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      1 //===--- Lookup.h - Classes for name lookup ---------------------*- 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 LookupResult class, which is integral to
     11 // Sema's name-lookup subsystem.
     12 //
     13 //===----------------------------------------------------------------------===//
     14 
     15 #ifndef LLVM_CLANG_SEMA_LOOKUP_H
     16 #define LLVM_CLANG_SEMA_LOOKUP_H
     17 
     18 #include "clang/AST/DeclCXX.h"
     19 #include "clang/Sema/Sema.h"
     20 
     21 namespace clang {
     22 
     23 /// @brief Represents the results of name lookup.
     24 ///
     25 /// An instance of the LookupResult class captures the results of a
     26 /// single name lookup, which can return no result (nothing found),
     27 /// a single declaration, a set of overloaded functions, or an
     28 /// ambiguity. Use the getKind() method to determine which of these
     29 /// results occurred for a given lookup.
     30 class LookupResult {
     31 public:
     32   enum LookupResultKind {
     33     /// @brief No entity found met the criteria.
     34     NotFound = 0,
     35 
     36     /// @brief No entity found met the criteria within the current
     37     /// instantiation,, but there were dependent base classes of the
     38     /// current instantiation that could not be searched.
     39     NotFoundInCurrentInstantiation,
     40 
     41     /// @brief Name lookup found a single declaration that met the
     42     /// criteria.  getFoundDecl() will return this declaration.
     43     Found,
     44 
     45     /// @brief Name lookup found a set of overloaded functions that
     46     /// met the criteria.
     47     FoundOverloaded,
     48 
     49     /// @brief Name lookup found an unresolvable value declaration
     50     /// and cannot yet complete.  This only happens in C++ dependent
     51     /// contexts with dependent using declarations.
     52     FoundUnresolvedValue,
     53 
     54     /// @brief Name lookup results in an ambiguity; use
     55     /// getAmbiguityKind to figure out what kind of ambiguity
     56     /// we have.
     57     Ambiguous
     58   };
     59 
     60   enum AmbiguityKind {
     61     /// Name lookup results in an ambiguity because multiple
     62     /// entities that meet the lookup criteria were found in
     63     /// subobjects of different types. For example:
     64     /// @code
     65     /// struct A { void f(int); }
     66     /// struct B { void f(double); }
     67     /// struct C : A, B { };
     68     /// void test(C c) {
     69     ///   c.f(0); // error: A::f and B::f come from subobjects of different
     70     ///           // types. overload resolution is not performed.
     71     /// }
     72     /// @endcode
     73     AmbiguousBaseSubobjectTypes,
     74 
     75     /// Name lookup results in an ambiguity because multiple
     76     /// nonstatic entities that meet the lookup criteria were found
     77     /// in different subobjects of the same type. For example:
     78     /// @code
     79     /// struct A { int x; };
     80     /// struct B : A { };
     81     /// struct C : A { };
     82     /// struct D : B, C { };
     83     /// int test(D d) {
     84     ///   return d.x; // error: 'x' is found in two A subobjects (of B and C)
     85     /// }
     86     /// @endcode
     87     AmbiguousBaseSubobjects,
     88 
     89     /// Name lookup results in an ambiguity because multiple definitions
     90     /// of entity that meet the lookup criteria were found in different
     91     /// declaration contexts.
     92     /// @code
     93     /// namespace A {
     94     ///   int i;
     95     ///   namespace B { int i; }
     96     ///   int test() {
     97     ///     using namespace B;
     98     ///     return i; // error 'i' is found in namespace A and A::B
     99     ///    }
    100     /// }
    101     /// @endcode
    102     AmbiguousReference,
    103 
    104     /// Name lookup results in an ambiguity because an entity with a
    105     /// tag name was hidden by an entity with an ordinary name from
    106     /// a different context.
