1 //===------- SemaTemplateInstantiate.cpp - C++ Template Instantiation ------===/
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 //  This file implements C++ template instantiation.
10 //
11 //===----------------------------------------------------------------------===/
12 
13 #include "clang/Sema/SemaInternal.h"
14 #include "TreeTransform.h"
15 #include "clang/AST/ASTConsumer.h"
16 #include "clang/AST/ASTContext.h"
17 #include "clang/AST/ASTLambda.h"
18 #include "clang/AST/ASTMutationListener.h"
19 #include "clang/AST/DeclTemplate.h"
20 #include "clang/AST/Expr.h"
21 #include "clang/Basic/LangOptions.h"
22 #include "clang/Sema/DeclSpec.h"
23 #include "clang/Sema/Initialization.h"
24 #include "clang/Sema/Lookup.h"
25 #include "clang/Sema/PrettyDeclStackTrace.h"
26 #include "clang/Sema/Template.h"
27 #include "clang/Sema/TemplateDeduction.h"
28 
29 using namespace clang;
30 using namespace sema;
31 
32 //===----------------------------------------------------------------------===/
33 // Template Instantiation Support
34 //===----------------------------------------------------------------------===/
35 
36 /// \brief Retrieve the template argument list(s) that should be used to
37 /// instantiate the definition of the given declaration.
38 ///
39 /// \param D the declaration for which we are computing template instantiation
40 /// arguments.
41 ///
42 /// \param Innermost if non-NULL, the innermost template argument list.
43 ///
44 /// \param RelativeToPrimary true if we should get the template
45 /// arguments relative to the primary template, even when we're
46 /// dealing with a specialization. This is only relevant for function
47 /// template specializations.
48 ///
49 /// \param Pattern If non-NULL, indicates the pattern from which we will be
50 /// instantiating the definition of the given declaration, \p D. This is
51 /// used to determine the proper set of template instantiation arguments for
52 /// friend function template specializations.
53 MultiLevelTemplateArgumentList
54 Sema::getTemplateInstantiationArgs(NamedDecl *D,
55                                    const TemplateArgumentList *Innermost,
56                                    bool RelativeToPrimary,
57                                    const FunctionDecl *Pattern) {
58   // Accumulate the set of template argument lists in this structure.
59   MultiLevelTemplateArgumentList Result;
60 
61   if (Innermost)
62     Result.addOuterTemplateArguments(Innermost);
63 
64   DeclContext *Ctx = dyn_cast<DeclContext>(D);
65   if (!Ctx) {
66     Ctx = D->getDeclContext();
67 
68     // Add template arguments from a variable template instantiation.
69     if (VarTemplateSpecializationDecl *Spec =
70             dyn_cast<VarTemplateSpecializationDecl>(D)) {
71       // We're done when we hit an explicit specialization.
72       if (Spec->getSpecializationKind() == TSK_ExplicitSpecialization &&
73           !isa<VarTemplatePartialSpecializationDecl>(Spec))
74         return Result;
75 
76       Result.addOuterTemplateArguments(&Spec->getTemplateInstantiationArgs());
77 
78       // If this variable template specialization was instantiated from a
79       // specialized member that is a variable template, we're done.
80       assert(Spec->getSpecializedTemplate() && "No variable template?");
81       llvm::PointerUnion<VarTemplateDecl*,
82                          VarTemplatePartialSpecializationDecl*> Specialized
83                              = Spec->getSpecializedTemplateOrPartial();
84       if (VarTemplatePartialSpecializationDecl *Partial =
85               Specialized.dyn_cast<VarTemplatePartialSpecializationDecl *>()) {
86         if (Partial->isMemberSpecialization())
87           return Result;
88       } else {
89         VarTemplateDecl *Tmpl = Specialized.get<VarTemplateDecl *>();
90         if (Tmpl->isMemberSpecialization())
91           return Result;
92       }
93     }
94 
95     // If we have a template template parameter with translation unit context,
96     // then we're performing substitution into a default template argument of
97     // this template template parameter before we've constructed the template
98     // that will own this template template parameter. In this case, we
99     // use empty template parameter lists for all of the outer templates
100     // to avoid performing any substitutions.
101     if (Ctx->isTranslationUnit()) {
102       if (TemplateTemplateParmDecl *TTP
103                                       = dyn_cast<TemplateTemplateParmDecl>(D)) {
104         for (unsigned I = 0, N = TTP->getDepth() + 1; I != N; ++I)
105           Result.addOuterTemplateArguments(None);
106         return Result;
107       }
108     }
109   }
110 
111   while (!Ctx->isFileContext()) {
112     // Add template arguments from a class template instantiation.
113     if (ClassTemplateSpecializationDecl *Spec
114           = dyn_cast<ClassTemplateSpecializationDecl>(Ctx)) {
115       // We're done when we hit an explicit specialization.
116       if (Spec->getSpecializationKind() == TSK_ExplicitSpecialization &&
117           !isa<ClassTemplatePartialSpecializationDecl>(Spec))
118         break;
119 
120       Result.addOuterTemplateArguments(&Spec->getTemplateInstantiationArgs());
121 
122       // If this class template specialization was instantiated from a
123       // specialized member that is a class template, we're done.
124       assert(Spec->getSpecializedTemplate() && "No class template?");
125       if (Spec->getSpecializedTemplate()->isMemberSpecialization())
126         break;
127     }
128     // Add template arguments from a function template specialization.
129     else if (FunctionDecl *Function = dyn_cast<FunctionDecl>(Ctx)) {
130       if (!RelativeToPrimary &&
131           (Function->getTemplateSpecializationKind() ==
132                                                   TSK_ExplicitSpecialization &&
133            !Function->getClassScopeSpecializationPattern()))
134         break;
135 
136       if (const TemplateArgumentList *TemplateArgs
137             = Function->getTemplateSpecializationArgs()) {
138         // Add the template arguments for this specialization.
139         Result.addOuterTemplateArguments(TemplateArgs);
140 
141         // If this function was instantiated from a specialized member that is
142         // a function template, we're done.
143         assert(Function->getPrimaryTemplate() && "No function template?");
144         if (Function->getPrimaryTemplate()->isMemberSpecialization())
145           break;
146 
147         // If this function is a generic lambda specialization, we are done.
148         if (isGenericLambdaCallOperatorSpecialization(Function))
149           break;
150 
151       } else if (FunctionTemplateDecl *FunTmpl
152                                    = Function->getDescribedFunctionTemplate()) {
153         // Add the "injected" template arguments.
154         Result.addOuterTemplateArguments(FunTmpl->getInjectedTemplateArgs());
155       }
156 
157       // If this is a friend declaration and it declares an entity at
158       // namespace scope, take arguments from its lexical parent
159       // instead of its semantic parent, unless of course the pattern we're
160       // instantiating actually comes from the file's context!
161       if (Function->getFriendObjectKind() &&
162           Function->getDeclContext()->isFileContext() &&
163           (!Pattern || !Pattern->getLexicalDeclContext()->isFileContext())) {
164         Ctx = Function->getLexicalDeclContext();
165         RelativeToPrimary = false;
166         continue;
167       }
168     } else if (CXXRecordDecl *Rec = dyn_cast<CXXRecordDecl>(Ctx)) {
169       if (ClassTemplateDecl *ClassTemplate = Rec->getDescribedClassTemplate()) {
170         QualType T = ClassTemplate->getInjectedClassNameSpecialization();
171         const TemplateSpecializationType *TST =
172             cast<TemplateSpecializationType>(Context.getCanonicalType(T));
173         Result.addOuterTemplateArguments(
174             llvm::makeArrayRef(TST->getArgs(), TST->getNumArgs()));
175         if (ClassTemplate->isMemberSpecialization())
176           break;
177       }
178     }
179 
180     Ctx = Ctx->getParent();
181     RelativeToPrimary = false;
182   }
183 
184   return Result;
185 }
186 
187 bool Sema::CodeSynthesisContext::isInstantiationRecord() const {
188   switch (Kind) {
189   case TemplateInstantiation:
190   case ExceptionSpecInstantiation:
191   case DefaultTemplateArgumentInstantiation:
192   case DefaultFunctionArgumentInstantiation:
193   case ExplicitTemplateArgumentSubstitution:
194   case DeducedTemplateArgumentSubstitution:
195   case PriorTemplateArgumentSubstitution:
196     return true;
197 
198   case DefaultTemplateArgumentChecking:
199   case DeclaringSpecialMember:
200     return false;
201   }
202 
203   llvm_unreachable("Invalid SynthesisKind!");
204 }
205 
206 Sema::InstantiatingTemplate::InstantiatingTemplate(
207     Sema &SemaRef, CodeSynthesisContext::SynthesisKind Kind,
208     SourceLocation PointOfInstantiation, SourceRange InstantiationRange,
209     Decl *Entity, NamedDecl *Template, ArrayRef<TemplateArgument> TemplateArgs,
210     sema::TemplateDeductionInfo *DeductionInfo)
211     : SemaRef(SemaRef) {
212   // Don't allow further instantiation if a fatal error and an uncompilable
213   // error have occurred. Any diagnostics we might have raised will not be
214   // visible, and we do not need to construct a correct AST.
215   if (SemaRef.Diags.hasFatalErrorOccurred() &&
216       SemaRef.Diags.hasUncompilableErrorOccurred()) {
217     Invalid = true;
218     return;
219   }
220   Invalid = CheckInstantiationDepth(PointOfInstantiation, InstantiationRange);
221   if (!Invalid) {
222     CodeSynthesisContext Inst;
223     Inst.Kind = Kind;
224     Inst.PointOfInstantiation = PointOfInstantiation;
225     Inst.Entity = Entity;
226     Inst.Template = Template;
227     Inst.TemplateArgs = TemplateArgs.data();
228     Inst.NumTemplateArgs = TemplateArgs.size();
229     Inst.DeductionInfo = DeductionInfo;
230     Inst.InstantiationRange = InstantiationRange;
231     SemaRef.pushCodeSynthesisContext(Inst);
232 
233     AlreadyInstantiating =
234         !SemaRef.InstantiatingSpecializations
235              .insert(std::make_pair(Inst.Entity->getCanonicalDecl(), Inst.Kind))
236              .second;
237   }
238 }
239 
240 Sema::InstantiatingTemplate::InstantiatingTemplate(
241     Sema &SemaRef, SourceLocation PointOfInstantiation, Decl *Entity,
242     SourceRange InstantiationRange)
243     : InstantiatingTemplate(SemaRef,
244                             CodeSynthesisContext::TemplateInstantiation,
245                             PointOfInstantiation, InstantiationRange, Entity) {}
246 
247 Sema::InstantiatingTemplate::InstantiatingTemplate(
248     Sema &SemaRef, SourceLocation PointOfInstantiation, FunctionDecl *Entity,
249     ExceptionSpecification, SourceRange InstantiationRange)
250     : InstantiatingTemplate(
251           SemaRef, CodeSynthesisContext::ExceptionSpecInstantiation,
252           PointOfInstantiation, InstantiationRange, Entity) {}
253 
254 Sema::InstantiatingTemplate::InstantiatingTemplate(
255     Sema &SemaRef, SourceLocation PointOfInstantiation, TemplateParameter Param,
256     TemplateDecl *Template, ArrayRef<TemplateArgument> TemplateArgs,
257     SourceRange InstantiationRange)
258     : InstantiatingTemplate(
259           SemaRef,
260           CodeSynthesisContext::DefaultTemplateArgumentInstantiation,
261           PointOfInstantiation, InstantiationRange, getAsNamedDecl(Param),
262           Template, TemplateArgs) {}
263 
264 Sema::InstantiatingTemplate::InstantiatingTemplate(
265     Sema &SemaRef, SourceLocation PointOfInstantiation,
266     FunctionTemplateDecl *FunctionTemplate,
267     ArrayRef<TemplateArgument> TemplateArgs,
268     CodeSynthesisContext::SynthesisKind Kind,
269     sema::TemplateDeductionInfo &DeductionInfo, SourceRange InstantiationRange)
270     : InstantiatingTemplate(SemaRef, Kind, PointOfInstantiation,
271                             InstantiationRange, FunctionTemplate, nullptr,
272                             TemplateArgs, &DeductionInfo) {
273   assert(
274     Kind == CodeSynthesisContext::ExplicitTemplateArgumentSubstitution ||
275     Kind == CodeSynthesisContext::DeducedTemplateArgumentSubstitution);
276 }
277 
278 Sema::InstantiatingTemplate::InstantiatingTemplate(
279     Sema &SemaRef, SourceLocation PointOfInstantiation,
280     TemplateDecl *Template,
281     ArrayRef<TemplateArgument> TemplateArgs,
282     sema::TemplateDeductionInfo &DeductionInfo, SourceRange InstantiationRange)
283     : InstantiatingTemplate(
284           SemaRef,
285           CodeSynthesisContext::DeducedTemplateArgumentSubstitution,
286           PointOfInstantiation, InstantiationRange, Template, nullptr,
287           TemplateArgs, &DeductionInfo) {}
288 
289 Sema::InstantiatingTemplate::InstantiatingTemplate(
290     Sema &SemaRef, SourceLocation PointOfInstantiation,
291     ClassTemplatePartialSpecializationDecl *PartialSpec,
292     ArrayRef<TemplateArgument> TemplateArgs,
293     sema::TemplateDeductionInfo &DeductionInfo, SourceRange InstantiationRange)
294     : InstantiatingTemplate(
295           SemaRef,
296           CodeSynthesisContext::DeducedTemplateArgumentSubstitution,
297           PointOfInstantiation, InstantiationRange, PartialSpec, nullptr,
298           TemplateArgs, &DeductionInfo) {}
299 
300 Sema::InstantiatingTemplate::InstantiatingTemplate(
301     Sema &SemaRef, SourceLocation PointOfInstantiation,
302     VarTemplatePartialSpecializationDecl *PartialSpec,
303     ArrayRef<TemplateArgument> TemplateArgs,
304     sema::TemplateDeductionInfo &DeductionInfo, SourceRange InstantiationRange)
305     : InstantiatingTemplate(
306           SemaRef,
307           CodeSynthesisContext::DeducedTemplateArgumentSubstitution,
308           PointOfInstantiation, InstantiationRange, PartialSpec, nullptr,
309           TemplateArgs, &DeductionInfo) {}
310 
311 Sema::InstantiatingTemplate::InstantiatingTemplate(
312     Sema &SemaRef, SourceLocation PointOfInstantiation, ParmVarDecl *Param,
313     ArrayRef<TemplateArgument> TemplateArgs, SourceRange InstantiationRange)
314     : InstantiatingTemplate(
315           SemaRef,
316           CodeSynthesisContext::DefaultFunctionArgumentInstantiation,
317           PointOfInstantiation, InstantiationRange, Param, nullptr,
318           TemplateArgs) {}
319 
320 Sema::InstantiatingTemplate::InstantiatingTemplate(
321     Sema &SemaRef, SourceLocation PointOfInstantiation, NamedDecl *Template,
322     NonTypeTemplateParmDecl *Param, ArrayRef<TemplateArgument> TemplateArgs,
323     SourceRange InstantiationRange)
324     : InstantiatingTemplate(
325           SemaRef,
326           CodeSynthesisContext::PriorTemplateArgumentSubstitution,
327           PointOfInstantiation, InstantiationRange, Param, Template,
328           TemplateArgs) {}
329 
330 Sema::InstantiatingTemplate::InstantiatingTemplate(
331     Sema &SemaRef, SourceLocation PointOfInstantiation, NamedDecl *Template,
332     TemplateTemplateParmDecl *Param, ArrayRef<TemplateArgument> TemplateArgs,
333     SourceRange InstantiationRange)
334     : InstantiatingTemplate(
335           SemaRef,
336           CodeSynthesisContext::PriorTemplateArgumentSubstitution,
337           PointOfInstantiation, InstantiationRange, Param, Template,
338           TemplateArgs) {}
339 
340 Sema::InstantiatingTemplate::InstantiatingTemplate(
341     Sema &SemaRef, SourceLocation PointOfInstantiation, TemplateDecl *Template,
342     NamedDecl *Param, ArrayRef<TemplateArgument> TemplateArgs,
343     SourceRange InstantiationRange)
344     : InstantiatingTemplate(
345           SemaRef, CodeSynthesisContext::DefaultTemplateArgumentChecking,
346           PointOfInstantiation, InstantiationRange, Param, Template,
347           TemplateArgs) {}
348 
349 void Sema::pushCodeSynthesisContext(CodeSynthesisContext Ctx) {
350   Ctx.SavedInNonInstantiationSFINAEContext = InNonInstantiationSFINAEContext;
351   InNonInstantiationSFINAEContext = false;
352 
353   CodeSynthesisContexts.push_back(Ctx);
354 
355   if (!Ctx.isInstantiationRecord())
356     ++NonInstantiationEntries;
357 }
358 
359 void Sema::popCodeSynthesisContext() {
360   auto &Active = CodeSynthesisContexts.back();
361   if (!Active.isInstantiationRecord()) {
362     assert(NonInstantiationEntries > 0);
363     --NonInstantiationEntries;
364   }
365 
366   InNonInstantiationSFINAEContext = Active.SavedInNonInstantiationSFINAEContext;
367 
368   // Name lookup no longer looks in this template's defining module.
