1 //===- SemaTemplate.h - C++ Templates ---------------------------*- C++ -*-===//
2 //
3 // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
4 // See https://llvm.org/LICENSE.txt for license information.
5 // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
6 //===----------------------------------------------------------------------===//
7 //
8 // This file provides types used in the semantic analysis of C++ templates.
9 //
10 //===----------------------------------------------------------------------===//
11 
12 #ifndef LLVM_CLANG_SEMA_TEMPLATE_H
13 #define LLVM_CLANG_SEMA_TEMPLATE_H
14 
15 #include "clang/AST/DeclTemplate.h"
16 #include "clang/AST/DeclVisitor.h"
17 #include "clang/AST/TemplateBase.h"
18 #include "clang/AST/Type.h"
19 #include "clang/Basic/LLVM.h"
20 #include "clang/Sema/Sema.h"
21 #include "llvm/ADT/ArrayRef.h"
22 #include "llvm/ADT/DenseMap.h"
23 #include "llvm/ADT/PointerUnion.h"
24 #include "llvm/ADT/SmallVector.h"
25 #include <cassert>
26 #include <optional>
27 #include <utility>
28 
29 namespace clang {
30 
31 class ASTContext;
32 class BindingDecl;
33 class CXXMethodDecl;
34 class Decl;
35 class DeclaratorDecl;
36 class DeclContext;
37 class EnumDecl;
38 class FunctionDecl;
39 class NamedDecl;
40 class ParmVarDecl;
41 class TagDecl;
42 class TypedefNameDecl;
43 class TypeSourceInfo;
44 class VarDecl;
45 
46 /// The kind of template substitution being performed.
47 enum class TemplateSubstitutionKind : char {
48   /// We are substituting template parameters for template arguments in order
49   /// to form a template specialization.
50   Specialization,
51   /// We are substituting template parameters for (typically) other template
52   /// parameters in order to rewrite a declaration as a different declaration
53   /// (for example, when forming a deduction guide from a constructor).
54   Rewrite,
55 };
56 
57   /// Data structure that captures multiple levels of template argument
58   /// lists for use in template instantiation.
59   ///
60   /// Multiple levels of template arguments occur when instantiating the
61   /// definitions of member templates. For example:
62   ///
63   /// \code
64   /// template<typename T>
65   /// struct X {
66   ///   template<T Value>
67   ///   struct Y {
68   ///     void f();
69   ///   };
70   /// };
71   /// \endcode
72   ///
73   /// When instantiating X<int>::Y<17>::f, the multi-level template argument
74   /// list will contain a template argument list (int) at depth 0 and a
75   /// template argument list (17) at depth 1.
76   class MultiLevelTemplateArgumentList {
77     /// The template argument list at a certain template depth
78 
79     using ArgList = ArrayRef<TemplateArgument>;
80     struct ArgumentListLevel {
81       llvm::PointerIntPair<Decl *, 1, bool> AssociatedDeclAndFinal;
82       ArgList Args;
83     };
84     using ContainerType = SmallVector<ArgumentListLevel, 4>;
85 
86     using ArgListsIterator = ContainerType::iterator;
87     using ConstArgListsIterator = ContainerType::const_iterator;
88 
89     /// The template argument lists, stored from the innermost template
90     /// argument list (first) to the outermost template argument list (last).
91     ContainerType TemplateArgumentLists;
92 
93     /// The number of outer levels of template arguments that are not
94     /// being substituted.
95     unsigned NumRetainedOuterLevels = 0;
96 
97     /// The kind of substitution described by this argument list.
98     TemplateSubstitutionKind Kind = TemplateSubstitutionKind::Specialization;
99 
100   public:
101     /// Construct an empty set of template argument lists.
102     MultiLevelTemplateArgumentList() = default;
103 
104     /// Construct a single-level template argument list.
105     MultiLevelTemplateArgumentList(Decl *D, ArgList Args, bool Final) {
106       addOuterTemplateArguments(D, Args, Final);
107     }
108 
109     void setKind(TemplateSubstitutionKind K) { Kind = K; }
110 
111     /// Determine the kind of template substitution being performed.
112     TemplateSubstitutionKind getKind() const { return Kind; }
113 
114     /// Determine whether we are rewriting template parameters rather than
115     /// substituting for them. If so, we should not leave references to the
116     /// original template parameters behind.