    107     /// @code
    108     /// namespace A { struct Foo {}; }
    109     /// namespace B { void Foo(); }
    110     /// namespace C {
    111     ///   using namespace A;
    112     ///   using namespace B;
    113     /// }
    114     /// void test() {
    115     ///   C::Foo(); // error: tag 'A::Foo' is hidden by an object in a
    116     ///             // different namespace
    117     /// }
    118     /// @endcode
    119     AmbiguousTagHiding
    120   };
    121 
    122   /// A little identifier for flagging temporary lookup results.
    123   enum TemporaryToken {
    124     Temporary
    125   };
    126 
    127   typedef UnresolvedSetImpl::iterator iterator;
    128 
    129   LookupResult(Sema &SemaRef, const DeclarationNameInfo &NameInfo,
    130                Sema::LookupNameKind LookupKind,
    131                Sema::RedeclarationKind Redecl = Sema::NotForRedeclaration)
    132     : ResultKind(NotFound),
    133       Paths(nullptr),
    134       NamingClass(nullptr),
    135       SemaRef(SemaRef),
    136       NameInfo(NameInfo),
    137       LookupKind(LookupKind),
    138       IDNS(0),
    139       Redecl(Redecl != Sema::NotForRedeclaration),
    140       HideTags(true),
    141       Diagnose(Redecl == Sema::NotForRedeclaration),
    142       AllowHidden(Redecl == Sema::ForRedeclaration),
    143       Shadowed(false)
    144   {
    145     configure();
    146   }
    147 
    148   // TODO: consider whether this constructor should be restricted to take
    149   // as input a const IndentifierInfo* (instead of Name),
    150   // forcing other cases towards the constructor taking a DNInfo.
    151   LookupResult(Sema &SemaRef, DeclarationName Name,
    152                SourceLocation NameLoc, Sema::LookupNameKind LookupKind,
    153                Sema::RedeclarationKind Redecl = Sema::NotForRedeclaration)
    154     : ResultKind(NotFound),
    155       Paths(nullptr),
    156       NamingClass(nullptr),
    157       SemaRef(SemaRef),
    158       NameInfo(Name, NameLoc),
    159       LookupKind(LookupKind),
    160       IDNS(0),
    161       Redecl(Redecl != Sema::NotForRedeclaration),
    162       HideTags(true),
    163       Diagnose(Redecl == Sema::NotForRedeclaration),
    164       AllowHidden(Redecl == Sema::ForRedeclaration),
    165       Shadowed(false)
    166   {
    167     configure();
    168   }
    169 
    170   /// Creates a temporary lookup result, initializing its core data
    171   /// using the information from another result.  Diagnostics are always
    172   /// disabled.
    173   LookupResult(TemporaryToken _, const LookupResult &Other)
    174     : ResultKind(NotFound),
    175       Paths(nullptr),
    176       NamingClass(nullptr),
    177       SemaRef(Other.SemaRef),
    178       NameInfo(Other.NameInfo),
    179       LookupKind(Other.LookupKind),
    180       IDNS(Other.IDNS),
    181       Redecl(Other.Redecl),
    182       HideTags(Other.HideTags),
    183       Diagnose(false),
    184       AllowHidden(Other.AllowHidden),
    185       Shadowed(false)
    186   {}
    187 
    188   ~LookupResult() {
    189     if (Diagnose) diagnose();
    190     if (Paths) deletePaths(Paths);
    191   }
    192 
    193   /// Gets the name info to look up.
    194   const DeclarationNameInfo &getLookupNameInfo() const {
    195     return NameInfo;
    196   }
    197 
    198   /// \brief Sets the name info to look up.
    199   void setLookupNameInfo(const DeclarationNameInfo &NameInfo) {
    200     this->NameInfo = NameInfo;
    201   }
    202 
    203   /// Gets the name to look up.
    204   DeclarationName getLookupName() const {
    205     return NameInfo.getName();
    206   }
    207 
    208   /// \brief Sets the name to look up.
    209   void setLookupName(DeclarationName Name) {
    210     NameInfo.setName(Name);
    211   }
    212 
    213   /// Gets the kind of lookup to perform.
