip beyond
3116         // the enclosing expression.
3117         SkipUntil(tok::r_square, StopAtSemi);
3118         return ExprError();
3119       }
3120 
3121       ///  Parse the expression after ':'
3122 
3123       if (Tok.is(tok::code_completion)) {
3124         if (SuperLoc.isValid())
3125           Actions.CodeCompleteObjCSuperMessage(getCurScope(), SuperLoc,
3126                                                KeyIdents,
3127                                                /*AtArgumentEpression=*/true);
3128         else if (ReceiverType)
3129           Actions.CodeCompleteObjCClassMessage(getCurScope(), ReceiverType,
3130                                                KeyIdents,
3131                                                /*AtArgumentEpression=*/true);
3132         else
3133           Actions.CodeCompleteObjCInstanceMessage(getCurScope(), ReceiverExpr,
3134                                                   KeyIdents,
3135                                                   /*AtArgumentEpression=*/true);
3136 
3137         cutOffParsing();
3138         return ExprError();
3139       }
3140 
3141       ExprResult Expr;
3142       if (getLangOpts().CPlusPlus11 && Tok.is(tok::l_brace)) {
3143         Diag(Tok, diag::warn_cxx98_compat_generalized_initializer_lists);
3144         Expr = ParseBraceInitializer();
3145       } else
3146         Expr = ParseAssignmentExpression();
3147 
3148       ExprResult Res(Expr);
3149       if (Res.isInvalid()) {
3150         // We must manually skip to a ']', otherwise the expression skipper will
3151         // stop at the ']' when it skips to the ';'.  We want it to skip beyond
3152         // the enclosing expression.
3153         SkipUntil(tok::r_square, StopAtSemi);
3154         return Res;
3155       }
3156 
3157       // We have a valid expression.
3158       KeyExprs.push_back(Res.get());
3159 
3160       // Code completion after each argument.
3161       if (Tok.is(tok::code_completion)) {
3162         if (SuperLoc.isValid())
3163           Actions.CodeCompleteObjCSuperMessage(getCurScope(), SuperLoc,
3164                                                KeyIdents,
3165                                                /*AtArgumentEpression=*/false);
3166         else if (ReceiverType)
3167           Actions.CodeCompleteObjCClassMessage(getCurScope(), ReceiverType,
3168                                                KeyIdents,
3169                                                /*AtArgumentEpression=*/false);
3170         else
3171           Actions.CodeCompleteObjCInstanceMessage(getCurScope(), ReceiverExpr,
3172                                                   KeyIdents,
3173                                                 /*AtArgumentEpression=*/false);
3174         cutOffParsing();
3175         return ExprError();
3176       }
3177 
3178       // Check for another keyword selector.
3179       selIdent = ParseObjCSelectorPiece(Loc);
3180       if (!selIdent && Tok.isNot(tok::colon))
3181         break;
3182       // We have a selector or a colon, continue parsing.
3183     }
3184     // Parse the, optional, argument list, comma separated.
3185     while (Tok.is(tok::comma)) {
3186       SourceLocation commaLoc = ConsumeToken(); // Eat the ','.
3187       ///  Parse the expression after ','
3188       ExprResult Res(ParseAssignmentExpression());
3189       if (Tok.is(tok::colon))
3190         Res = Actions.CorrectDelayedTyposInExpr(Res);
3191       if (Res.isInvalid()) {
3192         if (Tok.is(tok::colon)) {
3193           Diag(commaLoc, diag::note_extra_comma_message_arg) <<
3194             FixItHint::CreateRemoval(commaLoc);
3195         }
3196         // We must manually skip to a ']', otherwise the expression skipper will
3197         // stop at the ']' when it skips to the ';'.  We want it to skip beyond
3198         // the enclosing expression.
3199         SkipUntil(tok::r_square, StopAtSemi);
3200         return Res;
3201       }
3202 
3203       // We have a valid expression.
3204       KeyExprs.push_back(Res.get());
3205     }
3206   } else if (!selIdent) {
3207     Diag(Tok, diag::err_expected) << tok::identifier; // missing selector name.
3208 
3209     // We must manually skip to a ']', otherwise the expression skipper will
3210     // stop at the ']' when it skips to the ';'.  We want it to skip beyond
3211     // the enclosing expression.
3212     SkipUntil(tok::r_square, StopAtSemi);
3213     return ExprError();
3214   }
3215 
3216   if (Tok.isNot(tok::r_square)) {
3217     Diag(Tok, diag::err_expected)
3218         << (Tok.is(tok::identifier) ? tok::colon : tok::r_square);
3219     // We must manually skip to a ']', otherwise the expression skipper will
3220     // stop at the ']' when it skips to the ';'.  We want it to skip beyond
3221     // the enclosing expression.