117     bool isRewrite() const {
118       return Kind == TemplateSubstitutionKind::Rewrite;
119     }
120 
121     /// Determine the number of levels in this template argument
122     /// list.
123     unsigned getNumLevels() const {
124       return TemplateArgumentLists.size() + NumRetainedOuterLevels;
125     }
126 
127     /// Determine the number of substituted levels in this template
128     /// argument list.
129     unsigned getNumSubstitutedLevels() const {
130       return TemplateArgumentLists.size();
131     }
132 
133     // Determine the number of substituted args at 'Depth'.
134     unsigned getNumSubsitutedArgs(unsigned Depth) const {
135       assert(NumRetainedOuterLevels <= Depth && Depth < getNumLevels());
136       return TemplateArgumentLists[getNumLevels() - Depth - 1].Args.size();
137     }
138 
139     unsigned getNumRetainedOuterLevels() const {
140       return NumRetainedOuterLevels;
141     }
142 
143     /// Determine how many of the \p OldDepth outermost template parameter
144     /// lists would be removed by substituting these arguments.
145     unsigned getNewDepth(unsigned OldDepth) const {
146       if (OldDepth < NumRetainedOuterLevels)
147         return OldDepth;
148       if (OldDepth < getNumLevels())
149         return NumRetainedOuterLevels;
150       return OldDepth - TemplateArgumentLists.size();
151     }
152 
153     /// Retrieve the template argument at a given depth and index.
154     const TemplateArgument &operator()(unsigned Depth, unsigned Index) const {
155       assert(NumRetainedOuterLevels <= Depth && Depth < getNumLevels());
156       assert(Index <
157              TemplateArgumentLists[getNumLevels() - Depth - 1].Args.size());
158       return TemplateArgumentLists[getNumLevels() - Depth - 1].Args[Index];
159     }
160 
161     /// A template-like entity which owns the whole pattern being substituted.
162     /// This will usually own a set of template parameters, or in some
163     /// cases might even be a template parameter itself.
164     std::pair<Decl *, bool> getAssociatedDecl(unsigned Depth) const {
165       assert(NumRetainedOuterLevels <= Depth && Depth < getNumLevels());
166       auto AD = TemplateArgumentLists[getNumLevels() - Depth - 1]
167                     .AssociatedDeclAndFinal;
168       return {AD.getPointer(), AD.getInt()};
169     }
170 
171     /// Determine whether there is a non-NULL template argument at the
172     /// given depth and index.
173     ///
174     /// There must exist a template argument list at the given depth.
175     bool hasTemplateArgument(unsigned Depth, unsigned Index) const {
176       assert(Depth < getNumLevels());
177 
178       if (Depth < NumRetainedOuterLevels)
179         return false;
180 
181       if (Index >=
182           TemplateArgumentLists[getNumLevels() - Depth - 1].Args.size())
183         return false;
184 
185       return !(*this)(Depth, Index).isNull();
186     }
187 
188     bool isAnyArgInstantiationDependent() const {
189       for (ArgumentListLevel ListLevel : TemplateArgumentLists)
190         for (const TemplateArgument &TA : ListLevel.Args)
191           if (TA.isInstantiationDependent())
192             return true;
193       return false;
194     }
195 
196     /// Clear out a specific template argument.
197     void setArgument(unsigned Depth, unsigned Index,
198                      TemplateArgument Arg) {
199       assert(NumRetainedOuterLevels <= Depth && Depth < getNumLevels());
200       assert(Index <
201              TemplateArgumentLists[getNumLevels() - Depth - 1].Args.size());
202       const_cast<TemplateArgument &>(
203           TemplateArgumentLists[getNumLevels() - Depth - 1].Args[Index]) = Arg;
204     }
205 
206     /// Add a new outmost level to the multi-level template argument
207     /// list.
208     /// A 'Final' substitution means that Subst* nodes won't be built
209     /// for the replacements.