    214   Sema::LookupNameKind getLookupKind() const {
    215     return LookupKind;
    216   }
    217 
    218   /// True if this lookup is just looking for an existing declaration.
    219   bool isForRedeclaration() const {
    220     return Redecl;
    221   }
    222 
    223   /// \brief Specify whether hidden declarations are visible, e.g.,
    224   /// for recovery reasons.
    225   void setAllowHidden(bool AH) {
    226     AllowHidden = AH;
    227   }
    228 
    229   /// \brief Determine whether this lookup is permitted to see hidden
    230   /// declarations, such as those in modules that have not yet been imported.
    231   bool isHiddenDeclarationVisible() const {
    232     return AllowHidden || LookupKind == Sema::LookupTagName;
    233   }
    234 
    235   /// Sets whether tag declarations should be hidden by non-tag
    236   /// declarations during resolution.  The default is true.
    237   void setHideTags(bool Hide) {
    238     HideTags = Hide;
    239   }
    240 
    241   bool isAmbiguous() const {
    242     return getResultKind() == Ambiguous;
    243   }
    244 
    245   /// Determines if this names a single result which is not an
    246   /// unresolved value using decl.  If so, it is safe to call
    247   /// getFoundDecl().
    248   bool isSingleResult() const {
    249     return getResultKind() == Found;
    250   }
    251 
    252   /// Determines if the results are overloaded.
    253   bool isOverloadedResult() const {
    254     return getResultKind() == FoundOverloaded;
    255   }
    256 
    257   bool isUnresolvableResult() const {
    258     return getResultKind() == FoundUnresolvedValue;
    259   }
    260 
    261   LookupResultKind getResultKind() const {
    262     assert(sanity());
    263     return ResultKind;
    264   }
    265 
    266   AmbiguityKind getAmbiguityKind() const {
    267     assert(isAmbiguous());
    268     return Ambiguity;
    269   }
    270 
    271   const UnresolvedSetImpl &asUnresolvedSet() const {
    272     return Decls;
    273   }
    274 
    275   iterator begin() const { return iterator(Decls.begin()); }
    276   iterator end() const { return iterator(Decls.end()); }
    277 
    278   /// \brief Return true if no decls were found
    279   bool empty() const { return Decls.empty(); }
    280 
    281   /// \brief Return the base paths structure that's associated with
    282   /// these results, or null if none is.
    283   CXXBasePaths *getBasePaths() const {
    284     return Paths;
    285   }
    286 
    287   /// \brief Determine whether the given declaration is visible to the
    288   /// program.
    289   static bool isVisible(Sema &SemaRef, NamedDecl *D) {
    290     // If this declaration is not hidden, it's visible.
    291     if (!D->isHidden())
    292       return true;
    293 
    294     if (SemaRef.ActiveTemplateInstantiations.empty())
    295       return false;
    296 
    297     // During template instantiation, we can refer to hidden declarations, if
    298     // they were visible in any module along the path of instantiation.
    299     return isVisibleSlow(SemaRef, D);
    300   }
    301 
    302   /// \brief Retrieve the accepted (re)declaration of the given declaration,
    303   /// if there is one.
    304   NamedDecl *getAcceptableDecl(NamedDecl *D) const {
    305     if (!D->isInIdentifierNamespace(IDNS))
    306       return nullptr;
    307 
    308     if (isHiddenDeclarationVisible() || isVisible(SemaRef, D))
    309       return D;
    310 
    311     return getAcceptableDeclSlow(D);
    312   }
    313 
    314 private:
    315   static bool isVisibleSlow(Sema &SemaRef, NamedDecl *D);
    316   NamedDecl *getAcceptableDeclSlow(NamedDecl *D) const;
    317 
    318 public:
    319   /// \brief Returns the identifier namespace mask for this lookup.
    320   unsigned getIdentifierNamespace() const {
    321     return IDNS;
    322   }
    323 
    324   /// \brief Returns whether these results arose from performing a
    325   /// lookup into a class.
