xref: /minix3/external/bsd/llvm/dist/clang/lib/Sema/SemaTemplateVariadic.cpp (revision 0a6a1f1d05b60e214de2f05a7310ddd1f0e590e7)
1  //===------- SemaTemplateVariadic.cpp - C++ Variadic Templates ------------===/
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 semantic analysis for C++0x variadic templates.
10  //===----------------------------------------------------------------------===/
11  
12  #include "clang/Sema/Sema.h"
13  #include "TypeLocBuilder.h"
14  #include "clang/AST/Expr.h"
15  #include "clang/AST/RecursiveASTVisitor.h"
16  #include "clang/AST/TypeLoc.h"
17  #include "clang/Sema/Lookup.h"
18  #include "clang/Sema/ParsedTemplate.h"
19  #include "clang/Sema/ScopeInfo.h"
20  #include "clang/Sema/SemaInternal.h"
21  #include "clang/Sema/Template.h"
22  
23  using namespace clang;
24  
25  //----------------------------------------------------------------------------
26  // Visitor that collects unexpanded parameter packs
27  //----------------------------------------------------------------------------
28  
29  namespace {
30    /// \brief A class that collects unexpanded parameter packs.
31    class CollectUnexpandedParameterPacksVisitor :
32      public RecursiveASTVisitor<CollectUnexpandedParameterPacksVisitor>
33    {
34      typedef RecursiveASTVisitor<CollectUnexpandedParameterPacksVisitor>
35        inherited;
36  
37      SmallVectorImpl<UnexpandedParameterPack> &Unexpanded;
38  
39      bool InLambda;
40  
41    public:
CollectUnexpandedParameterPacksVisitor(SmallVectorImpl<UnexpandedParameterPack> & Unexpanded)42      explicit CollectUnexpandedParameterPacksVisitor(
43                    SmallVectorImpl<UnexpandedParameterPack> &Unexpanded)
44        : Unexpanded(Unexpanded), InLambda(false) { }
45  
shouldWalkTypesOfTypeLocs() const46      bool shouldWalkTypesOfTypeLocs() const { return false; }
47  
48      //------------------------------------------------------------------------
49      // Recording occurrences of (unexpanded) parameter packs.
50      //------------------------------------------------------------------------
51  
52      /// \brief Record occurrences of template type parameter packs.
VisitTemplateTypeParmTypeLoc(TemplateTypeParmTypeLoc TL)53      bool VisitTemplateTypeParmTypeLoc(TemplateTypeParmTypeLoc TL) {
54        if (TL.getTypePtr()->isParameterPack())
55          Unexpanded.push_back(std::make_pair(TL.getTypePtr(), TL.getNameLoc()));
56        return true;
57      }
58  
59      /// \brief Record occurrences of template type parameter packs
60      /// when we don't have proper source-location information for
61      /// them.
62      ///
63      /// Ideally, this routine would never be used.
VisitTemplateTypeParmType(TemplateTypeParmType * T)64      bool VisitTemplateTypeParmType(TemplateTypeParmType *T) {
65        if (T->isParameterPack())
66          Unexpanded.push_back(std::make_pair(T, SourceLocation()));
67  
68        return true;
69      }
70  
71      /// \brief Record occurrences of function and non-type template
72      /// parameter packs in an expression.
VisitDeclRefExpr(DeclRefExpr * E)73      bool VisitDeclRefExpr(DeclRefExpr *E) {
74        if (E->getDecl()->isParameterPack())
75          Unexpanded.push_back(std::make_pair(E->getDecl(), E->getLocation()));
76  
77        return true;
78      }
79  
80      /// \brief Record occurrences of template template parameter packs.
TraverseTemplateName(TemplateName Template)81      bool TraverseTemplateName(TemplateName Template) {
82        if (TemplateTemplateParmDecl *TTP
83              = dyn_cast_or_null<TemplateTemplateParmDecl>(
84                                                    Template.getAsTemplateDecl()))
85          if (TTP->isParameterPack())
86            Unexpanded.push_back(std::make_pair(TTP, SourceLocation()));
87  
88        return inherited::TraverseTemplateName(Template);
89      }
90  
91      /// \brief Suppress traversal into Objective-C container literal
92      /// elements that are pack expansions.
TraverseObjCDictionaryLiteral(ObjCDictionaryLiteral * E)93      bool TraverseObjCDictionaryLiteral(ObjCDictionaryLiteral *E) {
94        if (!E->containsUnexpandedParameterPack())
95          return true;
96  
97        for (unsigned I = 0, N = E->getNumElements(); I != N; ++I) {
98          ObjCDictionaryElement Element = E->getKeyValueElement(I);
99          if (Element.isPackExpansion())
100            continue;
101  
102          TraverseStmt(Element.Key);
103          TraverseStmt(Element.Value);
104        }
105        return true;
106      }
107      //------------------------------------------------------------------------
108      // Pruning the search for unexpanded parameter packs.
109      //------------------------------------------------------------------------
110  
111      /// \brief Suppress traversal into statements and expressions that
112      /// do not contain unexpanded parameter packs.
TraverseStmt(Stmt * S)113      bool TraverseStmt(Stmt *S) {
114        Expr *E = dyn_cast_or_null<Expr>(S);
115        if ((E && E->containsUnexpandedParameterPack()) || InLambda)
116          return inherited::TraverseStmt(S);
117  
118        return true;
119      }
120  
121      /// \brief Suppress traversal into types that do not contain
122      /// unexpanded parameter packs.
TraverseType(QualType T)123      bool TraverseType(QualType T) {
124        if ((!T.isNull() && T->containsUnexpandedParameterPack()) || InLambda)
125          return inherited::TraverseType(T);
126  
127        return true;
128      }
129  
130      /// \brief Suppress traversel into types with location information
131      /// that do not contain unexpanded parameter packs.
TraverseTypeLoc(TypeLoc TL)132      bool TraverseTypeLoc(TypeLoc TL) {
133        if ((!TL.getType().isNull() &&
134             TL.getType()->containsUnexpandedParameterPack()) ||
135            InLambda)
136          return inherited::TraverseTypeLoc(TL);
137  
138        return true;
139      }
140  
141      /// \brief Suppress traversal of non-parameter declarations, since
142      /// they cannot contain unexpanded parameter packs.