369   assert(CodeSynthesisContexts.size() >=
370              CodeSynthesisContextLookupModules.size() &&
371          "forgot to remove a lookup module for a template instantiation");
372   if (CodeSynthesisContexts.size() ==
373       CodeSynthesisContextLookupModules.size()) {
374     if (Module *M = CodeSynthesisContextLookupModules.back())
375       LookupModulesCache.erase(M);
376     CodeSynthesisContextLookupModules.pop_back();
377   }
378 
379   // If we've left the code synthesis context for the current context stack,
380   // stop remembering that we've emitted that stack.
381   if (CodeSynthesisContexts.size() ==
382       LastEmittedCodeSynthesisContextDepth)
383     LastEmittedCodeSynthesisContextDepth = 0;
384 
385   CodeSynthesisContexts.pop_back();
386 }
387 
388 void Sema::InstantiatingTemplate::Clear() {
389   if (!Invalid) {
390     if (!AlreadyInstantiating) {
391       auto &Active = SemaRef.CodeSynthesisContexts.back();
392       SemaRef.InstantiatingSpecializations.erase(
393           std::make_pair(Active.Entity, Active.Kind));
394     }
395 
396     SemaRef.popCodeSynthesisContext();
397 
398     Invalid = true;
399   }
400 }
401 
402 bool Sema::InstantiatingTemplate::CheckInstantiationDepth(
403                                         SourceLocation PointOfInstantiation,
404                                            SourceRange InstantiationRange) {
405   assert(SemaRef.NonInstantiationEntries <=
406          SemaRef.CodeSynthesisContexts.size());
407   if ((SemaRef.CodeSynthesisContexts.size() -
408           SemaRef.NonInstantiationEntries)
409         <= SemaRef.getLangOpts().InstantiationDepth)
410     return false;
411 
412   SemaRef.Diag(PointOfInstantiation,
413                diag::err_template_recursion_depth_exceeded)
414     << SemaRef.getLangOpts().InstantiationDepth
415     << InstantiationRange;
416   SemaRef.Diag(PointOfInstantiation, diag::note_template_recursion_depth)
417     << SemaRef.getLangOpts().InstantiationDepth;
418   return true;
419 }
420 
421 /// \brief Prints the current instantiation stack through a series of
422 /// notes.
423 void Sema::PrintInstantiationStack() {
424   // Determine which template instantiations to skip, if any.
425   unsigned SkipStart = CodeSynthesisContexts.size(), SkipEnd = SkipStart;
426   unsigned Limit = Diags.getTemplateBacktraceLimit();
427   if (Limit && Limit < CodeSynthesisContexts.size()) {
428     SkipStart = Limit / 2 + Limit % 2;
429     SkipEnd = CodeSynthesisContexts.size() - Limit / 2;
430   }
431 
432   // FIXME: In all of these cases, we need to show the template arguments
433   unsigned InstantiationIdx = 0;
434   for (SmallVectorImpl<CodeSynthesisContext>::reverse_iterator
435          Active = CodeSynthesisContexts.rbegin(),
436          ActiveEnd = CodeSynthesisContexts.rend();
437        Active != ActiveEnd;
438        ++Active, ++InstantiationIdx) {
439     // Skip this instantiation?
440     if (InstantiationIdx >= SkipStart && InstantiationIdx < SkipEnd) {
441       if (InstantiationIdx == SkipStart) {
442         // Note that we're skipping instantiations.
443         Diags.Report(Active->PointOfInstantiation,
444                      diag::note_instantiation_contexts_suppressed)
445           << unsigned(CodeSynthesisContexts.size() - Limit);
446       }
447       continue;
448     }
449 
450     switch (Active->Kind) {
451     case CodeSynthesisContext::TemplateInstantiation: {
452       Decl *D = Active->Entity;
453       if (CXXRecordDecl *Record = dyn_cast<CXXRecordDecl>(D)) {
454         unsigned DiagID = diag::note_template_member_class_here;
455         if (isa<ClassTemplateSpecializationDecl>(Record))
456           DiagID = diag::note_template_class_instantiation_here;
457         Diags.Report(Active->PointOfInstantiation, DiagID)
458           << Record << Active->InstantiationRange;
459       } else if (FunctionDecl *Function = dyn_cast<FunctionDecl>(D)) {
460         unsigned DiagID;
461         if (Function->getPrimaryTemplate())
462           DiagID = diag::note_function_template_spec_here;
463         else
464           DiagID = diag::note_template_member_function_here;
465         Diags.Report(Active->PointOfInstantiation, DiagID)
466           << Function
467           << Active->InstantiationRange;
468       } else if (VarDecl *VD = dyn_cast<VarDecl>(D)) {
469         Diags.Report(Active->PointOfInstantiation,
470                      VD->isStaticDataMember()?
471                        diag::note_template_static_data_member_def_here
472                      : diag::note_template_variable_def_here)
473           << VD
474           << Active->InstantiationRange;
475       } else if (EnumDecl *ED = dyn_cast<EnumDecl>(D)) {
476         Diags.Report(Active->PointOfInstantiation,
477                      diag::note_template_enum_def_here)
478           << ED
479           << Active->InstantiationRange;
480       } else if (FieldDecl *FD = dyn_cast<FieldDecl>(D)) {
481         Diags.Report(Active->PointOfInstantiation,
482                      diag::note_template_nsdmi_here)
483             << FD << Active->InstantiationRange;
484       } else {
485         Diags.Report(Active->PointOfInstantiation,
486                      diag::note_template_type_alias_instantiation_here)
487           << cast<TypeAliasTemplateDecl>(D)
488           << Active->InstantiationRange;
489       }
490       break;
491     }
492 
493     case CodeSynthesisContext::DefaultTemplateArgumentInstantiation: {
494       TemplateDecl *Template = cast<TemplateDecl>(Active->Template);
495       SmallVector<char, 128> TemplateArgsStr;
496       llvm::raw_svector_ostream OS(TemplateArgsStr);
497       Template->printName(OS);
498       TemplateSpecializationType::PrintTemplateArgumentList(
499           OS, Active->template_arguments(), getPrintingPolicy());
500       Diags.Report(Active->PointOfInstantiation,
501                    diag::note_default_arg_instantiation_here)
502         << OS.str()
503         << Active->InstantiationRange;
504       break;
505     }
506 
507     case CodeSynthesisContext::ExplicitTemplateArgumentSubstitution: {
508       FunctionTemplateDecl *FnTmpl = cast<FunctionTemplateDecl>(Active->Entity);
509       Diags.Report(Active->PointOfInstantiation,
510                    diag::note_explicit_template_arg_substitution_here)
511         << FnTmpl
512         << getTemplateArgumentBindingsText(FnTmpl->getTemplateParameters(),
513                                            Active->TemplateArgs,
514                                            Active->NumTemplateArgs)
515         << Active->InstantiationRange;
516       break;
517     }
518 
519     case CodeSynthesisContext::DeducedTemplateArgumentSubstitution: {
520       if (FunctionTemplateDecl *FnTmpl =
521               dyn_cast<FunctionTemplateDecl>(Active->Entity)) {
522         Diags.Report(Active->PointOfInstantiation,
523                      diag::note_function_template_deduction_instantiation_here)
524           << FnTmpl
525           << getTemplateArgumentBindingsText(FnTmpl->getTemplateParameters(),
526                                              Active->TemplateArgs,
527                                              Active->NumTemplateArgs)
528           << Active->InstantiationRange;
529       } else {
530         bool IsVar = isa<VarTemplateDecl>(Active->Entity) ||
531                      isa<VarTemplateSpecializationDecl>(Active->Entity);
532         bool IsTemplate = false;
533         TemplateParameterList *Params;
534         if (auto *D = dyn_cast<TemplateDecl>(Active->Entity)) {
535           IsTemplate = true;
536           Params = D->getTemplateParameters();
537         } else if (auto *D = dyn_cast<ClassTemplatePartialSpecializationDecl>(
538                        Active->Entity)) {
539           Params = D->getTemplateParameters();
540         } else if (auto *D = dyn_cast<VarTemplatePartialSpecializationDecl>(
541                        Active->Entity)) {
542           Params = D->getTemplateParameters();
543         } else {
544           llvm_unreachable("unexpected template kind");
545         }
546 
547         Diags.Report(Active->PointOfInstantiation,
548                      diag::note_deduced_template_arg_substitution_here)
549           << IsVar << IsTemplate << cast<NamedDecl>(Active->Entity)
550           << getTemplateArgumentBindingsText(Params, Active->TemplateArgs,
551                                              Active->NumTemplateArgs)
552           << Active->InstantiationRange;
553       }
554       break;
555     }
556 
557     case CodeSynthesisContext::DefaultFunctionArgumentInstantiation: {
558       ParmVarDecl *Param = cast<ParmVarDecl>(Active->Entity);
559       FunctionDecl *FD = cast<FunctionDecl>(Param->getDeclContext());
560 
561       SmallVector<char, 128> TemplateArgsStr;
562       llvm::raw_svector_ostream OS(TemplateArgsStr);
563       FD->printName(OS);
564       TemplateSpecializationType::PrintTemplateArgumentList(
565           OS, Active->template_arguments(), getPrintingPolicy());
566       Diags.Report(Active->PointOfInstantiation,
567                    diag::note_default_function_arg_instantiation_here)
568         << OS.str()
569         << Active->InstantiationRange;
570       break;
571     }
572 
573     case CodeSynthesisContext::PriorTemplateArgumentSubstitution: {
574       NamedDecl *Parm = cast<NamedDecl>(Active->Entity);
575       std::string Name;
576       if (!Parm->getName().empty())
577         Name = std::string(" '") + Parm->getName().str() + "'";
578 
579       TemplateParameterList *TemplateParams = nullptr;
580       if (TemplateDecl *Template = dyn_cast<TemplateDecl>(Active->Template))
581         TemplateParams = Template->getTemplateParameters();
582       else
583         TemplateParams =
584           cast<ClassTemplatePartialSpecializationDecl>(Active->Template)
585                                                       ->getTemplateParameters();
586       Diags.Report(Active->PointOfInstantiation,
587                    diag::note_prior_template_arg_substitution)
588         << isa<TemplateTemplateParmDecl>(Parm)
589         << Name
590         << getTemplateArgumentBindingsText(TemplateParams,
591                                            Active->TemplateArgs,
592                                            Active->NumTemplateArgs)
593         << Active->InstantiationRange;
594       break;
595     }
596 
597     case CodeSynthesisContext::DefaultTemplateArgumentChecking: {
598       TemplateParameterList *TemplateParams = nullptr;
599       if (TemplateDecl *Template = dyn_cast<TemplateDecl>(Active->Template))
600         TemplateParams = Template->getTemplateParameters();
601       else
602         TemplateParams =
603           cast<ClassTemplatePartialSpecializationDecl>(Active->Template)
604                                                       ->getTemplateParameters();
605 
606       Diags.Report(Active->PointOfInstantiation,
607                    diag::note_template_default_arg_checking)
608         << getTemplateArgumentBindingsText(TemplateParams,
609                                            Active->TemplateArgs,
610                                            Active->NumTemplateArgs)
611         << Active->InstantiationRange;
612       break;
613     }
614 
615     case CodeSynthesisContext::ExceptionSpecInstantiation:
616       Diags.Report(Active->PointOfInstantiation,
617                    diag::note_template_exception_spec_instantiation_here)
618         << cast<FunctionDecl>(Active->Entity)
619         << Active->InstantiationRange;
620       break;
621 
622     case CodeSynthesisContext::DeclaringSpecialMember:
623       Diags.Report(Active->PointOfInstantiation,
624                    diag::note_in_declaration_of_implicit_special_member)
625         << cast<CXXRecordDecl>(Active->Entity) << Active->SpecialMember;
626       break;
627     }
628   }
629 }
630 
631 Optional<TemplateDeductionInfo *> Sema::isSFINAEContext() const {
632   if (InNonInstantiationSFINAEContext)
633     return Optional<TemplateDeductionInfo *>(nullptr);
634 
635   for (SmallVectorImpl<CodeSynthesisContext>::const_reverse_iterator
636          Active = CodeSynthesisContexts.rbegin(),
637          ActiveEnd = CodeSynthesisContexts.rend();
638        Active != ActiveEnd;
639        ++Active)
640   {
641     switch (Active->Kind) {
642     case CodeSynthesisContext::TemplateInstantiation:
643       // An instantiation of an alias template may or may not be a SFINAE
644       // context, depending on what else is on the stack.
645       if (isa<TypeAliasTemplateDecl>(Active->Entity))
646         break;
647       // Fall through.
648     case CodeSynthesisContext::DefaultFunctionArgumentInstantiation:
649     case CodeSynthesisContext::ExceptionSpecInstantiation:
650       // This is a template instantiation, so there is no SFINAE.
651       return None;
652 
653     case CodeSynthesisContext::DefaultTemplateArgumentInstantiation:
654     case CodeSynthesisContext::PriorTemplateArgumentSubstitution:
655     case CodeSynthesisContext::DefaultTemplateArgumentChecking:
656       // A default template argument instantiation and substitution into
657       // template parameters with arguments for prior parameters may or may
658       // not be a SFINAE context; look further up the stack.
659       break;
660 
661     case CodeSynthesisContext::ExplicitTemplateArgumentSubstitution:
662     case CodeSynthesisContext::DeducedTemplateArgumentSubstitution:
663       // We're either substitution explicitly-specified template arguments
664       // or deduced template arguments, so SFINAE applies.
665       assert(Active->DeductionInfo && "Missing deduction info pointer");
666       return Active->DeductionInfo;
667 
668     case CodeSynthesisContext::DeclaringSpecialMember:
669       // This happens in a context unrelated to template instantiation, so
670       // there is no SFINAE.
671       return None;
672     }
673 
674     // The inner context was transparent for SFINAE. If it occurred within a
675     // non-instantiation SFINAE context, then SFINAE applies.
676     if (Active->SavedInNonInstantiationSFINAEContext)
677       return Optional<TemplateDeductionInfo *>(nullptr);
678   }
679 
680   return None;
681 }
682 
683 /// \brief Retrieve the depth and index of a parameter pack.
684 static std::pair<unsigned, unsigned>
685 getDepthAndIndex(NamedDecl *ND) {
686   if (TemplateTypeParmDecl *TTP = dyn_cast<TemplateTypeParmDecl>(ND))
687     return std::make_pair(TTP->getDepth(), TTP->getIndex());
688 
689   if (NonTypeTemplateParmDecl *NTTP = dyn_cast<NonTypeTemplateParmDecl>(ND))
690     return std::make_pair(NTTP->getDepth(), NTTP->getIndex());
691 
692   TemplateTemplateParmDecl *TTP = cast<TemplateTemplateParmDecl>(ND);
693   return std::make_pair(TTP->getDepth(), TTP->getIndex());
694 }
695 
696 //===----------------------------------------------------------------------===/
697 // Template Instantiation for Types
698 //===----------------------------------------------------------------------===/
699 namespace {
700   class TemplateInstantiator : public TreeTransform<TemplateInstantiator> {
701     const MultiLevelTemplateArgumentList &TemplateArgs;
702     SourceLocation Loc;
703     DeclarationName Entity;
704 
705   public:
706     typedef TreeTransform<TemplateInstantiator> inherited;
707 
708     TemplateInstantiator(Sema &SemaRef,
709                          const MultiLevelTemplateArgumentList &TemplateArgs,
710                          SourceLocation Loc,
711                          DeclarationName Entity)
712       : inherited(SemaRef), TemplateArgs(TemplateArgs), Loc(Loc),
713         Entity(Entity) { }
714 
715     /// \brief Determine whether the given type \p T has already been
716     /// transformed.
717     ///
718     /// For the purposes of template instantiation, a type has already been
719     /// transformed if it is NULL or if it is not dependent.
720     bool AlreadyTransformed(QualType T);
721 
722     /// \brief Returns the location of the entity being instantiated, if known.
723     SourceLocation getBaseLocation() { return Loc; }
724 
725     /// \brief Returns the name of the entity being instantiated, if any.
726     DeclarationName getBaseEntity() { return Entity; }
727 
728     /// \brief Sets the "base" location and entity when that
729     /// information is known based on another transformation.
