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      1 //===--- DeclObjC.h - Classes for representing declarations -----*- C++ -*-===//
      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 defines the DeclObjC interface and subclasses.
     11 //
     12 //===----------------------------------------------------------------------===//
     13 
     14 #ifndef LLVM_CLANG_AST_DECLOBJC_H
     15 #define LLVM_CLANG_AST_DECLOBJC_H
     16 
     17 #include "clang/AST/Decl.h"
     18 #include "clang/AST/SelectorLocationsKind.h"
     19 #include "llvm/ADT/STLExtras.h"
     20 #include "llvm/Support/Compiler.h"
     21 
     22 namespace clang {
     23 class Expr;
     24 class Stmt;
     25 class FunctionDecl;
     26 class RecordDecl;
     27 class ObjCIvarDecl;
     28 class ObjCMethodDecl;
     29 class ObjCProtocolDecl;
     30 class ObjCCategoryDecl;
     31 class ObjCPropertyDecl;
     32 class ObjCPropertyImplDecl;
     33 class CXXCtorInitializer;
     34 
     35 class ObjCListBase {
     36   ObjCListBase(const ObjCListBase &) LLVM_DELETED_FUNCTION;
     37   void operator=(const ObjCListBase &) LLVM_DELETED_FUNCTION;
     38 protected:
     39   /// List is an array of pointers to objects that are not owned by this object.
     40   void **List;
     41   unsigned NumElts;
     42 
     43 public:
     44   ObjCListBase() : List(nullptr), NumElts(0) {}
     45   unsigned size() const { return NumElts; }
     46   bool empty() const { return NumElts == 0; }
     47 
     48 protected:
     49   void set(void *const* InList, unsigned Elts, ASTContext &Ctx);
     50 };
     51 
     52 
     53 /// ObjCList - This is a simple template class used to hold various lists of
     54 /// decls etc, which is heavily used by the ObjC front-end.  This only use case
     55 /// this supports is setting the list all at once and then reading elements out
     56 /// of it.
     57 template <typename T>
     58 class ObjCList : public ObjCListBase {
     59 public:
     60   void set(T* const* InList, unsigned Elts, ASTContext &Ctx) {
     61     ObjCListBase::set(reinterpret_cast<void*const*>(InList), Elts, Ctx);
     62   }
     63 
     64   typedef T* const * iterator;
     65   iterator begin() const { return (iterator)List; }
     66   iterator end() const { return (iterator)List+NumElts; }
     67 
     68   T* operator[](unsigned Idx) const {
     69     assert(Idx < NumElts && "Invalid access");
     70     return (T*)List[Idx];
     71   }
     72 };
     73 
     74 /// \brief A list of Objective-C protocols, along with the source
     75 /// locations at which they were referenced.
     76 class ObjCProtocolList : public ObjCList<ObjCProtocolDecl> {
     77   SourceLocation *Locations;
     78 
     79   using ObjCList<ObjCProtocolDecl>::set;
     80 
     81 public:
     82   ObjCProtocolList() : ObjCList<ObjCProtocolDecl>(), Locations(nullptr) { }
     83 
     84   typedef const SourceLocation *loc_iterator;
     85   loc_iterator loc_begin() const { return Locations; }
     86   loc_iterator loc_end() const { return Locations + size(); }
     87 
     88   void set(ObjCProtocolDecl* const* InList, unsigned Elts,
     89            const SourceLocation *Locs, ASTContext &Ctx);
     90 };
     91 
     92 
     93 /// ObjCMethodDecl - Represents an instance or class method declaration.
     94 /// ObjC methods can be declared within 4 contexts: class interfaces,
     95 /// categories, protocols, and class implementations. While C++ member
     96 /// functions leverage C syntax, Objective-C method syntax is modeled after
     97 /// Smalltalk (using colons to specify argument types/expressions).
     98 /// Here are some brief examples:
     99 ///
    100 /// Setter/getter instance methods:
    101 /// - (void)setMenu:(NSMenu *)menu;
    102 /// - (NSMenu *)menu;
    103 ///
    104 /// Instance method that takes 2 NSView arguments:
    105 /// - (void)replaceSubview:(NSView *)oldView with:(NSView *)newView;
    106 ///
    107 /// Getter class method:
    108 /// + (NSMenu *)defaultMenu;
    109 ///
    110 /// A selector represents a unique name for a method. The selector names for
    111 /// the above methods are setMenu:, menu, replaceSubview:with:, and defaultMenu.
    112 ///
    113 class ObjCMethodDecl : public NamedDecl, public DeclContext {
    114 public:
    115   enum ImplementationControl { None, Required, Optional };
    116 private:
    117   // The conventional meaning of this method; an ObjCMethodFamily.
    118   // This is not serialized; instead, it is computed on demand and
    119   // cached.
    120   mutable unsigned Family : ObjCMethodFamilyBitWidth;
    121 
    122   /// instance (true) or class (false) method.
    123   unsigned IsInstance : 1;
    124   unsigned IsVariadic : 1;
    125 
    126   /// True if this method is the getter or setter for an explicit property.
    127   unsigned IsPropertyAccessor : 1;
    128 
    129   // Method has a definition.
    130   unsigned IsDefined : 1;
    131 
    132   /// \brief Method redeclaration in the same interface.
    133   unsigned IsRedeclaration : 1;
    134 
    135   /// \brief Is redeclared in the same interface.
    136   mutable unsigned HasRedeclaration : 1;
    137 
    138   // NOTE: VC++ treats enums as signed, avoid using ImplementationControl enum
    139   /// \@required/\@optional
    140   unsigned DeclImplementation : 2;
    141 
    142   // NOTE: VC++ treats enums as signed, avoid using the ObjCDeclQualifier enum
    143   /// in, inout, etc.
    144   unsigned objcDeclQualifier : 6;
    145 
    146   /// \brief Indicates whether this method has a related result type.
    147   unsigned RelatedResultType : 1;
    148 
    149   /// \brief Whether the locations of the selector identifiers are in a
    150   /// "standard" position, a enum SelectorLocationsKind.
    151   unsigned SelLocsKind : 2;
    152 
    153   /// \brief Whether this method overrides any other in the class hierarchy.
    154   ///
    155   /// A method is said to override any method in the class's
    156   /// base classes, its protocols, or its categories' protocols, that has
    157   /// the same selector and is of the same kind (class or instance).
    158   /// A method in an implementation is not considered as overriding the same
    159   /// method in the interface or its categories.
    160   unsigned IsOverriding : 1;
    161 
    162   /// \brief Indicates if the method was a definition but its body was skipped.
    163   unsigned HasSkippedBody : 1;
    164 
    165   // Return type of this method.
    166   QualType MethodDeclType;
    167 
    168   // Type source information for the return type.
    169   TypeSourceInfo *ReturnTInfo;
    170 
    171   /// \brief Array of ParmVarDecls for the formal parameters of this method
    172   /// and optionally followed by selector locations.
    173   void *ParamsAndSelLocs;
    174   unsigned NumParams;
    175 
    176   /// List of attributes for this method declaration.
    177   SourceLocation DeclEndLoc; // the location of the ';' or '{'.
    178 
    179   // The following are only used for method definitions, null otherwise.
    180   LazyDeclStmtPtr Body;
    181 
    182   /// SelfDecl - Decl for the implicit self parameter. This is lazily
    183   /// constructed by createImplicitParams.
    184   ImplicitParamDecl *SelfDecl;
    185   /// CmdDecl - Decl for the implicit _cmd parameter. This is lazily
    186   /// constructed by createImplicitParams.
    187   ImplicitParamDecl *CmdDecl;
    188 
    189   SelectorLocationsKind getSelLocsKind() const {
    190     return (SelectorLocationsKind)SelLocsKind;
    191   }
    192   bool hasStandardSelLocs() const {
    193     return getSelLocsKind() != SelLoc_NonStandard;
    194   }
    195 
    196   /// \brief Get a pointer to the stored selector identifiers locations array.
    197   /// No locations will be stored if HasStandardSelLocs is true.
    198   SourceLocation *getStoredSelLocs() {
    199     return reinterpret_cast<SourceLocation*>(getParams() + NumParams);
    200   }
    201   const SourceLocation *getStoredSelLocs() const {
    202     return reinterpret_cast<const SourceLocation*>(getParams() + NumParams);
    203   }
    204 
    205   /// \brief Get a pointer to the stored selector identifiers locations array.
    206   /// No locations will be stored if HasStandardSelLocs is true.
    207   ParmVarDecl **getParams() {
    208     return reinterpret_cast<ParmVarDecl **>(ParamsAndSelLocs);
    209   }
    210   const ParmVarDecl *const *getParams() const {
    211     return reinterpret_cast<const ParmVarDecl *const *>(ParamsAndSelLocs);
    212   }
    213 
    214   /// \brief Get the number of stored selector identifiers locations.
    215   /// No locations will be stored if HasStandardSelLocs is true.
    216   unsigned getNumStoredSelLocs() const {
    217     if (hasStandardSelLocs())
    218       return 0;
    219     return getNumSelectorLocs();
    220   }
    221 
    222   void setParamsAndSelLocs(ASTContext &C,
    223                            ArrayRef<ParmVarDecl*> Params,
    224                            ArrayRef<SourceLocation> SelLocs);
    225 
    226   ObjCMethodDecl(SourceLocation beginLoc, SourceLocation endLoc,
    227                  Selector SelInfo, QualType T, TypeSourceInfo *ReturnTInfo,
    228                  DeclContext *contextDecl, bool isInstance = true,
    229                  bool isVariadic = false, bool isPropertyAccessor = false,
    230                  bool isImplicitlyDeclared = false, bool isDefined = false,
    231                  ImplementationControl impControl = None,
    232                  bool HasRelatedResultType = false)
    233       : NamedDecl(ObjCMethod, contextDecl, beginLoc, SelInfo),
    234         DeclContext(ObjCMethod), Family(InvalidObjCMethodFamily),
    235         IsInstance(isInstance), IsVariadic(isVariadic),
    236         IsPropertyAccessor(isPropertyAccessor), IsDefined(isDefined),
    237         IsRedeclaration(0), HasRedeclaration(0), DeclImplementation(impControl),
    238         objcDeclQualifier(OBJC_TQ_None),
    239         RelatedResultType(HasRelatedResultType),
    240         SelLocsKind(SelLoc_StandardNoSpace), IsOverriding(0), HasSkippedBody(0),
    241         MethodDeclType(T), ReturnTInfo(ReturnTInfo), ParamsAndSelLocs(nullptr),
    242         NumParams(0), DeclEndLoc(endLoc), Body(), SelfDecl(nullptr),
    243         CmdDecl(nullptr) {
    244     setImplicit(isImplicitlyDeclared);
    245   }
    246 
    247   /// \brief A definition will return its interface declaration.
    248   /// An interface declaration will return its definition.
    249   /// Otherwise it will return itself.
    250   ObjCMethodDecl *getNextRedeclarationImpl() override;
    251 
    252 public:
    253   static ObjCMethodDecl *
    254   Create(ASTContext &C, SourceLocation beginLoc, SourceLocation endLoc,
    255          Selector SelInfo, QualType T, TypeSourceInfo *ReturnTInfo,
    256          DeclContext *contextDecl, bool isInstance = true,
    257          bool isVariadic = false, bool isPropertyAccessor = false,
    258          bool isImplicitlyDeclared = false, bool isDefined = false,
    259          ImplementationControl impControl = None,
    260          bool HasRelatedResultType = false);
    261 
    262   static ObjCMethodDecl *CreateDeserialized(ASTContext &C, unsigned ID);
    263 
    264   ObjCMethodDecl *getCanonicalDecl() override;
    265   const ObjCMethodDecl *getCanonicalDecl() const {
    266     return const_cast<ObjCMethodDecl*>(this)->getCanonicalDecl();
    267   }
    268 
    269   ObjCDeclQualifier getObjCDeclQualifier() const {
    270     return ObjCDeclQualifier(objcDeclQualifier);
    271   }
    272   void setObjCDeclQualifier(ObjCDeclQualifier QV) { objcDeclQualifier = QV; }
    273 
    274   /// \brief Determine whether this method has a result type that is related
    275   /// to the message receiver's type.
    276   bool hasRelatedResultType() const { return RelatedResultType; }
    277 
    278   /// \brief Note whether this method has a related result type.
    279   void SetRelatedResultType(bool RRT = true) { RelatedResultType = RRT; }
    280 
    281   /// \brief True if this is a method redeclaration in the same interface.
    282   bool isRedeclaration() const { return IsRedeclaration; }
    283   void setAsRedeclaration(const ObjCMethodDecl *PrevMethod);
    284 
    285   /// \brief Returns the location where the declarator ends. It will be
    286   /// the location of ';' for a method declaration and the location of '{'
    287   /// for a method definition.
    288   SourceLocation getDeclaratorEndLoc() const { return DeclEndLoc; }
    289 
    290   // Location information, modeled after the Stmt API.
    291   SourceLocation getLocStart() const LLVM_READONLY { return getLocation(); }
    292   SourceLocation getLocEnd() const LLVM_READONLY;
    293   SourceRange getSourceRange() const override LLVM_READONLY {
    294     return SourceRange(getLocation(), getLocEnd());
    295   }
    296 
    297   SourceLocation getSelectorStartLoc() const {
    298     if (isImplicit())
    299       return getLocStart();
    300     return getSelectorLoc(0);
    301   }
    302   SourceLocation getSelectorLoc(unsigned Index) const {
    303     assert(Index < getNumSelectorLocs() && "Index out of range!");
    304     if (hasStandardSelLocs())
    305       return getStandardSelectorLoc(Index, getSelector(),
    306                                    getSelLocsKind() == SelLoc_StandardWithSpace,
    307                                     parameters(),
    308                                    DeclEndLoc);
    309     return getStoredSelLocs()[Index];
    310   }
    311 
    312   void getSelectorLocs(SmallVectorImpl<SourceLocation> &SelLocs) const;
    313 
    314   unsigned getNumSelectorLocs() const {
    315     if (isImplicit())
    316       return 0;
    317     Selector Sel = getSelector();
    318     if (Sel.isUnarySelector())
    319       return 1;
    320     return Sel.getNumArgs();
    321   }
    322 
    323   ObjCInterfaceDecl *getClassInterface();
    324   const ObjCInterfaceDecl *getClassInterface() const {
    325     return const_cast<ObjCMethodDecl*>(this)->getClassInterface();
    326   }
    327 
    328   Selector getSelector() const { return getDeclName().getObjCSelector(); }
    329 
    330   QualType getReturnType() const { return MethodDeclType; }
    331   void setReturnType(QualType T) { MethodDeclType = T; }
    332 
    333   /// \brief Determine the type of an expression that sends a message to this
    334   /// function.
