1 //===--- SemaObjCProperty.cpp - Semantic Analysis for ObjC @property ------===//
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 semantic analysis for Objective C @property and
11 //  @synthesize declarations.
12 //
13 //===----------------------------------------------------------------------===//
14 
15 #include "clang/Sema/SemaInternal.h"
16 #include "clang/AST/ASTMutationListener.h"
17 #include "clang/AST/DeclObjC.h"
18 #include "clang/AST/ExprCXX.h"
19 #include "clang/AST/ExprObjC.h"
20 #include "clang/Basic/SourceManager.h"
21 #include "clang/Lex/Lexer.h"
22 #include "clang/Lex/Preprocessor.h"
23 #include "clang/Sema/Initialization.h"
24 #include "llvm/ADT/DenseSet.h"
25 #include "llvm/ADT/SmallString.h"
26 
27 using namespace clang;
28 
29 //===----------------------------------------------------------------------===//
30 // Grammar actions.
31 //===----------------------------------------------------------------------===//
32 
33 /// getImpliedARCOwnership - Given a set of property attributes and a
34 /// type, infer an expected lifetime.  The type's ownership qualification
35 /// is not considered.
36 ///
37 /// Returns OCL_None if the attributes as stated do not imply an ownership.
38 /// Never returns OCL_Autoreleasing.
39 static Qualifiers::ObjCLifetime getImpliedARCOwnership(
40                                ObjCPropertyDecl::PropertyAttributeKind attrs,
41                                                 QualType type) {
42   // retain, strong, copy, weak, and unsafe_unretained are only legal
43   // on properties of retainable pointer type.
44   if (attrs & (ObjCPropertyDecl::OBJC_PR_retain |
45                ObjCPropertyDecl::OBJC_PR_strong |
46                ObjCPropertyDecl::OBJC_PR_copy)) {
47     return Qualifiers::OCL_Strong;
48   } else if (attrs & ObjCPropertyDecl::OBJC_PR_weak) {
49     return Qualifiers::OCL_Weak;
50   } else if (attrs & ObjCPropertyDecl::OBJC_PR_unsafe_unretained) {
51     return Qualifiers::OCL_ExplicitNone;
52   }
53 
54   // assign can appear on other types, so we have to check the
55   // property type.
56   if (attrs & ObjCPropertyDecl::OBJC_PR_assign &&
57       type->isObjCRetainableType()) {
58     return Qualifiers::OCL_ExplicitNone;
59   }
60 
61   return Qualifiers::OCL_None;
62 }
63 
64 /// Check the internal consistency of a property declaration with
65 /// an explicit ownership qualifier.
66 static void checkPropertyDeclWithOwnership(Sema &S,
67                                            ObjCPropertyDecl *property) {
68   if (property->isInvalidDecl()) return;
69 
70   ObjCPropertyDecl::PropertyAttributeKind propertyKind
71     = property->getPropertyAttributes();
72   Qualifiers::ObjCLifetime propertyLifetime
73     = property->getType().getObjCLifetime();
74 
75   assert(propertyLifetime != Qualifiers::OCL_None);
76 
77   Qualifiers::ObjCLifetime expectedLifetime
78     = getImpliedARCOwnership(propertyKind, property->getType());
79   if (!expectedLifetime) {
80     // We have a lifetime qualifier but no dominating property
81     // attribute.  That's okay, but restore reasonable invariants by
82     // setting the property attribute according to the lifetime
83     // qualifier.
84     ObjCPropertyDecl::PropertyAttributeKind attr;
85     if (propertyLifetime == Qualifiers::OCL_Strong) {
86       attr = ObjCPropertyDecl::OBJC_PR_strong;
87     } else if (propertyLifetime == Qualifiers::OCL_Weak) {
88       attr = ObjCPropertyDecl::OBJC_PR_weak;
89     } else {
90       assert(propertyLifetime == Qualifiers::OCL_ExplicitNone);
91       attr = ObjCPropertyDecl::OBJC_PR_unsafe_unretained;
92     }
93     property->setPropertyAttributes(attr);
94     return;
95   }
96 
97   if (propertyLifetime == expectedLifetime) return;
98 
99   property->setInvalidDecl();
100   S.Diag(property->getLocation(),
101          diag::err_arc_inconsistent_property_ownership)
102     << property->getDeclName()
103     << expectedLifetime
104     << propertyLifetime;
105 }
106 
107 /// \brief Check this Objective-C property against a property declared in the
108 /// given protocol.
109 static void
110 CheckPropertyAgainstProtocol(Sema &S, ObjCPropertyDecl *Prop,
111                              ObjCProtocolDecl *Proto,
112                              llvm::SmallPtrSetImpl<ObjCProtocolDecl *> &Known) {
113   // Have we seen this protocol before?
114   if (!Known.insert(Proto).second)
115     return;
116 
117   // Look for a property with the same name.
118   DeclContext::lookup_result R = Proto->lookup(Prop->getDeclName());
119   for (unsigned I = 0, N = R.size(); I != N; ++I) {
120     if (ObjCPropertyDecl *ProtoProp = dyn_cast<ObjCPropertyDecl>(R[I])) {
121       S.DiagnosePropertyMismatch(Prop, ProtoProp, Proto->getIdentifier(), true);
122       return;
123     }
124   }
125 
126   // Check this property against any protocols we inherit.
127   for (auto *P : Proto->protocols())
128     CheckPropertyAgainstProtocol(S, Prop, P, Known);
129 }
130 
131 static unsigned deducePropertyOwnershipFromType(Sema &S, QualType T) {
132   // In GC mode, just look for the __weak qualifier.
133   if (S.getLangOpts().getGC() != LangOptions::NonGC) {
134     if (T.isObjCGCWeak()) return ObjCDeclSpec::DQ_PR_weak;
135 
136   // In ARC/MRC, look for an explicit ownership qualifier.
137   // For some reason, this only applies to __weak.
138   } else if (auto ownership = T.getObjCLifetime()) {
139     switch (ownership) {
140     case Qualifiers::OCL_Weak:
141       return ObjCDeclSpec::DQ_PR_weak;
142     case Qualifiers::OCL_Strong:
143       return ObjCDeclSpec::DQ_PR_strong;
144     case Qualifiers::OCL_ExplicitNone:
145       return ObjCDeclSpec::DQ_PR_unsafe_unretained;
146     case Qualifiers::OCL_Autoreleasing:
147     case Qualifiers::OCL_None:
148       return 0;
149     }
150     llvm_unreachable("bad qualifier");
151   }
152 
153   return 0;
154 }
155 
156 static const unsigned OwnershipMask =
157   (ObjCPropertyDecl::OBJC_PR_assign |
158    ObjCPropertyDecl::OBJC_PR_retain |
159    ObjCPropertyDecl::OBJC_PR_copy   |
160    ObjCPropertyDecl::OBJC_PR_weak   |
161    ObjCPropertyDecl::OBJC_PR_strong |
162    ObjCPropertyDecl::OBJC_PR_unsafe_unretained);
163 
164 static unsigned getOwnershipRule(unsigned attr) {
165   unsigned result = attr & OwnershipMask;
166 
167   // From an ownership perspective, assign and unsafe_unretained are
168   // identical; make sure one also implies the other.
169   if (result & (ObjCPropertyDecl::OBJC_PR_assign |
170                 ObjCPropertyDecl::OBJC_PR_unsafe_unretained)) {
171     result |= ObjCPropertyDecl::OBJC_PR_assign |
172               ObjCPropertyDecl::OBJC_PR_unsafe_unretained;
173   }
174 
175   return result;
176 }
177 
178 Decl *Sema::ActOnProperty(Scope *S, SourceLocation AtLoc,
179                           SourceLocation LParenLoc,
180                           FieldDeclarator &FD,
181                           ObjCDeclSpec &ODS,
182                           Selector GetterSel,
183                           Selector SetterSel,
184                           tok::ObjCKeywordKind MethodImplKind,
185                           DeclContext *lexicalDC) {
186   unsigned Attributes = ODS.getPropertyAttributes();
187   FD.D.setObjCWeakProperty((Attributes & ObjCDeclSpec::DQ_PR_weak) != 0);
188   TypeSourceInfo *TSI = GetTypeForDeclarator(FD.D, S);
189   QualType T = TSI->getType();
190   if (!getOwnershipRule(Attributes)) {
191     Attributes |= deducePropertyOwnershipFromType(*this, T);
192   }
193   bool isReadWrite = ((Attributes & ObjCDeclSpec::DQ_PR_readwrite) ||
194                       // default is readwrite!
195                       !(Attributes & ObjCDeclSpec::DQ_PR_readonly));
196 
197   // Proceed with constructing the ObjCPropertyDecls.
198   ObjCContainerDecl *ClassDecl = cast<ObjCContainerDecl>(CurContext);
199   ObjCPropertyDecl *Res = nullptr;
200   if (ObjCCategoryDecl *CDecl = dyn_cast<ObjCCategoryDecl>(ClassDecl)) {
201     if (CDecl->IsClassExtension()) {
202       Res = HandlePropertyInClassExtension(S, AtLoc, LParenLoc,
203                                            FD, GetterSel, SetterSel,
204                                            isReadWrite,
205                                            Attributes,
206                                            ODS.getPropertyAttributes(),
207                                            T, TSI, MethodImplKind);
208       if (!Res)
209         return nullptr;
210     }
211   }
212 
213   if (!Res) {
214     Res = CreatePropertyDecl(S, ClassDecl, AtLoc, LParenLoc, FD,
215                              GetterSel, SetterSel, isReadWrite,
216                              Attributes, ODS.getPropertyAttributes(),
217                              T, TSI, MethodImplKind);
218     if (lexicalDC)
219       Res->setLexicalDeclContext(lexicalDC);
220   }
221 
222   // Validate the attributes on the @property.
223   CheckObjCPropertyAttributes(Res, AtLoc, Attributes,
224                               (isa<ObjCInterfaceDecl>(ClassDecl) ||
225                                isa<ObjCProtocolDecl>(ClassDecl)));
226 
227   // Check consistency if the type has explicit ownership qualification.
228   if (Res->getType().getObjCLifetime())
229     checkPropertyDeclWithOwnership(*this, Res);
230 
231   llvm::SmallPtrSet<ObjCProtocolDecl *, 16> KnownProtos;
232   if (ObjCInterfaceDecl *IFace = dyn_cast<ObjCInterfaceDecl>(ClassDecl)) {
233     // For a class, compare the property against a property in our superclass.
234     bool FoundInSuper = false;
235     ObjCInterfaceDecl *CurrentInterfaceDecl = IFace;
236     while (ObjCInterfaceDecl *Super = CurrentInterfaceDecl->getSuperClass()) {
237       DeclContext::lookup_result R = Super->lookup(Res->getDeclName());
238       for (unsigned I = 0, N = R.size(); I != N; ++I) {
239         if (ObjCPropertyDecl *SuperProp = dyn_cast<ObjCPropertyDecl>(R[I])) {
240           DiagnosePropertyMismatch(Res, SuperProp, Super->getIdentifier(), false);
241           FoundInSuper = true;
242           break;
243         }
244       }
245       if (FoundInSuper)
246         break;
247       else
248         CurrentInterfaceDecl = Super;
249     }
250 
251     if (FoundInSuper) {
252       // Also compare the property against a property in our protocols.
253       for (auto *P : CurrentInterfaceDecl->protocols()) {
254         CheckPropertyAgainstProtocol(*this, Res, P, KnownProtos);
255       }
256     } else {
257       // Slower path: look in all protocols we referenced.
258       for (auto *P : IFace->all_referenced_protocols()) {
259         CheckPropertyAgainstProtocol(*this, Res, P, KnownProtos);
260       }
261     }
262   } else if (ObjCCategoryDecl *Cat = dyn_cast<ObjCCategoryDecl>(ClassDecl)) {
263     // We don't check if class extension. Because properties in class extension
264     // are meant to override some of the attributes and checking has already done
265     // when property in class extension is constructed.
266     if (!Cat->IsClassExtension())
267       for (auto *P : Cat->protocols())
268         CheckPropertyAgainstProtocol(*this, Res, P, KnownProtos);
269   } else {
270     ObjCProtocolDecl *Proto = cast<ObjCProtocolDecl>(ClassDecl);
271     for (auto *P : Proto->protocols())
272       CheckPropertyAgainstProtocol(*this, Res, P, KnownProtos);
273   }
274 
275   ActOnDocumentableDecl(Res);
276   return Res;
277 }
278 
279 static ObjCPropertyDecl::PropertyAttributeKind
280 makePropertyAttributesAsWritten(unsigned Attributes) {
281   unsigned attributesAsWritten = 0;
282   if (Attributes & ObjCDeclSpec::DQ_PR_readonly)
283     attributesAsWritten |= ObjCPropertyDecl::OBJC_PR_readonly;
284   if (Attributes & ObjCDeclSpec::DQ_PR_readwrite)
285     attributesAsWritten |= ObjCPropertyDecl::OBJC_PR_readwrite;
286   if (Attributes & ObjCDeclSpec::DQ_PR_getter)
287     attributesAsWritten |= ObjCPropertyDecl::OBJC_PR_getter;
288   if (Attributes & ObjCDeclSpec::DQ_PR_setter)
289     attributesAsWritten |= ObjCPropertyDecl::OBJC_PR_setter;
290   if (Attributes & ObjCDeclSpec::DQ_PR_assign)
291     attributesAsWritten |= ObjCPropertyDecl::OBJC_PR_assign;
292   if (Attributes & ObjCDeclSpec::DQ_PR_retain)
293     attributesAsWritten |= ObjCPropertyDecl::OBJC_PR_retain;
294   if (Attributes & ObjCDeclSpec::DQ_PR_strong)
295     attributesAsWritten |= ObjCPropertyDecl::OBJC_PR_strong;
296   if (Attributes & ObjCDeclSpec::DQ_PR_weak)
297     attributesAsWritten |= ObjCPropertyDecl::OBJC_PR_weak;
298   if (Attributes & ObjCDeclSpec::DQ_PR_copy)
299     attributesAsWritten |= ObjCPropertyDecl::OBJC_PR_copy;
300   if (Attributes & ObjCDeclSpec::DQ_PR_unsafe_unretained)
301     attributesAsWritten |= ObjCPropertyDecl::OBJC_PR_unsafe_unretained;
302   if (Attributes & ObjCDeclSpec::DQ_PR_nonatomic)
303     attributesAsWritten |= ObjCPropertyDecl::OBJC_PR_nonatomic;
304   if (Attributes & ObjCDeclSpec::DQ_PR_atomic)
305     attributesAsWritten |= ObjCPropertyDecl::OBJC_PR_atomic;
306   if (Attributes & ObjCDeclSpec::DQ_PR_class)
307     attributesAsWritten |= ObjCPropertyDecl::OBJC_PR_class;
308 
309   return (ObjCPropertyDecl::PropertyAttributeKind)attributesAsWritten;
310 }
311 
312 static bool LocPropertyAttribute( ASTContext &Context, const char *attrName,
313                                  SourceLocation LParenLoc, SourceLocation &Loc) {
314   if (LParenLoc.isMacroID())
315     return false;
316 
317   SourceManager &SM = Context.getSourceManager();
318   std::pair<FileID, unsigned> locInfo = SM.getDecomposedLoc(LParenLoc);
319   // Try to load the file buffer.