730     void setBase(SourceLocation Loc, DeclarationName Entity) {
731       this->Loc = Loc;
732       this->Entity = Entity;
733     }
734 
735     bool TryExpandParameterPacks(SourceLocation EllipsisLoc,
736                                  SourceRange PatternRange,
737                                  ArrayRef<UnexpandedParameterPack> Unexpanded,
738                                  bool &ShouldExpand, bool &RetainExpansion,
739                                  Optional<unsigned> &NumExpansions) {
740       return getSema().CheckParameterPacksForExpansion(EllipsisLoc,
741                                                        PatternRange, Unexpanded,
742                                                        TemplateArgs,
743                                                        ShouldExpand,
744                                                        RetainExpansion,
745                                                        NumExpansions);
746     }
747 
748     void ExpandingFunctionParameterPack(ParmVarDecl *Pack) {
749       SemaRef.CurrentInstantiationScope->MakeInstantiatedLocalArgPack(Pack);
750     }
751 
752     TemplateArgument ForgetPartiallySubstitutedPack() {
753       TemplateArgument Result;
754       if (NamedDecl *PartialPack
755             = SemaRef.CurrentInstantiationScope->getPartiallySubstitutedPack()){
756         MultiLevelTemplateArgumentList &TemplateArgs
757           = const_cast<MultiLevelTemplateArgumentList &>(this->TemplateArgs);
758         unsigned Depth, Index;
759         std::tie(Depth, Index) = getDepthAndIndex(PartialPack);
760         if (TemplateArgs.hasTemplateArgument(Depth, Index)) {
761           Result = TemplateArgs(Depth, Index);
762           TemplateArgs.setArgument(Depth, Index, TemplateArgument());
763         }
764       }
765 
766       return Result;
767     }
768 
769     void RememberPartiallySubstitutedPack(TemplateArgument Arg) {
770       if (Arg.isNull())
771         return;
772 
773       if (NamedDecl *PartialPack
774             = SemaRef.CurrentInstantiationScope->getPartiallySubstitutedPack()){
775         MultiLevelTemplateArgumentList &TemplateArgs
776         = const_cast<MultiLevelTemplateArgumentList &>(this->TemplateArgs);
777         unsigned Depth, Index;
778         std::tie(Depth, Index) = getDepthAndIndex(PartialPack);
779         TemplateArgs.setArgument(Depth, Index, Arg);
780       }
781     }
782 
783     /// \brief Transform the given declaration by instantiating a reference to
784     /// this declaration.
785     Decl *TransformDecl(SourceLocation Loc, Decl *D);
786 
787     void transformAttrs(Decl *Old, Decl *New) {
788       SemaRef.InstantiateAttrs(TemplateArgs, Old, New);
789     }
790 
791     void transformedLocalDecl(Decl *Old, Decl *New) {
792       // If we've instantiated the call operator of a lambda or the call
793       // operator template of a generic lambda, update the "instantiation of"
794       // information.
795       auto *NewMD = dyn_cast<CXXMethodDecl>(New);
796       if (NewMD && isLambdaCallOperator(NewMD)) {
797         auto *OldMD = dyn_cast<CXXMethodDecl>(Old);
798         if (auto *NewTD = NewMD->getDescribedFunctionTemplate())
799           NewTD->setInstantiatedFromMemberTemplate(
800               OldMD->getDescribedFunctionTemplate());
801         else
802           NewMD->setInstantiationOfMemberFunction(OldMD,
803                                                   TSK_ImplicitInstantiation);
804       }
805 
806       SemaRef.CurrentInstantiationScope->InstantiatedLocal(Old, New);
807 
808       // We recreated a local declaration, but not by instantiating it. There
809       // may be pending dependent diagnostics to produce.
810       if (auto *DC = dyn_cast<DeclContext>(Old))
811         SemaRef.PerformDependentDiagnostics(DC, TemplateArgs);
812     }
813 
814     /// \brief Transform the definition of the given declaration by
815     /// instantiating it.
816     Decl *TransformDefinition(SourceLocation Loc, Decl *D);
817 
818     /// \brief Transform the first qualifier within a scope by instantiating the
819     /// declaration.
820     NamedDecl *TransformFirstQualifierInScope(NamedDecl *D, SourceLocation Loc);
821 
822     /// \brief Rebuild the exception declaration and register the declaration
823     /// as an instantiated local.
824     VarDecl *RebuildExceptionDecl(VarDecl *ExceptionDecl,
825                                   TypeSourceInfo *Declarator,
826                                   SourceLocation StartLoc,
827                                   SourceLocation NameLoc,
828                                   IdentifierInfo *Name);
829 
830     /// \brief Rebuild the Objective-C exception declaration and register the
831     /// declaration as an instantiated local.
832     VarDecl *RebuildObjCExceptionDecl(VarDecl *ExceptionDecl,
833                                       TypeSourceInfo *TSInfo, QualType T);
834 
835     /// \brief Check for tag mismatches when instantiating an
836     /// elaborated type.
837     QualType RebuildElaboratedType(SourceLocation KeywordLoc,
838                                    ElaboratedTypeKeyword Keyword,
839                                    NestedNameSpecifierLoc QualifierLoc,
840                                    QualType T);
841 
842     TemplateName
843     TransformTemplateName(CXXScopeSpec &SS, TemplateName Name,
844                           SourceLocation NameLoc,
845                           QualType ObjectType = QualType(),
846                           NamedDecl *FirstQualifierInScope = nullptr,
847                           bool AllowInjectedClassName = false);
848 
849     const LoopHintAttr *TransformLoopHintAttr(const LoopHintAttr *LH);
850 
851     ExprResult TransformPredefinedExpr(PredefinedExpr *E);
852     ExprResult TransformDeclRefExpr(DeclRefExpr *E);
853     ExprResult TransformCXXDefaultArgExpr(CXXDefaultArgExpr *E);
854 
855     ExprResult TransformTemplateParmRefExpr(DeclRefExpr *E,
856                                             NonTypeTemplateParmDecl *D);
857     ExprResult TransformSubstNonTypeTemplateParmPackExpr(
858                                            SubstNonTypeTemplateParmPackExpr *E);
859 
860     /// \brief Rebuild a DeclRefExpr for a ParmVarDecl reference.
861     ExprResult RebuildParmVarDeclRefExpr(ParmVarDecl *PD, SourceLocation Loc);
862 
863     /// \brief Transform a reference to a function parameter pack.
864     ExprResult TransformFunctionParmPackRefExpr(DeclRefExpr *E,
865                                                 ParmVarDecl *PD);
866 
867     /// \brief Transform a FunctionParmPackExpr which was built when we couldn't
868     /// expand a function parameter pack reference which refers to an expanded
869     /// pack.
870     ExprResult TransformFunctionParmPackExpr(FunctionParmPackExpr *E);
871 
872     QualType TransformFunctionProtoType(TypeLocBuilder &TLB,
873                                         FunctionProtoTypeLoc TL) {
874       // Call the base version; it will forward to our overridden version below.
875       return inherited::TransformFunctionProtoType(TLB, TL);
876     }
877 
878     template<typename Fn>
879     QualType TransformFunctionProtoType(TypeLocBuilder &TLB,
880                                         FunctionProtoTypeLoc TL,
881                                         CXXRecordDecl *ThisContext,
882                                         unsigned ThisTypeQuals,
883                                         Fn TransformExceptionSpec);
884 
885     ParmVarDecl *TransformFunctionTypeParam(ParmVarDecl *OldParm,
886                                             int indexAdjustment,
887                                             Optional<unsigned> NumExpansions,
888                                             bool ExpectParameterPack);
889 
890     /// \brief Transforms a template type parameter type by performing
891     /// substitution of the corresponding template type argument.
892     QualType TransformTemplateTypeParmType(TypeLocBuilder &TLB,
893                                            TemplateTypeParmTypeLoc TL);
894 
895     /// \brief Transforms an already-substituted template type parameter pack
896     /// into either itself (if we aren't substituting into its pack expansion)
897     /// or the appropriate substituted argument.
898     QualType TransformSubstTemplateTypeParmPackType(TypeLocBuilder &TLB,
899                                            SubstTemplateTypeParmPackTypeLoc TL);
900 
901     ExprResult TransformLambdaExpr(LambdaExpr *E) {
902       LocalInstantiationScope Scope(SemaRef, /*CombineWithOuterScope=*/true);
903       return TreeTransform<TemplateInstantiator>::TransformLambdaExpr(E);
904     }
905 
906     TemplateParameterList *TransformTemplateParameterList(
907                               TemplateParameterList *OrigTPL)  {
908       if (!OrigTPL || !OrigTPL->size()) return OrigTPL;
909 
910       DeclContext *Owner = OrigTPL->getParam(0)->getDeclContext();
911       TemplateDeclInstantiator  DeclInstantiator(getSema(),
912                         /* DeclContext *Owner */ Owner, TemplateArgs);
913       return DeclInstantiator.SubstTemplateParams(OrigTPL);
914     }
915   private:
916     ExprResult transformNonTypeTemplateParmRef(NonTypeTemplateParmDecl *parm,
917                                                SourceLocation loc,
918                                                TemplateArgument arg);
919   };
920 }
921 
922 bool TemplateInstantiator::AlreadyTransformed(QualType T) {
923   if (T.isNull())
924     return true;
925 
926   if (T->isInstantiationDependentType() || T->isVariablyModifiedType())
927     return false;
928 
929   getSema().MarkDeclarationsReferencedInType(Loc, T);
930   return true;
931 }
932 
933 static TemplateArgument
934 getPackSubstitutedTemplateArgument(Sema &S, TemplateArgument Arg) {
935   assert(S.ArgumentPackSubstitutionIndex >= 0);
936   assert(S.ArgumentPackSubstitutionIndex < (int)Arg.pack_size());
937   Arg = Arg.pack_begin()[S.ArgumentPackSubstitutionIndex];
938   if (Arg.isPackExpansion())
939     Arg = Arg.getPackExpansionPattern();
940   return Arg;
941 }
942 
943 Decl *TemplateInstantiator::TransformDecl(SourceLocation Loc, Decl *D) {
944   if (!D)
945     return nullptr;
946 
947   if (TemplateTemplateParmDecl *TTP = dyn_cast<TemplateTemplateParmDecl>(D)) {
948     if (TTP->getDepth() < TemplateArgs.getNumLevels()) {
949       // If the corresponding template argument is NULL or non-existent, it's
950       // because we are performing instantiation from explicitly-specified
951       // template arguments in a function template, but there were some
952       // arguments left unspecified.
953       if (!TemplateArgs.hasTemplateArgument(TTP->getDepth(),
954                                             TTP->getPosition()))
955         return D;
956 
957       TemplateArgument Arg = TemplateArgs(TTP->getDepth(), TTP->getPosition());
958 
959       if (TTP->isParameterPack()) {
960         assert(Arg.getKind() == TemplateArgument::Pack &&
961                "Missing argument pack");
962         Arg = getPackSubstitutedTemplateArgument(getSema(), Arg);
963       }
964 
965       TemplateName Template = Arg.getAsTemplate();
966       assert(!Template.isNull() && Template.getAsTemplateDecl() &&
967              "Wrong kind of template template argument");
968       return Template.getAsTemplateDecl();
969     }
970 
971     // Fall through to find the instantiated declaration for this template
972     // template parameter.
973   }
974 
975   return SemaRef.FindInstantiatedDecl(Loc, cast<NamedDecl>(D), TemplateArgs);
976 }
977 
978 Decl *TemplateInstantiator::TransformDefinition(SourceLocation Loc, Decl *D) {
979   Decl *Inst = getSema().SubstDecl(D, getSema().CurContext, TemplateArgs);
980   if (!Inst)
981     return nullptr;
982 
983   getSema().CurrentInstantiationScope->InstantiatedLocal(D, Inst);
984   return Inst;
985 }
986 
987 NamedDecl *
988 TemplateInstantiator::TransformFirstQualifierInScope(NamedDecl *D,
989                                                      SourceLocation Loc) {
990   // If the first part of the nested-name-specifier was a template type
991   // parameter, instantiate that type parameter down to a tag type.
992   if (TemplateTypeParmDecl *TTPD = dyn_cast_or_null<TemplateTypeParmDecl>(D)) {
993     const TemplateTypeParmType *TTP
994       = cast<TemplateTypeParmType>(getSema().Context.getTypeDeclType(TTPD));
995 
996     if (TTP->getDepth() < TemplateArgs.getNumLevels()) {
997       // FIXME: This needs testing w/ member access expressions.
998       TemplateArgument Arg = TemplateArgs(TTP->getDepth(), TTP->getIndex());
999 
1000       if (TTP->isParameterPack()) {
1001         assert(Arg.getKind() == TemplateArgument::Pack &&
1002                "Missing argument pack");
1003 
1004         if (getSema().ArgumentPackSubstitutionIndex == -1)
1005           return nullptr;
1006 
1007         Arg = getPackSubstitutedTemplateArgument(getSema(), Arg);
1008       }
1009 
1010       QualType T = Arg.getAsType();
1011       if (T.isNull())
1012         return cast_or_null<NamedDecl>(TransformDecl(Loc, D));
1013 
1014       if (const TagType *Tag = T->getAs<TagType>())
1015         return Tag->getDecl();
1016 
1017       // The resulting type is not a tag; complain.
1018       getSema().Diag(Loc, diag::err_nested_name_spec_non_tag) << T;
1019       return nullptr;
1020     }
1021   }
1022 
1023   return cast_or_null<NamedDecl>(TransformDecl(Loc, D));
1024 }
1025 
1026 VarDecl *
1027 TemplateInstantiator::RebuildExceptionDecl(VarDecl *ExceptionDecl,
1028                                            TypeSourceInfo *Declarator,
1029                                            SourceLocation StartLoc,
1030                                            SourceLocation NameLoc,
1031                                            IdentifierInfo *Name) {
1032   VarDecl *Var = inherited::RebuildExceptionDecl(ExceptionDecl, Declarator,
1033                                                  StartLoc, NameLoc, Name);
1034   if (Var)
1035     getSema().CurrentInstantiationScope->InstantiatedLocal(ExceptionDecl, Var);
1036   return Var;
1037 }
1038 
1039 VarDecl *TemplateInstantiator::RebuildObjCExceptionDecl(VarDecl *ExceptionDecl,
1040                                                         TypeSourceInfo *TSInfo,
1041                                                         QualType T) {
1042   VarDecl *Var = inherited::RebuildObjCExceptionDecl(ExceptionDecl, TSInfo, T);
1043   if (Var)
1044     getSema().CurrentInstantiationScope->InstantiatedLocal(ExceptionDecl, Var);
1045   return Var;
1046 }
1047 
1048 QualType
1049 TemplateInstantiator::RebuildElaboratedType(SourceLocation KeywordLoc,
1050                                             ElaboratedTypeKeyword Keyword,
1051                                             NestedNameSpecifierLoc QualifierLoc,
1052                                             QualType T) {
1053   if (const TagType *TT = T->getAs<TagType>()) {
1054     TagDecl* TD = TT->getDecl();
1055 
1056     SourceLocation TagLocation = KeywordLoc;
1057 
1058     IdentifierInfo *Id = TD->getIdentifier();
1059 
1060     // TODO: should we even warn on struct/class mismatches for this?  Seems
1061     // like it's likely to produce a lot of spurious errors.
1062     if (Id && Keyword != ETK_None && Keyword != ETK_Typename) {
1063       TagTypeKind Kind = TypeWithKeyword::getTagTypeKindForKeyword(Keyword);
1064       if (!SemaRef.isAcceptableTagRedeclaration(TD, Kind, /*isDefinition*/false,
1065                                                 TagLocation, Id)) {
1066         SemaRef.Diag(TagLocation, diag::err_use_with_wrong_tag)
1067           << Id
1068           << FixItHint::CreateReplacement(SourceRange(TagLocation),
1069                                           TD->getKindName());
1070         SemaRef.Diag(TD->getLocation(), diag::note_previous_use);
1071       }
1072     }
1073   }
1074 
1075   return TreeTransform<TemplateInstantiator>::RebuildElaboratedType(KeywordLoc,
1076                                                                     Keyword,
1077                                                                   QualifierLoc,
1078                                                                     T);
1079 }
1080 
1081 TemplateName TemplateInstantiator::TransformTemplateName(
1082     CXXScopeSpec &SS, TemplateName Name, SourceLocation NameLoc,
1083     QualType ObjectType, NamedDecl *FirstQualifierInScope,
1084     bool AllowInjectedClassName) {
1085   if (TemplateTemplateParmDecl *TTP
1086        = dyn_cast_or_null<TemplateTemplateParmDecl>(Name.getAsTemplateDecl())) {
1087     if (TTP->getDepth() < TemplateArgs.getNumLevels()) {
1088       // If the corresponding template argument is NULL or non-existent, it's
1089       // because we are performing instantiation from explicitly-specified
1090       // template arguments in a function template, but there were some
1091       // arguments left unspecified.
1092       if (!TemplateArgs.hasTemplateArgument(TTP->getDepth(),
1093                                             TTP->getPosition()))
1094         return Name;
1095 
1096       TemplateArgument Arg = TemplateArgs(TTP->getDepth(), TTP->getPosition());
1097 
1098       if (TTP->isParameterPack()) {
1099         assert(Arg.getKind() == TemplateArgument::Pack &&
1100                "Missing argument pack");
1101 
1102         if (getSema().ArgumentPackSubstitutionIndex == -1) {
1103           // We have the template argument pack to substitute, but we're not
1104           // actually expanding the enclosing pack expansion yet. So, just
1105           // keep the entire argument pack.
1106           return getSema().Context.getSubstTemplateTemplateParmPack(TTP, Arg);
1107         }
1108 
1109         Arg = getPackSubstitutedTemplateArgument(getSema(), Arg);
1110       }
1111 
1112       TemplateName Template = Arg.getAsTemplate();
1113       assert(!Template.isNull() && "Null template template argument");
1114 
1115       // We don't ever want to substitute for a qualified template name, since
1116       // the qualifier is handled separately. So, look through the qualified
1117       // template name to its underlying declaration.