    335   QualType getSendResultType() const {
    336     return getReturnType().getNonLValueExprType(getASTContext());
    337   }
    338 
    339   TypeSourceInfo *getReturnTypeSourceInfo() const { return ReturnTInfo; }
    340   void setReturnTypeSourceInfo(TypeSourceInfo *TInfo) { ReturnTInfo = TInfo; }
    341 
    342   // Iterator access to formal parameters.
    343   unsigned param_size() const { return NumParams; }
    344   typedef const ParmVarDecl *const *param_const_iterator;
    345   typedef ParmVarDecl *const *param_iterator;
    346   typedef llvm::iterator_range<param_iterator> param_range;
    347   typedef llvm::iterator_range<param_const_iterator> param_const_range;
    348 
    349   param_range params() { return param_range(param_begin(), param_end()); }
    350   param_const_range params() const {
    351     return param_const_range(param_begin(), param_end());
    352   }
    353 
    354   param_const_iterator param_begin() const {
    355     return param_const_iterator(getParams());
    356   }
    357   param_const_iterator param_end() const {
    358     return param_const_iterator(getParams() + NumParams);
    359   }
    360   param_iterator param_begin() { return param_iterator(getParams()); }
    361   param_iterator param_end() { return param_iterator(getParams() + NumParams); }
    362 
    363   // This method returns and of the parameters which are part of the selector
    364   // name mangling requirements.
    365   param_const_iterator sel_param_end() const {
    366     return param_begin() + getSelector().getNumArgs();
    367   }
    368 
    369   // ArrayRef access to formal parameters.  This should eventually
    370   // replace the iterator interface above.
    371   ArrayRef<ParmVarDecl*> parameters() const {
    372     return llvm::makeArrayRef(const_cast<ParmVarDecl**>(getParams()),
    373                               NumParams);
    374   }
    375 
    376   /// \brief Sets the method's parameters and selector source locations.
    377   /// If the method is implicit (not coming from source) \p SelLocs is
    378   /// ignored.
    379   void setMethodParams(ASTContext &C,
    380                        ArrayRef<ParmVarDecl*> Params,
    381                        ArrayRef<SourceLocation> SelLocs =
    382                            ArrayRef<SourceLocation>());
    383 
    384   // Iterator access to parameter types.
    385   typedef std::const_mem_fun_t<QualType, ParmVarDecl> deref_fun;
    386   typedef llvm::mapped_iterator<param_const_iterator, deref_fun>
    387   param_type_iterator;
    388 
    389   param_type_iterator param_type_begin() const {
    390     return llvm::map_iterator(param_begin(), deref_fun(&ParmVarDecl::getType));
    391   }
    392   param_type_iterator param_type_end() const {
    393     return llvm::map_iterator(param_end(), deref_fun(&ParmVarDecl::getType));
    394   }
    395 
    396   /// createImplicitParams - Used to lazily create the self and cmd
    397   /// implict parameters. This must be called prior to using getSelfDecl()
    398   /// or getCmdDecl(). The call is ignored if the implicit paramters
    399   /// have already been created.
    400   void createImplicitParams(ASTContext &Context, const ObjCInterfaceDecl *ID);
    401 
    402   ImplicitParamDecl * getSelfDecl() const { return SelfDecl; }
    403   void setSelfDecl(ImplicitParamDecl *SD) { SelfDecl = SD; }
    404   ImplicitParamDecl * getCmdDecl() const { return CmdDecl; }
    405   void setCmdDecl(ImplicitParamDecl *CD) { CmdDecl = CD; }
    406 
    407   /// Determines the family of this method.
    408   ObjCMethodFamily getMethodFamily() const;
    409 
    410   bool isInstanceMethod() const { return IsInstance; }
    411   void setInstanceMethod(bool isInst) { IsInstance = isInst; }
    412   bool isVariadic() const { return IsVariadic; }
    413   void setVariadic(bool isVar) { IsVariadic = isVar; }
    414 
    415   bool isClassMethod() const { return !IsInstance; }
    416 
    417   bool isPropertyAccessor() const { return IsPropertyAccessor; }
    418   void setPropertyAccessor(bool isAccessor) { IsPropertyAccessor = isAccessor; }
    419 
    420   bool isDefined() const { return IsDefined; }
    421   void setDefined(bool isDefined) { IsDefined = isDefined; }
    422 
    423   /// \brief Whether this method overrides any other in the class hierarchy.
    424   ///
    425   /// A method is said to override any method in the class's
    426   /// base classes, its protocols, or its categories' protocols, that has
    427   /// the same selector and is of the same kind (class or instance).
    428   /// A method in an implementation is not considered as overriding the same
    429   /// method in the interface or its categories.
    430   bool isOverriding() const { return IsOverriding; }
    431   void setOverriding(bool isOverriding) { IsOverriding = isOverriding; }
    432 
    433   /// \brief Return overridden methods for the given \p Method.
    434   ///
    435   /// An ObjC method is considered to override any method in the class's
    436   /// base classes (and base's categories), its protocols, or its categories'
    437   /// protocols, that has
    438   /// the same selector and is of the same kind (class or instance).
    439   /// A method in an implementation is not considered as overriding the same
    440   /// method in the interface or its categories.
    441   void getOverriddenMethods(
    442                      SmallVectorImpl<const ObjCMethodDecl *> &Overridden) const;
    443 
    444   /// \brief True if the method was a definition but its body was skipped.
    445   bool hasSkippedBody() const { return HasSkippedBody; }
    446   void setHasSkippedBody(bool Skipped = true) { HasSkippedBody = Skipped; }
    447 
    448   /// \brief Returns the property associated with this method's selector.
    449   ///
    450   /// Note that even if this particular method is not marked as a property
    451   /// accessor, it is still possible for it to match a property declared in a
    452   /// superclass. Pass \c false if you only want to check the current class.
    453   const ObjCPropertyDecl *findPropertyDecl(bool CheckOverrides = true) const;
    454 
    455   // Related to protocols declared in  \@protocol
    456   void setDeclImplementation(ImplementationControl ic) {
    457     DeclImplementation = ic;
    458   }
    459   ImplementationControl getImplementationControl() const {
    460     return ImplementationControl(DeclImplementation);
    461   }
    462 
    463   /// Returns true if this specific method declaration is marked with the
    464   /// designated initializer attribute.
    465   bool isThisDeclarationADesignatedInitializer() const;
    466 
    467   /// Returns true if the method selector resolves to a designated initializer
    468   /// in the class's interface.
    469   ///
    470   /// \param InitMethod if non-null and the function returns true, it receives
    471   /// the method declaration that was marked with the designated initializer
    472   /// attribute.
    473   bool isDesignatedInitializerForTheInterface(
    474       const ObjCMethodDecl **InitMethod = nullptr) const;
    475 
    476   /// \brief Determine whether this method has a body.
    477   bool hasBody() const override { return Body.isValid(); }
    478 
    479   /// \brief Retrieve the body of this method, if it has one.
    480   Stmt *getBody() const override;
    481 
    482   void setLazyBody(uint64_t Offset) { Body = Offset; }
    483 
    484   CompoundStmt *getCompoundBody() { return (CompoundStmt*)getBody(); }
    485   void setBody(Stmt *B) { Body = B; }
    486 
    487   /// \brief Returns whether this specific method is a definition.
    488   bool isThisDeclarationADefinition() const { return hasBody(); }
    489 
    490   // Implement isa/cast/dyncast/etc.
    491   static bool classof(const Decl *D) { return classofKind(D->getKind()); }
    492   static bool classofKind(Kind K) { return K == ObjCMethod; }
    493   static DeclContext *castToDeclContext(const ObjCMethodDecl *D) {
    494     return static_cast<DeclContext *>(const_cast<ObjCMethodDecl*>(D));
    495   }
    496   static ObjCMethodDecl *castFromDeclContext(const DeclContext *DC) {
    497     return static_cast<ObjCMethodDecl *>(const_cast<DeclContext*>(DC));
    498   }
    499 
    500   friend class ASTDeclReader;
    501   friend class ASTDeclWriter;
    502 };
    503 
    504 /// ObjCContainerDecl - Represents a container for method declarations.
    505 /// Current sub-classes are ObjCInterfaceDecl, ObjCCategoryDecl,
    506 /// ObjCProtocolDecl, and ObjCImplDecl.
    507 ///
    508 class ObjCContainerDecl : public NamedDecl, public DeclContext {
    509   void anchor() override;
    510 
    511   SourceLocation AtStart;
    512 
    513   // These two locations in the range mark the end of the method container.
    514   // The first points to the '@' token, and the second to the 'end' token.
    515   SourceRange AtEnd;
    516 public:
    517 
    518   ObjCContainerDecl(Kind DK, DeclContext *DC,
    519                     IdentifierInfo *Id, SourceLocation nameLoc,
    520                     SourceLocation atStartLoc)
    521     : NamedDecl(DK, DC, nameLoc, Id), DeclContext(DK), AtStart(atStartLoc) {}
    522 
    523   // Iterator access to properties.
    524   typedef specific_decl_iterator<ObjCPropertyDecl> prop_iterator;
    525   typedef llvm::iterator_range<specific_decl_iterator<ObjCPropertyDecl>>
    526     prop_range;
    527 
    528   prop_range properties() const { return prop_range(prop_begin(), prop_end()); }
    529   prop_iterator prop_begin() const {
    530     return prop_iterator(decls_begin());
    531   }
    532   prop_iterator prop_end() const {
    533     return prop_iterator(decls_end());
    534   }
    535 
    536   // Iterator access to instance/class methods.
    537   typedef specific_decl_iterator<ObjCMethodDecl> method_iterator;
    538   typedef llvm::iterator_range<specific_decl_iterator<ObjCMethodDecl>>
    539     method_range;
    540 
    541   method_range methods() const {
    542     return method_range(meth_begin(), meth_end());
    543   }
    544   method_iterator meth_begin() const {
    545     return method_iterator(decls_begin());
    546   }
    547   method_iterator meth_end() const {
    548     return method_iterator(decls_end());
    549   }
    550 
    551   typedef filtered_decl_iterator<ObjCMethodDecl,
    552                                  &ObjCMethodDecl::isInstanceMethod>
    553     instmeth_iterator;
    554   typedef llvm::iterator_range<instmeth_iterator> instmeth_range;
    555 
    556   instmeth_range instance_methods() const {
    557     return instmeth_range(instmeth_begin(), instmeth_end());
    558   }
    559   instmeth_iterator instmeth_begin() const {
    560     return instmeth_iterator(decls_begin());
    561   }
    562   instmeth_iterator instmeth_end() const {
    563     return instmeth_iterator(decls_end());
    564   }
    565 
    566   typedef filtered_decl_iterator<ObjCMethodDecl,
    567                                  &ObjCMethodDecl::isClassMethod>
    568     classmeth_iterator;
    569   typedef llvm::iterator_range<classmeth_iterator> classmeth_range;
    570 
    571   classmeth_range class_methods() const {
    572     return classmeth_range(classmeth_begin(), classmeth_end());
    573   }
    574   classmeth_iterator classmeth_begin() const {
    575     return classmeth_iterator(decls_begin());
    576   }
    577   classmeth_iterator classmeth_end() const {
    578     return classmeth_iterator(decls_end());
    579   }
    580 
    581   // Get the local instance/class method declared in this interface.
    582   ObjCMethodDecl *getMethod(Selector Sel, bool isInstance,
    583                             bool AllowHidden = false) const;
    584   ObjCMethodDecl *getInstanceMethod(Selector Sel,
    585                                     bool AllowHidden = false) const {
    586     return getMethod(Sel, true/*isInstance*/, AllowHidden);
    587   }
    588   ObjCMethodDecl *getClassMethod(Selector Sel, bool AllowHidden = false) const {
    589     return getMethod(Sel, false/*isInstance*/, AllowHidden);
    590   }
    591   bool HasUserDeclaredSetterMethod(const ObjCPropertyDecl *P) const;
    592   ObjCIvarDecl *getIvarDecl(IdentifierInfo *Id) const;
    593 
    594   ObjCPropertyDecl *FindPropertyDeclaration(IdentifierInfo *PropertyId) const;
    595 
    596   typedef llvm::DenseMap<IdentifierInfo*, ObjCPropertyDecl*> PropertyMap;
    597 
    598   typedef llvm::DenseMap<const ObjCProtocolDecl *, ObjCPropertyDecl*>
    599             ProtocolPropertyMap;
    600 
    601   typedef llvm::SmallVector<ObjCPropertyDecl*, 8> PropertyDeclOrder;
    602 
    603   /// This routine collects list of properties to be implemented in the class.
    604   /// This includes, class's and its conforming protocols' properties.
    605   /// Note, the superclass's properties are not included in the list.
    606   virtual void collectPropertiesToImplement(PropertyMap &PM,
    607                                             PropertyDeclOrder &PO) const {}
    608 
    609   SourceLocation getAtStartLoc() const { return AtStart; }
    610   void setAtStartLoc(SourceLocation Loc) { AtStart = Loc; }
    611 
    612   // Marks the end of the container.
    613   SourceRange getAtEndRange() const {
    614     return AtEnd;
    615   }
    616   void setAtEndRange(SourceRange atEnd) {
    617     AtEnd = atEnd;
    618   }
    619 
    620   SourceRange getSourceRange() const override LLVM_READONLY {
    621     return SourceRange(AtStart, getAtEndRange().getEnd());
    622   }
    623 
    624   // Implement isa/cast/dyncast/etc.