320   bool invalidTemp = false;
321   StringRef file = SM.getBufferData(locInfo.first, &invalidTemp);
322   if (invalidTemp)
323     return false;
324   const char *tokenBegin = file.data() + locInfo.second;
325 
326   // Lex from the start of the given location.
327   Lexer lexer(SM.getLocForStartOfFile(locInfo.first),
328               Context.getLangOpts(),
329               file.begin(), tokenBegin, file.end());
330   Token Tok;
331   do {
332     lexer.LexFromRawLexer(Tok);
333     if (Tok.is(tok::raw_identifier) && Tok.getRawIdentifier() == attrName) {
334       Loc = Tok.getLocation();
335       return true;
336     }
337   } while (Tok.isNot(tok::r_paren));
338   return false;
339 
340 }
341 
342 /// Check for a mismatch in the atomicity of the given properties.
343 static void checkAtomicPropertyMismatch(Sema &S,
344                                         ObjCPropertyDecl *OldProperty,
345                                         ObjCPropertyDecl *NewProperty,
346                                         bool PropagateAtomicity) {
347   // If the atomicity of both matches, we're done.
348   bool OldIsAtomic =
349     (OldProperty->getPropertyAttributes() & ObjCPropertyDecl::OBJC_PR_nonatomic)
350       == 0;
351   bool NewIsAtomic =
352     (NewProperty->getPropertyAttributes() & ObjCPropertyDecl::OBJC_PR_nonatomic)
353       == 0;
354   if (OldIsAtomic == NewIsAtomic) return;
355 
356   // Determine whether the given property is readonly and implicitly
357   // atomic.
358   auto isImplicitlyReadonlyAtomic = [](ObjCPropertyDecl *Property) -> bool {
359     // Is it readonly?
360     auto Attrs = Property->getPropertyAttributes();
361     if ((Attrs & ObjCPropertyDecl::OBJC_PR_readonly) == 0) return false;
362 
363     // Is it nonatomic?
364     if (Attrs & ObjCPropertyDecl::OBJC_PR_nonatomic) return false;
365 
366     // Was 'atomic' specified directly?
367     if (Property->getPropertyAttributesAsWritten() &
368           ObjCPropertyDecl::OBJC_PR_atomic)
369       return false;
370 
371     return true;
372   };
373 
374   // If we're allowed to propagate atomicity, and the new property did
375   // not specify atomicity at all, propagate.
376   const unsigned AtomicityMask =
377     (ObjCPropertyDecl::OBJC_PR_atomic | ObjCPropertyDecl::OBJC_PR_nonatomic);
378   if (PropagateAtomicity &&
379       ((NewProperty->getPropertyAttributesAsWritten() & AtomicityMask) == 0)) {
380     unsigned Attrs = NewProperty->getPropertyAttributes();
381     Attrs = Attrs & ~AtomicityMask;
382     if (OldIsAtomic)
383       Attrs |= ObjCPropertyDecl::OBJC_PR_atomic;
384     else
385       Attrs |= ObjCPropertyDecl::OBJC_PR_nonatomic;
386 
387     NewProperty->overwritePropertyAttributes(Attrs);
388     return;
389   }
390 
391   // One of the properties is atomic; if it's a readonly property, and
392   // 'atomic' wasn't explicitly specified, we're okay.
393   if ((OldIsAtomic && isImplicitlyReadonlyAtomic(OldProperty)) ||
394       (NewIsAtomic && isImplicitlyReadonlyAtomic(NewProperty)))
395     return;
396 
397   // Diagnose the conflict.
398   const IdentifierInfo *OldContextName;
399   auto *OldDC = OldProperty->getDeclContext();
400   if (auto Category = dyn_cast<ObjCCategoryDecl>(OldDC))
401     OldContextName = Category->getClassInterface()->getIdentifier();
402   else
403     OldContextName = cast<ObjCContainerDecl>(OldDC)->getIdentifier();
404 
405   S.Diag(NewProperty->getLocation(), diag::warn_property_attribute)
406     << NewProperty->getDeclName() << "atomic"
407     << OldContextName;
408   S.Diag(OldProperty->getLocation(), diag::note_property_declare);
409 }
410 
411 ObjCPropertyDecl *
412 Sema::HandlePropertyInClassExtension(Scope *S,
413                                      SourceLocation AtLoc,
414                                      SourceLocation LParenLoc,
415                                      FieldDeclarator &FD,
416                                      Selector GetterSel, Selector SetterSel,
417                                      const bool isReadWrite,
418                                      unsigned &Attributes,
419                                      const unsigned AttributesAsWritten,
420                                      QualType T,
421                                      TypeSourceInfo *TSI,
422                                      tok::ObjCKeywordKind MethodImplKind) {
423   ObjCCategoryDecl *CDecl = cast<ObjCCategoryDecl>(CurContext);
424   // Diagnose if this property is already in continuation class.
425   DeclContext *DC = CurContext;
426   IdentifierInfo *PropertyId = FD.D.getIdentifier();
427   ObjCInterfaceDecl *CCPrimary = CDecl->getClassInterface();
428 
429   // We need to look in the @interface to see if the @property was
430   // already declared.
431   if (!CCPrimary) {
432     Diag(CDecl->getLocation(), diag::err_continuation_class);
433     return nullptr;
434   }
435 
436   // Find the property in the extended class's primary class or
437   // extensions.
438   ObjCPropertyDecl *PIDecl =
439     CCPrimary->FindPropertyVisibleInPrimaryClass(PropertyId);
440 
441   // If we found a property in an extension, complain.
442   if (PIDecl && isa<ObjCCategoryDecl>(PIDecl->getDeclContext())) {
443     Diag(AtLoc, diag::err_duplicate_property);
444     Diag(PIDecl->getLocation(), diag::note_property_declare);
445     return nullptr;
446   }
447 
448   // Check for consistency with the previous declaration, if there is one.
449   if (PIDecl) {
450     // A readonly property declared in the primary class can be refined
451     // by adding a readwrite property within an extension.
452     // Anything else is an error.
453     if (!(PIDecl->isReadOnly() && isReadWrite)) {
454       // Tailor the diagnostics for the common case where a readwrite
455       // property is declared both in the @interface and the continuation.
456       // This is a common error where the user often intended the original
457       // declaration to be readonly.
458       unsigned diag =
459         (Attributes & ObjCDeclSpec::DQ_PR_readwrite) &&
460         (PIDecl->getPropertyAttributesAsWritten() &
461            ObjCPropertyDecl::OBJC_PR_readwrite)
462         ? diag::err_use_continuation_class_redeclaration_readwrite
463         : diag::err_use_continuation_class;
464       Diag(AtLoc, diag)
465         << CCPrimary->getDeclName();
466       Diag(PIDecl->getLocation(), diag::note_property_declare);
467       return nullptr;
468     }
469 
470     // Check for consistency of getters.
471     if (PIDecl->getGetterName() != GetterSel) {
472      // If the getter was written explicitly, complain.
473       if (AttributesAsWritten & ObjCDeclSpec::DQ_PR_getter) {
474         Diag(AtLoc, diag::warn_property_redecl_getter_mismatch)
475           << PIDecl->getGetterName() << GetterSel;
476         Diag(PIDecl->getLocation(), diag::note_property_declare);
477       }
478 
479       // Always adopt the getter from the original declaration.
480       GetterSel = PIDecl->getGetterName();
481       Attributes |= ObjCDeclSpec::DQ_PR_getter;
482     }
483 
484     // Check consistency of ownership.
485     unsigned ExistingOwnership
486       = getOwnershipRule(PIDecl->getPropertyAttributes());
487     unsigned NewOwnership = getOwnershipRule(Attributes);
488     if (ExistingOwnership && NewOwnership != ExistingOwnership) {
489       // If the ownership was written explicitly, complain.
490       if (getOwnershipRule(AttributesAsWritten)) {
491         Diag(AtLoc, diag::warn_property_attr_mismatch);
492         Diag(PIDecl->getLocation(), diag::note_property_declare);
493       }
494 
495       // Take the ownership from the original property.
496       Attributes = (Attributes & ~OwnershipMask) | ExistingOwnership;
497     }
498 
499     // If the redeclaration is 'weak' but the original property is not,
500     if ((Attributes & ObjCPropertyDecl::OBJC_PR_weak) &&
501         !(PIDecl->getPropertyAttributesAsWritten()
502             & ObjCPropertyDecl::OBJC_PR_weak) &&
503         PIDecl->getType()->getAs<ObjCObjectPointerType>() &&
504         PIDecl->getType().getObjCLifetime() == Qualifiers::OCL_None) {
505       Diag(AtLoc, diag::warn_property_implicitly_mismatched);
506       Diag(PIDecl->getLocation(), diag::note_property_declare);
507     }
508   }
509 
510   // Create a new ObjCPropertyDecl with the DeclContext being
511   // the class extension.
512   ObjCPropertyDecl *PDecl = CreatePropertyDecl(S, CDecl, AtLoc, LParenLoc,
513                                                FD, GetterSel, SetterSel,
514                                                isReadWrite,
515                                                Attributes, AttributesAsWritten,
516                                                T, TSI, MethodImplKind, DC);
517 
518   // If there was no declaration of a property with the same name in
519   // the primary class, we're done.
520   if (!PIDecl) {
521     ProcessPropertyDecl(PDecl);
522     return PDecl;
523   }
524 
525   if (!Context.hasSameType(PIDecl->getType(), PDecl->getType())) {
526     bool IncompatibleObjC = false;
527     QualType ConvertedType;
528     // Relax the strict type matching for property type in continuation class.
529     // Allow property object type of continuation class to be different as long
530     // as it narrows the object type in its primary class property. Note that
531     // this conversion is safe only because the wider type is for a 'readonly'
532     // property in primary class and 'narrowed' type for a 'readwrite' property
533     // in continuation class.
534     QualType PrimaryClassPropertyT = Context.getCanonicalType(PIDecl->getType());
535     QualType ClassExtPropertyT = Context.getCanonicalType(PDecl->getType());
536     if (!isa<ObjCObjectPointerType>(PrimaryClassPropertyT) ||
537         !isa<ObjCObjectPointerType>(ClassExtPropertyT) ||
538         (!isObjCPointerConversion(ClassExtPropertyT, PrimaryClassPropertyT,
539                                   ConvertedType, IncompatibleObjC))
540         || IncompatibleObjC) {
541       Diag(AtLoc,
542           diag::err_type_mismatch_continuation_class) << PDecl->getType();
543       Diag(PIDecl->getLocation(), diag::note_property_declare);
544       return nullptr;
545     }
546   }
547 
548   // Check that atomicity of property in class extension matches the previous
549   // declaration.
550   checkAtomicPropertyMismatch(*this, PIDecl, PDecl, true);
551 
552   // Make sure getter/setter are appropriately synthesized.
553   ProcessPropertyDecl(PDecl);
554   return PDecl;
555 }
556 
557 ObjCPropertyDecl *Sema::CreatePropertyDecl(Scope *S,
558                                            ObjCContainerDecl *CDecl,
559                                            SourceLocation AtLoc,
560                                            SourceLocation LParenLoc,
561                                            FieldDeclarator &FD,
562                                            Selector GetterSel,
563                                            Selector SetterSel,
564                                            const bool isReadWrite,
565                                            const unsigned Attributes,
566                                            const unsigned AttributesAsWritten,
567                                            QualType T,
568                                            TypeSourceInfo *TInfo,
569                                            tok::ObjCKeywordKind MethodImplKind,
570                                            DeclContext *lexicalDC){
571   IdentifierInfo *PropertyId = FD.D.getIdentifier();
572 
573   // Property defaults to 'assign' if it is readwrite, unless this is ARC
574   // and the type is retainable.
575   bool isAssign;
576   if (Attributes & (ObjCDeclSpec::DQ_PR_assign |
577                     ObjCDeclSpec::DQ_PR_unsafe_unretained)) {
578     isAssign = true;
579   } else if (getOwnershipRule(Attributes) || !isReadWrite) {
580     isAssign = false;
581   } else {
582     isAssign = (!getLangOpts().ObjCAutoRefCount ||
583                 !T->isObjCRetainableType());
584   }
585 
586   // Issue a warning if property is 'assign' as default and its
587   // object, which is gc'able conforms to NSCopying protocol
588   if (getLangOpts().getGC() != LangOptions::NonGC &&
589       isAssign && !(Attributes & ObjCDeclSpec::DQ_PR_assign)) {
590     if (const ObjCObjectPointerType *ObjPtrTy =
591           T->getAs<ObjCObjectPointerType>()) {
592       ObjCInterfaceDecl *IDecl = ObjPtrTy->getObjectType()->getInterface();
593       if (IDecl)
594         if (ObjCProtocolDecl* PNSCopying =
595             LookupProtocol(&Context.Idents.get("NSCopying"), AtLoc))
596           if (IDecl->ClassImplementsProtocol(PNSCopying, true))
597             Diag(AtLoc, diag::warn_implements_nscopying) << PropertyId;
598     }
599   }
600 
601   if (T->isObjCObjectType()) {
602     SourceLocation StarLoc = TInfo->getTypeLoc().getLocEnd();
603     StarLoc = getLocForEndOfToken(StarLoc);
604     Diag(FD.D.getIdentifierLoc(), diag::err_statically_allocated_object)
605       << FixItHint::CreateInsertion(StarLoc, "*");
606     T = Context.getObjCObjectPointerType(T);
607     SourceLocation TLoc = TInfo->getTypeLoc().getLocStart();
608     TInfo = Context.getTrivialTypeSourceInfo(T, TLoc);
609   }
610 
611   DeclContext *DC = cast<DeclContext>(CDecl);
612   ObjCPropertyDecl *PDecl = ObjCPropertyDecl::Create(Context, DC,
613                                                      FD.D.getIdentifierLoc(),
614                                                      PropertyId, AtLoc,
615                                                      LParenLoc, T, TInfo);
616 
617   if (ObjCPropertyDecl *prevDecl =
618         ObjCPropertyDecl::findPropertyDecl(DC, PropertyId)) {
619     Diag(PDecl->getLocation(), diag::err_duplicate_property);
620     Diag(prevDecl->getLocation(), diag::note_property_declare);
621     PDecl->setInvalidDecl();
622   }
623   else {
624     DC->addDecl(PDecl);
625     if (lexicalDC)
626       PDecl->setLexicalDeclContext(lexicalDC);
627   }
628 
629   if (T->isArrayType() || T->isFunctionType()) {
630     Diag(AtLoc, diag::err_property_type) << T;
631     PDecl->setInvalidDecl();
632   }
633 
634   ProcessDeclAttributes(S, PDecl, FD.D);
635 
636   // Regardless of setter/getter attribute, we save the default getter/setter
637   // selector names in anticipation of declaration of setter/getter methods.