1118       if (QualifiedTemplateName *QTN = Template.getAsQualifiedTemplateName())
1119         Template = TemplateName(QTN->getTemplateDecl());
1120 
1121       Template = getSema().Context.getSubstTemplateTemplateParm(TTP, Template);
1122       return Template;
1123     }
1124   }
1125 
1126   if (SubstTemplateTemplateParmPackStorage *SubstPack
1127       = Name.getAsSubstTemplateTemplateParmPack()) {
1128     if (getSema().ArgumentPackSubstitutionIndex == -1)
1129       return Name;
1130 
1131     TemplateArgument Arg = SubstPack->getArgumentPack();
1132     Arg = getPackSubstitutedTemplateArgument(getSema(), Arg);
1133     return Arg.getAsTemplate();
1134   }
1135 
1136   return inherited::TransformTemplateName(SS, Name, NameLoc, ObjectType,
1137                                           FirstQualifierInScope,
1138                                           AllowInjectedClassName);
1139 }
1140 
1141 ExprResult
1142 TemplateInstantiator::TransformPredefinedExpr(PredefinedExpr *E) {
1143   if (!E->isTypeDependent())
1144     return E;
1145 
1146   return getSema().BuildPredefinedExpr(E->getLocation(), E->getIdentType());
1147 }
1148 
1149 ExprResult
1150 TemplateInstantiator::TransformTemplateParmRefExpr(DeclRefExpr *E,
1151                                                NonTypeTemplateParmDecl *NTTP) {
1152   // If the corresponding template argument is NULL or non-existent, it's
1153   // because we are performing instantiation from explicitly-specified
1154   // template arguments in a function template, but there were some
1155   // arguments left unspecified.
1156   if (!TemplateArgs.hasTemplateArgument(NTTP->getDepth(),
1157                                         NTTP->getPosition()))
1158     return E;
1159 
1160   TemplateArgument Arg = TemplateArgs(NTTP->getDepth(), NTTP->getPosition());
1161 
1162   if (TemplateArgs.getNumLevels() != TemplateArgs.getNumSubstitutedLevels()) {
1163     // We're performing a partial substitution, so the substituted argument
1164     // could be dependent. As a result we can't create a SubstNonType*Expr
1165     // node now, since that represents a fully-substituted argument.
1166     // FIXME: We should have some AST representation for this.
1167     if (Arg.getKind() == TemplateArgument::Pack) {
1168       // FIXME: This won't work for alias templates.
1169       assert(Arg.pack_size() == 1 && Arg.pack_begin()->isPackExpansion() &&
1170              "unexpected pack arguments in partial substitution");
1171       Arg = Arg.pack_begin()->getPackExpansionPattern();
1172     }
1173     assert(Arg.getKind() == TemplateArgument::Expression &&
1174            "unexpected nontype template argument kind in partial substitution");
1175     return Arg.getAsExpr();
1176   }
1177 
1178   if (NTTP->isParameterPack()) {
1179     assert(Arg.getKind() == TemplateArgument::Pack &&
1180            "Missing argument pack");
1181 
1182     if (getSema().ArgumentPackSubstitutionIndex == -1) {
1183       // We have an argument pack, but we can't select a particular argument
1184       // out of it yet. Therefore, we'll build an expression to hold on to that
1185       // argument pack.
1186       QualType TargetType = SemaRef.SubstType(NTTP->getType(), TemplateArgs,
1187                                               E->getLocation(),
1188                                               NTTP->getDeclName());
1189       if (TargetType.isNull())
1190         return ExprError();
1191 
1192       return new (SemaRef.Context) SubstNonTypeTemplateParmPackExpr(TargetType,
1193                                                                     NTTP,
1194                                                               E->getLocation(),
1195                                                                     Arg);
1196     }
1197 
1198     Arg = getPackSubstitutedTemplateArgument(getSema(), Arg);
1199   }
1200 
1201   return transformNonTypeTemplateParmRef(NTTP, E->getLocation(), Arg);
1202 }
1203 
1204 const LoopHintAttr *
1205 TemplateInstantiator::TransformLoopHintAttr(const LoopHintAttr *LH) {
1206   Expr *TransformedExpr = getDerived().TransformExpr(LH->getValue()).get();
1207 
1208   if (TransformedExpr == LH->getValue())
1209     return LH;
1210 
1211   // Generate error if there is a problem with the value.
1212   if (getSema().CheckLoopHintExpr(TransformedExpr, LH->getLocation()))
1213     return LH;
1214 
1215   // Create new LoopHintValueAttr with integral expression in place of the
1216   // non-type template parameter.
1217   return LoopHintAttr::CreateImplicit(
1218       getSema().Context, LH->getSemanticSpelling(), LH->getOption(),
1219       LH->getState(), TransformedExpr, LH->getRange());
1220 }
1221 
1222 ExprResult TemplateInstantiator::transformNonTypeTemplateParmRef(
1223                                                  NonTypeTemplateParmDecl *parm,
1224                                                  SourceLocation loc,
1225                                                  TemplateArgument arg) {
1226   ExprResult result;
1227   QualType type;
1228 
1229   // The template argument itself might be an expression, in which
1230   // case we just return that expression.
1231   if (arg.getKind() == TemplateArgument::Expression) {
1232     Expr *argExpr = arg.getAsExpr();
1233     result = argExpr;
1234     type = argExpr->getType();
1235 
1236   } else if (arg.getKind() == TemplateArgument::Declaration ||
1237              arg.getKind() == TemplateArgument::NullPtr) {
1238     ValueDecl *VD;
1239     if (arg.getKind() == TemplateArgument::Declaration) {
1240       VD = cast<ValueDecl>(arg.getAsDecl());
1241 
1242       // Find the instantiation of the template argument.  This is
1243       // required for nested templates.
1244       VD = cast_or_null<ValueDecl>(
1245              getSema().FindInstantiatedDecl(loc, VD, TemplateArgs));
1246       if (!VD)
1247         return ExprError();
1248     } else {
1249       // Propagate NULL template argument.
1250       VD = nullptr;
1251     }
1252 
1253     // Derive the type we want the substituted decl to have.  This had
1254     // better be non-dependent, or these checks will have serious problems.
1255     if (parm->isExpandedParameterPack()) {
1256       type = parm->getExpansionType(SemaRef.ArgumentPackSubstitutionIndex);
1257     } else if (parm->isParameterPack() &&
1258                isa<PackExpansionType>(parm->getType())) {
1259       type = SemaRef.SubstType(
1260                         cast<PackExpansionType>(parm->getType())->getPattern(),
1261                                      TemplateArgs, loc, parm->getDeclName());
1262     } else {
1263       type = SemaRef.SubstType(VD ? arg.getParamTypeForDecl() : arg.getNullPtrType(),
1264                                TemplateArgs, loc, parm->getDeclName());
1265     }
1266     assert(!type.isNull() && "type substitution failed for param type");
1267     assert(!type->isDependentType() && "param type still dependent");
1268     result = SemaRef.BuildExpressionFromDeclTemplateArgument(arg, type, loc);
1269 
1270     if (!result.isInvalid()) type = result.get()->getType();
1271   } else {
1272     result = SemaRef.BuildExpressionFromIntegralTemplateArgument(arg, loc);
1273 
1274     // Note that this type can be different from the type of 'result',
1275     // e.g. if it's an enum type.
1276     type = arg.getIntegralType();
1277   }
1278   if (result.isInvalid()) return ExprError();
1279 
1280   Expr *resultExpr = result.get();
1281   return new (SemaRef.Context) SubstNonTypeTemplateParmExpr(
1282       type, resultExpr->getValueKind(), loc, parm, resultExpr);
1283 }
1284 
1285 ExprResult
1286 TemplateInstantiator::TransformSubstNonTypeTemplateParmPackExpr(
1287                                           SubstNonTypeTemplateParmPackExpr *E) {
1288   if (getSema().ArgumentPackSubstitutionIndex == -1) {
1289     // We aren't expanding the parameter pack, so just return ourselves.
1290     return E;
1291   }
1292 
1293   TemplateArgument Arg = E->getArgumentPack();
1294   Arg = getPackSubstitutedTemplateArgument(getSema(), Arg);
1295   return transformNonTypeTemplateParmRef(E->getParameterPack(),
1296                                          E->getParameterPackLocation(),
1297                                          Arg);
1298 }
1299 
1300 ExprResult
1301 TemplateInstantiator::RebuildParmVarDeclRefExpr(ParmVarDecl *PD,
1302                                                 SourceLocation Loc) {
1303   DeclarationNameInfo NameInfo(PD->getDeclName(), Loc);
1304   return getSema().BuildDeclarationNameExpr(CXXScopeSpec(), NameInfo, PD);
1305 }
1306 
1307 ExprResult
1308 TemplateInstantiator::TransformFunctionParmPackExpr(FunctionParmPackExpr *E) {
1309   if (getSema().ArgumentPackSubstitutionIndex != -1) {
1310     // We can expand this parameter pack now.
1311     ParmVarDecl *D = E->getExpansion(getSema().ArgumentPackSubstitutionIndex);
1312     ValueDecl *VD = cast_or_null<ValueDecl>(TransformDecl(E->getExprLoc(), D));
1313     if (!VD)
1314       return ExprError();
1315     return RebuildParmVarDeclRefExpr(cast<ParmVarDecl>(VD), E->getExprLoc());
1316   }
1317 
1318   QualType T = TransformType(E->getType());
1319   if (T.isNull())
1320     return ExprError();
1321 
1322   // Transform each of the parameter expansions into the corresponding
1323   // parameters in the instantiation of the function decl.
1324   SmallVector<ParmVarDecl *, 8> Parms;
1325   Parms.reserve(E->getNumExpansions());
1326   for (FunctionParmPackExpr::iterator I = E->begin(), End = E->end();
1327        I != End; ++I) {
1328     ParmVarDecl *D =
1329         cast_or_null<ParmVarDecl>(TransformDecl(E->getExprLoc(), *I));
1330     if (!D)
1331       return ExprError();
1332     Parms.push_back(D);
1333   }
1334 
1335   return FunctionParmPackExpr::Create(getSema().Context, T,
1336                                       E->getParameterPack(),
1337                                       E->getParameterPackLocation(), Parms);
1338 }
1339 
1340 ExprResult
1341 TemplateInstantiator::TransformFunctionParmPackRefExpr(DeclRefExpr *E,
1342                                                        ParmVarDecl *PD) {
1343   typedef LocalInstantiationScope::DeclArgumentPack DeclArgumentPack;
1344   llvm::PointerUnion<Decl *, DeclArgumentPack *> *Found
1345     = getSema().CurrentInstantiationScope->findInstantiationOf(PD);
1346   assert(Found && "no instantiation for parameter pack");
1347 
1348   Decl *TransformedDecl;
1349   if (DeclArgumentPack *Pack = Found->dyn_cast<DeclArgumentPack *>()) {
1350     // If this is a reference to a function parameter pack which we can
1351     // substitute but can't yet expand, build a FunctionParmPackExpr for it.
1352     if (getSema().ArgumentPackSubstitutionIndex == -1) {
1353       QualType T = TransformType(E->getType());
1354       if (T.isNull())
1355         return ExprError();
1356       return FunctionParmPackExpr::Create(getSema().Context, T, PD,
1357                                           E->getExprLoc(), *Pack);
1358     }
1359 
1360     TransformedDecl = (*Pack)[getSema().ArgumentPackSubstitutionIndex];
1361   } else {
1362     TransformedDecl = Found->get<Decl*>();
1363   }
1364 
1365   // We have either an unexpanded pack or a specific expansion.
1366   return RebuildParmVarDeclRefExpr(cast<ParmVarDecl>(TransformedDecl),
1367                                    E->getExprLoc());
1368 }
1369 
1370 ExprResult
1371 TemplateInstantiator::TransformDeclRefExpr(DeclRefExpr *E) {
1372   NamedDecl *D = E->getDecl();
1373 
1374   // Handle references to non-type template parameters and non-type template
1375   // parameter packs.
1376   if (NonTypeTemplateParmDecl *NTTP = dyn_cast<NonTypeTemplateParmDecl>(D)) {
1377     if (NTTP->getDepth() < TemplateArgs.getNumLevels())
1378       return TransformTemplateParmRefExpr(E, NTTP);
1379 
1380     // We have a non-type template parameter that isn't fully substituted;
1381     // FindInstantiatedDecl will find it in the local instantiation scope.
1382   }
1383 
1384   // Handle references to function parameter packs.
1385   if (ParmVarDecl *PD = dyn_cast<ParmVarDecl>(D))
1386     if (PD->isParameterPack())
1387       return TransformFunctionParmPackRefExpr(E, PD);
1388 
1389   return TreeTransform<TemplateInstantiator>::TransformDeclRefExpr(E);
1390 }
1391 
1392 ExprResult TemplateInstantiator::TransformCXXDefaultArgExpr(
1393     CXXDefaultArgExpr *E) {
1394   assert(!cast<FunctionDecl>(E->getParam()->getDeclContext())->
1395              getDescribedFunctionTemplate() &&
1396          "Default arg expressions are never formed in dependent cases.");
1397   return SemaRef.BuildCXXDefaultArgExpr(E->getUsedLocation(),
1398                            cast<FunctionDecl>(E->getParam()->getDeclContext()),
1399                                         E->getParam());
1400 }
1401 
1402 template<typename Fn>
1403 QualType TemplateInstantiator::TransformFunctionProtoType(TypeLocBuilder &TLB,
1404                                  FunctionProtoTypeLoc TL,
1405                                  CXXRecordDecl *ThisContext,
1406                                  unsigned ThisTypeQuals,
1407                                  Fn TransformExceptionSpec) {
1408   // We need a local instantiation scope for this function prototype.
1409   LocalInstantiationScope Scope(SemaRef, /*CombineWithOuterScope=*/true);
1410   return inherited::TransformFunctionProtoType(
1411       TLB, TL, ThisContext, ThisTypeQuals, TransformExceptionSpec);
1412 }
1413 
1414 ParmVarDecl *
1415 TemplateInstantiator::TransformFunctionTypeParam(ParmVarDecl *OldParm,
1416                                                  int indexAdjustment,
1417                                                Optional<unsigned> NumExpansions,
1418                                                  bool ExpectParameterPack) {
1419   return SemaRef.SubstParmVarDecl(OldParm, TemplateArgs, indexAdjustment,
1420                                   NumExpansions, ExpectParameterPack);
1421 }
1422 
1423 QualType
1424 TemplateInstantiator::TransformTemplateTypeParmType(TypeLocBuilder &TLB,
1425                                                 TemplateTypeParmTypeLoc TL) {
1426   const TemplateTypeParmType *T = TL.getTypePtr();
1427   if (T->getDepth() < TemplateArgs.getNumLevels()) {
1428     // Replace the template type parameter with its corresponding
1429     // template argument.
1430 
1431     // If the corresponding template argument is NULL or doesn't exist, it's
1432     // because we are performing instantiation from explicitly-specified
1433     // template arguments in a function template class, but there were some
1434     // arguments left unspecified.
1435     if (!TemplateArgs.hasTemplateArgument(T->getDepth(), T->getIndex())) {
1436       TemplateTypeParmTypeLoc NewTL
1437         = TLB.push<TemplateTypeParmTypeLoc>(TL.getType());
1438       NewTL.setNameLoc(TL.getNameLoc());
1439       return TL.getType();
1440     }
1441 
1442     TemplateArgument Arg = TemplateArgs(T->getDepth(), T->getIndex());
1443 
1444     if (T->isParameterPack()) {
1445       assert(Arg.getKind() == TemplateArgument::Pack &&
1446              "Missing argument pack");
1447 
1448       if (getSema().ArgumentPackSubstitutionIndex == -1) {
1449         // We have the template argument pack, but we're not expanding the
1450         // enclosing pack expansion yet. Just save the template argument
1451         // pack for later substitution.
1452         QualType Result
1453           = getSema().Context.getSubstTemplateTypeParmPackType(T, Arg);
1454         SubstTemplateTypeParmPackTypeLoc NewTL
1455           = TLB.push<SubstTemplateTypeParmPackTypeLoc>(Result);
1456         NewTL.setNameLoc(TL.getNameLoc());
1457         return Result;
1458       }
1459 
1460       Arg = getPackSubstitutedTemplateArgument(getSema(), Arg);
1461     }
1462 
1463     assert(Arg.getKind() == TemplateArgument::Type &&
1464            "Template argument kind mismatch");
1465 
1466     QualType Replacement = Arg.getAsType();
1467 
1468     // TODO: only do this uniquing once, at the start of instantiation.
1469     QualType Result
1470       = getSema().Context.getSubstTemplateTypeParmType(T, Replacement);
1471     SubstTemplateTypeParmTypeLoc NewTL
1472       = TLB.push<SubstTemplateTypeParmTypeLoc>(Result);
1473     NewTL.setNameLoc(TL.getNameLoc());
1474     return Result;
1475   }
1476 
1477   // The template type parameter comes from an inner template (e.g.,
1478   // the template parameter list of a member template inside the
1479   // template we are instantiating). Create a new template type
1480   // parameter with the template "level" reduced by one.