    625   static bool classof(const Decl *D) { return classofKind(D->getKind()); }
    626   static bool classofKind(Kind K) {
    627     return K >= firstObjCContainer &&
    628            K <= lastObjCContainer;
    629   }
    630 
    631   static DeclContext *castToDeclContext(const ObjCContainerDecl *D) {
    632     return static_cast<DeclContext *>(const_cast<ObjCContainerDecl*>(D));
    633   }
    634   static ObjCContainerDecl *castFromDeclContext(const DeclContext *DC) {
    635     return static_cast<ObjCContainerDecl *>(const_cast<DeclContext*>(DC));
    636   }
    637 };
    638 
    639 /// \brief Represents an ObjC class declaration.
    640 ///
    641 /// For example:
    642 ///
    643 /// \code
    644 ///   // MostPrimitive declares no super class (not particularly useful).
    645 ///   \@interface MostPrimitive
    646 ///     // no instance variables or methods.
    647 ///   \@end
    648 ///
    649 ///   // NSResponder inherits from NSObject & implements NSCoding (a protocol).
    650 ///   \@interface NSResponder : NSObject \<NSCoding>
    651 ///   { // instance variables are represented by ObjCIvarDecl.
    652 ///     id nextResponder; // nextResponder instance variable.
    653 ///   }
    654 ///   - (NSResponder *)nextResponder; // return a pointer to NSResponder.
    655 ///   - (void)mouseMoved:(NSEvent *)theEvent; // return void, takes a pointer
    656 ///   \@end                                    // to an NSEvent.
    657 /// \endcode
    658 ///
    659 ///   Unlike C/C++, forward class declarations are accomplished with \@class.
    660 ///   Unlike C/C++, \@class allows for a list of classes to be forward declared.
    661 ///   Unlike C++, ObjC is a single-rooted class model. In Cocoa, classes
    662 ///   typically inherit from NSObject (an exception is NSProxy).
    663 ///
    664 class ObjCInterfaceDecl : public ObjCContainerDecl
    665                         , public Redeclarable<ObjCInterfaceDecl> {
    666   void anchor() override;
    667 
    668   /// TypeForDecl - This indicates the Type object that represents this
    669   /// TypeDecl.  It is a cache maintained by ASTContext::getObjCInterfaceType
    670   mutable const Type *TypeForDecl;
    671   friend class ASTContext;
    672 
    673   struct DefinitionData {
    674     /// \brief The definition of this class, for quick access from any
    675     /// declaration.
    676     ObjCInterfaceDecl *Definition;
    677 
    678     /// Class's super class.
    679     ObjCInterfaceDecl *SuperClass;
    680 
    681     /// Protocols referenced in the \@interface  declaration
    682     ObjCProtocolList ReferencedProtocols;
    683 
    684     /// Protocols reference in both the \@interface and class extensions.
    685     ObjCList<ObjCProtocolDecl> AllReferencedProtocols;
    686 
    687     /// \brief List of categories and class extensions defined for this class.
    688     ///
    689     /// Categories are stored as a linked list in the AST, since the categories
    690     /// and class extensions come long after the initial interface declaration,
    691     /// and we avoid dynamically-resized arrays in the AST wherever possible.
    692     ObjCCategoryDecl *CategoryList;
    693 
    694     /// IvarList - List of all ivars defined by this class; including class
    695     /// extensions and implementation. This list is built lazily.
    696     ObjCIvarDecl *IvarList;
    697 
    698     /// \brief Indicates that the contents of this Objective-C class will be
    699     /// completed by the external AST source when required.
    700     mutable bool ExternallyCompleted : 1;
    701 
    702     /// \brief Indicates that the ivar cache does not yet include ivars
    703     /// declared in the implementation.
    704     mutable bool IvarListMissingImplementation : 1;
    705 
    706     /// Indicates that this interface decl contains at least one initializer
    707     /// marked with the 'objc_designated_initializer' attribute.
    708     bool HasDesignatedInitializers : 1;
    709 
    710     enum InheritedDesignatedInitializersState {
    711       /// We didn't calculate whether the designated initializers should be
    712       /// inherited or not.
    713       IDI_Unknown = 0,
    714       /// Designated initializers are inherited for the super class.
    715       IDI_Inherited = 1,
    716       /// The class does not inherit designated initializers.
    717       IDI_NotInherited = 2
    718     };
    719     /// One of the \c InheritedDesignatedInitializersState enumeratos.
    720     mutable unsigned InheritedDesignatedInitializers : 2;
    721 
    722     /// \brief The location of the superclass, if any.
    723     SourceLocation SuperClassLoc;
    724 
    725     /// \brief The location of the last location in this declaration, before
    726     /// the properties/methods. For example, this will be the '>', '}', or
    727     /// identifier,
    728     SourceLocation EndLoc;
    729 
    730     DefinitionData() : Definition(), SuperClass(), CategoryList(), IvarList(),
    731                        ExternallyCompleted(),
    732                        IvarListMissingImplementation(true),
    733                        HasDesignatedInitializers(),
    734                        InheritedDesignatedInitializers(IDI_Unknown) { }
    735   };
    736 
    737   ObjCInterfaceDecl(const ASTContext &C, DeclContext *DC, SourceLocation AtLoc,
    738                     IdentifierInfo *Id, SourceLocation CLoc,
    739                     ObjCInterfaceDecl *PrevDecl, bool IsInternal);
    740 
    741   void LoadExternalDefinition() const;
    742 
    743   /// \brief Contains a pointer to the data associated with this class,
    744   /// which will be NULL if this class has not yet been defined.
    745   ///
    746   /// The bit indicates when we don't need to check for out-of-date
    747   /// declarations. It will be set unless modules are enabled.
    748   llvm::PointerIntPair<DefinitionData *, 1, bool> Data;
    749 
    750   DefinitionData &data() const {
    751     assert(Data.getPointer() && "Declaration has no definition!");
    752     return *Data.getPointer();
    753   }
    754 
    755   /// \brief Allocate the definition data for this class.
    756   void allocateDefinitionData();
    757 
    758   typedef Redeclarable<ObjCInterfaceDecl> redeclarable_base;
    759   ObjCInterfaceDecl *getNextRedeclarationImpl() override {
    760     return getNextRedeclaration();
    761   }
    762   ObjCInterfaceDecl *getPreviousDeclImpl() override {
    763     return getPreviousDecl();
    764   }
    765   ObjCInterfaceDecl *getMostRecentDeclImpl() override {
    766     return getMostRecentDecl();
    767   }
    768 
    769 public:
    770   static ObjCInterfaceDecl *Create(const ASTContext &C, DeclContext *DC,
    771                                    SourceLocation atLoc,
    772                                    IdentifierInfo *Id,
    773                                    ObjCInterfaceDecl *PrevDecl,
    774                                    SourceLocation ClassLoc = SourceLocation(),
    775                                    bool isInternal = false);
    776 
    777   static ObjCInterfaceDecl *CreateDeserialized(const ASTContext &C, unsigned ID);
    778 
    779   SourceRange getSourceRange() const override LLVM_READONLY {
    780     if (isThisDeclarationADefinition())
    781       return ObjCContainerDecl::getSourceRange();
    782 
    783     return SourceRange(getAtStartLoc(), getLocation());
    784   }
    785 
    786   /// \brief Indicate that this Objective-C class is complete, but that
    787   /// the external AST source will be responsible for filling in its contents
    788   /// when a complete class is required.
    789   void setExternallyCompleted();
    790 
    791   /// Indicate that this interface decl contains at least one initializer
    792   /// marked with the 'objc_designated_initializer' attribute.
    793   void setHasDesignatedInitializers();
    794 
    795   /// Returns true if this interface decl contains at least one initializer
    796   /// marked with the 'objc_designated_initializer' attribute.
    797   bool hasDesignatedInitializers() const;
    798 
    799   /// Returns true if this interface decl declares a designated initializer
    800   /// or it inherites one from its super class.
    801   bool declaresOrInheritsDesignatedInitializers() const {
    802     return hasDesignatedInitializers() || inheritsDesignatedInitializers();
    803   }
    804 
    805   const ObjCProtocolList &getReferencedProtocols() const {
    806     assert(hasDefinition() && "Caller did not check for forward reference!");
    807     if (data().ExternallyCompleted)
    808       LoadExternalDefinition();
    809 
    810     return data().ReferencedProtocols;
    811   }
    812 
    813   ObjCImplementationDecl *getImplementation() const;
    814   void setImplementation(ObjCImplementationDecl *ImplD);
    815 
    816   ObjCCategoryDecl *FindCategoryDeclaration(IdentifierInfo *CategoryId) const;
    817 
    818   // Get the local instance/class method declared in a category.
    819   ObjCMethodDecl *getCategoryInstanceMethod(Selector Sel) const;
    820   ObjCMethodDecl *getCategoryClassMethod(Selector Sel) const;
    821   ObjCMethodDecl *getCategoryMethod(Selector Sel, bool isInstance) const {
    822     return isInstance ? getInstanceMethod(Sel)
    823                       : getClassMethod(Sel);
    824   }
    825 
    826   typedef ObjCProtocolList::iterator protocol_iterator;
    827   typedef llvm::iterator_range<protocol_iterator> protocol_range;
    828 
    829   protocol_range protocols() const {
    830     return protocol_range(protocol_begin(), protocol_end());
    831   }
    832   protocol_iterator protocol_begin() const {
    833     // FIXME: Should make sure no callers ever do this.
    834     if (!hasDefinition())
    835       return protocol_iterator();
    836 
    837     if (data().ExternallyCompleted)
    838       LoadExternalDefinition();
    839 
    840     return data().ReferencedProtocols.begin();
    841   }
    842   protocol_iterator protocol_end() const {
    843     // FIXME: Should make sure no callers ever do this.
    844     if (!hasDefinition())
    845       return protocol_iterator();
    846 
    847     if (data().ExternallyCompleted)
    848       LoadExternalDefinition();
    849 
    850     return data().ReferencedProtocols.end();
    851   }
    852 
    853   typedef ObjCProtocolList::loc_iterator protocol_loc_iterator;
    854   typedef llvm::iterator_range<protocol_loc_iterator> protocol_loc_range;
    855 
    856   protocol_loc_range protocol_locs() const {
    857     return protocol_loc_range(protocol_loc_begin(), protocol_loc_end());
    858   }
    859   protocol_loc_iterator protocol_loc_begin() const {
    860     // FIXME: Should make sure no callers ever do this.
    861     if (!hasDefinition())
    862       return protocol_loc_iterator();
    863 
    864     if (data().ExternallyCompleted)
    865       LoadExternalDefinition();
    866 
    867     return data().ReferencedProtocols.loc_begin();
    868   }
    869 
    870   protocol_loc_iterator protocol_loc_end() const {
    871     // FIXME: Should make sure no callers ever do this.
    872     if (!hasDefinition())
    873       return protocol_loc_iterator();
    874 
    875     if (data().ExternallyCompleted)
    876       LoadExternalDefinition();
    877 
    878     return data().ReferencedProtocols.loc_end();
    879   }
    880 
    881   typedef ObjCList<ObjCProtocolDecl>::iterator all_protocol_iterator;
    882   typedef llvm::iterator_range<all_protocol_iterator> all_protocol_range;
    883 
    884   all_protocol_range all_referenced_protocols() const {
    885     return all_protocol_range(all_referenced_protocol_begin(),
    886                               all_referenced_protocol_end());
    887   }
    888   all_protocol_iterator all_referenced_protocol_begin() const {
    889     // FIXME: Should make sure no callers ever do this.
    890     if (!hasDefinition())
    891       return all_protocol_iterator();
    892 
    893     if (data().ExternallyCompleted)
    894       LoadExternalDefinition();
    895 
    896     return data().AllReferencedProtocols.empty()
    897              ? protocol_begin()
    898              : data().AllReferencedProtocols.begin();
    899   }
    900   all_protocol_iterator all_referenced_protocol_end() const {
    901     // FIXME: Should make sure no callers ever do this.
    902     if (!hasDefinition())
    903       return all_protocol_iterator();
    904 
    905     if (data().ExternallyCompleted)
    906       LoadExternalDefinition();
    907 
    908     return data().AllReferencedProtocols.empty()
    909              ? protocol_end()
    910              : data().AllReferencedProtocols.end();
    911   }
    912 
    913   typedef specific_decl_iterator<ObjCIvarDecl> ivar_iterator;
    914   typedef llvm::iterator_range<specific_decl_iterator<ObjCIvarDecl>> ivar_range;
    915 
    916   ivar_range ivars() const { return ivar_range(ivar_begin(), ivar_end()); }
    917   ivar_iterator ivar_begin() const {
    918     if (const ObjCInterfaceDecl *Def = getDefinition())
    919       return ivar_iterator(Def->decls_begin());
    920 
    921     // FIXME: Should make sure no callers ever do this.
    922     return ivar_iterator();
    923   }
    924   ivar_iterator ivar_end() const {
    925     if (const ObjCInterfaceDecl *Def = getDefinition())
    926       return ivar_iterator(Def->decls_end());
    927 
    928     // FIXME: Should make sure no callers ever do this.
    929     return ivar_iterator();
    930   }
    931 
    932   unsigned ivar_size() const {
    933     return std::distance(ivar_begin(), ivar_end());
    934   }
    935 
    936   bool ivar_empty() const { return ivar_begin() == ivar_end(); }
    937 
    938   ObjCIvarDecl *all_declared_ivar_begin();
    939   const ObjCIvarDecl *all_declared_ivar_begin() const {
    940     // Even though this modifies IvarList, it's conceptually const:
    941     // the ivar chain is essentially a cached property of ObjCInterfaceDecl.
    942     return const_cast<ObjCInterfaceDecl *>(this)->all_declared_ivar_begin();
    943   }
    944   void setIvarList(ObjCIvarDecl *ivar) { data().IvarList = ivar; }
    945 
    946   /// setProtocolList - Set the list of protocols that this interface
    947   /// implements.
    948   void setProtocolList(ObjCProtocolDecl *const* List, unsigned Num,
    949                        const SourceLocation *Locs, ASTContext &C) {
    950     data().ReferencedProtocols.set(List, Num, Locs, C);
    951   }
    952 
    953   /// mergeClassExtensionProtocolList - Merge class extension's protocol list
    954   /// into the protocol list for this class.
    955   void mergeClassExtensionProtocolList(ObjCProtocolDecl *const* List,
    956                                        unsigned Num,
    957                                        ASTContext &C);
    958 
    959   /// Returns the designated initializers for the interface.
