1 //===--- SemaObjCProperty.cpp - Semantic Analysis for ObjC @property ------===// 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 implements semantic analysis for Objective C @property and 11 // @synthesize declarations. 12 // 13 //===----------------------------------------------------------------------===// 14 15 #include "clang/Sema/SemaInternal.h" 16 #include "clang/AST/ASTMutationListener.h" 17 #include "clang/AST/DeclObjC.h" 18 #include "clang/AST/ExprCXX.h" 19 #include "clang/AST/ExprObjC.h" 20 #include "clang/Basic/SourceManager.h" 21 #include "clang/Lex/Lexer.h" 22 #include "clang/Lex/Preprocessor.h" 23 #include "clang/Sema/Initialization.h" 24 #include "llvm/ADT/DenseSet.h" 25 #include "llvm/ADT/SmallString.h" 26 27 using namespace clang; 28 29 //===----------------------------------------------------------------------===// 30 // Grammar actions. 31 //===----------------------------------------------------------------------===// 32 33 /// getImpliedARCOwnership - Given a set of property attributes and a 34 /// type, infer an expected lifetime. The type's ownership qualification 35 /// is not considered. 36 /// 37 /// Returns OCL_None if the attributes as stated do not imply an ownership. 38 /// Never returns OCL_Autoreleasing. 39 static Qualifiers::ObjCLifetime getImpliedARCOwnership( 40 ObjCPropertyDecl::PropertyAttributeKind attrs, 41 QualType type) { 42 // retain, strong, copy, weak, and unsafe_unretained are only legal 43 // on properties of retainable pointer type. 44 if (attrs & (ObjCPropertyDecl::OBJC_PR_retain | 45 ObjCPropertyDecl::OBJC_PR_strong | 46 ObjCPropertyDecl::OBJC_PR_copy)) { 47 return Qualifiers::OCL_Strong; 48 } else if (attrs & ObjCPropertyDecl::OBJC_PR_weak) { 49 return Qualifiers::OCL_Weak; 50 } else if (attrs & ObjCPropertyDecl::OBJC_PR_unsafe_unretained) { 51 return Qualifiers::OCL_ExplicitNone; 52 } 53 54 // assign can appear on other types, so we have to check the 55 // property type. 56 if (attrs & ObjCPropertyDecl::OBJC_PR_assign && 57 type->isObjCRetainableType()) { 58 return Qualifiers::OCL_ExplicitNone; 59 } 60 61 return Qualifiers::OCL_None; 62 } 63 64 /// Check the internal consistency of a property declaration with 65 /// an explicit ownership qualifier. 66 static void checkPropertyDeclWithOwnership(Sema &S, 67 ObjCPropertyDecl *property) { 68 if (property->isInvalidDecl()) return; 69 70 ObjCPropertyDecl::PropertyAttributeKind propertyKind 71 = property->getPropertyAttributes(); 72 Qualifiers::ObjCLifetime propertyLifetime 73 = property->getType().getObjCLifetime(); 74 75 assert(propertyLifetime != Qualifiers::OCL_None); 76 77 Qualifiers::ObjCLifetime expectedLifetime 78 = getImpliedARCOwnership(propertyKind, property->getType()); 79 if (!expectedLifetime) { 80 // We have a lifetime qualifier but no dominating property 81 // attribute. That's okay, but restore reasonable invariants by 82 // setting the property attribute according to the lifetime 83 // qualifier. 84 ObjCPropertyDecl::PropertyAttributeKind attr; 85 if (propertyLifetime == Qualifiers::OCL_Strong) { 86 attr = ObjCPropertyDecl::OBJC_PR_strong; 87 } else if (propertyLifetime == Qualifiers::OCL_Weak) { 88 attr = ObjCPropertyDecl::OBJC_PR_weak; 89 } else { 90 assert(propertyLifetime == Qualifiers::OCL_ExplicitNone); 91 attr = ObjCPropertyDecl::OBJC_PR_unsafe_unretained; 92 } 93 property->setPropertyAttributes(attr); 94 return; 95 } 96 97 if (propertyLifetime == expectedLifetime) return; 98 99 property->setInvalidDecl(); 100 S.Diag(property->getLocation(), 101 diag::err_arc_inconsistent_property_ownership) 102 << property->getDeclName() 103 << expectedLifetime 104 << propertyLifetime; 105 } 106 107 /// \brief Check this Objective-C property against a property declared in the 108 /// given protocol. 109 static void 110 CheckPropertyAgainstProtocol(Sema &S, ObjCPropertyDecl *Prop, 111 ObjCProtocolDecl *Proto, 112 llvm::SmallPtrSetImpl<ObjCProtocolDecl *> &Known) { 113 // Have we seen this protocol before? 114 if (!Known.insert(Proto).second) 115 return; 116 117 // Look for a property with the same name. 118 DeclContext::lookup_result R = Proto->lookup(Prop->getDeclName()); 119 for (unsigned I = 0, N = R.size(); I != N; ++I) { 120 if (ObjCPropertyDecl *ProtoProp = dyn_cast<ObjCPropertyDecl>(R[I])) { 121 S.DiagnosePropertyMismatch(Prop, ProtoProp, Proto->getIdentifier(), true); 122 return; 123 } 124 } 125 126 // Check this property against any protocols we inherit. 127 for (auto *P : Proto->protocols()) 128 CheckPropertyAgainstProtocol(S, Prop, P, Known); 129 } 130 131 static unsigned deducePropertyOwnershipFromType(Sema &S, QualType T) { 132 // In GC mode, just look for the __weak qualifier. 133 if (S.getLangOpts().getGC() != LangOptions::NonGC) { 134 if (T.isObjCGCWeak()) return ObjCDeclSpec::DQ_PR_weak; 135 136 // In ARC/MRC, look for an explicit ownership qualifier. 137 // For some reason, this only applies to __weak. 138 } else if (auto ownership = T.getObjCLifetime()) { 139 switch (ownership) { 140 case Qualifiers::OCL_Weak: 141 return ObjCDeclSpec::DQ_PR_weak; 142 case Qualifiers::OCL_Strong: 143 return ObjCDeclSpec::DQ_PR_strong; 144 case Qualifiers::OCL_ExplicitNone: 145 return ObjCDeclSpec::DQ_PR_unsafe_unretained; 146 case Qualifiers::OCL_Autoreleasing: 147 case Qualifiers::OCL_None: 148 return 0; 149 } 150 llvm_unreachable("bad qualifier"); 151 } 152 153 return 0; 154 } 155 156 static const unsigned OwnershipMask = 157 (ObjCPropertyDecl::OBJC_PR_assign | 158 ObjCPropertyDecl::OBJC_PR_retain | 159 ObjCPropertyDecl::OBJC_PR_copy | 160 ObjCPropertyDecl::OBJC_PR_weak | 161 ObjCPropertyDecl::OBJC_PR_strong | 162 ObjCPropertyDecl::OBJC_PR_unsafe_unretained); 163 164 static unsigned getOwnershipRule(unsigned attr) { 165 unsigned result = attr & OwnershipMask; 166 167 // From an ownership perspective, assign and unsafe_unretained are 168 // identical; make sure one also implies the other. 169 if (result & (ObjCPropertyDecl::OBJC_PR_assign | 170 ObjCPropertyDecl::OBJC_PR_unsafe_unretained)) { 171 result |= ObjCPropertyDecl::OBJC_PR_assign | 172 ObjCPropertyDecl::OBJC_PR_unsafe_unretained; 173 } 174 175 return result; 176 } 177 178 Decl *Sema::ActOnProperty(Scope *S, SourceLocation AtLoc, 179 SourceLocation LParenLoc, 180 FieldDeclarator &FD, 181 ObjCDeclSpec &ODS, 182 Selector GetterSel, 183 Selector SetterSel, 184 tok::ObjCKeywordKind MethodImplKind, 185 DeclContext *lexicalDC) { 186 unsigned Attributes = ODS.getPropertyAttributes(); 187 FD.D.setObjCWeakProperty((Attributes & ObjCDeclSpec::DQ_PR_weak) != 0); 188 TypeSourceInfo *TSI = GetTypeForDeclarator(FD.D, S); 189 QualType T = TSI->getType(); 190 if (!getOwnershipRule(Attributes)) { 191 Attributes |= deducePropertyOwnershipFromType(*this, T); 192 } 193 bool isReadWrite = ((Attributes & ObjCDeclSpec::DQ_PR_readwrite) || 194 // default is readwrite! 195 !(Attributes & ObjCDeclSpec::DQ_PR_readonly)); 196 197 // Proceed with constructing the ObjCPropertyDecls. 198 ObjCContainerDecl *ClassDecl = cast<ObjCContainerDecl>(CurContext); 199 ObjCPropertyDecl *Res = nullptr; 200 if (ObjCCategoryDecl *CDecl = dyn_cast<ObjCCategoryDecl>(ClassDecl)) { 201 if (CDecl->IsClassExtension()) { 202 Res = HandlePropertyInClassExtension(S, AtLoc, LParenLoc, 203 FD, GetterSel, SetterSel, 204 isReadWrite, 205 Attributes, 206 ODS.getPropertyAttributes(), 207 T, TSI, MethodImplKind); 208 if (!Res) 209 return nullptr; 210 } 211 } 212 213 if (!Res) { 214 Res = CreatePropertyDecl(S, ClassDecl, AtLoc, LParenLoc, FD, 215 GetterSel, SetterSel, isReadWrite, 216 Attributes, ODS.getPropertyAttributes(), 217 T, TSI, MethodImplKind); 218 if (lexicalDC) 219 Res->setLexicalDeclContext(lexicalDC); 220 } 221 222 // Validate the attributes on the @property. 223 CheckObjCPropertyAttributes(Res, AtLoc, Attributes, 224 (isa<ObjCInterfaceDecl>(ClassDecl) || 225 isa<ObjCProtocolDecl>(ClassDecl))); 226 227 // Check consistency if the type has explicit ownership qualification. 228 if (Res->getType().getObjCLifetime()) 229 checkPropertyDeclWithOwnership(*this, Res); 230 231 llvm::SmallPtrSet<ObjCProtocolDecl *, 16> KnownProtos; 232 if (ObjCInterfaceDecl *IFace = dyn_cast<ObjCInterfaceDecl>(ClassDecl)) { 233 // For a class, compare the property against a property in our superclass. 234 bool FoundInSuper = false; 235 ObjCInterfaceDecl *CurrentInterfaceDecl = IFace; 236 while (ObjCInterfaceDecl *Super = CurrentInterfaceDecl->getSuperClass()) { 237 DeclContext::lookup_result R = Super->lookup(Res->getDeclName()); 238 for (unsigned I = 0, N = R.size(); I != N; ++I) { 239 if (ObjCPropertyDecl *SuperProp = dyn_cast<ObjCPropertyDecl>(R[I])) { 240 DiagnosePropertyMismatch(Res, SuperProp, Super->getIdentifier(), false); 241 FoundInSuper = true; 242 break; 243 } 244 } 245 if (FoundInSuper) 246 break; 247 else 248 CurrentInterfaceDecl = Super; 249 } 250 251 if (FoundInSuper) { 252 // Also compare the property against a property in our protocols. 253 for (auto *P : CurrentInterfaceDecl->protocols()) { 254 CheckPropertyAgainstProtocol(*this, Res, P, KnownProtos); 255 } 256 } else { 257 // Slower path: look in all protocols we referenced. 258 for (auto *P : IFace->all_referenced_protocols()) { 259 CheckPropertyAgainstProtocol(*this, Res, P, KnownProtos); 260 } 261 } 262 } else if (ObjCCategoryDecl *Cat = dyn_cast<ObjCCategoryDecl>(ClassDecl)) { 263 // We don't check if class extension. Because properties in class extension 264 // are meant to override some of the attributes and checking has already done 265 // when property in class extension is constructed. 266 if (!Cat->IsClassExtension()) 267 for (auto *P : Cat->protocols()) 268 CheckPropertyAgainstProtocol(*this, Res, P, KnownProtos); 269 } else { 270 ObjCProtocolDecl *Proto = cast<ObjCProtocolDecl>(ClassDecl); 271 for (auto *P : Proto->protocols()) 272 CheckPropertyAgainstProtocol(*this, Res, P, KnownProtos); 273 } 274 275 ActOnDocumentableDecl(Res); 276 return Res; 277 } 278 279 static ObjCPropertyDecl::PropertyAttributeKind 280 makePropertyAttributesAsWritten(unsigned Attributes) { 281 unsigned attributesAsWritten = 0; 282 if (Attributes & ObjCDeclSpec::DQ_PR_readonly) 283 attributesAsWritten |= ObjCPropertyDecl::OBJC_PR_readonly; 284 if (Attributes & ObjCDeclSpec::DQ_PR_readwrite) 285 attributesAsWritten |= ObjCPropertyDecl::OBJC_PR_readwrite; 286 if (Attributes & ObjCDeclSpec::DQ_PR_getter) 287 attributesAsWritten |= ObjCPropertyDecl::OBJC_PR_getter; 288 if (Attributes & ObjCDeclSpec::DQ_PR_setter) 289 attributesAsWritten |= ObjCPropertyDecl::OBJC_PR_setter; 290 if (Attributes & ObjCDeclSpec::DQ_PR_assign) 291 attributesAsWritten |= ObjCPropertyDecl::OBJC_PR_assign; 292 if (Attributes & ObjCDeclSpec::DQ_PR_retain) 293 attributesAsWritten |= ObjCPropertyDecl::OBJC_PR_retain; 294 if (Attributes & ObjCDeclSpec::DQ_PR_strong) 295 attributesAsWritten |= ObjCPropertyDecl::OBJC_PR_strong; 296 if (Attributes & ObjCDeclSpec::DQ_PR_weak) 297 attributesAsWritten |= ObjCPropertyDecl::OBJC_PR_weak; 298 if (Attributes & ObjCDeclSpec::DQ_PR_copy) 299 attributesAsWritten |= ObjCPropertyDecl::OBJC_PR_copy; 300 if (Attributes & ObjCDeclSpec::DQ_PR_unsafe_unretained) 301 attributesAsWritten |= ObjCPropertyDecl::OBJC_PR_unsafe_unretained; 302 if (Attributes & ObjCDeclSpec::DQ_PR_nonatomic) 303 attributesAsWritten |= ObjCPropertyDecl::OBJC_PR_nonatomic; 304 if (Attributes & ObjCDeclSpec::DQ_PR_atomic) 305 attributesAsWritten |= ObjCPropertyDecl::OBJC_PR_atomic; 306 if (Attributes & ObjCDeclSpec::DQ_PR_class) 307 attributesAsWritten |= ObjCPropertyDecl::OBJC_PR_class; 308 309 return (ObjCPropertyDecl::PropertyAttributeKind)attributesAsWritten; 310 } 311 312 static bool LocPropertyAttribute( ASTContext &Context, const char *attrName, 313 SourceLocation LParenLoc, SourceLocation &Loc) { 314 if (LParenLoc.isMacroID()) 315 return false; 316 317 SourceManager &SM = Context.getSourceManager(); 318 std::pair<FileID, unsigned> locInfo = SM.getDecomposedLoc(LParenLoc); 319 // Try to load the file buffer. 320 bool invalidTemp = false; 321 StringRef file = SM.getBufferData(locInfo.first, &invalidTemp); 322 if (invalidTemp) 323 return false; 324 const char *tokenBegin = file.data() + locInfo.second; 325 326 // Lex from the start of the given location. 