638   PDecl->setGetterName(GetterSel);
639   PDecl->setSetterName(SetterSel);
640   PDecl->setPropertyAttributesAsWritten(
641                           makePropertyAttributesAsWritten(AttributesAsWritten));
642 
643   if (Attributes & ObjCDeclSpec::DQ_PR_readonly)
644     PDecl->setPropertyAttributes(ObjCPropertyDecl::OBJC_PR_readonly);
645 
646   if (Attributes & ObjCDeclSpec::DQ_PR_getter)
647     PDecl->setPropertyAttributes(ObjCPropertyDecl::OBJC_PR_getter);
648 
649   if (Attributes & ObjCDeclSpec::DQ_PR_setter)
650     PDecl->setPropertyAttributes(ObjCPropertyDecl::OBJC_PR_setter);
651 
652   if (isReadWrite)
653     PDecl->setPropertyAttributes(ObjCPropertyDecl::OBJC_PR_readwrite);
654 
655   if (Attributes & ObjCDeclSpec::DQ_PR_retain)
656     PDecl->setPropertyAttributes(ObjCPropertyDecl::OBJC_PR_retain);
657 
658   if (Attributes & ObjCDeclSpec::DQ_PR_strong)
659     PDecl->setPropertyAttributes(ObjCPropertyDecl::OBJC_PR_strong);
660 
661   if (Attributes & ObjCDeclSpec::DQ_PR_weak)
662     PDecl->setPropertyAttributes(ObjCPropertyDecl::OBJC_PR_weak);
663 
664   if (Attributes & ObjCDeclSpec::DQ_PR_copy)
665     PDecl->setPropertyAttributes(ObjCPropertyDecl::OBJC_PR_copy);
666 
667   if (Attributes & ObjCDeclSpec::DQ_PR_unsafe_unretained)
668     PDecl->setPropertyAttributes(ObjCPropertyDecl::OBJC_PR_unsafe_unretained);
669 
670   if (isAssign)
671     PDecl->setPropertyAttributes(ObjCPropertyDecl::OBJC_PR_assign);
672 
673   // In the semantic attributes, one of nonatomic or atomic is always set.
674   if (Attributes & ObjCDeclSpec::DQ_PR_nonatomic)
675     PDecl->setPropertyAttributes(ObjCPropertyDecl::OBJC_PR_nonatomic);
676   else
677     PDecl->setPropertyAttributes(ObjCPropertyDecl::OBJC_PR_atomic);
678 
679   // 'unsafe_unretained' is alias for 'assign'.
680   if (Attributes & ObjCDeclSpec::DQ_PR_unsafe_unretained)
681     PDecl->setPropertyAttributes(ObjCPropertyDecl::OBJC_PR_assign);
682   if (isAssign)
683     PDecl->setPropertyAttributes(ObjCPropertyDecl::OBJC_PR_unsafe_unretained);
684 
685   if (MethodImplKind == tok::objc_required)
686     PDecl->setPropertyImplementation(ObjCPropertyDecl::Required);
687   else if (MethodImplKind == tok::objc_optional)
688     PDecl->setPropertyImplementation(ObjCPropertyDecl::Optional);
689 
690   if (Attributes & ObjCDeclSpec::DQ_PR_nullability)
691     PDecl->setPropertyAttributes(ObjCPropertyDecl::OBJC_PR_nullability);
692 
693   if (Attributes & ObjCDeclSpec::DQ_PR_null_resettable)
694     PDecl->setPropertyAttributes(ObjCPropertyDecl::OBJC_PR_null_resettable);
695 
696  if (Attributes & ObjCDeclSpec::DQ_PR_class)
697     PDecl->setPropertyAttributes(ObjCPropertyDecl::OBJC_PR_class);
698 
699   return PDecl;
700 }
701 
702 static void checkARCPropertyImpl(Sema &S, SourceLocation propertyImplLoc,
703                                  ObjCPropertyDecl *property,
704                                  ObjCIvarDecl *ivar) {
705   if (property->isInvalidDecl() || ivar->isInvalidDecl()) return;
706 
707   QualType ivarType = ivar->getType();
708   Qualifiers::ObjCLifetime ivarLifetime = ivarType.getObjCLifetime();
709 
710   // The lifetime implied by the property's attributes.
711   Qualifiers::ObjCLifetime propertyLifetime =
712     getImpliedARCOwnership(property->getPropertyAttributes(),
713                            property->getType());
714 
715   // We're fine if they match.
716   if (propertyLifetime == ivarLifetime) return;
717 
718   // None isn't a valid lifetime for an object ivar in ARC, and
719   // __autoreleasing is never valid; don't diagnose twice.
720   if ((ivarLifetime == Qualifiers::OCL_None &&
721        S.getLangOpts().ObjCAutoRefCount) ||
722       ivarLifetime == Qualifiers::OCL_Autoreleasing)
723     return;
724 
725   // If the ivar is private, and it's implicitly __unsafe_unretained
726   // becaues of its type, then pretend it was actually implicitly
727   // __strong.  This is only sound because we're processing the
728   // property implementation before parsing any method bodies.
729   if (ivarLifetime == Qualifiers::OCL_ExplicitNone &&
730       propertyLifetime == Qualifiers::OCL_Strong &&
731       ivar->getAccessControl() == ObjCIvarDecl::Private) {
732     SplitQualType split = ivarType.split();
733     if (split.Quals.hasObjCLifetime()) {
734       assert(ivarType->isObjCARCImplicitlyUnretainedType());
735       split.Quals.setObjCLifetime(Qualifiers::OCL_Strong);
736       ivarType = S.Context.getQualifiedType(split);
737       ivar->setType(ivarType);
738       return;
739     }
740   }
741 
742   switch (propertyLifetime) {
743   case Qualifiers::OCL_Strong:
744     S.Diag(ivar->getLocation(), diag::err_arc_strong_property_ownership)
745       << property->getDeclName()
746       << ivar->getDeclName()
747       << ivarLifetime;
748     break;
749 
750   case Qualifiers::OCL_Weak:
751     S.Diag(ivar->getLocation(), diag::error_weak_property)
752       << property->getDeclName()
753       << ivar->getDeclName();
754     break;
755 
756   case Qualifiers::OCL_ExplicitNone:
757     S.Diag(ivar->getLocation(), diag::err_arc_assign_property_ownership)
758       << property->getDeclName()
759       << ivar->getDeclName()
760       << ((property->getPropertyAttributesAsWritten()
761            & ObjCPropertyDecl::OBJC_PR_assign) != 0);
762     break;
763 
764   case Qualifiers::OCL_Autoreleasing:
765     llvm_unreachable("properties cannot be autoreleasing");
766 
767   case Qualifiers::OCL_None:
768     // Any other property should be ignored.
769     return;
770   }
771 
772   S.Diag(property->getLocation(), diag::note_property_declare);
773   if (propertyImplLoc.isValid())
774     S.Diag(propertyImplLoc, diag::note_property_synthesize);
775 }
776 
777 /// setImpliedPropertyAttributeForReadOnlyProperty -
778 /// This routine evaludates life-time attributes for a 'readonly'
779 /// property with no known lifetime of its own, using backing
780 /// 'ivar's attribute, if any. If no backing 'ivar', property's
781 /// life-time is assumed 'strong'.
782 static void setImpliedPropertyAttributeForReadOnlyProperty(
783               ObjCPropertyDecl *property, ObjCIvarDecl *ivar) {
784   Qualifiers::ObjCLifetime propertyLifetime =
785     getImpliedARCOwnership(property->getPropertyAttributes(),
786                            property->getType());
787   if (propertyLifetime != Qualifiers::OCL_None)
788     return;
789 
790   if (!ivar) {
791     // if no backing ivar, make property 'strong'.
792     property->setPropertyAttributes(ObjCPropertyDecl::OBJC_PR_strong);
793     return;
794   }
795   // property assumes owenership of backing ivar.
796   QualType ivarType = ivar->getType();
797   Qualifiers::ObjCLifetime ivarLifetime = ivarType.getObjCLifetime();
798   if (ivarLifetime == Qualifiers::OCL_Strong)
799     property->setPropertyAttributes(ObjCPropertyDecl::OBJC_PR_strong);
800   else if (ivarLifetime == Qualifiers::OCL_Weak)
801     property->setPropertyAttributes(ObjCPropertyDecl::OBJC_PR_weak);
802   return;
803 }
804 
805 /// DiagnosePropertyMismatchDeclInProtocols - diagnose properties declared
806 /// in inherited protocols with mismatched types. Since any of them can
807 /// be candidate for synthesis.
808 static void
809 DiagnosePropertyMismatchDeclInProtocols(Sema &S, SourceLocation AtLoc,
810                                         ObjCInterfaceDecl *ClassDecl,
811                                         ObjCPropertyDecl *Property) {
812   ObjCInterfaceDecl::ProtocolPropertyMap PropMap;
813   for (const auto *PI : ClassDecl->all_referenced_protocols()) {
814     if (const ObjCProtocolDecl *PDecl = PI->getDefinition())
815       PDecl->collectInheritedProtocolProperties(Property, PropMap);
816   }
817   if (ObjCInterfaceDecl *SDecl = ClassDecl->getSuperClass())
818     while (SDecl) {
819       for (const auto *PI : SDecl->all_referenced_protocols()) {
820         if (const ObjCProtocolDecl *PDecl = PI->getDefinition())
821           PDecl->collectInheritedProtocolProperties(Property, PropMap);
822       }
823       SDecl = SDecl->getSuperClass();
824     }
825 
826   if (PropMap.empty())
827     return;
828 
829   QualType RHSType = S.Context.getCanonicalType(Property->getType());
830   bool FirsTime = true;
831   for (ObjCInterfaceDecl::ProtocolPropertyMap::iterator
832        I = PropMap.begin(), E = PropMap.end(); I != E; I++) {
833     ObjCPropertyDecl *Prop = I->second;
834     QualType LHSType = S.Context.getCanonicalType(Prop->getType());
835     if (!S.Context.propertyTypesAreCompatible(LHSType, RHSType)) {
836       bool IncompatibleObjC = false;
837       QualType ConvertedType;
838       if (!S.isObjCPointerConversion(RHSType, LHSType, ConvertedType, IncompatibleObjC)
839           || IncompatibleObjC) {
840         if (FirsTime) {
841           S.Diag(Property->getLocation(), diag::warn_protocol_property_mismatch)
842             << Property->getType();
843           FirsTime = false;
844         }
845         S.Diag(Prop->getLocation(), diag::note_protocol_property_declare)
846           << Prop->getType();
847       }
848     }
849   }
850   if (!FirsTime && AtLoc.isValid())
851     S.Diag(AtLoc, diag::note_property_synthesize);
852 }
853 
854 /// Determine whether any storage attributes were written on the property.
855 static bool hasWrittenStorageAttribute(ObjCPropertyDecl *Prop) {
856   if (Prop->getPropertyAttributesAsWritten() & OwnershipMask) return true;
857 
858   // If this is a readwrite property in a class extension that refines
859   // a readonly property in the original class definition, check it as
860   // well.
861 
862   // If it's a readonly property, we're not interested.
863   if (Prop->isReadOnly()) return false;
864 
865   // Is it declared in an extension?
866   auto Category = dyn_cast<ObjCCategoryDecl>(Prop->getDeclContext());
867   if (!Category || !Category->IsClassExtension()) return false;
868 
869   // Find the corresponding property in the primary class definition.
870   auto OrigClass = Category->getClassInterface();
871   for (auto Found : OrigClass->lookup(Prop->getDeclName())) {
872     if (ObjCPropertyDecl *OrigProp = dyn_cast<ObjCPropertyDecl>(Found))
873       return OrigProp->getPropertyAttributesAsWritten() & OwnershipMask;
874   }
875 
876   // Look through all of the protocols.
877   for (const auto *Proto : OrigClass->all_referenced_protocols()) {
878     if (ObjCPropertyDecl *OrigProp =
879           Proto->FindPropertyDeclaration(Prop->getIdentifier()))
880       return OrigProp->getPropertyAttributesAsWritten() & OwnershipMask;
881   }
882 
883   return false;
884 }
885 
886 /// ActOnPropertyImplDecl - This routine performs semantic checks and
887 /// builds the AST node for a property implementation declaration; declared
888 /// as \@synthesize or \@dynamic.
889 ///
890 Decl *Sema::ActOnPropertyImplDecl(Scope *S,
891                                   SourceLocation AtLoc,
892                                   SourceLocation PropertyLoc,
893                                   bool Synthesize,
894                                   IdentifierInfo *PropertyId,
895                                   IdentifierInfo *PropertyIvar,
896                                   SourceLocation PropertyIvarLoc) {
897   ObjCContainerDecl *ClassImpDecl =
898     dyn_cast<ObjCContainerDecl>(CurContext);
899   // Make sure we have a context for the property implementation declaration.
900   if (!ClassImpDecl) {
901     Diag(AtLoc, diag::error_missing_property_context);
902     return nullptr;
903   }
904   if (PropertyIvarLoc.isInvalid())
905     PropertyIvarLoc = PropertyLoc;
906   SourceLocation PropertyDiagLoc = PropertyLoc;
907   if (PropertyDiagLoc.isInvalid())
908     PropertyDiagLoc = ClassImpDecl->getLocStart();
909   ObjCPropertyDecl *property = nullptr;
910   ObjCInterfaceDecl *IDecl = nullptr;
911   // Find the class or category class where this property must have
912   // a declaration.
913   ObjCImplementationDecl *IC = nullptr;
914   ObjCCategoryImplDecl *CatImplClass = nullptr;
915   if ((IC = dyn_cast<ObjCImplementationDecl>(ClassImpDecl))) {
916     IDecl = IC->getClassInterface();
917     // We always synthesize an interface for an implementation
918     // without an interface decl. So, IDecl is always non-zero.
919     assert(IDecl &&
920            "ActOnPropertyImplDecl - @implementation without @interface");
921 
922     // Look for this property declaration in the @implementation's @interface
923     property = IDecl->FindPropertyDeclaration(PropertyId);
924     if (!property) {
925       Diag(PropertyLoc, diag::error_bad_property_decl) << IDecl->getDeclName();
926       return nullptr;
927     }
928     unsigned PIkind = property->getPropertyAttributesAsWritten();
929     if ((PIkind & (ObjCPropertyDecl::OBJC_PR_atomic |
930                    ObjCPropertyDecl::OBJC_PR_nonatomic) ) == 0) {
931       if (AtLoc.isValid())
932         Diag(AtLoc, diag::warn_implicit_atomic_property);
933       else
934         Diag(IC->getLocation(), diag::warn_auto_implicit_atomic_property);
935       Diag(property->getLocation(), diag::note_property_declare);
936     }
937 
938     if (const ObjCCategoryDecl *CD =
939         dyn_cast<ObjCCategoryDecl>(property->getDeclContext())) {
940       if (!CD->IsClassExtension()) {
941         Diag(PropertyLoc, diag::error_category_property) << CD->getDeclName();
942         Diag(property->getLocation(), diag::note_property_declare);
943         return nullptr;
944       }
945     }
946     if (Synthesize&&
947         (PIkind & ObjCPropertyDecl::OBJC_PR_readonly) &&
948         property->hasAttr<IBOutletAttr>() &&
949         !AtLoc.isValid()) {
950       bool ReadWriteProperty = false;
951       // Search into the class extensions and see if 'readonly property is
952       // redeclared 'readwrite', then no warning is to be issued.