    960   ///
    961   /// If this declaration does not have methods marked as designated
    962   /// initializers then the interface inherits the designated initializers of
    963   /// its super class.
    964   void getDesignatedInitializers(
    965                   llvm::SmallVectorImpl<const ObjCMethodDecl *> &Methods) const;
    966 
    967   /// Returns true if the given selector is a designated initializer for the
    968   /// interface.
    969   ///
    970   /// If this declaration does not have methods marked as designated
    971   /// initializers then the interface inherits the designated initializers of
    972   /// its super class.
    973   ///
    974   /// \param InitMethod if non-null and the function returns true, it receives
    975   /// the method that was marked as a designated initializer.
    976   bool
    977   isDesignatedInitializer(Selector Sel,
    978                           const ObjCMethodDecl **InitMethod = nullptr) const;
    979 
    980   /// \brief Determine whether this particular declaration of this class is
    981   /// actually also a definition.
    982   bool isThisDeclarationADefinition() const {
    983     return getDefinition() == this;
    984   }
    985 
    986   /// \brief Determine whether this class has been defined.
    987   bool hasDefinition() const {
    988     // If the name of this class is out-of-date, bring it up-to-date, which
    989     // might bring in a definition.
    990     // Note: a null value indicates that we don't have a definition and that
    991     // modules are enabled.
    992     if (!Data.getOpaqueValue()) {
    993       if (IdentifierInfo *II = getIdentifier()) {
    994         if (II->isOutOfDate()) {
    995           updateOutOfDate(*II);
    996         }
    997       }
    998     }
    999 
   1000     return Data.getPointer();
   1001   }
   1002 
   1003   /// \brief Retrieve the definition of this class, or NULL if this class
   1004   /// has been forward-declared (with \@class) but not yet defined (with
   1005   /// \@interface).
   1006   ObjCInterfaceDecl *getDefinition() {
   1007     return hasDefinition()? Data.getPointer()->Definition : nullptr;
   1008   }
   1009 
   1010   /// \brief Retrieve the definition of this class, or NULL if this class
   1011   /// has been forward-declared (with \@class) but not yet defined (with
   1012   /// \@interface).
   1013   const ObjCInterfaceDecl *getDefinition() const {
   1014     return hasDefinition()? Data.getPointer()->Definition : nullptr;
   1015   }
   1016 
   1017   /// \brief Starts the definition of this Objective-C class, taking it from
   1018   /// a forward declaration (\@class) to a definition (\@interface).
   1019   void startDefinition();
   1020 
   1021   ObjCInterfaceDecl *getSuperClass() const {
   1022     // FIXME: Should make sure no callers ever do this.
   1023     if (!hasDefinition())
   1024       return nullptr;
   1025 
   1026     if (data().ExternallyCompleted)
   1027       LoadExternalDefinition();
   1028 
   1029     return data().SuperClass;
   1030   }
   1031 
   1032   void setSuperClass(ObjCInterfaceDecl * superCls) {
   1033     data().SuperClass =
   1034       (superCls && superCls->hasDefinition()) ? superCls->getDefinition()
   1035                                               : superCls;
   1036   }
   1037 
   1038   /// \brief Iterator that walks over the list of categories, filtering out
   1039   /// those that do not meet specific criteria.
   1040   ///
   1041   /// This class template is used for the various permutations of category
   1042   /// and extension iterators.
   1043   template<bool (*Filter)(ObjCCategoryDecl *)>
   1044   class filtered_category_iterator {
   1045     ObjCCategoryDecl *Current;
   1046 
   1047     void findAcceptableCategory();
   1048 
   1049   public:
   1050     typedef ObjCCategoryDecl *      value_type;
   1051     typedef value_type              reference;
   1052     typedef value_type              pointer;
   1053     typedef std::ptrdiff_t          difference_type;
   1054     typedef std::input_iterator_tag iterator_category;
   1055 
   1056     filtered_category_iterator() : Current(nullptr) { }
   1057     explicit filtered_category_iterator(ObjCCategoryDecl *Current)
   1058       : Current(Current)
   1059     {
   1060       findAcceptableCategory();
   1061     }
   1062 
   1063     reference operator*() const { return Current; }
   1064     pointer operator->() const { return Current; }
   1065 
   1066     filtered_category_iterator &operator++();
   1067 
   1068     filtered_category_iterator operator++(int) {
   1069       filtered_category_iterator Tmp = *this;
   1070       ++(*this);
   1071       return Tmp;
   1072     }
   1073 
   1074     friend bool operator==(filtered_category_iterator X,
   1075                            filtered_category_iterator Y) {
   1076       return X.Current == Y.Current;
   1077     }
   1078 
   1079     friend bool operator!=(filtered_category_iterator X,
   1080                            filtered_category_iterator Y) {
   1081       return X.Current != Y.Current;
   1082     }
   1083   };
   1084 
   1085 private:
   1086   /// \brief Test whether the given category is visible.
   1087   ///
   1088   /// Used in the \c visible_categories_iterator.
   1089   static bool isVisibleCategory(ObjCCategoryDecl *Cat);
   1090 
   1091 public:
   1092   /// \brief Iterator that walks over the list of categories and extensions
   1093   /// that are visible, i.e., not hidden in a non-imported submodule.
   1094   typedef filtered_category_iterator<isVisibleCategory>
   1095     visible_categories_iterator;
   1096 
   1097   typedef llvm::iterator_range<visible_categories_iterator>
   1098     visible_categories_range;
   1099 
   1100   visible_categories_range visible_categories() const {
   1101     return visible_categories_range(visible_categories_begin(),
   1102                                     visible_categories_end());
   1103   }
   1104 
   1105   /// \brief Retrieve an iterator to the beginning of the visible-categories
   1106   /// list.
   1107   visible_categories_iterator visible_categories_begin() const {
   1108     return visible_categories_iterator(getCategoryListRaw());
   1109   }
   1110 
   1111   /// \brief Retrieve an iterator to the end of the visible-categories list.
   1112   visible_categories_iterator visible_categories_end() const {
   1113     return visible_categories_iterator();
   1114   }
   1115 
   1116   /// \brief Determine whether the visible-categories list is empty.
   1117   bool visible_categories_empty() const {
   1118     return visible_categories_begin() == visible_categories_end();
   1119   }
   1120 
   1121 private:
   1122   /// \brief Test whether the given category... is a category.
   1123   ///
   1124   /// Used in the \c known_categories_iterator.
   1125   static bool isKnownCategory(ObjCCategoryDecl *) { return true; }
   1126 
   1127 public:
   1128   /// \brief Iterator that walks over all of the known categories and
   1129   /// extensions, including those that are hidden.
   1130   typedef filtered_category_iterator<isKnownCategory> known_categories_iterator;
   1131   typedef llvm::iterator_range<known_categories_iterator>
   1132     known_categories_range;
   1133 
   1134   known_categories_range known_categories() const {
   1135     return known_categories_range(known_categories_begin(),
   1136                                   known_categories_end());
   1137   }
   1138 
   1139   /// \brief Retrieve an iterator to the beginning of the known-categories
   1140   /// list.
   1141   known_categories_iterator known_categories_begin() const {
   1142     return known_categories_iterator(getCategoryListRaw());
   1143   }
   1144 
   1145   /// \brief Retrieve an iterator to the end of the known-categories list.
   1146   known_categories_iterator known_categories_end() const {
   1147     return known_categories_iterator();
   1148   }
   1149 
   1150   /// \brief Determine whether the known-categories list is empty.
   1151   bool known_categories_empty() const {
   1152     return known_categories_begin() == known_categories_end();
   1153   }
   1154 
   1155 private:
   1156   /// \brief Test whether the given category is a visible extension.
   1157   ///
   1158   /// Used in the \c visible_extensions_iterator.
   1159   static bool isVisibleExtension(ObjCCategoryDecl *Cat);
   1160 
   1161 public:
   1162   /// \brief Iterator that walks over all of the visible extensions, skipping
   1163   /// any that are known but hidden.
   1164   typedef filtered_category_iterator<isVisibleExtension>
   1165     visible_extensions_iterator;
   1166 
   1167   typedef llvm::iterator_range<visible_extensions_iterator>
   1168     visible_extensions_range;
   1169 
   1170   visible_extensions_range visible_extensions() const {
   1171     return visible_extensions_range(visible_extensions_begin(),
   1172                                     visible_extensions_end());
   1173   }
   1174 
   1175   /// \brief Retrieve an iterator to the beginning of the visible-extensions
   1176   /// list.
   1177   visible_extensions_iterator visible_extensions_begin() const {
   1178     return visible_extensions_iterator(getCategoryListRaw());
   1179   }
   1180 
   1181   /// \brief Retrieve an iterator to the end of the visible-extensions list.
   1182   visible_extensions_iterator visible_extensions_end() const {
   1183     return visible_extensions_iterator();
   1184   }
   1185 
   1186   /// \brief Determine whether the visible-extensions list is empty.
   1187   bool visible_extensions_empty() const {
   1188     return visible_extensions_begin() == visible_extensions_end();
   1189   }
   1190 
   1191 private:
   1192   /// \brief Test whether the given category is an extension.
   1193   ///
   1194   /// Used in the \c known_extensions_iterator.
   1195   static bool isKnownExtension(ObjCCategoryDecl *Cat);
   1196 
   1197 public:
   1198   /// \brief Iterator that walks over all of the known extensions.
   1199   typedef filtered_category_iterator<isKnownExtension>
   1200     known_extensions_iterator;
   1201   typedef llvm::iterator_range<known_extensions_iterator>
   1202     known_extensions_range;
   1203 
   1204   known_extensions_range known_extensions() const {
   1205     return known_extensions_range(known_extensions_begin(),
   1206                                   known_extensions_end());
   1207   }
   1208 
   1209   /// \brief Retrieve an iterator to the beginning of the known-extensions
   1210   /// list.
   1211   known_extensions_iterator known_extensions_begin() const {
   1212     return known_extensions_iterator(getCategoryListRaw());
   1213   }
   1214 
   1215   /// \brief Retrieve an iterator to the end of the known-extensions list.
   1216   known_extensions_iterator known_extensions_end() const {
   1217     return known_extensions_iterator();
   1218   }
   1219 
   1220   /// \brief Determine whether the known-extensions list is empty.
   1221   bool known_extensions_empty() const {
   1222     return known_extensions_begin() == known_extensions_end();
   1223   }
   1224 
   1225   /// \brief Retrieve the raw pointer to the start of the category/extension
   1226   /// list.
   1227   ObjCCategoryDecl* getCategoryListRaw() const {
   1228     // FIXME: Should make sure no callers ever do this.
   1229     if (!hasDefinition())
   1230       return nullptr;
   1231 
   1232     if (data().ExternallyCompleted)
   1233       LoadExternalDefinition();
   1234 
   1235     return data().CategoryList;
   1236   }
   1237 
   1238   /// \brief Set the raw pointer to the start of the category/extension
   1239   /// list.
   1240   void setCategoryListRaw(ObjCCategoryDecl *category) {
   1241     data().CategoryList = category;
   1242   }
   1243 
   1244   ObjCPropertyDecl
   1245     *FindPropertyVisibleInPrimaryClass(IdentifierInfo *PropertyId) const;
   1246 
   1247   void collectPropertiesToImplement(PropertyMap &PM,
   1248                                     PropertyDeclOrder &PO) const override;
   1249 
   1250   /// isSuperClassOf - Return true if this class is the specified class or is a
   1251   /// super class of the specified interface class.
   1252   bool isSuperClassOf(const ObjCInterfaceDecl *I) const {
   1253     // If RHS is derived from LHS it is OK; else it is not OK.
   1254     while (I != nullptr) {
   1255       if (declaresSameEntity(this, I))
   1256         return true;
   1257 
   1258       I = I->getSuperClass();
   1259     }
   1260     return false;
   1261   }
   1262 
   1263   /// isArcWeakrefUnavailable - Checks for a class or one of its super classes
   1264   /// to be incompatible with __weak references. Returns true if it is.
   1265   bool isArcWeakrefUnavailable() const;
   1266 
   1267   /// isObjCRequiresPropertyDefs - Checks that a class or one of its super
   1268   /// classes must not be auto-synthesized. Returns class decl. if it must not
   1269   /// be; 0, otherwise.
   1270   const ObjCInterfaceDecl *isObjCRequiresPropertyDefs() const;
   1271 
   1272   ObjCIvarDecl *lookupInstanceVariable(IdentifierInfo *IVarName,
   1273                                        ObjCInterfaceDecl *&ClassDeclared);
   1274   ObjCIvarDecl *lookupInstanceVariable(IdentifierInfo *IVarName) {
   1275     ObjCInterfaceDecl *ClassDeclared;
   1276     return lookupInstanceVariable(IVarName, ClassDeclared);
   1277   }
   1278 
   1279   ObjCProtocolDecl *lookupNestedProtocol(IdentifierInfo *Name);
   1280 
   1281   // Lookup a method. First, we search locally. If a method isn't
   1282   // found, we search referenced protocols and class categories.
   1283   ObjCMethodDecl *lookupMethod(Selector Sel, bool isInstance,
   1284                                bool shallowCategoryLookup = false,
   1285                                bool followSuper = true,
   1286                                const ObjCCategoryDecl *C = nullptr) const;
   1287 
   1288   /// Lookup an instance method for a given selector.
   1289   ObjCMethodDecl *lookupInstanceMethod(Selector Sel) const {
   1290     return lookupMethod(Sel, true/*isInstance*/);
   1291   }
   1292 
   1293   /// Lookup a class method for a given selector.
   1294   ObjCMethodDecl *lookupClassMethod(Selector Sel) const {
   1295     return lookupMethod(Sel, false/*isInstance*/);
   1296   }
   1297   ObjCInterfaceDecl *lookupInheritedClass(const IdentifierInfo *ICName);
   1298 
   1299   /// \brief Lookup a method in the classes implementation hierarchy.
   1300   ObjCMethodDecl *lookupPrivateMethod(const Selector &Sel,
   1301                                       bool Instance=true) const;
   1302 
   1303   ObjCMethodDecl *lookupPrivateClassMethod(const Selector &Sel) {
   1304     return lookupPrivateMethod(Sel, false);
   1305   }
   1306 
   1307   /// \brief Lookup a setter or getter in the class hierarchy,
   1308   /// including in all categories except for category passed
   1309   /// as argument.