327 Lexer lexer(SM.getLocForStartOfFile(locInfo.first), 328 Context.getLangOpts(), 329 file.begin(), tokenBegin, file.end()); 330 Token Tok; 331 do { 332 lexer.LexFromRawLexer(Tok); 333 if (Tok.is(tok::raw_identifier) && Tok.getRawIdentifier() == attrName) { 334 Loc = Tok.getLocation(); 335 return true; 336 } 337 } while (Tok.isNot(tok::r_paren)); 338 return false; 339 340 } 341 342 /// Check for a mismatch in the atomicity of the given properties. 343 static void checkAtomicPropertyMismatch(Sema &S, 344 ObjCPropertyDecl *OldProperty, 345 ObjCPropertyDecl *NewProperty, 346 bool PropagateAtomicity) { 347 // If the atomicity of both matches, we're done. 348 bool OldIsAtomic = 349 (OldProperty->getPropertyAttributes() & ObjCPropertyDecl::OBJC_PR_nonatomic) 350 == 0; 351 bool NewIsAtomic = 352 (NewProperty->getPropertyAttributes() & ObjCPropertyDecl::OBJC_PR_nonatomic) 353 == 0; 354 if (OldIsAtomic == NewIsAtomic) return; 355 356 // Determine whether the given property is readonly and implicitly 357 // atomic. 358 auto isImplicitlyReadonlyAtomic = [](ObjCPropertyDecl *Property) -> bool { 359 // Is it readonly? 360 auto Attrs = Property->getPropertyAttributes(); 361 if ((Attrs & ObjCPropertyDecl::OBJC_PR_readonly) == 0) return false; 362 363 // Is it nonatomic? 364 if (Attrs & ObjCPropertyDecl::OBJC_PR_nonatomic) return false; 365 366 // Was 'atomic' specified directly? 367 if (Property->getPropertyAttributesAsWritten() & 368 ObjCPropertyDecl::OBJC_PR_atomic) 369 return false; 370 371 return true; 372 }; 373 374 // If we're allowed to propagate atomicity, and the new property did 375 // not specify atomicity at all, propagate. 376 const unsigned AtomicityMask = 377 (ObjCPropertyDecl::OBJC_PR_atomic | ObjCPropertyDecl::OBJC_PR_nonatomic); 378 if (PropagateAtomicity && 379 ((NewProperty->getPropertyAttributesAsWritten() & AtomicityMask) == 0)) { 380 unsigned Attrs = NewProperty->getPropertyAttributes(); 381 Attrs = Attrs & ~AtomicityMask; 382 if (OldIsAtomic) 383 Attrs |= ObjCPropertyDecl::OBJC_PR_atomic; 384 else 385 Attrs |= ObjCPropertyDecl::OBJC_PR_nonatomic; 386 387 NewProperty->overwritePropertyAttributes(Attrs); 388 return; 389 } 390 391 // One of the properties is atomic; if it's a readonly property, and 392 // 'atomic' wasn't explicitly specified, we're okay. 393 if ((OldIsAtomic && isImplicitlyReadonlyAtomic(OldProperty)) || 394 (NewIsAtomic && isImplicitlyReadonlyAtomic(NewProperty))) 395 return; 396 397 // Diagnose the conflict. 398 const IdentifierInfo *OldContextName; 399 auto *OldDC = OldProperty->getDeclContext(); 400 if (auto Category = dyn_cast<ObjCCategoryDecl>(OldDC)) 401 OldContextName = Category->getClassInterface()->getIdentifier(); 402 else 403 OldContextName = cast<ObjCContainerDecl>(OldDC)->getIdentifier(); 404 405 S.Diag(NewProperty->getLocation(), diag::warn_property_attribute) 406 << NewProperty->getDeclName() << "atomic" 407 << OldContextName; 408 S.Diag(OldProperty->getLocation(), diag::note_property_declare); 409 } 410 411 ObjCPropertyDecl * 412 Sema::HandlePropertyInClassExtension(Scope *S, 413 SourceLocation AtLoc, 414 SourceLocation LParenLoc, 415 FieldDeclarator &FD, 416 Selector GetterSel, Selector SetterSel, 417 const bool isReadWrite, 418 unsigned &Attributes, 419 const unsigned AttributesAsWritten, 420 QualType T, 421 TypeSourceInfo *TSI, 422 tok::ObjCKeywordKind MethodImplKind) { 423 ObjCCategoryDecl *CDecl = cast<ObjCCategoryDecl>(CurContext); 424 // Diagnose if this property is already in continuation class. 425 DeclContext *DC = CurContext; 426 IdentifierInfo *PropertyId = FD.D.getIdentifier(); 427 ObjCInterfaceDecl *CCPrimary = CDecl->getClassInterface(); 428 429 // We need to look in the @interface to see if the @property was 430 // already declared. 431 if (!CCPrimary) { 432 Diag(CDecl->getLocation(), diag::err_continuation_class); 433 return nullptr; 434 } 435 436 // Find the property in the extended class's primary class or 437 // extensions. 438 ObjCPropertyDecl *PIDecl = 439 CCPrimary->FindPropertyVisibleInPrimaryClass(PropertyId); 440 441 // If we found a property in an extension, complain. 442 if (PIDecl && isa<ObjCCategoryDecl>(PIDecl->getDeclContext())) { 443 Diag(AtLoc, diag::err_duplicate_property); 444 Diag(PIDecl->getLocation(), diag::note_property_declare); 445 return nullptr; 446 } 447 448 // Check for consistency with the previous declaration, if there is one. 449 if (PIDecl) { 450 // A readonly property declared in the primary class can be refined 451 // by adding a readwrite property within an extension. 452 // Anything else is an error. 453 if (!(PIDecl->isReadOnly() && isReadWrite)) { 454 // Tailor the diagnostics for the common case where a readwrite 455 // property is declared both in the @interface and the continuation. 456 // This is a common error where the user often intended the original 457 // declaration to be readonly. 458 unsigned diag = 459 (Attributes & ObjCDeclSpec::DQ_PR_readwrite) && 460 (PIDecl->getPropertyAttributesAsWritten() & 461 ObjCPropertyDecl::OBJC_PR_readwrite) 462 ? diag::err_use_continuation_class_redeclaration_readwrite 463 : diag::err_use_continuation_class; 464 Diag(AtLoc, diag) 465 << CCPrimary->getDeclName(); 466 Diag(PIDecl->getLocation(), diag::note_property_declare); 467 return nullptr; 468 } 469 470 // Check for consistency of getters. 471 if (PIDecl->getGetterName() != GetterSel) { 472 // If the getter was written explicitly, complain. 473 if (AttributesAsWritten & ObjCDeclSpec::DQ_PR_getter) { 474 Diag(AtLoc, diag::warn_property_redecl_getter_mismatch) 475 << PIDecl->getGetterName() << GetterSel; 476 Diag(PIDecl->getLocation(), diag::note_property_declare); 477 } 478 479 // Always adopt the getter from the original declaration. 480 GetterSel = PIDecl->getGetterName(); 481 Attributes |= ObjCDeclSpec::DQ_PR_getter; 482 } 483 484 // Check consistency of ownership. 485 unsigned ExistingOwnership 486 = getOwnershipRule(PIDecl->getPropertyAttributes()); 487 unsigned NewOwnership = getOwnershipRule(Attributes); 488 if (ExistingOwnership && NewOwnership != ExistingOwnership) { 489 // If the ownership was written explicitly, complain. 490 if (getOwnershipRule(AttributesAsWritten)) { 491 Diag(AtLoc, diag::warn_property_attr_mismatch); 492 Diag(PIDecl->getLocation(), diag::note_property_declare); 493 } 494 495 // Take the ownership from the original property. 496 Attributes = (Attributes & ~OwnershipMask) | ExistingOwnership; 497 } 498 499 // If the redeclaration is 'weak' but the original property is not, 500 if ((Attributes & ObjCPropertyDecl::OBJC_PR_weak) && 501 !(PIDecl->getPropertyAttributesAsWritten() 502 & ObjCPropertyDecl::OBJC_PR_weak) && 503 PIDecl->getType()->getAs<ObjCObjectPointerType>() && 504 PIDecl->getType().getObjCLifetime() == Qualifiers::OCL_None) { 505 Diag(AtLoc, diag::warn_property_implicitly_mismatched); 506 Diag(PIDecl->getLocation(), diag::note_property_declare); 507 } 508 } 509 510 // Create a new ObjCPropertyDecl with the DeclContext being 511 // the class extension. 512 ObjCPropertyDecl *PDecl = CreatePropertyDecl(S, CDecl, AtLoc, LParenLoc, 513 FD, GetterSel, SetterSel, 514 isReadWrite, 515 Attributes, AttributesAsWritten, 516 T, TSI, MethodImplKind, DC); 517 518 // If there was no declaration of a property with the same name in 519 // the primary class, we're done. 520 if (!PIDecl) { 521 ProcessPropertyDecl(PDecl); 522 return PDecl; 523 } 524 525 if (!Context.hasSameType(PIDecl->getType(), PDecl->getType())) { 526 bool IncompatibleObjC = false; 527 QualType ConvertedType; 528 // Relax the strict type matching for property type in continuation class. 529 // Allow property object type of continuation class to be different as long 530 // as it narrows the object type in its primary class property. Note that 531 // this conversion is safe only because the wider type is for a 'readonly' 532 // property in primary class and 'narrowed' type for a 'readwrite' property 533 // in continuation class. 534 QualType PrimaryClassPropertyT = Context.getCanonicalType(PIDecl->getType()); 535 QualType ClassExtPropertyT = Context.getCanonicalType(PDecl->getType()); 536 if (!isa<ObjCObjectPointerType>(PrimaryClassPropertyT) || 537 !isa<ObjCObjectPointerType>(ClassExtPropertyT) || 538 (!isObjCPointerConversion(ClassExtPropertyT, PrimaryClassPropertyT, 539 ConvertedType, IncompatibleObjC)) 540 || IncompatibleObjC) { 541 Diag(AtLoc, 542 diag::err_type_mismatch_continuation_class) << PDecl->getType(); 543 Diag(PIDecl->getLocation(), diag::note_property_declare); 544 return nullptr; 545 } 546 } 547 548 // Check that atomicity of property in class extension matches the previous 549 // declaration. 550 checkAtomicPropertyMismatch(*this, PIDecl, PDecl, true); 551 552 // Make sure getter/setter are appropriately synthesized. 553 ProcessPropertyDecl(PDecl); 554 return PDecl; 555 } 556 557 ObjCPropertyDecl *Sema::CreatePropertyDecl(Scope *S, 558 ObjCContainerDecl *CDecl, 559 SourceLocation AtLoc, 560 SourceLocation LParenLoc, 561 FieldDeclarator &FD, 562 Selector GetterSel, 563 Selector SetterSel, 564 const bool isReadWrite, 565 const unsigned Attributes, 566 const unsigned AttributesAsWritten, 567 QualType T, 568 TypeSourceInfo *TInfo, 569 tok::ObjCKeywordKind MethodImplKind, 570 DeclContext *lexicalDC){ 571 IdentifierInfo *PropertyId = FD.D.getIdentifier(); 572 573 // Property defaults to 'assign' if it is readwrite, unless this is ARC 574 // and the type is retainable. 575 bool isAssign; 576 if (Attributes & (ObjCDeclSpec::DQ_PR_assign | 577 ObjCDeclSpec::DQ_PR_unsafe_unretained)) { 578 isAssign = true; 579 } else if (getOwnershipRule(Attributes) || !isReadWrite) { 580 isAssign = false; 581 } else { 582 isAssign = (!getLangOpts().ObjCAutoRefCount || 583 !T->isObjCRetainableType()); 584 } 585 586 // Issue a warning if property is 'assign' as default and its 587 // object, which is gc'able conforms to NSCopying protocol 588 if (getLangOpts().getGC() != LangOptions::NonGC && 589 isAssign && !(Attributes & ObjCDeclSpec::DQ_PR_assign)) { 590 if (const ObjCObjectPointerType *ObjPtrTy = 591 T->getAs<ObjCObjectPointerType>()) { 592 ObjCInterfaceDecl *IDecl = ObjPtrTy->getObjectType()->getInterface(); 593 if (IDecl) 594 if (ObjCProtocolDecl* PNSCopying = 595 LookupProtocol(&Context.Idents.get("NSCopying"), AtLoc)) 596 if (IDecl->ClassImplementsProtocol(PNSCopying, true)) 597 Diag(AtLoc, diag::warn_implements_nscopying) << PropertyId; 598 } 599 } 600 601 if (T->isObjCObjectType()) { 602 SourceLocation StarLoc = TInfo->getTypeLoc().getLocEnd(); 603 StarLoc = getLocForEndOfToken(StarLoc); 604 Diag(FD.D.getIdentifierLoc(), diag::err_statically_allocated_object) 605 << FixItHint::CreateInsertion(StarLoc, "*"); 606 T = Context.getObjCObjectPointerType(T); 607 SourceLocation TLoc = TInfo->getTypeLoc().getLocStart(); 608 TInfo = Context.getTrivialTypeSourceInfo(T, TLoc); 609 } 610 611 DeclContext *DC = cast<DeclContext>(CDecl); 612 ObjCPropertyDecl *PDecl = ObjCPropertyDecl::Create(Context, DC, 613 FD.D.getIdentifierLoc(), 614 PropertyId, AtLoc, 615 LParenLoc, T, TInfo); 616 617 if (ObjCPropertyDecl *prevDecl = 618 ObjCPropertyDecl::findPropertyDecl(DC, PropertyId)) { 619 Diag(PDecl->getLocation(), diag::err_duplicate_property); 620 Diag(prevDecl->getLocation(), diag::note_property_declare); 621 PDecl->setInvalidDecl(); 622 } 623 else { 624 DC->addDecl(PDecl); 625 if (lexicalDC) 626 PDecl->setLexicalDeclContext(lexicalDC); 627 } 628 629 if (T->isArrayType() || T->isFunctionType()) { 630 Diag(AtLoc, diag::err_property_type) << T; 631 PDecl->setInvalidDecl(); 632 } 633 634 ProcessDeclAttributes(S, PDecl, FD.D); 635 636 // Regardless of setter/getter attribute, we save the default getter/setter 637 // selector names in anticipation of declaration of setter/getter methods. 