953       for (auto *Ext : IDecl->known_extensions()) {
954         DeclContext::lookup_result R = Ext->lookup(property->getDeclName());
955         if (!R.empty())
956           if (ObjCPropertyDecl *ExtProp = dyn_cast<ObjCPropertyDecl>(R[0])) {
957             PIkind = ExtProp->getPropertyAttributesAsWritten();
958             if (PIkind & ObjCPropertyDecl::OBJC_PR_readwrite) {
959               ReadWriteProperty = true;
960               break;
961             }
962           }
963       }
964 
965       if (!ReadWriteProperty) {
966         Diag(property->getLocation(), diag::warn_auto_readonly_iboutlet_property)
967             << property;
968         SourceLocation readonlyLoc;
969         if (LocPropertyAttribute(Context, "readonly",
970                                  property->getLParenLoc(), readonlyLoc)) {
971           SourceLocation endLoc =
972             readonlyLoc.getLocWithOffset(strlen("readonly")-1);
973           SourceRange ReadonlySourceRange(readonlyLoc, endLoc);
974           Diag(property->getLocation(),
975                diag::note_auto_readonly_iboutlet_fixup_suggest) <<
976           FixItHint::CreateReplacement(ReadonlySourceRange, "readwrite");
977         }
978       }
979     }
980     if (Synthesize && isa<ObjCProtocolDecl>(property->getDeclContext()))
981       DiagnosePropertyMismatchDeclInProtocols(*this, AtLoc, IDecl, property);
982 
983   } else if ((CatImplClass = dyn_cast<ObjCCategoryImplDecl>(ClassImpDecl))) {
984     if (Synthesize) {
985       Diag(AtLoc, diag::error_synthesize_category_decl);
986       return nullptr;
987     }
988     IDecl = CatImplClass->getClassInterface();
989     if (!IDecl) {
990       Diag(AtLoc, diag::error_missing_property_interface);
991       return nullptr;
992     }
993     ObjCCategoryDecl *Category =
994     IDecl->FindCategoryDeclaration(CatImplClass->getIdentifier());
995 
996     // If category for this implementation not found, it is an error which
997     // has already been reported eralier.
998     if (!Category)
999       return nullptr;
1000     // Look for this property declaration in @implementation's category
1001     property = Category->FindPropertyDeclaration(PropertyId);
1002     if (!property) {
1003       Diag(PropertyLoc, diag::error_bad_category_property_decl)
1004       << Category->getDeclName();
1005       return nullptr;
1006     }
1007   } else {
1008     Diag(AtLoc, diag::error_bad_property_context);
1009     return nullptr;
1010   }
1011   ObjCIvarDecl *Ivar = nullptr;
1012   bool CompleteTypeErr = false;
1013   bool compat = true;
1014   // Check that we have a valid, previously declared ivar for @synthesize
1015   if (Synthesize) {
1016     // @synthesize
1017     if (!PropertyIvar)
1018       PropertyIvar = PropertyId;
1019     // Check that this is a previously declared 'ivar' in 'IDecl' interface
1020     ObjCInterfaceDecl *ClassDeclared;
1021     Ivar = IDecl->lookupInstanceVariable(PropertyIvar, ClassDeclared);
1022     QualType PropType = property->getType();
1023     QualType PropertyIvarType = PropType.getNonReferenceType();
1024 
1025     if (RequireCompleteType(PropertyDiagLoc, PropertyIvarType,
1026                             diag::err_incomplete_synthesized_property,
1027                             property->getDeclName())) {
1028       Diag(property->getLocation(), diag::note_property_declare);
1029       CompleteTypeErr = true;
1030     }
1031 
1032     if (getLangOpts().ObjCAutoRefCount &&
1033         (property->getPropertyAttributesAsWritten() &
1034          ObjCPropertyDecl::OBJC_PR_readonly) &&
1035         PropertyIvarType->isObjCRetainableType()) {
1036       setImpliedPropertyAttributeForReadOnlyProperty(property, Ivar);
1037     }
1038 
1039     ObjCPropertyDecl::PropertyAttributeKind kind
1040       = property->getPropertyAttributes();
1041 
1042     bool isARCWeak = false;
1043     if (kind & ObjCPropertyDecl::OBJC_PR_weak) {
1044       // Add GC __weak to the ivar type if the property is weak.
1045       if (getLangOpts().getGC() != LangOptions::NonGC) {
1046         assert(!getLangOpts().ObjCAutoRefCount);
1047         if (PropertyIvarType.isObjCGCStrong()) {
1048           Diag(PropertyDiagLoc, diag::err_gc_weak_property_strong_type);
1049           Diag(property->getLocation(), diag::note_property_declare);
1050         } else {
1051           PropertyIvarType =
1052             Context.getObjCGCQualType(PropertyIvarType, Qualifiers::Weak);
1053         }
1054 
1055       // Otherwise, check whether ARC __weak is enabled and works with
1056       // the property type.
1057       } else {
1058         if (!getLangOpts().ObjCWeak) {
1059           // Only complain here when synthesizing an ivar.
1060           if (!Ivar) {
1061             Diag(PropertyDiagLoc,
1062                  getLangOpts().ObjCWeakRuntime
1063                    ? diag::err_synthesizing_arc_weak_property_disabled
1064                    : diag::err_synthesizing_arc_weak_property_no_runtime);
1065             Diag(property->getLocation(), diag::note_property_declare);
1066           }
1067           CompleteTypeErr = true; // suppress later diagnostics about the ivar
1068         } else {
1069           isARCWeak = true;
1070           if (const ObjCObjectPointerType *ObjT =
1071                 PropertyIvarType->getAs<ObjCObjectPointerType>()) {
1072             const ObjCInterfaceDecl *ObjI = ObjT->getInterfaceDecl();
1073             if (ObjI && ObjI->isArcWeakrefUnavailable()) {
1074               Diag(property->getLocation(),
1075                    diag::err_arc_weak_unavailable_property)
1076                 << PropertyIvarType;
1077               Diag(ClassImpDecl->getLocation(), diag::note_implemented_by_class)
1078                 << ClassImpDecl->getName();
1079             }
1080           }
1081         }
1082       }
1083     }
1084 
1085     if (AtLoc.isInvalid()) {
1086       // Check when default synthesizing a property that there is
1087       // an ivar matching property name and issue warning; since this
1088       // is the most common case of not using an ivar used for backing
1089       // property in non-default synthesis case.
1090       ObjCInterfaceDecl *ClassDeclared=nullptr;
1091       ObjCIvarDecl *originalIvar =
1092       IDecl->lookupInstanceVariable(property->getIdentifier(),
1093                                     ClassDeclared);
1094       if (originalIvar) {
1095         Diag(PropertyDiagLoc,
1096              diag::warn_autosynthesis_property_ivar_match)
1097         << PropertyId << (Ivar == nullptr) << PropertyIvar
1098         << originalIvar->getIdentifier();
1099         Diag(property->getLocation(), diag::note_property_declare);
1100         Diag(originalIvar->getLocation(), diag::note_ivar_decl);
1101       }
1102     }
1103 
1104     if (!Ivar) {
1105       // In ARC, give the ivar a lifetime qualifier based on the
1106       // property attributes.
1107       if ((getLangOpts().ObjCAutoRefCount || isARCWeak) &&
1108           !PropertyIvarType.getObjCLifetime() &&
1109           PropertyIvarType->isObjCRetainableType()) {
1110 
1111         // It's an error if we have to do this and the user didn't
1112         // explicitly write an ownership attribute on the property.
1113         if (!hasWrittenStorageAttribute(property) &&
1114             !(kind & ObjCPropertyDecl::OBJC_PR_strong)) {
1115           Diag(PropertyDiagLoc,
1116                diag::err_arc_objc_property_default_assign_on_object);
1117           Diag(property->getLocation(), diag::note_property_declare);
1118         } else {
1119           Qualifiers::ObjCLifetime lifetime =
1120             getImpliedARCOwnership(kind, PropertyIvarType);
1121           assert(lifetime && "no lifetime for property?");
1122 
1123           Qualifiers qs;
1124           qs.addObjCLifetime(lifetime);
1125           PropertyIvarType = Context.getQualifiedType(PropertyIvarType, qs);
1126         }
1127       }
1128 
1129       Ivar = ObjCIvarDecl::Create(Context, ClassImpDecl,
1130                                   PropertyIvarLoc,PropertyIvarLoc, PropertyIvar,
1131                                   PropertyIvarType, /*Dinfo=*/nullptr,
1132                                   ObjCIvarDecl::Private,
1133                                   (Expr *)nullptr, true);
1134       if (RequireNonAbstractType(PropertyIvarLoc,
1135                                  PropertyIvarType,
1136                                  diag::err_abstract_type_in_decl,
1137                                  AbstractSynthesizedIvarType)) {
1138         Diag(property->getLocation(), diag::note_property_declare);
1139         Ivar->setInvalidDecl();
1140       } else if (CompleteTypeErr)
1141           Ivar->setInvalidDecl();
1142       ClassImpDecl->addDecl(Ivar);
1143       IDecl->makeDeclVisibleInContext(Ivar);
1144 
1145       if (getLangOpts().ObjCRuntime.isFragile())
1146         Diag(PropertyDiagLoc, diag::error_missing_property_ivar_decl)
1147             << PropertyId;
1148       // Note! I deliberately want it to fall thru so, we have a
1149       // a property implementation and to avoid future warnings.
1150     } else if (getLangOpts().ObjCRuntime.isNonFragile() &&
1151                !declaresSameEntity(ClassDeclared, IDecl)) {
1152       Diag(PropertyDiagLoc, diag::error_ivar_in_superclass_use)
1153       << property->getDeclName() << Ivar->getDeclName()
1154       << ClassDeclared->getDeclName();
1155       Diag(Ivar->getLocation(), diag::note_previous_access_declaration)
1156       << Ivar << Ivar->getName();
1157       // Note! I deliberately want it to fall thru so more errors are caught.
1158     }
1159     property->setPropertyIvarDecl(Ivar);
1160 
1161     QualType IvarType = Context.getCanonicalType(Ivar->getType());
1162 
1163     // Check that type of property and its ivar are type compatible.
1164     if (!Context.hasSameType(PropertyIvarType, IvarType)) {
1165       if (isa<ObjCObjectPointerType>(PropertyIvarType)
1166           && isa<ObjCObjectPointerType>(IvarType))
1167         compat =
1168           Context.canAssignObjCInterfaces(
1169                                   PropertyIvarType->getAs<ObjCObjectPointerType>(),
1170                                   IvarType->getAs<ObjCObjectPointerType>());
1171       else {
1172         compat = (CheckAssignmentConstraints(PropertyIvarLoc, PropertyIvarType,
1173                                              IvarType)
1174                     == Compatible);
1175       }
1176       if (!compat) {
1177         Diag(PropertyDiagLoc, diag::error_property_ivar_type)
1178           << property->getDeclName() << PropType
1179           << Ivar->getDeclName() << IvarType;
1180         Diag(Ivar->getLocation(), diag::note_ivar_decl);
1181         // Note! I deliberately want it to fall thru so, we have a
1182         // a property implementation and to avoid future warnings.
1183       }
1184       else {
1185         // FIXME! Rules for properties are somewhat different that those
1186         // for assignments. Use a new routine to consolidate all cases;
1187         // specifically for property redeclarations as well as for ivars.
1188         QualType lhsType =Context.getCanonicalType(PropertyIvarType).getUnqualifiedType();
1189         QualType rhsType =Context.getCanonicalType(IvarType).getUnqualifiedType();
1190         if (lhsType != rhsType &&
1191             lhsType->isArithmeticType()) {
1192           Diag(PropertyDiagLoc, diag::error_property_ivar_type)
1193             << property->getDeclName() << PropType
1194             << Ivar->getDeclName() << IvarType;
1195           Diag(Ivar->getLocation(), diag::note_ivar_decl);
1196           // Fall thru - see previous comment
1197         }
1198       }
1199       // __weak is explicit. So it works on Canonical type.
1200       if ((PropType.isObjCGCWeak() && !IvarType.isObjCGCWeak() &&
1201            getLangOpts().getGC() != LangOptions::NonGC)) {
1202         Diag(PropertyDiagLoc, diag::error_weak_property)
1203         << property->getDeclName() << Ivar->getDeclName();
1204         Diag(Ivar->getLocation(), diag::note_ivar_decl);
1205         // Fall thru - see previous comment
1206       }
1207       // Fall thru - see previous comment
1208       if ((property->getType()->isObjCObjectPointerType() ||
1209            PropType.isObjCGCStrong()) && IvarType.isObjCGCWeak() &&
1210           getLangOpts().getGC() != LangOptions::NonGC) {
1211         Diag(PropertyDiagLoc, diag::error_strong_property)
1212         << property->getDeclName() << Ivar->getDeclName();
1213         // Fall thru - see previous comment
1214       }
1215     }
1216     if (getLangOpts().ObjCAutoRefCount || isARCWeak ||
1217         Ivar->getType().getObjCLifetime())
1218       checkARCPropertyImpl(*this, PropertyLoc, property, Ivar);
1219   } else if (PropertyIvar)
1220     // @dynamic
1221     Diag(PropertyDiagLoc, diag::error_dynamic_property_ivar_decl);
1222 
1223   assert (property && "ActOnPropertyImplDecl - property declaration missing");
1224   ObjCPropertyImplDecl *PIDecl =
1225   ObjCPropertyImplDecl::Create(Context, CurContext, AtLoc, PropertyLoc,
1226                                property,
1227                                (Synthesize ?
1228                                 ObjCPropertyImplDecl::Synthesize
1229                                 : ObjCPropertyImplDecl::Dynamic),
1230                                Ivar, PropertyIvarLoc);
1231 
1232   if (CompleteTypeErr || !compat)
1233     PIDecl->setInvalidDecl();
1234 
1235   if (ObjCMethodDecl *getterMethod = property->getGetterMethodDecl()) {
1236     getterMethod->createImplicitParams(Context, IDecl);
1237     if (getLangOpts().CPlusPlus && Synthesize && !CompleteTypeErr &&
1238         Ivar->getType()->isRecordType()) {
1239       // For Objective-C++, need to synthesize the AST for the IVAR object to be
1240       // returned by the getter as it must conform to C++'s copy-return rules.
1241       // FIXME. Eventually we want to do this for Objective-C as well.
1242       SynthesizedFunctionScope Scope(*this, getterMethod);
1243       ImplicitParamDecl *SelfDecl = getterMethod->getSelfDecl();
1244       DeclRefExpr *SelfExpr =
1245         new (Context) DeclRefExpr(SelfDecl, false, SelfDecl->getType(),
1246                                   VK_LValue, PropertyDiagLoc);
1247       MarkDeclRefReferenced(SelfExpr);
1248       Expr *LoadSelfExpr =
1249         ImplicitCastExpr::Create(Context, SelfDecl->getType(),
1250                                  CK_LValueToRValue, SelfExpr, nullptr,
1251                                  VK_RValue);
1252       Expr *IvarRefExpr =
1253         new (Context) ObjCIvarRefExpr(Ivar,
1254                                       Ivar->getUsageType(SelfDecl->getType()),
1255                                       PropertyDiagLoc,
1256                                       Ivar->getLocation(),
1257                                       LoadSelfExpr, true, true);
1258       ExprResult Res = PerformCopyInitialization(
1259           InitializedEntity::InitializeResult(PropertyDiagLoc,
1260                                               getterMethod->getReturnType(),
1261                                               /*NRVO=*/false),
1262           PropertyDiagLoc, IvarRefExpr);
1263       if (!Res.isInvalid()) {
1264         Expr *ResExpr = Res.getAs<Expr>();
1265         if (ResExpr)
1266           ResExpr = MaybeCreateExprWithCleanups(ResExpr);
1267         PIDecl->setGetterCXXConstructor(ResExpr);
1268       }
1269     }
1270     if (property->hasAttr<NSReturnsNotRetainedAttr>() &&
1271         !getterMethod->hasAttr<NSReturnsNotRetainedAttr>()) {
1272       Diag(getterMethod->getLocation(),
1273            diag::warn_property_getter_owning_mismatch);
1274       Diag(property->getLocation(), diag::note_property_declare);
1275     }
1276     if (getLangOpts().ObjCAutoRefCount && Synthesize)
1277       switch (getterMethod->getMethodFamily()) {
1278         case OMF_retain:
1279         case OMF_retainCount:
1280         case OMF_release:
1281         case OMF_autorelease:
1282           Diag(getterMethod->getLocation(), diag::err_arc_illegal_method_def)
1283             << 1 << getterMethod->getSelector();
1284           break;
1285         default:
1286           break;
1287       }
1288   }
1289   if (ObjCMethodDecl *setterMethod = property->getSetterMethodDecl()) {
1290     setterMethod->createImplicitParams(Context, IDecl);
1291     if (getLangOpts().CPlusPlus && Synthesize && !CompleteTypeErr &&
1292         Ivar->getType()->isRecordType()) {
1293       // FIXME. Eventually we want to do this for Objective-C as well.
