17a51313dSChris Lattner //===--- CGExprAgg.cpp - Emit LLVM Code from Aggregate Expressions --------===// 27a51313dSChris Lattner // 37a51313dSChris Lattner // The LLVM Compiler Infrastructure 47a51313dSChris Lattner // 57a51313dSChris Lattner // This file is distributed under the University of Illinois Open Source 67a51313dSChris Lattner // License. See LICENSE.TXT for details. 77a51313dSChris Lattner // 87a51313dSChris Lattner //===----------------------------------------------------------------------===// 97a51313dSChris Lattner // 107a51313dSChris Lattner // This contains code to emit Aggregate Expr nodes as LLVM code. 117a51313dSChris Lattner // 127a51313dSChris Lattner //===----------------------------------------------------------------------===// 137a51313dSChris Lattner 147a51313dSChris Lattner #include "CodeGenFunction.h" 155f21d2f6SFariborz Jahanian #include "CGObjCRuntime.h" 163a02247dSChandler Carruth #include "CodeGenModule.h" 17ad319a73SDaniel Dunbar #include "clang/AST/ASTContext.h" 18b7f8f594SAnders Carlsson #include "clang/AST/DeclCXX.h" 19c83ed824SSebastian Redl #include "clang/AST/DeclTemplate.h" 20ad319a73SDaniel Dunbar #include "clang/AST/StmtVisitor.h" 21ffd5551bSChandler Carruth #include "llvm/IR/Constants.h" 22ffd5551bSChandler Carruth #include "llvm/IR/Function.h" 23ffd5551bSChandler Carruth #include "llvm/IR/GlobalVariable.h" 24ffd5551bSChandler Carruth #include "llvm/IR/Intrinsics.h" 257a51313dSChris Lattner using namespace clang; 267a51313dSChris Lattner using namespace CodeGen; 277a51313dSChris Lattner 287a51313dSChris Lattner //===----------------------------------------------------------------------===// 297a51313dSChris Lattner // Aggregate Expression Emitter 307a51313dSChris Lattner //===----------------------------------------------------------------------===// 317a51313dSChris Lattner 327a51313dSChris Lattner namespace { 33337e3a5fSBenjamin Kramer class AggExprEmitter : public StmtVisitor<AggExprEmitter> { 347a51313dSChris Lattner CodeGenFunction &CGF; 35cb463859SDaniel Dunbar CGBuilderTy &Builder; 367a626f63SJohn McCall AggValueSlot Dest; 3778a15113SJohn McCall 38a5efa738SJohn McCall /// We want to use 'dest' as the return slot except under two 39a5efa738SJohn McCall /// conditions: 40a5efa738SJohn McCall /// - The destination slot requires garbage collection, so we 41a5efa738SJohn McCall /// need to use the GC API. 42a5efa738SJohn McCall /// - The destination slot is potentially aliased. 43a5efa738SJohn McCall bool shouldUseDestForReturnSlot() const { 44a5efa738SJohn McCall return !(Dest.requiresGCollection() || Dest.isPotentiallyAliased()); 45a5efa738SJohn McCall } 46a5efa738SJohn McCall 4778a15113SJohn McCall ReturnValueSlot getReturnValueSlot() const { 48a5efa738SJohn McCall if (!shouldUseDestForReturnSlot()) 49a5efa738SJohn McCall return ReturnValueSlot(); 50cc04e9f6SJohn McCall 517a626f63SJohn McCall return ReturnValueSlot(Dest.getAddr(), Dest.isVolatile()); 527a626f63SJohn McCall } 537a626f63SJohn McCall 547a626f63SJohn McCall AggValueSlot EnsureSlot(QualType T) { 557a626f63SJohn McCall if (!Dest.isIgnored()) return Dest; 567a626f63SJohn McCall return CGF.CreateAggTemp(T, "agg.tmp.ensured"); 5778a15113SJohn McCall } 584e8ca4faSJohn McCall void EnsureDest(QualType T) { 594e8ca4faSJohn McCall if (!Dest.isIgnored()) return; 604e8ca4faSJohn McCall Dest = CGF.CreateAggTemp(T, "agg.tmp.ensured"); 614e8ca4faSJohn McCall } 62cc04e9f6SJohn McCall 637a51313dSChris Lattner public: 644e8ca4faSJohn McCall AggExprEmitter(CodeGenFunction &cgf, AggValueSlot Dest) 654e8ca4faSJohn McCall : CGF(cgf), Builder(CGF.Builder), Dest(Dest) { 667a51313dSChris Lattner } 677a51313dSChris Lattner 687a51313dSChris Lattner //===--------------------------------------------------------------------===// 697a51313dSChris Lattner // Utilities 707a51313dSChris Lattner //===--------------------------------------------------------------------===// 717a51313dSChris Lattner 727a51313dSChris Lattner /// EmitAggLoadOfLValue - Given an expression with aggregate type that 737a51313dSChris Lattner /// represents a value lvalue, this method emits the address of the lvalue, 747a51313dSChris Lattner /// then loads the result into DestPtr. 757a51313dSChris Lattner void EmitAggLoadOfLValue(const Expr *E); 767a51313dSChris Lattner 77ca9fc09cSMike Stump /// EmitFinalDestCopy - Perform the final copy to DestPtr, if desired. 784e8ca4faSJohn McCall void EmitFinalDestCopy(QualType type, const LValue &src); 794e8ca4faSJohn McCall void EmitFinalDestCopy(QualType type, RValue src, 804e8ca4faSJohn McCall CharUnits srcAlignment = CharUnits::Zero()); 814e8ca4faSJohn McCall void EmitCopy(QualType type, const AggValueSlot &dest, 824e8ca4faSJohn McCall const AggValueSlot &src); 83ca9fc09cSMike Stump 84a5efa738SJohn McCall void EmitMoveFromReturnSlot(const Expr *E, RValue Src); 85cc04e9f6SJohn McCall 86c83ed824SSebastian Redl void EmitArrayInit(llvm::Value *DestPtr, llvm::ArrayType *AType, 87c83ed824SSebastian Redl QualType elementType, InitListExpr *E); 88c83ed824SSebastian Redl 898d6fc958SJohn McCall AggValueSlot::NeedsGCBarriers_t needsGC(QualType T) { 90bbafb8a7SDavid Blaikie if (CGF.getLangOpts().getGC() && TypeRequiresGCollection(T)) 918d6fc958SJohn McCall return AggValueSlot::NeedsGCBarriers; 928d6fc958SJohn McCall return AggValueSlot::DoesNotNeedGCBarriers; 938d6fc958SJohn McCall } 948d6fc958SJohn McCall 95cc04e9f6SJohn McCall bool TypeRequiresGCollection(QualType T); 96cc04e9f6SJohn McCall 977a51313dSChris Lattner //===--------------------------------------------------------------------===// 987a51313dSChris Lattner // Visitor Methods 997a51313dSChris Lattner //===--------------------------------------------------------------------===// 1007a51313dSChris Lattner 1017a51313dSChris Lattner void VisitStmt(Stmt *S) { 102a7c8cf62SDaniel Dunbar CGF.ErrorUnsupported(S, "aggregate expression"); 1037a51313dSChris Lattner } 1047a51313dSChris Lattner void VisitParenExpr(ParenExpr *PE) { Visit(PE->getSubExpr()); } 10591147596SPeter Collingbourne void VisitGenericSelectionExpr(GenericSelectionExpr *GE) { 10691147596SPeter Collingbourne Visit(GE->getResultExpr()); 10791147596SPeter Collingbourne } 1083f66b84cSEli Friedman void VisitUnaryExtension(UnaryOperator *E) { Visit(E->getSubExpr()); } 1097c454bb8SJohn McCall void VisitSubstNonTypeTemplateParmExpr(SubstNonTypeTemplateParmExpr *E) { 1107c454bb8SJohn McCall return Visit(E->getReplacement()); 1117c454bb8SJohn McCall } 1127a51313dSChris Lattner 1137a51313dSChris Lattner // l-values. 114113bee05SJohn McCall void VisitDeclRefExpr(DeclRefExpr *E) { 11571335059SJohn McCall // For aggregates, we should always be able to emit the variable 11671335059SJohn McCall // as an l-value unless it's a reference. This is due to the fact 11771335059SJohn McCall // that we can't actually ever see a normal l2r conversion on an 11871335059SJohn McCall // aggregate in C++, and in C there's no language standard 11971335059SJohn McCall // actively preventing us from listing variables in the captures 12071335059SJohn McCall // list of a block. 121113bee05SJohn McCall if (E->getDecl()->getType()->isReferenceType()) { 12271335059SJohn McCall if (CodeGenFunction::ConstantEmission result 123113bee05SJohn McCall = CGF.tryEmitAsConstant(E)) { 1244e8ca4faSJohn McCall EmitFinalDestCopy(E->getType(), result.getReferenceLValue(CGF, E)); 12571335059SJohn McCall return; 12671335059SJohn McCall } 12771335059SJohn McCall } 12871335059SJohn McCall 129113bee05SJohn McCall EmitAggLoadOfLValue(E); 13071335059SJohn McCall } 13171335059SJohn McCall 1327a51313dSChris Lattner void VisitMemberExpr(MemberExpr *ME) { EmitAggLoadOfLValue(ME); } 1337a51313dSChris Lattner void VisitUnaryDeref(UnaryOperator *E) { EmitAggLoadOfLValue(E); } 134d443c0a0SDaniel Dunbar void VisitStringLiteral(StringLiteral *E) { EmitAggLoadOfLValue(E); } 1359b71f0cfSDouglas Gregor void VisitCompoundLiteralExpr(CompoundLiteralExpr *E); 1367a51313dSChris Lattner void VisitArraySubscriptExpr(ArraySubscriptExpr *E) { 1377a51313dSChris Lattner EmitAggLoadOfLValue(E); 1387a51313dSChris Lattner } 1392f343dd5SChris Lattner void VisitPredefinedExpr(const PredefinedExpr *E) { 1402f343dd5SChris Lattner EmitAggLoadOfLValue(E); 1412f343dd5SChris Lattner } 142bc7d67ceSMike Stump 1437a51313dSChris Lattner // Operators. 