   1310   ObjCMethodDecl *lookupPropertyAccessor(const Selector Sel,
   1311                                          const ObjCCategoryDecl *Cat) const {
   1312     return lookupMethod(Sel, true/*isInstance*/,
   1313                         false/*shallowCategoryLookup*/,
   1314                         true /* followsSuper */,
   1315                         Cat);
   1316   }
   1317 
   1318   SourceLocation getEndOfDefinitionLoc() const {
   1319     if (!hasDefinition())
   1320       return getLocation();
   1321 
   1322     return data().EndLoc;
   1323   }
   1324 
   1325   void setEndOfDefinitionLoc(SourceLocation LE) { data().EndLoc = LE; }
   1326 
   1327   void setSuperClassLoc(SourceLocation Loc) { data().SuperClassLoc = Loc; }
   1328   SourceLocation getSuperClassLoc() const { return data().SuperClassLoc; }
   1329 
   1330   /// isImplicitInterfaceDecl - check that this is an implicitly declared
   1331   /// ObjCInterfaceDecl node. This is for legacy objective-c \@implementation
   1332   /// declaration without an \@interface declaration.
   1333   bool isImplicitInterfaceDecl() const {
   1334     return hasDefinition() ? data().Definition->isImplicit() : isImplicit();
   1335   }
   1336 
   1337   /// ClassImplementsProtocol - Checks that 'lProto' protocol
   1338   /// has been implemented in IDecl class, its super class or categories (if
   1339   /// lookupCategory is true).
   1340   bool ClassImplementsProtocol(ObjCProtocolDecl *lProto,
   1341                                bool lookupCategory,
   1342                                bool RHSIsQualifiedID = false);
   1343 
   1344   typedef redeclarable_base::redecl_range redecl_range;
   1345   typedef redeclarable_base::redecl_iterator redecl_iterator;
   1346   using redeclarable_base::redecls_begin;
   1347   using redeclarable_base::redecls_end;
   1348   using redeclarable_base::redecls;
   1349   using redeclarable_base::getPreviousDecl;
   1350   using redeclarable_base::getMostRecentDecl;
   1351   using redeclarable_base::isFirstDecl;
   1352 
   1353   /// Retrieves the canonical declaration of this Objective-C class.
   1354   ObjCInterfaceDecl *getCanonicalDecl() override { return getFirstDecl(); }
   1355   const ObjCInterfaceDecl *getCanonicalDecl() const { return getFirstDecl(); }
   1356 
   1357   // Low-level accessor
   1358   const Type *getTypeForDecl() const { return TypeForDecl; }
   1359   void setTypeForDecl(const Type *TD) const { TypeForDecl = TD; }
   1360 
   1361   static bool classof(const Decl *D) { return classofKind(D->getKind()); }
   1362   static bool classofKind(Kind K) { return K == ObjCInterface; }
   1363 
   1364   friend class ASTReader;
   1365   friend class ASTDeclReader;
   1366   friend class ASTDeclWriter;
   1367 
   1368 private:
   1369   const ObjCInterfaceDecl *findInterfaceWithDesignatedInitializers() const;
   1370   bool inheritsDesignatedInitializers() const;
   1371 };
   1372 
   1373 /// ObjCIvarDecl - Represents an ObjC instance variable. In general, ObjC
   1374 /// instance variables are identical to C. The only exception is Objective-C
   1375 /// supports C++ style access control. For example:
   1376 ///
   1377 ///   \@interface IvarExample : NSObject
   1378 ///   {
   1379 ///     id defaultToProtected;
   1380 ///   \@public:
   1381 ///     id canBePublic; // same as C++.
   1382 ///   \@protected:
   1383 ///     id canBeProtected; // same as C++.
   1384 ///   \@package:
   1385 ///     id canBePackage; // framework visibility (not available in C++).
   1386 ///   }
   1387 ///
   1388 class ObjCIvarDecl : public FieldDecl {
   1389   void anchor() override;
   1390 
   1391 public:
   1392   enum AccessControl {
   1393     None, Private, Protected, Public, Package
   1394   };
   1395 
   1396 private:
   1397   ObjCIvarDecl(ObjCContainerDecl *DC, SourceLocation StartLoc,
   1398                SourceLocation IdLoc, IdentifierInfo *Id,
   1399                QualType T, TypeSourceInfo *TInfo, AccessControl ac, Expr *BW,
   1400                bool synthesized)
   1401     : FieldDecl(ObjCIvar, DC, StartLoc, IdLoc, Id, T, TInfo, BW,
   1402                 /*Mutable=*/false, /*HasInit=*/ICIS_NoInit),
   1403       NextIvar(nullptr), DeclAccess(ac), Synthesized(synthesized) {}
   1404 
   1405 public:
   1406   static ObjCIvarDecl *Create(ASTContext &C, ObjCContainerDecl *DC,
   1407                               SourceLocation StartLoc, SourceLocation IdLoc,
   1408                               IdentifierInfo *Id, QualType T,
   1409                               TypeSourceInfo *TInfo,
   1410                               AccessControl ac, Expr *BW = nullptr,
   1411                               bool synthesized=false);
   1412 
   1413   static ObjCIvarDecl *CreateDeserialized(ASTContext &C, unsigned ID);
   1414 
   1415   /// \brief Return the class interface that this ivar is logically contained
   1416   /// in; this is either the interface where the ivar was declared, or the
   1417   /// interface the ivar is conceptually a part of in the case of synthesized
   1418   /// ivars.
   1419   const ObjCInterfaceDecl *getContainingInterface() const;
   1420 
   1421   ObjCIvarDecl *getNextIvar() { return NextIvar; }
   1422   const ObjCIvarDecl *getNextIvar() const { return NextIvar; }
   1423   void setNextIvar(ObjCIvarDecl *ivar) { NextIvar = ivar; }
   1424 
   1425   void setAccessControl(AccessControl ac) { DeclAccess = ac; }
   1426 
   1427   AccessControl getAccessControl() const { return AccessControl(DeclAccess); }
   1428 
   1429   AccessControl getCanonicalAccessControl() const {
   1430     return DeclAccess == None ? Protected : AccessControl(DeclAccess);
   1431   }
   1432 
   1433   void setSynthesize(bool synth) { Synthesized = synth; }
   1434   bool getSynthesize() const { return Synthesized; }
   1435 
   1436   // Implement isa/cast/dyncast/etc.
   1437   static bool classof(const Decl *D) { return classofKind(D->getKind()); }
   1438   static bool classofKind(Kind K) { return K == ObjCIvar; }
   1439 private:
   1440   /// NextIvar - Next Ivar in the list of ivars declared in class; class's
   1441   /// extensions and class's implementation
   1442   ObjCIvarDecl *NextIvar;
   1443 
   1444   // NOTE: VC++ treats enums as signed, avoid using the AccessControl enum
   1445   unsigned DeclAccess : 3;
   1446   unsigned Synthesized : 1;
   1447 };
   1448 
   1449 
   1450 /// \brief Represents a field declaration created by an \@defs(...).
   1451 class ObjCAtDefsFieldDecl : public FieldDecl {
   1452   void anchor() override;
   1453   ObjCAtDefsFieldDecl(DeclContext *DC, SourceLocation StartLoc,
   1454                       SourceLocation IdLoc, IdentifierInfo *Id,
   1455                       QualType T, Expr *BW)
   1456     : FieldDecl(ObjCAtDefsField, DC, StartLoc, IdLoc, Id, T,
   1457                 /*TInfo=*/nullptr, // FIXME: Do ObjCAtDefs have declarators ?
   1458                 BW, /*Mutable=*/false, /*HasInit=*/ICIS_NoInit) {}
   1459 
   1460 public:
   1461   static ObjCAtDefsFieldDecl *Create(ASTContext &C, DeclContext *DC,
   1462                                      SourceLocation StartLoc,
   1463                                      SourceLocation IdLoc, IdentifierInfo *Id,
   1464                                      QualType T, Expr *BW);
   1465 
   1466   static ObjCAtDefsFieldDecl *CreateDeserialized(ASTContext &C, unsigned ID);
   1467 
   1468   // Implement isa/cast/dyncast/etc.
   1469   static bool classof(const Decl *D) { return classofKind(D->getKind()); }
   1470   static bool classofKind(Kind K) { return K == ObjCAtDefsField; }
   1471 };
   1472 
   1473 /// \brief Represents an Objective-C protocol declaration.
   1474 ///
   1475 /// Objective-C protocols declare a pure abstract type (i.e., no instance
   1476 /// variables are permitted).  Protocols originally drew inspiration from
   1477 /// C++ pure virtual functions (a C++ feature with nice semantics and lousy
   1478 /// syntax:-). Here is an example:
   1479 ///
   1480 /// \code
   1481 /// \@protocol NSDraggingInfo <refproto1, refproto2>
   1482 /// - (NSWindow *)draggingDestinationWindow;
   1483 /// - (NSImage *)draggedImage;
   1484 /// \@end
   1485 /// \endcode
   1486 ///
   1487 /// This says that NSDraggingInfo requires two methods and requires everything
   1488 /// that the two "referenced protocols" 'refproto1' and 'refproto2' require as
   1489 /// well.
   1490 ///
   1491 /// \code
   1492 /// \@interface ImplementsNSDraggingInfo : NSObject \<NSDraggingInfo>
   1493 /// \@end
   1494 /// \endcode
   1495 ///
   1496 /// ObjC protocols inspired Java interfaces. Unlike Java, ObjC classes and
   1497 /// protocols are in distinct namespaces. For example, Cocoa defines both
   1498 /// an NSObject protocol and class (which isn't allowed in Java). As a result,
   1499 /// protocols are referenced using angle brackets as follows:
   1500 ///
   1501 /// id \<NSDraggingInfo> anyObjectThatImplementsNSDraggingInfo;
   1502 ///
   1503 class ObjCProtocolDecl : public ObjCContainerDecl,
   1504                          public Redeclarable<ObjCProtocolDecl> {
   1505   void anchor() override;
   1506 
   1507   struct DefinitionData {
   1508     // \brief The declaration that defines this protocol.
   1509     ObjCProtocolDecl *Definition;
   1510 
   1511     /// \brief Referenced protocols
   1512     ObjCProtocolList ReferencedProtocols;
   1513   };
   1514 
   1515   /// \brief Contains a pointer to the data associated with this class,
   1516   /// which will be NULL if this class has not yet been defined.
   1517   ///
   1518   /// The bit indicates when we don't need to check for out-of-date
   1519   /// declarations. It will be set unless modules are enabled.
   1520   llvm::PointerIntPair<DefinitionData *, 1, bool> Data;
   1521 
   1522   DefinitionData &data() const {
   1523     assert(Data.getPointer() && "Objective-C protocol has no definition!");
   1524     return *Data.getPointer();
   1525   }
   1526 
   1527   ObjCProtocolDecl(ASTContext &C, DeclContext *DC, IdentifierInfo *Id,
   1528                    SourceLocation nameLoc, SourceLocation atStartLoc,
   1529                    ObjCProtocolDecl *PrevDecl);
   1530 
   1531   void allocateDefinitionData();
   1532 
   1533   typedef Redeclarable<ObjCProtocolDecl> redeclarable_base;
   1534   ObjCProtocolDecl *getNextRedeclarationImpl() override {
   1535     return getNextRedeclaration();
   1536   }
   1537   ObjCProtocolDecl *getPreviousDeclImpl() override {
   1538     return getPreviousDecl();
   1539   }
   1540   ObjCProtocolDecl *getMostRecentDeclImpl() override {
   1541     return getMostRecentDecl();
   1542   }
   1543 
   1544 public:
   1545   static ObjCProtocolDecl *Create(ASTContext &C, DeclContext *DC,
   1546                                   IdentifierInfo *Id,
   1547                                   SourceLocation nameLoc,
   1548                                   SourceLocation atStartLoc,
   1549                                   ObjCProtocolDecl *PrevDecl);
   1550 
   1551   static ObjCProtocolDecl *CreateDeserialized(ASTContext &C, unsigned ID);
   1552 
   1553   const ObjCProtocolList &getReferencedProtocols() const {
   1554     assert(hasDefinition() && "No definition available!");
   1555     return data().ReferencedProtocols;
   1556   }
   1557   typedef ObjCProtocolList::iterator protocol_iterator;
   1558   typedef llvm::iterator_range<protocol_iterator> protocol_range;
   1559 
   1560   protocol_range protocols() const {
   1561     return protocol_range(protocol_begin(), protocol_end());
   1562   }
   1563   protocol_iterator protocol_begin() const {
   1564     if (!hasDefinition())
   1565       return protocol_iterator();
   1566 
   1567     return data().ReferencedProtocols.begin();
   1568   }
   1569   protocol_iterator protocol_end() const {
   1570     if (!hasDefinition())
   1571       return protocol_iterator();
   1572 
   1573     return data().ReferencedProtocols.end();
   1574   }
   1575   typedef ObjCProtocolList::loc_iterator protocol_loc_iterator;
   1576   typedef llvm::iterator_range<protocol_loc_iterator> protocol_loc_range;
   1577 
   1578   protocol_loc_range protocol_locs() const {
   1579     return protocol_loc_range(protocol_loc_begin(), protocol_loc_end());
   1580   }
   1581   protocol_loc_iterator protocol_loc_begin() const {
   1582     if (!hasDefinition())
   1583       return protocol_loc_iterator();
   1584 
   1585     return data().ReferencedProtocols.loc_begin();
   1586   }
   1587   protocol_loc_iterator protocol_loc_end() const {
   1588     if (!hasDefinition())
   1589       return protocol_loc_iterator();
   1590 
   1591     return data().ReferencedProtocols.loc_end();
   1592   }
   1593   unsigned protocol_size() const {
   1594     if (!hasDefinition())
   1595       return 0;
   1596 
   1597     return data().ReferencedProtocols.size();
   1598   }
   1599 
   1600   /// setProtocolList - Set the list of protocols that this interface
   1601   /// implements.
   1602   void setProtocolList(ObjCProtocolDecl *const*List, unsigned Num,
   1603                        const SourceLocation *Locs, ASTContext &C) {
   1604     assert(hasDefinition() && "Protocol is not defined");
   1605     data().ReferencedProtocols.set(List, Num, Locs, C);
   1606   }
   1607 
   1608   ObjCProtocolDecl *lookupProtocolNamed(IdentifierInfo *PName);
   1609 
   1610   // Lookup a method. First, we search locally. If a method isn't
   1611   // found, we search referenced protocols and class categories.