3222     SkipUntil(tok::r_square, StopAtSemi);
3223     return ExprError();
3224   }
3225 
3226   SourceLocation RBracLoc = ConsumeBracket(); // consume ']'
3227 
3228   unsigned nKeys = KeyIdents.size();
3229   if (nKeys == 0) {
3230     KeyIdents.push_back(selIdent);
3231     KeyLocs.push_back(Loc);
3232   }
3233   Selector Sel = PP.getSelectorTable().getSelector(nKeys, &KeyIdents[0]);
3234 
3235   if (SuperLoc.isValid())
3236     return Actions.ActOnSuperMessage(getCurScope(), SuperLoc, Sel,
3237                                      LBracLoc, KeyLocs, RBracLoc, KeyExprs);
3238   else if (ReceiverType)
3239     return Actions.ActOnClassMessage(getCurScope(), ReceiverType, Sel,
3240                                      LBracLoc, KeyLocs, RBracLoc, KeyExprs);
3241   return Actions.ActOnInstanceMessage(getCurScope(), ReceiverExpr, Sel,
3242                                       LBracLoc, KeyLocs, RBracLoc, KeyExprs);
3243 }
3244 
3245 ExprResult Parser::ParseObjCStringLiteral(SourceLocation AtLoc) {
3246   ExprResult Res(ParseStringLiteralExpression());
3247   if (Res.isInvalid()) return Res;
3248 
3249   // @"foo" @"bar" is a valid concatenated string.  Eat any subsequent string
3250   // expressions.  At this point, we know that the only valid thing that starts
3251   // with '@' is an @"".
3252   SmallVector<SourceLocation, 4> AtLocs;
3253   ExprVector AtStrings;
3254   AtLocs.push_back(AtLoc);
3255   AtStrings.push_back(Res.get());
3256 
3257   while (Tok.is(tok::at)) {
3258     AtLocs.push_back(ConsumeToken()); // eat the @.
3259 
3260     // Invalid unless there is a string literal.
3261     if (!isTokenStringLiteral())
3262       return ExprError(Diag(Tok, diag::err_objc_concat_string));
3263 
3264     ExprResult Lit(ParseStringLiteralExpression());
3265     if (Lit.isInvalid())
3266       return Lit;
3267 
3268     AtStrings.push_back(Lit.get());
3269   }
3270 
3271   return Actions.ParseObjCStringLiteral(AtLocs.data(), AtStrings);
3272 }
3273 
3274 /// ParseObjCBooleanLiteral -
3275 /// objc-scalar-literal : '@' boolean-keyword
3276 ///                        ;
3277 /// boolean-keyword: 'true' | 'false' | '__objc_yes' | '__objc_no'
3278 ///                        ;
3279 ExprResult Parser::ParseObjCBooleanLiteral(SourceLocation AtLoc,
3280                                            bool ArgValue) {
3281   SourceLocation EndLoc = ConsumeToken();             // consume the keyword.
3282   return Actions.ActOnObjCBoolLiteral(AtLoc, EndLoc, ArgValue);
3283 }
3284 
3285 /// ParseObjCCharacterLiteral -
3286 /// objc-scalar-literal : '@' character-literal
3287 ///                        ;
3288 ExprResult Parser::ParseObjCCharacterLiteral(SourceLocation AtLoc) {
3289   ExprResult Lit(Actions.ActOnCharacterConstant(Tok));
3290   if (Lit.isInvalid()) {
3291     return Lit;
3292   }
3293   ConsumeToken(); // Consume the literal token.
3294   return Actions.BuildObjCNumericLiteral(AtLoc, Lit.get());
3295 }
3296 
3297 /// ParseObjCNumericLiteral -
3298 /// objc-scalar-literal : '@' scalar-literal
3299 ///                        ;
3300 /// scalar-literal : | numeric-constant			/* any numeric constant. */
3301 ///                    ;
3302 ExprResult Parser::ParseObjCNumericLiteral(SourceLocation AtLoc) {
3303   ExprResult Lit(Actions.ActOnNumericConstant(Tok));
3304   if (Lit.isInvalid()) {
3305     return Lit;