144ec143777SAnders Carlsson void VisitCastExpr(CastExpr *E); 1457a51313dSChris Lattner void VisitCallExpr(const CallExpr *E); 1467a51313dSChris Lattner void VisitStmtExpr(const StmtExpr *E); 1477a51313dSChris Lattner void VisitBinaryOperator(const BinaryOperator *BO); 148ffba662dSFariborz Jahanian void VisitPointerToDataMemberBinaryOperator(const BinaryOperator *BO); 1497a51313dSChris Lattner void VisitBinAssign(const BinaryOperator *E); 1504b0e2a30SEli Friedman void VisitBinComma(const BinaryOperator *E); 1517a51313dSChris Lattner 152b1d329daSChris Lattner void VisitObjCMessageExpr(ObjCMessageExpr *E); 153c8317a44SDaniel Dunbar void VisitObjCIvarRefExpr(ObjCIvarRefExpr *E) { 154c8317a44SDaniel Dunbar EmitAggLoadOfLValue(E); 155c8317a44SDaniel Dunbar } 1567a51313dSChris Lattner 157c07a0c7eSJohn McCall void VisitAbstractConditionalOperator(const AbstractConditionalOperator *CO); 1585b2095ceSAnders Carlsson void VisitChooseExpr(const ChooseExpr *CE); 1597a51313dSChris Lattner void VisitInitListExpr(InitListExpr *E); 16018ada985SAnders Carlsson void VisitImplicitValueInitExpr(ImplicitValueInitExpr *E); 161aa9c7aedSChris Lattner void VisitCXXDefaultArgExpr(CXXDefaultArgExpr *DAE) { 162aa9c7aedSChris Lattner Visit(DAE->getExpr()); 163aa9c7aedSChris Lattner } 164852c9db7SRichard Smith void VisitCXXDefaultInitExpr(CXXDefaultInitExpr *DIE) { 165852c9db7SRichard Smith CodeGenFunction::CXXDefaultInitExprScope Scope(CGF); 166852c9db7SRichard Smith Visit(DIE->getExpr()); 167852c9db7SRichard Smith } 1683be22e27SAnders Carlsson void VisitCXXBindTemporaryExpr(CXXBindTemporaryExpr *E); 1691619a504SAnders Carlsson void VisitCXXConstructExpr(const CXXConstructExpr *E); 170c370a7eeSEli Friedman void VisitLambdaExpr(LambdaExpr *E); 171cc1b96d3SRichard Smith void VisitCXXStdInitializerListExpr(CXXStdInitializerListExpr *E); 1725d413781SJohn McCall void VisitExprWithCleanups(ExprWithCleanups *E); 173747eb784SDouglas Gregor void VisitCXXScalarValueInitExpr(CXXScalarValueInitExpr *E); 1745bbbb137SMike Stump void VisitCXXTypeidExpr(CXXTypeidExpr *E) { EmitAggLoadOfLValue(E); } 175fe31481fSDouglas Gregor void VisitMaterializeTemporaryExpr(MaterializeTemporaryExpr *E); 1761bf5846aSJohn McCall void VisitOpaqueValueExpr(OpaqueValueExpr *E); 1771bf5846aSJohn McCall 178fe96e0b6SJohn McCall void VisitPseudoObjectExpr(PseudoObjectExpr *E) { 179fe96e0b6SJohn McCall if (E->isGLValue()) { 180fe96e0b6SJohn McCall LValue LV = CGF.EmitPseudoObjectLValue(E); 1814e8ca4faSJohn McCall return EmitFinalDestCopy(E->getType(), LV); 182fe96e0b6SJohn McCall } 183fe96e0b6SJohn McCall 184fe96e0b6SJohn McCall CGF.EmitPseudoObjectRValue(E, EnsureSlot(E->getType())); 185fe96e0b6SJohn McCall } 186fe96e0b6SJohn McCall 18721911e89SEli Friedman void VisitVAArgExpr(VAArgExpr *E); 188579a05d7SChris Lattner 189615ed1a3SChad Rosier void EmitInitializationToLValue(Expr *E, LValue Address); 1901553b190SJohn McCall void EmitNullInitializationToLValue(LValue Address); 1917a51313dSChris Lattner // case Expr::ChooseExprClass: 192f16b8c30SMike Stump void VisitCXXThrowExpr(const CXXThrowExpr *E) { CGF.EmitCXXThrowExpr(E); } 193df14b3a8SEli Friedman void VisitAtomicExpr(AtomicExpr *E) { 194df14b3a8SEli Friedman CGF.EmitAtomicExpr(E, EnsureSlot(E->getType()).getAddr()); 195df14b3a8SEli Friedman } 1967a51313dSChris Lattner }; 1977a51313dSChris Lattner } // end anonymous namespace. 1987a51313dSChris Lattner 1997a51313dSChris Lattner //===----------------------------------------------------------------------===// 2007a51313dSChris Lattner // Utilities 2017a51313dSChris Lattner //===----------------------------------------------------------------------===// 2027a51313dSChris Lattner 2037a51313dSChris Lattner /// EmitAggLoadOfLValue - Given an expression with aggregate type that 2047a51313dSChris Lattner /// represents a value lvalue, this method emits the address of the lvalue, 2057a51313dSChris Lattner /// then loads the result into DestPtr. 2067a51313dSChris Lattner void AggExprEmitter::EmitAggLoadOfLValue(const Expr *E) { 2077a51313dSChris Lattner LValue LV = CGF.EmitLValue(E); 208a8ec7eb9SJohn McCall 209a8ec7eb9SJohn McCall // If the type of the l-value is atomic, then do an atomic load. 210a8ec7eb9SJohn McCall if (LV.getType()->isAtomicType()) { 211*be4504dfSEli Friedman CGF.EmitAtomicLoad(LV, Dest); 212a8ec7eb9SJohn McCall return; 213a8ec7eb9SJohn McCall } 214a8ec7eb9SJohn McCall 2154e8ca4faSJohn McCall EmitFinalDestCopy(E->getType(), LV); 216ca9fc09cSMike Stump } 217ca9fc09cSMike Stump 218cc04e9f6SJohn McCall /// \brief True if the given aggregate type requires special GC API calls. 219cc04e9f6SJohn McCall bool AggExprEmitter::TypeRequiresGCollection(QualType T) { 220cc04e9f6SJohn McCall // Only record types have members that might require garbage collection. 221cc04e9f6SJohn McCall const RecordType *RecordTy = T->getAs<RecordType>(); 222cc04e9f6SJohn McCall if (!RecordTy) return false; 223cc04e9f6SJohn McCall 224cc04e9f6SJohn McCall // Don't mess with non-trivial C++ types. 225cc04e9f6SJohn McCall RecordDecl *Record = RecordTy->getDecl(); 226cc04e9f6SJohn McCall if (isa<CXXRecordDecl>(Record) && 22716488472SRichard Smith (cast<CXXRecordDecl>(Record)->hasNonTrivialCopyConstructor() || 228cc04e9f6SJohn McCall !cast<CXXRecordDecl>(Record)->hasTrivialDestructor())) 229cc04e9f6SJohn McCall return false; 230cc04e9f6SJohn McCall 231cc04e9f6SJohn McCall // Check whether the type has an object member. 232cc04e9f6SJohn McCall return Record->hasObjectMember(); 233cc04e9f6SJohn McCall } 234cc04e9f6SJohn McCall 235a5efa738SJohn McCall /// \brief Perform the final move to DestPtr if for some reason 236a5efa738SJohn McCall /// getReturnValueSlot() didn't use it directly. 237cc04e9f6SJohn McCall /// 238cc04e9f6SJohn McCall /// The idea is that you do something like this: 239cc04e9f6SJohn McCall /// RValue Result = EmitSomething(..., getReturnValueSlot()); 240a5efa738SJohn McCall /// EmitMoveFromReturnSlot(E, Result); 241a5efa738SJohn McCall /// 242a5efa738SJohn McCall /// If nothing interferes, this will cause the result to be emitted 243a5efa738SJohn McCall /// directly into the return value slot. Otherwise, a final move 244a5efa738SJohn McCall /// will be performed. 2454e8ca4faSJohn McCall void AggExprEmitter::EmitMoveFromReturnSlot(const Expr *E, RValue src) { 246a5efa738SJohn McCall if (shouldUseDestForReturnSlot()) { 247a5efa738SJohn McCall // Logically, Dest.getAddr() should equal Src.getAggregateAddr(). 248a5efa738SJohn McCall // The possibility of undef rvalues complicates that a lot, 249a5efa738SJohn McCall // though, so we can't really assert. 250a5efa738SJohn McCall return; 251021510e9SFariborz Jahanian } 252a5efa738SJohn McCall 2534e8ca4faSJohn McCall // Otherwise, copy from there to the destination. 2544e8ca4faSJohn McCall assert(Dest.getAddr() != src.getAggregateAddr()); 2554e8ca4faSJohn McCall std::pair<CharUnits, CharUnits> typeInfo = 2561e303eefSChad Rosier CGF.getContext().getTypeInfoInChars(E->getType()); 2574e8ca4faSJohn McCall EmitFinalDestCopy(E->getType(), src, typeInfo.second); 258cc04e9f6SJohn McCall } 259cc04e9f6SJohn McCall 260ca9fc09cSMike Stump /// EmitFinalDestCopy - Perform the final copy to DestPtr, if desired. 2614e8ca4faSJohn McCall void AggExprEmitter::EmitFinalDestCopy(QualType type, RValue src, 2624e8ca4faSJohn McCall CharUnits srcAlign) { 2634e8ca4faSJohn McCall assert(src.isAggregate() && "value must be aggregate value!"); 2644e8ca4faSJohn McCall LValue srcLV = CGF.MakeAddrLValue(src.getAggregateAddr(), type, srcAlign); 2654e8ca4faSJohn McCall EmitFinalDestCopy(type, srcLV); 2664e8ca4faSJohn McCall } 2677a51313dSChris Lattner 2684e8ca4faSJohn McCall /// EmitFinalDestCopy - Perform the final copy to DestPtr, if desired. 2694e8ca4faSJohn McCall void AggExprEmitter::EmitFinalDestCopy(QualType type, const LValue &src) { 2707a626f63SJohn McCall // If Dest is ignored, then we're evaluating an aggregate expression 2714e8ca4faSJohn McCall // in a context that doesn't care about the result. Note that loads 2724e8ca4faSJohn McCall // from volatile l-values force the existence of a non-ignored 2734e8ca4faSJohn McCall // destination. 2744e8ca4faSJohn McCall if (Dest.isIgnored()) 275ec3cbfe8SMike Stump return; 276c123623dSFariborz Jahanian 2774e8ca4faSJohn McCall AggValueSlot srcAgg = 2784e8ca4faSJohn McCall AggValueSlot::forLValue(src, AggValueSlot::IsDestructed, 2794e8ca4faSJohn McCall needsGC(type), AggValueSlot::IsAliased); 2804e8ca4faSJohn McCall EmitCopy(type, Dest, srcAgg); 281332ec2ceSMike Stump } 2827a51313dSChris Lattner 2834e8ca4faSJohn McCall /// Perform a copy from the source into the destination. 2844e8ca4faSJohn McCall /// 2854e8ca4faSJohn McCall /// \param type - the type of the aggregate being copied; qualifiers are 2864e8ca4faSJohn McCall /// ignored 2874e8ca4faSJohn McCall void AggExprEmitter::EmitCopy(QualType type, const AggValueSlot &dest, 2884e8ca4faSJohn McCall const AggValueSlot &src) { 2894e8ca4faSJohn McCall if (dest.requiresGCollection()) { 2904e8ca4faSJohn McCall CharUnits sz = CGF.getContext().getTypeSizeInChars(type); 2914e8ca4faSJohn McCall llvm::Value *size = llvm::ConstantInt::get(CGF.SizeTy, sz.getQuantity()); 292879d7266SFariborz Jahanian CGF.CGM.getObjCRuntime().EmitGCMemmoveCollectable(CGF, 2934e8ca4faSJohn McCall dest.getAddr(), 2944e8ca4faSJohn McCall src.getAddr(), 2954e8ca4faSJohn McCall size); 296879d7266SFariborz Jahanian return; 297879d7266SFariborz Jahanian } 2984e8ca4faSJohn McCall 299ca9fc09cSMike Stump // If the result of the assignment is used, copy the LHS there also. 3004e8ca4faSJohn McCall // It's volatile if either side is. Use the minimum alignment of 3014e8ca4faSJohn McCall // the two sides. 3024e8ca4faSJohn McCall CGF.EmitAggregateCopy(dest.getAddr(), src.getAddr(), type, 3034e8ca4faSJohn McCall dest.isVolatile() || src.isVolatile(), 3044e8ca4faSJohn McCall std::min(dest.getAlignment(), src.getAlignment())); 3057a51313dSChris Lattner } 3067a51313dSChris Lattner 307c83ed824SSebastian Redl /// \brief Emit the initializer for a std::initializer_list initialized with a 308c83ed824SSebastian Redl /// real initializer list. 309cc1b96d3SRichard Smith void 310cc1b96d3SRichard Smith AggExprEmitter::VisitCXXStdInitializerListExpr(CXXStdInitializerListExpr *E) { 311cc1b96d3SRichard Smith // Emit an array containing the elements. The array is externally destructed 312cc1b96d3SRichard Smith // if the std::initializer_list object is. 313cc1b96d3SRichard Smith ASTContext &Ctx = CGF.getContext(); 314cc1b96d3SRichard Smith LValue Array = CGF.EmitLValue(E->getSubExpr()); 315cc1b96d3SRichard Smith assert(Array.isSimple() && "initializer_list array not a simple lvalue"); 316cc1b96d3SRichard Smith llvm::Value *ArrayPtr = Array.getAddress(); 317c83ed824SSebastian Redl 318cc1b96d3SRichard Smith const ConstantArrayType *ArrayType = 319cc1b96d3SRichard Smith Ctx.getAsConstantArrayType(E->getSubExpr()->getType()); 320cc1b96d3SRichard Smith assert(ArrayType && "std::initializer_list constructed from non-array"); 321c83ed824SSebastian Redl 322cc1b96d3SRichard Smith // FIXME: Perform the checks on the field types in SemaInit. 