210     void addOuterTemplateArguments(Decl *AssociatedDecl, ArgList Args,
211                                    bool Final) {
212       assert(!NumRetainedOuterLevels &&
213              "substituted args outside retained args?");
214       assert(getKind() == TemplateSubstitutionKind::Specialization);
215       TemplateArgumentLists.push_back(
216           {{AssociatedDecl->getCanonicalDecl(), Final}, Args});
217     }
218 
219     void addOuterTemplateArguments(ArgList Args) {
220       assert(!NumRetainedOuterLevels &&
221              "substituted args outside retained args?");
222       assert(getKind() == TemplateSubstitutionKind::Rewrite);
223       TemplateArgumentLists.push_back({{}, Args});
224     }
225 
226     void addOuterTemplateArguments(std::nullopt_t) {
227       assert(!NumRetainedOuterLevels &&
228              "substituted args outside retained args?");
229       TemplateArgumentLists.push_back({});
230     }
231 
232     /// Replaces the current 'innermost' level with the provided argument list.
233     /// This is useful for type deduction cases where we need to get the entire
234     /// list from the AST, but then add the deduced innermost list.
235     void replaceInnermostTemplateArguments(ArgList Args) {
236       assert(TemplateArgumentLists.size() > 0 && "Replacing in an empty list?");
237       TemplateArgumentLists[0].Args = Args;
238     }
239 
240     /// Add an outermost level that we are not substituting. We have no
241     /// arguments at this level, and do not remove it from the depth of inner
242     /// template parameters that we instantiate.
243     void addOuterRetainedLevel() {
244       ++NumRetainedOuterLevels;
245     }
246     void addOuterRetainedLevels(unsigned Num) {
247       NumRetainedOuterLevels += Num;
248     }
249 
250     /// Retrieve the innermost template argument list.
251     const ArgList &getInnermost() const {
252       return TemplateArgumentLists.front().Args;
253     }
254     /// Retrieve the outermost template argument list.
255     const ArgList &getOutermost() const {
256       return TemplateArgumentLists.back().Args;
257     }
258     ArgListsIterator begin() { return TemplateArgumentLists.begin(); }
259     ConstArgListsIterator begin() const {
260       return TemplateArgumentLists.begin();
261     }
262     ArgListsIterator end() { return TemplateArgumentLists.end(); }
263     ConstArgListsIterator end() const { return TemplateArgumentLists.end(); }
264   };
265 
266   /// The context in which partial ordering of function templates occurs.
267   enum TPOC {
268     /// Partial ordering of function templates for a function call.
269     TPOC_Call,
270 
271     /// Partial ordering of function templates for a call to a
272     /// conversion function.
273     TPOC_Conversion,
274 
275     /// Partial ordering of function templates in other contexts, e.g.,
276     /// taking the address of a function template or matching a function
277     /// template specialization to a function template.
278     TPOC_Other
279   };
280 
281   // This is lame but unavoidable in a world without forward
282   // declarations of enums.  The alternatives are to either pollute
283   // Sema.h (by including this file) or sacrifice type safety (by
284   // making Sema.h declare things as enums).
285   class TemplatePartialOrderingContext {
286     TPOC Value;
287 
288   public:
289     TemplatePartialOrderingContext(TPOC Value) : Value(Value) {}
290 
291     operator TPOC() const { return Value; }
292   };
293 
294   /// Captures a template argument whose value has been deduced
295   /// via c++ template argument deduction.
296   class DeducedTemplateArgument : public TemplateArgument {
297     /// For a non-type template argument, whether the value was
298     /// deduced from an array bound.
299     bool DeducedFromArrayBound = false;
300 
301   public:
302     DeducedTemplateArgument() = default;
303 
304     DeducedTemplateArgument(const TemplateArgument &Arg,
305                             bool DeducedFromArrayBound = false)
306         : TemplateArgument(Arg), DeducedFromArrayBound(DeducedFromArrayBound) {}
307 
308     /// Construct an integral non-type template argument that
309     /// has been deduced, possibly from an array bound.
310     DeducedTemplateArgument(ASTContext &Ctx,
311                             const llvm::APSInt &Value,
312                             QualType ValueType,
313                             bool DeducedFromArrayBound)
314         : TemplateArgument(Ctx, Value, ValueType),
315           DeducedFromArrayBound(DeducedFromArrayBound) {}
316 
317     /// For a non-type template argument, determine whether the
318     /// template argument was deduced from an array bound.
319     bool wasDeducedFromArrayBound() const { return DeducedFromArrayBound; }
320 
321     /// Specify whether the given non-type template argument
322     /// was deduced from an array bound.