TraverseDecl(Decl * D)143      bool TraverseDecl(Decl *D) {
144        if ((D && isa<ParmVarDecl>(D)) || InLambda)
145          return inherited::TraverseDecl(D);
146  
147        return true;
148      }
149  
150      /// \brief Suppress traversal of template argument pack expansions.
TraverseTemplateArgument(const TemplateArgument & Arg)151      bool TraverseTemplateArgument(const TemplateArgument &Arg) {
152        if (Arg.isPackExpansion())
153          return true;
154  
155        return inherited::TraverseTemplateArgument(Arg);
156      }
157  
158      /// \brief Suppress traversal of template argument pack expansions.
TraverseTemplateArgumentLoc(const TemplateArgumentLoc & ArgLoc)159      bool TraverseTemplateArgumentLoc(const TemplateArgumentLoc &ArgLoc) {
160        if (ArgLoc.getArgument().isPackExpansion())
161          return true;
162  
163        return inherited::TraverseTemplateArgumentLoc(ArgLoc);
164      }
165  
166      /// \brief Note whether we're traversing a lambda containing an unexpanded
167      /// parameter pack. In this case, the unexpanded pack can occur anywhere,
168      /// including all the places where we normally wouldn't look. Within a
169      /// lambda, we don't propagate the 'contains unexpanded parameter pack' bit
170      /// outside an expression.
TraverseLambdaExpr(LambdaExpr * Lambda)171      bool TraverseLambdaExpr(LambdaExpr *Lambda) {
172        // The ContainsUnexpandedParameterPack bit on a lambda is always correct,
173        // even if it's contained within another lambda.
174        if (!Lambda->containsUnexpandedParameterPack())
175          return true;
176  
177        bool WasInLambda = InLambda;
178        InLambda = true;
179  
180        // If any capture names a function parameter pack, that pack is expanded
181        // when the lambda is expanded.
182        for (LambdaExpr::capture_iterator I = Lambda->capture_begin(),
183                                          E = Lambda->capture_end();
184             I != E; ++I) {
185          if (I->capturesVariable()) {
186            VarDecl *VD = I->getCapturedVar();
187            if (VD->isParameterPack())
188              Unexpanded.push_back(std::make_pair(VD, I->getLocation()));
189          }
190        }
191  
192        inherited::TraverseLambdaExpr(Lambda);
193  
194        InLambda = WasInLambda;
195        return true;
196      }
197    };
198  }
199  
200  /// \brief Determine whether it's possible for an unexpanded parameter pack to
201  /// be valid in this location. This only happens when we're in a declaration
202  /// that is nested within an expression that could be expanded, such as a
203  /// lambda-expression within a function call.
204  ///
205  /// This is conservatively correct, but may claim that some unexpanded packs are
206  /// permitted when they are not.
isUnexpandedParameterPackPermitted()207  bool Sema::isUnexpandedParameterPackPermitted() {
208    for (auto *SI : FunctionScopes)
209      if (isa<sema::LambdaScopeInfo>(SI))
210        return true;
211    return false;
212  }
213  
214  /// \brief Diagnose all of the unexpanded parameter packs in the given
215  /// vector.
216  bool
DiagnoseUnexpandedParameterPacks(SourceLocation Loc,UnexpandedParameterPackContext UPPC,ArrayRef<UnexpandedParameterPack> Unexpanded)217  Sema::DiagnoseUnexpandedParameterPacks(SourceLocation Loc,
218                                         UnexpandedParameterPackContext UPPC,
219                                   ArrayRef<UnexpandedParameterPack> Unexpanded) {
220    if (Unexpanded.empty())
221      return false;
222  
223    // If we are within a lambda expression, that lambda contains an unexpanded
224    // parameter pack, and we are done.
225    // FIXME: Store 'Unexpanded' on the lambda so we don't need to recompute it
226    // later.
227    for (unsigned N = FunctionScopes.size(); N; --N) {
228      if (sema::LambdaScopeInfo *LSI =
229            dyn_cast<sema::LambdaScopeInfo>(FunctionScopes[N-1])) {
230        LSI->ContainsUnexpandedParameterPack = true;
231        return false;
232      }
233    }
234  
235    SmallVector<SourceLocation, 4> Locations;
236    SmallVector<IdentifierInfo *, 4> Names;
237    llvm::SmallPtrSet<IdentifierInfo *, 4> NamesKnown;
238  
239    for (unsigned I = 0, N = Unexpanded.size(); I != N; ++I) {
240      IdentifierInfo *Name = nullptr;
241      if (const TemplateTypeParmType *TTP
242            = Unexpanded[I].first.dyn_cast<const TemplateTypeParmType *>())
243        Name = TTP->getIdentifier();
244      else
245        Name = Unexpanded[I].first.get<NamedDecl *>()->getIdentifier();
246  
247      if (Name && NamesKnown.insert(Name).second)
248        Names.push_back(Name);
249  
250      if (Unexpanded[I].second.isValid())
251        Locations.push_back(Unexpanded[I].second);
252    }
253  
254    DiagnosticBuilder DB
255      = Names.size() == 0? Diag(Loc, diag::err_unexpanded_parameter_pack_0)
256                             << (int)UPPC
257      : Names.size() == 1? Diag(Loc, diag::err_unexpanded_parameter_pack_1)
258                             << (int)UPPC << Names[0]
259      : Names.size() == 2? Diag(Loc, diag::err_unexpanded_parameter_pack_2)
260                             << (int)UPPC << Names[0] << Names[1]
261      : Diag(Loc, diag::err_unexpanded_parameter_pack_3_or_more)
262          << (int)UPPC << Names[0] << Names[1];
263  
264    for (unsigned I = 0, N = Locations.size(); I != N; ++I)
265      DB << SourceRange(Locations[I]);
266    return true;
267  }
268  
DiagnoseUnexpandedParameterPack(SourceLocation Loc,TypeSourceInfo * T,UnexpandedParameterPackContext UPPC)269  bool Sema::DiagnoseUnexpandedParameterPack(SourceLocation Loc,
270                                             TypeSourceInfo *T,
271                                           UnexpandedParameterPackContext UPPC) {
272    // C++0x [temp.variadic]p5:
273    //   An appearance of a name of a parameter pack that is not expanded is
274    //   ill-formed.