323cc1b96d3SRichard Smith RecordDecl *Record = E->getType()->castAs<RecordType>()->getDecl(); 324cc1b96d3SRichard Smith RecordDecl::field_iterator Field = Record->field_begin(); 325cc1b96d3SRichard Smith if (Field == Record->field_end()) { 326cc1b96d3SRichard Smith CGF.ErrorUnsupported(E, "weird std::initializer_list"); 327f2e0a307SSebastian Redl return; 328c83ed824SSebastian Redl } 329c83ed824SSebastian Redl 330c83ed824SSebastian Redl // Start pointer. 331cc1b96d3SRichard Smith if (!Field->getType()->isPointerType() || 332cc1b96d3SRichard Smith !Ctx.hasSameType(Field->getType()->getPointeeType(), 333cc1b96d3SRichard Smith ArrayType->getElementType())) { 334cc1b96d3SRichard Smith CGF.ErrorUnsupported(E, "weird std::initializer_list"); 335f2e0a307SSebastian Redl return; 336c83ed824SSebastian Redl } 337c83ed824SSebastian Redl 338cc1b96d3SRichard Smith AggValueSlot Dest = EnsureSlot(E->getType()); 339cc1b96d3SRichard Smith LValue DestLV = CGF.MakeAddrLValue(Dest.getAddr(), E->getType(), 340cc1b96d3SRichard Smith Dest.getAlignment()); 341cc1b96d3SRichard Smith LValue Start = CGF.EmitLValueForFieldInitialization(DestLV, *Field); 342cc1b96d3SRichard Smith llvm::Value *Zero = llvm::ConstantInt::get(CGF.PtrDiffTy, 0); 343cc1b96d3SRichard Smith llvm::Value *IdxStart[] = { Zero, Zero }; 344cc1b96d3SRichard Smith llvm::Value *ArrayStart = 345cc1b96d3SRichard Smith Builder.CreateInBoundsGEP(ArrayPtr, IdxStart, "arraystart"); 346cc1b96d3SRichard Smith CGF.EmitStoreThroughLValue(RValue::get(ArrayStart), Start); 347cc1b96d3SRichard Smith ++Field; 348cc1b96d3SRichard Smith 349cc1b96d3SRichard Smith if (Field == Record->field_end()) { 350cc1b96d3SRichard Smith CGF.ErrorUnsupported(E, "weird std::initializer_list"); 351f2e0a307SSebastian Redl return; 352c83ed824SSebastian Redl } 353cc1b96d3SRichard Smith 354cc1b96d3SRichard Smith llvm::Value *Size = Builder.getInt(ArrayType->getSize()); 355cc1b96d3SRichard Smith LValue EndOrLength = CGF.EmitLValueForFieldInitialization(DestLV, *Field); 356cc1b96d3SRichard Smith if (Field->getType()->isPointerType() && 357cc1b96d3SRichard Smith Ctx.hasSameType(Field->getType()->getPointeeType(), 358cc1b96d3SRichard Smith ArrayType->getElementType())) { 359c83ed824SSebastian Redl // End pointer. 360cc1b96d3SRichard Smith llvm::Value *IdxEnd[] = { Zero, Size }; 361cc1b96d3SRichard Smith llvm::Value *ArrayEnd = 362cc1b96d3SRichard Smith Builder.CreateInBoundsGEP(ArrayPtr, IdxEnd, "arrayend"); 363cc1b96d3SRichard Smith CGF.EmitStoreThroughLValue(RValue::get(ArrayEnd), EndOrLength); 364cc1b96d3SRichard Smith } else if (Ctx.hasSameType(Field->getType(), Ctx.getSizeType())) { 365c83ed824SSebastian Redl // Length. 366cc1b96d3SRichard Smith CGF.EmitStoreThroughLValue(RValue::get(Size), EndOrLength); 367c83ed824SSebastian Redl } else { 368cc1b96d3SRichard Smith CGF.ErrorUnsupported(E, "weird std::initializer_list"); 369f2e0a307SSebastian Redl return; 370c83ed824SSebastian Redl } 371c83ed824SSebastian Redl } 372c83ed824SSebastian Redl 373c83ed824SSebastian Redl /// \brief Emit initialization of an array from an initializer list. 374c83ed824SSebastian Redl void AggExprEmitter::EmitArrayInit(llvm::Value *DestPtr, llvm::ArrayType *AType, 375c83ed824SSebastian Redl QualType elementType, InitListExpr *E) { 376c83ed824SSebastian Redl uint64_t NumInitElements = E->getNumInits(); 377c83ed824SSebastian Redl 378c83ed824SSebastian Redl uint64_t NumArrayElements = AType->getNumElements(); 379c83ed824SSebastian Redl assert(NumInitElements <= NumArrayElements); 380c83ed824SSebastian Redl 381c83ed824SSebastian Redl // DestPtr is an array*. Construct an elementType* by drilling 382c83ed824SSebastian Redl // down a level. 383c83ed824SSebastian Redl llvm::Value *zero = llvm::ConstantInt::get(CGF.SizeTy, 0); 384c83ed824SSebastian Redl llvm::Value *indices[] = { zero, zero }; 385c83ed824SSebastian Redl llvm::Value *begin = 386c83ed824SSebastian Redl Builder.CreateInBoundsGEP(DestPtr, indices, "arrayinit.begin"); 387c83ed824SSebastian Redl 388c83ed824SSebastian Redl // Exception safety requires us to destroy all the 389c83ed824SSebastian Redl // already-constructed members if an initializer throws. 390c83ed824SSebastian Redl // For that, we'll need an EH cleanup. 391c83ed824SSebastian Redl QualType::DestructionKind dtorKind = elementType.isDestructedType(); 392c83ed824SSebastian Redl llvm::AllocaInst *endOfInit = 0; 393c83ed824SSebastian Redl EHScopeStack::stable_iterator cleanup; 394c83ed824SSebastian Redl llvm::Instruction *cleanupDominator = 0; 395c83ed824SSebastian Redl if (CGF.needsEHCleanup(dtorKind)) { 396c83ed824SSebastian Redl // In principle we could tell the cleanup where we are more 397c83ed824SSebastian Redl // directly, but the control flow can get so varied here that it 398c83ed824SSebastian Redl // would actually be quite complex. Therefore we go through an 399c83ed824SSebastian Redl // alloca. 400c83ed824SSebastian Redl endOfInit = CGF.CreateTempAlloca(begin->getType(), 401c83ed824SSebastian Redl "arrayinit.endOfInit"); 402c83ed824SSebastian Redl cleanupDominator = Builder.CreateStore(begin, endOfInit); 403c83ed824SSebastian Redl CGF.pushIrregularPartialArrayCleanup(begin, endOfInit, elementType, 404c83ed824SSebastian Redl CGF.getDestroyer(dtorKind)); 405c83ed824SSebastian Redl cleanup = CGF.EHStack.stable_begin(); 406c83ed824SSebastian Redl 407c83ed824SSebastian Redl // Otherwise, remember that we didn't need a cleanup. 408c83ed824SSebastian Redl } else { 409c83ed824SSebastian Redl dtorKind = QualType::DK_none; 410c83ed824SSebastian Redl } 411c83ed824SSebastian Redl 412c83ed824SSebastian Redl llvm::Value *one = llvm::ConstantInt::get(CGF.SizeTy, 1); 413c83ed824SSebastian Redl 414c83ed824SSebastian Redl // The 'current element to initialize'. The invariants on this 415c83ed824SSebastian Redl // variable are complicated. Essentially, after each iteration of 416c83ed824SSebastian Redl // the loop, it points to the last initialized element, except 417c83ed824SSebastian Redl // that it points to the beginning of the array before any 418c83ed824SSebastian Redl // elements have been initialized. 419c83ed824SSebastian Redl llvm::Value *element = begin; 420c83ed824SSebastian Redl 421c83ed824SSebastian Redl // Emit the explicit initializers. 422c83ed824SSebastian Redl for (uint64_t i = 0; i != NumInitElements; ++i) { 423c83ed824SSebastian Redl // Advance to the next element. 424c83ed824SSebastian Redl if (i > 0) { 425c83ed824SSebastian Redl element = Builder.CreateInBoundsGEP(element, one, "arrayinit.element"); 426c83ed824SSebastian Redl 427c83ed824SSebastian Redl // Tell the cleanup that it needs to destroy up to this 428c83ed824SSebastian Redl // element. TODO: some of these stores can be trivially 429c83ed824SSebastian Redl // observed to be unnecessary. 430c83ed824SSebastian Redl if (endOfInit) Builder.CreateStore(element, endOfInit); 431c83ed824SSebastian Redl } 432c83ed824SSebastian Redl 433c83ed824SSebastian Redl LValue elementLV = CGF.MakeAddrLValue(element, elementType); 434615ed1a3SChad Rosier EmitInitializationToLValue(E->getInit(i), elementLV); 435c83ed824SSebastian Redl } 436c83ed824SSebastian Redl 437c83ed824SSebastian Redl // Check whether there's a non-trivial array-fill expression. 438c83ed824SSebastian Redl // Note that this will be a CXXConstructExpr even if the element 439c83ed824SSebastian Redl // type is an array (or array of array, etc.) of class type. 440c83ed824SSebastian Redl Expr *filler = E->getArrayFiller(); 441c83ed824SSebastian Redl bool hasTrivialFiller = true; 442c83ed824SSebastian Redl if (CXXConstructExpr *cons = dyn_cast_or_null<CXXConstructExpr>(filler)) { 443c83ed824SSebastian Redl assert(cons->getConstructor()->isDefaultConstructor()); 444c83ed824SSebastian Redl hasTrivialFiller = cons->getConstructor()->isTrivial(); 445c83ed824SSebastian Redl } 446c83ed824SSebastian Redl 447c83ed824SSebastian Redl // Any remaining elements need to be zero-initialized, possibly 448c83ed824SSebastian Redl // using the filler expression. We can skip this if the we're 449c83ed824SSebastian Redl // emitting to zeroed memory. 450c83ed824SSebastian Redl if (NumInitElements != NumArrayElements && 451c83ed824SSebastian Redl !(Dest.isZeroed() && hasTrivialFiller && 452c83ed824SSebastian Redl CGF.getTypes().isZeroInitializable(elementType))) { 453c83ed824SSebastian Redl 454c83ed824SSebastian Redl // Use an actual loop. This is basically 455c83ed824SSebastian Redl // do { *array++ = filler; } while (array != end); 456c83ed824SSebastian Redl 457c83ed824SSebastian Redl // Advance to the start of the rest of the array. 458c83ed824SSebastian Redl if (NumInitElements) { 459c83ed824SSebastian Redl element = Builder.CreateInBoundsGEP(element, one, "arrayinit.start"); 460c83ed824SSebastian Redl if (endOfInit) Builder.CreateStore(element, endOfInit); 461c83ed824SSebastian Redl } 462c83ed824SSebastian Redl 463c83ed824SSebastian Redl // Compute the end of the array. 