638 PDecl->setGetterName(GetterSel); 639 PDecl->setSetterName(SetterSel); 640 PDecl->setPropertyAttributesAsWritten( 641 makePropertyAttributesAsWritten(AttributesAsWritten)); 642 643 if (Attributes & ObjCDeclSpec::DQ_PR_readonly) 644 PDecl->setPropertyAttributes(ObjCPropertyDecl::OBJC_PR_readonly); 645 646 if (Attributes & ObjCDeclSpec::DQ_PR_getter) 647 PDecl->setPropertyAttributes(ObjCPropertyDecl::OBJC_PR_getter); 648 649 if (Attributes & ObjCDeclSpec::DQ_PR_setter) 650 PDecl->setPropertyAttributes(ObjCPropertyDecl::OBJC_PR_setter); 651 652 if (isReadWrite) 653 PDecl->setPropertyAttributes(ObjCPropertyDecl::OBJC_PR_readwrite); 654 655 if (Attributes & ObjCDeclSpec::DQ_PR_retain) 656 PDecl->setPropertyAttributes(ObjCPropertyDecl::OBJC_PR_retain); 657 658 if (Attributes & ObjCDeclSpec::DQ_PR_strong) 659 PDecl->setPropertyAttributes(ObjCPropertyDecl::OBJC_PR_strong); 660 661 if (Attributes & ObjCDeclSpec::DQ_PR_weak) 662 PDecl->setPropertyAttributes(ObjCPropertyDecl::OBJC_PR_weak); 663 664 if (Attributes & ObjCDeclSpec::DQ_PR_copy) 665 PDecl->setPropertyAttributes(ObjCPropertyDecl::OBJC_PR_copy); 666 667 if (Attributes & ObjCDeclSpec::DQ_PR_unsafe_unretained) 668 PDecl->setPropertyAttributes(ObjCPropertyDecl::OBJC_PR_unsafe_unretained); 669 670 if (isAssign) 671 PDecl->setPropertyAttributes(ObjCPropertyDecl::OBJC_PR_assign); 672 673 // In the semantic attributes, one of nonatomic or atomic is always set. 674 if (Attributes & ObjCDeclSpec::DQ_PR_nonatomic) 675 PDecl->setPropertyAttributes(ObjCPropertyDecl::OBJC_PR_nonatomic); 676 else 677 PDecl->setPropertyAttributes(ObjCPropertyDecl::OBJC_PR_atomic); 678 679 // 'unsafe_unretained' is alias for 'assign'. 680 if (Attributes & ObjCDeclSpec::DQ_PR_unsafe_unretained) 681 PDecl->setPropertyAttributes(ObjCPropertyDecl::OBJC_PR_assign); 682 if (isAssign) 683 PDecl->setPropertyAttributes(ObjCPropertyDecl::OBJC_PR_unsafe_unretained); 684 685 if (MethodImplKind == tok::objc_required) 686 PDecl->setPropertyImplementation(ObjCPropertyDecl::Required); 687 else if (MethodImplKind == tok::objc_optional) 688 PDecl->setPropertyImplementation(ObjCPropertyDecl::Optional); 689 690 if (Attributes & ObjCDeclSpec::DQ_PR_nullability) 691 PDecl->setPropertyAttributes(ObjCPropertyDecl::OBJC_PR_nullability); 692 693 if (Attributes & ObjCDeclSpec::DQ_PR_null_resettable) 694 PDecl->setPropertyAttributes(ObjCPropertyDecl::OBJC_PR_null_resettable); 695 696 if (Attributes & ObjCDeclSpec::DQ_PR_class) 697 PDecl->setPropertyAttributes(ObjCPropertyDecl::OBJC_PR_class); 698 699 return PDecl; 700 } 701 702 static void checkARCPropertyImpl(Sema &S, SourceLocation propertyImplLoc, 703 ObjCPropertyDecl *property, 704 ObjCIvarDecl *ivar) { 705 if (property->isInvalidDecl() || ivar->isInvalidDecl()) return; 706 707 QualType ivarType = ivar->getType(); 708 Qualifiers::ObjCLifetime ivarLifetime = ivarType.getObjCLifetime(); 709 710 // The lifetime implied by the property's attributes. 711 Qualifiers::ObjCLifetime propertyLifetime = 712 getImpliedARCOwnership(property->getPropertyAttributes(), 713 property->getType()); 714 715 // We're fine if they match. 716 if (propertyLifetime == ivarLifetime) return; 717 718 // None isn't a valid lifetime for an object ivar in ARC, and 719 // __autoreleasing is never valid; don't diagnose twice. 720 if ((ivarLifetime == Qualifiers::OCL_None && 721 S.getLangOpts().ObjCAutoRefCount) || 722 ivarLifetime == Qualifiers::OCL_Autoreleasing) 723 return; 724 725 // If the ivar is private, and it's implicitly __unsafe_unretained 726 // becaues of its type, then pretend it was actually implicitly 727 // __strong. This is only sound because we're processing the 728 // property implementation before parsing any method bodies. 729 if (ivarLifetime == Qualifiers::OCL_ExplicitNone && 730 propertyLifetime == Qualifiers::OCL_Strong && 731 ivar->getAccessControl() == ObjCIvarDecl::Private) { 732 SplitQualType split = ivarType.split(); 733 if (split.Quals.hasObjCLifetime()) { 734 assert(ivarType->isObjCARCImplicitlyUnretainedType()); 735 split.Quals.setObjCLifetime(Qualifiers::OCL_Strong); 736 ivarType = S.Context.getQualifiedType(split); 737 ivar->setType(ivarType); 738 return; 739 } 740 } 741 742 switch (propertyLifetime) { 743 case Qualifiers::OCL_Strong: 744 S.Diag(ivar->getLocation(), diag::err_arc_strong_property_ownership) 745 << property->getDeclName() 746 << ivar->getDeclName() 747 << ivarLifetime; 748 break; 749 750 case Qualifiers::OCL_Weak: 751 S.Diag(ivar->getLocation(), diag::error_weak_property) 752 << property->getDeclName() 753 << ivar->getDeclName(); 754 break; 755 756 case Qualifiers::OCL_ExplicitNone: 757 S.Diag(ivar->getLocation(), diag::err_arc_assign_property_ownership) 758 << property->getDeclName() 759 << ivar->getDeclName() 760 << ((property->getPropertyAttributesAsWritten() 761 & ObjCPropertyDecl::OBJC_PR_assign) != 0); 762 break; 763 764 case Qualifiers::OCL_Autoreleasing: 765 llvm_unreachable("properties cannot be autoreleasing"); 766 767 case Qualifiers::OCL_None: 768 // Any other property should be ignored. 769 return; 770 } 771 772 S.Diag(property->getLocation(), diag::note_property_declare); 773 if (propertyImplLoc.isValid()) 774 S.Diag(propertyImplLoc, diag::note_property_synthesize); 775 } 776 777 /// setImpliedPropertyAttributeForReadOnlyProperty - 778 /// This routine evaludates life-time attributes for a 'readonly' 779 /// property with no known lifetime of its own, using backing 780 /// 'ivar's attribute, if any. If no backing 'ivar', property's 781 /// life-time is assumed 'strong'. 782 static void setImpliedPropertyAttributeForReadOnlyProperty( 783 ObjCPropertyDecl *property, ObjCIvarDecl *ivar) { 784 Qualifiers::ObjCLifetime propertyLifetime = 785 getImpliedARCOwnership(property->getPropertyAttributes(), 786 property->getType()); 787 if (propertyLifetime != Qualifiers::OCL_None) 788 return; 789 790 if (!ivar) { 791 // if no backing ivar, make property 'strong'. 792 property->setPropertyAttributes(ObjCPropertyDecl::OBJC_PR_strong); 793 return; 794 } 795 // property assumes owenership of backing ivar. 796 QualType ivarType = ivar->getType(); 797 Qualifiers::ObjCLifetime ivarLifetime = ivarType.getObjCLifetime(); 798 if (ivarLifetime == Qualifiers::OCL_Strong) 799 property->setPropertyAttributes(ObjCPropertyDecl::OBJC_PR_strong); 800 else if (ivarLifetime == Qualifiers::OCL_Weak) 801 property->setPropertyAttributes(ObjCPropertyDecl::OBJC_PR_weak); 802 return; 803 } 804 805 /// DiagnosePropertyMismatchDeclInProtocols - diagnose properties declared 806 /// in inherited protocols with mismatched types. Since any of them can 807 /// be candidate for synthesis. 808 static void 809 DiagnosePropertyMismatchDeclInProtocols(Sema &S, SourceLocation AtLoc, 810 ObjCInterfaceDecl *ClassDecl, 811 ObjCPropertyDecl *Property) { 812 ObjCInterfaceDecl::ProtocolPropertyMap PropMap; 813 for (const auto *PI : ClassDecl->all_referenced_protocols()) { 814 if (const ObjCProtocolDecl *PDecl = PI->getDefinition()) 815 PDecl->collectInheritedProtocolProperties(Property, PropMap); 816 } 817 if (ObjCInterfaceDecl *SDecl = ClassDecl->getSuperClass()) 818 while (SDecl) { 819 for (const auto *PI : SDecl->all_referenced_protocols()) { 820 if (const ObjCProtocolDecl *PDecl = PI->getDefinition()) 821 PDecl->collectInheritedProtocolProperties(Property, PropMap); 822 } 823 SDecl = SDecl->getSuperClass(); 824 } 825 826 if (PropMap.empty()) 827 return; 828 829 QualType RHSType = S.Context.getCanonicalType(Property->getType()); 830 bool FirsTime = true; 831 for (ObjCInterfaceDecl::ProtocolPropertyMap::iterator 832 I = PropMap.begin(), E = PropMap.end(); I != E; I++) { 833 ObjCPropertyDecl *Prop = I->second; 834 QualType LHSType = S.Context.getCanonicalType(Prop->getType()); 835 if (!S.Context.propertyTypesAreCompatible(LHSType, RHSType)) { 836 bool IncompatibleObjC = false; 837 QualType ConvertedType; 838 if (!S.isObjCPointerConversion(RHSType, LHSType, ConvertedType, IncompatibleObjC) 839 || IncompatibleObjC) { 840 if (FirsTime) { 841 S.Diag(Property->getLocation(), diag::warn_protocol_property_mismatch) 842 << Property->getType(); 843 FirsTime = false; 844 } 845 S.Diag(Prop->getLocation(), diag::note_protocol_property_declare) 846 << Prop->getType(); 847 } 848 } 849 } 850 if (!FirsTime && AtLoc.isValid()) 851 S.Diag(AtLoc, diag::note_property_synthesize); 852 } 853 854 /// Determine whether any storage attributes were written on the property. 855 static bool hasWrittenStorageAttribute(ObjCPropertyDecl *Prop) { 856 if (Prop->getPropertyAttributesAsWritten() & OwnershipMask) return true; 857 858 // If this is a readwrite property in a class extension that refines 859 // a readonly property in the original class definition, check it as 860 // well. 861 862 // If it's a readonly property, we're not interested. 863 if (Prop->isReadOnly()) return false; 864 865 // Is it declared in an extension? 866 auto Category = dyn_cast<ObjCCategoryDecl>(Prop->getDeclContext()); 867 if (!Category || !Category->IsClassExtension()) return false; 868 869 // Find the corresponding property in the primary class definition. 870 auto OrigClass = Category->getClassInterface(); 871 for (auto Found : OrigClass->lookup(Prop->getDeclName())) { 872 if (ObjCPropertyDecl *OrigProp = dyn_cast<ObjCPropertyDecl>(Found)) 873 return OrigProp->getPropertyAttributesAsWritten() & OwnershipMask; 874 } 875 876 // Look through all of the protocols. 877 for (const auto *Proto : OrigClass->all_referenced_protocols()) { 878 if (ObjCPropertyDecl *OrigProp = 879 Proto->FindPropertyDeclaration(Prop->getIdentifier())) 880 return OrigProp->getPropertyAttributesAsWritten() & OwnershipMask; 881 } 882 883 return false; 884 } 885 886 /// ActOnPropertyImplDecl - This routine performs semantic checks and 887 /// builds the AST node for a property implementation declaration; declared 888 /// as \@synthesize or \@dynamic. 889 /// 890 Decl *Sema::ActOnPropertyImplDecl(Scope *S, 891 SourceLocation AtLoc, 892 SourceLocation PropertyLoc, 893 bool Synthesize, 894 IdentifierInfo *PropertyId, 895 IdentifierInfo *PropertyIvar, 896 SourceLocation PropertyIvarLoc) { 897 ObjCContainerDecl *ClassImpDecl = 898 dyn_cast<ObjCContainerDecl>(CurContext); 899 // Make sure we have a context for the property implementation declaration. 900 if (!ClassImpDecl) { 901 Diag(AtLoc, diag::error_missing_property_context); 902 return nullptr; 903 } 904 if (PropertyIvarLoc.isInvalid()) 905 PropertyIvarLoc = PropertyLoc; 906 SourceLocation PropertyDiagLoc = PropertyLoc; 907 if (PropertyDiagLoc.isInvalid()) 908 PropertyDiagLoc = ClassImpDecl->getLocStart(); 909 ObjCPropertyDecl *property = nullptr; 910 ObjCInterfaceDecl *IDecl = nullptr; 911 // Find the class or category class where this property must have 912 // a declaration. 913 ObjCImplementationDecl *IC = nullptr; 914 ObjCCategoryImplDecl *CatImplClass = nullptr; 915 if ((IC = dyn_cast<ObjCImplementationDecl>(ClassImpDecl))) { 916 IDecl = IC->getClassInterface(); 917 // We always synthesize an interface for an implementation 918 // without an interface decl. So, IDecl is always non-zero. 919 assert(IDecl && 920 "ActOnPropertyImplDecl - @implementation without @interface"); 921 922 // Look for this property declaration in the @implementation's @interface 923 property = IDecl->FindPropertyDeclaration(PropertyId); 924 if (!property) { 925 Diag(PropertyLoc, diag::error_bad_property_decl) << IDecl->getDeclName(); 926 return nullptr; 927 } 928 unsigned PIkind = property->getPropertyAttributesAsWritten(); 929 if ((PIkind & (ObjCPropertyDecl::OBJC_PR_atomic | 930 ObjCPropertyDecl::OBJC_PR_nonatomic) ) == 0) { 931 if (AtLoc.isValid()) 932 Diag(AtLoc, diag::warn_implicit_atomic_property); 933 else 934 Diag(IC->getLocation(), diag::warn_auto_implicit_atomic_property); 935 Diag(property->getLocation(), diag::note_property_declare); 936 } 937 938 if (const ObjCCategoryDecl *CD = 939 dyn_cast<ObjCCategoryDecl>(property->getDeclContext())) { 940 if (!CD->IsClassExtension()) { 941 Diag(PropertyLoc, diag::error_category_property) << CD->getDeclName(); 942 Diag(property->getLocation(), diag::note_property_declare); 943 return nullptr; 944 } 945 } 946 if (Synthesize&& 947 (PIkind & ObjCPropertyDecl::OBJC_PR_readonly) && 948 property->hasAttr<IBOutletAttr>() && 949 !AtLoc.isValid()) { 950 bool ReadWriteProperty = false; 951 // Search into the class extensions and see if 'readonly property is 952 // redeclared 'readwrite', then no warning is to be issued. 