1 //===-- DeclarationName.h - Representation of declaration names -*- C++ -*-===// 2 // 3 // The LLVM Compiler Infrastructure 4 // 5 // This file is distributed under the University of Illinois Open Source 6 // License. See LICENSE.TXT for details. 7 // 8 //===----------------------------------------------------------------------===// 9 // 10 // This file declares the DeclarationName and DeclarationNameTable classes. 11 // 12 //===----------------------------------------------------------------------===// 13 #ifndef LLVM_CLANG_AST_DECLARATIONNAME_H 14 #define LLVM_CLANG_AST_DECLARATIONNAME_H 15 16 #include "clang/Basic/IdentifierTable.h" 17 #include "clang/Basic/PartialDiagnostic.h" 18 #include "llvm/Support/Compiler.h" 19 20 namespace llvm { 21 template <typename T> struct DenseMapInfo; 22 } 23 24 namespace clang { 25 class ASTContext; 26 class CXXLiteralOperatorIdName; 27 class CXXOperatorIdName; 28 class CXXSpecialName; 29 class DeclarationNameExtra; 30 class IdentifierInfo; 31 class MultiKeywordSelector; 32 class QualType; 33 class Type; 34 class TypeSourceInfo; 35 class UsingDirectiveDecl; 36 37 template <typename> class CanQual; 38 typedef CanQual<Type> CanQualType; 39 40 /// DeclarationName - The name of a declaration. In the common case, 41 /// this just stores an IdentifierInfo pointer to a normal 42 /// name. However, it also provides encodings for Objective-C 43 /// selectors (optimizing zero- and one-argument selectors, which make 44 /// up 78% percent of all selectors in Cocoa.h) and special C++ names 45 /// for constructors, destructors, and conversion functions. 46 class DeclarationName { 47 public: 48 /// NameKind - The kind of name this object contains. 49 enum NameKind { 50 Identifier, 51 ObjCZeroArgSelector, 52 ObjCOneArgSelector, 53 ObjCMultiArgSelector, 54 CXXConstructorName, 55 CXXDestructorName, 56 CXXConversionFunctionName, 57 CXXOperatorName, 58 CXXLiteralOperatorName, 59 CXXUsingDirective 60 }; 61 62 private: 63 /// StoredNameKind - The kind of name that is actually stored in the 64 /// upper bits of the Ptr field. This is only used internally. 65 /// 66 /// Note: The entries here are synchronized with the entries in Selector, 67 /// for efficient translation between the two. 68 enum StoredNameKind { 69 StoredIdentifier = 0, 70 StoredObjCZeroArgSelector = 0x01, 71 StoredObjCOneArgSelector = 0x02, 72 StoredDeclarationNameExtra = 0x03, 73 PtrMask = 0x03 74 }; 75 76 /// Ptr - The lowest two bits are used to express what kind of name 77 /// we're actually storing, using the values of NameKind. Depending 78 /// on the kind of name this is, the upper bits of Ptr may have one 79 /// of several different meanings: 80 /// 81 /// StoredIdentifier - The name is a normal identifier, and Ptr is 82 /// a normal IdentifierInfo pointer. 83 /// 84 /// StoredObjCZeroArgSelector - The name is an Objective-C 85 /// selector with zero arguments, and Ptr is an IdentifierInfo 86 /// pointer pointing to the selector name. 87 /// 88 /// StoredObjCOneArgSelector - The name is an Objective-C selector 89 /// with one argument, and Ptr is an IdentifierInfo pointer 90 /// pointing to the selector name. 91 /// 92 /// StoredDeclarationNameExtra - Ptr is actually a pointer to a 93 /// DeclarationNameExtra structure, whose first value will tell us 94 /// whether this is an Objective-C selector, C++ operator-id name, 95 /// or special C++ name. 96 uintptr_t