464c83ed824SSebastian Redl llvm::Value *end = Builder.CreateInBoundsGEP(begin, 465c83ed824SSebastian Redl llvm::ConstantInt::get(CGF.SizeTy, NumArrayElements), 466c83ed824SSebastian Redl "arrayinit.end"); 467c83ed824SSebastian Redl 468c83ed824SSebastian Redl llvm::BasicBlock *entryBB = Builder.GetInsertBlock(); 469c83ed824SSebastian Redl llvm::BasicBlock *bodyBB = CGF.createBasicBlock("arrayinit.body"); 470c83ed824SSebastian Redl 471c83ed824SSebastian Redl // Jump into the body. 472c83ed824SSebastian Redl CGF.EmitBlock(bodyBB); 473c83ed824SSebastian Redl llvm::PHINode *currentElement = 474c83ed824SSebastian Redl Builder.CreatePHI(element->getType(), 2, "arrayinit.cur"); 475c83ed824SSebastian Redl currentElement->addIncoming(element, entryBB); 476c83ed824SSebastian Redl 477c83ed824SSebastian Redl // Emit the actual filler expression. 478c83ed824SSebastian Redl LValue elementLV = CGF.MakeAddrLValue(currentElement, elementType); 479c83ed824SSebastian Redl if (filler) 480615ed1a3SChad Rosier EmitInitializationToLValue(filler, elementLV); 481c83ed824SSebastian Redl else 482c83ed824SSebastian Redl EmitNullInitializationToLValue(elementLV); 483c83ed824SSebastian Redl 484c83ed824SSebastian Redl // Move on to the next element. 485c83ed824SSebastian Redl llvm::Value *nextElement = 486c83ed824SSebastian Redl Builder.CreateInBoundsGEP(currentElement, one, "arrayinit.next"); 487c83ed824SSebastian Redl 488c83ed824SSebastian Redl // Tell the EH cleanup that we finished with the last element. 489c83ed824SSebastian Redl if (endOfInit) Builder.CreateStore(nextElement, endOfInit); 490c83ed824SSebastian Redl 491c83ed824SSebastian Redl // Leave the loop if we're done. 492c83ed824SSebastian Redl llvm::Value *done = Builder.CreateICmpEQ(nextElement, end, 493c83ed824SSebastian Redl "arrayinit.done"); 494c83ed824SSebastian Redl llvm::BasicBlock *endBB = CGF.createBasicBlock("arrayinit.end"); 495c83ed824SSebastian Redl Builder.CreateCondBr(done, endBB, bodyBB); 496c83ed824SSebastian Redl currentElement->addIncoming(nextElement, Builder.GetInsertBlock()); 497c83ed824SSebastian Redl 498c83ed824SSebastian Redl CGF.EmitBlock(endBB); 499c83ed824SSebastian Redl } 500c83ed824SSebastian Redl 501c83ed824SSebastian Redl // Leave the partial-array cleanup if we entered one. 502c83ed824SSebastian Redl if (dtorKind) CGF.DeactivateCleanupBlock(cleanup, cleanupDominator); 503c83ed824SSebastian Redl } 504c83ed824SSebastian Redl 5057a51313dSChris Lattner //===----------------------------------------------------------------------===// 5067a51313dSChris Lattner // Visitor Methods 5077a51313dSChris Lattner //===----------------------------------------------------------------------===// 5087a51313dSChris Lattner 509fe31481fSDouglas Gregor void AggExprEmitter::VisitMaterializeTemporaryExpr(MaterializeTemporaryExpr *E){ 510fe31481fSDouglas Gregor Visit(E->GetTemporaryExpr()); 511fe31481fSDouglas Gregor } 512fe31481fSDouglas Gregor 5131bf5846aSJohn McCall void AggExprEmitter::VisitOpaqueValueExpr(OpaqueValueExpr *e) { 5144e8ca4faSJohn McCall EmitFinalDestCopy(e->getType(), CGF.getOpaqueLValueMapping(e)); 5151bf5846aSJohn McCall } 5161bf5846aSJohn McCall 5179b71f0cfSDouglas Gregor void 5189b71f0cfSDouglas Gregor AggExprEmitter::VisitCompoundLiteralExpr(CompoundLiteralExpr *E) { 519bea4c3d8SJohn McCall if (Dest.isPotentiallyAliased() && 520bea4c3d8SJohn McCall E->getType().isPODType(CGF.getContext())) { 5216c9d31ebSDouglas Gregor // For a POD type, just emit a load of the lvalue + a copy, because our 5226c9d31ebSDouglas Gregor // compound literal might alias the destination. 5236c9d31ebSDouglas Gregor EmitAggLoadOfLValue(E); 5246c9d31ebSDouglas Gregor return; 5256c9d31ebSDouglas Gregor } 5266c9d31ebSDouglas Gregor 5279b71f0cfSDouglas Gregor AggValueSlot Slot = EnsureSlot(E->getType()); 5289b71f0cfSDouglas Gregor CGF.EmitAggExpr(E->getInitializer(), Slot); 5299b71f0cfSDouglas Gregor } 5309b71f0cfSDouglas Gregor 531a8ec7eb9SJohn McCall /// Attempt to look through various unimportant expressions to find a 532a8ec7eb9SJohn McCall /// cast of the given kind. 533a8ec7eb9SJohn McCall static Expr *findPeephole(Expr *op, CastKind kind) { 534a8ec7eb9SJohn McCall while (true) { 535a8ec7eb9SJohn McCall op = op->IgnoreParens(); 536a8ec7eb9SJohn McCall if (CastExpr *castE = dyn_cast<CastExpr>(op)) { 537a8ec7eb9SJohn McCall if (castE->getCastKind() == kind) 538a8ec7eb9SJohn McCall return castE->getSubExpr(); 539a8ec7eb9SJohn McCall if (castE->getCastKind() == CK_NoOp) 540a8ec7eb9SJohn McCall continue; 541a8ec7eb9SJohn McCall } 542a8ec7eb9SJohn McCall return 0; 543a8ec7eb9SJohn McCall } 544a8ec7eb9SJohn McCall } 5459b71f0cfSDouglas Gregor 546ec143777SAnders Carlsson void AggExprEmitter::VisitCastExpr(CastExpr *E) { 5471fb7ae9eSAnders Carlsson switch (E->getCastKind()) { 5488a01a751SAnders Carlsson case CK_Dynamic: { 54969d0d262SRichard Smith // FIXME: Can this actually happen? We have no test coverage for it. 5501c073f47SDouglas Gregor assert(isa<CXXDynamicCastExpr>(E) && "CK_Dynamic without a dynamic_cast?"); 55169d0d262SRichard Smith LValue LV = CGF.EmitCheckedLValue(E->getSubExpr(), 5524d1458edSRichard Smith CodeGenFunction::TCK_Load); 5531c073f47SDouglas Gregor // FIXME: Do we also need to handle property references here? 5541c073f47SDouglas Gregor if (LV.isSimple()) 5551c073f47SDouglas Gregor CGF.EmitDynamicCast(LV.getAddress(), cast<CXXDynamicCastExpr>(E)); 5561c073f47SDouglas Gregor else 5571c073f47SDouglas Gregor CGF.CGM.ErrorUnsupported(E, "non-simple lvalue dynamic_cast"); 5581c073f47SDouglas Gregor 5597a626f63SJohn McCall if (!Dest.isIgnored()) 5601c073f47SDouglas Gregor CGF.CGM.ErrorUnsupported(E, "lvalue dynamic_cast with a destination"); 5611c073f47SDouglas Gregor break; 5621c073f47SDouglas Gregor } 5631c073f47SDouglas Gregor 564e302792bSJohn McCall case CK_ToUnion: { 56558989b71SJohn McCall if (Dest.isIgnored()) break; 56658989b71SJohn McCall 5677ffcf93bSNuno Lopes // GCC union extension 5682e442a00SDaniel Dunbar QualType Ty = E->getSubExpr()->getType(); 5692e442a00SDaniel Dunbar QualType PtrTy = CGF.getContext().getPointerType(Ty); 5707a626f63SJohn McCall llvm::Value *CastPtr = Builder.CreateBitCast(Dest.getAddr(), 571dd274848SEli Friedman CGF.ConvertType(PtrTy)); 5721553b190SJohn McCall EmitInitializationToLValue(E->getSubExpr(), 573615ed1a3SChad Rosier CGF.MakeAddrLValue(CastPtr, Ty)); 5741fb7ae9eSAnders Carlsson break; 5757ffcf93bSNuno Lopes } 5767ffcf93bSNuno Lopes 577e302792bSJohn McCall case CK_DerivedToBase: 578e302792bSJohn McCall case CK_BaseToDerived: 579e302792bSJohn McCall case CK_UncheckedDerivedToBase: { 58083d382b1SDavid Blaikie llvm_unreachable("cannot perform hierarchy conversion in EmitAggExpr: " 581aae38d66SDouglas Gregor "should have been unpacked before we got here"); 582aae38d66SDouglas Gregor } 583aae38d66SDouglas Gregor 584a8ec7eb9SJohn McCall case CK_NonAtomicToAtomic: 585a8ec7eb9SJohn McCall case CK_AtomicToNonAtomic: { 586a8ec7eb9SJohn McCall bool isToAtomic = (E->getCastKind() == CK_NonAtomicToAtomic); 587a8ec7eb9SJohn McCall 588a8ec7eb9SJohn McCall // Determine the atomic and value types. 589a8ec7eb9SJohn McCall QualType atomicType = E->getSubExpr()->getType(); 590a8ec7eb9SJohn McCall QualType valueType = E->getType(); 591a8ec7eb9SJohn McCall if (isToAtomic) std::swap(atomicType, valueType); 592a8ec7eb9SJohn McCall 593a8ec7eb9SJohn McCall assert(atomicType->isAtomicType()); 594a8ec7eb9SJohn McCall assert(CGF.getContext().hasSameUnqualifiedType(valueType, 595a8ec7eb9SJohn McCall atomicType->castAs<AtomicType>()->getValueType())); 596a8ec7eb9SJohn McCall 597a8ec7eb9SJohn McCall // Just recurse normally if we're ignoring the result or the 598a8ec7eb9SJohn McCall // atomic type doesn't change representation. 599a8ec7eb9SJohn McCall if (Dest.isIgnored() || !CGF.CGM.isPaddedAtomicType(atomicType)) { 600a8ec7eb9SJohn McCall return Visit(E->getSubExpr()); 601a8ec7eb9SJohn McCall } 602a8ec7eb9SJohn McCall 603a8ec7eb9SJohn McCall CastKind peepholeTarget = 604a8ec7eb9SJohn McCall (isToAtomic ? CK_AtomicToNonAtomic : CK_NonAtomicToAtomic); 605a8ec7eb9SJohn McCall 606a8ec7eb9SJohn McCall // These two cases are reverses of each other; try to peephole them. 607a8ec7eb9SJohn McCall if (Expr *op = findPeephole(E->getSubExpr(), peepholeTarget)) { 608a8ec7eb9SJohn McCall assert(CGF.getContext().hasSameUnqualifiedType(op->getType(), 609a8ec7eb9SJohn McCall E->getType()) && 610a8ec7eb9SJohn McCall "peephole significantly changed types?"); 611a8ec7eb9SJohn McCall return Visit(op); 612a8ec7eb9SJohn McCall } 613a8ec7eb9SJohn McCall 614a8ec7eb9SJohn McCall // If we're converting an r-value of non-atomic type to an r-value 615*be4504dfSEli Friedman // of atomic type, just emit directly into the relevant sub-object. 616a8ec7eb9SJohn McCall if (isToAtomic) { 617*be4504dfSEli Friedman AggValueSlot valueDest = Dest; 618*be4504dfSEli Friedman if (!valueDest.isIgnored() && CGF.CGM.isPaddedAtomicType(atomicType)) { 619*be4504dfSEli Friedman // Zero-initialize. (Strictly speaking, we only need to intialize 620*be4504dfSEli Friedman // the padding at the end, but this is simpler.) 621*be4504dfSEli Friedman if (!Dest.isZeroed()) 622*be4504dfSEli Friedman CGF.EmitNullInitialization(Dest.getAddr(), type); 623*be4504dfSEli Friedman 624*be4504dfSEli Friedman // Build a GEP to refer to the subobject. 