275    if (!T->getType()->containsUnexpandedParameterPack())
276      return false;
277  
278    SmallVector<UnexpandedParameterPack, 2> Unexpanded;
279    CollectUnexpandedParameterPacksVisitor(Unexpanded).TraverseTypeLoc(
280                                                                T->getTypeLoc());
281    assert(!Unexpanded.empty() && "Unable to find unexpanded parameter packs");
282    return DiagnoseUnexpandedParameterPacks(Loc, UPPC, Unexpanded);
283  }
284  
DiagnoseUnexpandedParameterPack(Expr * E,UnexpandedParameterPackContext UPPC)285  bool Sema::DiagnoseUnexpandedParameterPack(Expr *E,
286                                          UnexpandedParameterPackContext UPPC) {
287    // C++0x [temp.variadic]p5:
288    //   An appearance of a name of a parameter pack that is not expanded is
289    //   ill-formed.
290    if (!E->containsUnexpandedParameterPack())
291      return false;
292  
293    SmallVector<UnexpandedParameterPack, 2> Unexpanded;
294    CollectUnexpandedParameterPacksVisitor(Unexpanded).TraverseStmt(E);
295    assert(!Unexpanded.empty() && "Unable to find unexpanded parameter packs");
296    return DiagnoseUnexpandedParameterPacks(E->getLocStart(), UPPC, Unexpanded);
297  }
298  
DiagnoseUnexpandedParameterPack(const CXXScopeSpec & SS,UnexpandedParameterPackContext UPPC)299  bool Sema::DiagnoseUnexpandedParameterPack(const CXXScopeSpec &SS,
300                                          UnexpandedParameterPackContext UPPC) {
301    // C++0x [temp.variadic]p5:
302    //   An appearance of a name of a parameter pack that is not expanded is
303    //   ill-formed.
304    if (!SS.getScopeRep() ||
305        !SS.getScopeRep()->containsUnexpandedParameterPack())
306      return false;
307  
308    SmallVector<UnexpandedParameterPack, 2> Unexpanded;
309    CollectUnexpandedParameterPacksVisitor(Unexpanded)
310      .TraverseNestedNameSpecifier(SS.getScopeRep());
311    assert(!Unexpanded.empty() && "Unable to find unexpanded parameter packs");
312    return DiagnoseUnexpandedParameterPacks(SS.getRange().getBegin(),
313                                            UPPC, Unexpanded);
314  }
315  
DiagnoseUnexpandedParameterPack(const DeclarationNameInfo & NameInfo,UnexpandedParameterPackContext UPPC)316  bool Sema::DiagnoseUnexpandedParameterPack(const DeclarationNameInfo &NameInfo,
317                                           UnexpandedParameterPackContext UPPC) {
318    // C++0x [temp.variadic]p5:
319    //   An appearance of a name of a parameter pack that is not expanded is
320    //   ill-formed.
321    switch (NameInfo.getName().getNameKind()) {
322    case DeclarationName::Identifier:
323    case DeclarationName::ObjCZeroArgSelector:
324    case DeclarationName::ObjCOneArgSelector:
325    case DeclarationName::ObjCMultiArgSelector:
326    case DeclarationName::CXXOperatorName:
327    case DeclarationName::CXXLiteralOperatorName:
328    case DeclarationName::CXXUsingDirective:
329      return false;
330  
331    case DeclarationName::CXXConstructorName:
332    case DeclarationName::CXXDestructorName:
333    case DeclarationName::CXXConversionFunctionName:
334      // FIXME: We shouldn't need this null check!
335      if (TypeSourceInfo *TSInfo = NameInfo.getNamedTypeInfo())
336        return DiagnoseUnexpandedParameterPack(NameInfo.getLoc(), TSInfo, UPPC);
337  
338      if (!NameInfo.getName().getCXXNameType()->containsUnexpandedParameterPack())
339        return false;
340  
341      break;
342    }
343  
344    SmallVector<UnexpandedParameterPack, 2> Unexpanded;
345    CollectUnexpandedParameterPacksVisitor(Unexpanded)
346      .TraverseType(NameInfo.getName().getCXXNameType());
347    assert(!Unexpanded.empty() && "Unable to find unexpanded parameter packs");
348    return DiagnoseUnexpandedParameterPacks(NameInfo.getLoc(), UPPC, Unexpanded);
349  }
350  
DiagnoseUnexpandedParameterPack(SourceLocation Loc,TemplateName Template,UnexpandedParameterPackContext UPPC)351  bool Sema::DiagnoseUnexpandedParameterPack(SourceLocation Loc,
352                                             TemplateName Template,
353                                         UnexpandedParameterPackContext UPPC) {
354  
355    if (Template.isNull() || !Template.containsUnexpandedParameterPack())
356      return false;
357  
358    SmallVector<UnexpandedParameterPack, 2> Unexpanded;
359    CollectUnexpandedParameterPacksVisitor(Unexpanded)
360      .TraverseTemplateName(Template);
361    assert(!Unexpanded.empty() && "Unable to find unexpanded parameter packs");
362    return DiagnoseUnexpandedParameterPacks(Loc, UPPC, Unexpanded);
363  }
364  
DiagnoseUnexpandedParameterPack(TemplateArgumentLoc Arg,UnexpandedParameterPackContext UPPC)365  bool Sema::DiagnoseUnexpandedParameterPack(TemplateArgumentLoc Arg,
366                                           UnexpandedParameterPackContext UPPC) {
367    if (Arg.getArgument().isNull() ||
368        !Arg.getArgument().containsUnexpandedParameterPack())
369      return false;
370  
371    SmallVector<UnexpandedParameterPack, 2> Unexpanded;
372    CollectUnexpandedParameterPacksVisitor(Unexpanded)
373      .TraverseTemplateArgumentLoc(Arg);
374    assert(!Unexpanded.empty() && "Unable to find unexpanded parameter packs");
375    return DiagnoseUnexpandedParameterPacks(Arg.getLocation(), UPPC, Unexpanded);
376  }
377  
collectUnexpandedParameterPacks(TemplateArgument Arg,SmallVectorImpl<UnexpandedParameterPack> & Unexpanded)378  void Sema::collectUnexpandedParameterPacks(TemplateArgument Arg,
379                     SmallVectorImpl<UnexpandedParameterPack> &Unexpanded) {
380    CollectUnexpandedParameterPacksVisitor(Unexpanded)