Ptr; 97 98 /// getStoredNameKind - Return the kind of object that is stored in 99 /// Ptr. getStoredNameKind()100 StoredNameKind getStoredNameKind() const { 101 return static_cast<StoredNameKind>(Ptr & PtrMask); 102 } 103 104 /// getExtra - Get the "extra" information associated with this 105 /// multi-argument selector or C++ special name. getExtra()106 DeclarationNameExtra *getExtra() const { 107 assert(getStoredNameKind() == StoredDeclarationNameExtra && 108 "Declaration name does not store an Extra structure"); 109 return reinterpret_cast<DeclarationNameExtra *>(Ptr & ~PtrMask); 110 } 111 112 /// getAsCXXSpecialName - If the stored pointer is actually a 113 /// CXXSpecialName, returns a pointer to it. Otherwise, returns 114 /// a NULL pointer. getAsCXXSpecialName()115 CXXSpecialName *getAsCXXSpecialName() const { 116 NameKind Kind = getNameKind(); 117 if (Kind >= CXXConstructorName && Kind <= CXXConversionFunctionName) 118 return reinterpret_cast<CXXSpecialName *>(Ptr & ~PtrMask); 119 return 0; 120 } 121 122 /// getAsCXXOperatorIdName getAsCXXOperatorIdName()123 CXXOperatorIdName *getAsCXXOperatorIdName() const { 124 if (getNameKind() == CXXOperatorName) 125 return reinterpret_cast<CXXOperatorIdName *>(Ptr & ~PtrMask); 126 return 0; 127 } 128 getAsCXXLiteralOperatorIdName()129 CXXLiteralOperatorIdName *getAsCXXLiteralOperatorIdName() const { 130 if (getNameKind() == CXXLiteralOperatorName) 131 return reinterpret_cast<CXXLiteralOperatorIdName *>(Ptr & ~PtrMask); 132 return 0; 133 } 134 135 // Construct a declaration name from the name of a C++ constructor, 136 // destructor, or conversion function. DeclarationName(CXXSpecialName * Name)137 DeclarationName(CXXSpecialName *Name) 138 : Ptr(reinterpret_cast<uintptr_t>(Name)) { 139 assert((Ptr & PtrMask) == 0 && "Improperly aligned CXXSpecialName"); 140 Ptr |= StoredDeclarationNameExtra; 141 } 142 143 // Construct a declaration name from the name of a C++ overloaded 144 // operator. DeclarationName(CXXOperatorIdName * Name)145 DeclarationName(CXXOperatorIdName *Name) 146 : Ptr(reinterpret_cast<uintptr_t>(Name)) { 147 assert((Ptr & PtrMask) == 0 && "Improperly aligned CXXOperatorId"); 148 Ptr |= StoredDeclarationNameExtra; 149 } 150 DeclarationName(CXXLiteralOperatorIdName * Name)151 DeclarationName(CXXLiteralOperatorIdName *Name) 152 : Ptr(reinterpret_cast<uintptr_t>(Name)) { 153 assert((Ptr & PtrMask) == 0 && "Improperly aligned CXXLiteralOperatorId"); 154 Ptr |= StoredDeclarationNameExtra; 155 } 156 157 /// Construct a declaration name from a raw pointer. DeclarationName(uintptr_t Ptr)158 DeclarationName(uintptr_t Ptr) : Ptr(Ptr) { } 159 160 friend class DeclarationNameTable; 161 friend class NamedDecl; 162 163 /// getFETokenInfoAsVoidSlow - Retrieves the front end-specified pointer 164 /// for this name as a void pointer if it's not an identifier. 165 void *getFETokenInfoAsVoidSlow() const; 166 167 public: 168 /// DeclarationName - Used to create an empty selector. DeclarationName()169 DeclarationName() : Ptr(0) { } 170 171 // Construct a declaration name from an IdentifierInfo *. DeclarationName(const IdentifierInfo * II)172 DeclarationName(const IdentifierInfo *II) 173 : Ptr(reinterpret_cast<uintptr_t>(II)) { 174 assert((Ptr & PtrMask) == 0 && "Improperly aligned IdentifierInfo"); 175 } 176 177 // Construct a declaration name from an Objective-C selector. DeclarationName(Selector Sel)178 DeclarationName(Selector Sel) : Ptr(Sel.InfoPtr) { } 179 180 /// getUsingDirectiveName - Return name for all using-directives. 