625*be4504dfSEli Friedman llvm::Value *valueAddr = 626*be4504dfSEli Friedman CGF.Builder.CreateStructGEP(valueDest.getAddr(), 0); 627*be4504dfSEli Friedman valueDest = AggValueSlot::forAddr(valueAddr, 628*be4504dfSEli Friedman valueDest.getAlignment(), 629*be4504dfSEli Friedman valueDest.getQualifiers(), 630*be4504dfSEli Friedman valueDest.isExternallyDestructed(), 631*be4504dfSEli Friedman valueDest.requiresGCollection(), 632*be4504dfSEli Friedman valueDest.isPotentiallyAliased(), 633*be4504dfSEli Friedman AggValueSlot::IsZeroed); 634*be4504dfSEli Friedman } 635*be4504dfSEli Friedman 636a8ec7eb9SJohn McCall CGF.EmitAggExpr(E->getSubExpr(), valueDest.getDest()); 637a8ec7eb9SJohn McCall return; 638a8ec7eb9SJohn McCall } 639a8ec7eb9SJohn McCall 640a8ec7eb9SJohn McCall // Otherwise, we're converting an atomic type to a non-atomic type. 641*be4504dfSEli Friedman // Make an atomic temporary, emit into that, and then copy the value out. 642a8ec7eb9SJohn McCall AggValueSlot atomicSlot = 643a8ec7eb9SJohn McCall CGF.CreateAggTemp(atomicType, "atomic-to-nonatomic.temp"); 644a8ec7eb9SJohn McCall CGF.EmitAggExpr(E->getSubExpr(), atomicSlot); 645a8ec7eb9SJohn McCall 646a8ec7eb9SJohn McCall llvm::Value *valueAddr = 647a8ec7eb9SJohn McCall Builder.CreateStructGEP(atomicSlot.getAddr(), 0); 648a8ec7eb9SJohn McCall RValue rvalue = RValue::getAggregate(valueAddr, atomicSlot.isVolatile()); 649a8ec7eb9SJohn McCall return EmitFinalDestCopy(valueType, rvalue); 650a8ec7eb9SJohn McCall } 651a8ec7eb9SJohn McCall 6524e8ca4faSJohn McCall case CK_LValueToRValue: 6534e8ca4faSJohn McCall // If we're loading from a volatile type, force the destination 6544e8ca4faSJohn McCall // into existence. 6554e8ca4faSJohn McCall if (E->getSubExpr()->getType().isVolatileQualified()) { 6564e8ca4faSJohn McCall EnsureDest(E->getType()); 6574e8ca4faSJohn McCall return Visit(E->getSubExpr()); 6584e8ca4faSJohn McCall } 659a8ec7eb9SJohn McCall 6604e8ca4faSJohn McCall // fallthrough 6614e8ca4faSJohn McCall 662e302792bSJohn McCall case CK_NoOp: 663e302792bSJohn McCall case CK_UserDefinedConversion: 664e302792bSJohn McCall case CK_ConstructorConversion: 6652a69547fSEli Friedman assert(CGF.getContext().hasSameUnqualifiedType(E->getSubExpr()->getType(), 6662a69547fSEli Friedman E->getType()) && 6670f398c44SChris Lattner "Implicit cast types must be compatible"); 6687a51313dSChris Lattner Visit(E->getSubExpr()); 6691fb7ae9eSAnders Carlsson break; 670b05a3e55SAnders Carlsson 671e302792bSJohn McCall case CK_LValueBitCast: 672f3735e01SJohn McCall llvm_unreachable("should not be emitting lvalue bitcast as rvalue"); 67331996343SJohn McCall 674f3735e01SJohn McCall case CK_Dependent: 675f3735e01SJohn McCall case CK_BitCast: 676f3735e01SJohn McCall case CK_ArrayToPointerDecay: 677f3735e01SJohn McCall case CK_FunctionToPointerDecay: 678f3735e01SJohn McCall case CK_NullToPointer: 679f3735e01SJohn McCall case CK_NullToMemberPointer: 680f3735e01SJohn McCall case CK_BaseToDerivedMemberPointer: 681f3735e01SJohn McCall case CK_DerivedToBaseMemberPointer: 682f3735e01SJohn McCall case CK_MemberPointerToBoolean: 683c62bb391SJohn McCall case CK_ReinterpretMemberPointer: 684f3735e01SJohn McCall case CK_IntegralToPointer: 685f3735e01SJohn McCall case CK_PointerToIntegral: 686f3735e01SJohn McCall case CK_PointerToBoolean: 687f3735e01SJohn McCall case CK_ToVoid: 688f3735e01SJohn McCall case CK_VectorSplat: 689f3735e01SJohn McCall case CK_IntegralCast: 690f3735e01SJohn McCall case CK_IntegralToBoolean: 691f3735e01SJohn McCall case CK_IntegralToFloating: 692f3735e01SJohn McCall case CK_FloatingToIntegral: 693f3735e01SJohn McCall case CK_FloatingToBoolean: 694f3735e01SJohn McCall case CK_FloatingCast: 6959320b87cSJohn McCall case CK_CPointerToObjCPointerCast: 6969320b87cSJohn McCall case CK_BlockPointerToObjCPointerCast: 697f3735e01SJohn McCall case CK_AnyPointerToBlockPointerCast: 698f3735e01SJohn McCall case CK_ObjCObjectLValueCast: 699f3735e01SJohn McCall case CK_FloatingRealToComplex: 700f3735e01SJohn McCall case CK_FloatingComplexToReal: 701f3735e01SJohn McCall case CK_FloatingComplexToBoolean: 702f3735e01SJohn McCall case CK_FloatingComplexCast: 703f3735e01SJohn McCall case CK_FloatingComplexToIntegralComplex: 704f3735e01SJohn McCall case CK_IntegralRealToComplex: 705f3735e01SJohn McCall case CK_IntegralComplexToReal: 706f3735e01SJohn McCall case CK_IntegralComplexToBoolean: 707f3735e01SJohn McCall case CK_IntegralComplexCast: 708f3735e01SJohn McCall case CK_IntegralComplexToFloatingComplex: 7092d637d2eSJohn McCall case CK_ARCProduceObject: 7102d637d2eSJohn McCall case CK_ARCConsumeObject: 7112d637d2eSJohn McCall case CK_ARCReclaimReturnedObject: 7122d637d2eSJohn McCall case CK_ARCExtendBlockObject: 713ed90df38SDouglas Gregor case CK_CopyAndAutoreleaseBlockObject: 71434866c77SEli Friedman case CK_BuiltinFnToFnPtr: 7151b4fb3e0SGuy Benyei case CK_ZeroToOCLEvent: 716f3735e01SJohn McCall llvm_unreachable("cast kind invalid for aggregate types"); 7171fb7ae9eSAnders Carlsson } 7187a51313dSChris Lattner } 7197a51313dSChris Lattner 7200f398c44SChris Lattner void AggExprEmitter::VisitCallExpr(const CallExpr *E) { 721ddcbfe7bSAnders Carlsson if (E->getCallReturnType()->isReferenceType()) { 722ddcbfe7bSAnders Carlsson EmitAggLoadOfLValue(E); 723ddcbfe7bSAnders Carlsson return; 724ddcbfe7bSAnders Carlsson } 725ddcbfe7bSAnders Carlsson 726cc04e9f6SJohn McCall RValue RV = CGF.EmitCallExpr(E, getReturnValueSlot()); 727a5efa738SJohn McCall EmitMoveFromReturnSlot(E, RV); 7287a51313dSChris Lattner } 7290f398c44SChris Lattner 7300f398c44SChris Lattner void AggExprEmitter::VisitObjCMessageExpr(ObjCMessageExpr *E) { 731cc04e9f6SJohn McCall RValue RV = CGF.EmitObjCMessageExpr(E, getReturnValueSlot()); 732a5efa738SJohn McCall EmitMoveFromReturnSlot(E, RV); 733b1d329daSChris Lattner } 7347a51313dSChris Lattner 7350f398c44SChris Lattner void AggExprEmitter::VisitBinComma(const BinaryOperator *E) { 736a2342eb8SJohn McCall CGF.EmitIgnoredExpr(E->getLHS()); 7377a626f63SJohn McCall Visit(E->getRHS()); 7384b0e2a30SEli Friedman } 7394b0e2a30SEli Friedman 7407a51313dSChris Lattner void AggExprEmitter::VisitStmtExpr(const StmtExpr *E) { 741ce1de617SJohn McCall CodeGenFunction::StmtExprEvaluation eval(CGF); 7427a626f63SJohn McCall CGF.EmitCompoundStmt(*E->getSubStmt(), true, Dest); 7437a51313dSChris Lattner } 7447a51313dSChris Lattner 7457a51313dSChris Lattner void AggExprEmitter::VisitBinaryOperator(const BinaryOperator *E) { 746e302792bSJohn McCall if (E->getOpcode() == BO_PtrMemD || E->getOpcode() == BO_PtrMemI) 747ffba662dSFariborz Jahanian VisitPointerToDataMemberBinaryOperator(E); 748ffba662dSFariborz Jahanian else 749a7c8cf62SDaniel Dunbar CGF.ErrorUnsupported(E, "aggregate binary expression"); 7507a51313dSChris Lattner } 7517a51313dSChris Lattner 752ffba662dSFariborz Jahanian void AggExprEmitter::VisitPointerToDataMemberBinaryOperator( 753ffba662dSFariborz Jahanian const BinaryOperator *E) { 754ffba662dSFariborz Jahanian LValue LV = CGF.EmitPointerToDataMemberBinaryExpr(E); 7554e8ca4faSJohn McCall EmitFinalDestCopy(E->getType(), LV); 7564e8ca4faSJohn McCall } 7574e8ca4faSJohn McCall 7584e8ca4faSJohn McCall /// Is the value of the given expression possibly a reference to or 7594e8ca4faSJohn McCall /// into a __block variable? 7604e8ca4faSJohn McCall static bool isBlockVarRef(const Expr *E) { 7614e8ca4faSJohn McCall // Make sure we look through parens. 7624e8ca4faSJohn McCall E = E->IgnoreParens(); 7634e8ca4faSJohn McCall 7644e8ca4faSJohn McCall // Check for a direct reference to a __block variable. 7654e8ca4faSJohn McCall if (const DeclRefExpr *DRE = dyn_cast<DeclRefExpr>(E)) { 7664e8ca4faSJohn McCall const VarDecl *var = dyn_cast<VarDecl>(DRE->getDecl()); 7674e8ca4faSJohn McCall return (var && var->hasAttr<BlocksAttr>()); 7684e8ca4faSJohn McCall } 7694e8ca4faSJohn McCall 7704e8ca4faSJohn McCall // More complicated stuff. 7714e8ca4faSJohn McCall 7724e8ca4faSJohn McCall // Binary operators. 7734e8ca4faSJohn McCall if (const BinaryOperator *op = dyn_cast<BinaryOperator>(E)) { 7744e8ca4faSJohn McCall // For an assignment or pointer-to-member operation, just care 7754e8ca4faSJohn McCall // about the LHS. 7764e8ca4faSJohn McCall if (op->isAssignmentOp() || op->isPtrMemOp()) 7774e8ca4faSJohn McCall return isBlockVarRef(op->getLHS()); 7784e8ca4faSJohn McCall 7794e8ca4faSJohn McCall // For a comma, just care about the RHS. 7804e8ca4faSJohn McCall if (op->getOpcode() == BO_Comma) 7814e8ca4faSJohn McCall return isBlockVarRef(op->getRHS()); 7824e8ca4faSJohn McCall 7834e8ca4faSJohn McCall // FIXME: pointer arithmetic? 7844e8ca4faSJohn McCall return false; 7854e8ca4faSJohn McCall 7864e8ca4faSJohn McCall // Check both sides of a conditional operator. 7874e8ca4faSJohn McCall } else if (const AbstractConditionalOperator *op 7884e8ca4faSJohn McCall = dyn_cast<AbstractConditionalOperator>(E)) { 7894e8ca4faSJohn McCall return isBlockVarRef(op->getTrueExpr()) 7904e8ca4faSJohn McCall || isBlockVarRef(op->getFalseExpr()); 7914e8ca4faSJohn McCall 7924e8ca4faSJohn McCall // OVEs are required to support BinaryConditionalOperators. 7934e8ca4faSJohn McCall } else if (const OpaqueValueExpr *op 7944e8ca4faSJohn McCall = dyn_cast<OpaqueValueExpr>(E)) { 7954e8ca4faSJohn McCall if (const Expr *src = op->getSourceExpr()) 7964e8ca4faSJohn McCall return isBlockVarRef(src); 7974e8ca4faSJohn McCall 7984e8ca4faSJohn McCall // Casts are necessary to get things like (*(int*)&var) = foo(). 7994e8ca4faSJohn McCall // We don't really care about the kind of cast here, except 8004e8ca4faSJohn McCall // we don't want to look through l2r casts, because it's okay 8014e8ca4faSJohn McCall // to get the *value* in a __block variable. 