3306   }
3307   ConsumeToken(); // Consume the literal token.
3308   return Actions.BuildObjCNumericLiteral(AtLoc, Lit.get());
3309 }
3310 
3311 /// ParseObjCBoxedExpr -
3312 /// objc-box-expression:
3313 ///       @( assignment-expression )
3314 ExprResult
3315 Parser::ParseObjCBoxedExpr(SourceLocation AtLoc) {
3316   if (Tok.isNot(tok::l_paren))
3317     return ExprError(Diag(Tok, diag::err_expected_lparen_after) << "@");
3318 
3319   BalancedDelimiterTracker T(*this, tok::l_paren);
3320   T.consumeOpen();
3321   ExprResult ValueExpr(ParseAssignmentExpression());
3322   if (T.consumeClose())
3323     return ExprError();
3324 
3325   if (ValueExpr.isInvalid())
3326     return ExprError();
3327 
3328   // Wrap the sub-expression in a parenthesized expression, to distinguish
3329   // a boxed expression from a literal.
3330   SourceLocation LPLoc = T.getOpenLocation(), RPLoc = T.getCloseLocation();
3331   ValueExpr = Actions.ActOnParenExpr(LPLoc, RPLoc, ValueExpr.get());
3332   return Actions.BuildObjCBoxedExpr(SourceRange(AtLoc, RPLoc),
3333                                     ValueExpr.get());
3334 }
3335 
3336 ExprResult Parser::ParseObjCArrayLiteral(SourceLocation AtLoc) {
3337   ExprVector ElementExprs;                   // array elements.
3338   ConsumeBracket(); // consume the l_square.
3339 
3340   while (Tok.isNot(tok::r_square)) {
3341     // Parse list of array element expressions (all must be id types).
3342     ExprResult Res(ParseAssignmentExpression());
3343     if (Res.isInvalid()) {
3344       // We must manually skip to a ']', otherwise the expression skipper will
3345       // stop at the ']' when it skips to the ';'.  We want it to skip beyond
3346       // the enclosing expression.
3347       SkipUntil(tok::r_square, StopAtSemi);
3348       return Res;
3349     }
3350 
3351     // Parse the ellipsis that indicates a pack expansion.
3352     if (Tok.is(tok::ellipsis))
3353       Res = Actions.ActOnPackExpansion(Res.get(), ConsumeToken());
3354     if (Res.isInvalid())
3355       return true;
3356 
3357     ElementExprs.push_back(Res.get());
3358 
3359     if (Tok.is(tok::comma))
3360       ConsumeToken(); // Eat the ','.
3361     else if (Tok.isNot(tok::r_square))
3362       return ExprError(Diag(Tok, diag::err_expected_either) << tok::r_square
3363                                                             << tok::comma);
3364   }
3365   SourceLocation EndLoc = ConsumeBracket(); // location of ']'
3366   MultiExprArg Args(ElementExprs);
3367   return Actions.BuildObjCArrayLiteral(SourceRange(AtLoc, EndLoc), Args);
3368 }
3369 
3370 ExprResult Parser::ParseObjCDictionaryLiteral(SourceLocation AtLoc) {
3371   SmallVector<ObjCDictionaryElement, 4> Elements; // dictionary elements.
3372   ConsumeBrace(); // consume the l_square.
3373   while (Tok.isNot(tok::r_brace)) {
3374     // Parse the comma separated key : value expressions.
3375     ExprResult KeyExpr;
3376     {
3377       ColonProtectionRAIIObject X(*this);
3378       KeyExpr = ParseAssignmentExpression();
3379       if (KeyExpr.isInvalid()) {
3380         // We must manually skip to a '}', otherwise the expression skipper will
3381         // stop at the '}' when it skips to the ';'.  We want it to skip beyond
3382         // the enclosing expression.
3383         SkipUntil(tok::r_brace, StopAtSemi);
3384         return KeyExpr;
3385       }
3386     }
3387 
3388     if (ExpectAndConsume(tok::colon)) {
3389       SkipUntil(tok::r_brace, StopAtSemi);
3390       return ExprError();
3391     }
3392 
3393     ExprResult ValueExpr(ParseAssignmentExpression());
3394     if (ValueExpr.isInvalid()) {
3395       // We must manually skip to a '}', otherwise the expression skipper will
3396       // stop at the '}' when it skips to the ';'.  We want it to skip beyond
3397       // the enclosing expression.
3398       SkipUntil(tok::r_brace, StopAtSemi);
3399       return ValueExpr;
3400     }
3401 
3402     // Parse the ellipsis that designates this as a pack expansion.