181 static DeclarationName getUsingDirectiveName(); 182 183 // operator bool() - Evaluates true when this declaration name is 184 // non-empty. 185 operator bool() const { 186 return ((Ptr & PtrMask) != 0) || 187 (reinterpret_cast<IdentifierInfo *>(Ptr & ~PtrMask)); 188 } 189 190 /// Predicate functions for querying what type of name this is. isIdentifier()191 bool isIdentifier() const { return getStoredNameKind() == StoredIdentifier; } isObjCZeroArgSelector()192 bool isObjCZeroArgSelector() const { 193 return getStoredNameKind() == StoredObjCZeroArgSelector; 194 } isObjCOneArgSelector()195 bool isObjCOneArgSelector() const { 196 return getStoredNameKind() == StoredObjCOneArgSelector; 197 } 198 199 /// getNameKind - Determine what kind of name this is. 200 NameKind getNameKind() const; 201 202 /// \brief Determines whether the name itself is dependent, e.g., because it 203 /// involves a C++ type that is itself dependent. 204 /// 205 /// Note that this does not capture all of the notions of "dependent name", 206 /// because an identifier can be a dependent name if it is used as the 207 /// callee in a call expression with dependent arguments. 208 bool isDependentName() const; 209 210 /// getNameAsString - Retrieve the human-readable string for this name. 211 std::string getAsString() const; 212 213 /// printName - Print the human-readable name to a stream. 214 void printName(raw_ostream &OS) const; 215 216 /// getAsIdentifierInfo - Retrieve the IdentifierInfo * stored in 217 /// this declaration name, or NULL if this declaration name isn't a 218 /// simple identifier. getAsIdentifierInfo()219 IdentifierInfo *getAsIdentifierInfo() const { 220 if (isIdentifier()) 221 return reinterpret_cast<IdentifierInfo *>(Ptr); 222 return 0; 223 } 224 225 /// getAsOpaqueInteger - Get the representation of this declaration 226 /// name as an opaque integer. getAsOpaqueInteger()227 uintptr_t getAsOpaqueInteger() const { return Ptr; } 228 229 /// getAsOpaquePtr - Get the representation of this declaration name as 230 /// an opaque pointer. getAsOpaquePtr()231 void *getAsOpaquePtr() const { return reinterpret_cast<void*>(Ptr); } 232 getFromOpaquePtr(void * P)233 static DeclarationName getFromOpaquePtr(void *P) { 234 DeclarationName N; 235 N.Ptr = reinterpret_cast<uintptr_t> (P); 236 return N; 237 } 238 getFromOpaqueInteger(uintptr_t P)239 static DeclarationName getFromOpaqueInteger(uintptr_t P) { 240 DeclarationName N; 241 N.Ptr = P; 242 return N; 243 } 244 245 /// getCXXNameType - If this name is one of the C++ names (of a 246 /// constructor, destructor, or conversion function), return the 247 /// type associated with that name. 248 QualType getCXXNameType() const; 249 250 /// getCXXOverloadedOperator - If this name is the name of an 251 /// overloadable operator in C++ (e.g., @c operator+), retrieve the 252 /// kind of overloaded operator. 