    326   bool isClassLookup() const {
    327     return NamingClass != nullptr;
    328   }
    329 
    330   /// \brief Returns the 'naming class' for this lookup, i.e. the
    331   /// class which was looked into to find these results.
    332   ///
    333   /// C++0x [class.access.base]p5:
    334   ///   The access to a member is affected by the class in which the
    335   ///   member is named. This naming class is the class in which the
    336   ///   member name was looked up and found. [Note: this class can be
    337   ///   explicit, e.g., when a qualified-id is used, or implicit,
    338   ///   e.g., when a class member access operator (5.2.5) is used
    339   ///   (including cases where an implicit "this->" is added). If both
    340   ///   a class member access operator and a qualified-id are used to
    341   ///   name the member (as in p->T::m), the class naming the member
    342   ///   is the class named by the nested-name-specifier of the
    343   ///   qualified-id (that is, T). -- end note ]
    344   ///
    345   /// This is set by the lookup routines when they find results in a class.
    346   CXXRecordDecl *getNamingClass() const {
    347     return NamingClass;
    348   }
    349 
    350   /// \brief Sets the 'naming class' for this lookup.
    351   void setNamingClass(CXXRecordDecl *Record) {
    352     NamingClass = Record;
    353   }
    354 
    355   /// \brief Returns the base object type associated with this lookup;
    356   /// important for [class.protected].  Most lookups do not have an
    357   /// associated base object.
    358   QualType getBaseObjectType() const {
    359     return BaseObjectType;
    360   }
    361 
    362   /// \brief Sets the base object type for this lookup.
    363   void setBaseObjectType(QualType T) {
    364     BaseObjectType = T;
    365   }
    366 
    367   /// \brief Add a declaration to these results with its natural access.
    368   /// Does not test the acceptance criteria.
    369   void addDecl(NamedDecl *D) {
    370     addDecl(D, D->getAccess());
    371   }
    372 
    373   /// \brief Add a declaration to these results with the given access.
    374   /// Does not test the acceptance criteria.
    375   void addDecl(NamedDecl *D, AccessSpecifier AS) {
    376     Decls.addDecl(D, AS);
    377     ResultKind = Found;
    378   }
    379 
    380   /// \brief Add all the declarations from another set of lookup
    381   /// results.
    382   void addAllDecls(const LookupResult &Other) {
    383     Decls.append(Other.Decls.begin(), Other.Decls.end());
    384     ResultKind = Found;
    385   }
    386 
    387   /// \brief Determine whether no result was found because we could not
    388   /// search into dependent base classes of the current instantiation.
    389   bool wasNotFoundInCurrentInstantiation() const {
    390     return ResultKind == NotFoundInCurrentInstantiation;
    391   }
    392 
    393   /// \brief Note that while no result was found in the current instantiation,
    394   /// there were dependent base classes that could not be searched.
    395   void setNotFoundInCurrentInstantiation() {
    396     assert(ResultKind == NotFound && Decls.empty());
    397     ResultKind = NotFoundInCurrentInstantiation;
    398   }
    399 
    400   /// \brief Determine whether the lookup result was shadowed by some other
    401   /// declaration that lookup ignored.
    402   bool isShadowed() const { return Shadowed; }
    403 
    404   /// \brief Note that we found and ignored a declaration while performing
    405   /// lookup.
    406   void setShadowed() { Shadowed = true; }
    407 
    408   /// \brief Resolves the result kind of the lookup, possibly hiding
    409   /// decls.
    410   ///
    411   /// This should be called in any environment where lookup might
    412   /// generate multiple lookup results.
    413   void resolveKind();
    414 
    415   /// \brief Re-resolves the result kind of the lookup after a set of
    416   /// removals has been performed.