953 for (auto *Ext : IDecl->known_extensions()) { 954 DeclContext::lookup_result R = Ext->lookup(property->getDeclName()); 955 if (!R.empty()) 956 if (ObjCPropertyDecl *ExtProp = dyn_cast<ObjCPropertyDecl>(R[0])) { 957 PIkind = ExtProp->getPropertyAttributesAsWritten(); 958 if (PIkind & ObjCPropertyDecl::OBJC_PR_readwrite) { 959 ReadWriteProperty = true; 960 break; 961 } 962 } 963 } 964 965 if (!ReadWriteProperty) { 966 Diag(property->getLocation(), diag::warn_auto_readonly_iboutlet_property) 967 << property; 968 SourceLocation readonlyLoc; 969 if (LocPropertyAttribute(Context, "readonly", 970 property->getLParenLoc(), readonlyLoc)) { 971 SourceLocation endLoc = 972 readonlyLoc.getLocWithOffset(strlen("readonly")-1); 973 SourceRange ReadonlySourceRange(readonlyLoc, endLoc); 974 Diag(property->getLocation(), 975 diag::note_auto_readonly_iboutlet_fixup_suggest) << 976 FixItHint::CreateReplacement(ReadonlySourceRange, "readwrite"); 977 } 978 } 979 } 980 if (Synthesize && isa<ObjCProtocolDecl>(property->getDeclContext())) 981 DiagnosePropertyMismatchDeclInProtocols(*this, AtLoc, IDecl, property); 982 983 } else if ((CatImplClass = dyn_cast<ObjCCategoryImplDecl>(ClassImpDecl))) { 984 if (Synthesize) { 985 Diag(AtLoc, diag::error_synthesize_category_decl); 986 return nullptr; 987 } 988 IDecl = CatImplClass->getClassInterface(); 989 if (!IDecl) { 990 Diag(AtLoc, diag::error_missing_property_interface); 991 return nullptr; 992 } 993 ObjCCategoryDecl *Category = 994 IDecl->FindCategoryDeclaration(CatImplClass->getIdentifier()); 995 996 // If category for this implementation not found, it is an error which 997 // has already been reported eralier. 998 if (!Category) 999 return nullptr; 1000 // Look for this property declaration in @implementation's category 1001 property = Category->FindPropertyDeclaration(PropertyId); 1002 if (!property) { 1003 Diag(PropertyLoc, diag::error_bad_category_property_decl) 1004 << Category->getDeclName(); 1005 return nullptr; 1006 } 1007 } else { 1008 Diag(AtLoc, diag::error_bad_property_context); 1009 return nullptr; 1010 } 1011 ObjCIvarDecl *Ivar = nullptr; 1012 bool CompleteTypeErr = false; 1013 bool compat = true; 1014 // Check that we have a valid, previously declared ivar for @synthesize 1015 if (Synthesize) { 1016 // @synthesize 1017 if (!PropertyIvar) 1018 PropertyIvar = PropertyId; 1019 // Check that this is a previously declared 'ivar' in 'IDecl' interface 1020 ObjCInterfaceDecl *ClassDeclared; 1021 Ivar = IDecl->lookupInstanceVariable(PropertyIvar, ClassDeclared); 1022 QualType PropType = property->getType(); 1023 QualType PropertyIvarType = PropType.getNonReferenceType(); 1024 1025 if (RequireCompleteType(PropertyDiagLoc, PropertyIvarType, 1026 diag::err_incomplete_synthesized_property, 1027 property->getDeclName())) { 1028 Diag(property->getLocation(), diag::note_property_declare); 1029 CompleteTypeErr = true; 1030 } 1031 1032 if (getLangOpts().ObjCAutoRefCount && 1033 (property->getPropertyAttributesAsWritten() & 1034 ObjCPropertyDecl::OBJC_PR_readonly) && 1035 PropertyIvarType->isObjCRetainableType()) { 1036 setImpliedPropertyAttributeForReadOnlyProperty(property, Ivar); 1037 } 1038 1039 ObjCPropertyDecl::PropertyAttributeKind kind 1040 = property->getPropertyAttributes(); 1041 1042 bool isARCWeak = false; 1043 if (kind & ObjCPropertyDecl::OBJC_PR_weak) { 1044 // Add GC __weak to the ivar type if the property is weak. 1045 if (getLangOpts().getGC() != LangOptions::NonGC) { 1046 assert(!getLangOpts().ObjCAutoRefCount); 1047 if (PropertyIvarType.isObjCGCStrong()) { 1048 Diag(PropertyDiagLoc, diag::err_gc_weak_property_strong_type); 1049 Diag(property->getLocation(), diag::note_property_declare); 1050 } else { 1051 PropertyIvarType = 1052 Context.getObjCGCQualType(PropertyIvarType, Qualifiers::Weak); 1053 } 1054 1055 // Otherwise, check whether ARC __weak is enabled and works with 1056 // the property type. 1057 } else { 1058 if (!getLangOpts().ObjCWeak) { 1059 // Only complain here when synthesizing an ivar. 1060 if (!Ivar) { 1061 Diag(PropertyDiagLoc, 1062 getLangOpts().ObjCWeakRuntime 1063 ? diag::err_synthesizing_arc_weak_property_disabled 1064 : diag::err_synthesizing_arc_weak_property_no_runtime); 1065 Diag(property->getLocation(), diag::note_property_declare); 1066 } 1067 CompleteTypeErr = true; // suppress later diagnostics about the ivar 1068 } else { 1069 isARCWeak = true; 1070 if (const ObjCObjectPointerType *ObjT = 1071 PropertyIvarType->getAs<ObjCObjectPointerType>()) { 1072 const ObjCInterfaceDecl *ObjI = ObjT->getInterfaceDecl(); 1073 if (ObjI && ObjI->isArcWeakrefUnavailable()) { 1074 Diag(property->getLocation(), 1075 diag::err_arc_weak_unavailable_property) 1076 << PropertyIvarType; 1077 Diag(ClassImpDecl->getLocation(), diag::note_implemented_by_class) 1078 << ClassImpDecl->getName(); 1079 } 1080 } 1081 } 1082 } 1083 } 1084 1085 if (AtLoc.isInvalid()) { 1086 // Check when default synthesizing a property that there is 1087 // an ivar matching property name and issue warning; since this 1088 // is the most common case of not using an ivar used for backing 1089 // property in non-default synthesis case. 1090 ObjCInterfaceDecl *ClassDeclared=nullptr; 1091 ObjCIvarDecl *originalIvar = 1092 IDecl->lookupInstanceVariable(property->getIdentifier(), 1093 ClassDeclared); 1094 if (originalIvar) { 1095 Diag(PropertyDiagLoc, 1096 diag::warn_autosynthesis_property_ivar_match) 1097 << PropertyId << (Ivar == nullptr) << PropertyIvar 1098 << originalIvar->getIdentifier(); 1099 Diag(property->getLocation(), diag::note_property_declare); 1100 Diag(originalIvar->getLocation(), diag::note_ivar_decl); 1101 } 1102 } 1103 1104 if (!Ivar) { 1105 // In ARC, give the ivar a lifetime qualifier based on the 1106 // property attributes. 1107 if ((getLangOpts().ObjCAutoRefCount || isARCWeak) && 1108 !PropertyIvarType.getObjCLifetime() && 1109 PropertyIvarType->isObjCRetainableType()) { 1110 1111 // It's an error if we have to do this and the user didn't 1112 // explicitly write an ownership attribute on the property. 1113 if (!hasWrittenStorageAttribute(property) && 1114 !(kind & ObjCPropertyDecl::OBJC_PR_strong)) { 1115 Diag(PropertyDiagLoc, 1116 diag::err_arc_objc_property_default_assign_on_object); 1117 Diag(property->getLocation(), diag::note_property_declare); 1118 } else { 1119 Qualifiers::ObjCLifetime lifetime = 1120 getImpliedARCOwnership(kind, PropertyIvarType); 1121 assert(lifetime && "no lifetime for property?"); 1122 1123 Qualifiers qs; 1124 qs.addObjCLifetime(lifetime); 1125 PropertyIvarType = Context.getQualifiedType(PropertyIvarType, qs); 1126 } 1127 } 1128 1129 Ivar = ObjCIvarDecl::Create(Context, ClassImpDecl, 1130 PropertyIvarLoc,PropertyIvarLoc, PropertyIvar, 1131 PropertyIvarType, /*Dinfo=*/nullptr, 1132 ObjCIvarDecl::Private, 1133 (Expr *)nullptr, true); 1134 if (RequireNonAbstractType(PropertyIvarLoc, 1135 PropertyIvarType, 1136 diag::err_abstract_type_in_decl, 1137 AbstractSynthesizedIvarType)) { 1138 Diag(property->getLocation(), diag::note_property_declare); 1139 Ivar->setInvalidDecl(); 1140 } else if (CompleteTypeErr) 1141 Ivar->setInvalidDecl(); 1142 ClassImpDecl->addDecl(Ivar); 1143 IDecl->makeDeclVisibleInContext(Ivar); 1144 1145 if (getLangOpts().ObjCRuntime.isFragile()) 1146 Diag(PropertyDiagLoc, diag::error_missing_property_ivar_decl) 1147 << PropertyId; 1148 // Note! I deliberately want it to fall thru so, we have a 1149 // a property implementation and to avoid future warnings. 1150 } else if (getLangOpts().ObjCRuntime.isNonFragile() && 1151 !declaresSameEntity(ClassDeclared, IDecl)) { 1152 Diag(PropertyDiagLoc, diag::error_ivar_in_superclass_use) 1153 << property->getDeclName() << Ivar->getDeclName() 1154 << ClassDeclared->getDeclName(); 1155 Diag(Ivar->getLocation(), diag::note_previous_access_declaration) 1156 << Ivar << Ivar->getName(); 1157 // Note! I deliberately want it to fall thru so more errors are caught. 1158 } 1159 property->setPropertyIvarDecl(Ivar); 1160 1161 QualType IvarType = Context.getCanonicalType(Ivar->getType()); 1162 1163 // Check that type of property and its ivar are type compatible. 1164 if (!Context.hasSameType(PropertyIvarType, IvarType)) { 1165 if (isa<ObjCObjectPointerType>(PropertyIvarType) 1166 && isa<ObjCObjectPointerType>(IvarType)) 1167 compat = 1168 Context.canAssignObjCInterfaces( 1169 PropertyIvarType->getAs<ObjCObjectPointerType>(), 1170 IvarType->getAs<ObjCObjectPointerType>()); 1171 else { 1172 compat = (CheckAssignmentConstraints(PropertyIvarLoc, PropertyIvarType, 1173 IvarType) 1174 == Compatible); 1175 } 1176 if (!compat) { 1177 Diag(PropertyDiagLoc, diag::error_property_ivar_type) 1178 << property->getDeclName() << PropType 1179 << Ivar->getDeclName() << IvarType; 1180 Diag(Ivar->getLocation(), diag::note_ivar_decl); 1181 // Note! I deliberately want it to fall thru so, we have a 1182 // a property implementation and to avoid future warnings. 1183 } 1184 else { 1185 // FIXME! Rules for properties are somewhat different that those 1186 // for assignments. Use a new routine to consolidate all cases; 1187 // specifically for property redeclarations as well as for ivars. 1188 QualType lhsType =Context.getCanonicalType(PropertyIvarType).getUnqualifiedType(); 1189 QualType rhsType =Context.getCanonicalType(IvarType).getUnqualifiedType(); 1190 if (lhsType != rhsType && 1191 lhsType->isArithmeticType()) { 1192 Diag(PropertyDiagLoc, diag::error_property_ivar_type) 1193 << property->getDeclName() << PropType 1194 << Ivar->getDeclName() << IvarType; 1195 Diag(Ivar->getLocation(), diag::note_ivar_decl); 1196 // Fall thru - see previous comment 1197 } 1198 } 1199 // __weak is explicit. So it works on Canonical type. 1200 if ((PropType.isObjCGCWeak() && !IvarType.isObjCGCWeak() && 1201 getLangOpts().getGC() != LangOptions::NonGC)) { 1202 Diag(PropertyDiagLoc, diag::error_weak_property) 1203 << property->getDeclName() << Ivar->getDeclName(); 1204 Diag(Ivar->getLocation(), diag::note_ivar_decl); 1205 // Fall thru - see previous comment 1206 } 1207 // Fall thru - see previous comment 1208 if ((property->getType()->isObjCObjectPointerType() || 1209 PropType.isObjCGCStrong()) && IvarType.isObjCGCWeak() && 1210 getLangOpts().getGC() != LangOptions::NonGC) { 1211 Diag(PropertyDiagLoc, diag::error_strong_property) 1212 << property->getDeclName() << Ivar->getDeclName(); 1213 // Fall thru - see previous comment 1214 } 1215 } 1216 if (getLangOpts().ObjCAutoRefCount || isARCWeak || 1217 Ivar->getType().getObjCLifetime()) 1218 checkARCPropertyImpl(*this, PropertyLoc, property, Ivar); 1219 } else if (PropertyIvar) 1220 // @dynamic 1221 Diag(PropertyDiagLoc, diag::error_dynamic_property_ivar_decl); 1222 1223 assert (property && "ActOnPropertyImplDecl - property declaration missing"); 1224 ObjCPropertyImplDecl *PIDecl = 1225 ObjCPropertyImplDecl::Create(Context, CurContext, AtLoc, PropertyLoc, 1226 property, 1227 (Synthesize ? 1228 ObjCPropertyImplDecl::Synthesize 1229 : ObjCPropertyImplDecl::Dynamic), 1230 Ivar, PropertyIvarLoc); 1231 1232 if (CompleteTypeErr || !compat) 1233 PIDecl->setInvalidDecl(); 1234 1235 if (ObjCMethodDecl *getterMethod = property->getGetterMethodDecl()) { 1236 getterMethod->createImplicitParams(Context, IDecl); 1237 if (getLangOpts().CPlusPlus && Synthesize && !CompleteTypeErr && 1238 Ivar->getType()->isRecordType()) { 1239 // For Objective-C++, need to synthesize the AST for the IVAR object to be 1240 // returned by the getter as it must conform to C++'s copy-return rules. 