8024e8ca4faSJohn McCall } else if (const CastExpr *cast = dyn_cast<CastExpr>(E)) { 8034e8ca4faSJohn McCall if (cast->getCastKind() == CK_LValueToRValue) 8044e8ca4faSJohn McCall return false; 8054e8ca4faSJohn McCall return isBlockVarRef(cast->getSubExpr()); 8064e8ca4faSJohn McCall 8074e8ca4faSJohn McCall // Handle unary operators. Again, just aggressively look through 8084e8ca4faSJohn McCall // it, ignoring the operation. 8094e8ca4faSJohn McCall } else if (const UnaryOperator *uop = dyn_cast<UnaryOperator>(E)) { 8104e8ca4faSJohn McCall return isBlockVarRef(uop->getSubExpr()); 8114e8ca4faSJohn McCall 8124e8ca4faSJohn McCall // Look into the base of a field access. 8134e8ca4faSJohn McCall } else if (const MemberExpr *mem = dyn_cast<MemberExpr>(E)) { 8144e8ca4faSJohn McCall return isBlockVarRef(mem->getBase()); 8154e8ca4faSJohn McCall 8164e8ca4faSJohn McCall // Look into the base of a subscript. 8174e8ca4faSJohn McCall } else if (const ArraySubscriptExpr *sub = dyn_cast<ArraySubscriptExpr>(E)) { 8184e8ca4faSJohn McCall return isBlockVarRef(sub->getBase()); 8194e8ca4faSJohn McCall } 8204e8ca4faSJohn McCall 8214e8ca4faSJohn McCall return false; 822ffba662dSFariborz Jahanian } 823ffba662dSFariborz Jahanian 8247a51313dSChris Lattner void AggExprEmitter::VisitBinAssign(const BinaryOperator *E) { 8257a51313dSChris Lattner // For an assignment to work, the value on the right has 8267a51313dSChris Lattner // to be compatible with the value on the left. 8272a69547fSEli Friedman assert(CGF.getContext().hasSameUnqualifiedType(E->getLHS()->getType(), 8282a69547fSEli Friedman E->getRHS()->getType()) 8297a51313dSChris Lattner && "Invalid assignment"); 830d0a30016SJohn McCall 8314e8ca4faSJohn McCall // If the LHS might be a __block variable, and the RHS can 8324e8ca4faSJohn McCall // potentially cause a block copy, we need to evaluate the RHS first 8334e8ca4faSJohn McCall // so that the assignment goes the right place. 8344e8ca4faSJohn McCall // This is pretty semantically fragile. 8354e8ca4faSJohn McCall if (isBlockVarRef(E->getLHS()) && 83699514b91SFariborz Jahanian E->getRHS()->HasSideEffects(CGF.getContext())) { 8374e8ca4faSJohn McCall // Ensure that we have a destination, and evaluate the RHS into that. 8384e8ca4faSJohn McCall EnsureDest(E->getRHS()->getType()); 8394e8ca4faSJohn McCall Visit(E->getRHS()); 8404e8ca4faSJohn McCall 8414e8ca4faSJohn McCall // Now emit the LHS and copy into it. 842e30752c9SRichard Smith LValue LHS = CGF.EmitCheckedLValue(E->getLHS(), CodeGenFunction::TCK_Store); 8434e8ca4faSJohn McCall 844a8ec7eb9SJohn McCall // That copy is an atomic copy if the LHS is atomic. 845a8ec7eb9SJohn McCall if (LHS.getType()->isAtomicType()) { 846a8ec7eb9SJohn McCall CGF.EmitAtomicStore(Dest.asRValue(), LHS, /*isInit*/ false); 847a8ec7eb9SJohn McCall return; 848a8ec7eb9SJohn McCall } 849a8ec7eb9SJohn McCall 8504e8ca4faSJohn McCall EmitCopy(E->getLHS()->getType(), 8514e8ca4faSJohn McCall AggValueSlot::forLValue(LHS, AggValueSlot::IsDestructed, 85246759f4fSJohn McCall needsGC(E->getLHS()->getType()), 8534e8ca4faSJohn McCall AggValueSlot::IsAliased), 8544e8ca4faSJohn McCall Dest); 85599514b91SFariborz Jahanian return; 85699514b91SFariborz Jahanian } 85799514b91SFariborz Jahanian 8587a51313dSChris Lattner LValue LHS = CGF.EmitLValue(E->getLHS()); 8597a51313dSChris Lattner 860a8ec7eb9SJohn McCall // If we have an atomic type, evaluate into the destination and then 861a8ec7eb9SJohn McCall // do an atomic copy. 862a8ec7eb9SJohn McCall if (LHS.getType()->isAtomicType()) { 863a8ec7eb9SJohn McCall EnsureDest(E->getRHS()->getType()); 864a8ec7eb9SJohn McCall Visit(E->getRHS()); 865a8ec7eb9SJohn McCall CGF.EmitAtomicStore(Dest.asRValue(), LHS, /*isInit*/ false); 866a8ec7eb9SJohn McCall return; 867a8ec7eb9SJohn McCall } 868a8ec7eb9SJohn McCall 8697a51313dSChris Lattner // Codegen the RHS so that it stores directly into the LHS. 8708d6fc958SJohn McCall AggValueSlot LHSSlot = 8718d6fc958SJohn McCall AggValueSlot::forLValue(LHS, AggValueSlot::IsDestructed, 87246759f4fSJohn McCall needsGC(E->getLHS()->getType()), 873615ed1a3SChad Rosier AggValueSlot::IsAliased); 8747865220dSFariborz Jahanian // A non-volatile aggregate destination might have volatile member. 8757865220dSFariborz Jahanian if (!LHSSlot.isVolatile() && 8767865220dSFariborz Jahanian CGF.hasVolatileMember(E->getLHS()->getType())) 8777865220dSFariborz Jahanian LHSSlot.setVolatile(true); 8787865220dSFariborz Jahanian 8794e8ca4faSJohn McCall CGF.EmitAggExpr(E->getRHS(), LHSSlot); 8804e8ca4faSJohn McCall 8814e8ca4faSJohn McCall // Copy into the destination if the assignment isn't ignored. 8824e8ca4faSJohn McCall EmitFinalDestCopy(E->getType(), LHS); 8837a51313dSChris Lattner } 8847a51313dSChris Lattner 885c07a0c7eSJohn McCall void AggExprEmitter:: 886c07a0c7eSJohn McCall VisitAbstractConditionalOperator(const AbstractConditionalOperator *E) { 887a612e79bSDaniel Dunbar llvm::BasicBlock *LHSBlock = CGF.createBasicBlock("cond.true"); 888a612e79bSDaniel Dunbar llvm::BasicBlock *RHSBlock = CGF.createBasicBlock("cond.false"); 889a612e79bSDaniel Dunbar llvm::BasicBlock *ContBlock = CGF.createBasicBlock("cond.end"); 8907a51313dSChris Lattner 891c07a0c7eSJohn McCall // Bind the common expression if necessary. 89248fd89adSEli Friedman CodeGenFunction::OpaqueValueMapping binding(CGF, E); 893c07a0c7eSJohn McCall 894ce1de617SJohn McCall CodeGenFunction::ConditionalEvaluation eval(CGF); 895b8841af8SEli Friedman CGF.EmitBranchOnBoolExpr(E->getCond(), LHSBlock, RHSBlock); 8967a51313dSChris Lattner 8975b26f65bSJohn McCall // Save whether the destination's lifetime is externally managed. 898cac93853SJohn McCall bool isExternallyDestructed = Dest.isExternallyDestructed(); 8997a51313dSChris Lattner 900ce1de617SJohn McCall eval.begin(CGF); 901ce1de617SJohn McCall CGF.EmitBlock(LHSBlock); 902c07a0c7eSJohn McCall Visit(E->getTrueExpr()); 903ce1de617SJohn McCall eval.end(CGF); 9047a51313dSChris Lattner 905ce1de617SJohn McCall assert(CGF.HaveInsertPoint() && "expression evaluation ended with no IP!"); 906ce1de617SJohn McCall CGF.Builder.CreateBr(ContBlock); 9077a51313dSChris Lattner 9085b26f65bSJohn McCall // If the result of an agg expression is unused, then the emission 9095b26f65bSJohn McCall // of the LHS might need to create a destination slot. That's fine 9105b26f65bSJohn McCall // with us, and we can safely emit the RHS into the same slot, but 911cac93853SJohn McCall // we shouldn't claim that it's already being destructed. 912cac93853SJohn McCall Dest.setExternallyDestructed(isExternallyDestructed); 9135b26f65bSJohn McCall 914ce1de617SJohn McCall eval.begin(CGF); 915ce1de617SJohn McCall CGF.EmitBlock(RHSBlock); 916c07a0c7eSJohn McCall Visit(E->getFalseExpr()); 917ce1de617SJohn McCall eval.end(CGF); 9187a51313dSChris Lattner 9197a51313dSChris Lattner CGF.EmitBlock(ContBlock); 9207a51313dSChris Lattner } 9217a51313dSChris Lattner 9225b2095ceSAnders Carlsson void AggExprEmitter::VisitChooseExpr(const ChooseExpr *CE) { 9235b2095ceSAnders Carlsson Visit(CE->getChosenSubExpr(CGF.getContext())); 9245b2095ceSAnders Carlsson } 9255b2095ceSAnders Carlsson 92621911e89SEli Friedman void AggExprEmitter::VisitVAArgExpr(VAArgExpr *VE) { 927e9fcadd2SDaniel Dunbar llvm::Value *ArgValue = CGF.EmitVAListRef(VE->getSubExpr()); 92813abd7e9SAnders Carlsson llvm::Value *ArgPtr = CGF.EmitVAArg(ArgValue, VE->getType()); 92913abd7e9SAnders Carlsson 930020cddcfSSebastian Redl if (!ArgPtr) { 93113abd7e9SAnders Carlsson CGF.ErrorUnsupported(VE, "aggregate va_arg expression"); 932020cddcfSSebastian Redl return; 933020cddcfSSebastian Redl } 93413abd7e9SAnders Carlsson 9354e8ca4faSJohn McCall EmitFinalDestCopy(VE->getType(), CGF.MakeAddrLValue(ArgPtr, VE->getType())); 93621911e89SEli Friedman } 93721911e89SEli Friedman 9383be22e27SAnders Carlsson void AggExprEmitter::VisitCXXBindTemporaryExpr(CXXBindTemporaryExpr *E) { 9397a626f63SJohn McCall // Ensure that we have a slot, but if we already do, remember 940cac93853SJohn McCall // whether it was externally destructed. 941cac93853SJohn McCall bool wasExternallyDestructed = Dest.isExternallyDestructed(); 9424e8ca4faSJohn McCall EnsureDest(E->getType()); 943cac93853SJohn McCall 944cac93853SJohn McCall // We're going to push a destructor if there isn't already one. 945cac93853SJohn McCall Dest.setExternallyDestructed(); 9463be22e27SAnders Carlsson 9473be22e27SAnders Carlsson Visit(E->getSubExpr()); 9483be22e27SAnders Carlsson 949cac93853SJohn McCall // Push that destructor we promised. 950cac93853SJohn McCall if (!wasExternallyDestructed) 951702b2841SPeter Collingbourne CGF.EmitCXXTemporary(E->getTemporary(), E->getType(), Dest.getAddr()); 9523be22e27SAnders Carlsson } 9533be22e27SAnders Carlsson 954b7f8f594SAnders Carlsson void 9551619a504SAnders Carlsson AggExprEmitter::VisitCXXConstructExpr(const CXXConstructExpr *E) { 9567a626f63SJohn McCall AggValueSlot Slot = EnsureSlot(E->getType()); 9577a626f63SJohn McCall CGF.EmitCXXConstructExpr(E, Slot); 958c82b86dfSAnders Carlsson } 959c82b86dfSAnders Carlsson 960c370a7eeSEli Friedman void 961c370a7eeSEli Friedman AggExprEmitter::VisitLambdaExpr(LambdaExpr *E) { 962c370a7eeSEli Friedman AggValueSlot Slot = EnsureSlot(E->getType()); 963c370a7eeSEli Friedman CGF.EmitLambdaExpr(E, Slot); 964c370a7eeSEli Friedman } 965c370a7eeSEli Friedman 9665d413781SJohn McCall void AggExprEmitter::VisitExprWithCleanups(ExprWithCleanups *E) { 96708ef4660SJohn McCall CGF.enterFullExpression(E); 96808ef4660SJohn McCall CodeGenFunction::RunCleanupsScope cleanups(CGF); 96908ef4660SJohn McCall Visit(E->getSubExpr()); 970b7f8f594SAnders Carlsson } 971b7f8f594SAnders Carlsson 972747eb784SDouglas Gregor void AggExprEmitter::VisitCXXScalarValueInitExpr(CXXScalarValueInitExpr *E) { 9737a626f63SJohn McCall QualType T = E->getType(); 9747a626f63SJohn McCall AggValueSlot Slot = EnsureSlot(T); 9751553b190SJohn McCall EmitNullInitializationToLValue(CGF.MakeAddrLValue(Slot.getAddr(), T)); 97618ada985SAnders Carlsson } 97718ada985SAnders Carlsson 97818ada985SAnders Carlsson void AggExprEmitter::VisitImplicitValueInitExpr(ImplicitValueInitExpr *E) { 9797a626f63SJohn McCall QualType T = E->getType(); 9807a626f63SJohn McCall AggValueSlot Slot = EnsureSlot(T); 9811553b190SJohn McCall EmitNullInitializationToLValue(CGF.MakeAddrLValue(Slot.getAddr(), T)); 982ff3507b9SNuno Lopes } 983ff3507b9SNuno Lopes 98427a3631bSChris Lattner /// isSimpleZero - If emitting this value will obviously just cause a store of 98527a3631bSChris Lattner /// zero to memory, return true. This can return false if uncertain, so it just 98627a3631bSChris Lattner /// handles simple cases. 