3403     SourceLocation EllipsisLoc;
3404     if (getLangOpts().CPlusPlus)
3405       TryConsumeToken(tok::ellipsis, EllipsisLoc);
3406 
3407     // We have a valid expression. Collect it in a vector so we can
3408     // build the argument list.
3409     ObjCDictionaryElement Element = {
3410       KeyExpr.get(), ValueExpr.get(), EllipsisLoc, None
3411     };
3412     Elements.push_back(Element);
3413 
3414     if (!TryConsumeToken(tok::comma) && Tok.isNot(tok::r_brace))
3415       return ExprError(Diag(Tok, diag::err_expected_either) << tok::r_brace
3416                                                             << tok::comma);
3417   }
3418   SourceLocation EndLoc = ConsumeBrace();
3419 
3420   // Create the ObjCDictionaryLiteral.
3421   return Actions.BuildObjCDictionaryLiteral(SourceRange(AtLoc, EndLoc),
3422                                             Elements);
3423 }
3424 
3425 ///    objc-encode-expression:
3426 ///      \@encode ( type-name )
3427 ExprResult
3428 Parser::ParseObjCEncodeExpression(SourceLocation AtLoc) {
3429   assert(Tok.isObjCAtKeyword(tok::objc_encode) && "Not an @encode expression!");
3430 
3431   SourceLocation EncLoc = ConsumeToken();
3432 
3433   if (Tok.isNot(tok::l_paren))
3434     return ExprError(Diag(Tok, diag::err_expected_lparen_after) << "@encode");
3435 
3436   BalancedDelimiterTracker T(*this, tok::l_paren);
3437   T.consumeOpen();
3438 
3439   TypeResult Ty = ParseTypeName();
3440 
3441   T.consumeClose();
3442 
3443   if (Ty.isInvalid())
3444     return ExprError();
3445 
3446   return Actions.ParseObjCEncodeExpression(AtLoc, EncLoc, T.getOpenLocation(),
3447                                            Ty.get(), T.getCloseLocation());
3448 }
3449 
3450 ///     objc-protocol-expression
3451 ///       \@protocol ( protocol-name )
3452 ExprResult
3453 Parser::ParseObjCProtocolExpression(SourceLocation AtLoc) {
3454   SourceLocation ProtoLoc = ConsumeToken();
3455 
3456   if (Tok.isNot(tok::l_paren))
3457     return ExprError(Diag(Tok, diag::err_expected_lparen_after) << "@protocol");
3458 
3459   BalancedDelimiterTracker T(*this, tok::l_paren);
3460   T.consumeOpen();
3461 
3462   if (Tok.isNot(tok::identifier))
3463     return ExprError(Diag(Tok, diag::err_expected) << tok::identifier);
3464 
3465   IdentifierInfo *protocolId = Tok.getIdentifierInfo();
3466   SourceLocation ProtoIdLoc = ConsumeToken();
3467 
3468   T.consumeClose();
3469 
3470   return Actions.ParseObjCProtocolExpression(protocolId, AtLoc, ProtoLoc,
3471                                              T.getOpenLocation(), ProtoIdLoc,
3472                                              T.getCloseLocation());
3473 }
3474 
3475 ///     objc-selector-expression
3476 ///       @selector '(' '('[opt] objc-keyword-selector ')'[opt] ')'
3477 ExprResult Parser::ParseObjCSelectorExpression(SourceLocation AtLoc) {
3478   SourceLocation SelectorLoc = ConsumeToken();
3479 
3480   if (Tok.isNot(tok::l_paren))
3481     return ExprError(Diag(Tok, diag::err_expected_lparen_after) << "@selector");
3482 
3483   SmallVector<IdentifierInfo *, 12> KeyIdents;
3484   SourceLocation sLoc;
3485 
3486   BalancedDelimiterTracker T(*this, tok::l_paren);
3487   T.consumeOpen();
3488   bool HasOptionalParen = Tok.is(tok::l_paren);
3489   if (HasOptionalParen)
3490     ConsumeParen();
3491 
3492   if (Tok.is(tok::code_completion)) {
3493     Actions.CodeCompleteObjCSelector(getCurScope(), KeyIdents);
3494     cutOffParsing();
3495     return ExprError();
3496   }
3497 
3498   IdentifierInfo *SelIdent = ParseObjCSelectorPiece(sLoc);
3499   if (!SelIdent &&  // missing selector name.