381      .TraverseTemplateArgument(Arg);
382  }
383  
collectUnexpandedParameterPacks(TemplateArgumentLoc Arg,SmallVectorImpl<UnexpandedParameterPack> & Unexpanded)384  void Sema::collectUnexpandedParameterPacks(TemplateArgumentLoc Arg,
385                     SmallVectorImpl<UnexpandedParameterPack> &Unexpanded) {
386    CollectUnexpandedParameterPacksVisitor(Unexpanded)
387      .TraverseTemplateArgumentLoc(Arg);
388  }
389  
collectUnexpandedParameterPacks(QualType T,SmallVectorImpl<UnexpandedParameterPack> & Unexpanded)390  void Sema::collectUnexpandedParameterPacks(QualType T,
391                     SmallVectorImpl<UnexpandedParameterPack> &Unexpanded) {
392    CollectUnexpandedParameterPacksVisitor(Unexpanded).TraverseType(T);
393  }
394  
collectUnexpandedParameterPacks(TypeLoc TL,SmallVectorImpl<UnexpandedParameterPack> & Unexpanded)395  void Sema::collectUnexpandedParameterPacks(TypeLoc TL,
396                     SmallVectorImpl<UnexpandedParameterPack> &Unexpanded) {
397    CollectUnexpandedParameterPacksVisitor(Unexpanded).TraverseTypeLoc(TL);
398  }
399  
collectUnexpandedParameterPacks(CXXScopeSpec & SS,SmallVectorImpl<UnexpandedParameterPack> & Unexpanded)400  void Sema::collectUnexpandedParameterPacks(CXXScopeSpec &SS,
401                                             SmallVectorImpl<UnexpandedParameterPack> &Unexpanded) {
402    NestedNameSpecifier *Qualifier = SS.getScopeRep();
403    if (!Qualifier)
404      return;
405  
406    NestedNameSpecifierLoc QualifierLoc(Qualifier, SS.location_data());
407    CollectUnexpandedParameterPacksVisitor(Unexpanded)
408      .TraverseNestedNameSpecifierLoc(QualifierLoc);
409  }
410  
collectUnexpandedParameterPacks(const DeclarationNameInfo & NameInfo,SmallVectorImpl<UnexpandedParameterPack> & Unexpanded)411  void Sema::collectUnexpandedParameterPacks(const DeclarationNameInfo &NameInfo,
412                           SmallVectorImpl<UnexpandedParameterPack> &Unexpanded) {
413    CollectUnexpandedParameterPacksVisitor(Unexpanded)
414      .TraverseDeclarationNameInfo(NameInfo);
415  }
416  
417  
418  ParsedTemplateArgument
ActOnPackExpansion(const ParsedTemplateArgument & Arg,SourceLocation EllipsisLoc)419  Sema::ActOnPackExpansion(const ParsedTemplateArgument &Arg,
420                           SourceLocation EllipsisLoc) {
421    if (Arg.isInvalid())
422      return Arg;
423  
424    switch (Arg.getKind()) {
425    case ParsedTemplateArgument::Type: {
426      TypeResult Result = ActOnPackExpansion(Arg.getAsType(), EllipsisLoc);
427      if (Result.isInvalid())
428        return ParsedTemplateArgument();
429  
430      return ParsedTemplateArgument(Arg.getKind(), Result.get().getAsOpaquePtr(),
431                                    Arg.getLocation());
432    }
433  
434    case ParsedTemplateArgument::NonType: {
435      ExprResult Result = ActOnPackExpansion(Arg.getAsExpr(), EllipsisLoc);
436      if (Result.isInvalid())
437        return ParsedTemplateArgument();
438  
439      return ParsedTemplateArgument(Arg.getKind(), Result.get(),
440                                    Arg.getLocation());
441    }
442  
443    case ParsedTemplateArgument::Template:
444      if (!Arg.getAsTemplate().get().containsUnexpandedParameterPack()) {
445        SourceRange R(Arg.getLocation());
446        if (Arg.getScopeSpec().isValid())
447          R.setBegin(Arg.getScopeSpec().getBeginLoc());
448        Diag(EllipsisLoc, diag::err_pack_expansion_without_parameter_packs)
449          << R;
450        return ParsedTemplateArgument();
451      }
452  
453      return Arg.getTemplatePackExpansion(EllipsisLoc);
454    }
455    llvm_unreachable("Unhandled template argument kind?");
456  }
457  
ActOnPackExpansion(ParsedType Type,SourceLocation EllipsisLoc)458  TypeResult Sema::ActOnPackExpansion(ParsedType Type,
459                                      SourceLocation EllipsisLoc) {
460    TypeSourceInfo *TSInfo;
461    GetTypeFromParser(Type, &TSInfo);
462    if (!TSInfo)
463      return true;
464  
465    TypeSourceInfo *TSResult = CheckPackExpansion(TSInfo, EllipsisLoc, None);
466    if (!TSResult)
467      return true;
468  
469    return CreateParsedType(TSResult->getType(), TSResult);
470  }
471  
472  TypeSourceInfo *
CheckPackExpansion(TypeSourceInfo * Pattern,SourceLocation EllipsisLoc,Optional<unsigned> NumExpansions)473  Sema::CheckPackExpansion(TypeSourceInfo *Pattern, SourceLocation EllipsisLoc,
474                           Optional<unsigned> NumExpansions) {
475    // Create the pack expansion type and source-location information.
476    QualType Result = CheckPackExpansion(Pattern->getType(),
477                                         Pattern->getTypeLoc().getSourceRange(),
478                                         EllipsisLoc, NumExpansions);
479    if (Result.isNull())
480      return nullptr;
481  
482    TypeLocBuilder TLB;
483    TLB.pushFullCopy(Pattern->getTypeLoc());
484    PackExpansionTypeLoc TL = TLB.push<PackExpansionTypeLoc>(Result);
485    TL.setEllipsisLoc(EllipsisLoc);
486  
487    return TLB.getTypeSourceInfo(Context, Result);
488  }
489  
CheckPackExpansion(QualType Pattern,SourceRange PatternRange,SourceLocation EllipsisLoc,Optional<unsigned> NumExpansions)490  QualType Sema::CheckPackExpansion(QualType Pattern, SourceRange PatternRange,
491                                    SourceLocation EllipsisLoc,
492                                    Optional<unsigned> NumExpansions) {
493    // C++0x [temp.variadic]p5:
494    //   The pattern of a pack expansion shall name one or more
495    //   parameter packs that are not expanded by a nested pack
496    //   expansion.
