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