1294       SynthesizedFunctionScope Scope(*this, setterMethod);
1295       ImplicitParamDecl *SelfDecl = setterMethod->getSelfDecl();
1296       DeclRefExpr *SelfExpr =
1297         new (Context) DeclRefExpr(SelfDecl, false, SelfDecl->getType(),
1298                                   VK_LValue, PropertyDiagLoc);
1299       MarkDeclRefReferenced(SelfExpr);
1300       Expr *LoadSelfExpr =
1301         ImplicitCastExpr::Create(Context, SelfDecl->getType(),
1302                                  CK_LValueToRValue, SelfExpr, nullptr,
1303                                  VK_RValue);
1304       Expr *lhs =
1305         new (Context) ObjCIvarRefExpr(Ivar,
1306                                       Ivar->getUsageType(SelfDecl->getType()),
1307                                       PropertyDiagLoc,
1308                                       Ivar->getLocation(),
1309                                       LoadSelfExpr, true, true);
1310       ObjCMethodDecl::param_iterator P = setterMethod->param_begin();
1311       ParmVarDecl *Param = (*P);
1312       QualType T = Param->getType().getNonReferenceType();
1313       DeclRefExpr *rhs = new (Context) DeclRefExpr(Param, false, T,
1314                                                    VK_LValue, PropertyDiagLoc);
1315       MarkDeclRefReferenced(rhs);
1316       ExprResult Res = BuildBinOp(S, PropertyDiagLoc,
1317                                   BO_Assign, lhs, rhs);
1318       if (property->getPropertyAttributes() &
1319           ObjCPropertyDecl::OBJC_PR_atomic) {
1320         Expr *callExpr = Res.getAs<Expr>();
1321         if (const CXXOperatorCallExpr *CXXCE =
1322               dyn_cast_or_null<CXXOperatorCallExpr>(callExpr))
1323           if (const FunctionDecl *FuncDecl = CXXCE->getDirectCallee())
1324             if (!FuncDecl->isTrivial())
1325               if (property->getType()->isReferenceType()) {
1326                 Diag(PropertyDiagLoc,
1327                      diag::err_atomic_property_nontrivial_assign_op)
1328                     << property->getType();
1329                 Diag(FuncDecl->getLocStart(),
1330                      diag::note_callee_decl) << FuncDecl;
1331               }
1332       }
1333       PIDecl->setSetterCXXAssignment(Res.getAs<Expr>());
1334     }
1335   }
1336 
1337   if (IC) {
1338     if (Synthesize)
1339       if (ObjCPropertyImplDecl *PPIDecl =
1340           IC->FindPropertyImplIvarDecl(PropertyIvar)) {
1341         Diag(PropertyLoc, diag::error_duplicate_ivar_use)
1342         << PropertyId << PPIDecl->getPropertyDecl()->getIdentifier()
1343         << PropertyIvar;
1344         Diag(PPIDecl->getLocation(), diag::note_previous_use);
1345       }
1346 
1347     if (ObjCPropertyImplDecl *PPIDecl
1348         = IC->FindPropertyImplDecl(PropertyId)) {
1349       Diag(PropertyLoc, diag::error_property_implemented) << PropertyId;
1350       Diag(PPIDecl->getLocation(), diag::note_previous_declaration);
1351       return nullptr;
1352     }
1353     IC->addPropertyImplementation(PIDecl);
1354     if (getLangOpts().ObjCDefaultSynthProperties &&
1355         getLangOpts().ObjCRuntime.isNonFragile() &&
1356         !IDecl->isObjCRequiresPropertyDefs()) {
1357       // Diagnose if an ivar was lazily synthesdized due to a previous
1358       // use and if 1) property is @dynamic or 2) property is synthesized
1359       // but it requires an ivar of different name.
1360       ObjCInterfaceDecl *ClassDeclared=nullptr;
1361       ObjCIvarDecl *Ivar = nullptr;
1362       if (!Synthesize)
1363         Ivar = IDecl->lookupInstanceVariable(PropertyId, ClassDeclared);
1364       else {
1365         if (PropertyIvar && PropertyIvar != PropertyId)
1366           Ivar = IDecl->lookupInstanceVariable(PropertyId, ClassDeclared);
1367       }
1368       // Issue diagnostics only if Ivar belongs to current class.
1369       if (Ivar && Ivar->getSynthesize() &&
1370           declaresSameEntity(IC->getClassInterface(), ClassDeclared)) {
1371         Diag(Ivar->getLocation(), diag::err_undeclared_var_use)
1372         << PropertyId;
1373         Ivar->setInvalidDecl();
1374       }
1375     }
1376   } else {
1377     if (Synthesize)
1378       if (ObjCPropertyImplDecl *PPIDecl =
1379           CatImplClass->FindPropertyImplIvarDecl(PropertyIvar)) {
1380         Diag(PropertyDiagLoc, diag::error_duplicate_ivar_use)
1381         << PropertyId << PPIDecl->getPropertyDecl()->getIdentifier()
1382         << PropertyIvar;
1383         Diag(PPIDecl->getLocation(), diag::note_previous_use);
1384       }
1385 
1386     if (ObjCPropertyImplDecl *PPIDecl =
1387         CatImplClass->FindPropertyImplDecl(PropertyId)) {
1388       Diag(PropertyDiagLoc, diag::error_property_implemented) << PropertyId;
1389       Diag(PPIDecl->getLocation(), diag::note_previous_declaration);
1390       return nullptr;
1391     }
1392     CatImplClass->addPropertyImplementation(PIDecl);
1393   }
1394 
1395   return PIDecl;
1396 }
1397 
1398 //===----------------------------------------------------------------------===//
1399 // Helper methods.
1400 //===----------------------------------------------------------------------===//
1401 
1402 /// DiagnosePropertyMismatch - Compares two properties for their
1403 /// attributes and types and warns on a variety of inconsistencies.
1404 ///
1405 void
1406 Sema::DiagnosePropertyMismatch(ObjCPropertyDecl *Property,
1407                                ObjCPropertyDecl *SuperProperty,
1408                                const IdentifierInfo *inheritedName,
1409                                bool OverridingProtocolProperty) {
1410   ObjCPropertyDecl::PropertyAttributeKind CAttr =
1411     Property->getPropertyAttributes();
1412   ObjCPropertyDecl::PropertyAttributeKind SAttr =
1413     SuperProperty->getPropertyAttributes();
1414 
1415   // We allow readonly properties without an explicit ownership
1416   // (assign/unsafe_unretained/weak/retain/strong/copy) in super class
1417   // to be overridden by a property with any explicit ownership in the subclass.
1418   if (!OverridingProtocolProperty &&
1419       !getOwnershipRule(SAttr) && getOwnershipRule(CAttr))
1420     ;
1421   else {
1422     if ((CAttr & ObjCPropertyDecl::OBJC_PR_readonly)
1423         && (SAttr & ObjCPropertyDecl::OBJC_PR_readwrite))
1424       Diag(Property->getLocation(), diag::warn_readonly_property)
1425         << Property->getDeclName() << inheritedName;
1426     if ((CAttr & ObjCPropertyDecl::OBJC_PR_copy)
1427         != (SAttr & ObjCPropertyDecl::OBJC_PR_copy))
1428       Diag(Property->getLocation(), diag::warn_property_attribute)
1429         << Property->getDeclName() << "copy" << inheritedName;
1430     else if (!(SAttr & ObjCPropertyDecl::OBJC_PR_readonly)){
1431       unsigned CAttrRetain =
1432         (CAttr &
1433          (ObjCPropertyDecl::OBJC_PR_retain | ObjCPropertyDecl::OBJC_PR_strong));
1434       unsigned SAttrRetain =
1435         (SAttr &
1436          (ObjCPropertyDecl::OBJC_PR_retain | ObjCPropertyDecl::OBJC_PR_strong));
1437       bool CStrong = (CAttrRetain != 0);
1438       bool SStrong = (SAttrRetain != 0);
1439       if (CStrong != SStrong)
1440         Diag(Property->getLocation(), diag::warn_property_attribute)
1441           << Property->getDeclName() << "retain (or strong)" << inheritedName;
1442     }
1443   }
1444 
1445   // Check for nonatomic; note that nonatomic is effectively
1446   // meaningless for readonly properties, so don't diagnose if the
1447   // atomic property is 'readonly'.
1448   checkAtomicPropertyMismatch(*this, SuperProperty, Property, false);
1449   if (Property->getSetterName() != SuperProperty->getSetterName()) {
1450     Diag(Property->getLocation(), diag::warn_property_attribute)
1451       << Property->getDeclName() << "setter" << inheritedName;
1452     Diag(SuperProperty->getLocation(), diag::note_property_declare);
1453   }
1454   if (Property->getGetterName() != SuperProperty->getGetterName()) {
1455     Diag(Property->getLocation(), diag::warn_property_attribute)
1456       << Property->getDeclName() << "getter" << inheritedName;
1457     Diag(SuperProperty->getLocation(), diag::note_property_declare);
1458   }
1459 
1460   QualType LHSType =
1461     Context.getCanonicalType(SuperProperty->getType());
1462   QualType RHSType =
1463     Context.getCanonicalType(Property->getType());
1464 
1465   if (!Context.propertyTypesAreCompatible(LHSType, RHSType)) {
1466     // Do cases not handled in above.
1467     // FIXME. For future support of covariant property types, revisit this.
1468     bool IncompatibleObjC = false;
1469     QualType ConvertedType;
1470     if (!isObjCPointerConversion(RHSType, LHSType,
1471                                  ConvertedType, IncompatibleObjC) ||
1472         IncompatibleObjC) {
1473         Diag(Property->getLocation(), diag::warn_property_types_are_incompatible)
1474         << Property->getType() << SuperProperty->getType() << inheritedName;
1475       Diag(SuperProperty->getLocation(), diag::note_property_declare);
1476     }
1477   }
1478 }
1479 
1480 bool Sema::DiagnosePropertyAccessorMismatch(ObjCPropertyDecl *property,
1481                                             ObjCMethodDecl *GetterMethod,
1482                                             SourceLocation Loc) {
1483   if (!GetterMethod)
1484     return false;
1485   QualType GetterType = GetterMethod->getReturnType().getNonReferenceType();
1486   QualType PropertyIvarType = property->getType().getNonReferenceType();
1487   bool compat = Context.hasSameType(PropertyIvarType, GetterType);
1488   if (!compat) {
1489     const ObjCObjectPointerType *propertyObjCPtr = nullptr;
1490     const ObjCObjectPointerType *getterObjCPtr = nullptr;
1491     if ((propertyObjCPtr = PropertyIvarType->getAs<ObjCObjectPointerType>()) &&
1492         (getterObjCPtr = GetterType->getAs<ObjCObjectPointerType>()))
1493       compat = Context.canAssignObjCInterfaces(getterObjCPtr, propertyObjCPtr);
1494     else if (CheckAssignmentConstraints(Loc, GetterType, PropertyIvarType)
1495               != Compatible) {
1496           Diag(Loc, diag::error_property_accessor_type)
1497             << property->getDeclName() << PropertyIvarType
1498             << GetterMethod->getSelector() << GetterType;
1499           Diag(GetterMethod->getLocation(), diag::note_declared_at);
1500           return true;
1501     } else {
1502       compat = true;
1503       QualType lhsType =Context.getCanonicalType(PropertyIvarType).getUnqualifiedType();
1504       QualType rhsType =Context.getCanonicalType(GetterType).getUnqualifiedType();
1505       if (lhsType != rhsType && lhsType->isArithmeticType())
1506         compat = false;
1507     }
1508   }
1509 
1510   if (!compat) {
1511     Diag(Loc, diag::warn_accessor_property_type_mismatch)
1512     << property->getDeclName()
1513     << GetterMethod->getSelector();
1514     Diag(GetterMethod->getLocation(), diag::note_declared_at);
1515     return true;
1516   }
1517 
1518   return false;
1519 }
1520 
1521 /// CollectImmediateProperties - This routine collects all properties in
1522 /// the class and its conforming protocols; but not those in its super class.
1523 static void CollectImmediateProperties(ObjCContainerDecl *CDecl,
1524                                        ObjCContainerDecl::PropertyMap &PropMap,
1525                                        ObjCContainerDecl::PropertyMap &SuperPropMap,
1526                                        bool IncludeProtocols = true) {
1527 
1528   if (ObjCInterfaceDecl *IDecl = dyn_cast<ObjCInterfaceDecl>(CDecl)) {
1529     for (auto *Prop : IDecl->instance_properties())
1530       PropMap[Prop->getIdentifier()] = Prop;
1531 
1532     // Collect the properties from visible extensions.
1533     for (auto *Ext : IDecl->visible_extensions())
1534       CollectImmediateProperties(Ext, PropMap, SuperPropMap, IncludeProtocols);
1535 
1536     if (IncludeProtocols) {
1537       // Scan through class's protocols.
1538       for (auto *PI : IDecl->all_referenced_protocols())
1539         CollectImmediateProperties(PI, PropMap, SuperPropMap);
1540     }
1541   }
1542   if (ObjCCategoryDecl *CATDecl = dyn_cast<ObjCCategoryDecl>(CDecl)) {
1543     for (auto *Prop : CATDecl->instance_properties())
1544       PropMap[Prop->getIdentifier()] = Prop;
1545     if (IncludeProtocols) {
1546       // Scan through class's protocols.
1547       for (auto *PI : CATDecl->protocols())
1548         CollectImmediateProperties(PI, PropMap, SuperPropMap);
1549     }
1550   }
1551   else if (ObjCProtocolDecl *PDecl = dyn_cast<ObjCProtocolDecl>(CDecl)) {
1552     for (auto *Prop : PDecl->instance_properties()) {
1553       ObjCPropertyDecl *PropertyFromSuper = SuperPropMap[Prop->getIdentifier()];
1554       // Exclude property for protocols which conform to class's super-class,
1555       // as super-class has to implement the property.
1556       if (!PropertyFromSuper ||
1557           PropertyFromSuper->getIdentifier() != Prop->getIdentifier()) {
1558         ObjCPropertyDecl *&PropEntry = PropMap[Prop->getIdentifier()];
1559         if (!PropEntry)
1560           PropEntry = Prop;
1561       }
1562     }
1563     // scan through protocol's protocols.
1564     for (auto *PI : PDecl->protocols())
1565       CollectImmediateProperties(PI, PropMap, SuperPropMap);
1566   }
1567 }
1568 
1569 /// CollectSuperClassPropertyImplementations - This routine collects list of
1570 /// properties to be implemented in super class(s) and also coming from their
1571 /// conforming protocols.