497    if (!Pattern->containsUnexpandedParameterPack()) {
498      Diag(EllipsisLoc, diag::err_pack_expansion_without_parameter_packs)
499        << PatternRange;
500      return QualType();
501    }
502  
503    return Context.getPackExpansionType(Pattern, NumExpansions);
504  }
505  
ActOnPackExpansion(Expr * Pattern,SourceLocation EllipsisLoc)506  ExprResult Sema::ActOnPackExpansion(Expr *Pattern, SourceLocation EllipsisLoc) {
507    return CheckPackExpansion(Pattern, EllipsisLoc, None);
508  }
509  
CheckPackExpansion(Expr * Pattern,SourceLocation EllipsisLoc,Optional<unsigned> NumExpansions)510  ExprResult Sema::CheckPackExpansion(Expr *Pattern, SourceLocation EllipsisLoc,
511                                      Optional<unsigned> NumExpansions) {
512    if (!Pattern)
513      return ExprError();
514  
515    // C++0x [temp.variadic]p5:
516    //   The pattern of a pack expansion shall name one or more
517    //   parameter packs that are not expanded by a nested pack
518    //   expansion.
519    if (!Pattern->containsUnexpandedParameterPack()) {
520      Diag(EllipsisLoc, diag::err_pack_expansion_without_parameter_packs)
521      << Pattern->getSourceRange();
522      return ExprError();
523    }
524  
525    // Create the pack expansion expression and source-location information.
526    return new (Context)
527      PackExpansionExpr(Context.DependentTy, Pattern, EllipsisLoc, NumExpansions);
528  }
529  
530  /// \brief Retrieve the depth and index of a parameter pack.
531  static std::pair<unsigned, unsigned>
getDepthAndIndex(NamedDecl * ND)532  getDepthAndIndex(NamedDecl *ND) {
533    if (TemplateTypeParmDecl *TTP = dyn_cast<TemplateTypeParmDecl>(ND))
534      return std::make_pair(TTP->getDepth(), TTP->getIndex());
535  
536    if (NonTypeTemplateParmDecl *NTTP = dyn_cast<NonTypeTemplateParmDecl>(ND))
537      return std::make_pair(NTTP->getDepth(), NTTP->getIndex());
538  
539    TemplateTemplateParmDecl *TTP = cast<TemplateTemplateParmDecl>(ND);
540    return std::make_pair(TTP->getDepth(), TTP->getIndex());
541  }
542  
CheckParameterPacksForExpansion(SourceLocation EllipsisLoc,SourceRange PatternRange,ArrayRef<UnexpandedParameterPack> Unexpanded,const MultiLevelTemplateArgumentList & TemplateArgs,bool & ShouldExpand,bool & RetainExpansion,Optional<unsigned> & NumExpansions)543  bool Sema::CheckParameterPacksForExpansion(
544      SourceLocation EllipsisLoc, SourceRange PatternRange,
545      ArrayRef<UnexpandedParameterPack> Unexpanded,
546      const MultiLevelTemplateArgumentList &TemplateArgs, bool &ShouldExpand,
547      bool &RetainExpansion, Optional<unsigned> &NumExpansions) {
548    ShouldExpand = true;
549    RetainExpansion = false;
550    std::pair<IdentifierInfo *, SourceLocation> FirstPack;
551    bool HaveFirstPack = false;
552  
553    for (ArrayRef<UnexpandedParameterPack>::iterator i = Unexpanded.begin(),
554                                                   end = Unexpanded.end();
555                                                    i != end; ++i) {
556      // Compute the depth and index for this parameter pack.
557      unsigned Depth = 0, Index = 0;
558      IdentifierInfo *Name;
559      bool IsFunctionParameterPack = false;
560  
561      if (const TemplateTypeParmType *TTP
562          = i->first.dyn_cast<const TemplateTypeParmType *>()) {
563        Depth = TTP->getDepth();
564        Index = TTP->getIndex();
565        Name = TTP->getIdentifier();
566      } else {
567        NamedDecl *ND = i->first.get<NamedDecl *>();
568        if (isa<ParmVarDecl>(ND))
569          IsFunctionParameterPack = true;
570        else
571          std::tie(Depth, Index) = getDepthAndIndex(ND);
572  
573        Name = ND->getIdentifier();
574      }
575  
576      // Determine the size of this argument pack.
577      unsigned NewPackSize;
578      if (IsFunctionParameterPack) {
579        // Figure out whether we're instantiating to an argument pack or not.
580        typedef LocalInstantiationScope::DeclArgumentPack DeclArgumentPack;
581  
582        llvm::PointerUnion<Decl *, DeclArgumentPack *> *Instantiation
583          = CurrentInstantiationScope->findInstantiationOf(
584                                          i->first.get<NamedDecl *>());
585        if (Instantiation->is<DeclArgumentPack *>()) {
586          // We could expand this function parameter pack.
587          NewPackSize = Instantiation->get<DeclArgumentPack *>()->size();
588        } else {
589          // We can't expand this function parameter pack, so we can't expand
590          // the pack expansion.
591          ShouldExpand = false;
592          continue;
593        }
594      } else {
595        // If we don't have a template argument at this depth/index, then we
596        // cannot expand the pack expansion. Make a note of this, but we still
597        // want to check any parameter packs we *do* have arguments for.
598        if (Depth >= TemplateArgs.getNumLevels() ||
599            !TemplateArgs.hasTemplateArgument(Depth, Index)) {
600          ShouldExpand = false;
601          continue;
602        }
603  
604        // Determine the size of the argument pack.
605        NewPackSize = TemplateArgs(Depth, Index).pack_size();
606      }
607  
608      // C++0x [temp.arg.explicit]p9:
609      //   Template argument deduction can extend the sequence of template
610      //   arguments corresponding to a template parameter pack, even when the
611      //   sequence contains explicitly specified template arguments.
612      if (!IsFunctionParameterPack) {
613        if (NamedDecl *PartialPack
614                      = CurrentInstantiationScope->getPartiallySubstitutedPack()){
615          unsigned PartialDepth, PartialIndex;
616          std::tie(PartialDepth, PartialIndex) = getDepthAndIndex(PartialPack);
617          if (PartialDepth == Depth && PartialIndex == Index)
618            RetainExpansion = true;
619        }
620      }
621  
622      if (!NumExpansions) {
623        // The is the first pack we've seen for which we have an argument.