253 OverloadedOperatorKind getCXXOverloadedOperator() const; 254 255 /// getCXXLiteralIdentifier - If this name is the name of a literal 256 /// operator, retrieve the identifier associated with it. 257 IdentifierInfo *getCXXLiteralIdentifier() const; 258 259 /// getObjCSelector - Get the Objective-C selector stored in this 260 /// declaration name. getObjCSelector()261 Selector getObjCSelector() const { 262 assert((getNameKind() == ObjCZeroArgSelector || 263 getNameKind() == ObjCOneArgSelector || 264 getNameKind() == ObjCMultiArgSelector || 265 Ptr == 0) && "Not a selector!"); 266 return Selector(Ptr); 267 } 268 269 /// getFETokenInfo/setFETokenInfo - The language front-end is 270 /// allowed to associate arbitrary metadata with some kinds of 271 /// declaration names, including normal identifiers and C++ 272 /// constructors, destructors, and conversion functions. 273 template<typename T> getFETokenInfo()274 T *getFETokenInfo() const { 275 if (const IdentifierInfo *Info = getAsIdentifierInfo()) 276 return Info->getFETokenInfo<T>(); 277 return static_cast<T*>(getFETokenInfoAsVoidSlow()); 278 } 279 280 void setFETokenInfo(void *T); 281 282 /// operator== - Determine whether the specified names are identical.. 283 friend bool operator==(DeclarationName LHS, DeclarationName RHS) { 284 return LHS.Ptr == RHS.Ptr; 285 } 286 287 /// operator!= - Determine whether the specified names are different. 288 friend bool operator!=(DeclarationName LHS, DeclarationName RHS) { 289 return LHS.Ptr != RHS.Ptr; 290 } 291 getEmptyMarker()292 static DeclarationName getEmptyMarker() { 293 return DeclarationName(uintptr_t(-1)); 294 } 295 getTombstoneMarker()296 static DeclarationName getTombstoneMarker() { 297 return DeclarationName(uintptr_t(-2)); 298 } 299 300 static int compare(DeclarationName LHS, DeclarationName RHS); 301 302 void dump() const; 303 }; 304 305 /// Ordering on two declaration names. If both names are identifiers, 306 /// this provides a lexicographical ordering. 307 inline bool operator<(DeclarationName LHS, DeclarationName RHS) { 308 return DeclarationName::compare(LHS, RHS) < 0; 309 } 310 311 /// Ordering on two declaration names. If both names are identifiers, 312 /// this provides a lexicographical ordering. 313 inline bool operator>(DeclarationName LHS, DeclarationName RHS) { 314 return DeclarationName::compare(LHS, RHS) > 0; 315 } 316 317 /// Ordering on two declaration names. If both names are identifiers, 318 /// this provides a lexicographical ordering. 319 inline bool operator<=(DeclarationName LHS, DeclarationName RHS) { 320 return DeclarationName::compare(LHS, RHS) <= 0; 321 } 322 323 /// Ordering on two declaration names. If both names are identifiers, 324 /// this provides a lexicographical ordering. 325 inline bool operator>=(DeclarationName LHS, DeclarationName RHS) { 326 return DeclarationName::compare(LHS, RHS) >= 0; 327 } 328 329 /// DeclarationNameTable - Used to store and retrieve DeclarationName 330 /// instances for the various kinds of declaration names, e.g., normal 331 /// identifiers, C++ constructor names, etc. This class contains 332 /// uniqued versions of each of the C++ special names, which can be 333 /// retrieved using its member functions (e.g., 334 /// getCXXConstructorName). 335 class DeclarationNameTable { 336 const ASTContext &Ctx; 337 void *CXXSpecialNamesImpl; // Actually a FoldingSet<CXXSpecialName> * 338 CXXOperatorIdName *CXXOperatorNames; // Operator names 339 void *CXXLiteralOperatorNames; // Actually a CXXOperatorIdName* 340 341 DeclarationNameTable(const DeclarationNameTable&) LLVM_DELETED_FUNCTION; 342 void operator=(const DeclarationNameTable&) LLVM_DELETED_FUNCTION; 343 344 public: 345 DeclarationNameTable(const ASTContext &C); 346 ~DeclarationNameTable(); 347 348 /// getIdentifier - Create a declaration name that is a