1241 // FIXME. Eventually we want to do this for Objective-C as well. 1242 SynthesizedFunctionScope Scope(*this, getterMethod); 1243 ImplicitParamDecl *SelfDecl = getterMethod->getSelfDecl(); 1244 DeclRefExpr *SelfExpr = 1245 new (Context) DeclRefExpr(SelfDecl, false, SelfDecl->getType(), 1246 VK_LValue, PropertyDiagLoc); 1247 MarkDeclRefReferenced(SelfExpr); 1248 Expr *LoadSelfExpr = 1249 ImplicitCastExpr::Create(Context, SelfDecl->getType(), 1250 CK_LValueToRValue, SelfExpr, nullptr, 1251 VK_RValue); 1252 Expr *IvarRefExpr = 1253 new (Context) ObjCIvarRefExpr(Ivar, 1254 Ivar->getUsageType(SelfDecl->getType()), 1255 PropertyDiagLoc, 1256 Ivar->getLocation(), 1257 LoadSelfExpr, true, true); 1258 ExprResult Res = PerformCopyInitialization( 1259 InitializedEntity::InitializeResult(PropertyDiagLoc, 1260 getterMethod->getReturnType(), 1261 /*NRVO=*/false), 1262 PropertyDiagLoc, IvarRefExpr); 1263 if (!Res.isInvalid()) { 1264 Expr *ResExpr = Res.getAs<Expr>(); 1265 if (ResExpr) 1266 ResExpr = MaybeCreateExprWithCleanups(ResExpr); 1267 PIDecl->setGetterCXXConstructor(ResExpr); 1268 } 1269 } 1270 if (property->hasAttr<NSReturnsNotRetainedAttr>() && 1271 !getterMethod->hasAttr<NSReturnsNotRetainedAttr>()) { 1272 Diag(getterMethod->getLocation(), 1273 diag::warn_property_getter_owning_mismatch); 1274 Diag(property->getLocation(), diag::note_property_declare); 1275 } 1276 if (getLangOpts().ObjCAutoRefCount && Synthesize) 1277 switch (getterMethod->getMethodFamily()) { 1278 case OMF_retain: 1279 case OMF_retainCount: 1280 case OMF_release: 1281 case OMF_autorelease: 1282 Diag(getterMethod->getLocation(), diag::err_arc_illegal_method_def) 1283 << 1 << getterMethod->getSelector(); 1284 break; 1285 default: 1286 break; 1287 } 1288 } 1289 if (ObjCMethodDecl *setterMethod = property->getSetterMethodDecl()) { 1290 setterMethod->createImplicitParams(Context, IDecl); 1291 if (getLangOpts().CPlusPlus && Synthesize && !CompleteTypeErr && 1292 Ivar->getType()->isRecordType()) { 1293 // FIXME. Eventually we want to do this for Objective-C as well. 1294 SynthesizedFunctionScope Scope(*this, setterMethod); 1295 ImplicitParamDecl *SelfDecl = setterMethod->getSelfDecl(); 1296 DeclRefExpr *SelfExpr = 1297 new (Context) DeclRefExpr(SelfDecl, false, SelfDecl->getType(), 1298 VK_LValue, PropertyDiagLoc); 1299 MarkDeclRefReferenced(SelfExpr); 1300 Expr *LoadSelfExpr = 1301 ImplicitCastExpr::Create(Context, SelfDecl->getType(), 1302 CK_LValueToRValue, SelfExpr, nullptr, 1303 VK_RValue); 1304 Expr *lhs = 1305 new (Context) ObjCIvarRefExpr(Ivar, 1306 Ivar->getUsageType(SelfDecl->getType()), 1307 PropertyDiagLoc, 1308 Ivar->getLocation(), 1309 LoadSelfExpr, true, true); 1310 ObjCMethodDecl::param_iterator P = setterMethod->param_begin(); 1311 ParmVarDecl *Param = (*P); 1312 QualType T = Param->getType().getNonReferenceType(); 1313 DeclRefExpr *rhs = new (Context) DeclRefExpr(Param, false, T, 1314 VK_LValue, PropertyDiagLoc); 1315 MarkDeclRefReferenced(rhs); 1316 ExprResult Res = BuildBinOp(S, PropertyDiagLoc, 1317 BO_Assign, lhs, rhs); 1318 if (property->getPropertyAttributes() & 1319 ObjCPropertyDecl::OBJC_PR_atomic) { 1320 Expr *callExpr = Res.getAs<Expr>(); 1321 if (const CXXOperatorCallExpr *CXXCE = 1322 dyn_cast_or_null<CXXOperatorCallExpr>(callExpr)) 1323 if (const FunctionDecl *FuncDecl = CXXCE->getDirectCallee()) 1324 if (!FuncDecl->isTrivial()) 1325 if (property->getType()->isReferenceType()) { 1326 Diag(PropertyDiagLoc, 1327 diag::err_atomic_property_nontrivial_assign_op) 1328 << property->getType(); 1329 Diag(FuncDecl->getLocStart(), 1330 diag::note_callee_decl) << FuncDecl; 1331 } 1332 } 1333 PIDecl->setSetterCXXAssignment(Res.getAs<Expr>()); 1334 } 1335 } 1336 1337 if (IC) { 1338 if (Synthesize) 1339 if (ObjCPropertyImplDecl *PPIDecl = 1340 IC->FindPropertyImplIvarDecl(PropertyIvar)) { 1341 Diag(PropertyLoc, diag::error_duplicate_ivar_use) 1342 << PropertyId << PPIDecl->getPropertyDecl()->getIdentifier() 1343 << PropertyIvar; 1344 Diag(PPIDecl->getLocation(), diag::note_previous_use); 1345 } 1346 1347 if (ObjCPropertyImplDecl *PPIDecl 1348 = IC->FindPropertyImplDecl(PropertyId)) { 1349 Diag(PropertyLoc, diag::error_property_implemented) << PropertyId; 1350 Diag(PPIDecl->getLocation(), diag::note_previous_declaration); 1351 return nullptr; 1352 } 1353 IC->addPropertyImplementation(PIDecl); 1354 if (getLangOpts().ObjCDefaultSynthProperties && 1355 getLangOpts().ObjCRuntime.isNonFragile() && 1356 !IDecl->isObjCRequiresPropertyDefs()) { 1357 // Diagnose if an ivar was lazily synthesdized due to a previous 1358 // use and if 1) property is @dynamic or 2) property is synthesized 1359 // but it requires an ivar of different name. 1360 ObjCInterfaceDecl *ClassDeclared=nullptr; 1361 ObjCIvarDecl *Ivar = nullptr; 1362 if (!Synthesize) 1363 Ivar = IDecl->lookupInstanceVariable(PropertyId, ClassDeclared); 1364 else { 1365 if (PropertyIvar && PropertyIvar != PropertyId) 1366 Ivar = IDecl->lookupInstanceVariable(PropertyId, ClassDeclared); 1367 } 1368 // Issue diagnostics only if Ivar belongs to current class. 1369 if (Ivar && Ivar->getSynthesize() && 1370 declaresSameEntity(IC->getClassInterface(), ClassDeclared)) { 1371 Diag(Ivar->getLocation(), diag::err_undeclared_var_use) 1372 << PropertyId; 1373 Ivar->setInvalidDecl(); 1374 } 1375 } 1376 } else { 1377 if (Synthesize) 1378 if (ObjCPropertyImplDecl *PPIDecl = 1379 CatImplClass->FindPropertyImplIvarDecl(PropertyIvar)) { 1380 Diag(PropertyDiagLoc, diag::error_duplicate_ivar_use) 1381 << PropertyId << PPIDecl->getPropertyDecl()->getIdentifier() 1382 << PropertyIvar; 1383 Diag(PPIDecl->getLocation(), diag::note_previous_use); 1384 } 1385 1386 if (ObjCPropertyImplDecl *PPIDecl = 1387 CatImplClass->FindPropertyImplDecl(PropertyId)) { 1388 Diag(PropertyDiagLoc, diag::error_property_implemented) << PropertyId; 1389 Diag(PPIDecl->getLocation(), diag::note_previous_declaration); 1390 return nullptr; 1391 } 1392 CatImplClass->addPropertyImplementation(PIDecl); 1393 } 1394 1395 return PIDecl; 1396 } 1397 1398 //===----------------------------------------------------------------------===// 1399 // Helper methods. 1400 //===----------------------------------------------------------------------===// 1401 1402 /// DiagnosePropertyMismatch - Compares two properties for their 1403 /// attributes and types and warns on a variety of inconsistencies. 1404 /// 1405 void 1406 Sema::DiagnosePropertyMismatch(ObjCPropertyDecl *Property, 1407 ObjCPropertyDecl *SuperProperty, 1408 const IdentifierInfo *inheritedName, 1409 bool OverridingProtocolProperty) { 1410 ObjCPropertyDecl::PropertyAttributeKind CAttr = 1411 Property->getPropertyAttributes(); 1412 ObjCPropertyDecl::PropertyAttributeKind SAttr = 1413 SuperProperty->getPropertyAttributes(); 1414 1415 // We allow readonly properties without an explicit ownership 1416 // (assign/unsafe_unretained/weak/retain/strong/copy) in super class 1417 // to be overridden by a property with any explicit ownership in the subclass. 1418 if (!OverridingProtocolProperty && 1419 !getOwnershipRule(SAttr) && getOwnershipRule(CAttr)) 1420 ; 1421 else { 1422 if ((CAttr & ObjCPropertyDecl::OBJC_PR_readonly) 1423 && (SAttr & ObjCPropertyDecl::OBJC_PR_readwrite)) 1424 Diag(Property->getLocation(), diag::warn_readonly_property) 1425 << Property->getDeclName() << inheritedName; 1426 if ((CAttr & ObjCPropertyDecl::OBJC_PR_copy) 1427 != (SAttr & ObjCPropertyDecl::OBJC_PR_copy)) 1428 Diag(Property->getLocation(), diag::warn_property_attribute) 1429 << Property->getDeclName() << "copy" << inheritedName; 1430 else if (!(SAttr & ObjCPropertyDecl::OBJC_PR_readonly)){ 1431 unsigned CAttrRetain = 1432 (CAttr & 1433 (ObjCPropertyDecl::OBJC_PR_retain | ObjCPropertyDecl::OBJC_PR_strong)); 1434 unsigned SAttrRetain = 1435 (SAttr & 1436 (ObjCPropertyDecl::OBJC_PR_retain | ObjCPropertyDecl::OBJC_PR_strong)); 1437 bool CStrong = (CAttrRetain != 0); 1438 bool SStrong = (SAttrRetain != 0); 1439 if (CStrong != SStrong) 1440 Diag(Property->getLocation(), diag::warn_property_attribute) 1441 << Property->getDeclName() << "retain (or strong)" << inheritedName; 1442 } 1443 } 1444 1445 // Check for nonatomic; note that nonatomic is effectively 1446 // meaningless for readonly properties, so don't diagnose if the 1447 // atomic property is 'readonly'. 1448 checkAtomicPropertyMismatch(*this, SuperProperty, Property, false); 1449 if (Property->getSetterName() != SuperProperty->getSetterName()) { 1450 Diag(Property->getLocation(), diag::warn_property_attribute) 1451 << Property->getDeclName() << "setter" << inheritedName; 1452 Diag(SuperProperty->getLocation(), diag::note_property_declare); 1453 } 1454 if (Property->getGetterName() != SuperProperty->getGetterName()) { 1455 Diag(Property->getLocation(), diag::warn_property_attribute) 1456 << Property->getDeclName() << "getter" << inheritedName; 1457 Diag(SuperProperty->getLocation(), diag::note_property_declare); 1458 } 1459 1460 QualType LHSType = 1461 Context.getCanonicalType(SuperProperty->getType()); 1462 QualType RHSType = 1463 Context.getCanonicalType(Property->getType()); 1464 1465 if (!Context.propertyTypesAreCompatible(LHSType, RHSType)) { 1466 // Do cases not handled in above. 1467 // FIXME. For future support of covariant property types, revisit this. 1468 bool IncompatibleObjC = false; 1469 QualType ConvertedType; 1470 if (!isObjCPointerConversion(RHSType, LHSType, 1471 ConvertedType, IncompatibleObjC) || 1472 IncompatibleObjC) { 1473 Diag(Property->getLocation(), diag::warn_property_types_are_incompatible) 1474 << Property->getType() << SuperProperty->getType() << inheritedName; 1475 Diag(SuperProperty->getLocation(), diag::note_property_declare); 1476 } 1477 } 1478 } 1479 1480 bool Sema::DiagnosePropertyAccessorMismatch(ObjCPropertyDecl *property, 1481 ObjCMethodDecl *GetterMethod, 1482 SourceLocation Loc) { 1483 if (!GetterMethod) 1484 return false; 1485 QualType GetterType = GetterMethod->getReturnType().getNonReferenceType(); 1486 QualType PropertyIvarType = property->getType().getNonReferenceType(); 1487 bool compat = Context.hasSameType(PropertyIvarType, GetterType); 1488 if (!compat) { 1489 const ObjCObjectPointerType *propertyObjCPtr = nullptr; 1490 const ObjCObjectPointerType *getterObjCPtr = nullptr; 1491 if ((propertyObjCPtr = PropertyIvarType->getAs<ObjCObjectPointerType>()) && 1492 (getterObjCPtr = GetterType->getAs<ObjCObjectPointerType>())) 1493 compat = Context.canAssignObjCInterfaces(getterObjCPtr, propertyObjCPtr); 1494 else if (CheckAssignmentConstraints(Loc, GetterType, PropertyIvarType) 1495 != Compatible) { 1496 Diag(Loc, diag::error_property_accessor_type) 1497 << property->getDeclName() << PropertyIvarType 1498 << GetterMethod->getSelector() << GetterType; 1499 Diag(GetterMethod->getLocation(), diag::note_declared_at); 1500 return true; 1501 } else { 1502 compat = true; 1503 QualType lhsType =Context.getCanonicalType(PropertyIvarType).getUnqualifiedType(); 1504 QualType rhsType =Context.getCanonicalType(GetterType).getUnqualifiedType(); 1505 if (lhsType != rhsType && lhsType->isArithmeticType()) 1506 compat = false; 1507 } 1508 } 1509 1510 if (!compat) { 1511 Diag(Loc, diag::warn_accessor_property_type_mismatch) 1512 << property->getDeclName() 1513 << GetterMethod->getSelector(); 1514 Diag(GetterMethod->getLocation(), diag::note_declared_at); 1515 return true; 1516 } 1517 1518 return false; 1519 } 1520 1521 /// CollectImmediateProperties - This routine collects all properties in 1522 /// the class and its conforming protocols; but not those in its super class. 1523 static void CollectImmediateProperties(ObjCContainerDecl *CDecl, 1524 ObjCContainerDecl::PropertyMap &PropMap, 1525 ObjCContainerDecl::PropertyMap &SuperPropMap, 1526 bool IncludeProtocols = true) { 1527 1528 if (ObjCInterfaceDecl *IDecl = dyn_cast<ObjCInterfaceDecl>(CDecl)) { 1529 for (auto *Prop : IDecl->instance_properties()) 1530 PropMap[Prop->getIdentifier()] = Prop; 1531 1532 // Collect the properties from visible extensions. 1533 for (auto *Ext : IDecl->visible_extensions()) 1534 CollectImmediateProperties(Ext, PropMap, SuperPropMap, IncludeProtocols); 1535 1536 if (IncludeProtocols) { 1537 // Scan through class's protocols. 1538 for (auto *PI : IDecl->all_referenced_protocols()) 1539 CollectImmediateProperties(PI, PropMap, SuperPropMap); 1540 } 1541 } 1542 if (ObjCCategoryDecl *CATDecl = dyn_cast<ObjCCategoryDecl>(CDecl)) { 1543 for (auto *Prop : CATDecl->instance_properties()) 1544 PropMap[Prop->getIdentifier()] = Prop; 1545 if (IncludeProtocols) { 1546 // Scan through class's protocols. 1547 for (auto *PI : CATDecl->protocols()) 1548 CollectImmediateProperties(PI, PropMap, SuperPropMap); 1549 } 1550 } 1551 else if (ObjCProtocolDecl *PDecl = dyn_cast<ObjCProtocolDecl>(CDecl)) { 1552 for (auto *Prop : PDecl->instance_properties()) { 1553 ObjCPropertyDecl *PropertyFromSuper = SuperPropMap[Prop->getIdentifier()]; 1554 // Exclude property for protocols which conform to class's super-class, 1555 // as super-class has to implement the property. 1556 if (!PropertyFromSuper || 1557 PropertyFromSuper->getIdentifier() != Prop->getIdentifier()) { 1558 ObjCPropertyDecl *&PropEntry = PropMap[Prop->getIdentifier()]; 1559 if (!PropEntry) 1560 PropEntry = Prop; 1561 } 1562 } 1563 // scan through protocol's protocols. 