624        // Record it.
625        NumExpansions = NewPackSize;
626        FirstPack.first = Name;
627        FirstPack.second = i->second;
628        HaveFirstPack = true;
629        continue;
630      }
631  
632      if (NewPackSize != *NumExpansions) {
633        // C++0x [temp.variadic]p5:
634        //   All of the parameter packs expanded by a pack expansion shall have
635        //   the same number of arguments specified.
636        if (HaveFirstPack)
637          Diag(EllipsisLoc, diag::err_pack_expansion_length_conflict)
638            << FirstPack.first << Name << *NumExpansions << NewPackSize
639            << SourceRange(FirstPack.second) << SourceRange(i->second);
640        else
641          Diag(EllipsisLoc, diag::err_pack_expansion_length_conflict_multilevel)
642            << Name << *NumExpansions << NewPackSize
643            << SourceRange(i->second);
644        return true;
645      }
646    }
647  
648    return false;
649  }
650  
getNumArgumentsInExpansion(QualType T,const MultiLevelTemplateArgumentList & TemplateArgs)651  Optional<unsigned> Sema::getNumArgumentsInExpansion(QualType T,
652                            const MultiLevelTemplateArgumentList &TemplateArgs) {
653    QualType Pattern = cast<PackExpansionType>(T)->getPattern();
654    SmallVector<UnexpandedParameterPack, 2> Unexpanded;
655    CollectUnexpandedParameterPacksVisitor(Unexpanded).TraverseType(Pattern);
656  
657    Optional<unsigned> Result;
658    for (unsigned I = 0, N = Unexpanded.size(); I != N; ++I) {
659      // Compute the depth and index for this parameter pack.
660      unsigned Depth;
661      unsigned Index;
662  
663      if (const TemplateTypeParmType *TTP
664            = Unexpanded[I].first.dyn_cast<const TemplateTypeParmType *>()) {
665        Depth = TTP->getDepth();
666        Index = TTP->getIndex();
667      } else {
668        NamedDecl *ND = Unexpanded[I].first.get<NamedDecl *>();
669        if (isa<ParmVarDecl>(ND)) {
670          // Function parameter pack.
671          typedef LocalInstantiationScope::DeclArgumentPack DeclArgumentPack;
672  
673          llvm::PointerUnion<Decl *, DeclArgumentPack *> *Instantiation
674            = CurrentInstantiationScope->findInstantiationOf(
675                                          Unexpanded[I].first.get<NamedDecl *>());
676          if (Instantiation->is<Decl*>())
677            // The pattern refers to an unexpanded pack. We're not ready to expand
678            // this pack yet.
679            return None;
680  
681          unsigned Size = Instantiation->get<DeclArgumentPack *>()->size();
682          assert((!Result || *Result == Size) && "inconsistent pack sizes");
683          Result = Size;
684          continue;
685        }
686  
687        std::tie(Depth, Index) = getDepthAndIndex(ND);
688      }
689      if (Depth >= TemplateArgs.getNumLevels() ||
690          !TemplateArgs.hasTemplateArgument(Depth, Index))
691        // The pattern refers to an unknown template argument. We're not ready to
692        // expand this pack yet.
693        return None;
694  
695      // Determine the size of the argument pack.
696      unsigned Size = TemplateArgs(Depth, Index).pack_size();
697      assert((!Result || *Result == Size) && "inconsistent pack sizes");
698      Result = Size;
699    }
700  
701    return Result;
702  }
703  
containsUnexpandedParameterPacks(Declarator & D)704  bool Sema::containsUnexpandedParameterPacks(Declarator &D) {
705    const DeclSpec &DS = D.getDeclSpec();
706    switch (DS.getTypeSpecType()) {
707    case TST_typename:
708    case TST_typeofType:
709    case TST_underlyingType:
710    case TST_atomic: {
711      QualType T = DS.getRepAsType().get();
712      if (!T.isNull() && T->containsUnexpandedParameterPack())
713        return true;
714      break;
715    }
716  
717    case TST_typeofExpr:
718    case TST_decltype:
719      if (DS.getRepAsExpr() &&
720          DS.getRepAsExpr()->containsUnexpandedParameterPack())
721        return true;
722      break;
723  
724    case TST_unspecified:
725    case TST_void:
726    case TST_char:
727    case TST_wchar:
728    case TST_char16:
729    case TST_char32:
730    case TST_int:
731    case TST_int128:
732    case TST_half:
733    case TST_float:
734    case TST_double:
735    case TST_bool:
736    case TST_decimal32:
737    case TST_decimal64:
738    case TST_decimal128:
739    case TST_enum:
740    case TST_union:
741    case TST_struct:
742    case TST_interface:
743    case TST_class:
744    case TST_auto:
745    case TST_decltype_auto:
746    case TST_unknown_anytype:
747    case TST_error:
748      break;
749    }
750  
751    for (unsigned I = 0, N = D.getNumTypeObjects(); I != N; ++I) {
752      const DeclaratorChunk &Chunk = D.getTypeObject(I);
753      switch (Chunk.Kind) {
754      case DeclaratorChunk::Pointer:
755      case DeclaratorChunk::Reference:
756      case DeclaratorChunk::Paren:
757      case DeclaratorChunk::BlockPointer:
758        // These declarator chunks cannot contain any parameter packs.
759        break;
760  
761      case DeclaratorChunk::Array:
762        if (Chunk.Arr.NumElts &&
763            Chunk.Arr.NumElts->containsUnexpandedParameterPack())
764          return true;
765        break;
766      case DeclaratorChunk::Function:
767        for (unsigned i = 0, e = Chunk.Fun.NumParams; i != e; ++i) {
768          ParmVarDecl *Param = cast<ParmVarDecl>(Chunk.Fun.Params[i].Param);
769          QualType ParamTy = Param->getType();
770          assert(!ParamTy.isNull() && "Couldn't parse type?");
771          if (ParamTy->containsUnexpandedParameterPack()) return true;
772        }
773  
774        if (Chunk.Fun.getExceptionSpecType() == EST_Dynamic) {
775          for (unsigned i = 0; i != Chunk.Fun.NumExceptions; ++i) {
776            if (Chunk.Fun.Exceptions[i]
777                    .Ty.get()
778                    ->containsUnexpandedParameterPack())
779              return true;
780          }
781        } else if (Chunk.Fun.getExceptionSpecType() == EST_ComputedNoexcept &&
782                   Chunk.Fun.NoexceptExpr->containsUnexpandedParameterPack())
783          return true;
784  
785        if (Chunk.Fun.hasTrailingReturnType()) {
786          QualType T = Chunk.Fun.getTrailingReturnType().get();
787  	if (!T.isNull() && T->containsUnexpandedParameterPack())
788  	  return true;
789        }
790        break;
791  
792      case DeclaratorChunk::MemberPointer:
793        if (Chunk.Mem.Scope().getScopeRep() &&
794            Chunk.Mem.Scope().getScopeRep()->containsUnexpandedParameterPack())
795          return true;
796        break;
797      }
798    }
799  
800    return false;
801  }
802  
803  namespace {
804  
805  // Callback to only accept typo corrections that refer to parameter packs.