1481   TemplateTypeParmDecl *NewTTPDecl = nullptr;
1482   if (TemplateTypeParmDecl *OldTTPDecl = T->getDecl())
1483     NewTTPDecl = cast_or_null<TemplateTypeParmDecl>(
1484                                   TransformDecl(TL.getNameLoc(), OldTTPDecl));
1485 
1486   QualType Result = getSema().Context.getTemplateTypeParmType(
1487       T->getDepth() - TemplateArgs.getNumSubstitutedLevels(), T->getIndex(),
1488       T->isParameterPack(), NewTTPDecl);
1489   TemplateTypeParmTypeLoc NewTL = TLB.push<TemplateTypeParmTypeLoc>(Result);
1490   NewTL.setNameLoc(TL.getNameLoc());
1491   return Result;
1492 }
1493 
1494 QualType
1495 TemplateInstantiator::TransformSubstTemplateTypeParmPackType(
1496                                                             TypeLocBuilder &TLB,
1497                                          SubstTemplateTypeParmPackTypeLoc TL) {
1498   if (getSema().ArgumentPackSubstitutionIndex == -1) {
1499     // We aren't expanding the parameter pack, so just return ourselves.
1500     SubstTemplateTypeParmPackTypeLoc NewTL
1501       = TLB.push<SubstTemplateTypeParmPackTypeLoc>(TL.getType());
1502     NewTL.setNameLoc(TL.getNameLoc());
1503     return TL.getType();
1504   }
1505 
1506   TemplateArgument Arg = TL.getTypePtr()->getArgumentPack();
1507   Arg = getPackSubstitutedTemplateArgument(getSema(), Arg);
1508   QualType Result = Arg.getAsType();
1509 
1510   Result = getSema().Context.getSubstTemplateTypeParmType(
1511                                       TL.getTypePtr()->getReplacedParameter(),
1512                                                           Result);
1513   SubstTemplateTypeParmTypeLoc NewTL
1514     = TLB.push<SubstTemplateTypeParmTypeLoc>(Result);
1515   NewTL.setNameLoc(TL.getNameLoc());
1516   return Result;
1517 }
1518 
1519 /// \brief Perform substitution on the type T with a given set of template
1520 /// arguments.
1521 ///
1522 /// This routine substitutes the given template arguments into the
1523 /// type T and produces the instantiated type.
1524 ///
1525 /// \param T the type into which the template arguments will be
1526 /// substituted. If this type is not dependent, it will be returned
1527 /// immediately.
1528 ///
1529 /// \param Args the template arguments that will be
1530 /// substituted for the top-level template parameters within T.
1531 ///
1532 /// \param Loc the location in the source code where this substitution
1533 /// is being performed. It will typically be the location of the
1534 /// declarator (if we're instantiating the type of some declaration)
1535 /// or the location of the type in the source code (if, e.g., we're
1536 /// instantiating the type of a cast expression).
1537 ///
1538 /// \param Entity the name of the entity associated with a declaration
1539 /// being instantiated (if any). May be empty to indicate that there
1540 /// is no such entity (if, e.g., this is a type that occurs as part of
1541 /// a cast expression) or that the entity has no name (e.g., an
1542 /// unnamed function parameter).
1543 ///
1544 /// \param AllowDeducedTST Whether a DeducedTemplateSpecializationType is
1545 /// acceptable as the top level type of the result.
1546 ///
1547 /// \returns If the instantiation succeeds, the instantiated
1548 /// type. Otherwise, produces diagnostics and returns a NULL type.
1549 TypeSourceInfo *Sema::SubstType(TypeSourceInfo *T,
1550                                 const MultiLevelTemplateArgumentList &Args,
1551                                 SourceLocation Loc,
1552                                 DeclarationName Entity,
1553                                 bool AllowDeducedTST) {
1554   assert(!CodeSynthesisContexts.empty() &&
1555          "Cannot perform an instantiation without some context on the "
1556          "instantiation stack");
1557 
1558   if (!T->getType()->isInstantiationDependentType() &&
1559       !T->getType()->isVariablyModifiedType())
1560     return T;
1561 
1562   TemplateInstantiator Instantiator(*this, Args, Loc, Entity);
1563   return AllowDeducedTST ? Instantiator.TransformTypeWithDeducedTST(T)
1564                          : Instantiator.TransformType(T);
1565 }
1566 
1567 TypeSourceInfo *Sema::SubstType(TypeLoc TL,
1568                                 const MultiLevelTemplateArgumentList &Args,
1569                                 SourceLocation Loc,
1570                                 DeclarationName Entity) {
1571   assert(!CodeSynthesisContexts.empty() &&
1572          "Cannot perform an instantiation without some context on the "
1573          "instantiation stack");
1574 
1575   if (TL.getType().isNull())
1576     return nullptr;
1577 
1578   if (!TL.getType()->isInstantiationDependentType() &&
1579       !TL.getType()->isVariablyModifiedType()) {
1580     // FIXME: Make a copy of the TypeLoc data here, so that we can
1581     // return a new TypeSourceInfo. Inefficient!
1582     TypeLocBuilder TLB;
1583     TLB.pushFullCopy(TL);
1584     return TLB.getTypeSourceInfo(Context, TL.getType());
1585   }
1586 
1587   TemplateInstantiator Instantiator(*this, Args, Loc, Entity);
1588   TypeLocBuilder TLB;
1589   TLB.reserve(TL.getFullDataSize());
1590   QualType Result = Instantiator.TransformType(TLB, TL);
1591   if (Result.isNull())
1592     return nullptr;
1593 
1594   return TLB.getTypeSourceInfo(Context, Result);
1595 }
1596 
1597 /// Deprecated form of the above.
1598 QualType Sema::SubstType(QualType T,
1599                          const MultiLevelTemplateArgumentList &TemplateArgs,
1600                          SourceLocation Loc, DeclarationName Entity) {
1601   assert(!CodeSynthesisContexts.empty() &&
1602          "Cannot perform an instantiation without some context on the "
1603          "instantiation stack");
1604 
1605   // If T is not a dependent type or a variably-modified type, there
1606   // is nothing to do.
1607   if (!T->isInstantiationDependentType() && !T->isVariablyModifiedType())
1608     return T;
1609 
1610   TemplateInstantiator Instantiator(*this, TemplateArgs, Loc, Entity);
1611   return Instantiator.TransformType(T);
1612 }
1613 
1614 static bool NeedsInstantiationAsFunctionType(TypeSourceInfo *T) {
1615   if (T->getType()->isInstantiationDependentType() ||
1616       T->getType()->isVariablyModifiedType())
1617     return true;
1618 
1619   TypeLoc TL = T->getTypeLoc().IgnoreParens();
1620   if (!TL.getAs<FunctionProtoTypeLoc>())
1621     return false;
1622 
1623   FunctionProtoTypeLoc FP = TL.castAs<FunctionProtoTypeLoc>();
1624   for (ParmVarDecl *P : FP.getParams()) {
1625     // This must be synthesized from a typedef.
1626     if (!P) continue;
1627 
1628     // If there are any parameters, a new TypeSourceInfo that refers to the
1629     // instantiated parameters must be built.
1630     return true;
1631   }
1632 
1633   return false;
1634 }
1635 
1636 /// A form of SubstType intended specifically for instantiating the
1637 /// type of a FunctionDecl.  Its purpose is solely to force the
1638 /// instantiation of default-argument expressions and to avoid
1639 /// instantiating an exception-specification.
1640 TypeSourceInfo *Sema::SubstFunctionDeclType(TypeSourceInfo *T,
1641                                 const MultiLevelTemplateArgumentList &Args,
1642                                 SourceLocation Loc,
1643                                 DeclarationName Entity,
1644                                 CXXRecordDecl *ThisContext,
1645                                 unsigned ThisTypeQuals) {
1646   assert(!CodeSynthesisContexts.empty() &&
1647          "Cannot perform an instantiation without some context on the "
1648          "instantiation stack");
1649 
1650   if (!NeedsInstantiationAsFunctionType(T))
1651     return T;
1652 
1653   TemplateInstantiator Instantiator(*this, Args, Loc, Entity);
1654 
1655   TypeLocBuilder TLB;
1656 
1657   TypeLoc TL = T->getTypeLoc();
1658   TLB.reserve(TL.getFullDataSize());
1659 
1660   QualType Result;
1661 
1662   if (FunctionProtoTypeLoc Proto =
1663           TL.IgnoreParens().getAs<FunctionProtoTypeLoc>()) {
1664     // Instantiate the type, other than its exception specification. The
1665     // exception specification is instantiated in InitFunctionInstantiation
1666     // once we've built the FunctionDecl.
1667     // FIXME: Set the exception specification to EST_Uninstantiated here,
1668     // instead of rebuilding the function type again later.
1669     Result = Instantiator.TransformFunctionProtoType(
1670         TLB, Proto, ThisContext, ThisTypeQuals,
1671         [](FunctionProtoType::ExceptionSpecInfo &ESI,
1672            bool &Changed) { return false; });
1673   } else {
1674     Result = Instantiator.TransformType(TLB, TL);
1675   }
1676   if (Result.isNull())
1677     return nullptr;
1678 
1679   return TLB.getTypeSourceInfo(Context, Result);
1680 }
1681 
1682 void Sema::SubstExceptionSpec(FunctionDecl *New, const FunctionProtoType *Proto,
1683                               const MultiLevelTemplateArgumentList &Args) {
1684   FunctionProtoType::ExceptionSpecInfo ESI =
1685       Proto->getExtProtoInfo().ExceptionSpec;
1686   assert(ESI.Type != EST_Uninstantiated);
1687 
1688   TemplateInstantiator Instantiator(*this, Args, New->getLocation(),
1689                                     New->getDeclName());
1690 
1691   SmallVector<QualType, 4> ExceptionStorage;
1692   bool Changed = false;
1693   if (Instantiator.TransformExceptionSpec(
1694           New->getTypeSourceInfo()->getTypeLoc().getLocEnd(), ESI,
1695           ExceptionStorage, Changed))
1696     // On error, recover by dropping the exception specification.
1697     ESI.Type = EST_None;
1698 
1699   UpdateExceptionSpec(New, ESI);
1700 }
1701 
1702 ParmVarDecl *Sema::SubstParmVarDecl(ParmVarDecl *OldParm,
1703                             const MultiLevelTemplateArgumentList &TemplateArgs,
1704                                     int indexAdjustment,
1705                                     Optional<unsigned> NumExpansions,
1706                                     bool ExpectParameterPack) {
1707   TypeSourceInfo *OldDI = OldParm->getTypeSourceInfo();
1708   TypeSourceInfo *NewDI = nullptr;
1709 
1710   TypeLoc OldTL = OldDI->getTypeLoc();
1711   if (PackExpansionTypeLoc ExpansionTL = OldTL.getAs<PackExpansionTypeLoc>()) {
1712 
1713     // We have a function parameter pack. Substitute into the pattern of the
1714     // expansion.
1715     NewDI = SubstType(ExpansionTL.getPatternLoc(), TemplateArgs,
1716                       OldParm->getLocation(), OldParm->getDeclName());
1717     if (!NewDI)
1718       return nullptr;
1719 
1720     if (NewDI->getType()->containsUnexpandedParameterPack()) {
1721       // We still have unexpanded parameter packs, which means that
1722       // our function parameter is still a function parameter pack.
1723       // Therefore, make its type a pack expansion type.
1724       NewDI = CheckPackExpansion(NewDI, ExpansionTL.getEllipsisLoc(),
1725                                  NumExpansions);
1726     } else if (ExpectParameterPack) {
1727       // We expected to get a parameter pack but didn't (because the type
1728       // itself is not a pack expansion type), so complain. This can occur when
1729       // the substitution goes through an alias template that "loses" the
1730       // pack expansion.
1731       Diag(OldParm->getLocation(),
1732            diag::err_function_parameter_pack_without_parameter_packs)
1733         << NewDI->getType();
1734       return nullptr;
1735     }
1736   } else {
1737     NewDI = SubstType(OldDI, TemplateArgs, OldParm->getLocation(),
1738                       OldParm->getDeclName());
1739   }
1740 
1741   if (!NewDI)
1742     return nullptr;
1743 
1744   if (NewDI->getType()->isVoidType()) {
1745     Diag(OldParm->getLocation(), diag::err_param_with_void_type);
1746     return nullptr;
1747   }
1748 
1749   ParmVarDecl *NewParm = CheckParameter(Context.getTranslationUnitDecl(),
1750                                         OldParm->getInnerLocStart(),
1751                                         OldParm->getLocation(),
1752                                         OldParm->getIdentifier(),
1753                                         NewDI->getType(), NewDI,
1754                                         OldParm->getStorageClass());
1755   if (!NewParm)
1756     return nullptr;
1757 
1758   // Mark the (new) default argument as uninstantiated (if any).
1759   if (OldParm->hasUninstantiatedDefaultArg()) {
1760     Expr *Arg = OldParm->getUninstantiatedDefaultArg();
1761     NewParm->setUninstantiatedDefaultArg(Arg);
1762   } else if (OldParm->hasUnparsedDefaultArg()) {
1763     NewParm->setUnparsedDefaultArg();
1764     UnparsedDefaultArgInstantiations[OldParm].push_back(NewParm);
1765   } else if (Expr *Arg = OldParm->getDefaultArg()) {
1766     FunctionDecl *OwningFunc = cast<FunctionDecl>(OldParm->getDeclContext());
1767     if (OwningFunc->isLexicallyWithinFunctionOrMethod()) {
1768       // Instantiate default arguments for methods of local classes (DR1484)
1769       // and non-defining declarations.
1770       Sema::ContextRAII SavedContext(*this, OwningFunc);
1771       LocalInstantiationScope Local(*this, true);
1772       ExprResult NewArg = SubstExpr(Arg, TemplateArgs);
1773       if (NewArg.isUsable()) {
1774         // It would be nice if we still had this.
1775         SourceLocation EqualLoc = NewArg.get()->getLocStart();
1776         SetParamDefaultArgument(NewParm, NewArg.get(), EqualLoc);
1777       }
1778     } else {
1779       // FIXME: if we non-lazily instantiated non-dependent default args for
1780       // non-dependent parameter types we could remove a bunch of duplicate
1781       // conversion warnings for such arguments.
1782       NewParm->setUninstantiatedDefaultArg(Arg);
1783     }
1784   }
1785 
1786   NewParm->setHasInheritedDefaultArg(OldParm->hasInheritedDefaultArg());
1787 
1788   if (OldParm->isParameterPack() && !NewParm->isParameterPack()) {
1789     // Add the new parameter to the instantiated parameter pack.
1790     CurrentInstantiationScope->InstantiatedLocalPackArg(OldParm, NewParm);
1791   } else {
1792     // Introduce an Old -> New mapping
1793     CurrentInstantiationScope->InstantiatedLocal(OldParm, NewParm);
1794   }
1795 
1796   // FIXME: OldParm may come from a FunctionProtoType, in which case CurContext
1797   // can be anything, is this right ?
1798   NewParm->setDeclContext(CurContext);
1799 
1800   NewParm->setScopeInfo(OldParm->getFunctionScopeDepth(),
1801                         OldParm->getFunctionScopeIndex() + indexAdjustment);
1802 
1803   InstantiateAttrs(TemplateArgs, OldParm, NewParm);
1804 
1805   return NewParm;
1806 }
1807 
1808 /// \brief Substitute the given template arguments into the given set of
1809 /// parameters, producing the set of parameter types that would be generated
1810 /// from such a substitution.
1811 bool Sema::SubstParmTypes(
1812     SourceLocation Loc, ArrayRef<ParmVarDecl *> Params,
1813     const FunctionProtoType::ExtParameterInfo *ExtParamInfos,
1814     const MultiLevelTemplateArgumentList &TemplateArgs,
1815     SmallVectorImpl<QualType> &ParamTypes,
1816     SmallVectorImpl<ParmVarDecl *> *OutParams,
1817     ExtParameterInfoBuilder &ParamInfos) {
1818   assert(!CodeSynthesisContexts.empty() &&
1819          "Cannot perform an instantiation without some context on the "
1820          "instantiation stack");
1821 
1822   TemplateInstantiator Instantiator(*this, TemplateArgs, Loc,
1823                                     DeclarationName());
1824   return Instantiator.TransformFunctionTypeParams(
1825       Loc, Params, nullptr, ExtParamInfos, ParamTypes, OutParams, ParamInfos);
1826 }
1827 
1828 /// \brief Perform substitution on the base class specifiers of the
1829 /// given class template specialization.
1830 ///
1831 /// Produces a diagnostic and returns true on error, returns false and
1832 /// attaches the instantiated base classes to the class template
1833 /// specialization if successful.