simple 349 /// identifier. getIdentifier(const IdentifierInfo * ID)350 DeclarationName getIdentifier(const IdentifierInfo *ID) { 351 return DeclarationName(ID); 352 } 353 354 /// getCXXConstructorName - Returns the name of a C++ constructor 355 /// for the given Type. 356 DeclarationName getCXXConstructorName(CanQualType Ty); 357 358 /// getCXXDestructorName - Returns the name of a C++ destructor 359 /// for the given Type. 360 DeclarationName getCXXDestructorName(CanQualType Ty); 361 362 /// getCXXConversionFunctionName - Returns the name of a C++ 363 /// conversion function for the given Type. 364 DeclarationName getCXXConversionFunctionName(CanQualType Ty); 365 366 /// getCXXSpecialName - Returns a declaration name for special kind 367 /// of C++ name, e.g., for a constructor, destructor, or conversion 368 /// function. 369 DeclarationName getCXXSpecialName(DeclarationName::NameKind Kind, 370 CanQualType Ty); 371 372 /// getCXXOperatorName - Get the name of the overloadable C++ 373 /// operator corresponding to Op. 374 DeclarationName getCXXOperatorName(OverloadedOperatorKind Op); 375 376 /// getCXXLiteralOperatorName - Get the name of the literal operator function 377 /// with II as the identifier. 378 DeclarationName getCXXLiteralOperatorName(IdentifierInfo *II); 379 }; 380 381 /// DeclarationNameLoc - Additional source/type location info 382 /// for a declaration name. Needs a DeclarationName in order 383 /// to be interpreted correctly. 384 struct DeclarationNameLoc { 385 // The source location for identifier stored elsewhere. 386 // struct {} Identifier; 387 388 // Type info for constructors, destructors and conversion functions. 389 // Locations (if any) for the tilde (destructor) or operator keyword 390 // (conversion) are stored elsewhere. 391 struct NT { 392 TypeSourceInfo* TInfo; 393 }; 394 395 // The location (if any) of the operator keyword is stored elsewhere. 396 struct CXXOpName { 397 unsigned BeginOpNameLoc; 398 unsigned EndOpNameLoc; 399 }; 400 401 // The location (if any) of the operator keyword is stored elsewhere. 402 struct CXXLitOpName { 403 unsigned OpNameLoc; 404 }; 405 406 // struct {} CXXUsingDirective; 407 // struct {} ObjCZeroArgSelector; 408 // struct {} ObjCOneArgSelector; 409 // struct {} ObjCMultiArgSelector; 410 union { 411 struct NT NamedType; 412 struct CXXOpName CXXOperatorName; 413 struct CXXLitOpName CXXLiteralOperatorName; 414 }; 415 416 DeclarationNameLoc(DeclarationName Name); 417 // FIXME: this should go away once all DNLocs are properly initialized. DeclarationNameLocDeclarationNameLoc418 DeclarationNameLoc() { memset((void*) this, 0, sizeof(*this)); } 419 }; // struct DeclarationNameLoc 420 421 422 /// DeclarationNameInfo - A collector data type for bundling together 423 /// a DeclarationName and the correspnding source/type location info. 424 struct DeclarationNameInfo { 425 private: 426 /// Name - The declaration name, also encoding name kind. 427 DeclarationName Name; 428 /// Loc - The main source location for the declaration name. 429 SourceLocation NameLoc; 430 /// Info - Further source/type location info for special kinds of names. 