1564 for (auto *PI : PDecl->protocols()) 1565 CollectImmediateProperties(PI, PropMap, SuperPropMap); 1566 } 1567 } 1568 1569 /// CollectSuperClassPropertyImplementations - This routine collects list of 1570 /// properties to be implemented in super class(s) and also coming from their 1571 /// conforming protocols. 1572 static void CollectSuperClassPropertyImplementations(ObjCInterfaceDecl *CDecl, 1573 ObjCInterfaceDecl::PropertyMap &PropMap) { 1574 if (ObjCInterfaceDecl *SDecl = CDecl->getSuperClass()) { 1575 ObjCInterfaceDecl::PropertyDeclOrder PO; 1576 while (SDecl) { 1577 SDecl->collectPropertiesToImplement(PropMap, PO); 1578 SDecl = SDecl->getSuperClass(); 1579 } 1580 } 1581 } 1582 1583 /// IvarBacksCurrentMethodAccessor - This routine returns 'true' if 'IV' is 1584 /// an ivar synthesized for 'Method' and 'Method' is a property accessor 1585 /// declared in class 'IFace'. 1586 bool 1587 Sema::IvarBacksCurrentMethodAccessor(ObjCInterfaceDecl *IFace, 1588 ObjCMethodDecl *Method, ObjCIvarDecl *IV) { 1589 if (!IV->getSynthesize()) 1590 return false; 1591 ObjCMethodDecl *IMD = IFace->lookupMethod(Method->getSelector(), 1592 Method->isInstanceMethod()); 1593 if (!IMD || !IMD->isPropertyAccessor()) 1594 return false; 1595 1596 // look up a property declaration whose one of its accessors is implemented 1597 // by this method. 1598 for (const auto *Property : IFace->instance_properties()) { 1599 if ((Property->getGetterName() == IMD->getSelector() || 1600 Property->getSetterName() == IMD->getSelector()) && 1601 (Property->getPropertyIvarDecl() == IV)) 1602 return true; 1603 } 1604 // Also look up property declaration in class extension whose one of its 1605 // accessors is implemented by this method. 1606 for (const auto *Ext : IFace->known_extensions()) 1607 for (const auto *Property : Ext->instance_properties()) 1608 if ((Property->getGetterName() == IMD->getSelector() || 1609 Property->getSetterName() == IMD->getSelector()) && 1610 (Property->getPropertyIvarDecl() == IV)) 1611 return true; 1612 return false; 1613 } 1614 1615 static bool SuperClassImplementsProperty(ObjCInterfaceDecl *IDecl, 1616 ObjCPropertyDecl *Prop) { 1617 bool SuperClassImplementsGetter = false; 1618 bool SuperClassImplementsSetter = false; 1619 if (Prop->getPropertyAttributes() & ObjCPropertyDecl::OBJC_PR_readonly) 1620 SuperClassImplementsSetter = true; 1621 1622 while (IDecl->getSuperClass()) { 1623 ObjCInterfaceDecl *SDecl = IDecl->getSuperClass(); 1624 if (!SuperClassImplementsGetter && SDecl->getInstanceMethod(Prop->getGetterName())) 1625 SuperClassImplementsGetter = true; 1626 1627 if (!SuperClassImplementsSetter && SDecl->getInstanceMethod(Prop->getSetterName())) 1628 SuperClassImplementsSetter = true; 1629 if (SuperClassImplementsGetter && SuperClassImplementsSetter) 1630 return true; 1631 IDecl = IDecl->getSuperClass(); 1632 } 1633 return false; 1634 } 1635 1636 /// \brief Default synthesizes all properties which must be synthesized 1637 /// in class's \@implementation. 1638 void Sema::DefaultSynthesizeProperties(Scope *S, ObjCImplDecl* IMPDecl, 1639 ObjCInterfaceDecl *IDecl) { 1640 1641 ObjCInterfaceDecl::PropertyMap PropMap; 1642 ObjCInterfaceDecl::PropertyDeclOrder PropertyOrder; 1643 IDecl->collectPropertiesToImplement(PropMap, PropertyOrder); 1644 if (PropMap.empty()) 1645 return; 1646 ObjCInterfaceDecl::PropertyMap SuperPropMap; 1647 CollectSuperClassPropertyImplementations(IDecl, SuperPropMap); 1648 1649 for (unsigned i = 0, e = PropertyOrder.size(); i != e; i++) { 1650 ObjCPropertyDecl *Prop = PropertyOrder[i]; 1651 // Is there a matching property synthesize/dynamic? 1652 if (Prop->isInvalidDecl() || 1653 Prop->getPropertyImplementation() == ObjCPropertyDecl::Optional) 1654 continue; 1655 // Property may have been synthesized by user. 1656 if (IMPDecl->FindPropertyImplDecl(Prop->getIdentifier())) 1657 continue; 1658 if (IMPDecl->getInstanceMethod(Prop->getGetterName())) { 1659 if (Prop->getPropertyAttributes() & ObjCPropertyDecl::OBJC_PR_readonly) 1660 continue; 1661 if (IMPDecl->getInstanceMethod(Prop->getSetterName())) 1662 continue; 1663 } 1664 if (ObjCPropertyImplDecl *PID = 1665 IMPDecl->FindPropertyImplIvarDecl(Prop->getIdentifier())) { 1666 Diag(Prop->getLocation(), diag::warn_no_autosynthesis_shared_ivar_property) 1667 << Prop->getIdentifier(); 1668 if (PID->getLocation().isValid()) 1669 Diag(PID->getLocation(), diag::note_property_synthesize); 1670 continue; 1671 } 1672 ObjCPropertyDecl *PropInSuperClass = SuperPropMap[Prop->getIdentifier()]; 1673 if (ObjCProtocolDecl *Proto = 1674 dyn_cast<ObjCProtocolDecl>(Prop->getDeclContext())) { 1675 // We won't auto-synthesize properties declared in protocols. 1676 // Suppress the warning if class's superclass implements property's 1677 // getter and implements property's setter (if readwrite property). 1678 // Or, if property is going to be implemented in its super class. 1679 if (!SuperClassImplementsProperty(IDecl, Prop) && !PropInSuperClass) { 1680 Diag(IMPDecl->getLocation(), 1681 diag::warn_auto_synthesizing_protocol_property) 1682 << Prop << Proto; 1683 Diag(Prop->getLocation(), diag::note_property_declare); 1684 } 1685 continue; 1686 } 1687 // If property to be implemented in the super class, ignore. 1688 if (PropInSuperClass) { 1689 if ((Prop->getPropertyAttributes() & ObjCPropertyDecl::OBJC_PR_readwrite) && 1690 (PropInSuperClass->getPropertyAttributes() & 1691 ObjCPropertyDecl::OBJC_PR_readonly) && 1692 !IMPDecl->getInstanceMethod(Prop->getSetterName()) && 1693 !IDecl->HasUserDeclaredSetterMethod(Prop)) { 1694 Diag(Prop->getLocation(), diag::warn_no_autosynthesis_property) 1695 << Prop->getIdentifier(); 1696 Diag(PropInSuperClass->getLocation(), diag::note_property_declare); 1697 } 1698 else { 1699 Diag(Prop->getLocation(), diag::warn_autosynthesis_property_in_superclass) 1700 << Prop->getIdentifier(); 1701 Diag(PropInSuperClass->getLocation(), diag::note_property_declare); 1702 Diag(IMPDecl->getLocation(), diag::note_while_in_implementation); 1703 } 1704 continue; 1705 } 1706 // We use invalid SourceLocations for the synthesized ivars since they 1707 // aren't really synthesized at a particular location; they just exist. 1708 // Saying that they are located at the @implementation isn't really going 1709 // to help users. 1710 ObjCPropertyImplDecl *PIDecl = dyn_cast_or_null<ObjCPropertyImplDecl>( 1711 ActOnPropertyImplDecl(S, SourceLocation(), SourceLocation(), 1712 true, 1713 /* property = */ Prop->getIdentifier(), 1714 /* ivar = */ Prop->getDefaultSynthIvarName(Context), 1715 Prop->getLocation())); 1716 if (PIDecl) { 1717 Diag(Prop->getLocation(), diag::warn_missing_explicit_synthesis); 1718 Diag(IMPDecl->getLocation(), diag::note_while_in_implementation); 1719 } 1720 } 1721 } 1722 1723 void Sema::DefaultSynthesizeProperties(Scope *S, Decl *D) { 1724 if (!LangOpts.ObjCDefaultSynthProperties || LangOpts.ObjCRuntime.isFragile()) 1725 return; 1726 ObjCImplementationDecl *IC=dyn_cast_or_null<ObjCImplementationDecl>(D); 1727 if (!IC) 1728 return; 1729 if (ObjCInterfaceDecl* IDecl = IC->getClassInterface()) 1730 if (!IDecl->isObjCRequiresPropertyDefs()) 1731 DefaultSynthesizeProperties(S, IC, IDecl); 1732 } 1733 1734 static void DiagnoseUnimplementedAccessor(Sema &S, 1735 ObjCInterfaceDecl *PrimaryClass, 1736 Selector Method, 1737 ObjCImplDecl* IMPDecl, 1738 ObjCContainerDecl *CDecl, 1739 ObjCCategoryDecl *C, 1740 ObjCPropertyDecl *Prop, 1741 Sema::SelectorSet &SMap) { 1742 // When reporting on missing property setter/getter implementation in 1743 // categories, do not report when they are declared in primary class, 1744 // class's protocol, or one of it super classes. This is because, 1745 // the class is going to implement them. 1746 if (!SMap.count(Method) && 1747 (PrimaryClass == nullptr || 1748 !PrimaryClass->lookupPropertyAccessor(Method, C))) { 1749 S.Diag(IMPDecl->getLocation(), 1750 isa<ObjCCategoryDecl>(CDecl) ? 1751 diag::warn_setter_getter_impl_required_in_category : 1752 diag::warn_setter_getter_impl_required) 1753 << Prop->getDeclName() << Method; 1754 S.Diag(Prop->getLocation(), 1755 diag::note_property_declare); 1756 if (S.LangOpts.ObjCDefaultSynthProperties && 1757 S.LangOpts.ObjCRuntime.isNonFragile()) 1758 if (ObjCInterfaceDecl *ID = dyn_cast<ObjCInterfaceDecl>(CDecl)) 1759 if (const ObjCInterfaceDecl *RID = ID->isObjCRequiresPropertyDefs()) 1760 S.Diag(RID->getLocation(), diag::note_suppressed_class_declare); 1761 } 1762 } 1763 1764 void Sema::DiagnoseUnimplementedProperties(Scope *S, ObjCImplDecl* IMPDecl, 1765 ObjCContainerDecl *CDecl, 1766 bool SynthesizeProperties) { 1767 ObjCContainerDecl::PropertyMap PropMap; 1768 ObjCInterfaceDecl *IDecl = dyn_cast<ObjCInterfaceDecl>(CDecl); 1769 1770 if (!SynthesizeProperties) { 1771 ObjCContainerDecl::PropertyMap NoNeedToImplPropMap; 1772 // Gather properties which need not be implemented in this class 1773 // or category. 1774 if (!IDecl) 1775 if (ObjCCategoryDecl *C = dyn_cast<ObjCCategoryDecl>(CDecl)) { 1776 // For categories, no need to implement properties declared in 1777 // its primary class (and its super classes) if property is 1778 // declared in one of those containers. 1779 if ((IDecl = C->getClassInterface())) { 1780 ObjCInterfaceDecl::PropertyDeclOrder PO; 1781 IDecl->collectPropertiesToImplement(NoNeedToImplPropMap, PO); 1782 } 1783 } 1784 if (IDecl) 1785 CollectSuperClassPropertyImplementations(IDecl, NoNeedToImplPropMap); 1786 1787 CollectImmediateProperties(CDecl, PropMap, NoNeedToImplPropMap); 1788 } 1789 1790 // Scan the @interface to see if any of the protocols it adopts 1791 // require an explicit implementation, via attribute 1792 // 'objc_protocol_requires_explicit_implementation'. 1793 if (IDecl) { 1794 std::unique_ptr<ObjCContainerDecl::PropertyMap> LazyMap; 1795 1796 for (auto *PDecl : IDecl->all_referenced_protocols()) { 1797 if (!PDecl->hasAttr<ObjCExplicitProtocolImplAttr>()) 1798 continue; 1799 // Lazily construct a set of all the properties in the @interface 1800 // of the class, without looking at the superclass. We cannot 1801 // use the call to CollectImmediateProperties() above as that 1802 // utilizes information from the super class's properties as well 1803 // as scans the adopted protocols. This work only triggers for protocols 1804 // with the attribute, which is very rare, and only occurs when 1805 // analyzing the @implementation. 1806 if (!LazyMap) { 1807 ObjCContainerDecl::PropertyMap NoNeedToImplPropMap; 1808 LazyMap.reset(new ObjCContainerDecl::PropertyMap()); 1809 CollectImmediateProperties(CDecl, *LazyMap, NoNeedToImplPropMap, 1810 /* IncludeProtocols */ false); 1811 } 1812 // Add the properties of 'PDecl' to the list of properties that 1813 // need to be implemented. 1814 for (auto *PropDecl : PDecl->instance_properties()) { 1815 if ((*LazyMap)[PropDecl->getIdentifier()]) 1816 continue; 1817 PropMap[PropDecl->getIdentifier()] = PropDecl; 1818 } 1819 } 1820 } 1821 1822 if (PropMap.empty()) 1823 return; 1824 1825 llvm::DenseSet<ObjCPropertyDecl *> PropImplMap; 1826 for (const auto *I : IMPDecl->property_impls()) 1827 PropImplMap.insert(I->getPropertyDecl()); 1828 1829 SelectorSet InsMap; 1830 // Collect property accessors implemented in current implementation. 1831 for (const auto *I : IMPDecl->instance_methods()) 1832 InsMap.insert(I->getSelector()); 1833 1834 ObjCCategoryDecl *C = dyn_cast<ObjCCategoryDecl>(CDecl); 1835 ObjCInterfaceDecl *PrimaryClass = nullptr; 1836 if (C && !C->IsClassExtension()) 1837 if ((PrimaryClass = C->getClassInterface())) 1838 // Report unimplemented properties in the category as well. 1839 if (ObjCImplDecl *IMP = PrimaryClass->getImplementation()) { 1840 // When reporting on missing setter/getters, do not report when 1841 // setter/getter is implemented in category's primary class 1842 // implementation. 1843 for (const auto *I : IMP->instance_methods()) 1844 InsMap.insert(I->getSelector()); 1845 } 1846 1847 for (ObjCContainerDecl::PropertyMap::iterator 1848 P = PropMap.begin(), E = PropMap.end(); P != E; ++P) { 1849 ObjCPropertyDecl *Prop = P->second; 1850 // Is there a matching propery synthesize/dynamic? 1851 if (Prop->isInvalidDecl() || 1852 Prop->getPropertyImplementation() == ObjCPropertyDecl::Optional || 1853 PropImplMap.count(Prop) || 1854 Prop->getAvailability() == AR_Unavailable) 1855 continue; 1856 1857 // Diagnose unimplemented getters and setters. 