1834 bool
1835 Sema::SubstBaseSpecifiers(CXXRecordDecl *Instantiation,
1836                           CXXRecordDecl *Pattern,
1837                           const MultiLevelTemplateArgumentList &TemplateArgs) {
1838   bool Invalid = false;
1839   SmallVector<CXXBaseSpecifier*, 4> InstantiatedBases;
1840   for (const auto &Base : Pattern->bases()) {
1841     if (!Base.getType()->isDependentType()) {
1842       if (const CXXRecordDecl *RD = Base.getType()->getAsCXXRecordDecl()) {
1843         if (RD->isInvalidDecl())
1844           Instantiation->setInvalidDecl();
1845       }
1846       InstantiatedBases.push_back(new (Context) CXXBaseSpecifier(Base));
1847       continue;
1848     }
1849 
1850     SourceLocation EllipsisLoc;
1851     TypeSourceInfo *BaseTypeLoc;
1852     if (Base.isPackExpansion()) {
1853       // This is a pack expansion. See whether we should expand it now, or
1854       // wait until later.
1855       SmallVector<UnexpandedParameterPack, 2> Unexpanded;
1856       collectUnexpandedParameterPacks(Base.getTypeSourceInfo()->getTypeLoc(),
1857                                       Unexpanded);
1858       bool ShouldExpand = false;
1859       bool RetainExpansion = false;
1860       Optional<unsigned> NumExpansions;
1861       if (CheckParameterPacksForExpansion(Base.getEllipsisLoc(),
1862                                           Base.getSourceRange(),
1863                                           Unexpanded,
1864                                           TemplateArgs, ShouldExpand,
1865                                           RetainExpansion,
1866                                           NumExpansions)) {
1867         Invalid = true;
1868         continue;
1869       }
1870 
1871       // If we should expand this pack expansion now, do so.
1872       if (ShouldExpand) {
1873         for (unsigned I = 0; I != *NumExpansions; ++I) {
1874             Sema::ArgumentPackSubstitutionIndexRAII SubstIndex(*this, I);
1875 
1876           TypeSourceInfo *BaseTypeLoc = SubstType(Base.getTypeSourceInfo(),
1877                                                   TemplateArgs,
1878                                               Base.getSourceRange().getBegin(),
1879                                                   DeclarationName());
1880           if (!BaseTypeLoc) {
1881             Invalid = true;
1882             continue;
1883           }
1884 
1885           if (CXXBaseSpecifier *InstantiatedBase
1886                 = CheckBaseSpecifier(Instantiation,
1887                                      Base.getSourceRange(),
1888                                      Base.isVirtual(),
1889                                      Base.getAccessSpecifierAsWritten(),
1890                                      BaseTypeLoc,
1891                                      SourceLocation()))
1892             InstantiatedBases.push_back(InstantiatedBase);
1893           else
1894             Invalid = true;
1895         }
1896 
1897         continue;
1898       }
1899 
1900       // The resulting base specifier will (still) be a pack expansion.
1901       EllipsisLoc = Base.getEllipsisLoc();
1902       Sema::ArgumentPackSubstitutionIndexRAII SubstIndex(*this, -1);
1903       BaseTypeLoc = SubstType(Base.getTypeSourceInfo(),
1904                               TemplateArgs,
1905                               Base.getSourceRange().getBegin(),
1906                               DeclarationName());
1907     } else {
1908       BaseTypeLoc = SubstType(Base.getTypeSourceInfo(),
1909                               TemplateArgs,
1910                               Base.getSourceRange().getBegin(),
1911                               DeclarationName());
1912     }
1913 
1914     if (!BaseTypeLoc) {
1915       Invalid = true;
1916       continue;
1917     }
1918 
1919     if (CXXBaseSpecifier *InstantiatedBase
1920           = CheckBaseSpecifier(Instantiation,
1921                                Base.getSourceRange(),
1922                                Base.isVirtual(),
1923                                Base.getAccessSpecifierAsWritten(),
1924                                BaseTypeLoc,
1925                                EllipsisLoc))
1926       InstantiatedBases.push_back(InstantiatedBase);
1927     else
1928       Invalid = true;
1929   }
1930 
1931   if (!Invalid && AttachBaseSpecifiers(Instantiation, InstantiatedBases))
1932     Invalid = true;
1933 
1934   return Invalid;
1935 }
1936 
1937 // Defined via #include from SemaTemplateInstantiateDecl.cpp
1938 namespace clang {
1939   namespace sema {
1940     Attr *instantiateTemplateAttribute(const Attr *At, ASTContext &C, Sema &S,
1941                             const MultiLevelTemplateArgumentList &TemplateArgs);
1942   }
1943 }
1944 
1945 /// \brief Instantiate the definition of a class from a given pattern.
1946 ///
1947 /// \param PointOfInstantiation The point of instantiation within the
1948 /// source code.
1949 ///
1950 /// \param Instantiation is the declaration whose definition is being
1951 /// instantiated. This will be either a class template specialization
1952 /// or a member class of a class template specialization.
1953 ///
1954 /// \param Pattern is the pattern from which the instantiation
1955 /// occurs. This will be either the declaration of a class template or
1956 /// the declaration of a member class of a class template.
1957 ///
1958 /// \param TemplateArgs The template arguments to be substituted into
1959 /// the pattern.
1960 ///
1961 /// \param TSK the kind of implicit or explicit instantiation to perform.
1962 ///
1963 /// \param Complain whether to complain if the class cannot be instantiated due
1964 /// to the lack of a definition.
1965 ///
1966 /// \returns true if an error occurred, false otherwise.
1967 bool
1968 Sema::InstantiateClass(SourceLocation PointOfInstantiation,
1969                        CXXRecordDecl *Instantiation, CXXRecordDecl *Pattern,
1970                        const MultiLevelTemplateArgumentList &TemplateArgs,
1971                        TemplateSpecializationKind TSK,
1972                        bool Complain) {
1973   CXXRecordDecl *PatternDef
1974     = cast_or_null<CXXRecordDecl>(Pattern->getDefinition());
1975   if (DiagnoseUninstantiableTemplate(PointOfInstantiation, Instantiation,
1976                                 Instantiation->getInstantiatedFromMemberClass(),
1977                                      Pattern, PatternDef, TSK, Complain))
1978     return true;
1979   Pattern = PatternDef;
1980 
1981   // \brief Record the point of instantiation.
1982   if (MemberSpecializationInfo *MSInfo
1983         = Instantiation->getMemberSpecializationInfo()) {
1984     MSInfo->setTemplateSpecializationKind(TSK);
1985     MSInfo->setPointOfInstantiation(PointOfInstantiation);
1986   } else if (ClassTemplateSpecializationDecl *Spec
1987         = dyn_cast<ClassTemplateSpecializationDecl>(Instantiation)) {
1988     Spec->setTemplateSpecializationKind(TSK);
1989     Spec->setPointOfInstantiation(PointOfInstantiation);
1990   }
1991 
1992   InstantiatingTemplate Inst(*this, PointOfInstantiation, Instantiation);
1993   if (Inst.isInvalid())
1994     return true;
1995   assert(!Inst.isAlreadyInstantiating() && "should have been caught by caller");
1996   PrettyDeclStackTraceEntry CrashInfo(*this, Instantiation, SourceLocation(),
1997                                       "instantiating class definition");
1998 
1999   // Enter the scope of this instantiation. We don't use
2000   // PushDeclContext because we don't have a scope.
2001   ContextRAII SavedContext(*this, Instantiation);
2002   EnterExpressionEvaluationContext EvalContext(*this,
2003                                                Sema::PotentiallyEvaluated);
2004 
2005   // If this is an instantiation of a local class, merge this local
2006   // instantiation scope with the enclosing scope. Otherwise, every
2007   // instantiation of a class has its own local instantiation scope.
2008   bool MergeWithParentScope = !Instantiation->isDefinedOutsideFunctionOrMethod();
2009   LocalInstantiationScope Scope(*this, MergeWithParentScope);
2010 
2011   // All dllexported classes created during instantiation should be fully
2012   // emitted after instantiation completes. We may not be ready to emit any
2013   // delayed classes already on the stack, so save them away and put them back
2014   // later.
2015   decltype(DelayedDllExportClasses) ExportedClasses;
2016   std::swap(ExportedClasses, DelayedDllExportClasses);
2017 
2018   // Pull attributes from the pattern onto the instantiation.
2019   InstantiateAttrs(TemplateArgs, Pattern, Instantiation);
2020 
2021   // Start the definition of this instantiation.
2022   Instantiation->startDefinition();
2023 
2024   // The instantiation is visible here, even if it was first declared in an
2025   // unimported module.
2026   Instantiation->setHidden(false);
2027 
2028   // FIXME: This loses the as-written tag kind for an explicit instantiation.
2029   Instantiation->setTagKind(Pattern->getTagKind());
2030 
2031   // Do substitution on the base class specifiers.
2032   if (SubstBaseSpecifiers(Instantiation, Pattern, TemplateArgs))
2033     Instantiation->setInvalidDecl();
2034 
2035   TemplateDeclInstantiator Instantiator(*this, Instantiation, TemplateArgs);
2036   SmallVector<Decl*, 4> Fields;
2037   // Delay instantiation of late parsed attributes.
2038   LateInstantiatedAttrVec LateAttrs;
2039   Instantiator.enableLateAttributeInstantiation(&LateAttrs);
2040 
2041   for (auto *Member : Pattern->decls()) {
2042     // Don't instantiate members not belonging in this semantic context.
2043     // e.g. for:
2044     // @code
2045     //    template <int i> class A {
2046     //      class B *g;
2047     //    };
2048     // @endcode
2049     // 'class B' has the template as lexical context but semantically it is
2050     // introduced in namespace scope.
2051     if (Member->getDeclContext() != Pattern)
2052       continue;
2053 
2054     if (Member->isInvalidDecl()) {
2055       Instantiation->setInvalidDecl();
2056       continue;
2057     }
2058 
2059     Decl *NewMember = Instantiator.Visit(Member);
2060     if (NewMember) {
2061       if (FieldDecl *Field = dyn_cast<FieldDecl>(NewMember)) {
2062         Fields.push_back(Field);
2063       } else if (EnumDecl *Enum = dyn_cast<EnumDecl>(NewMember)) {
2064         // C++11 [temp.inst]p1: The implicit instantiation of a class template
2065         // specialization causes the implicit instantiation of the definitions
2066         // of unscoped member enumerations.
2067         // Record a point of instantiation for this implicit instantiation.
2068         if (TSK == TSK_ImplicitInstantiation && !Enum->isScoped() &&
2069             Enum->isCompleteDefinition()) {
2070           MemberSpecializationInfo *MSInfo =Enum->getMemberSpecializationInfo();
2071           assert(MSInfo && "no spec info for member enum specialization");
2072           MSInfo->setTemplateSpecializationKind(TSK_ImplicitInstantiation);
2073           MSInfo->setPointOfInstantiation(PointOfInstantiation);
2074         }
2075       } else if (StaticAssertDecl *SA = dyn_cast<StaticAssertDecl>(NewMember)) {
2076         if (SA->isFailed()) {
2077           // A static_assert failed. Bail out; instantiating this
2078           // class is probably not meaningful.
2079           Instantiation->setInvalidDecl();
2080           break;
2081         }
2082       }
2083 
2084       if (NewMember->isInvalidDecl())
2085         Instantiation->setInvalidDecl();
2086     } else {
2087       // FIXME: Eventually, a NULL return will mean that one of the
2088       // instantiations was a semantic disaster, and we'll want to mark the
2089       // declaration invalid.
2090       // For now, we expect to skip some members that we can't yet handle.
2091     }
2092   }
2093 
2094   // Finish checking fields.
2095   ActOnFields(nullptr, Instantiation->getLocation(), Instantiation, Fields,
2096               SourceLocation(), SourceLocation(), nullptr);
2097   CheckCompletedCXXClass(Instantiation);
2098 
2099   // Default arguments are parsed, if not instantiated. We can go instantiate
2100   // default arg exprs for default constructors if necessary now.
2101   ActOnFinishCXXNonNestedClass(Instantiation);
2102 
2103   // Put back the delayed exported classes that we moved out of the way.
2104   std::swap(ExportedClasses, DelayedDllExportClasses);
2105 
2106   // Instantiate late parsed attributes, and attach them to their decls.
2107   // See Sema::InstantiateAttrs
2108   for (LateInstantiatedAttrVec::iterator I = LateAttrs.begin(),
2109        E = LateAttrs.end(); I != E; ++I) {
2110     assert(CurrentInstantiationScope == Instantiator.getStartingScope());
2111     CurrentInstantiationScope = I->Scope;
2112 
2113     // Allow 'this' within late-parsed attributes.
2114     NamedDecl *ND = dyn_cast<NamedDecl>(I->NewDecl);
2115     CXXRecordDecl *ThisContext =
2116         dyn_cast_or_null<CXXRecordDecl>(ND->getDeclContext());
2117     CXXThisScopeRAII ThisScope(*this, ThisContext, /*TypeQuals*/0,
2118                                ND && ND->isCXXInstanceMember());
2119 
2120     Attr *NewAttr =
2121       instantiateTemplateAttribute(I->TmplAttr, Context, *this, TemplateArgs);
2122     I->NewDecl->addAttr(NewAttr);
2123     LocalInstantiationScope::deleteScopes(I->Scope,
2124                                           Instantiator.getStartingScope());
2125   }
2126   Instantiator.disableLateAttributeInstantiation();
2127   LateAttrs.clear();
2128 
2129   ActOnFinishDelayedMemberInitializers(Instantiation);
2130 
2131   // FIXME: We should do something similar for explicit instantiations so they
2132   // end up in the right module.
2133   if (TSK == TSK_ImplicitInstantiation) {
2134     Instantiation->setLocation(Pattern->getLocation());
2135     Instantiation->setLocStart(Pattern->getInnerLocStart());
2136     Instantiation->setBraceRange(Pattern->getBraceRange());
2137   }
2138 
2139   if (!Instantiation->isInvalidDecl()) {
2140     // Perform any dependent diagnostics from the pattern.
2141     PerformDependentDiagnostics(Pattern, TemplateArgs);
2142 
2143     // Instantiate any out-of-line class template partial
2144     // specializations now.
2145     for (TemplateDeclInstantiator::delayed_partial_spec_iterator
2146               P = Instantiator.delayed_partial_spec_begin(),
2147            PEnd = Instantiator.delayed_partial_spec_end();
2148          P != PEnd; ++P) {
2149       if (!Instantiator.InstantiateClassTemplatePartialSpecialization(
2150               P->first, P->second)) {
2151         Instantiation->setInvalidDecl();
2152         break;
2153       }
2154     }
2155 
2156     // Instantiate any out-of-line variable template partial
2157     // specializations now.
2158     for (TemplateDeclInstantiator::delayed_var_partial_spec_iterator
2159               P = Instantiator.delayed_var_partial_spec_begin(),
2160            PEnd = Instantiator.delayed_var_partial_spec_end();
2161          P != PEnd; ++P) {
2162       if (!Instantiator.InstantiateVarTemplatePartialSpecialization(
2163               P->first, P->second)) {
2164         Instantiation->setInvalidDecl();
2165         break;
2166       }
2167     }
2168   }
2169 
2170   // Exit the scope of this instantiation.
2171   SavedContext.pop();
2172 
2173   if (!Instantiation->isInvalidDecl()) {
2174     Consumer.HandleTagDeclDefinition(Instantiation);
2175 
2176     // Always emit the vtable for an explicit instantiation definition
2177     // of a polymorphic class template specialization.
2178     if (TSK == TSK_ExplicitInstantiationDefinition)
2179       MarkVTableUsed(PointOfInstantiation, Instantiation, true);
2180   }
2181 
2182   return Instantiation->isInvalidDecl();
2183 }
2184 
2185 /// \brief Instantiate the definition of an enum from a given pattern.
2186 ///
2187 /// \param PointOfInstantiation The point of instantiation within the
2188 ///        source code.
2189 /// \param Instantiation is the declaration whose definition is being
2190 ///        instantiated. This will be a member enumeration of a class
2191 ///        temploid specialization, or a local enumeration within a
2192 ///        function temploid specialization.
2193 /// \param Pattern The templated declaration from which the instantiation
2194 ///        occurs.
2195 /// \param TemplateArgs The template arguments to be substituted into
2196 ///        the pattern.
2197 /// \param TSK The kind of implicit or explicit instantiation to perform.
2198 ///
2199 /// \return \c true if an error occurred, \c false otherwise.
2200 bool Sema::InstantiateEnum(SourceLocation PointOfInstantiation,
2201                            EnumDecl *Instantiation, EnumDecl *Pattern,
2202                            const MultiLevelTemplateArgumentList &TemplateArgs,
2203                            TemplateSpecializationKind TSK) {
2204   EnumDecl *PatternDef = Pattern->getDefinition();
2205   if (DiagnoseUninstantiableTemplate(PointOfInstantiation, Instantiation,
2206                                  Instantiation->getInstantiatedFromMemberEnum(),
2207                                      Pattern, PatternDef, TSK,/*Complain*/true))
2208     return true;
2209   Pattern = PatternDef;
2210 
2211   // Record the point of instantiation.