   1612   ObjCMethodDecl *lookupMethod(Selector Sel, bool isInstance) const;
   1613   ObjCMethodDecl *lookupInstanceMethod(Selector Sel) const {
   1614     return lookupMethod(Sel, true/*isInstance*/);
   1615   }
   1616   ObjCMethodDecl *lookupClassMethod(Selector Sel) const {
   1617     return lookupMethod(Sel, false/*isInstance*/);
   1618   }
   1619 
   1620   /// \brief Determine whether this protocol has a definition.
   1621   bool hasDefinition() const {
   1622     // If the name of this protocol is out-of-date, bring it up-to-date, which
   1623     // might bring in a definition.
   1624     // Note: a null value indicates that we don't have a definition and that
   1625     // modules are enabled.
   1626     if (!Data.getOpaqueValue()) {
   1627       if (IdentifierInfo *II = getIdentifier()) {
   1628         if (II->isOutOfDate()) {
   1629           updateOutOfDate(*II);
   1630         }
   1631       }
   1632     }
   1633 
   1634     return Data.getPointer();
   1635   }
   1636 
   1637   /// \brief Retrieve the definition of this protocol, if any.
   1638   ObjCProtocolDecl *getDefinition() {
   1639     return hasDefinition()? Data.getPointer()->Definition : nullptr;
   1640   }
   1641 
   1642   /// \brief Retrieve the definition of this protocol, if any.
   1643   const ObjCProtocolDecl *getDefinition() const {
   1644     return hasDefinition()? Data.getPointer()->Definition : nullptr;
   1645   }
   1646 
   1647   /// \brief Determine whether this particular declaration is also the
   1648   /// definition.
   1649   bool isThisDeclarationADefinition() const {
   1650     return getDefinition() == this;
   1651   }
   1652 
   1653   /// \brief Starts the definition of this Objective-C protocol.
   1654   void startDefinition();
   1655 
   1656   SourceRange getSourceRange() const override LLVM_READONLY {
   1657     if (isThisDeclarationADefinition())
   1658       return ObjCContainerDecl::getSourceRange();
   1659 
   1660     return SourceRange(getAtStartLoc(), getLocation());
   1661   }
   1662 
   1663   typedef redeclarable_base::redecl_range redecl_range;
   1664   typedef redeclarable_base::redecl_iterator redecl_iterator;
   1665   using redeclarable_base::redecls_begin;
   1666   using redeclarable_base::redecls_end;
   1667   using redeclarable_base::redecls;
   1668   using redeclarable_base::getPreviousDecl;
   1669   using redeclarable_base::getMostRecentDecl;
   1670   using redeclarable_base::isFirstDecl;
   1671 
   1672   /// Retrieves the canonical declaration of this Objective-C protocol.
   1673   ObjCProtocolDecl *getCanonicalDecl() override { return getFirstDecl(); }
   1674   const ObjCProtocolDecl *getCanonicalDecl() const { return getFirstDecl(); }
   1675 
   1676   void collectPropertiesToImplement(PropertyMap &PM,
   1677                                     PropertyDeclOrder &PO) const override;
   1678 
   1679   void collectInheritedProtocolProperties(const ObjCPropertyDecl *Property,
   1680                                           ProtocolPropertyMap &PM) const;
   1681 
   1682   static bool classof(const Decl *D) { return classofKind(D->getKind()); }
   1683   static bool classofKind(Kind K) { return K == ObjCProtocol; }
   1684 
   1685   friend class ASTReader;
   1686   friend class ASTDeclReader;
   1687   friend class ASTDeclWriter;
   1688 };
   1689 
   1690 /// ObjCCategoryDecl - Represents a category declaration. A category allows
   1691 /// you to add methods to an existing class (without subclassing or modifying
   1692 /// the original class interface or implementation:-). Categories don't allow
   1693 /// you to add instance data. The following example adds "myMethod" to all
   1694 /// NSView's within a process:
   1695 ///
   1696 /// \@interface NSView (MyViewMethods)
   1697 /// - myMethod;
   1698 /// \@end
   1699 ///
   1700 /// Categories also allow you to split the implementation of a class across
   1701 /// several files (a feature more naturally supported in C++).
   1702 ///
   1703 /// Categories were originally inspired by dynamic languages such as Common
   1704 /// Lisp and Smalltalk.  More traditional class-based languages (C++, Java)
   1705 /// don't support this level of dynamism, which is both powerful and dangerous.
   1706 ///
   1707 class ObjCCategoryDecl : public ObjCContainerDecl {
   1708   void anchor() override;
   1709 
   1710   /// Interface belonging to this category
   1711   ObjCInterfaceDecl *ClassInterface;
   1712 
   1713   /// referenced protocols in this category.
   1714   ObjCProtocolList ReferencedProtocols;
   1715 
   1716   /// Next category belonging to this class.
   1717   /// FIXME: this should not be a singly-linked list.  Move storage elsewhere.
   1718   ObjCCategoryDecl *NextClassCategory;
   1719 
   1720   /// \brief The location of the category name in this declaration.
   1721   SourceLocation CategoryNameLoc;
   1722 
   1723   /// class extension may have private ivars.
   1724   SourceLocation IvarLBraceLoc;
   1725   SourceLocation IvarRBraceLoc;
   1726 
   1727   ObjCCategoryDecl(DeclContext *DC, SourceLocation AtLoc,
   1728                    SourceLocation ClassNameLoc, SourceLocation CategoryNameLoc,
   1729                    IdentifierInfo *Id, ObjCInterfaceDecl *IDecl,
   1730                    SourceLocation IvarLBraceLoc=SourceLocation(),
   1731                    SourceLocation IvarRBraceLoc=SourceLocation())
   1732     : ObjCContainerDecl(ObjCCategory, DC, Id, ClassNameLoc, AtLoc),
   1733       ClassInterface(IDecl), NextClassCategory(nullptr),
   1734       CategoryNameLoc(CategoryNameLoc),
   1735       IvarLBraceLoc(IvarLBraceLoc), IvarRBraceLoc(IvarRBraceLoc) {
   1736   }
   1737 
   1738 public:
   1739 
   1740   static ObjCCategoryDecl *Create(ASTContext &C, DeclContext *DC,
   1741                                   SourceLocation AtLoc,
   1742                                   SourceLocation ClassNameLoc,
   1743                                   SourceLocation CategoryNameLoc,
   1744                                   IdentifierInfo *Id,
   1745                                   ObjCInterfaceDecl *IDecl,
   1746                                   SourceLocation IvarLBraceLoc=SourceLocation(),
   1747                                   SourceLocation IvarRBraceLoc=SourceLocation());
   1748   static ObjCCategoryDecl *CreateDeserialized(ASTContext &C, unsigned ID);
   1749 
   1750   ObjCInterfaceDecl *getClassInterface() { return ClassInterface; }
   1751   const ObjCInterfaceDecl *getClassInterface() const { return ClassInterface; }
   1752 
   1753   ObjCCategoryImplDecl *getImplementation() const;
   1754   void setImplementation(ObjCCategoryImplDecl *ImplD);
   1755 
   1756   /// setProtocolList - Set the list of protocols that this interface
   1757   /// implements.
   1758   void setProtocolList(ObjCProtocolDecl *const*List, unsigned Num,
   1759                        const SourceLocation *Locs, ASTContext &C) {
   1760     ReferencedProtocols.set(List, Num, Locs, C);
   1761   }
   1762 
   1763   const ObjCProtocolList &getReferencedProtocols() const {
   1764     return ReferencedProtocols;
   1765   }
   1766 
   1767   typedef ObjCProtocolList::iterator protocol_iterator;
   1768   typedef llvm::iterator_range<protocol_iterator> protocol_range;
   1769 
   1770   protocol_range protocols() const {
   1771     return protocol_range(protocol_begin(), protocol_end());
   1772   }
   1773   protocol_iterator protocol_begin() const {
   1774     return ReferencedProtocols.begin();
   1775   }
   1776   protocol_iterator protocol_end() const { return ReferencedProtocols.end(); }
   1777   unsigned protocol_size() const { return ReferencedProtocols.size(); }
   1778   typedef ObjCProtocolList::loc_iterator protocol_loc_iterator;
   1779   typedef llvm::iterator_range<protocol_loc_iterator> protocol_loc_range;
   1780 
   1781   protocol_loc_range protocol_locs() const {
   1782     return protocol_loc_range(protocol_loc_begin(), protocol_loc_end());
   1783   }
   1784   protocol_loc_iterator protocol_loc_begin() const {
   1785     return ReferencedProtocols.loc_begin();
   1786   }
   1787   protocol_loc_iterator protocol_loc_end() const {
   1788     return ReferencedProtocols.loc_end();
   1789   }
   1790 
   1791   ObjCCategoryDecl *getNextClassCategory() const { return NextClassCategory; }
   1792 
   1793   /// \brief Retrieve the pointer to the next stored category (or extension),
   1794   /// which may be hidden.
   1795   ObjCCategoryDecl *getNextClassCategoryRaw() const {
   1796     return NextClassCategory;
   1797   }
   1798 
   1799   bool IsClassExtension() const { return getIdentifier() == nullptr; }
   1800 
   1801   typedef specific_decl_iterator<ObjCIvarDecl> ivar_iterator;
   1802   typedef llvm::iterator_range<specific_decl_iterator<ObjCIvarDecl>> ivar_range;
   1803 
   1804   ivar_range ivars() const { return ivar_range(ivar_begin(), ivar_end()); }
   1805   ivar_iterator ivar_begin() const {
   1806     return ivar_iterator(decls_begin());
   1807   }
   1808   ivar_iterator ivar_end() const {
   1809     return ivar_iterator(decls_end());
   1810   }
   1811   unsigned ivar_size() const {
   1812     return std::distance(ivar_begin(), ivar_end());
   1813   }
   1814   bool ivar_empty() const {
   1815     return ivar_begin() == ivar_end();
   1816   }
   1817 
   1818   SourceLocation getCategoryNameLoc() const { return CategoryNameLoc; }
   1819   void setCategoryNameLoc(SourceLocation Loc) { CategoryNameLoc = Loc; }
   1820 
   1821   void setIvarLBraceLoc(SourceLocation Loc) { IvarLBraceLoc = Loc; }
   1822   SourceLocation getIvarLBraceLoc() const { return IvarLBraceLoc; }
   1823   void setIvarRBraceLoc(SourceLocation Loc) { IvarRBraceLoc = Loc; }
   1824   SourceLocation getIvarRBraceLoc() const { return IvarRBraceLoc; }
   1825 
   1826   static bool classof(const Decl *D) { return classofKind(D->getKind()); }
   1827   static bool classofKind(Kind K) { return K == ObjCCategory; }
   1828 
   1829   friend class ASTDeclReader;
   1830   friend class ASTDeclWriter;
   1831 };
   1832 
   1833 class ObjCImplDecl : public ObjCContainerDecl {
   1834   void anchor() override;
   1835 
   1836   /// Class interface for this class/category implementation
   1837   ObjCInterfaceDecl *ClassInterface;
   1838 
   1839 protected:
   1840   ObjCImplDecl(Kind DK, DeclContext *DC,
   1841                ObjCInterfaceDecl *classInterface,
   1842                SourceLocation nameLoc, SourceLocation atStartLoc)
   1843     : ObjCContainerDecl(DK, DC,
   1844                         classInterface? classInterface->getIdentifier()
   1845                                       : nullptr,
   1846                         nameLoc, atStartLoc),
   1847       ClassInterface(classInterface) {}
   1848 
   1849 public:
   1850   const ObjCInterfaceDecl *getClassInterface() const { return ClassInterface; }
   1851   ObjCInterfaceDecl *getClassInterface() { return ClassInterface; }
   1852   void setClassInterface(ObjCInterfaceDecl *IFace);
   1853 
   1854   void addInstanceMethod(ObjCMethodDecl *method) {
   1855     // FIXME: Context should be set correctly before we get here.
   1856     method->setLexicalDeclContext(this);
   1857     addDecl(method);
   1858   }
   1859   void addClassMethod(ObjCMethodDecl *method) {
   1860     // FIXME: Context should be set correctly before we get here.
   1861     method->setLexicalDeclContext(this);
   1862     addDecl(method);
   1863   }
   1864 
   1865   void addPropertyImplementation(ObjCPropertyImplDecl *property);
   1866 
   1867   ObjCPropertyImplDecl *FindPropertyImplDecl(IdentifierInfo *propertyId) const;
   1868   ObjCPropertyImplDecl *FindPropertyImplIvarDecl(IdentifierInfo *ivarId) const;
   1869 
   1870   // Iterator access to properties.
   1871   typedef specific_decl_iterator<ObjCPropertyImplDecl> propimpl_iterator;
   1872   typedef llvm::iterator_range<specific_decl_iterator<ObjCPropertyImplDecl>>
   1873     propimpl_range;
   1874 
   1875   propimpl_range property_impls() const {
   1876     return propimpl_range(propimpl_begin(), propimpl_end());
   1877   }
   1878   propimpl_iterator propimpl_begin() const {
   1879     return propimpl_iterator(decls_begin());
   1880   }
   1881   propimpl_iterator propimpl_end() const {
   1882     return propimpl_iterator(decls_end());
   1883   }
   1884 
   1885   static bool classof(const Decl *D) { return classofKind(D->getKind()); }
   1886   static bool classofKind(Kind K) {
   1887     return K >= firstObjCImpl && K <= lastObjCImpl;
   1888   }
   1889 };
   1890 
   1891 /// ObjCCategoryImplDecl - An object of this class encapsulates a category
   1892 /// \@implementation declaration. If a category class has declaration of a
   1893 /// property, its implementation must be specified in the category's
   1894 /// \@implementation declaration. Example:
   1895 /// \@interface I \@end
   1896 /// \@interface I(CATEGORY)
   1897 ///    \@property int p1, d1;
   1898 /// \@end
   1899 /// \@implementation I(CATEGORY)
   1900 ///  \@dynamic p1,d1;
   1901 /// \@end
   1902 ///
   1903 /// ObjCCategoryImplDecl
   1904 class ObjCCategoryImplDecl : public ObjCImplDecl {
   1905   void anchor() override;
   1906 
   1907   // Category name
   1908   IdentifierInfo *Id;
   1909 
   1910   // Category name location
   1911   SourceLocation CategoryNameLoc;
   1912 
   1913   ObjCCategoryImplDecl(DeclContext *DC, IdentifierInfo *Id,
   1914                        ObjCInterfaceDecl *classInterface,
   1915                        SourceLocation nameLoc, SourceLocation atStartLoc,
   1916                        SourceLocation CategoryNameLoc)
   1917     : ObjCImplDecl(ObjCCategoryImpl, DC, classInterface, nameLoc, atStartLoc),
   1918       Id(Id), CategoryNameLoc(CategoryNameLoc) {}
   1919 public:
   1920   static ObjCCategoryImplDecl *Create(ASTContext &C, DeclContext *DC,
   1921                                       IdentifierInfo *Id,
   1922                                       ObjCInterfaceDecl *classInterface,
   1923                                       SourceLocation nameLoc,
   1924                                       SourceLocation atStartLoc,
   1925                                       SourceLocation CategoryNameLoc);
   1926   static ObjCCategoryImplDecl *CreateDeserialized(ASTContext &C, unsigned ID);
   1927 
   1928   /// getIdentifier - Get the identifier that names the category
   1929   /// interface associated with this implementation.