    417   void resolveKindAfterFilter() {
    418     if (Decls.empty()) {
    419       if (ResultKind != NotFoundInCurrentInstantiation)
    420         ResultKind = NotFound;
    421 
    422       if (Paths) {
    423         deletePaths(Paths);
    424         Paths = nullptr;
    425       }
    426     } else {
    427       AmbiguityKind SavedAK = Ambiguity;
    428       ResultKind = Found;
    429       resolveKind();
    430 
    431       // If we didn't make the lookup unambiguous, restore the old
    432       // ambiguity kind.
    433       if (ResultKind == Ambiguous) {
    434         Ambiguity = SavedAK;
    435       } else if (Paths) {
    436         deletePaths(Paths);
    437         Paths = nullptr;
    438       }
    439     }
    440   }
    441 
    442   template <class DeclClass>
    443   DeclClass *getAsSingle() const {
    444     if (getResultKind() != Found) return nullptr;
    445     return dyn_cast<DeclClass>(getFoundDecl());
    446   }
    447 
    448   /// \brief Fetch the unique decl found by this lookup.  Asserts
    449   /// that one was found.
    450   ///
    451   /// This is intended for users who have examined the result kind
    452   /// and are certain that there is only one result.
    453   NamedDecl *getFoundDecl() const {
    454     assert(getResultKind() == Found
    455            && "getFoundDecl called on non-unique result");
    456     return (*begin())->getUnderlyingDecl();
    457   }
    458 
    459   /// Fetches a representative decl.  Useful for lazy diagnostics.
    460   NamedDecl *getRepresentativeDecl() const {
    461     assert(!Decls.empty() && "cannot get representative of empty set");
    462     return *begin();
    463   }
    464 
    465   /// \brief Asks if the result is a single tag decl.
    466   bool isSingleTagDecl() const {
    467     return getResultKind() == Found && isa<TagDecl>(getFoundDecl());
    468   }
    469 
    470   /// \brief Make these results show that the name was found in
    471   /// base classes of different types.
    472   ///
    473   /// The given paths object is copied and invalidated.
    474   void setAmbiguousBaseSubobjectTypes(CXXBasePaths &P);
    475 
    476   /// \brief Make these results show that the name was found in
    477   /// distinct base classes of the same type.
    478   ///
    479   /// The given paths object is copied and invalidated.
    480   void setAmbiguousBaseSubobjects(CXXBasePaths &P);
    481 
    482   /// \brief Make these results show that the name was found in
    483   /// different contexts and a tag decl was hidden by an ordinary
    484   /// decl in a different context.
    485   void setAmbiguousQualifiedTagHiding() {
    486     setAmbiguous(AmbiguousTagHiding);
    487   }
    488 
    489   /// \brief Clears out any current state.
    490   void clear() {
    491     ResultKind = NotFound;
    492     Decls.clear();
    493     if (Paths) deletePaths(Paths);
    494     Paths = nullptr;
    495     NamingClass = nullptr;
    496     Shadowed = false;
    497   }
    498 
    499   /// \brief Clears out any current state and re-initializes for a
    500   /// different kind of lookup.
    501   void clear(Sema::LookupNameKind Kind) {
    502     clear();
    503     LookupKind = Kind;
    504     configure();
    505   }
    506 
    507   /// \brief Change this lookup's redeclaration kind.
    508   void setRedeclarationKind(Sema::RedeclarationKind RK) {
    509     Redecl = RK;
    510     AllowHidden = (RK == Sema::ForRedeclaration);
    511     configure();
    512   }
    513 
    514   void print(raw_ostream &);
    515 
    516   /// Suppress the diagnostics that would normally fire because of this
    517   /// lookup.  This happens during (e.g.) redeclaration lookups.
    518   void suppressDiagnostics() {
    519     Diagnose = false;
    520   }
    521 
    522   /// Determines whether this lookup is suppressing diagnostics.
    523   bool isSuppressingDiagnostics() const {
    524     return !Diagnose;
    525   }
    526 
    527   /// Sets a 'context' source range.
    528   void setContextRange(SourceRange SR) {
    529     NameContextRange = SR;
    530   }
    531 
    532   /// Gets the source range of the context of this name; for C++
    533   /// qualified lookups, this is the source range of the scope
    534   /// specifier.