1572 static void CollectSuperClassPropertyImplementations(ObjCInterfaceDecl *CDecl,
1573                                     ObjCInterfaceDecl::PropertyMap &PropMap) {
1574   if (ObjCInterfaceDecl *SDecl = CDecl->getSuperClass()) {
1575     ObjCInterfaceDecl::PropertyDeclOrder PO;
1576     while (SDecl) {
1577       SDecl->collectPropertiesToImplement(PropMap, PO);
1578       SDecl = SDecl->getSuperClass();
1579     }
1580   }
1581 }
1582 
1583 /// IvarBacksCurrentMethodAccessor - This routine returns 'true' if 'IV' is
1584 /// an ivar synthesized for 'Method' and 'Method' is a property accessor
1585 /// declared in class 'IFace'.
1586 bool
1587 Sema::IvarBacksCurrentMethodAccessor(ObjCInterfaceDecl *IFace,
1588                                      ObjCMethodDecl *Method, ObjCIvarDecl *IV) {
1589   if (!IV->getSynthesize())
1590     return false;
1591   ObjCMethodDecl *IMD = IFace->lookupMethod(Method->getSelector(),
1592                                             Method->isInstanceMethod());
1593   if (!IMD || !IMD->isPropertyAccessor())
1594     return false;
1595 
1596   // look up a property declaration whose one of its accessors is implemented
1597   // by this method.
1598   for (const auto *Property : IFace->instance_properties()) {
1599     if ((Property->getGetterName() == IMD->getSelector() ||
1600          Property->getSetterName() == IMD->getSelector()) &&
1601         (Property->getPropertyIvarDecl() == IV))
1602       return true;
1603   }
1604   // Also look up property declaration in class extension whose one of its
1605   // accessors is implemented by this method.
1606   for (const auto *Ext : IFace->known_extensions())
1607     for (const auto *Property : Ext->instance_properties())
1608       if ((Property->getGetterName() == IMD->getSelector() ||
1609            Property->getSetterName() == IMD->getSelector()) &&
1610           (Property->getPropertyIvarDecl() == IV))
1611         return true;
1612   return false;
1613 }
1614 
1615 static bool SuperClassImplementsProperty(ObjCInterfaceDecl *IDecl,
1616                                          ObjCPropertyDecl *Prop) {
1617   bool SuperClassImplementsGetter = false;
1618   bool SuperClassImplementsSetter = false;
1619   if (Prop->getPropertyAttributes() & ObjCPropertyDecl::OBJC_PR_readonly)
1620     SuperClassImplementsSetter = true;
1621 
1622   while (IDecl->getSuperClass()) {
1623     ObjCInterfaceDecl *SDecl = IDecl->getSuperClass();
1624     if (!SuperClassImplementsGetter && SDecl->getInstanceMethod(Prop->getGetterName()))
1625       SuperClassImplementsGetter = true;
1626 
1627     if (!SuperClassImplementsSetter && SDecl->getInstanceMethod(Prop->getSetterName()))
1628       SuperClassImplementsSetter = true;
1629     if (SuperClassImplementsGetter && SuperClassImplementsSetter)
1630       return true;
1631     IDecl = IDecl->getSuperClass();
1632   }
1633   return false;
1634 }
1635 
1636 /// \brief Default synthesizes all properties which must be synthesized
1637 /// in class's \@implementation.
1638 void Sema::DefaultSynthesizeProperties(Scope *S, ObjCImplDecl* IMPDecl,
1639                                        ObjCInterfaceDecl *IDecl) {
1640 
1641   ObjCInterfaceDecl::PropertyMap PropMap;
1642   ObjCInterfaceDecl::PropertyDeclOrder PropertyOrder;
1643   IDecl->collectPropertiesToImplement(PropMap, PropertyOrder);
1644   if (PropMap.empty())
1645     return;
1646   ObjCInterfaceDecl::PropertyMap SuperPropMap;
1647   CollectSuperClassPropertyImplementations(IDecl, SuperPropMap);
1648 
1649   for (unsigned i = 0, e = PropertyOrder.size(); i != e; i++) {
1650     ObjCPropertyDecl *Prop = PropertyOrder[i];
1651     // Is there a matching property synthesize/dynamic?
1652     if (Prop->isInvalidDecl() ||
1653         Prop->getPropertyImplementation() == ObjCPropertyDecl::Optional)
1654       continue;
1655     // Property may have been synthesized by user.
1656     if (IMPDecl->FindPropertyImplDecl(Prop->getIdentifier()))
1657       continue;
1658     if (IMPDecl->getInstanceMethod(Prop->getGetterName())) {
1659       if (Prop->getPropertyAttributes() & ObjCPropertyDecl::OBJC_PR_readonly)
1660         continue;
1661       if (IMPDecl->getInstanceMethod(Prop->getSetterName()))
1662         continue;
1663     }
1664     if (ObjCPropertyImplDecl *PID =
1665         IMPDecl->FindPropertyImplIvarDecl(Prop->getIdentifier())) {
1666       Diag(Prop->getLocation(), diag::warn_no_autosynthesis_shared_ivar_property)
1667         << Prop->getIdentifier();
1668       if (PID->getLocation().isValid())
1669         Diag(PID->getLocation(), diag::note_property_synthesize);
1670       continue;
1671     }
1672     ObjCPropertyDecl *PropInSuperClass = SuperPropMap[Prop->getIdentifier()];
1673     if (ObjCProtocolDecl *Proto =
1674           dyn_cast<ObjCProtocolDecl>(Prop->getDeclContext())) {
1675       // We won't auto-synthesize properties declared in protocols.
1676       // Suppress the warning if class's superclass implements property's
1677       // getter and implements property's setter (if readwrite property).
1678       // Or, if property is going to be implemented in its super class.
1679       if (!SuperClassImplementsProperty(IDecl, Prop) && !PropInSuperClass) {
1680         Diag(IMPDecl->getLocation(),
1681              diag::warn_auto_synthesizing_protocol_property)
1682           << Prop << Proto;
1683         Diag(Prop->getLocation(), diag::note_property_declare);
1684       }
1685       continue;
1686     }
1687     // If property to be implemented in the super class, ignore.
1688     if (PropInSuperClass) {
1689       if ((Prop->getPropertyAttributes() & ObjCPropertyDecl::OBJC_PR_readwrite) &&
1690           (PropInSuperClass->getPropertyAttributes() &
1691            ObjCPropertyDecl::OBJC_PR_readonly) &&
1692           !IMPDecl->getInstanceMethod(Prop->getSetterName()) &&
1693           !IDecl->HasUserDeclaredSetterMethod(Prop)) {
1694         Diag(Prop->getLocation(), diag::warn_no_autosynthesis_property)
1695         << Prop->getIdentifier();
1696         Diag(PropInSuperClass->getLocation(), diag::note_property_declare);
1697       }
1698       else {
1699         Diag(Prop->getLocation(), diag::warn_autosynthesis_property_in_superclass)
1700         << Prop->getIdentifier();
1701         Diag(PropInSuperClass->getLocation(), diag::note_property_declare);
1702         Diag(IMPDecl->getLocation(), diag::note_while_in_implementation);
1703       }
1704       continue;
1705     }
1706     // We use invalid SourceLocations for the synthesized ivars since they
1707     // aren't really synthesized at a particular location; they just exist.
1708     // Saying that they are located at the @implementation isn't really going
1709     // to help users.
1710     ObjCPropertyImplDecl *PIDecl = dyn_cast_or_null<ObjCPropertyImplDecl>(
1711       ActOnPropertyImplDecl(S, SourceLocation(), SourceLocation(),
1712                             true,
1713                             /* property = */ Prop->getIdentifier(),
1714                             /* ivar = */ Prop->getDefaultSynthIvarName(Context),
1715                             Prop->getLocation()));
1716     if (PIDecl) {
1717       Diag(Prop->getLocation(), diag::warn_missing_explicit_synthesis);
1718       Diag(IMPDecl->getLocation(), diag::note_while_in_implementation);
1719     }
1720   }
1721 }
1722 
1723 void Sema::DefaultSynthesizeProperties(Scope *S, Decl *D) {
1724   if (!LangOpts.ObjCDefaultSynthProperties || LangOpts.ObjCRuntime.isFragile())
1725     return;
1726   ObjCImplementationDecl *IC=dyn_cast_or_null<ObjCImplementationDecl>(D);
1727   if (!IC)
1728     return;
1729   if (ObjCInterfaceDecl* IDecl = IC->getClassInterface())
1730     if (!IDecl->isObjCRequiresPropertyDefs())
1731       DefaultSynthesizeProperties(S, IC, IDecl);
1732 }
1733 
1734 static void DiagnoseUnimplementedAccessor(Sema &S,
1735                                           ObjCInterfaceDecl *PrimaryClass,
1736                                           Selector Method,
1737                                           ObjCImplDecl* IMPDecl,
1738                                           ObjCContainerDecl *CDecl,
1739                                           ObjCCategoryDecl *C,
1740                                           ObjCPropertyDecl *Prop,
1741                                           Sema::SelectorSet &SMap) {
1742   // When reporting on missing property setter/getter implementation in
1743   // categories, do not report when they are declared in primary class,
1744   // class's protocol, or one of it super classes. This is because,
1745   // the class is going to implement them.
1746   if (!SMap.count(Method) &&
1747       (PrimaryClass == nullptr ||
1748        !PrimaryClass->lookupPropertyAccessor(Method, C))) {
1749         S.Diag(IMPDecl->getLocation(),
1750                isa<ObjCCategoryDecl>(CDecl) ?
1751                diag::warn_setter_getter_impl_required_in_category :
1752                diag::warn_setter_getter_impl_required)
1753             << Prop->getDeclName() << Method;
1754         S.Diag(Prop->getLocation(),
1755              diag::note_property_declare);
1756         if (S.LangOpts.ObjCDefaultSynthProperties &&
1757             S.LangOpts.ObjCRuntime.isNonFragile())
1758           if (ObjCInterfaceDecl *ID = dyn_cast<ObjCInterfaceDecl>(CDecl))
1759             if (const ObjCInterfaceDecl *RID = ID->isObjCRequiresPropertyDefs())
1760             S.Diag(RID->getLocation(), diag::note_suppressed_class_declare);
1761       }
1762 }
1763 
1764 void Sema::DiagnoseUnimplementedProperties(Scope *S, ObjCImplDecl* IMPDecl,
1765                                            ObjCContainerDecl *CDecl,
1766                                            bool SynthesizeProperties) {
1767   ObjCContainerDecl::PropertyMap PropMap;
1768   ObjCInterfaceDecl *IDecl = dyn_cast<ObjCInterfaceDecl>(CDecl);
1769 
1770   if (!SynthesizeProperties) {
1771     ObjCContainerDecl::PropertyMap NoNeedToImplPropMap;
1772     // Gather properties which need not be implemented in this class
1773     // or category.
1774     if (!IDecl)
1775       if (ObjCCategoryDecl *C = dyn_cast<ObjCCategoryDecl>(CDecl)) {
1776         // For categories, no need to implement properties declared in
1777         // its primary class (and its super classes) if property is
1778         // declared in one of those containers.
1779         if ((IDecl = C->getClassInterface())) {
1780           ObjCInterfaceDecl::PropertyDeclOrder PO;
1781           IDecl->collectPropertiesToImplement(NoNeedToImplPropMap, PO);
1782         }
1783       }
1784     if (IDecl)
1785       CollectSuperClassPropertyImplementations(IDecl, NoNeedToImplPropMap);
1786 
1787     CollectImmediateProperties(CDecl, PropMap, NoNeedToImplPropMap);
1788   }
1789 
1790   // Scan the @interface to see if any of the protocols it adopts
1791   // require an explicit implementation, via attribute
1792   // 'objc_protocol_requires_explicit_implementation'.
1793   if (IDecl) {
1794     std::unique_ptr<ObjCContainerDecl::PropertyMap> LazyMap;
1795 
1796     for (auto *PDecl : IDecl->all_referenced_protocols()) {
1797       if (!PDecl->hasAttr<ObjCExplicitProtocolImplAttr>())
1798         continue;
1799       // Lazily construct a set of all the properties in the @interface
1800       // of the class, without looking at the superclass.  We cannot
1801       // use the call to CollectImmediateProperties() above as that
1802       // utilizes information from the super class's properties as well
1803       // as scans the adopted protocols.  This work only triggers for protocols
1804       // with the attribute, which is very rare, and only occurs when
1805       // analyzing the @implementation.
1806       if (!LazyMap) {
1807         ObjCContainerDecl::PropertyMap NoNeedToImplPropMap;
1808         LazyMap.reset(new ObjCContainerDecl::PropertyMap());
1809         CollectImmediateProperties(CDecl, *LazyMap, NoNeedToImplPropMap,
1810                                    /* IncludeProtocols */ false);
1811       }
1812       // Add the properties of 'PDecl' to the list of properties that
1813       // need to be implemented.
1814       for (auto *PropDecl : PDecl->instance_properties()) {
1815         if ((*LazyMap)[PropDecl->getIdentifier()])
1816           continue;
1817         PropMap[PropDecl->getIdentifier()] = PropDecl;
1818       }
1819     }
1820   }
1821 
1822   if (PropMap.empty())
1823     return;
1824 
1825   llvm::DenseSet<ObjCPropertyDecl *> PropImplMap;
1826   for (const auto *I : IMPDecl->property_impls())
1827     PropImplMap.insert(I->getPropertyDecl());
1828 
1829   SelectorSet InsMap;
1830   // Collect property accessors implemented in current implementation.
1831   for (const auto *I : IMPDecl->instance_methods())
1832     InsMap.insert(I->getSelector());
1833 
1834   ObjCCategoryDecl *C = dyn_cast<ObjCCategoryDecl>(CDecl);
1835   ObjCInterfaceDecl *PrimaryClass = nullptr;
1836   if (C && !C->IsClassExtension())
1837     if ((PrimaryClass = C->getClassInterface()))
1838       // Report unimplemented properties in the category as well.
1839       if (ObjCImplDecl *IMP = PrimaryClass->getImplementation()) {
1840         // When reporting on missing setter/getters, do not report when
1841         // setter/getter is implemented in category's primary class
1842         // implementation.
1843         for (const auto *I : IMP->instance_methods())
1844           InsMap.insert(I->getSelector());
1845       }
1846 
1847   for (ObjCContainerDecl::PropertyMap::iterator
1848        P = PropMap.begin(), E = PropMap.end(); P != E; ++P) {
1849     ObjCPropertyDecl *Prop = P->second;
1850     // Is there a matching propery synthesize/dynamic?
1851     if (Prop->isInvalidDecl() ||
1852         Prop->getPropertyImplementation() == ObjCPropertyDecl::Optional ||
1853         PropImplMap.count(Prop) ||
1854         Prop->getAvailability() == AR_Unavailable)
1855       continue;
1856 
1857     // Diagnose unimplemented getters and setters.
1858     DiagnoseUnimplementedAccessor(*this,
1859           PrimaryClass, Prop->getGetterName(), IMPDecl, CDecl, C, Prop, InsMap);
1860     if (!Prop->isReadOnly())
1861       DiagnoseUnimplementedAccessor(*this,
1862                                     PrimaryClass, Prop->getSetterName(),
1863                                     IMPDecl, CDecl, C, Prop, InsMap);
1864   }
1865 }
1866 
1867 void Sema::diagnoseNullResettableSynthesizedSetters(const ObjCImplDecl *impDecl) {
1868   for (const auto *propertyImpl : impDecl->property_impls()) {
1869     const auto *property = propertyImpl->getPropertyDecl();
1870 
1871     // Warn about null_resettable properties with synthesized setters,
1872     // because the setter won't properly handle nil.