431 DeclarationNameLoc LocInfo; 432 433 public: 434 // FIXME: remove it. DeclarationNameInfoDeclarationNameInfo435 DeclarationNameInfo() {} 436 DeclarationNameInfoDeclarationNameInfo437 DeclarationNameInfo(DeclarationName Name, SourceLocation NameLoc) 438 : Name(Name), NameLoc(NameLoc), LocInfo(Name) {} 439 DeclarationNameInfoDeclarationNameInfo440 DeclarationNameInfo(DeclarationName Name, SourceLocation NameLoc, 441 DeclarationNameLoc LocInfo) 442 : Name(Name), NameLoc(NameLoc), LocInfo(LocInfo) {} 443 444 /// getName - Returns the embedded declaration name. getNameDeclarationNameInfo445 DeclarationName getName() const { return Name; } 446 /// setName - Sets the embedded declaration name. setNameDeclarationNameInfo447 void setName(DeclarationName N) { Name = N; } 448 449 /// getLoc - Returns the main location of the declaration name. getLocDeclarationNameInfo450 SourceLocation getLoc() const { return NameLoc; } 451 /// setLoc - Sets the main location of the declaration name. setLocDeclarationNameInfo452 void setLoc(SourceLocation L) { NameLoc = L; } 453 getInfoDeclarationNameInfo454 const DeclarationNameLoc &getInfo() const { return LocInfo; } getInfoDeclarationNameInfo455 DeclarationNameLoc &getInfo() { return LocInfo; } setInfoDeclarationNameInfo456 void setInfo(const DeclarationNameLoc &Info) { LocInfo = Info; } 457 458 /// getNamedTypeInfo - Returns the source type info associated to 459 /// the name. Assumes it is a constructor, destructor or conversion. getNamedTypeInfoDeclarationNameInfo460 TypeSourceInfo *getNamedTypeInfo() const { 461 assert(Name.getNameKind() == DeclarationName::CXXConstructorName || 462 Name.getNameKind() == DeclarationName::CXXDestructorName || 463 Name.getNameKind() == DeclarationName::CXXConversionFunctionName); 464 return LocInfo.NamedType.TInfo; 465 } 466 /// setNamedTypeInfo - Sets the source type info associated to 467 /// the name. Assumes it is a constructor, destructor or conversion. setNamedTypeInfoDeclarationNameInfo468 void setNamedTypeInfo(TypeSourceInfo *TInfo) { 469 assert(Name.getNameKind() == DeclarationName::CXXConstructorName || 470 Name.getNameKind() == DeclarationName::CXXDestructorName || 471 Name.getNameKind() == DeclarationName::CXXConversionFunctionName); 472 LocInfo.NamedType.TInfo = TInfo; 473 } 474 475 /// getCXXOperatorNameRange - Gets the range of the operator name 476 /// (without the operator keyword). Assumes it is a (non-literal) operator. getCXXOperatorNameRangeDeclarationNameInfo477 SourceRange getCXXOperatorNameRange() const { 478 assert(Name.getNameKind() == DeclarationName::CXXOperatorName); 479 return SourceRange( 480 SourceLocation::getFromRawEncoding(LocInfo.CXXOperatorName.BeginOpNameLoc), 481 SourceLocation::getFromRawEncoding(LocInfo.CXXOperatorName.EndOpNameLoc) 482 ); 483 } 484 /// setCXXOperatorNameRange - Sets the range of the operator name 485 /// (without the operator keyword). Assumes it is a C++ operator. setCXXOperatorNameRangeDeclarationNameInfo486 void setCXXOperatorNameRange(SourceRange R) { 487 assert(Name.getNameKind() == DeclarationName::CXXOperatorName); 488 LocInfo.CXXOperatorName.BeginOpNameLoc = R.getBegin().getRawEncoding(); 489 LocInfo.CXXOperatorName.EndOpNameLoc = R.getEnd().getRawEncoding(); 490 } 491 492 /// getCXXLiteralOperatorNameLoc - Returns the location of the literal 493 /// operator name (not the operator keyword). 494 /// Assumes it is a literal operator. getCXXLiteralOperatorNameLocDeclarationNameInfo495 SourceLocation getCXXLiteralOperatorNameLoc() const { 496 assert(Name.getNameKind() == DeclarationName::CXXLiteralOperatorName); 497 return SourceLocation:: 498 getFromRawEncoding(LocInfo.CXXLiteralOperatorName.OpNameLoc); 499 } 500 /// setCXXLiteralOperatorNameLoc - Sets the location of the literal 501 /// operator name (not the operator keyword). 