2212   if (MemberSpecializationInfo *MSInfo
2213         = Instantiation->getMemberSpecializationInfo()) {
2214     MSInfo->setTemplateSpecializationKind(TSK);
2215     MSInfo->setPointOfInstantiation(PointOfInstantiation);
2216   }
2217 
2218   InstantiatingTemplate Inst(*this, PointOfInstantiation, Instantiation);
2219   if (Inst.isInvalid())
2220     return true;
2221   if (Inst.isAlreadyInstantiating())
2222     return false;
2223   PrettyDeclStackTraceEntry CrashInfo(*this, Instantiation, SourceLocation(),
2224                                       "instantiating enum definition");
2225 
2226   // The instantiation is visible here, even if it was first declared in an
2227   // unimported module.
2228   Instantiation->setHidden(false);
2229 
2230   // Enter the scope of this instantiation. We don't use
2231   // PushDeclContext because we don't have a scope.
2232   ContextRAII SavedContext(*this, Instantiation);
2233   EnterExpressionEvaluationContext EvalContext(*this,
2234                                                Sema::PotentiallyEvaluated);
2235 
2236   LocalInstantiationScope Scope(*this, /*MergeWithParentScope*/true);
2237 
2238   // Pull attributes from the pattern onto the instantiation.
2239   InstantiateAttrs(TemplateArgs, Pattern, Instantiation);
2240 
2241   TemplateDeclInstantiator Instantiator(*this, Instantiation, TemplateArgs);
2242   Instantiator.InstantiateEnumDefinition(Instantiation, Pattern);
2243 
2244   // Exit the scope of this instantiation.
2245   SavedContext.pop();
2246 
2247   return Instantiation->isInvalidDecl();
2248 }
2249 
2250 
2251 /// \brief Instantiate the definition of a field from the given pattern.
2252 ///
2253 /// \param PointOfInstantiation The point of instantiation within the
2254 ///        source code.
2255 /// \param Instantiation is the declaration whose definition is being
2256 ///        instantiated. This will be a class of a class temploid
2257 ///        specialization, or a local enumeration within a function temploid
2258 ///        specialization.
2259 /// \param Pattern The templated declaration from which the instantiation
2260 ///        occurs.
2261 /// \param TemplateArgs The template arguments to be substituted into
2262 ///        the pattern.
2263 ///
2264 /// \return \c true if an error occurred, \c false otherwise.
2265 bool Sema::InstantiateInClassInitializer(
2266     SourceLocation PointOfInstantiation, FieldDecl *Instantiation,
2267     FieldDecl *Pattern, const MultiLevelTemplateArgumentList &TemplateArgs) {
2268   // If there is no initializer, we don't need to do anything.
2269   if (!Pattern->hasInClassInitializer())
2270     return false;
2271 
2272   assert(Instantiation->getInClassInitStyle() ==
2273              Pattern->getInClassInitStyle() &&
2274          "pattern and instantiation disagree about init style");
2275 
2276   // Error out if we haven't parsed the initializer of the pattern yet because
2277   // we are waiting for the closing brace of the outer class.
2278   Expr *OldInit = Pattern->getInClassInitializer();
2279   if (!OldInit) {
2280     RecordDecl *PatternRD = Pattern->getParent();
2281     RecordDecl *OutermostClass = PatternRD->getOuterLexicalRecordContext();
2282     Diag(PointOfInstantiation,
2283          diag::err_in_class_initializer_not_yet_parsed)
2284         << OutermostClass << Pattern;
2285     Diag(Pattern->getLocEnd(), diag::note_in_class_initializer_not_yet_parsed);
2286     Instantiation->setInvalidDecl();
2287     return true;
2288   }
2289 
2290   InstantiatingTemplate Inst(*this, PointOfInstantiation, Instantiation);
2291   if (Inst.isInvalid())
2292     return true;
2293   if (Inst.isAlreadyInstantiating()) {
2294     // Error out if we hit an instantiation cycle for this initializer.
2295     Diag(PointOfInstantiation, diag::err_in_class_initializer_cycle)
2296       << Instantiation;
2297     return true;
2298   }
2299   PrettyDeclStackTraceEntry CrashInfo(*this, Instantiation, SourceLocation(),
2300                                       "instantiating default member init");
2301 
2302   // Enter the scope of this instantiation. We don't use PushDeclContext because
2303   // we don't have a scope.
2304   ContextRAII SavedContext(*this, Instantiation->getParent());
2305   EnterExpressionEvaluationContext EvalContext(*this,
2306                                                Sema::PotentiallyEvaluated);
2307 
2308   LocalInstantiationScope Scope(*this, true);
2309 
2310   // Instantiate the initializer.
2311   ActOnStartCXXInClassMemberInitializer();
2312   CXXThisScopeRAII ThisScope(*this, Instantiation->getParent(), /*TypeQuals=*/0);
2313 
2314   ExprResult NewInit = SubstInitializer(OldInit, TemplateArgs,
2315                                         /*CXXDirectInit=*/false);
2316   Expr *Init = NewInit.get();
2317   assert((!Init || !isa<ParenListExpr>(Init)) && "call-style init in class");
2318   ActOnFinishCXXInClassMemberInitializer(
2319       Instantiation, Init ? Init->getLocStart() : SourceLocation(), Init);
2320 
2321   if (auto *L = getASTMutationListener())
2322     L->DefaultMemberInitializerInstantiated(Instantiation);
2323 
2324   // Return true if the in-class initializer is still missing.
2325   return !Instantiation->getInClassInitializer();
2326 }
2327 
2328 namespace {
2329   /// \brief A partial specialization whose template arguments have matched
2330   /// a given template-id.
2331   struct PartialSpecMatchResult {
2332     ClassTemplatePartialSpecializationDecl *Partial;
2333     TemplateArgumentList *Args;
2334   };
2335 }
2336 
2337 /// Get the instantiation pattern to use to instantiate the definition of a
2338 /// given ClassTemplateSpecializationDecl (either the pattern of the primary
2339 /// template or of a partial specialization).
2340 static CXXRecordDecl *
2341 getPatternForClassTemplateSpecialization(
2342     Sema &S, SourceLocation PointOfInstantiation,
2343     ClassTemplateSpecializationDecl *ClassTemplateSpec,
2344     TemplateSpecializationKind TSK, bool Complain) {
2345   Sema::InstantiatingTemplate Inst(S, PointOfInstantiation, ClassTemplateSpec);
2346   if (Inst.isInvalid() || Inst.isAlreadyInstantiating())
2347     return nullptr;
2348 
2349   ClassTemplateDecl *Template = ClassTemplateSpec->getSpecializedTemplate();
2350   CXXRecordDecl *Pattern = nullptr;
2351 
2352   // C++ [temp.class.spec.match]p1:
2353   //   When a class template is used in a context that requires an
2354   //   instantiation of the class, it is necessary to determine
2355   //   whether the instantiation is to be generated using the primary
2356   //   template or one of the partial specializations. This is done by
2357   //   matching the template arguments of the class template
2358   //   specialization with the template argument lists of the partial
2359   //   specializations.
2360   typedef PartialSpecMatchResult MatchResult;
2361   SmallVector<MatchResult, 4> Matched;
2362   SmallVector<ClassTemplatePartialSpecializationDecl *, 4> PartialSpecs;
2363   Template->getPartialSpecializations(PartialSpecs);
2364   TemplateSpecCandidateSet FailedCandidates(PointOfInstantiation);
2365   for (unsigned I = 0, N = PartialSpecs.size(); I != N; ++I) {
2366     ClassTemplatePartialSpecializationDecl *Partial = PartialSpecs[I];
2367     TemplateDeductionInfo Info(FailedCandidates.getLocation());
2368     if (Sema::TemplateDeductionResult Result = S.DeduceTemplateArguments(
2369             Partial, ClassTemplateSpec->getTemplateArgs(), Info)) {
2370       // Store the failed-deduction information for use in diagnostics, later.
2371       // TODO: Actually use the failed-deduction info?
2372       FailedCandidates.addCandidate().set(
2373           DeclAccessPair::make(Template, AS_public), Partial,
2374           MakeDeductionFailureInfo(S.Context, Result, Info));
2375       (void)Result;
2376     } else {
2377       Matched.push_back(PartialSpecMatchResult());
2378       Matched.back().Partial = Partial;
2379       Matched.back().Args = Info.take();
2380     }
2381   }
2382 
2383   // If we're dealing with a member template where the template parameters
2384   // have been instantiated, this provides the original template parameters
2385   // from which the member template's parameters were instantiated.
2386 
2387   if (Matched.size() >= 1) {
2388     SmallVectorImpl<MatchResult>::iterator Best = Matched.begin();
2389     if (Matched.size() == 1) {
2390       //   -- If exactly one matching specialization is found, the
2391       //      instantiation is generated from that specialization.
2392       // We don't need to do anything for this.
2393     } else {
2394       //   -- If more than one matching specialization is found, the
2395       //      partial order rules (14.5.4.2) are used to determine
2396       //      whether one of the specializations is more specialized
2397       //      than the others. If none of the specializations is more
2398       //      specialized than all of the other matching
2399       //      specializations, then the use of the class template is
2400       //      ambiguous and the program is ill-formed.
2401       for (SmallVectorImpl<MatchResult>::iterator P = Best + 1,
2402                                                PEnd = Matched.end();
2403            P != PEnd; ++P) {
2404         if (S.getMoreSpecializedPartialSpecialization(
2405                 P->Partial, Best->Partial, PointOfInstantiation) == P->Partial)
2406           Best = P;
2407       }
2408 
2409       // Determine if the best partial specialization is more specialized than
2410       // the others.
2411       bool Ambiguous = false;
2412       for (SmallVectorImpl<MatchResult>::iterator P = Matched.begin(),
2413                                                PEnd = Matched.end();
2414            P != PEnd; ++P) {
2415         if (P != Best &&
2416             S.getMoreSpecializedPartialSpecialization(P->Partial, Best->Partial,
2417                                                       PointOfInstantiation) !=
2418                 Best->Partial) {
2419           Ambiguous = true;
2420           break;
2421         }
2422       }
2423 
2424       if (Ambiguous) {
2425         // Partial ordering did not produce a clear winner. Complain.
2426         Inst.Clear();
2427         ClassTemplateSpec->setInvalidDecl();
2428         S.Diag(PointOfInstantiation, diag::err_partial_spec_ordering_ambiguous)
2429           << ClassTemplateSpec;
2430 
2431         // Print the matching partial specializations.
2432         for (SmallVectorImpl<MatchResult>::iterator P = Matched.begin(),
2433                                                  PEnd = Matched.end();
2434              P != PEnd; ++P)
2435           S.Diag(P->Partial->getLocation(), diag::note_partial_spec_match)
2436             << S.getTemplateArgumentBindingsText(
2437                    P->Partial->getTemplateParameters(), *P->Args);
2438 
2439         return nullptr;
2440       }
2441     }
2442 
2443     // Instantiate using the best class template partial specialization.
2444     ClassTemplatePartialSpecializationDecl *OrigPartialSpec = Best->Partial;
2445     while (OrigPartialSpec->getInstantiatedFromMember()) {
2446       // If we've found an explicit specialization of this class template,
2447       // stop here and use that as the pattern.
2448       if (OrigPartialSpec->isMemberSpecialization())
2449         break;
2450 
2451       OrigPartialSpec = OrigPartialSpec->getInstantiatedFromMember();
2452     }
2453 
2454     Pattern = OrigPartialSpec;
2455     ClassTemplateSpec->setInstantiationOf(Best->Partial, Best->Args);
2456   } else {
2457     //   -- If no matches are found, the instantiation is generated
2458     //      from the primary template.
2459     ClassTemplateDecl *OrigTemplate = Template;
2460     while (OrigTemplate->getInstantiatedFromMemberTemplate()) {
2461       // If we've found an explicit specialization of this class template,
2462       // stop here and use that as the pattern.
2463       if (OrigTemplate->isMemberSpecialization())
2464         break;
2465 
2466       OrigTemplate = OrigTemplate->getInstantiatedFromMemberTemplate();
2467     }
2468 
2469     Pattern = OrigTemplate->getTemplatedDecl();
2470   }
2471 
2472   return Pattern;
2473 }
2474 
2475 bool Sema::InstantiateClassTemplateSpecialization(
2476     SourceLocation PointOfInstantiation,
2477     ClassTemplateSpecializationDecl *ClassTemplateSpec,
2478     TemplateSpecializationKind TSK, bool Complain) {
2479   // Perform the actual instantiation on the canonical declaration.
2480   ClassTemplateSpec = cast<ClassTemplateSpecializationDecl>(
2481       ClassTemplateSpec->getCanonicalDecl());
2482   if (ClassTemplateSpec->isInvalidDecl())
2483     return true;
2484 
2485   CXXRecordDecl *Pattern = getPatternForClassTemplateSpecialization(
2486       *this, PointOfInstantiation, ClassTemplateSpec, TSK, Complain);
2487   if (!Pattern)
2488     return true;
2489 
2490   return InstantiateClass(PointOfInstantiation, ClassTemplateSpec, Pattern,
2491                           getTemplateInstantiationArgs(ClassTemplateSpec), TSK,
2492                           Complain);
2493 }
2494 
2495 /// \brief Instantiates the definitions of all of the member
2496 /// of the given class, which is an instantiation of a class template
2497 /// or a member class of a template.
2498 void
2499 Sema::InstantiateClassMembers(SourceLocation PointOfInstantiation,
2500                               CXXRecordDecl *Instantiation,
2501                         const MultiLevelTemplateArgumentList &TemplateArgs,
2502                               TemplateSpecializationKind TSK) {
2503   // FIXME: We need to notify the ASTMutationListener that we did all of these
2504   // things, in case we have an explicit instantiation definition in a PCM, a
2505   // module, or preamble, and the declaration is in an imported AST.
2506   assert(
2507       (TSK == TSK_ExplicitInstantiationDefinition ||
2508        TSK == TSK_ExplicitInstantiationDeclaration ||
2509        (TSK == TSK_ImplicitInstantiation && Instantiation->isLocalClass())) &&
2510       "Unexpected template specialization kind!");
2511   for (auto *D : Instantiation->decls()) {
2512     bool SuppressNew = false;
2513     if (auto *Function = dyn_cast<FunctionDecl>(D)) {
2514       if (FunctionDecl *Pattern
2515             = Function->getInstantiatedFromMemberFunction()) {
2516         MemberSpecializationInfo *MSInfo
2517           = Function->getMemberSpecializationInfo();
2518         assert(MSInfo && "No member specialization information?");
2519         if (MSInfo->getTemplateSpecializationKind()
2520                                                  == TSK_ExplicitSpecialization)
2521           continue;
2522 
2523         if (CheckSpecializationInstantiationRedecl(PointOfInstantiation, TSK,
2524                                                    Function,
2525                                         MSInfo->getTemplateSpecializationKind(),
2526                                               MSInfo->getPointOfInstantiation(),
2527                                                    SuppressNew) ||
2528             SuppressNew)
2529           continue;
2530 
2531         // C++11 [temp.explicit]p8:
2532         //   An explicit instantiation definition that names a class template
2533         //   specialization explicitly instantiates the class template
2534         //   specialization and is only an explicit instantiation definition
2535         //   of members whose definition is visible at the point of
2536         //   instantiation.
2537         if (TSK == TSK_ExplicitInstantiationDefinition && !Pattern->isDefined())
2538           continue;
2539 
2540         Function->setTemplateSpecializationKind(TSK, PointOfInstantiation);
2541 
2542         if (Function->isDefined()) {
2543           // Let the ASTConsumer know that this function has been explicitly
2544           // instantiated now, and its linkage might have changed.
2545           Consumer.HandleTopLevelDecl(DeclGroupRef(Function));
2546         } else if (TSK == TSK_ExplicitInstantiationDefinition) {
2547           InstantiateFunctionDefinition(PointOfInstantiation, Function);
2548         } else if (TSK == TSK_ImplicitInstantiation) {
2549           PendingLocalImplicitInstantiations.push_back(
2550               std::make_pair(Function, PointOfInstantiation));
2551         }
2552       }
2553     } else if (auto *Var = dyn_cast<VarDecl>(D)) {
2554       if (isa<VarTemplateSpecializationDecl>(Var))
2555         continue;
2556 
2557       if (Var->isStaticDataMember()) {
2558         MemberSpecializationInfo *MSInfo = Var->getMemberSpecializationInfo();
2559         assert(MSInfo && "No member specialization information?");
2560         if (MSInfo->getTemplateSpecializationKind()
2561                                                  == TSK_ExplicitSpecialization)
2562           continue;
2563 
2564         if (CheckSpecializationInstantiationRedecl(PointOfInstantiation, TSK,
2565                                                    Var,
2566                                         MSInfo->getTemplateSpecializationKind(),
2567                                               MSInfo->getPointOfInstantiation(),
2568                                                    SuppressNew) ||
2569             SuppressNew)
2570           continue;
2571 
2572         if (TSK == TSK_ExplicitInstantiationDefinition) {
2573           // C++0x [temp.explicit]p8:
2574           //   An explicit instantiation definition that names a class template
2575           //   specialization explicitly instantiates the class template
2576           //   specialization and is only an explicit instantiation definition
2577           //   of members whose definition is visible at the point of
2578           //   instantiation.