1873     if (propertyImpl->getPropertyImplementation()
1874           == ObjCPropertyImplDecl::Synthesize &&
1875         (property->getPropertyAttributes() &
1876          ObjCPropertyDecl::OBJC_PR_null_resettable) &&
1877         property->getGetterMethodDecl() &&
1878         property->getSetterMethodDecl()) {
1879       auto *getterMethod = property->getGetterMethodDecl();
1880       auto *setterMethod = property->getSetterMethodDecl();
1881       if (!impDecl->getInstanceMethod(setterMethod->getSelector()) &&
1882           !impDecl->getInstanceMethod(getterMethod->getSelector())) {
1883         SourceLocation loc = propertyImpl->getLocation();
1884         if (loc.isInvalid())
1885           loc = impDecl->getLocStart();
1886 
1887         Diag(loc, diag::warn_null_resettable_setter)
1888           << setterMethod->getSelector() << property->getDeclName();
1889       }
1890     }
1891   }
1892 }
1893 
1894 void
1895 Sema::AtomicPropertySetterGetterRules (ObjCImplDecl* IMPDecl,
1896                                        ObjCInterfaceDecl* IDecl) {
1897   // Rules apply in non-GC mode only
1898   if (getLangOpts().getGC() != LangOptions::NonGC)
1899     return;
1900   ObjCContainerDecl::PropertyMap PM;
1901   for (auto *Prop : IDecl->instance_properties())
1902     PM[Prop->getIdentifier()] = Prop;
1903   for (const auto *Ext : IDecl->known_extensions())
1904     for (auto *Prop : Ext->instance_properties())
1905       PM[Prop->getIdentifier()] = Prop;
1906 
1907     for (ObjCContainerDecl::PropertyMap::iterator I = PM.begin(), E = PM.end();
1908          I != E; ++I) {
1909     const ObjCPropertyDecl *Property = I->second;
1910     ObjCMethodDecl *GetterMethod = nullptr;
1911     ObjCMethodDecl *SetterMethod = nullptr;
1912     bool LookedUpGetterSetter = false;
1913 
1914     unsigned Attributes = Property->getPropertyAttributes();
1915     unsigned AttributesAsWritten = Property->getPropertyAttributesAsWritten();
1916 
1917     if (!(AttributesAsWritten & ObjCPropertyDecl::OBJC_PR_atomic) &&
1918         !(AttributesAsWritten & ObjCPropertyDecl::OBJC_PR_nonatomic)) {
1919       GetterMethod = IMPDecl->getInstanceMethod(Property->getGetterName());
1920       SetterMethod = IMPDecl->getInstanceMethod(Property->getSetterName());
1921       LookedUpGetterSetter = true;
1922       if (GetterMethod) {
1923         Diag(GetterMethod->getLocation(),
1924              diag::warn_default_atomic_custom_getter_setter)
1925           << Property->getIdentifier() << 0;
1926         Diag(Property->getLocation(), diag::note_property_declare);
1927       }
1928       if (SetterMethod) {
1929         Diag(SetterMethod->getLocation(),
1930              diag::warn_default_atomic_custom_getter_setter)
1931           << Property->getIdentifier() << 1;
1932         Diag(Property->getLocation(), diag::note_property_declare);
1933       }
1934     }
1935 
1936     // We only care about readwrite atomic property.
1937     if ((Attributes & ObjCPropertyDecl::OBJC_PR_nonatomic) ||
1938         !(Attributes & ObjCPropertyDecl::OBJC_PR_readwrite))
1939       continue;
1940     if (const ObjCPropertyImplDecl *PIDecl
1941          = IMPDecl->FindPropertyImplDecl(Property->getIdentifier())) {
1942       if (PIDecl->getPropertyImplementation() == ObjCPropertyImplDecl::Dynamic)
1943         continue;
1944       if (!LookedUpGetterSetter) {
1945         GetterMethod = IMPDecl->getInstanceMethod(Property->getGetterName());
1946         SetterMethod = IMPDecl->getInstanceMethod(Property->getSetterName());
1947       }
1948       if ((GetterMethod && !SetterMethod) || (!GetterMethod && SetterMethod)) {
1949         SourceLocation MethodLoc =
1950           (GetterMethod ? GetterMethod->getLocation()
1951                         : SetterMethod->getLocation());
1952         Diag(MethodLoc, diag::warn_atomic_property_rule)
1953           << Property->getIdentifier() << (GetterMethod != nullptr)
1954           << (SetterMethod != nullptr);
1955         // fixit stuff.
1956         if (Property->getLParenLoc().isValid() &&
1957             !(AttributesAsWritten & ObjCPropertyDecl::OBJC_PR_atomic)) {
1958           // @property () ... case.
1959           SourceLocation AfterLParen =
1960             getLocForEndOfToken(Property->getLParenLoc());
1961           StringRef NonatomicStr = AttributesAsWritten? "nonatomic, "
1962                                                       : "nonatomic";
1963           Diag(Property->getLocation(),
1964                diag::note_atomic_property_fixup_suggest)
1965             << FixItHint::CreateInsertion(AfterLParen, NonatomicStr);
1966         } else if (Property->getLParenLoc().isInvalid()) {
1967           //@property id etc.
1968           SourceLocation startLoc =
1969             Property->getTypeSourceInfo()->getTypeLoc().getBeginLoc();
1970           Diag(Property->getLocation(),
1971                diag::note_atomic_property_fixup_suggest)
1972             << FixItHint::CreateInsertion(startLoc, "(nonatomic) ");
1973         }
1974         else
1975           Diag(MethodLoc, diag::note_atomic_property_fixup_suggest);
1976         Diag(Property->getLocation(), diag::note_property_declare);
1977       }
1978     }
1979   }
1980 }
1981 
1982 void Sema::DiagnoseOwningPropertyGetterSynthesis(const ObjCImplementationDecl *D) {
1983   if (getLangOpts().getGC() == LangOptions::GCOnly)
1984     return;
1985 
1986   for (const auto *PID : D->property_impls()) {
1987     const ObjCPropertyDecl *PD = PID->getPropertyDecl();
1988     if (PD && !PD->hasAttr<NSReturnsNotRetainedAttr>() &&
1989         !D->getInstanceMethod(PD->getGetterName())) {
1990       ObjCMethodDecl *method = PD->getGetterMethodDecl();
1991       if (!method)
1992         continue;
1993       ObjCMethodFamily family = method->getMethodFamily();
1994       if (family == OMF_alloc || family == OMF_copy ||
1995           family == OMF_mutableCopy || family == OMF_new) {
1996         if (getLangOpts().ObjCAutoRefCount)
1997           Diag(PD->getLocation(), diag::err_cocoa_naming_owned_rule);
1998         else
1999           Diag(PD->getLocation(), diag::warn_cocoa_naming_owned_rule);
2000 
2001         // Look for a getter explicitly declared alongside the property.
2002         // If we find one, use its location for the note.
2003         SourceLocation noteLoc = PD->getLocation();
2004         SourceLocation fixItLoc;
2005         for (auto *getterRedecl : method->redecls()) {
2006           if (getterRedecl->isImplicit())
2007             continue;
2008           if (getterRedecl->getDeclContext() != PD->getDeclContext())
2009             continue;
2010           noteLoc = getterRedecl->getLocation();
2011           fixItLoc = getterRedecl->getLocEnd();
2012         }
2013 
2014         Preprocessor &PP = getPreprocessor();
2015         TokenValue tokens[] = {
2016           tok::kw___attribute, tok::l_paren, tok::l_paren,
2017           PP.getIdentifierInfo("objc_method_family"), tok::l_paren,
2018           PP.getIdentifierInfo("none"), tok::r_paren,
2019           tok::r_paren, tok::r_paren
2020         };
2021         StringRef spelling = "__attribute__((objc_method_family(none)))";
2022         StringRef macroName = PP.getLastMacroWithSpelling(noteLoc, tokens);
2023         if (!macroName.empty())
2024           spelling = macroName;
2025 
2026         auto noteDiag = Diag(noteLoc, diag::note_cocoa_naming_declare_family)
2027             << method->getDeclName() << spelling;
2028         if (fixItLoc.isValid()) {
2029           SmallString<64> fixItText(" ");
2030           fixItText += spelling;
2031           noteDiag << FixItHint::CreateInsertion(fixItLoc, fixItText);
2032         }
2033       }
2034     }
2035   }
2036 }
2037 
2038 void Sema::DiagnoseMissingDesignatedInitOverrides(
2039                                             const ObjCImplementationDecl *ImplD,
2040                                             const ObjCInterfaceDecl *IFD) {
2041   assert(IFD->hasDesignatedInitializers());
2042   const ObjCInterfaceDecl *SuperD = IFD->getSuperClass();
2043   if (!SuperD)
2044     return;
2045 
2046   SelectorSet InitSelSet;
2047   for (const auto *I : ImplD->instance_methods())
2048     if (I->getMethodFamily() == OMF_init)
2049       InitSelSet.insert(I->getSelector());
2050 
2051   SmallVector<const ObjCMethodDecl *, 8> DesignatedInits;
2052   SuperD->getDesignatedInitializers(DesignatedInits);
2053   for (SmallVector<const ObjCMethodDecl *, 8>::iterator
2054          I = DesignatedInits.begin(), E = DesignatedInits.end(); I != E; ++I) {
2055     const ObjCMethodDecl *MD = *I;
2056     if (!InitSelSet.count(MD->getSelector())) {
2057       bool Ignore = false;
2058       if (auto *IMD = IFD->getInstanceMethod(MD->getSelector())) {
2059         Ignore = IMD->isUnavailable();
2060       }
2061       if (!Ignore) {
2062         Diag(ImplD->getLocation(),
2063              diag::warn_objc_implementation_missing_designated_init_override)
2064           << MD->getSelector();
2065         Diag(MD->getLocation(), diag::note_objc_designated_init_marked_here);
2066       }
2067     }
2068   }
2069 }
2070 
2071 /// AddPropertyAttrs - Propagates attributes from a property to the
2072 /// implicitly-declared getter or setter for that property.
2073 static void AddPropertyAttrs(Sema &S, ObjCMethodDecl *PropertyMethod,
2074                              ObjCPropertyDecl *Property) {
2075   // Should we just clone all attributes over?
2076   for (const auto *A : Property->attrs()) {
2077     if (isa<DeprecatedAttr>(A) ||
2078         isa<UnavailableAttr>(A) ||
2079         isa<AvailabilityAttr>(A))
2080       PropertyMethod->addAttr(A->clone(S.Context));
2081   }
2082 }
2083 
2084 /// ProcessPropertyDecl - Make sure that any user-defined setter/getter methods
2085 /// have the property type and issue diagnostics if they don't.
2086 /// Also synthesize a getter/setter method if none exist (and update the
2087 /// appropriate lookup tables.
2088 void Sema::ProcessPropertyDecl(ObjCPropertyDecl *property) {
2089   ObjCMethodDecl *GetterMethod, *SetterMethod;
2090   ObjCContainerDecl *CD = cast<ObjCContainerDecl>(property->getDeclContext());
2091   if (CD->isInvalidDecl())
2092     return;
2093 
2094   GetterMethod = CD->getInstanceMethod(property->getGetterName());
2095   // if setter or getter is not found in class extension, it might be
2096   // in the primary class.
2097   if (!GetterMethod)
2098     if (const ObjCCategoryDecl *CatDecl = dyn_cast<ObjCCategoryDecl>(CD))
2099       if (CatDecl->IsClassExtension())
2100         GetterMethod = CatDecl->getClassInterface()->
2101                          getInstanceMethod(property->getGetterName());
2102 
2103   SetterMethod = CD->getInstanceMethod(property->getSetterName());
2104   if (!SetterMethod)
2105     if (const ObjCCategoryDecl *CatDecl = dyn_cast<ObjCCategoryDecl>(CD))
2106       if (CatDecl->IsClassExtension())
2107         SetterMethod = CatDecl->getClassInterface()->
2108                           getInstanceMethod(property->getSetterName());
2109   DiagnosePropertyAccessorMismatch(property, GetterMethod,
2110                                    property->getLocation());
2111 
2112   if (SetterMethod) {
2113     ObjCPropertyDecl::PropertyAttributeKind CAttr =
2114       property->getPropertyAttributes();
2115     if ((!(CAttr & ObjCPropertyDecl::OBJC_PR_readonly)) &&
2116         Context.getCanonicalType(SetterMethod->getReturnType()) !=
2117             Context.VoidTy)
2118       Diag(SetterMethod->getLocation(), diag::err_setter_type_void);
2119     if (SetterMethod->param_size() != 1 ||
2120         !Context.hasSameUnqualifiedType(
2121           (*SetterMethod->param_begin())->getType().getNonReferenceType(),
2122           property->getType().getNonReferenceType())) {
2123       Diag(property->getLocation(),
2124            diag::warn_accessor_property_type_mismatch)
2125         << property->getDeclName()
2126         << SetterMethod->getSelector();
2127       Diag(SetterMethod->getLocation(), diag::note_declared_at);
2128     }
2129   }
2130 
2131   // Synthesize getter/setter methods if none exist.
2132   // Find the default getter and if one not found, add one.
2133   // FIXME: The synthesized property we set here is misleading. We almost always
2134   // synthesize these methods unless the user explicitly provided prototypes
2135   // (which is odd, but allowed). Sema should be typechecking that the
2136   // declarations jive in that situation (which it is not currently).
2137   if (!GetterMethod) {
2138     // No instance method of same name as property getter name was found.
2139     // Declare a getter method and add it to the list of methods
2140     // for this class.
2141     SourceLocation Loc = property->getLocation();
2142 
2143     // If the property is null_resettable, the getter returns nonnull.
2144     QualType resultTy = property->getType();
2145     if (property->getPropertyAttributes() &
2146         ObjCPropertyDecl::OBJC_PR_null_resettable) {
2147       QualType modifiedTy = resultTy;
2148       if (auto nullability = AttributedType::stripOuterNullability(modifiedTy)) {
2149         if (*nullability == NullabilityKind::Unspecified)
2150           resultTy = Context.getAttributedType(AttributedType::attr_nonnull,
2151                                                modifiedTy, modifiedTy);
2152       }
2153     }
2154 
2155     GetterMethod = ObjCMethodDecl::Create(Context, Loc, Loc,
2156                              property->getGetterName(),
2157                              resultTy, nullptr, CD,
2158                              /*isInstance=*/true, /*isVariadic=*/false,
2159                              /*isPropertyAccessor=*/true,
2160                              /*isImplicitlyDeclared=*/true, /*isDefined=*/false,
2161                              (property->getPropertyImplementation() ==
2162                               ObjCPropertyDecl::Optional) ?
2163                              ObjCMethodDecl::Optional :
2164                              ObjCMethodDecl::Required);
2165     CD->addDecl(GetterMethod);
2166 
2167     AddPropertyAttrs(*this, GetterMethod, property);
2168 
2169     if (property->hasAttr<NSReturnsNotRetainedAttr>())
2170       GetterMethod->addAttr(NSReturnsNotRetainedAttr::CreateImplicit(Context,
2171                                                                      Loc));
2172 
2173     if (property->hasAttr<ObjCReturnsInnerPointerAttr>())
2174       GetterMethod->addAttr(
2175         ObjCReturnsInnerPointerAttr::CreateImplicit(Context, Loc));
2176 
2177     if (const SectionAttr *SA = property->getAttr<SectionAttr>())
2178       GetterMethod->addAttr(
2179           SectionAttr::CreateImplicit(Context, SectionAttr::GNU_section,
2180                                       SA->getName(), Loc));
2181 
2182     if (getLangOpts().ObjCAutoRefCount)
2183       CheckARCMethodDecl(GetterMethod);
2184   } else
2185     // A user declared getter will be synthesize when @synthesize of
2186     // the property with the same name is seen in the @implementation
2187     GetterMethod->setPropertyAccessor(true);
2188   property->setGetterMethodDecl(GetterMethod);
2189 
2190   // Skip setter if property is read-only.