   1930   /// FIXME: This is a bad API, we are hiding NamedDecl::getIdentifier()
   1931   /// with a different meaning. For example:
   1932   /// ((NamedDecl *)SomeCategoryImplDecl)->getIdentifier()
   1933   /// returns the class interface name, whereas
   1934   /// ((ObjCCategoryImplDecl *)SomeCategoryImplDecl)->getIdentifier()
   1935   /// returns the category name.
   1936   IdentifierInfo *getIdentifier() const {
   1937     return Id;
   1938   }
   1939   void setIdentifier(IdentifierInfo *II) { Id = II; }
   1940 
   1941   ObjCCategoryDecl *getCategoryDecl() const;
   1942 
   1943   SourceLocation getCategoryNameLoc() const { return CategoryNameLoc; }
   1944 
   1945   /// getName - Get the name of identifier for the class interface associated
   1946   /// with this implementation as a StringRef.
   1947   //
   1948   // FIXME: This is a bad API, we are hiding NamedDecl::getName with a different
   1949   // meaning.
   1950   StringRef getName() const { return Id ? Id->getName() : StringRef(); }
   1951 
   1952   /// @brief Get the name of the class associated with this interface.
   1953   //
   1954   // FIXME: Deprecated, move clients to getName().
   1955   std::string getNameAsString() const {
   1956     return getName();
   1957   }
   1958 
   1959   static bool classof(const Decl *D) { return classofKind(D->getKind()); }
   1960   static bool classofKind(Kind K) { return K == ObjCCategoryImpl;}
   1961 
   1962   friend class ASTDeclReader;
   1963   friend class ASTDeclWriter;
   1964 };
   1965 
   1966 raw_ostream &operator<<(raw_ostream &OS, const ObjCCategoryImplDecl &CID);
   1967 
   1968 /// ObjCImplementationDecl - Represents a class definition - this is where
   1969 /// method definitions are specified. For example:
   1970 ///
   1971 /// @code
   1972 /// \@implementation MyClass
   1973 /// - (void)myMethod { /* do something */ }
   1974 /// \@end
   1975 /// @endcode
   1976 ///
   1977 /// In a non-fragile runtime, instance variables can appear in the class
   1978 /// interface, class extensions (nameless categories), and in the implementation
   1979 /// itself, as well as being synthesized as backing storage for properties.
   1980 ///
   1981 /// In a fragile runtime, instance variables are specified in the class
   1982 /// interface, \em not in the implementation. Nevertheless (for legacy reasons),
   1983 /// we allow instance variables to be specified in the implementation. When
   1984 /// specified, they need to be \em identical to the interface.
   1985 class ObjCImplementationDecl : public ObjCImplDecl {
   1986   void anchor() override;
   1987   /// Implementation Class's super class.
   1988   ObjCInterfaceDecl *SuperClass;
   1989   SourceLocation SuperLoc;
   1990 
   1991   /// \@implementation may have private ivars.
   1992   SourceLocation IvarLBraceLoc;
   1993   SourceLocation IvarRBraceLoc;
   1994 
   1995   /// Support for ivar initialization.
   1996   /// IvarInitializers - The arguments used to initialize the ivars
   1997   CXXCtorInitializer **IvarInitializers;
   1998   unsigned NumIvarInitializers;
   1999 
   2000   /// Do the ivars of this class require initialization other than
   2001   /// zero-initialization?
   2002   bool HasNonZeroConstructors : 1;
   2003 
   2004   /// Do the ivars of this class require non-trivial destruction?
   2005   bool HasDestructors : 1;
   2006 
   2007   ObjCImplementationDecl(DeclContext *DC,
   2008                          ObjCInterfaceDecl *classInterface,
   2009                          ObjCInterfaceDecl *superDecl,
   2010                          SourceLocation nameLoc, SourceLocation atStartLoc,
   2011                          SourceLocation superLoc = SourceLocation(),
   2012                          SourceLocation IvarLBraceLoc=SourceLocation(),
   2013                          SourceLocation IvarRBraceLoc=SourceLocation())
   2014     : ObjCImplDecl(ObjCImplementation, DC, classInterface, nameLoc, atStartLoc),
   2015        SuperClass(superDecl), SuperLoc(superLoc), IvarLBraceLoc(IvarLBraceLoc),
   2016        IvarRBraceLoc(IvarRBraceLoc),
   2017        IvarInitializers(nullptr), NumIvarInitializers(0),
   2018        HasNonZeroConstructors(false), HasDestructors(false) {}
   2019 public:
   2020   static ObjCImplementationDecl *Create(ASTContext &C, DeclContext *DC,
   2021                                         ObjCInterfaceDecl *classInterface,
   2022                                         ObjCInterfaceDecl *superDecl,
   2023                                         SourceLocation nameLoc,
   2024                                         SourceLocation atStartLoc,
   2025                                      SourceLocation superLoc = SourceLocation(),
   2026                                         SourceLocation IvarLBraceLoc=SourceLocation(),
   2027                                         SourceLocation IvarRBraceLoc=SourceLocation());
   2028 
   2029   static ObjCImplementationDecl *CreateDeserialized(ASTContext &C, unsigned ID);
   2030 
   2031   /// init_iterator - Iterates through the ivar initializer list.
   2032   typedef CXXCtorInitializer **init_iterator;
   2033 
   2034   /// init_const_iterator - Iterates through the ivar initializer list.
   2035   typedef CXXCtorInitializer * const * init_const_iterator;
   2036 
   2037   typedef llvm::iterator_range<init_iterator> init_range;
   2038   typedef llvm::iterator_range<init_const_iterator> init_const_range;
   2039 
   2040   init_range inits() { return init_range(init_begin(), init_end()); }
   2041   init_const_range inits() const {
   2042     return init_const_range(init_begin(), init_end());
   2043   }
   2044 
   2045   /// init_begin() - Retrieve an iterator to the first initializer.
   2046   init_iterator       init_begin()       { return IvarInitializers; }
   2047   /// begin() - Retrieve an iterator to the first initializer.
   2048   init_const_iterator init_begin() const { return IvarInitializers; }
   2049 
   2050   /// init_end() - Retrieve an iterator past the last initializer.
   2051   init_iterator       init_end()       {
   2052     return IvarInitializers + NumIvarInitializers;
   2053   }
   2054   /// end() - Retrieve an iterator past the last initializer.
   2055   init_const_iterator init_end() const {
   2056     return IvarInitializers + NumIvarInitializers;
   2057   }
   2058   /// getNumArgs - Number of ivars which must be initialized.
   2059   unsigned getNumIvarInitializers() const {
   2060     return NumIvarInitializers;
   2061   }
   2062 
   2063   void setNumIvarInitializers(unsigned numNumIvarInitializers) {
   2064     NumIvarInitializers = numNumIvarInitializers;
   2065   }
   2066 
   2067   void setIvarInitializers(ASTContext &C,
   2068                            CXXCtorInitializer ** initializers,
   2069                            unsigned numInitializers);
   2070 
   2071   /// Do any of the ivars of this class (not counting its base classes)
   2072   /// require construction other than zero-initialization?
   2073   bool hasNonZeroConstructors() const { return HasNonZeroConstructors; }
   2074   void setHasNonZeroConstructors(bool val) { HasNonZeroConstructors = val; }
   2075 
   2076   /// Do any of the ivars of this class (not counting its base classes)
   2077   /// require non-trivial destruction?
   2078   bool hasDestructors() const { return HasDestructors; }
   2079   void setHasDestructors(bool val) { HasDestructors = val; }
   2080 
   2081   /// getIdentifier - Get the identifier that names the class
   2082   /// interface associated with this implementation.
   2083   IdentifierInfo *getIdentifier() const {
   2084     return getClassInterface()->getIdentifier();
   2085   }
   2086 
   2087   /// getName - Get the name of identifier for the class interface associated
   2088   /// with this implementation as a StringRef.
   2089   //
   2090   // FIXME: This is a bad API, we are hiding NamedDecl::getName with a different
   2091   // meaning.
   2092   StringRef getName() const {
   2093     assert(getIdentifier() && "Name is not a simple identifier");
   2094     return getIdentifier()->getName();
   2095   }
   2096 
   2097   /// @brief Get the name of the class associated with this interface.
   2098   //
   2099   // FIXME: Move to StringRef API.
   2100   std::string getNameAsString() const {
   2101     return getName();
   2102   }
   2103 
   2104   const ObjCInterfaceDecl *getSuperClass() const { return SuperClass; }
   2105   ObjCInterfaceDecl *getSuperClass() { return SuperClass; }
   2106   SourceLocation getSuperClassLoc() const { return SuperLoc; }
   2107 
   2108   void setSuperClass(ObjCInterfaceDecl * superCls) { SuperClass = superCls; }
   2109 
   2110   void setIvarLBraceLoc(SourceLocation Loc) { IvarLBraceLoc = Loc; }
   2111   SourceLocation getIvarLBraceLoc() const { return IvarLBraceLoc; }
   2112   void setIvarRBraceLoc(SourceLocation Loc) { IvarRBraceLoc = Loc; }
   2113   SourceLocation getIvarRBraceLoc() const { return IvarRBraceLoc; }
   2114 
   2115   typedef specific_decl_iterator<ObjCIvarDecl> ivar_iterator;
   2116   typedef llvm::iterator_range<specific_decl_iterator<ObjCIvarDecl>> ivar_range;
   2117 
   2118   ivar_range ivars() const { return ivar_range(ivar_begin(), ivar_end()); }
   2119   ivar_iterator ivar_begin() const {
   2120     return ivar_iterator(decls_begin());
   2121   }
   2122   ivar_iterator ivar_end() const {
   2123     return ivar_iterator(decls_end());
   2124   }
   2125   unsigned ivar_size() const {
   2126     return std::distance(ivar_begin(), ivar_end());
   2127   }
   2128   bool ivar_empty() const {
   2129     return ivar_begin() == ivar_end();
   2130   }
   2131 
   2132   static bool classof(const Decl *D) { return classofKind(D->getKind()); }
   2133   static bool classofKind(Kind K) { return K == ObjCImplementation; }
   2134 
   2135   friend class ASTDeclReader;
   2136   friend class ASTDeclWriter;
   2137 };
   2138 
   2139 raw_ostream &operator<<(raw_ostream &OS, const ObjCImplementationDecl &ID);
   2140 
   2141 /// ObjCCompatibleAliasDecl - Represents alias of a class. This alias is
   2142 /// declared as \@compatibility_alias alias class.
   2143 class ObjCCompatibleAliasDecl : public NamedDecl {
   2144   void anchor() override;
   2145   /// Class that this is an alias of.
   2146   ObjCInterfaceDecl *AliasedClass;
   2147 
   2148   ObjCCompatibleAliasDecl(DeclContext *DC, SourceLocation L, IdentifierInfo *Id,
   2149                           ObjCInterfaceDecl* aliasedClass)
   2150     : NamedDecl(ObjCCompatibleAlias, DC, L, Id), AliasedClass(aliasedClass) {}
   2151 public:
   2152   static ObjCCompatibleAliasDecl *Create(ASTContext &C, DeclContext *DC,
   2153                                          SourceLocation L, IdentifierInfo *Id,
   2154                                          ObjCInterfaceDecl* aliasedClass);
   2155 
   2156   static ObjCCompatibleAliasDecl *CreateDeserialized(ASTContext &C,
   2157                                                      unsigned ID);
   2158 
   2159   const ObjCInterfaceDecl *getClassInterface() const { return AliasedClass; }
   2160   ObjCInterfaceDecl *getClassInterface() { return AliasedClass; }
   2161   void setClassInterface(ObjCInterfaceDecl *D) { AliasedClass = D; }
   2162 
   2163   static bool classof(const Decl *D) { return classofKind(D->getKind()); }
   2164   static bool classofKind(Kind K) { return K == ObjCCompatibleAlias; }
   2165 
   2166 };
   2167 
   2168 /// \brief Represents one property declaration in an Objective-C interface.
   2169 ///
   2170 /// For example:
   2171 /// \code{.mm}
   2172 /// \@property (assign, readwrite) int MyProperty;
   2173 /// \endcode
   2174 class ObjCPropertyDecl : public NamedDecl {
   2175   void anchor() override;
   2176 public:
   2177   enum PropertyAttributeKind {
   2178     OBJC_PR_noattr    = 0x00,
   2179     OBJC_PR_readonly  = 0x01,
   2180     OBJC_PR_getter    = 0x02,
   2181     OBJC_PR_assign    = 0x04,
   2182     OBJC_PR_readwrite = 0x08,
   2183     OBJC_PR_retain    = 0x10,
   2184     OBJC_PR_copy      = 0x20,
   2185     OBJC_PR_nonatomic = 0x40,
   2186     OBJC_PR_setter    = 0x80,
   2187     OBJC_PR_atomic    = 0x100,
   2188     OBJC_PR_weak      = 0x200,
   2189     OBJC_PR_strong    = 0x400,
   2190     OBJC_PR_unsafe_unretained = 0x800
   2191     // Adding a property should change NumPropertyAttrsBits
   2192   };
   2193 
   2194   enum {
   2195     /// \brief Number of bits fitting all the property attributes.