    535   SourceRange getContextRange() const {
    536     return NameContextRange;
    537   }
    538 
    539   /// Gets the location of the identifier.  This isn't always defined:
    540   /// sometimes we're doing lookups on synthesized names.
    541   SourceLocation getNameLoc() const {
    542     return NameInfo.getLoc();
    543   }
    544 
    545   /// \brief Get the Sema object that this lookup result is searching
    546   /// with.
    547   Sema &getSema() const { return SemaRef; }
    548 
    549   /// A class for iterating through a result set and possibly
    550   /// filtering out results.  The results returned are possibly
    551   /// sugared.
    552   class Filter {
    553     LookupResult &Results;
    554     LookupResult::iterator I;
    555     bool Changed;
    556     bool CalledDone;
    557 
    558     friend class LookupResult;
    559     Filter(LookupResult &Results)
    560       : Results(Results), I(Results.begin()), Changed(false), CalledDone(false)
    561     {}
    562 
    563   public:
    564     ~Filter() {
    565       assert(CalledDone &&
    566              "LookupResult::Filter destroyed without done() call");
    567     }
    568 
    569     bool hasNext() const {
    570       return I != Results.end();
    571     }
    572 
    573     NamedDecl *next() {
    574       assert(I != Results.end() && "next() called on empty filter");
    575       return *I++;
    576     }
    577 
    578     /// Restart the iteration.
    579     void restart() {
    580       I = Results.begin();
    581     }
    582 
    583     /// Erase the last element returned from this iterator.
    584     void erase() {
    585       Results.Decls.erase(--I);
    586       Changed = true;
    587     }
    588 
    589     /// Replaces the current entry with the given one, preserving the
    590     /// access bits.
    591     void replace(NamedDecl *D) {
    592       Results.Decls.replace(I-1, D);
    593       Changed = true;
    594     }
    595 
    596     /// Replaces the current entry with the given one.
    597     void replace(NamedDecl *D, AccessSpecifier AS) {
    598       Results.Decls.replace(I-1, D, AS);
    599       Changed = true;
    600     }
    601 
    602     void done() {
    603       assert(!CalledDone && "done() called twice");
    604       CalledDone = true;
    605 
    606       if (Changed)
    607         Results.resolveKindAfterFilter();
    608     }
    609   };
    610 
    611   /// Create a filter for this result set.
    612   Filter makeFilter() {
    613     return Filter(*this);
    614   }
    615 
    616   void setFindLocalExtern(bool FindLocalExtern) {
    617     if (FindLocalExtern)
    618       IDNS |= Decl::IDNS_LocalExtern;
    619     else
    620       IDNS &= ~Decl::IDNS_LocalExtern;
    621   }
    622 
    623 private:
    624   void diagnose() {
    625     if (isAmbiguous())
    626       SemaRef.DiagnoseAmbiguousLookup(*this);
    627     else if (isClassLookup() && SemaRef.getLangOpts().AccessControl)
    628       SemaRef.CheckLookupAccess(*this);
    629   }
    630 
    631   void setAmbiguous(AmbiguityKind AK) {
    632     ResultKind = Ambiguous;
    633     Ambiguity = AK;
    634   }
    635 
    636   void addDeclsFromBasePaths(const CXXBasePaths &P);
    637   void configure();
    638 
    639   // Sanity checks.
    640   bool sanity() const;
    641 
    642   bool sanityCheckUnresolved() const {
    643     for (iterator I = begin(), E = end(); I != E; ++I)
    644       if (isa<UnresolvedUsingValueDecl>((*I)->getUnderlyingDecl()))
    645         return true;
    646     return false;
    647   }
    648 
    649   static void deletePaths(CXXBasePaths *);
    650 
    651   // Results.