806  class ParameterPackValidatorCCC : public CorrectionCandidateCallback {
807   public:
ValidateCandidate(const TypoCorrection & candidate)808    bool ValidateCandidate(const TypoCorrection &candidate) override {
809      NamedDecl *ND = candidate.getCorrectionDecl();
810      return ND && ND->isParameterPack();
811    }
812  };
813  
814  }
815  
816  /// \brief Called when an expression computing the size of a parameter pack
817  /// is parsed.
818  ///
819  /// \code
820  /// template<typename ...Types> struct count {
821  ///   static const unsigned value = sizeof...(Types);
822  /// };
823  /// \endcode
824  ///
825  //
826  /// \param OpLoc The location of the "sizeof" keyword.
827  /// \param Name The name of the parameter pack whose size will be determined.
828  /// \param NameLoc The source location of the name of the parameter pack.
829  /// \param RParenLoc The location of the closing parentheses.
ActOnSizeofParameterPackExpr(Scope * S,SourceLocation OpLoc,IdentifierInfo & Name,SourceLocation NameLoc,SourceLocation RParenLoc)830  ExprResult Sema::ActOnSizeofParameterPackExpr(Scope *S,
831                                                SourceLocation OpLoc,
832                                                IdentifierInfo &Name,
833                                                SourceLocation NameLoc,
834                                                SourceLocation RParenLoc) {
835    // C++0x [expr.sizeof]p5:
836    //   The identifier in a sizeof... expression shall name a parameter pack.
837    LookupResult R(*this, &Name, NameLoc, LookupOrdinaryName);
838    LookupName(R, S);
839  
840    NamedDecl *ParameterPack = nullptr;
841    switch (R.getResultKind()) {
842    case LookupResult::Found:
843      ParameterPack = R.getFoundDecl();
844      break;
845  
846    case LookupResult::NotFound:
847    case LookupResult::NotFoundInCurrentInstantiation:
848      if (TypoCorrection Corrected =
849              CorrectTypo(R.getLookupNameInfo(), R.getLookupKind(), S, nullptr,
850                          llvm::make_unique<ParameterPackValidatorCCC>(),
851                          CTK_ErrorRecovery)) {
852        diagnoseTypo(Corrected,
853                     PDiag(diag::err_sizeof_pack_no_pack_name_suggest) << &Name,
854                     PDiag(diag::note_parameter_pack_here));
855        ParameterPack = Corrected.getCorrectionDecl();
856      }
857  
858    case LookupResult::FoundOverloaded:
859    case LookupResult::FoundUnresolvedValue:
860      break;
861  
862    case LookupResult::Ambiguous:
863      DiagnoseAmbiguousLookup(R);
864      return ExprError();
865    }
866  
867    if (!ParameterPack || !ParameterPack->isParameterPack()) {
868      Diag(NameLoc, diag::err_sizeof_pack_no_pack_name)
869        << &Name;
870      return ExprError();
871    }
872  
873    MarkAnyDeclReferenced(OpLoc, ParameterPack, true);
874  
875    return new (Context) SizeOfPackExpr(Context.getSizeType(), OpLoc,
876                                        ParameterPack, NameLoc, RParenLoc);
877  }
878  
879  TemplateArgumentLoc
getTemplateArgumentPackExpansionPattern(TemplateArgumentLoc OrigLoc,SourceLocation & Ellipsis,Optional<unsigned> & NumExpansions) const880  Sema::getTemplateArgumentPackExpansionPattern(
881        TemplateArgumentLoc OrigLoc,
882        SourceLocation &Ellipsis, Optional<unsigned> &NumExpansions) const {
883    const TemplateArgument &Argument = OrigLoc.getArgument();
884    assert(Argument.isPackExpansion());
885    switch (Argument.getKind()) {
886    case TemplateArgument::Type: {
887      // FIXME: We shouldn't ever have to worry about missing
888      // type-source info!
889      TypeSourceInfo *ExpansionTSInfo = OrigLoc.getTypeSourceInfo();
890      if (!ExpansionTSInfo)
891        ExpansionTSInfo = Context.getTrivialTypeSourceInfo(Argument.getAsType(),
892                                                           Ellipsis);
893      PackExpansionTypeLoc Expansion =
894          ExpansionTSInfo->getTypeLoc().castAs<PackExpansionTypeLoc>();
895      Ellipsis = Expansion.getEllipsisLoc();
896  
897      TypeLoc Pattern = Expansion.getPatternLoc();
898      NumExpansions = Expansion.getTypePtr()->getNumExpansions();
899  
900      // We need to copy the TypeLoc because TemplateArgumentLocs store a
901      // TypeSourceInfo.
902      // FIXME: Find some way to avoid the copy?