323     void setDeducedFromArrayBound(bool Deduced) {
324       DeducedFromArrayBound = Deduced;
325     }
326   };
327 
328   /// A stack-allocated class that identifies which local
329   /// variable declaration instantiations are present in this scope.
330   ///
331   /// A new instance of this class type will be created whenever we
332   /// instantiate a new function declaration, which will have its own
333   /// set of parameter declarations.
334   class LocalInstantiationScope {
335   public:
336     /// A set of declarations.
337     using DeclArgumentPack = SmallVector<VarDecl *, 4>;
338 
339   private:
340     /// Reference to the semantic analysis that is performing
341     /// this template instantiation.
342     Sema &SemaRef;
343 
344     using LocalDeclsMap =
345         llvm::SmallDenseMap<const Decl *,
346                             llvm::PointerUnion<Decl *, DeclArgumentPack *>, 4>;
347 
348     /// A mapping from local declarations that occur
349     /// within a template to their instantiations.
350     ///
351     /// This mapping is used during instantiation to keep track of,
352     /// e.g., function parameter and variable declarations. For example,
353     /// given:
354     ///
355     /// \code
356     ///   template<typename T> T add(T x, T y) { return x + y; }
357     /// \endcode
358     ///
359     /// when we instantiate add<int>, we will introduce a mapping from
360     /// the ParmVarDecl for 'x' that occurs in the template to the
361     /// instantiated ParmVarDecl for 'x'.
362     ///
363     /// For a parameter pack, the local instantiation scope may contain a
364     /// set of instantiated parameters. This is stored as a DeclArgumentPack
365     /// pointer.
366     LocalDeclsMap LocalDecls;
367 
368     /// The set of argument packs we've allocated.
369     SmallVector<DeclArgumentPack *, 1> ArgumentPacks;
370 
371     /// The outer scope, which contains local variable
372     /// definitions from some other instantiation (that may not be
373     /// relevant to this particular scope).
374     LocalInstantiationScope *Outer;
375 
376     /// Whether we have already exited this scope.
377     bool Exited = false;
378 
379     /// Whether to combine this scope with the outer scope, such that
380     /// lookup will search our outer scope.
381     bool CombineWithOuterScope;
382 
383     /// If non-NULL, the template parameter pack that has been
384     /// partially substituted per C++0x [temp.arg.explicit]p9.
385     NamedDecl *PartiallySubstitutedPack = nullptr;
386 
387     /// If \c PartiallySubstitutedPack is non-null, the set of
388     /// explicitly-specified template arguments in that pack.
389     const TemplateArgument *ArgsInPartiallySubstitutedPack;
390 
391     /// If \c PartiallySubstitutedPack, the number of
392     /// explicitly-specified template arguments in
393     /// ArgsInPartiallySubstitutedPack.
394     unsigned NumArgsInPartiallySubstitutedPack;
395 
396   public:
397     LocalInstantiationScope(Sema &SemaRef, bool CombineWithOuterScope = false)
398         : SemaRef(SemaRef), Outer(SemaRef.CurrentInstantiationScope),
399           CombineWithOuterScope(CombineWithOuterScope) {
400       SemaRef.CurrentInstantiationScope = this;
401     }
402 
403     LocalInstantiationScope(const LocalInstantiationScope &) = delete;
404     LocalInstantiationScope &
405     operator=(const LocalInstantiationScope &) = delete;
406 
407     ~LocalInstantiationScope() {
408       Exit();
409     }
410 
411     const Sema &getSema() const { return SemaRef; }
412 
413     /// Exit this local instantiation scope early.
414     void Exit() {
415       if (Exited)
416         return;
417 
418       for (unsigned I = 0, N = ArgumentPacks.size(); I != N; ++I)
419         delete ArgumentPacks[I];
420 
421       SemaRef.CurrentInstantiationScope = Outer;
422       Exited = true;
423     }
424 
425     /// Clone this scope, and all outer scopes, down to the given
426     /// outermost scope.