98727a3631bSChris Lattner static bool isSimpleZero(const Expr *E, CodeGenFunction &CGF) { 98891147596SPeter Collingbourne E = E->IgnoreParens(); 98991147596SPeter Collingbourne 99027a3631bSChris Lattner // 0 99127a3631bSChris Lattner if (const IntegerLiteral *IL = dyn_cast<IntegerLiteral>(E)) 99227a3631bSChris Lattner return IL->getValue() == 0; 99327a3631bSChris Lattner // +0.0 99427a3631bSChris Lattner if (const FloatingLiteral *FL = dyn_cast<FloatingLiteral>(E)) 99527a3631bSChris Lattner return FL->getValue().isPosZero(); 99627a3631bSChris Lattner // int() 99727a3631bSChris Lattner if ((isa<ImplicitValueInitExpr>(E) || isa<CXXScalarValueInitExpr>(E)) && 99827a3631bSChris Lattner CGF.getTypes().isZeroInitializable(E->getType())) 99927a3631bSChris Lattner return true; 100027a3631bSChris Lattner // (int*)0 - Null pointer expressions. 100127a3631bSChris Lattner if (const CastExpr *ICE = dyn_cast<CastExpr>(E)) 100227a3631bSChris Lattner return ICE->getCastKind() == CK_NullToPointer; 100327a3631bSChris Lattner // '\0' 100427a3631bSChris Lattner if (const CharacterLiteral *CL = dyn_cast<CharacterLiteral>(E)) 100527a3631bSChris Lattner return CL->getValue() == 0; 100627a3631bSChris Lattner 100727a3631bSChris Lattner // Otherwise, hard case: conservatively return false. 100827a3631bSChris Lattner return false; 100927a3631bSChris Lattner } 101027a3631bSChris Lattner 101127a3631bSChris Lattner 1012b247350eSAnders Carlsson void 1013615ed1a3SChad Rosier AggExprEmitter::EmitInitializationToLValue(Expr* E, LValue LV) { 10141553b190SJohn McCall QualType type = LV.getType(); 1015df0fe27bSMike Stump // FIXME: Ignore result? 1016579a05d7SChris Lattner // FIXME: Are initializers affected by volatile? 101727a3631bSChris Lattner if (Dest.isZeroed() && isSimpleZero(E, CGF)) { 101827a3631bSChris Lattner // Storing "i32 0" to a zero'd memory location is a noop. 101947fb9508SJohn McCall return; 1020d82a2ce3SRichard Smith } else if (isa<ImplicitValueInitExpr>(E) || isa<CXXScalarValueInitExpr>(E)) { 102147fb9508SJohn McCall return EmitNullInitializationToLValue(LV); 10221553b190SJohn McCall } else if (type->isReferenceType()) { 1023a1c9d4d9SRichard Smith RValue RV = CGF.EmitReferenceBindingToExpr(E); 102447fb9508SJohn McCall return CGF.EmitStoreThroughLValue(RV, LV); 102547fb9508SJohn McCall } 102647fb9508SJohn McCall 102747fb9508SJohn McCall switch (CGF.getEvaluationKind(type)) { 102847fb9508SJohn McCall case TEK_Complex: 102947fb9508SJohn McCall CGF.EmitComplexExprIntoLValue(E, LV, /*isInit*/ true); 103047fb9508SJohn McCall return; 103147fb9508SJohn McCall case TEK_Aggregate: 10328d6fc958SJohn McCall CGF.EmitAggExpr(E, AggValueSlot::forLValue(LV, 10338d6fc958SJohn McCall AggValueSlot::IsDestructed, 10348d6fc958SJohn McCall AggValueSlot::DoesNotNeedGCBarriers, 1035a5efa738SJohn McCall AggValueSlot::IsNotAliased, 10361553b190SJohn McCall Dest.isZeroed())); 103747fb9508SJohn McCall return; 103847fb9508SJohn McCall case TEK_Scalar: 103947fb9508SJohn McCall if (LV.isSimple()) { 10401553b190SJohn McCall CGF.EmitScalarInit(E, /*D=*/0, LV, /*Captured=*/false); 10416e313210SEli Friedman } else { 104255e1fbc8SJohn McCall CGF.EmitStoreThroughLValue(RValue::get(CGF.EmitScalarExpr(E)), LV); 10437a51313dSChris Lattner } 104447fb9508SJohn McCall return; 104547fb9508SJohn McCall } 104647fb9508SJohn McCall llvm_unreachable("bad evaluation kind"); 1047579a05d7SChris Lattner } 1048579a05d7SChris Lattner 10491553b190SJohn McCall void AggExprEmitter::EmitNullInitializationToLValue(LValue lv) { 10501553b190SJohn McCall QualType type = lv.getType(); 10511553b190SJohn McCall 105227a3631bSChris Lattner // If the destination slot is already zeroed out before the aggregate is 105327a3631bSChris Lattner // copied into it, we don't have to emit any zeros here. 10541553b190SJohn McCall if (Dest.isZeroed() && CGF.getTypes().isZeroInitializable(type)) 105527a3631bSChris Lattner return; 105627a3631bSChris Lattner 105747fb9508SJohn McCall if (CGF.hasScalarEvaluationKind(type)) { 1058d82a2ce3SRichard Smith // For non-aggregates, we can store the appropriate null constant. 1059d82a2ce3SRichard Smith llvm::Value *null = CGF.CGM.EmitNullConstant(type); 106091d5bb1eSEli Friedman // Note that the following is not equivalent to 106191d5bb1eSEli Friedman // EmitStoreThroughBitfieldLValue for ARC types. 1062cb3785e4SEli Friedman if (lv.isBitField()) { 106391d5bb1eSEli Friedman CGF.EmitStoreThroughBitfieldLValue(RValue::get(null), lv); 1064cb3785e4SEli Friedman } else { 106591d5bb1eSEli Friedman assert(lv.isSimple()); 106691d5bb1eSEli Friedman CGF.EmitStoreOfScalar(null, lv, /* isInitialization */ true); 1067cb3785e4SEli Friedman } 1068579a05d7SChris Lattner } else { 1069579a05d7SChris Lattner // There's a potential optimization opportunity in combining 1070579a05d7SChris Lattner // memsets; that would be easy for arrays, but relatively 1071579a05d7SChris Lattner // difficult for structures with the current code. 10721553b190SJohn McCall CGF.EmitNullInitialization(lv.getAddress(), lv.getType()); 1073579a05d7SChris Lattner } 1074579a05d7SChris Lattner } 1075579a05d7SChris Lattner 1076579a05d7SChris Lattner void AggExprEmitter::VisitInitListExpr(InitListExpr *E) { 1077f5d08c9eSEli Friedman #if 0 10786d11ec8cSEli Friedman // FIXME: Assess perf here? Figure out what cases are worth optimizing here 10796d11ec8cSEli Friedman // (Length of globals? Chunks of zeroed-out space?). 1080f5d08c9eSEli Friedman // 108118bb9284SMike Stump // If we can, prefer a copy from a global; this is a lot less code for long 108218bb9284SMike Stump // globals, and it's easier for the current optimizers to analyze. 10836d11ec8cSEli Friedman if (llvm::Constant* C = CGF.CGM.EmitConstantExpr(E, E->getType(), &CGF)) { 1084c59bb48eSEli Friedman llvm::GlobalVariable* GV = 10856d11ec8cSEli Friedman new llvm::GlobalVariable(CGF.CGM.getModule(), C->getType(), true, 10866d11ec8cSEli Friedman llvm::GlobalValue::InternalLinkage, C, ""); 10874e8ca4faSJohn McCall EmitFinalDestCopy(E->getType(), CGF.MakeAddrLValue(GV, E->getType())); 1088c59bb48eSEli Friedman return; 1089c59bb48eSEli Friedman } 1090f5d08c9eSEli Friedman #endif 1091f53c0968SChris Lattner if (E->hadArrayRangeDesignator()) 1092bf7207a1SDouglas Gregor CGF.ErrorUnsupported(E, "GNU array range designator extension"); 1093bf7207a1SDouglas Gregor 1094be93c00aSRichard Smith AggValueSlot Dest = EnsureSlot(E->getType()); 1095be93c00aSRichard Smith 10967f1ff600SEli Friedman LValue DestLV = CGF.MakeAddrLValue(Dest.getAddr(), E->getType(), 10977f1ff600SEli Friedman Dest.getAlignment()); 10987a626f63SJohn McCall 1099579a05d7SChris Lattner // Handle initialization of an array. 1100579a05d7SChris Lattner if (E->getType()->isArrayType()) { 11019ec1e48bSRichard Smith if (E->isStringLiteralInit()) 11029ec1e48bSRichard Smith return Visit(E->getInit(0)); 1103f23b6fa4SEli Friedman 110491f5ae50SEli Friedman QualType elementType = 110591f5ae50SEli Friedman CGF.getContext().getAsArrayType(E->getType())->getElementType(); 110682fe67bbSJohn McCall 1107c83ed824SSebastian Redl llvm::PointerType *APType = 11087f1ff600SEli Friedman cast<llvm::PointerType>(Dest.getAddr()->getType()); 1109c83ed824SSebastian Redl llvm::ArrayType *AType = 1110c83ed824SSebastian Redl cast<llvm::ArrayType>(APType->getElementType()); 111182fe67bbSJohn McCall 11127f1ff600SEli Friedman EmitArrayInit(Dest.getAddr(), AType, elementType, E); 1113579a05d7SChris Lattner return; 1114579a05d7SChris Lattner } 1115579a05d7SChris Lattner 1116579a05d7SChris Lattner assert(E->getType()->isRecordType() && "Only support structs/unions here!"); 1117579a05d7SChris Lattner 1118579a05d7SChris Lattner // Do struct initialization; this code just sets each individual member 1119579a05d7SChris Lattner // to the approprate value. This makes bitfield support automatic; 1120579a05d7SChris Lattner // the disadvantage is that the generated code is more difficult for 1121579a05d7SChris Lattner // the optimizer, especially with bitfields. 1122579a05d7SChris Lattner unsigned NumInitElements = E->getNumInits(); 11233b935d33SJohn McCall RecordDecl *record = E->getType()->castAs<RecordType>()->getDecl(); 112452bcf963SChris Lattner 1125852c9db7SRichard Smith // Prepare a 'this' for CXXDefaultInitExprs. 