903      TypeLocBuilder TLB;
904      TLB.pushFullCopy(Pattern);
905      TypeSourceInfo *PatternTSInfo =
906          TLB.getTypeSourceInfo(Context, Pattern.getType());
907      return TemplateArgumentLoc(TemplateArgument(Pattern.getType()),
908                                 PatternTSInfo);
909    }
910  
911    case TemplateArgument::Expression: {
912      PackExpansionExpr *Expansion
913        = cast<PackExpansionExpr>(Argument.getAsExpr());
914      Expr *Pattern = Expansion->getPattern();
915      Ellipsis = Expansion->getEllipsisLoc();
916      NumExpansions = Expansion->getNumExpansions();
917      return TemplateArgumentLoc(Pattern, Pattern);
918    }
919  
920    case TemplateArgument::TemplateExpansion:
921      Ellipsis = OrigLoc.getTemplateEllipsisLoc();
922      NumExpansions = Argument.getNumTemplateExpansions();
923      return TemplateArgumentLoc(Argument.getPackExpansionPattern(),
924                                 OrigLoc.getTemplateQualifierLoc(),
925                                 OrigLoc.getTemplateNameLoc());
926  
927    case TemplateArgument::Declaration:
928    case TemplateArgument::NullPtr:
929    case TemplateArgument::Template:
930    case TemplateArgument::Integral:
931    case TemplateArgument::Pack:
932    case TemplateArgument::Null:
933      return TemplateArgumentLoc();
934    }
935  
936    llvm_unreachable("Invalid TemplateArgument Kind!");
937  }
938  
CheckFoldOperand(Sema & S,Expr * E)939  static void CheckFoldOperand(Sema &S, Expr *E) {
940    if (!E)
941      return;
942  
943    E = E->IgnoreImpCasts();
944    if (isa<BinaryOperator>(E) || isa<AbstractConditionalOperator>(E)) {
945      S.Diag(E->getExprLoc(), diag::err_fold_expression_bad_operand)
946          << E->getSourceRange()
947          << FixItHint::CreateInsertion(E->getLocStart(), "(")
948          << FixItHint::CreateInsertion(E->getLocEnd(), ")");
949    }
950  }
951  
ActOnCXXFoldExpr(SourceLocation LParenLoc,Expr * LHS,tok::TokenKind Operator,SourceLocation EllipsisLoc,Expr * RHS,SourceLocation RParenLoc)952  ExprResult Sema::ActOnCXXFoldExpr(SourceLocation LParenLoc, Expr *LHS,
953                                    tok::TokenKind Operator,
954                                    SourceLocation EllipsisLoc, Expr *RHS,
955                                    SourceLocation RParenLoc) {
956    // LHS and RHS must be cast-expressions. We allow an arbitrary expression
957    // in the parser and reduce down to just cast-expressions here.
958    CheckFoldOperand(*this, LHS);
959    CheckFoldOperand(*this, RHS);
960  
961    // [expr.prim.fold]p3:
962    //   In a binary fold, op1 and op2 shall be the same fold-operator, and
963    //   either e1 shall contain an unexpanded parameter pack or e2 shall contain
964    //   an unexpanded parameter pack, but not both.
965    if (LHS && RHS &&
966        LHS->containsUnexpandedParameterPack() ==
967            RHS->containsUnexpandedParameterPack()) {
968      return Diag(EllipsisLoc,
969                  LHS->containsUnexpandedParameterPack()
970                      ? diag::err_fold_expression_packs_both_sides
971                      : diag::err_pack_expansion_without_parameter_packs)
972          << LHS->getSourceRange() << RHS->getSourceRange();
973    }
974  
975    // [expr.prim.fold]p2:
976    //   In a unary fold, the cast-expression shall contain an unexpanded
977    //   parameter pack.
978    if (!LHS || !RHS) {
979      Expr *Pack = LHS ? LHS : RHS;
980      assert(Pack && "fold expression with neither LHS nor RHS");
981      if (!Pack->containsUnexpandedParameterPack())
982        return Diag(EllipsisLoc, diag::err_pack_expansion_without_parameter_packs)
983               << Pack->getSourceRange();
984    }
985  
986    BinaryOperatorKind Opc = ConvertTokenKindToBinaryOpcode(Operator);
987    return BuildCXXFoldExpr(LParenLoc, LHS, Opc, EllipsisLoc, RHS, RParenLoc);
988  }
989  
BuildCXXFoldExpr(SourceLocation LParenLoc,Expr * LHS,BinaryOperatorKind Operator,SourceLocation EllipsisLoc,Expr * RHS,SourceLocation RParenLoc)990  ExprResult Sema::BuildCXXFoldExpr(SourceLocation LParenLoc, Expr *LHS,
991                                    BinaryOperatorKind Operator,
992                                    SourceLocation EllipsisLoc, Expr *RHS,
993                                    SourceLocation RParenLoc) {
994    return new (Context) CXXFoldExpr(Context.DependentTy, LParenLoc, LHS,
995                                     Operator, EllipsisLoc, RHS, RParenLoc);
996  }
997  
BuildEmptyCXXFoldExpr(SourceLocation EllipsisLoc,BinaryOperatorKind Operator)998  ExprResult Sema::BuildEmptyCXXFoldExpr(SourceLocation EllipsisLoc,
999                                         BinaryOperatorKind Operator) {
1000    // [temp.variadic]p9:
1001    //   If N is zero for a unary fold-expression, the value of the expression is
1002    //       *   ->  1
1003    //       +   ->  int()
1004    //       &   ->  -1
1005    //       |   ->  int()
1006    //       &&  ->  true
1007    //       ||  ->  false
1008    //       ,   ->  void()
1009    //   if the operator is not listed [above], the instantiation is ill-formed.
1010    //
1011    // Note that we need to use something like int() here, not merely 0, to
1012    // prevent the result from being a null pointer constant.
1013    QualType ScalarType;
1014    switch (Operator) {
1015    case BO_Add:
1016      ScalarType = Context.IntTy;
1017      break;
1018    case BO_Mul:
1019      return ActOnIntegerConstant(EllipsisLoc, 1);
1020    case BO_Or:
1021      ScalarType = Context.IntTy;
1022      break;
1023    case BO_And:
1024      return CreateBuiltinUnaryOp(EllipsisLoc, UO_Minus,
1025                                  ActOnIntegerConstant(EllipsisLoc, 1).get());
1026    case BO_LOr:
1027      return ActOnCXXBoolLiteral(EllipsisLoc, tok::kw_false);
1028    case BO_LAnd:
1029      return ActOnCXXBoolLiteral(EllipsisLoc, tok::kw_true);
1030    case BO_Comma:
1031      ScalarType = Context.VoidTy;
1032      break;
1033  
1034    default:
1035      return Diag(EllipsisLoc, diag::err_fold_expression_empty)
1036          << BinaryOperator::getOpcodeStr(Operator);
1037    }
1038  
1039    return new (Context) CXXScalarValueInitExpr(
1040        ScalarType, Context.getTrivialTypeSourceInfo(ScalarType, EllipsisLoc),
1041        EllipsisLoc);
1042  }
1043