427     LocalInstantiationScope *cloneScopes(LocalInstantiationScope *Outermost) {
428       if (this == Outermost) return this;
429 
430       // Save the current scope from SemaRef since the LocalInstantiationScope
431       // will overwrite it on construction
432       LocalInstantiationScope *oldScope = SemaRef.CurrentInstantiationScope;
433 
434       LocalInstantiationScope *newScope =
435         new LocalInstantiationScope(SemaRef, CombineWithOuterScope);
436 
437       newScope->Outer = nullptr;
438       if (Outer)
439         newScope->Outer = Outer->cloneScopes(Outermost);
440 
441       newScope->PartiallySubstitutedPack = PartiallySubstitutedPack;
442       newScope->ArgsInPartiallySubstitutedPack = ArgsInPartiallySubstitutedPack;
443       newScope->NumArgsInPartiallySubstitutedPack =
444         NumArgsInPartiallySubstitutedPack;
445 
446       for (LocalDeclsMap::iterator I = LocalDecls.begin(), E = LocalDecls.end();
447            I != E; ++I) {
448         const Decl *D = I->first;
449         llvm::PointerUnion<Decl *, DeclArgumentPack *> &Stored =
450           newScope->LocalDecls[D];
451         if (I->second.is<Decl *>()) {
452           Stored = I->second.get<Decl *>();
453         } else {
454           DeclArgumentPack *OldPack = I->second.get<DeclArgumentPack *>();
455           DeclArgumentPack *NewPack = new DeclArgumentPack(*OldPack);
456           Stored = NewPack;
457           newScope->ArgumentPacks.push_back(NewPack);
458         }
459       }
460       // Restore the saved scope to SemaRef
461       SemaRef.CurrentInstantiationScope = oldScope;
462       return newScope;
463     }
464 
465     /// deletes the given scope, and all outer scopes, down to the
466     /// given outermost scope.
467     static void deleteScopes(LocalInstantiationScope *Scope,
468                              LocalInstantiationScope *Outermost) {
469       while (Scope && Scope != Outermost) {
470         LocalInstantiationScope *Out = Scope->Outer;
471         delete Scope;
472         Scope = Out;
473       }
474     }
475 
476     /// Find the instantiation of the declaration D within the current
477     /// instantiation scope.
478     ///
479     /// \param D The declaration whose instantiation we are searching for.
480     ///
481     /// \returns A pointer to the declaration or argument pack of declarations
482     /// to which the declaration \c D is instantiated, if found. Otherwise,
483     /// returns NULL.
484     llvm::PointerUnion<Decl *, DeclArgumentPack *> *
485     findInstantiationOf(const Decl *D);
486 
487     void InstantiatedLocal(const Decl *D, Decl *Inst);
488     void InstantiatedLocalPackArg(const Decl *D, VarDecl *Inst);
489     void MakeInstantiatedLocalArgPack(const Decl *D);
490 
491     /// Note that the given parameter pack has been partially substituted
492     /// via explicit specification of template arguments
493     /// (C++0x [temp.arg.explicit]p9).
494     ///
495     /// \param Pack The parameter pack, which will always be a template
496     /// parameter pack.
497     ///
498     /// \param ExplicitArgs The explicitly-specified template arguments provided
499     /// for this parameter pack.
500     ///
501     /// \param NumExplicitArgs The number of explicitly-specified template
502     /// arguments provided for this parameter pack.
503     void SetPartiallySubstitutedPack(NamedDecl *Pack,
504                                      const TemplateArgument *ExplicitArgs,
505                                      unsigned NumExplicitArgs);
506 
507     /// Reset the partially-substituted pack when it is no longer of
508     /// interest.
509     void ResetPartiallySubstitutedPack() {
510       assert(PartiallySubstitutedPack && "No partially-substituted pack");
511       PartiallySubstitutedPack = nullptr;
512       ArgsInPartiallySubstitutedPack = nullptr;
513       NumArgsInPartiallySubstitutedPack = 0;
514     }
515 
516     /// Retrieve the partially-substitued template parameter pack.
517     ///
518     /// If there is no partially-substituted parameter pack, returns NULL.
519     NamedDecl *
520     getPartiallySubstitutedPack(const TemplateArgument **ExplicitArgs = nullptr,
521                                 unsigned *NumExplicitArgs = nullptr) const;
522 
523     /// Determine whether D is a pack expansion created in this scope.