    652   LookupResultKind ResultKind;
    653   AmbiguityKind Ambiguity; // ill-defined unless ambiguous
    654   UnresolvedSet<8> Decls;
    655   CXXBasePaths *Paths;
    656   CXXRecordDecl *NamingClass;
    657   QualType BaseObjectType;
    658 
    659   // Parameters.
    660   Sema &SemaRef;
    661   DeclarationNameInfo NameInfo;
    662   SourceRange NameContextRange;
    663   Sema::LookupNameKind LookupKind;
    664   unsigned IDNS; // set by configure()
    665 
    666   bool Redecl;
    667 
    668   /// \brief True if tag declarations should be hidden if non-tags
    669   ///   are present
    670   bool HideTags;
    671 
    672   bool Diagnose;
    673 
    674   /// \brief True if we should allow hidden declarations to be 'visible'.
    675   bool AllowHidden;
    676 
    677   /// \brief True if the found declarations were shadowed by some other
    678   /// declaration that we skipped. This only happens when \c LookupKind
    679   /// is \c LookupRedeclarationWithLinkage.
    680   bool Shadowed;
    681 };
    682 
    683 /// \brief Consumes visible declarations found when searching for
    684 /// all visible names within a given scope or context.
    685 ///
    686 /// This abstract class is meant to be subclassed by clients of \c
    687 /// Sema::LookupVisibleDecls(), each of which should override the \c
    688 /// FoundDecl() function to process declarations as they are found.
    689 class VisibleDeclConsumer {
    690 public:
    691   /// \brief Destroys the visible declaration consumer.
    692   virtual ~VisibleDeclConsumer();
    693 
    694   /// \brief Determine whether hidden declarations (from unimported
    695   /// modules) should be given to this consumer. By default, they
    696   /// are not included.
    697   virtual bool includeHiddenDecls() const;
    698 
    699   /// \brief Invoked each time \p Sema::LookupVisibleDecls() finds a
    700   /// declaration visible from the current scope or context.
    701   ///
    702   /// \param ND the declaration found.
    703   ///
    704   /// \param Hiding a declaration that hides the declaration \p ND,
    705   /// or NULL if no such declaration exists.
    706   ///
    707   /// \param Ctx the original context from which the lookup started.
    708   ///
    709   /// \param InBaseClass whether this declaration was found in base
    710   /// class of the context we searched.
    711   virtual void FoundDecl(NamedDecl *ND, NamedDecl *Hiding, DeclContext *Ctx,
    712                          bool InBaseClass) = 0;
    713 };
    714 
    715 /// \brief A class for storing results from argument-dependent lookup.
    716 class ADLResult {
    717 private:
    718   /// A map from canonical decls to the 'most recent' decl.
    719   llvm::DenseMap<NamedDecl*, NamedDecl*> Decls;
    720 
    721 public:
    722   /// Adds a new ADL candidate to this map.
    723   void insert(NamedDecl *D);
    724 
    725   /// Removes any data associated with a given decl.
    726   void erase(NamedDecl *D) {
    727     Decls.erase(cast<NamedDecl>(D->getCanonicalDecl()));
    728   }
    729 
    730   class iterator
    731       : public std::iterator<std::forward_iterator_tag, NamedDecl *> {
    732     typedef llvm::DenseMap<NamedDecl*,NamedDecl*>::iterator inner_iterator;
    733     inner_iterator iter;
    734 
    735     friend class ADLResult;
    736     iterator(const inner_iterator &iter) : iter(iter) {}
    737   public:
    738     iterator() {}
    739 
    740     iterator &operator++() { ++iter; return *this; }
    741     iterator operator++(int) { return iterator(iter++); }
    742 
    743     value_type operator*() const { return iter->second; }
    744 
    745     bool operator==(const iterator &other) const { return iter == other.iter; }
    746     bool operator!=(const iterator &other) const { return iter != other.iter; }
    747   };
    748 
    749   iterator begin() { return iterator(Decls.begin()); }
    750   iterator end() { return iterator(Decls.end()); }
    751 };
    752 
    753 }
    754 
    755 #endif
    756