2191   if (!property->isReadOnly()) {
2192     // Find the default setter and if one not found, add one.
2193     if (!SetterMethod) {
2194       // No instance method of same name as property setter name was found.
2195       // Declare a setter method and add it to the list of methods
2196       // for this class.
2197       SourceLocation Loc = property->getLocation();
2198 
2199       SetterMethod =
2200         ObjCMethodDecl::Create(Context, Loc, Loc,
2201                                property->getSetterName(), Context.VoidTy,
2202                                nullptr, CD, /*isInstance=*/true,
2203                                /*isVariadic=*/false,
2204                                /*isPropertyAccessor=*/true,
2205                                /*isImplicitlyDeclared=*/true,
2206                                /*isDefined=*/false,
2207                                (property->getPropertyImplementation() ==
2208                                 ObjCPropertyDecl::Optional) ?
2209                                 ObjCMethodDecl::Optional :
2210                                 ObjCMethodDecl::Required);
2211 
2212       // If the property is null_resettable, the setter accepts a
2213       // nullable value.
2214       QualType paramTy = property->getType().getUnqualifiedType();
2215       if (property->getPropertyAttributes() &
2216           ObjCPropertyDecl::OBJC_PR_null_resettable) {
2217         QualType modifiedTy = paramTy;
2218         if (auto nullability = AttributedType::stripOuterNullability(modifiedTy)){
2219           if (*nullability == NullabilityKind::Unspecified)
2220             paramTy = Context.getAttributedType(AttributedType::attr_nullable,
2221                                                 modifiedTy, modifiedTy);
2222         }
2223       }
2224 
2225       // Invent the arguments for the setter. We don't bother making a
2226       // nice name for the argument.
2227       ParmVarDecl *Argument = ParmVarDecl::Create(Context, SetterMethod,
2228                                                   Loc, Loc,
2229                                                   property->getIdentifier(),
2230                                                   paramTy,
2231                                                   /*TInfo=*/nullptr,
2232                                                   SC_None,
2233                                                   nullptr);
2234       SetterMethod->setMethodParams(Context, Argument, None);
2235 
2236       AddPropertyAttrs(*this, SetterMethod, property);
2237 
2238       CD->addDecl(SetterMethod);
2239       if (const SectionAttr *SA = property->getAttr<SectionAttr>())
2240         SetterMethod->addAttr(
2241             SectionAttr::CreateImplicit(Context, SectionAttr::GNU_section,
2242                                         SA->getName(), Loc));
2243       // It's possible for the user to have set a very odd custom
2244       // setter selector that causes it to have a method family.
2245       if (getLangOpts().ObjCAutoRefCount)
2246         CheckARCMethodDecl(SetterMethod);
2247     } else
2248       // A user declared setter will be synthesize when @synthesize of
2249       // the property with the same name is seen in the @implementation
2250       SetterMethod->setPropertyAccessor(true);
2251     property->setSetterMethodDecl(SetterMethod);
2252   }
2253   // Add any synthesized methods to the global pool. This allows us to
2254   // handle the following, which is supported by GCC (and part of the design).
2255   //
2256   // @interface Foo
2257   // @property double bar;
2258   // @end
2259   //
2260   // void thisIsUnfortunate() {
2261   //   id foo;
2262   //   double bar = [foo bar];
2263   // }
2264   //
2265   if (GetterMethod)
2266     AddInstanceMethodToGlobalPool(GetterMethod);
2267   if (SetterMethod)
2268     AddInstanceMethodToGlobalPool(SetterMethod);
2269 
2270   ObjCInterfaceDecl *CurrentClass = dyn_cast<ObjCInterfaceDecl>(CD);
2271   if (!CurrentClass) {
2272     if (ObjCCategoryDecl *Cat = dyn_cast<ObjCCategoryDecl>(CD))
2273       CurrentClass = Cat->getClassInterface();
2274     else if (ObjCImplDecl *Impl = dyn_cast<ObjCImplDecl>(CD))
2275       CurrentClass = Impl->getClassInterface();
2276   }
2277   if (GetterMethod)
2278     CheckObjCMethodOverrides(GetterMethod, CurrentClass, Sema::RTC_Unknown);
2279   if (SetterMethod)
2280     CheckObjCMethodOverrides(SetterMethod, CurrentClass, Sema::RTC_Unknown);
2281 }
2282 
2283 void Sema::CheckObjCPropertyAttributes(Decl *PDecl,
2284                                        SourceLocation Loc,
2285                                        unsigned &Attributes,
2286                                        bool propertyInPrimaryClass) {
2287   // FIXME: Improve the reported location.
2288   if (!PDecl || PDecl->isInvalidDecl())
2289     return;
2290 
2291   if ((Attributes & ObjCDeclSpec::DQ_PR_readonly) &&
2292       (Attributes & ObjCDeclSpec::DQ_PR_readwrite))
2293     Diag(Loc, diag::err_objc_property_attr_mutually_exclusive)
2294     << "readonly" << "readwrite";
2295 
2296   ObjCPropertyDecl *PropertyDecl = cast<ObjCPropertyDecl>(PDecl);
2297   QualType PropertyTy = PropertyDecl->getType();
2298 
2299   // Check for copy or retain on non-object types.
2300   if ((Attributes & (ObjCDeclSpec::DQ_PR_weak | ObjCDeclSpec::DQ_PR_copy |
2301                     ObjCDeclSpec::DQ_PR_retain | ObjCDeclSpec::DQ_PR_strong)) &&
2302       !PropertyTy->isObjCRetainableType() &&
2303       !PropertyDecl->hasAttr<ObjCNSObjectAttr>()) {
2304     Diag(Loc, diag::err_objc_property_requires_object)
2305       << (Attributes & ObjCDeclSpec::DQ_PR_weak ? "weak" :
2306           Attributes & ObjCDeclSpec::DQ_PR_copy ? "copy" : "retain (or strong)");
2307     Attributes &= ~(ObjCDeclSpec::DQ_PR_weak   | ObjCDeclSpec::DQ_PR_copy |
2308                     ObjCDeclSpec::DQ_PR_retain | ObjCDeclSpec::DQ_PR_strong);
2309     PropertyDecl->setInvalidDecl();
2310   }
2311 
2312   // Check for more than one of { assign, copy, retain }.
2313   if (Attributes & ObjCDeclSpec::DQ_PR_assign) {
2314     if (Attributes & ObjCDeclSpec::DQ_PR_copy) {
2315       Diag(Loc, diag::err_objc_property_attr_mutually_exclusive)
2316         << "assign" << "copy";
2317       Attributes &= ~ObjCDeclSpec::DQ_PR_copy;
2318     }
2319     if (Attributes & ObjCDeclSpec::DQ_PR_retain) {
2320       Diag(Loc, diag::err_objc_property_attr_mutually_exclusive)
2321         << "assign" << "retain";
2322       Attributes &= ~ObjCDeclSpec::DQ_PR_retain;
2323     }
2324     if (Attributes & ObjCDeclSpec::DQ_PR_strong) {
2325       Diag(Loc, diag::err_objc_property_attr_mutually_exclusive)
2326         << "assign" << "strong";
2327       Attributes &= ~ObjCDeclSpec::DQ_PR_strong;
2328     }
2329     if (getLangOpts().ObjCAutoRefCount  &&
2330         (Attributes & ObjCDeclSpec::DQ_PR_weak)) {
2331       Diag(Loc, diag::err_objc_property_attr_mutually_exclusive)
2332         << "assign" << "weak";
2333       Attributes &= ~ObjCDeclSpec::DQ_PR_weak;
2334     }
2335     if (PropertyDecl->hasAttr<IBOutletCollectionAttr>())
2336       Diag(Loc, diag::warn_iboutletcollection_property_assign);
2337   } else if (Attributes & ObjCDeclSpec::DQ_PR_unsafe_unretained) {
2338     if (Attributes & ObjCDeclSpec::DQ_PR_copy) {
2339       Diag(Loc, diag::err_objc_property_attr_mutually_exclusive)
2340         << "unsafe_unretained" << "copy";
2341       Attributes &= ~ObjCDeclSpec::DQ_PR_copy;
2342     }
2343     if (Attributes & ObjCDeclSpec::DQ_PR_retain) {
2344       Diag(Loc, diag::err_objc_property_attr_mutually_exclusive)
2345         << "unsafe_unretained" << "retain";
2346       Attributes &= ~ObjCDeclSpec::DQ_PR_retain;
2347     }
2348     if (Attributes & ObjCDeclSpec::DQ_PR_strong) {
2349       Diag(Loc, diag::err_objc_property_attr_mutually_exclusive)
2350         << "unsafe_unretained" << "strong";
2351       Attributes &= ~ObjCDeclSpec::DQ_PR_strong;
2352     }
2353     if (getLangOpts().ObjCAutoRefCount  &&
2354         (Attributes & ObjCDeclSpec::DQ_PR_weak)) {
2355       Diag(Loc, diag::err_objc_property_attr_mutually_exclusive)
2356         << "unsafe_unretained" << "weak";
2357       Attributes &= ~ObjCDeclSpec::DQ_PR_weak;
2358     }
2359   } else if (Attributes & ObjCDeclSpec::DQ_PR_copy) {
2360     if (Attributes & ObjCDeclSpec::DQ_PR_retain) {
2361       Diag(Loc, diag::err_objc_property_attr_mutually_exclusive)
2362         << "copy" << "retain";
2363       Attributes &= ~ObjCDeclSpec::DQ_PR_retain;
2364     }
2365     if (Attributes & ObjCDeclSpec::DQ_PR_strong) {
2366       Diag(Loc, diag::err_objc_property_attr_mutually_exclusive)
2367         << "copy" << "strong";
2368       Attributes &= ~ObjCDeclSpec::DQ_PR_strong;
2369     }
2370     if (Attributes & ObjCDeclSpec::DQ_PR_weak) {
2371       Diag(Loc, diag::err_objc_property_attr_mutually_exclusive)
2372         << "copy" << "weak";
2373       Attributes &= ~ObjCDeclSpec::DQ_PR_weak;
2374     }
2375   }
2376   else if ((Attributes & ObjCDeclSpec::DQ_PR_retain) &&
2377            (Attributes & ObjCDeclSpec::DQ_PR_weak)) {
2378       Diag(Loc, diag::err_objc_property_attr_mutually_exclusive)
2379         << "retain" << "weak";
2380       Attributes &= ~ObjCDeclSpec::DQ_PR_retain;
2381   }
2382   else if ((Attributes & ObjCDeclSpec::DQ_PR_strong) &&
2383            (Attributes & ObjCDeclSpec::DQ_PR_weak)) {
2384       Diag(Loc, diag::err_objc_property_attr_mutually_exclusive)
2385         << "strong" << "weak";
2386       Attributes &= ~ObjCDeclSpec::DQ_PR_weak;
2387   }
2388 
2389   if (Attributes & ObjCDeclSpec::DQ_PR_weak) {
2390     // 'weak' and 'nonnull' are mutually exclusive.
2391     if (auto nullability = PropertyTy->getNullability(Context)) {
2392       if (*nullability == NullabilityKind::NonNull)
2393         Diag(Loc, diag::err_objc_property_attr_mutually_exclusive)
2394           << "nonnull" << "weak";
2395     }
2396   }
2397 
2398   if ((Attributes & ObjCDeclSpec::DQ_PR_atomic) &&
2399       (Attributes & ObjCDeclSpec::DQ_PR_nonatomic)) {
2400       Diag(Loc, diag::err_objc_property_attr_mutually_exclusive)
2401         << "atomic" << "nonatomic";
2402       Attributes &= ~ObjCDeclSpec::DQ_PR_atomic;
2403   }
2404 
2405   // Warn if user supplied no assignment attribute, property is
2406   // readwrite, and this is an object type.
2407   if (!getOwnershipRule(Attributes) && PropertyTy->isObjCRetainableType()) {
2408     if (Attributes & ObjCDeclSpec::DQ_PR_readonly) {
2409       // do nothing
2410     } else if (getLangOpts().ObjCAutoRefCount) {
2411       // With arc, @property definitions should default to strong when
2412       // not specified.
2413       PropertyDecl->setPropertyAttributes(ObjCPropertyDecl::OBJC_PR_strong);
2414     } else if (PropertyTy->isObjCObjectPointerType()) {
2415         bool isAnyClassTy =
2416           (PropertyTy->isObjCClassType() ||
2417            PropertyTy->isObjCQualifiedClassType());
2418         // In non-gc, non-arc mode, 'Class' is treated as a 'void *' no need to
2419         // issue any warning.
2420         if (isAnyClassTy && getLangOpts().getGC() == LangOptions::NonGC)
2421           ;
2422         else if (propertyInPrimaryClass) {
2423           // Don't issue warning on property with no life time in class
2424           // extension as it is inherited from property in primary class.
2425           // Skip this warning in gc-only mode.
2426           if (getLangOpts().getGC() != LangOptions::GCOnly)
2427             Diag(Loc, diag::warn_objc_property_no_assignment_attribute);
2428 
2429           // If non-gc code warn that this is likely inappropriate.
2430           if (getLangOpts().getGC() == LangOptions::NonGC)
2431             Diag(Loc, diag::warn_objc_property_default_assign_on_object);
2432         }
2433     }
2434 
2435     // FIXME: Implement warning dependent on NSCopying being
2436     // implemented. See also:
2437     // <rdar://5168496&4855821&5607453&5096644&4947311&5698469&4947014&5168496>
2438     // (please trim this list while you are at it).
2439   }
2440 
2441   if (!(Attributes & ObjCDeclSpec::DQ_PR_copy)
2442       &&!(Attributes & ObjCDeclSpec::DQ_PR_readonly)
2443       && getLangOpts().getGC() == LangOptions::GCOnly
2444       && PropertyTy->isBlockPointerType())
2445     Diag(Loc, diag::warn_objc_property_copy_missing_on_block);
2446   else if ((Attributes & ObjCDeclSpec::DQ_PR_retain) &&
2447            !(Attributes & ObjCDeclSpec::DQ_PR_readonly) &&
2448            !(Attributes & ObjCDeclSpec::DQ_PR_strong) &&
2449            PropertyTy->isBlockPointerType())
2450       Diag(Loc, diag::warn_objc_property_retain_of_block);
2451 
2452   if ((Attributes & ObjCDeclSpec::DQ_PR_readonly) &&
2453       (Attributes & ObjCDeclSpec::DQ_PR_setter))
2454     Diag(Loc, diag::warn_objc_readonly_property_has_setter);
2455 
2456 }
2457