2579           if (!Var->getInstantiatedFromStaticDataMember()->getDefinition())
2580             continue;
2581 
2582           Var->setTemplateSpecializationKind(TSK, PointOfInstantiation);
2583           InstantiateStaticDataMemberDefinition(PointOfInstantiation, Var);
2584         } else {
2585           Var->setTemplateSpecializationKind(TSK, PointOfInstantiation);
2586         }
2587       }
2588     } else if (auto *Record = dyn_cast<CXXRecordDecl>(D)) {
2589       // Always skip the injected-class-name, along with any
2590       // redeclarations of nested classes, since both would cause us
2591       // to try to instantiate the members of a class twice.
2592       // Skip closure types; they'll get instantiated when we instantiate
2593       // the corresponding lambda-expression.
2594       if (Record->isInjectedClassName() || Record->getPreviousDecl() ||
2595           Record->isLambda())
2596         continue;
2597 
2598       MemberSpecializationInfo *MSInfo = Record->getMemberSpecializationInfo();
2599       assert(MSInfo && "No member specialization information?");
2600 
2601       if (MSInfo->getTemplateSpecializationKind()
2602                                                 == TSK_ExplicitSpecialization)
2603         continue;
2604 
2605       if (Context.getTargetInfo().getCXXABI().isMicrosoft() &&
2606           TSK == TSK_ExplicitInstantiationDeclaration) {
2607         // In MSVC mode, explicit instantiation decl of the outer class doesn't
2608         // affect the inner class.
2609         continue;
2610       }
2611 
2612       if (CheckSpecializationInstantiationRedecl(PointOfInstantiation, TSK,
2613                                                  Record,
2614                                         MSInfo->getTemplateSpecializationKind(),
2615                                               MSInfo->getPointOfInstantiation(),
2616                                                  SuppressNew) ||
2617           SuppressNew)
2618         continue;
2619 
2620       CXXRecordDecl *Pattern = Record->getInstantiatedFromMemberClass();
2621       assert(Pattern && "Missing instantiated-from-template information");
2622 
2623       if (!Record->getDefinition()) {
2624         if (!Pattern->getDefinition()) {
2625           // C++0x [temp.explicit]p8:
2626           //   An explicit instantiation definition that names a class template
2627           //   specialization explicitly instantiates the class template
2628           //   specialization and is only an explicit instantiation definition
2629           //   of members whose definition is visible at the point of
2630           //   instantiation.
2631           if (TSK == TSK_ExplicitInstantiationDeclaration) {
2632             MSInfo->setTemplateSpecializationKind(TSK);
2633             MSInfo->setPointOfInstantiation(PointOfInstantiation);
2634           }
2635 
2636           continue;
2637         }
2638 
2639         InstantiateClass(PointOfInstantiation, Record, Pattern,
2640                          TemplateArgs,
2641                          TSK);
2642       } else {
2643         if (TSK == TSK_ExplicitInstantiationDefinition &&
2644             Record->getTemplateSpecializationKind() ==
2645                 TSK_ExplicitInstantiationDeclaration) {
2646           Record->setTemplateSpecializationKind(TSK);
2647           MarkVTableUsed(PointOfInstantiation, Record, true);
2648         }
2649       }
2650 
2651       Pattern = cast_or_null<CXXRecordDecl>(Record->getDefinition());
2652       if (Pattern)
2653         InstantiateClassMembers(PointOfInstantiation, Pattern, TemplateArgs,
2654                                 TSK);
2655     } else if (auto *Enum = dyn_cast<EnumDecl>(D)) {
2656       MemberSpecializationInfo *MSInfo = Enum->getMemberSpecializationInfo();
2657       assert(MSInfo && "No member specialization information?");
2658 
2659       if (MSInfo->getTemplateSpecializationKind()
2660             == TSK_ExplicitSpecialization)
2661         continue;
2662 
2663       if (CheckSpecializationInstantiationRedecl(
2664             PointOfInstantiation, TSK, Enum,
2665             MSInfo->getTemplateSpecializationKind(),
2666             MSInfo->getPointOfInstantiation(), SuppressNew) ||
2667           SuppressNew)
2668         continue;
2669 
2670       if (Enum->getDefinition())
2671         continue;
2672 
2673       EnumDecl *Pattern = Enum->getTemplateInstantiationPattern();
2674       assert(Pattern && "Missing instantiated-from-template information");
2675 
2676       if (TSK == TSK_ExplicitInstantiationDefinition) {
2677         if (!Pattern->getDefinition())
2678           continue;
2679 
2680         InstantiateEnum(PointOfInstantiation, Enum, Pattern, TemplateArgs, TSK);
2681       } else {
2682         MSInfo->setTemplateSpecializationKind(TSK);
2683         MSInfo->setPointOfInstantiation(PointOfInstantiation);
2684       }
2685     } else if (auto *Field = dyn_cast<FieldDecl>(D)) {
2686       // No need to instantiate in-class initializers during explicit
2687       // instantiation.
2688       if (Field->hasInClassInitializer() && TSK == TSK_ImplicitInstantiation) {
2689         CXXRecordDecl *ClassPattern =
2690             Instantiation->getTemplateInstantiationPattern();
2691         DeclContext::lookup_result Lookup =
2692             ClassPattern->lookup(Field->getDeclName());
2693         FieldDecl *Pattern = cast<FieldDecl>(Lookup.front());
2694         InstantiateInClassInitializer(PointOfInstantiation, Field, Pattern,
2695                                       TemplateArgs);
2696       }
2697     }
2698   }
2699 }
2700 
2701 /// \brief Instantiate the definitions of all of the members of the
2702 /// given class template specialization, which was named as part of an
2703 /// explicit instantiation.
2704 void
2705 Sema::InstantiateClassTemplateSpecializationMembers(
2706                                            SourceLocation PointOfInstantiation,
2707                             ClassTemplateSpecializationDecl *ClassTemplateSpec,
2708                                                TemplateSpecializationKind TSK) {
2709   // C++0x [temp.explicit]p7:
2710   //   An explicit instantiation that names a class template
2711   //   specialization is an explicit instantion of the same kind
2712   //   (declaration or definition) of each of its members (not
2713   //   including members inherited from base classes) that has not
2714   //   been previously explicitly specialized in the translation unit
2715   //   containing the explicit instantiation, except as described
2716   //   below.
2717   InstantiateClassMembers(PointOfInstantiation, ClassTemplateSpec,
2718                           getTemplateInstantiationArgs(ClassTemplateSpec),
2719                           TSK);
2720 }
2721 
2722 StmtResult
2723 Sema::SubstStmt(Stmt *S, const MultiLevelTemplateArgumentList &TemplateArgs) {
2724   if (!S)
2725     return S;
2726 
2727   TemplateInstantiator Instantiator(*this, TemplateArgs,
2728                                     SourceLocation(),
2729                                     DeclarationName());
2730   return Instantiator.TransformStmt(S);
2731 }
2732 
2733 ExprResult
2734 Sema::SubstExpr(Expr *E, const MultiLevelTemplateArgumentList &TemplateArgs) {
2735   if (!E)
2736     return E;
2737 
2738   TemplateInstantiator Instantiator(*this, TemplateArgs,
2739                                     SourceLocation(),
2740                                     DeclarationName());
2741   return Instantiator.TransformExpr(E);
2742 }
2743 
2744 ExprResult Sema::SubstInitializer(Expr *Init,
2745                           const MultiLevelTemplateArgumentList &TemplateArgs,
2746                           bool CXXDirectInit) {
2747   TemplateInstantiator Instantiator(*this, TemplateArgs,
2748                                     SourceLocation(),
2749                                     DeclarationName());
2750   return Instantiator.TransformInitializer(Init, CXXDirectInit);
2751 }
2752 
2753 bool Sema::SubstExprs(ArrayRef<Expr *> Exprs, bool IsCall,
2754                       const MultiLevelTemplateArgumentList &TemplateArgs,
2755                       SmallVectorImpl<Expr *> &Outputs) {
2756   if (Exprs.empty())
2757     return false;
2758 
2759   TemplateInstantiator Instantiator(*this, TemplateArgs,
2760                                     SourceLocation(),
2761                                     DeclarationName());
2762   return Instantiator.TransformExprs(Exprs.data(), Exprs.size(),
2763                                      IsCall, Outputs);
2764 }
2765 
2766 NestedNameSpecifierLoc
2767 Sema::SubstNestedNameSpecifierLoc(NestedNameSpecifierLoc NNS,
2768                         const MultiLevelTemplateArgumentList &TemplateArgs) {
2769   if (!NNS)
2770     return NestedNameSpecifierLoc();
2771 
2772   TemplateInstantiator Instantiator(*this, TemplateArgs, NNS.getBeginLoc(),
2773                                     DeclarationName());
2774   return Instantiator.TransformNestedNameSpecifierLoc(NNS);
2775 }
2776 
2777 /// \brief Do template substitution on declaration name info.
2778 DeclarationNameInfo
2779 Sema::SubstDeclarationNameInfo(const DeclarationNameInfo &NameInfo,
2780                          const MultiLevelTemplateArgumentList &TemplateArgs) {
2781   TemplateInstantiator Instantiator(*this, TemplateArgs, NameInfo.getLoc(),
2782                                     NameInfo.getName());
2783   return Instantiator.TransformDeclarationNameInfo(NameInfo);
2784 }
2785 
2786 TemplateName
2787 Sema::SubstTemplateName(NestedNameSpecifierLoc QualifierLoc,
2788                         TemplateName Name, SourceLocation Loc,
2789                         const MultiLevelTemplateArgumentList &TemplateArgs) {
2790   TemplateInstantiator Instantiator(*this, TemplateArgs, Loc,
2791                                     DeclarationName());
2792   CXXScopeSpec SS;
2793   SS.Adopt(QualifierLoc);
2794   return Instantiator.TransformTemplateName(SS, Name, Loc);
2795 }
2796 
2797 bool Sema::Subst(const TemplateArgumentLoc *Args, unsigned NumArgs,
2798                  TemplateArgumentListInfo &Result,
2799                  const MultiLevelTemplateArgumentList &TemplateArgs) {
2800   TemplateInstantiator Instantiator(*this, TemplateArgs, SourceLocation(),
2801                                     DeclarationName());
2802 
2803   return Instantiator.TransformTemplateArguments(Args, NumArgs, Result);
2804 }
2805 
2806 static const Decl *getCanonicalParmVarDecl(const Decl *D) {
2807   // When storing ParmVarDecls in the local instantiation scope, we always
2808   // want to use the ParmVarDecl from the canonical function declaration,
2809   // since the map is then valid for any redeclaration or definition of that
2810   // function.
2811   if (const ParmVarDecl *PV = dyn_cast<ParmVarDecl>(D)) {
2812     if (const FunctionDecl *FD = dyn_cast<FunctionDecl>(PV->getDeclContext())) {
2813       unsigned i = PV->getFunctionScopeIndex();
2814       // This parameter might be from a freestanding function type within the
2815       // function and isn't necessarily referring to one of FD's parameters.
2816       if (FD->getParamDecl(i) == PV)
2817         return FD->getCanonicalDecl()->getParamDecl(i);
2818     }
2819   }
2820   return D;
2821 }
2822 
2823 
2824 llvm::PointerUnion<Decl *, LocalInstantiationScope::DeclArgumentPack *> *
2825 LocalInstantiationScope::findInstantiationOf(const Decl *D) {
2826   D = getCanonicalParmVarDecl(D);
2827   for (LocalInstantiationScope *Current = this; Current;
2828        Current = Current->Outer) {
2829 
2830     // Check if we found something within this scope.
2831     const Decl *CheckD = D;
2832     do {
2833       LocalDeclsMap::iterator Found = Current->LocalDecls.find(CheckD);
2834       if (Found != Current->LocalDecls.end())
2835         return &Found->second;
2836 
2837       // If this is a tag declaration, it's possible that we need to look for
2838       // a previous declaration.
2839       if (const TagDecl *Tag = dyn_cast<TagDecl>(CheckD))
2840         CheckD = Tag->getPreviousDecl();
2841       else
2842         CheckD = nullptr;
2843     } while (CheckD);
2844 
2845     // If we aren't combined with our outer scope, we're done.
2846     if (!Current->CombineWithOuterScope)
2847       break;
2848   }
2849 
2850   // If we're performing a partial substitution during template argument
2851   // deduction, we may not have values for template parameters yet.
2852   if (isa<NonTypeTemplateParmDecl>(D) || isa<TemplateTypeParmDecl>(D) ||
2853       isa<TemplateTemplateParmDecl>(D))
2854     return nullptr;
2855 
2856   // Local types referenced prior to definition may require instantiation.
2857   if (const CXXRecordDecl *RD = dyn_cast<CXXRecordDecl>(D))
2858     if (RD->isLocalClass())
2859       return nullptr;
2860 
2861   // Enumeration types referenced prior to definition may appear as a result of
2862   // error recovery.
2863   if (isa<EnumDecl>(D))
2864     return nullptr;
2865 
2866   // If we didn't find the decl, then we either have a sema bug, or we have a
2867   // forward reference to a label declaration.  Return null to indicate that
2868   // we have an uninstantiated label.
2869   assert(isa<LabelDecl>(D) && "declaration not instantiated in this scope");
2870   return nullptr;
2871 }
2872 
2873 void LocalInstantiationScope::InstantiatedLocal(const Decl *D, Decl *Inst) {
2874   D = getCanonicalParmVarDecl(D);
2875   llvm::PointerUnion<Decl *, DeclArgumentPack *> &Stored = LocalDecls[D];
2876   if (Stored.isNull()) {
2877 #ifndef NDEBUG
2878     // It should not be present in any surrounding scope either.
2879     LocalInstantiationScope *Current = this;
2880     while (Current->CombineWithOuterScope && Current->Outer) {
2881       Current = Current->Outer;
2882       assert(Current->LocalDecls.find(D) == Current->LocalDecls.end() &&
2883              "Instantiated local in inner and outer scopes");
2884     }
2885 #endif
2886     Stored = Inst;
2887   } else if (DeclArgumentPack *Pack = Stored.dyn_cast<DeclArgumentPack *>()) {
2888     Pack->push_back(cast<ParmVarDecl>(Inst));
2889   } else {
2890     assert(Stored.get<Decl *>() == Inst && "Already instantiated this local");
2891   }
2892 }
2893 
2894 void LocalInstantiationScope::InstantiatedLocalPackArg(const Decl *D,
2895                                                        ParmVarDecl *Inst) {
2896   D = getCanonicalParmVarDecl(D);
2897   DeclArgumentPack *Pack = LocalDecls[D].get<DeclArgumentPack *>();
2898   Pack->push_back(Inst);
2899 }
2900 
2901 void LocalInstantiationScope::MakeInstantiatedLocalArgPack(const Decl *D) {
2902 #ifndef NDEBUG
2903   // This should be the first time we've been told about this decl.
2904   for (LocalInstantiationScope *Current = this;
2905        Current && Current->CombineWithOuterScope; Current = Current->Outer)
2906     assert(Current->LocalDecls.find(D) == Current->LocalDecls.end() &&
2907            "Creating local pack after instantiation of local");
2908 #endif
2909 
2910   D = getCanonicalParmVarDecl(D);
2911   llvm::PointerUnion<Decl *, DeclArgumentPack *> &Stored = LocalDecls[D];
2912   DeclArgumentPack *Pack = new DeclArgumentPack;
2913   Stored = Pack;
2914   ArgumentPacks.push_back(Pack);
2915 }
2916 
2917 void LocalInstantiationScope::SetPartiallySubstitutedPack(NamedDecl *Pack,
2918                                           const TemplateArgument *ExplicitArgs,
2919                                                     unsigned NumExplicitArgs) {
2920   assert((!PartiallySubstitutedPack || PartiallySubstitutedPack == Pack) &&
2921          "Already have a partially-substituted pack");
2922   assert((!PartiallySubstitutedPack
2923           || NumArgsInPartiallySubstitutedPack == NumExplicitArgs) &&
2924          "Wrong number of arguments in partially-substituted pack");
2925   PartiallySubstitutedPack = Pack;
2926   ArgsInPartiallySubstitutedPack = ExplicitArgs;
2927   NumArgsInPartiallySubstitutedPack = NumExplicitArgs;
2928 }
2929 
2930 NamedDecl *LocalInstantiationScope::getPartiallySubstitutedPack(
2931                                          const TemplateArgument **ExplicitArgs,
2932                                               unsigned *NumExplicitArgs) const {
2933   if (ExplicitArgs)
2934     *ExplicitArgs = nullptr;
2935   if (NumExplicitArgs)
2936     *NumExplicitArgs = 0;
2937 
2938   for (const LocalInstantiationScope *Current = this; Current;
2939        Current = Current->Outer) {
2940     if (Current->PartiallySubstitutedPack) {
2941       if (ExplicitArgs)
2942         *ExplicitArgs = Current->ArgsInPartiallySubstitutedPack;
2943       if (NumExplicitArgs)
2944         *NumExplicitArgs = Current->NumArgsInPartiallySubstitutedPack;
2945 
2946       return Current->PartiallySubstitutedPack;
2947     }
2948 
2949     if (!Current->CombineWithOuterScope)
2950       break;
2951   }
2952 
2953   return nullptr;
2954 }
2955