1858 DiagnoseUnimplementedAccessor(*this, 1859 PrimaryClass, Prop->getGetterName(), IMPDecl, CDecl, C, Prop, InsMap); 1860 if (!Prop->isReadOnly()) 1861 DiagnoseUnimplementedAccessor(*this, 1862 PrimaryClass, Prop->getSetterName(), 1863 IMPDecl, CDecl, C, Prop, InsMap); 1864 } 1865 } 1866 1867 void Sema::diagnoseNullResettableSynthesizedSetters(const ObjCImplDecl *impDecl) { 1868 for (const auto *propertyImpl : impDecl->property_impls()) { 1869 const auto *property = propertyImpl->getPropertyDecl(); 1870 1871 // Warn about null_resettable properties with synthesized setters, 1872 // because the setter won't properly handle nil. 1873 if (propertyImpl->getPropertyImplementation() 1874 == ObjCPropertyImplDecl::Synthesize && 1875 (property->getPropertyAttributes() & 1876 ObjCPropertyDecl::OBJC_PR_null_resettable) && 1877 property->getGetterMethodDecl() && 1878 property->getSetterMethodDecl()) { 1879 auto *getterMethod = property->getGetterMethodDecl(); 1880 auto *setterMethod = property->getSetterMethodDecl(); 1881 if (!impDecl->getInstanceMethod(setterMethod->getSelector()) && 1882 !impDecl->getInstanceMethod(getterMethod->getSelector())) { 1883 SourceLocation loc = propertyImpl->getLocation(); 1884 if (loc.isInvalid()) 1885 loc = impDecl->getLocStart(); 1886 1887 Diag(loc, diag::warn_null_resettable_setter) 1888 << setterMethod->getSelector() << property->getDeclName(); 1889 } 1890 } 1891 } 1892 } 1893 1894 void 1895 Sema::AtomicPropertySetterGetterRules (ObjCImplDecl* IMPDecl, 1896 ObjCInterfaceDecl* IDecl) { 1897 // Rules apply in non-GC mode only 1898 if (getLangOpts().getGC() != LangOptions::NonGC) 1899 return; 1900 ObjCContainerDecl::PropertyMap PM; 1901 for (auto *Prop : IDecl->instance_properties()) 1902 PM[Prop->getIdentifier()] = Prop; 1903 for (const auto *Ext : IDecl->known_extensions()) 1904 for (auto *Prop : Ext->instance_properties()) 1905 PM[Prop->getIdentifier()] = Prop; 1906 1907 for (ObjCContainerDecl::PropertyMap::iterator I = PM.begin(), E = PM.end(); 1908 I != E; ++I) { 1909 const ObjCPropertyDecl *Property = I->second; 1910 ObjCMethodDecl *GetterMethod = nullptr; 1911 ObjCMethodDecl *SetterMethod = nullptr; 1912 bool LookedUpGetterSetter = false; 1913 1914 unsigned Attributes = Property->getPropertyAttributes(); 1915 unsigned AttributesAsWritten = Property->getPropertyAttributesAsWritten(); 1916 1917 if (!(AttributesAsWritten & ObjCPropertyDecl::OBJC_PR_atomic) && 1918 !(AttributesAsWritten & ObjCPropertyDecl::OBJC_PR_nonatomic)) { 1919 GetterMethod = IMPDecl->getInstanceMethod(Property->getGetterName()); 1920 SetterMethod = IMPDecl->getInstanceMethod(Property->getSetterName()); 1921 LookedUpGetterSetter = true; 1922 if (GetterMethod) { 1923 Diag(GetterMethod->getLocation(), 1924 diag::warn_default_atomic_custom_getter_setter) 1925 << Property->getIdentifier() << 0; 1926 Diag(Property->getLocation(), diag::note_property_declare); 1927 } 1928 if (SetterMethod) { 1929 Diag(SetterMethod->getLocation(), 1930 diag::warn_default_atomic_custom_getter_setter) 1931 << Property->getIdentifier() << 1; 1932 Diag(Property->getLocation(), diag::note_property_declare); 1933 } 1934 } 1935 1936 // We only care about readwrite atomic property. 1937 if ((Attributes & ObjCPropertyDecl::OBJC_PR_nonatomic) || 1938 !(Attributes & ObjCPropertyDecl::OBJC_PR_readwrite)) 1939 continue; 1940 if (const ObjCPropertyImplDecl *PIDecl 1941 = IMPDecl->FindPropertyImplDecl(Property->getIdentifier())) { 1942 if (PIDecl->getPropertyImplementation() == ObjCPropertyImplDecl::Dynamic) 1943 continue; 1944 if (!LookedUpGetterSetter) { 1945 GetterMethod = IMPDecl->getInstanceMethod(Property->getGetterName()); 1946 SetterMethod = IMPDecl->getInstanceMethod(Property->getSetterName()); 1947 } 1948 if ((GetterMethod && !SetterMethod) || (!GetterMethod && SetterMethod)) { 1949 SourceLocation MethodLoc = 1950 (GetterMethod ? GetterMethod->getLocation() 1951 : SetterMethod->getLocation()); 1952 Diag(MethodLoc, diag::warn_atomic_property_rule) 1953 << Property->getIdentifier() << (GetterMethod != nullptr) 1954 << (SetterMethod != nullptr); 1955 // fixit stuff. 1956 if (Property->getLParenLoc().isValid() && 1957 !(AttributesAsWritten & ObjCPropertyDecl::OBJC_PR_atomic)) { 1958 // @property () ... case. 1959 SourceLocation AfterLParen = 1960 getLocForEndOfToken(Property->getLParenLoc()); 1961 StringRef NonatomicStr = AttributesAsWritten? "nonatomic, " 1962 : "nonatomic"; 1963 Diag(Property->getLocation(), 1964 diag::note_atomic_property_fixup_suggest) 1965 << FixItHint::CreateInsertion(AfterLParen, NonatomicStr); 1966 } else if (Property->getLParenLoc().isInvalid()) { 1967 //@property id etc. 1968 SourceLocation startLoc = 1969 Property->getTypeSourceInfo()->getTypeLoc().getBeginLoc(); 1970 Diag(Property->getLocation(), 1971 diag::note_atomic_property_fixup_suggest) 1972 << FixItHint::CreateInsertion(startLoc, "(nonatomic) "); 1973 } 1974 else 1975 Diag(MethodLoc, diag::note_atomic_property_fixup_suggest); 1976 Diag(Property->getLocation(), diag::note_property_declare); 1977 } 1978 } 1979 } 1980 } 1981 1982 void Sema::DiagnoseOwningPropertyGetterSynthesis(const ObjCImplementationDecl *D) { 1983 if (getLangOpts().getGC() == LangOptions::GCOnly) 1984 return; 1985 1986 for (const auto *PID : D->property_impls()) { 1987 const ObjCPropertyDecl *PD = PID->getPropertyDecl(); 1988 if (PD && !PD->hasAttr<NSReturnsNotRetainedAttr>() && 1989 !D->getInstanceMethod(PD->getGetterName())) { 1990 ObjCMethodDecl *method = PD->getGetterMethodDecl(); 1991 if (!method) 1992 continue; 1993 ObjCMethodFamily family = method->getMethodFamily(); 1994 if (family == OMF_alloc || family == OMF_copy || 1995 family == OMF_mutableCopy || family == OMF_new) { 1996 if (getLangOpts().ObjCAutoRefCount) 1997 Diag(PD->getLocation(), diag::err_cocoa_naming_owned_rule); 1998 else 1999 Diag(PD->getLocation(), diag::warn_cocoa_naming_owned_rule); 2000 2001 // Look for a getter explicitly declared alongside the property. 2002 // If we find one, use its location for the note. 2003 SourceLocation noteLoc = PD->getLocation(); 2004 SourceLocation fixItLoc; 2005 for (auto *getterRedecl : method->redecls()) { 2006 if (getterRedecl->isImplicit()) 2007 continue; 2008 if (getterRedecl->getDeclContext() != PD->getDeclContext()) 2009 continue; 2010 noteLoc = getterRedecl->getLocation(); 2011 fixItLoc = getterRedecl->getLocEnd(); 2012 } 2013 2014 Preprocessor &PP = getPreprocessor(); 2015 TokenValue tokens[] = { 2016 tok::kw___attribute, tok::l_paren, tok::l_paren, 2017 PP.getIdentifierInfo("objc_method_family"), tok::l_paren, 2018 PP.getIdentifierInfo("none"), tok::r_paren, 2019 tok::r_paren, tok::r_paren 2020 }; 2021 StringRef spelling = "__attribute__((objc_method_family(none)))"; 2022 StringRef macroName = PP.getLastMacroWithSpelling(noteLoc, tokens); 2023 if (!macroName.empty()) 2024 spelling = macroName; 2025 2026 auto noteDiag = Diag(noteLoc, diag::note_cocoa_naming_declare_family) 2027 << method->getDeclName() << spelling; 2028 if (fixItLoc.isValid()) { 2029 SmallString<64> fixItText(" "); 2030 fixItText += spelling; 2031 noteDiag << FixItHint::CreateInsertion(fixItLoc, fixItText); 2032 } 2033 } 2034 } 2035 } 2036 } 2037 2038 void Sema::DiagnoseMissingDesignatedInitOverrides( 2039 const ObjCImplementationDecl *ImplD, 2040 const ObjCInterfaceDecl *IFD) { 2041 assert(IFD->hasDesignatedInitializers()); 2042 const ObjCInterfaceDecl *SuperD = IFD->getSuperClass(); 2043 if (!SuperD) 2044 return; 2045 2046 SelectorSet InitSelSet; 2047 for (const auto *I : ImplD->instance_methods()) 2048 if (I->getMethodFamily() == OMF_init) 2049 InitSelSet.insert(I->getSelector()); 2050 2051 SmallVector<const ObjCMethodDecl *, 8> DesignatedInits; 2052 SuperD->getDesignatedInitializers(DesignatedInits); 2053 for (SmallVector<const ObjCMethodDecl *, 8>::iterator 2054 I = DesignatedInits.begin(), E = DesignatedInits.end(); I != E; ++I) { 2055 const ObjCMethodDecl *MD = *I; 2056 if (!InitSelSet.count(MD->getSelector())) { 2057 bool Ignore = false; 2058 if (auto *IMD = IFD->getInstanceMethod(MD->getSelector())) { 2059 Ignore = IMD->isUnavailable(); 2060 } 2061 if (!Ignore) { 2062 Diag(ImplD->getLocation(), 2063 diag::warn_objc_implementation_missing_designated_init_override) 2064 << MD->getSelector(); 2065 Diag(MD->getLocation(), diag::note_objc_designated_init_marked_here); 2066 } 2067 } 2068 } 2069 } 2070 2071 /// AddPropertyAttrs - Propagates attributes from a property to the 2072 /// implicitly-declared getter or setter for that property. 2073 static void AddPropertyAttrs(Sema &S, ObjCMethodDecl *PropertyMethod, 2074 ObjCPropertyDecl *Property) { 2075 // Should we just clone all attributes over? 2076 for (const auto *A : Property->attrs()) { 2077 if (isa<DeprecatedAttr>(A) || 2078 isa<UnavailableAttr>(A) || 2079 isa<AvailabilityAttr>(A)) 2080 PropertyMethod->addAttr(A->clone(S.Context)); 2081 } 2082 } 2083 2084 /// ProcessPropertyDecl - Make sure that any user-defined setter/getter methods 2085 /// have the property type and issue diagnostics if they don't. 2086 /// Also synthesize a getter/setter method if none exist (and update the 2087 /// appropriate lookup tables. 2088 void Sema::ProcessPropertyDecl(ObjCPropertyDecl *property) { 2089 ObjCMethodDecl *GetterMethod, *SetterMethod; 2090 ObjCContainerDecl *CD = cast<ObjCContainerDecl>(property->getDeclContext()); 2091 if (CD->isInvalidDecl()) 2092 return; 2093 2094 GetterMethod = CD->getInstanceMethod(property->getGetterName()); 2095 // if setter or getter is not found in class extension, it might be 2096 // in the primary class. 2097 if (!GetterMethod) 2098 if (const ObjCCategoryDecl *CatDecl = dyn_cast<ObjCCategoryDecl>(CD)) 2099 if (CatDecl->IsClassExtension()) 2100 GetterMethod = CatDecl->getClassInterface()-> 2101 getInstanceMethod(property->getGetterName()); 2102 2103 SetterMethod = CD->getInstanceMethod(property->getSetterName()); 2104 if (!SetterMethod) 2105 if (const ObjCCategoryDecl *CatDecl = dyn_cast<ObjCCategoryDecl>(CD)) 2106 if (CatDecl->IsClassExtension()) 2107 SetterMethod = CatDecl->getClassInterface()-> 2108 getInstanceMethod(property->getSetterName()); 2109 DiagnosePropertyAccessorMismatch(property, GetterMethod, 2110 property->getLocation()); 2111 2112 if (SetterMethod) { 2113 ObjCPropertyDecl::PropertyAttributeKind CAttr = 2114 property->getPropertyAttributes(); 2115 if ((!(CAttr & ObjCPropertyDecl::OBJC_PR_readonly)) && 2116 Context.getCanonicalType(SetterMethod->getReturnType()) != 2117 Context.VoidTy) 2118 Diag(SetterMethod->getLocation(), diag::err_setter_type_void); 2119 if (SetterMethod->param_size() != 1 || 2120 !Context.hasSameUnqualifiedType( 2121 (*SetterMethod->param_begin())->getType().getNonReferenceType(), 2122 property->getType().getNonReferenceType())) { 2123 Diag(property->getLocation(), 2124 diag::warn_accessor_property_type_mismatch) 2125 << property->getDeclName() 2126 << SetterMethod->getSelector(); 2127 Diag(SetterMethod->getLocation(), diag::note_declared_at); 2128 } 2129 } 2130 2131 // Synthesize getter/setter methods if none exist. 2132 // Find the default getter and if one not found, add one. 2133 // FIXME: The synthesized property we set here is misleading. We almost always 2134 // synthesize these methods unless the user explicitly provided prototypes 2135 // (which is odd, but allowed). Sema should be typechecking that the 2136 // declarations jive in that situation (which it is not currently). 2137 if (!GetterMethod) { 2138 // No instance method of same name as property getter name was found. 2139 // Declare a getter method and add it to the list of methods 2140 // for this class. 2141 SourceLocation Loc = property->getLocation(); 2142 2143 // If the property is null_resettable, the getter returns nonnull. 