502 /// Assumes it is a literal operator. setCXXLiteralOperatorNameLocDeclarationNameInfo503 void setCXXLiteralOperatorNameLoc(SourceLocation Loc) { 504 assert(Name.getNameKind() == DeclarationName::CXXLiteralOperatorName); 505 LocInfo.CXXLiteralOperatorName.OpNameLoc = Loc.getRawEncoding(); 506 } 507 508 /// \brief Determine whether this name involves a template parameter. 509 bool isInstantiationDependent() const; 510 511 /// \brief Determine whether this name contains an unexpanded 512 /// parameter pack. 513 bool containsUnexpandedParameterPack() const; 514 515 /// getAsString - Retrieve the human-readable string for this name. 516 std::string getAsString() const; 517 518 /// printName - Print the human-readable name to a stream. 519 void printName(raw_ostream &OS) const; 520 521 /// getBeginLoc - Retrieve the location of the first token. getBeginLocDeclarationNameInfo522 SourceLocation getBeginLoc() const { return NameLoc; } 523 /// getEndLoc - Retrieve the location of the last token. 524 SourceLocation getEndLoc() const; 525 /// getSourceRange - The range of the declaration name. getSourceRangeDeclarationNameInfo526 SourceRange getSourceRange() const LLVM_READONLY { 527 return SourceRange(getLocStart(), getLocEnd()); 528 } getLocStartDeclarationNameInfo529 SourceLocation getLocStart() const LLVM_READONLY { 530 return getBeginLoc(); 531 } getLocEndDeclarationNameInfo532 SourceLocation getLocEnd() const LLVM_READONLY { 533 SourceLocation EndLoc = getEndLoc(); 534 return EndLoc.isValid() ? EndLoc : getLocStart(); 535 } 536 }; 537 538 /// Insertion operator for diagnostics. This allows sending DeclarationName's 539 /// into a diagnostic with <<. 540 inline const DiagnosticBuilder &operator<<(const DiagnosticBuilder &DB, 541 DeclarationName N) { 542 DB.AddTaggedVal(N.getAsOpaqueInteger(), 543 DiagnosticsEngine::ak_declarationname); 544 return DB; 545 } 546 547 /// Insertion operator for partial diagnostics. This allows binding 548 /// DeclarationName's into a partial diagnostic with <<. 549 inline const PartialDiagnostic &operator<<(const PartialDiagnostic &PD, 550 DeclarationName N) { 551 PD.AddTaggedVal(N.getAsOpaqueInteger(), 552 DiagnosticsEngine::ak_declarationname); 553 return PD; 554 } 555 556 inline raw_ostream &operator<<(raw_ostream &OS, 557 DeclarationNameInfo DNInfo) { 558 DNInfo.printName(OS); 559 return OS; 560 } 561 562 } // end namespace clang 563 564 namespace llvm { 565 /// Define DenseMapInfo so that DeclarationNames can be used as keys 566 /// in DenseMap and DenseSets. 567 template<> 568 struct DenseMapInfo<clang::DeclarationName> { 569 static inline clang::DeclarationName getEmptyKey() { 570 return clang::DeclarationName::getEmptyMarker(); 571 } 572 573 static inline clang::DeclarationName getTombstoneKey() { 574 return clang::DeclarationName::getTombstoneMarker(); 575 } 576 577 static unsigned getHashValue(clang::DeclarationName Name) { 578 return DenseMapInfo<void*>::getHashValue(Name.getAsOpaquePtr()); 579 } 580 581 static inline bool 582 isEqual(clang::DeclarationName LHS, clang::DeclarationName RHS) { 583 return LHS == RHS; 584 } 585 }; 586 587 template <> 588 struct isPodLike<clang::DeclarationName> { static const bool value = true; }; 589 590 } // end namespace llvm 591 592 #endif 593