   2196     NumPropertyAttrsBits = 12
   2197   };
   2198 
   2199   enum SetterKind { Assign, Retain, Copy, Weak };
   2200   enum PropertyControl { None, Required, Optional };
   2201 private:
   2202   SourceLocation AtLoc;   // location of \@property
   2203   SourceLocation LParenLoc; // location of '(' starting attribute list or null.
   2204   TypeSourceInfo *DeclType;
   2205   unsigned PropertyAttributes : NumPropertyAttrsBits;
   2206   unsigned PropertyAttributesAsWritten : NumPropertyAttrsBits;
   2207   // \@required/\@optional
   2208   unsigned PropertyImplementation : 2;
   2209 
   2210   Selector GetterName;    // getter name of NULL if no getter
   2211   Selector SetterName;    // setter name of NULL if no setter
   2212 
   2213   ObjCMethodDecl *GetterMethodDecl; // Declaration of getter instance method
   2214   ObjCMethodDecl *SetterMethodDecl; // Declaration of setter instance method
   2215   ObjCIvarDecl *PropertyIvarDecl;   // Synthesize ivar for this property
   2216 
   2217   ObjCPropertyDecl(DeclContext *DC, SourceLocation L, IdentifierInfo *Id,
   2218                    SourceLocation AtLocation,  SourceLocation LParenLocation,
   2219                    TypeSourceInfo *T)
   2220     : NamedDecl(ObjCProperty, DC, L, Id), AtLoc(AtLocation),
   2221       LParenLoc(LParenLocation), DeclType(T),
   2222       PropertyAttributes(OBJC_PR_noattr),
   2223       PropertyAttributesAsWritten(OBJC_PR_noattr),
   2224       PropertyImplementation(None),
   2225       GetterName(Selector()),
   2226       SetterName(Selector()),
   2227       GetterMethodDecl(nullptr), SetterMethodDecl(nullptr),
   2228       PropertyIvarDecl(nullptr) {}
   2229 
   2230 public:
   2231   static ObjCPropertyDecl *Create(ASTContext &C, DeclContext *DC,
   2232                                   SourceLocation L,
   2233                                   IdentifierInfo *Id, SourceLocation AtLocation,
   2234                                   SourceLocation LParenLocation,
   2235                                   TypeSourceInfo *T,
   2236                                   PropertyControl propControl = None);
   2237 
   2238   static ObjCPropertyDecl *CreateDeserialized(ASTContext &C, unsigned ID);
   2239 
   2240   SourceLocation getAtLoc() const { return AtLoc; }
   2241   void setAtLoc(SourceLocation L) { AtLoc = L; }
   2242 
   2243   SourceLocation getLParenLoc() const { return LParenLoc; }
   2244   void setLParenLoc(SourceLocation L) { LParenLoc = L; }
   2245 
   2246   TypeSourceInfo *getTypeSourceInfo() const { return DeclType; }
   2247   QualType getType() const { return DeclType->getType(); }
   2248   void setType(TypeSourceInfo *T) { DeclType = T; }
   2249 
   2250   PropertyAttributeKind getPropertyAttributes() const {
   2251     return PropertyAttributeKind(PropertyAttributes);
   2252   }
   2253   void setPropertyAttributes(PropertyAttributeKind PRVal) {
   2254     PropertyAttributes |= PRVal;
   2255   }
   2256 
   2257   PropertyAttributeKind getPropertyAttributesAsWritten() const {
   2258     return PropertyAttributeKind(PropertyAttributesAsWritten);
   2259   }
   2260 
   2261   bool hasWrittenStorageAttribute() const {
   2262     return PropertyAttributesAsWritten & (OBJC_PR_assign | OBJC_PR_copy |
   2263         OBJC_PR_unsafe_unretained | OBJC_PR_retain | OBJC_PR_strong |
   2264         OBJC_PR_weak);
   2265   }
   2266 
   2267   void setPropertyAttributesAsWritten(PropertyAttributeKind PRVal) {
   2268     PropertyAttributesAsWritten = PRVal;
   2269   }
   2270 
   2271  void makeitReadWriteAttribute() {
   2272     PropertyAttributes &= ~OBJC_PR_readonly;
   2273     PropertyAttributes |= OBJC_PR_readwrite;
   2274  }
   2275 
   2276   // Helper methods for accessing attributes.
   2277 
   2278   /// isReadOnly - Return true iff the property has a setter.
   2279   bool isReadOnly() const {
   2280     return (PropertyAttributes & OBJC_PR_readonly);
   2281   }
   2282 
   2283   /// isAtomic - Return true if the property is atomic.
   2284   bool isAtomic() const {
   2285     return (PropertyAttributes & OBJC_PR_atomic);
   2286   }
   2287 
   2288   /// isRetaining - Return true if the property retains its value.
   2289   bool isRetaining() const {
   2290     return (PropertyAttributes &
   2291             (OBJC_PR_retain | OBJC_PR_strong | OBJC_PR_copy));
   2292   }
   2293 
   2294   /// getSetterKind - Return the method used for doing assignment in
   2295   /// the property setter. This is only valid if the property has been
   2296   /// defined to have a setter.
   2297   SetterKind getSetterKind() const {
   2298     if (PropertyAttributes & OBJC_PR_strong)
   2299       return getType()->isBlockPointerType() ? Copy : Retain;
   2300     if (PropertyAttributes & OBJC_PR_retain)
   2301       return Retain;
   2302     if (PropertyAttributes & OBJC_PR_copy)
   2303       return Copy;
   2304     if (PropertyAttributes & OBJC_PR_weak)
   2305       return Weak;
   2306     return Assign;
   2307   }
   2308 
   2309   Selector getGetterName() const { return GetterName; }
   2310   void setGetterName(Selector Sel) { GetterName = Sel; }
   2311 
   2312   Selector getSetterName() const { return SetterName; }
   2313   void setSetterName(Selector Sel) { SetterName = Sel; }
   2314 
   2315   ObjCMethodDecl *getGetterMethodDecl() const { return GetterMethodDecl; }
   2316   void setGetterMethodDecl(ObjCMethodDecl *gDecl) { GetterMethodDecl = gDecl; }
   2317 
   2318   ObjCMethodDecl *getSetterMethodDecl() const { return SetterMethodDecl; }
   2319   void setSetterMethodDecl(ObjCMethodDecl *gDecl) { SetterMethodDecl = gDecl; }
   2320 
   2321   // Related to \@optional/\@required declared in \@protocol
   2322   void setPropertyImplementation(PropertyControl pc) {
   2323     PropertyImplementation = pc;
   2324   }
   2325   PropertyControl getPropertyImplementation() const {
   2326     return PropertyControl(PropertyImplementation);
   2327   }
   2328 
   2329   void setPropertyIvarDecl(ObjCIvarDecl *Ivar) {
   2330     PropertyIvarDecl = Ivar;
   2331   }
   2332   ObjCIvarDecl *getPropertyIvarDecl() const {
   2333     return PropertyIvarDecl;
   2334   }
   2335 
   2336   SourceRange getSourceRange() const override LLVM_READONLY {
   2337     return SourceRange(AtLoc, getLocation());
   2338   }
   2339 
   2340   /// Get the default name of the synthesized ivar.
   2341   IdentifierInfo *getDefaultSynthIvarName(ASTContext &Ctx) const;
   2342 
   2343   /// Lookup a property by name in the specified DeclContext.
   2344   static ObjCPropertyDecl *findPropertyDecl(const DeclContext *DC,
   2345                                             IdentifierInfo *propertyID);
   2346 
   2347   static bool classof(const Decl *D) { return classofKind(D->getKind()); }
   2348   static bool classofKind(Kind K) { return K == ObjCProperty; }
   2349 };
   2350 
   2351 /// ObjCPropertyImplDecl - Represents implementation declaration of a property
   2352 /// in a class or category implementation block. For example:
   2353 /// \@synthesize prop1 = ivar1;
   2354 ///
   2355 class ObjCPropertyImplDecl : public Decl {
   2356 public:
   2357   enum Kind {
   2358     Synthesize,
   2359     Dynamic
   2360   };
   2361 private:
   2362   SourceLocation AtLoc;   // location of \@synthesize or \@dynamic
   2363 
   2364   /// \brief For \@synthesize, the location of the ivar, if it was written in
   2365   /// the source code.
   2366   ///
   2367   /// \code
   2368   /// \@synthesize int a = b
   2369   /// \endcode
   2370   SourceLocation IvarLoc;
   2371 
   2372   /// Property declaration being implemented
   2373   ObjCPropertyDecl *PropertyDecl;
   2374 
   2375   /// Null for \@dynamic. Required for \@synthesize.
   2376   ObjCIvarDecl *PropertyIvarDecl;
   2377 
   2378   /// Null for \@dynamic. Non-null if property must be copy-constructed in
   2379   /// getter.
   2380   Expr *GetterCXXConstructor;
   2381 
   2382   /// Null for \@dynamic. Non-null if property has assignment operator to call
   2383   /// in Setter synthesis.
   2384   Expr *SetterCXXAssignment;
   2385 
   2386   ObjCPropertyImplDecl(DeclContext *DC, SourceLocation atLoc, SourceLocation L,
   2387                        ObjCPropertyDecl *property,
   2388                        Kind PK,
   2389                        ObjCIvarDecl *ivarDecl,
   2390                        SourceLocation ivarLoc)
   2391     : Decl(ObjCPropertyImpl, DC, L), AtLoc(atLoc),
   2392       IvarLoc(ivarLoc), PropertyDecl(property), PropertyIvarDecl(ivarDecl),
   2393       GetterCXXConstructor(nullptr), SetterCXXAssignment(nullptr) {
   2394     assert (PK == Dynamic || PropertyIvarDecl);
   2395   }
   2396 
   2397 public:
   2398   static ObjCPropertyImplDecl *Create(ASTContext &C, DeclContext *DC,
   2399                                       SourceLocation atLoc, SourceLocation L,
   2400                                       ObjCPropertyDecl *property,
   2401                                       Kind PK,
   2402                                       ObjCIvarDecl *ivarDecl,
   2403                                       SourceLocation ivarLoc);
   2404 
   2405   static ObjCPropertyImplDecl *CreateDeserialized(ASTContext &C, unsigned ID);
   2406 
   2407   SourceRange getSourceRange() const override LLVM_READONLY;
   2408 
   2409   SourceLocation getLocStart() const LLVM_READONLY { return AtLoc; }
   2410   void setAtLoc(SourceLocation Loc) { AtLoc = Loc; }
   2411 
   2412   ObjCPropertyDecl *getPropertyDecl() const {
   2413     return PropertyDecl;
   2414   }
   2415   void setPropertyDecl(ObjCPropertyDecl *Prop) { PropertyDecl = Prop; }
   2416 
   2417   Kind getPropertyImplementation() const {
   2418     return PropertyIvarDecl ? Synthesize : Dynamic;
   2419   }
   2420 
   2421   ObjCIvarDecl *getPropertyIvarDecl() const {
   2422     return PropertyIvarDecl;
   2423   }
   2424   SourceLocation getPropertyIvarDeclLoc() const { return IvarLoc; }
   2425 
   2426   void setPropertyIvarDecl(ObjCIvarDecl *Ivar,
   2427                            SourceLocation IvarLoc) {
   2428     PropertyIvarDecl = Ivar;
   2429     this->IvarLoc = IvarLoc;
   2430   }
   2431 
   2432   /// \brief For \@synthesize, returns true if an ivar name was explicitly
   2433   /// specified.
   2434   ///
   2435   /// \code
   2436   /// \@synthesize int a = b; // true
   2437   /// \@synthesize int a; // false
   2438   /// \endcode
   2439   bool isIvarNameSpecified() const {
   2440     return IvarLoc.isValid() && IvarLoc != getLocation();
   2441   }
   2442 
   2443   Expr *getGetterCXXConstructor() const {
   2444     return GetterCXXConstructor;
   2445   }
   2446   void setGetterCXXConstructor(Expr *getterCXXConstructor) {
   2447     GetterCXXConstructor = getterCXXConstructor;
   2448   }
   2449 
   2450   Expr *getSetterCXXAssignment() const {
   2451     return SetterCXXAssignment;
   2452   }
   2453   void setSetterCXXAssignment(Expr *setterCXXAssignment) {
   2454     SetterCXXAssignment = setterCXXAssignment;
   2455   }
   2456 
   2457   static bool classof(const Decl *D) { return classofKind(D->getKind()); }
   2458   static bool classofKind(Decl::Kind K) { return K == ObjCPropertyImpl; }
   2459 
   2460   friend class ASTDeclReader;
   2461 };
   2462 
   2463 template<bool (*Filter)(ObjCCategoryDecl *)>
   2464 void
   2465 ObjCInterfaceDecl::filtered_category_iterator<Filter>::
   2466 findAcceptableCategory() {
   2467   while (Current && !Filter(Current))
   2468     Current = Current->getNextClassCategoryRaw();
   2469 }
   2470 
   2471 template<bool (*Filter)(ObjCCategoryDecl *)>
   2472 inline ObjCInterfaceDecl::filtered_category_iterator<Filter> &
   2473 ObjCInterfaceDecl::filtered_category_iterator<Filter>::operator++() {
   2474   Current = Current->getNextClassCategoryRaw();
   2475   findAcceptableCategory();
   2476   return *this;
   2477 }
   2478 
   2479 inline bool ObjCInterfaceDecl::isVisibleCategory(ObjCCategoryDecl *Cat) {
   2480   return !Cat->isHidden();
   2481 }
   2482 
   2483 inline bool ObjCInterfaceDecl::isVisibleExtension(ObjCCategoryDecl *Cat) {
   2484   return Cat->IsClassExtension() && !Cat->isHidden();
   2485 }
   2486 
   2487 inline bool ObjCInterfaceDecl::isKnownExtension(ObjCCategoryDecl *Cat) {
   2488   return Cat->IsClassExtension();
   2489 }
   2490 
   2491 }  // end namespace clang
   2492 #endif
   2493