524     bool isLocalPackExpansion(const Decl *D);
525   };
526 
527   class TemplateDeclInstantiator
528     : public DeclVisitor<TemplateDeclInstantiator, Decl *>
529   {
530     Sema &SemaRef;
531     Sema::ArgumentPackSubstitutionIndexRAII SubstIndex;
532     DeclContext *Owner;
533     const MultiLevelTemplateArgumentList &TemplateArgs;
534     Sema::LateInstantiatedAttrVec* LateAttrs = nullptr;
535     LocalInstantiationScope *StartingScope = nullptr;
536     bool EvaluateConstraints = true;
537 
538     /// A list of out-of-line class template partial
539     /// specializations that will need to be instantiated after the
540     /// enclosing class's instantiation is complete.
541     SmallVector<std::pair<ClassTemplateDecl *,
542                                 ClassTemplatePartialSpecializationDecl *>, 4>
543       OutOfLinePartialSpecs;
544 
545     /// A list of out-of-line variable template partial
546     /// specializations that will need to be instantiated after the
547     /// enclosing variable's instantiation is complete.
548     /// FIXME: Verify that this is needed.
549     SmallVector<
550         std::pair<VarTemplateDecl *, VarTemplatePartialSpecializationDecl *>, 4>
551     OutOfLineVarPartialSpecs;
552 
553   public:
554     TemplateDeclInstantiator(Sema &SemaRef, DeclContext *Owner,
555                              const MultiLevelTemplateArgumentList &TemplateArgs)
556         : SemaRef(SemaRef),
557           SubstIndex(SemaRef, SemaRef.ArgumentPackSubstitutionIndex),
558           Owner(Owner), TemplateArgs(TemplateArgs) {}
559 
560     void setEvaluateConstraints(bool B) {
561       EvaluateConstraints = B;
562     }
563     bool getEvaluateConstraints() {
564       return EvaluateConstraints;
565     }
566 
567 // Define all the decl visitors using DeclNodes.inc
568 #define DECL(DERIVED, BASE) \
569     Decl *Visit ## DERIVED ## Decl(DERIVED ## Decl *D);
570 #define ABSTRACT_DECL(DECL)
571 
572 // Decls which never appear inside a class or function.
573 #define OBJCCONTAINER(DERIVED, BASE)
574 #define FILESCOPEASM(DERIVED, BASE)
575 #define TOPLEVELSTMT(DERIVED, BASE)
576 #define IMPORT(DERIVED, BASE)
577 #define EXPORT(DERIVED, BASE)
578 #define LINKAGESPEC(DERIVED, BASE)
579 #define OBJCCOMPATIBLEALIAS(DERIVED, BASE)
580 #define OBJCMETHOD(DERIVED, BASE)
581 #define OBJCTYPEPARAM(DERIVED, BASE)
582 #define OBJCIVAR(DERIVED, BASE)
583 #define OBJCPROPERTY(DERIVED, BASE)
584 #define OBJCPROPERTYIMPL(DERIVED, BASE)
585 #define EMPTY(DERIVED, BASE)
586 #define LIFETIMEEXTENDEDTEMPORARY(DERIVED, BASE)
587 
588     // Decls which use special-case instantiation code.
589 #define BLOCK(DERIVED, BASE)
590 #define CAPTURED(DERIVED, BASE)
591 #define IMPLICITPARAM(DERIVED, BASE)
592 
593 #include "clang/AST/DeclNodes.inc"
594 
595     enum class RewriteKind { None, RewriteSpaceshipAsEqualEqual };
596 
597     void adjustForRewrite(RewriteKind RK, FunctionDecl *Orig, QualType &T,
598                           TypeSourceInfo *&TInfo,
599                           DeclarationNameInfo &NameInfo);
600 
601     // A few supplemental visitor functions.
602     Decl *VisitCXXMethodDecl(CXXMethodDecl *D,
603                              TemplateParameterList *TemplateParams,
604                              std::optional<const ASTTemplateArgumentListInfo *>
605                                  ClassScopeSpecializationArgs = std::nullopt,
606                              RewriteKind RK = RewriteKind::None);
607     Decl *VisitFunctionDecl(FunctionDecl *D,
608                             TemplateParameterList *TemplateParams,
609                             RewriteKind RK = RewriteKind::None);
610     Decl *VisitDecl(Decl *D);
611     Decl *VisitVarDecl(VarDecl *D, bool InstantiatingVarTemplate,
612                        ArrayRef<BindingDecl *> *Bindings = nullptr);
613     Decl *VisitBaseUsingDecls(BaseUsingDecl *D, BaseUsingDecl *Inst,
614                               LookupResult *Lookup);
615 
616     // Enable late instantiation of attributes.  Late instantiated attributes
617     // will be stored in LA.