3500       Tok.isNot(tok::colon) && Tok.isNot(tok::coloncolon))
3501     return ExprError(Diag(Tok, diag::err_expected) << tok::identifier);
3502 
3503   KeyIdents.push_back(SelIdent);
3504 
3505   unsigned nColons = 0;
3506   if (Tok.isNot(tok::r_paren)) {
3507     while (1) {
3508       if (TryConsumeToken(tok::coloncolon)) { // Handle :: in C++.
3509         ++nColons;
3510         KeyIdents.push_back(nullptr);
3511       } else if (ExpectAndConsume(tok::colon)) // Otherwise expect ':'.
3512         return ExprError();
3513       ++nColons;
3514 
3515       if (Tok.is(tok::r_paren))
3516         break;
3517 
3518       if (Tok.is(tok::code_completion)) {
3519         Actions.CodeCompleteObjCSelector(getCurScope(), KeyIdents);
3520         cutOffParsing();
3521         return ExprError();
3522       }
3523 
3524       // Check for another keyword selector.
3525       SourceLocation Loc;
3526       SelIdent = ParseObjCSelectorPiece(Loc);
3527       KeyIdents.push_back(SelIdent);
3528       if (!SelIdent && Tok.isNot(tok::colon) && Tok.isNot(tok::coloncolon))
3529         break;
3530     }
3531   }
3532   if (HasOptionalParen && Tok.is(tok::r_paren))
3533     ConsumeParen(); // ')'
3534   T.consumeClose();
3535   Selector Sel = PP.getSelectorTable().getSelector(nColons, &KeyIdents[0]);
3536   return Actions.ParseObjCSelectorExpression(Sel, AtLoc, SelectorLoc,
3537                                              T.getOpenLocation(),
3538                                              T.getCloseLocation(),
3539                                              !HasOptionalParen);
3540  }
3541 
3542 void Parser::ParseLexedObjCMethodDefs(LexedMethod &LM, bool parseMethod) {
3543   // MCDecl might be null due to error in method or c-function  prototype, etc.
3544   Decl *MCDecl = LM.D;
3545   bool skip = MCDecl &&
3546               ((parseMethod && !Actions.isObjCMethodDecl(MCDecl)) ||
3547               (!parseMethod && Actions.isObjCMethodDecl(MCDecl)));
3548   if (skip)
3549     return;
3550 
3551   // Save the current token position.
3552   SourceLocation OrigLoc = Tok.getLocation();
3553 
3554   assert(!LM.Toks.empty() && "ParseLexedObjCMethodDef - Empty body!");
3555   // Append the current token at the end of the new token stream so that it
3556   // doesn't get lost.
3557   LM.Toks.push_back(Tok);
3558   PP.EnterTokenStream(LM.Toks.data(), LM.Toks.size(), true, false);
3559 
3560   // Consume the previously pushed token.
3561   ConsumeAnyToken(/*ConsumeCodeCompletionTok=*/true);
3562 
3563   assert(Tok.isOneOf(tok::l_brace, tok::kw_try, tok::colon) &&
3564          "Inline objective-c method not starting with '{' or 'try' or ':'");
3565   // Enter a scope for the method or c-function body.
3566   ParseScope BodyScope(this,
3567                        parseMethod
3568                        ? Scope::ObjCMethodScope|Scope::FnScope|Scope::DeclScope
3569                        : Scope::FnScope|Scope::DeclScope);
3570 
3571   // Tell the actions module that we have entered a method or c-function definition
3572   // with the specified Declarator for the method/function.
3573   if (parseMethod)
3574     Actions.ActOnStartOfObjCMethodDef(getCurScope(), MCDecl);
3575   else
3576     Actions.ActOnStartOfFunctionDef(getCurScope(), MCDecl);
3577   if (Tok.is(tok::kw_try))
3578     ParseFunctionTryBlock(MCDecl, BodyScope);
3579   else {
3580     if (Tok.is(tok::colon))
3581       ParseConstructorInitializer(MCDecl);
3582     ParseFunctionStatementBody(MCDecl, BodyScope);
3583   }
3584 
3585   if (Tok.getLocation() != OrigLoc) {
3586     // Due to parsing error, we either went over the cached tokens or
3587     // there are still cached tokens left. If it's the latter case skip the
3588     // leftover tokens.
3589     // Since this is an uncommon situation that should be avoided, use the
3590     // expensive isBeforeInTranslationUnit call.
3591     if (PP.getSourceManager().isBeforeInTranslationUnit(Tok.getLocation(),
3592                                                      OrigLoc))
3593       while (Tok.getLocation() != OrigLoc && Tok.isNot(tok::eof))
3594         ConsumeAnyToken();
3595   }
3596 
3597   return;
3598 }
3599