2144 QualType resultTy = property->getType(); 2145 if (property->getPropertyAttributes() & 2146 ObjCPropertyDecl::OBJC_PR_null_resettable) { 2147 QualType modifiedTy = resultTy; 2148 if (auto nullability = AttributedType::stripOuterNullability(modifiedTy)) { 2149 if (*nullability == NullabilityKind::Unspecified) 2150 resultTy = Context.getAttributedType(AttributedType::attr_nonnull, 2151 modifiedTy, modifiedTy); 2152 } 2153 } 2154 2155 GetterMethod = ObjCMethodDecl::Create(Context, Loc, Loc, 2156 property->getGetterName(), 2157 resultTy, nullptr, CD, 2158 /*isInstance=*/true, /*isVariadic=*/false, 2159 /*isPropertyAccessor=*/true, 2160 /*isImplicitlyDeclared=*/true, /*isDefined=*/false, 2161 (property->getPropertyImplementation() == 2162 ObjCPropertyDecl::Optional) ? 2163 ObjCMethodDecl::Optional : 2164 ObjCMethodDecl::Required); 2165 CD->addDecl(GetterMethod); 2166 2167 AddPropertyAttrs(*this, GetterMethod, property); 2168 2169 if (property->hasAttr<NSReturnsNotRetainedAttr>()) 2170 GetterMethod->addAttr(NSReturnsNotRetainedAttr::CreateImplicit(Context, 2171 Loc)); 2172 2173 if (property->hasAttr<ObjCReturnsInnerPointerAttr>()) 2174 GetterMethod->addAttr( 2175 ObjCReturnsInnerPointerAttr::CreateImplicit(Context, Loc)); 2176 2177 if (const SectionAttr *SA = property->getAttr<SectionAttr>()) 2178 GetterMethod->addAttr( 2179 SectionAttr::CreateImplicit(Context, SectionAttr::GNU_section, 2180 SA->getName(), Loc)); 2181 2182 if (getLangOpts().ObjCAutoRefCount) 2183 CheckARCMethodDecl(GetterMethod); 2184 } else 2185 // A user declared getter will be synthesize when @synthesize of 2186 // the property with the same name is seen in the @implementation 2187 GetterMethod->setPropertyAccessor(true); 2188 property->setGetterMethodDecl(GetterMethod); 2189 2190 // Skip setter if property is read-only. 2191 if (!property->isReadOnly()) { 2192 // Find the default setter and if one not found, add one. 2193 if (!SetterMethod) { 2194 // No instance method of same name as property setter name was found. 2195 // Declare a setter method and add it to the list of methods 2196 // for this class. 2197 SourceLocation Loc = property->getLocation(); 2198 2199 SetterMethod = 2200 ObjCMethodDecl::Create(Context, Loc, Loc, 2201 property->getSetterName(), Context.VoidTy, 2202 nullptr, CD, /*isInstance=*/true, 2203 /*isVariadic=*/false, 2204 /*isPropertyAccessor=*/true, 2205 /*isImplicitlyDeclared=*/true, 2206 /*isDefined=*/false, 2207 (property->getPropertyImplementation() == 2208 ObjCPropertyDecl::Optional) ? 2209 ObjCMethodDecl::Optional : 2210 ObjCMethodDecl::Required); 2211 2212 // If the property is null_resettable, the setter accepts a 2213 // nullable value. 2214 QualType paramTy = property->getType().getUnqualifiedType(); 2215 if (property->getPropertyAttributes() & 2216 ObjCPropertyDecl::OBJC_PR_null_resettable) { 2217 QualType modifiedTy = paramTy; 2218 if (auto nullability = AttributedType::stripOuterNullability(modifiedTy)){ 2219 if (*nullability == NullabilityKind::Unspecified) 2220 paramTy = Context.getAttributedType(AttributedType::attr_nullable, 2221 modifiedTy, modifiedTy); 2222 } 2223 } 2224 2225 // Invent the arguments for the setter. We don't bother making a 2226 // nice name for the argument. 2227 ParmVarDecl *Argument = ParmVarDecl::Create(Context, SetterMethod, 2228 Loc, Loc, 2229 property->getIdentifier(), 2230 paramTy, 2231 /*TInfo=*/nullptr, 2232 SC_None, 2233 nullptr); 2234 SetterMethod->setMethodParams(Context, Argument, None); 2235 2236 AddPropertyAttrs(*this, SetterMethod, property); 2237 2238 CD->addDecl(SetterMethod); 2239 if (const SectionAttr *SA = property->getAttr<SectionAttr>()) 2240 SetterMethod->addAttr( 2241 SectionAttr::CreateImplicit(Context, SectionAttr::GNU_section, 2242 SA->getName(), Loc)); 2243 // It's possible for the user to have set a very odd custom 2244 // setter selector that causes it to have a method family. 2245 if (getLangOpts().ObjCAutoRefCount) 2246 CheckARCMethodDecl(SetterMethod); 2247 } else 2248 // A user declared setter will be synthesize when @synthesize of 2249 // the property with the same name is seen in the @implementation 2250 SetterMethod->setPropertyAccessor(true); 2251 property->setSetterMethodDecl(SetterMethod); 2252 } 2253 // Add any synthesized methods to the global pool. This allows us to 2254 // handle the following, which is supported by GCC (and part of the design). 2255 // 2256 // @interface Foo 2257 // @property double bar; 2258 // @end 2259 // 2260 // void thisIsUnfortunate() { 2261 // id foo; 2262 // double bar = [foo bar]; 2263 // } 2264 // 2265 if (GetterMethod) 2266 AddInstanceMethodToGlobalPool(GetterMethod); 2267 if (SetterMethod) 2268 AddInstanceMethodToGlobalPool(SetterMethod); 2269 2270 ObjCInterfaceDecl *CurrentClass = dyn_cast<ObjCInterfaceDecl>(CD); 2271 if (!CurrentClass) { 2272 if (ObjCCategoryDecl *Cat = dyn_cast<ObjCCategoryDecl>(CD)) 2273 CurrentClass = Cat->getClassInterface(); 2274 else if (ObjCImplDecl *Impl = dyn_cast<ObjCImplDecl>(CD)) 2275 CurrentClass = Impl->getClassInterface(); 2276 } 2277 if (GetterMethod) 2278 CheckObjCMethodOverrides(GetterMethod, CurrentClass, Sema::RTC_Unknown); 2279 if (SetterMethod) 2280 CheckObjCMethodOverrides(SetterMethod, CurrentClass, Sema::RTC_Unknown); 2281 } 2282 2283 void Sema::CheckObjCPropertyAttributes(Decl *PDecl, 2284 SourceLocation Loc, 2285 unsigned &Attributes, 2286 bool propertyInPrimaryClass) { 2287 // FIXME: Improve the reported location. 2288 if (!PDecl || PDecl->isInvalidDecl()) 2289 return; 2290 2291 if ((Attributes & ObjCDeclSpec::DQ_PR_readonly) && 2292 (Attributes & ObjCDeclSpec::DQ_PR_readwrite)) 2293 Diag(Loc, diag::err_objc_property_attr_mutually_exclusive) 2294 << "readonly" << "readwrite"; 2295 2296 ObjCPropertyDecl *PropertyDecl = cast<ObjCPropertyDecl>(PDecl); 2297 QualType PropertyTy = PropertyDecl->getType(); 2298 2299 // Check for copy or retain on non-object types. 2300 if ((Attributes & (ObjCDeclSpec::DQ_PR_weak | ObjCDeclSpec::DQ_PR_copy | 2301 ObjCDeclSpec::DQ_PR_retain | ObjCDeclSpec::DQ_PR_strong)) && 2302 !PropertyTy->isObjCRetainableType() && 2303 !PropertyDecl->hasAttr<ObjCNSObjectAttr>()) { 2304 Diag(Loc, diag::err_objc_property_requires_object) 2305 << (Attributes & ObjCDeclSpec::DQ_PR_weak ? "weak" : 2306 Attributes & ObjCDeclSpec::DQ_PR_copy ? "copy" : "retain (or strong)"); 2307 Attributes &= ~(ObjCDeclSpec::DQ_PR_weak | ObjCDeclSpec::DQ_PR_copy | 2308 ObjCDeclSpec::DQ_PR_retain | ObjCDeclSpec::DQ_PR_strong); 2309 PropertyDecl->setInvalidDecl(); 2310 } 2311 2312 // Check for more than one of { assign, copy, retain }. 2313 if (Attributes & ObjCDeclSpec::DQ_PR_assign) { 2314 if (Attributes & ObjCDeclSpec::DQ_PR_copy) { 2315 Diag(Loc, diag::err_objc_property_attr_mutually_exclusive) 2316 << "assign" << "copy"; 2317 Attributes &= ~ObjCDeclSpec::DQ_PR_copy; 2318 } 2319 if (Attributes & ObjCDeclSpec::DQ_PR_retain) { 2320 Diag(Loc, diag::err_objc_property_attr_mutually_exclusive) 2321 << "assign" << "retain"; 2322 Attributes &= ~ObjCDeclSpec::DQ_PR_retain; 2323 } 2324 if (Attributes & ObjCDeclSpec::DQ_PR_strong) { 2325 Diag(Loc, diag::err_objc_property_attr_mutually_exclusive) 2326 << "assign" << "strong"; 2327 Attributes &= ~ObjCDeclSpec::DQ_PR_strong; 2328 } 2329 if (getLangOpts().ObjCAutoRefCount && 2330 (Attributes & ObjCDeclSpec::DQ_PR_weak)) { 2331 Diag(Loc, diag::err_objc_property_attr_mutually_exclusive) 2332 << "assign" << "weak"; 2333 Attributes &= ~ObjCDeclSpec::DQ_PR_weak; 2334 } 2335 if (PropertyDecl->hasAttr<IBOutletCollectionAttr>()) 2336 Diag(Loc, diag::warn_iboutletcollection_property_assign); 2337 } else if (Attributes & ObjCDeclSpec::DQ_PR_unsafe_unretained) { 2338 if (Attributes & ObjCDeclSpec::DQ_PR_copy) { 2339 Diag(Loc, diag::err_objc_property_attr_mutually_exclusive) 2340 << "unsafe_unretained" << "copy"; 2341 Attributes &= ~ObjCDeclSpec::DQ_PR_copy; 2342 } 2343 if (Attributes & ObjCDeclSpec::DQ_PR_retain) { 2344 Diag(Loc, diag::err_objc_property_attr_mutually_exclusive) 2345 << "unsafe_unretained" << "retain"; 2346 Attributes &= ~ObjCDeclSpec::DQ_PR_retain; 2347 } 2348 if (Attributes & ObjCDeclSpec::DQ_PR_strong) { 2349 Diag(Loc, diag::err_objc_property_attr_mutually_exclusive) 2350 << "unsafe_unretained" << "strong"; 2351 Attributes &= ~ObjCDeclSpec::DQ_PR_strong; 2352 } 2353 if (getLangOpts().ObjCAutoRefCount && 2354 (Attributes & ObjCDeclSpec::DQ_PR_weak)) { 2355 Diag(Loc, diag::err_objc_property_attr_mutually_exclusive) 2356 << "unsafe_unretained" << "weak"; 2357 Attributes &= ~ObjCDeclSpec::DQ_PR_weak; 2358 } 2359 } else if (Attributes & ObjCDeclSpec::DQ_PR_copy) { 2360 if (Attributes & ObjCDeclSpec::DQ_PR_retain) { 2361 Diag(Loc, diag::err_objc_property_attr_mutually_exclusive) 2362 << "copy" << "retain"; 2363 Attributes &= ~ObjCDeclSpec::DQ_PR_retain; 2364 } 2365 if (Attributes & ObjCDeclSpec::DQ_PR_strong) { 2366 Diag(Loc, diag::err_objc_property_attr_mutually_exclusive) 2367 << "copy" << "strong"; 2368 Attributes &= ~ObjCDeclSpec::DQ_PR_strong; 2369 } 2370 if (Attributes & ObjCDeclSpec::DQ_PR_weak) { 2371 Diag(Loc, diag::err_objc_property_attr_mutually_exclusive) 2372 << "copy" << "weak"; 2373 Attributes &= ~ObjCDeclSpec::DQ_PR_weak; 2374 } 2375 } 2376 else if ((Attributes & ObjCDeclSpec::DQ_PR_retain) && 2377 (Attributes & ObjCDeclSpec::DQ_PR_weak)) { 2378 Diag(Loc, diag::err_objc_property_attr_mutually_exclusive) 2379 << "retain" << "weak"; 2380 Attributes &= ~ObjCDeclSpec::DQ_PR_retain; 2381 } 2382 else if ((Attributes & ObjCDeclSpec::DQ_PR_strong) && 2383 (Attributes & ObjCDeclSpec::DQ_PR_weak)) { 2384 Diag(Loc, diag::err_objc_property_attr_mutually_exclusive) 2385 << "strong" << "weak"; 2386 Attributes &= ~ObjCDeclSpec::DQ_PR_weak; 2387 } 2388 2389 if (Attributes & ObjCDeclSpec::DQ_PR_weak) { 2390 // 'weak' and 'nonnull' are mutually exclusive. 2391 if (auto nullability = PropertyTy->getNullability(Context)) { 2392 if (*nullability == NullabilityKind::NonNull) 2393 Diag(Loc, diag::err_objc_property_attr_mutually_exclusive) 2394 << "nonnull" << "weak"; 2395 } 2396 } 2397 2398 if ((Attributes & ObjCDeclSpec::DQ_PR_atomic) && 2399 (Attributes & ObjCDeclSpec::DQ_PR_nonatomic)) { 2400 Diag(Loc, diag::err_objc_property_attr_mutually_exclusive) 2401 << "atomic" << "nonatomic"; 2402 Attributes &= ~ObjCDeclSpec::DQ_PR_atomic; 2403 } 2404 2405 // Warn if user supplied no assignment attribute, property is 2406 // readwrite, and this is an object type. 2407 if (!getOwnershipRule(Attributes) && PropertyTy->isObjCRetainableType()) { 2408 if (Attributes & ObjCDeclSpec::DQ_PR_readonly) { 2409 // do nothing 2410 } else if (getLangOpts().ObjCAutoRefCount) { 2411 // With arc, @property definitions should default to strong when 2412 // not specified. 2413 PropertyDecl->setPropertyAttributes(ObjCPropertyDecl::OBJC_PR_strong); 2414 } else if (PropertyTy->isObjCObjectPointerType()) { 2415 bool isAnyClassTy = 2416 (PropertyTy->isObjCClassType() || 2417 PropertyTy->isObjCQualifiedClassType()); 2418 // In non-gc, non-arc mode, 'Class' is treated as a 'void *' no need to 2419 // issue any warning. 2420 if (isAnyClassTy && getLangOpts().getGC() == LangOptions::NonGC) 2421 ; 2422 else if (propertyInPrimaryClass) { 2423 // Don't issue warning on property with no life time in class 2424 // extension as it is inherited from property in primary class. 2425 // Skip this warning in gc-only mode. 2426 if (getLangOpts().getGC() != LangOptions::GCOnly) 2427 Diag(Loc, diag::warn_objc_property_no_assignment_attribute); 2428 2429 // If non-gc code warn that this is likely inappropriate. 2430 if (getLangOpts().getGC() == LangOptions::NonGC) 2431 Diag(Loc, diag::warn_objc_property_default_assign_on_object); 2432 } 2433 } 2434 2435 // FIXME: Implement warning dependent on NSCopying being 2436 // implemented. See also: 2437 // <rdar://5168496&4855821&5607453&5096644&4947311&5698469&4947014&5168496> 2438 // (please trim this list while you are at it). 2439 } 2440 2441 if (!(Attributes & ObjCDeclSpec::DQ_PR_copy) 2442 &&!(Attributes & ObjCDeclSpec::DQ_PR_readonly) 2443 && getLangOpts().getGC() == LangOptions::GCOnly 2444 && PropertyTy->isBlockPointerType()) 2445 Diag(Loc, diag::warn_objc_property_copy_missing_on_block); 2446 else if ((Attributes & ObjCDeclSpec::DQ_PR_retain) && 2447 !(Attributes & ObjCDeclSpec::DQ_PR_readonly) && 2448 !(Attributes & ObjCDeclSpec::DQ_PR_strong) && 2449 PropertyTy->isBlockPointerType()) 2450 Diag(Loc, diag::warn_objc_property_retain_of_block); 2451 2452 if ((Attributes & ObjCDeclSpec::DQ_PR_readonly) && 2453 (Attributes & ObjCDeclSpec::DQ_PR_setter)) 2454 Diag(Loc, diag::warn_objc_readonly_property_has_setter); 2455 2456 } 2457