618     void enableLateAttributeInstantiation(Sema::LateInstantiatedAttrVec *LA) {
619       LateAttrs = LA;
620       StartingScope = SemaRef.CurrentInstantiationScope;
621     }
622 
623     // Disable late instantiation of attributes.
624     void disableLateAttributeInstantiation() {
625       LateAttrs = nullptr;
626       StartingScope = nullptr;
627     }
628 
629     LocalInstantiationScope *getStartingScope() const { return StartingScope; }
630 
631     using delayed_partial_spec_iterator = SmallVectorImpl<std::pair<
632       ClassTemplateDecl *, ClassTemplatePartialSpecializationDecl *>>::iterator;
633 
634     using delayed_var_partial_spec_iterator = SmallVectorImpl<std::pair<
635         VarTemplateDecl *, VarTemplatePartialSpecializationDecl *>>::iterator;
636 
637     /// Return an iterator to the beginning of the set of
638     /// "delayed" partial specializations, which must be passed to
639     /// InstantiateClassTemplatePartialSpecialization once the class
640     /// definition has been completed.
641     delayed_partial_spec_iterator delayed_partial_spec_begin() {
642       return OutOfLinePartialSpecs.begin();
643     }
644 
645     delayed_var_partial_spec_iterator delayed_var_partial_spec_begin() {
646       return OutOfLineVarPartialSpecs.begin();
647     }
648 
649     /// Return an iterator to the end of the set of
650     /// "delayed" partial specializations, which must be passed to
651     /// InstantiateClassTemplatePartialSpecialization once the class
652     /// definition has been completed.
653     delayed_partial_spec_iterator delayed_partial_spec_end() {
654       return OutOfLinePartialSpecs.end();
655     }
656 
657     delayed_var_partial_spec_iterator delayed_var_partial_spec_end() {
658       return OutOfLineVarPartialSpecs.end();
659     }
660 
661     // Helper functions for instantiating methods.
662     TypeSourceInfo *SubstFunctionType(FunctionDecl *D,
663                              SmallVectorImpl<ParmVarDecl *> &Params);
664     bool InitFunctionInstantiation(FunctionDecl *New, FunctionDecl *Tmpl);
665     bool InitMethodInstantiation(CXXMethodDecl *New, CXXMethodDecl *Tmpl);
666 
667     bool SubstDefaultedFunction(FunctionDecl *New, FunctionDecl *Tmpl);
668 
669     TemplateParameterList *
670       SubstTemplateParams(TemplateParameterList *List);
671 
672     bool SubstQualifier(const DeclaratorDecl *OldDecl,
673                         DeclaratorDecl *NewDecl);
674     bool SubstQualifier(const TagDecl *OldDecl,
675                         TagDecl *NewDecl);
676 
677     Decl *VisitVarTemplateSpecializationDecl(
678         VarTemplateDecl *VarTemplate, VarDecl *FromVar,
679         const TemplateArgumentListInfo &TemplateArgsInfo,
680         ArrayRef<TemplateArgument> Converted,
681         VarTemplateSpecializationDecl *PrevDecl = nullptr);
682 
683     Decl *InstantiateTypedefNameDecl(TypedefNameDecl *D, bool IsTypeAlias);
684     ClassTemplatePartialSpecializationDecl *
685     InstantiateClassTemplatePartialSpecialization(
686                                               ClassTemplateDecl *ClassTemplate,
687                            ClassTemplatePartialSpecializationDecl *PartialSpec);
688     VarTemplatePartialSpecializationDecl *
689     InstantiateVarTemplatePartialSpecialization(
690         VarTemplateDecl *VarTemplate,
691         VarTemplatePartialSpecializationDecl *PartialSpec);
692     void InstantiateEnumDefinition(EnumDecl *Enum, EnumDecl *Pattern);
693 
694   private:
695     template<typename T>
696     Decl *instantiateUnresolvedUsingDecl(T *D,
697                                          bool InstantiatingPackElement = false);
698   };
699 
700 } // namespace clang
701 
702 #endif // LLVM_CLANG_SEMA_TEMPLATE_H
703