1126852c9db7SRichard Smith CodeGenFunction::FieldConstructionScope FCS(CGF, Dest.getAddr()); 1127852c9db7SRichard Smith 11283b935d33SJohn McCall if (record->isUnion()) { 11295169570eSDouglas Gregor // Only initialize one field of a union. The field itself is 11305169570eSDouglas Gregor // specified by the initializer list. 11315169570eSDouglas Gregor if (!E->getInitializedFieldInUnion()) { 11325169570eSDouglas Gregor // Empty union; we have nothing to do. 11335169570eSDouglas Gregor 11345169570eSDouglas Gregor #ifndef NDEBUG 11355169570eSDouglas Gregor // Make sure that it's really an empty and not a failure of 11365169570eSDouglas Gregor // semantic analysis. 11373b935d33SJohn McCall for (RecordDecl::field_iterator Field = record->field_begin(), 11383b935d33SJohn McCall FieldEnd = record->field_end(); 11395169570eSDouglas Gregor Field != FieldEnd; ++Field) 11405169570eSDouglas Gregor assert(Field->isUnnamedBitfield() && "Only unnamed bitfields allowed"); 11415169570eSDouglas Gregor #endif 11425169570eSDouglas Gregor return; 11435169570eSDouglas Gregor } 11445169570eSDouglas Gregor 11455169570eSDouglas Gregor // FIXME: volatility 11465169570eSDouglas Gregor FieldDecl *Field = E->getInitializedFieldInUnion(); 11475169570eSDouglas Gregor 11487f1ff600SEli Friedman LValue FieldLoc = CGF.EmitLValueForFieldInitialization(DestLV, Field); 11495169570eSDouglas Gregor if (NumInitElements) { 11505169570eSDouglas Gregor // Store the initializer into the field 1151615ed1a3SChad Rosier EmitInitializationToLValue(E->getInit(0), FieldLoc); 11525169570eSDouglas Gregor } else { 115327a3631bSChris Lattner // Default-initialize to null. 11541553b190SJohn McCall EmitNullInitializationToLValue(FieldLoc); 11555169570eSDouglas Gregor } 11565169570eSDouglas Gregor 11575169570eSDouglas Gregor return; 11585169570eSDouglas Gregor } 1159579a05d7SChris Lattner 11603b935d33SJohn McCall // We'll need to enter cleanup scopes in case any of the member 11613b935d33SJohn McCall // initializers throw an exception. 11620e62c1ccSChris Lattner SmallVector<EHScopeStack::stable_iterator, 16> cleanups; 1163f4beacd0SJohn McCall llvm::Instruction *cleanupDominator = 0; 11643b935d33SJohn McCall 1165579a05d7SChris Lattner // Here we iterate over the fields; this makes it simpler to both 1166579a05d7SChris Lattner // default-initialize fields and skip over unnamed fields. 11673b935d33SJohn McCall unsigned curInitIndex = 0; 11683b935d33SJohn McCall for (RecordDecl::field_iterator field = record->field_begin(), 11693b935d33SJohn McCall fieldEnd = record->field_end(); 11703b935d33SJohn McCall field != fieldEnd; ++field) { 11713b935d33SJohn McCall // We're done once we hit the flexible array member. 11723b935d33SJohn McCall if (field->getType()->isIncompleteArrayType()) 117391f84216SDouglas Gregor break; 117491f84216SDouglas Gregor 11753b935d33SJohn McCall // Always skip anonymous bitfields. 11763b935d33SJohn McCall if (field->isUnnamedBitfield()) 1177579a05d7SChris Lattner continue; 117817bd094aSDouglas Gregor 11793b935d33SJohn McCall // We're done if we reach the end of the explicit initializers, we 11803b935d33SJohn McCall // have a zeroed object, and the rest of the fields are 11813b935d33SJohn McCall // zero-initializable. 11823b935d33SJohn McCall if (curInitIndex == NumInitElements && Dest.isZeroed() && 118327a3631bSChris Lattner CGF.getTypes().isZeroInitializable(E->getType())) 118427a3631bSChris Lattner break; 118527a3631bSChris Lattner 11867f1ff600SEli Friedman 118740ed2973SDavid Blaikie LValue LV = CGF.EmitLValueForFieldInitialization(DestLV, *field); 11887c1baf46SFariborz Jahanian // We never generate write-barries for initialized fields. 11893b935d33SJohn McCall LV.setNonGC(true); 119027a3631bSChris Lattner 11913b935d33SJohn McCall if (curInitIndex < NumInitElements) { 1192e18aaf2cSChris Lattner // Store the initializer into the field. 1193615ed1a3SChad Rosier EmitInitializationToLValue(E->getInit(curInitIndex++), LV); 1194579a05d7SChris Lattner } else { 1195579a05d7SChris Lattner // We're out of initalizers; default-initialize to null 11963b935d33SJohn McCall EmitNullInitializationToLValue(LV); 11973b935d33SJohn McCall } 11983b935d33SJohn McCall 11993b935d33SJohn McCall // Push a destructor if necessary. 12003b935d33SJohn McCall // FIXME: if we have an array of structures, all explicitly 12013b935d33SJohn McCall // initialized, we can end up pushing a linear number of cleanups. 12023b935d33SJohn McCall bool pushedCleanup = false; 12033b935d33SJohn McCall if (QualType::DestructionKind dtorKind 12043b935d33SJohn McCall = field->getType().isDestructedType()) { 12053b935d33SJohn McCall assert(LV.isSimple()); 12063b935d33SJohn McCall if (CGF.needsEHCleanup(dtorKind)) { 1207f4beacd0SJohn McCall if (!cleanupDominator) 1208f4beacd0SJohn McCall cleanupDominator = CGF.Builder.CreateUnreachable(); // placeholder 1209f4beacd0SJohn McCall 12103b935d33SJohn McCall CGF.pushDestroy(EHCleanup, LV.getAddress(), field->getType(), 12113b935d33SJohn McCall CGF.getDestroyer(dtorKind), false); 12123b935d33SJohn McCall cleanups.push_back(CGF.EHStack.stable_begin()); 12133b935d33SJohn McCall pushedCleanup = true; 12143b935d33SJohn McCall } 1215579a05d7SChris Lattner } 121627a3631bSChris Lattner 121727a3631bSChris Lattner // If the GEP didn't get used because of a dead zero init or something 121827a3631bSChris Lattner // else, clean it up for -O0 builds and general tidiness. 12193b935d33SJohn McCall if (!pushedCleanup && LV.isSimple()) 122027a3631bSChris Lattner if (llvm::GetElementPtrInst *GEP = 12213b935d33SJohn McCall dyn_cast<llvm::GetElementPtrInst>(LV.getAddress())) 122227a3631bSChris Lattner if (GEP->use_empty()) 122327a3631bSChris Lattner GEP->eraseFromParent(); 12247a51313dSChris Lattner } 12253b935d33SJohn McCall 12263b935d33SJohn McCall // Deactivate all the partial cleanups in reverse order, which 12273b935d33SJohn McCall // generally means popping them. 12283b935d33SJohn McCall for (unsigned i = cleanups.size(); i != 0; --i) 1229f4beacd0SJohn McCall CGF.DeactivateCleanupBlock(cleanups[i-1], cleanupDominator); 1230f4beacd0SJohn McCall 1231f4beacd0SJohn McCall // Destroy the placeholder if we made one. 1232f4beacd0SJohn McCall if (cleanupDominator) 1233f4beacd0SJohn McCall cleanupDominator->eraseFromParent(); 12347a51313dSChris Lattner } 12357a51313dSChris Lattner 12367a51313dSChris Lattner //===----------------------------------------------------------------------===// 12377a51313dSChris Lattner // Entry Points into this File 12387a51313dSChris Lattner //===----------------------------------------------------------------------===// 12397a51313dSChris Lattner 124027a3631bSChris Lattner /// GetNumNonZeroBytesInInit - Get an approximate count of the number of 124127a3631bSChris Lattner /// non-zero bytes that will be stored when outputting the initializer for the 124227a3631bSChris Lattner /// specified initializer expression. 1243df94cb7dSKen Dyck static CharUnits GetNumNonZeroBytesInInit(const Expr *E, CodeGenFunction &CGF) { 124491147596SPeter Collingbourne E = E->IgnoreParens(); 124527a3631bSChris Lattner 124627a3631bSChris Lattner // 0 and 0.0 won't require any non-zero stores! 1247df94cb7dSKen Dyck if (isSimpleZero(E, CGF)) return CharUnits::Zero(); 124827a3631bSChris Lattner 124927a3631bSChris Lattner // If this is an initlist expr, sum up the size of sizes of the (present) 125027a3631bSChris Lattner // elements. If this is something weird, assume the whole thing is non-zero. 125127a3631bSChris Lattner const InitListExpr *ILE = dyn_cast<InitListExpr>(E); 125227a3631bSChris Lattner if (ILE == 0 || !CGF.getTypes().isZeroInitializable(ILE->getType())) 1253df94cb7dSKen Dyck return CGF.getContext().getTypeSizeInChars(E->getType()); 125427a3631bSChris Lattner 1255c5cc2fb9SChris Lattner // InitListExprs for structs have to be handled carefully. If there are 1256c5cc2fb9SChris Lattner // reference members, we need to consider the size of the reference, not the 1257c5cc2fb9SChris Lattner // referencee. InitListExprs for unions and arrays can't have references. 12585cd84755SChris Lattner if (const RecordType *RT = E->getType()->getAs<RecordType>()) { 12595cd84755SChris Lattner if (!RT->isUnionType()) { 1260c5cc2fb9SChris Lattner RecordDecl *SD = E->getType()->getAs<RecordType>()->getDecl(); 1261df94cb7dSKen Dyck CharUnits NumNonZeroBytes = CharUnits::Zero(); 1262c5cc2fb9SChris Lattner 1263c5cc2fb9SChris Lattner unsigned ILEElement = 0; 1264c5cc2fb9SChris Lattner for (RecordDecl::field_iterator Field = SD->field_begin(), 1265c5cc2fb9SChris Lattner FieldEnd = SD->field_end(); Field != FieldEnd; ++Field) { 1266c5cc2fb9SChris Lattner // We're done once we hit the flexible array member or run out of 1267c5cc2fb9SChris Lattner // InitListExpr elements. 1268c5cc2fb9SChris Lattner if (Field->getType()->isIncompleteArrayType() || 1269c5cc2fb9SChris Lattner ILEElement == ILE->getNumInits()) 1270c5cc2fb9SChris Lattner break; 1271c5cc2fb9SChris Lattner if (Field->isUnnamedBitfield()) 1272c5cc2fb9SChris Lattner continue; 1273c5cc2fb9SChris Lattner 1274c5cc2fb9SChris Lattner const Expr *E = ILE->getInit(ILEElement++); 1275c5cc2fb9SChris Lattner 1276c5cc2fb9SChris Lattner // Reference values are always non-null and have the width of a pointer. 12775cd84755SChris Lattner if (Field->getType()->isReferenceType()) 1278df94cb7dSKen Dyck NumNonZeroBytes += CGF.getContext().toCharUnitsFromBits( 1279c8e01705SJohn McCall CGF.getTarget().getPointerWidth(0)); 12805cd84755SChris Lattner else 1281c5cc2fb9SChris Lattner NumNonZeroBytes += GetNumNonZeroBytesInInit(E, CGF); 1282c5cc2fb9SChris Lattner } 1283c5cc2fb9SChris Lattner 1284c5cc2fb9SChris Lattner return NumNonZeroBytes; 1285c5cc2fb9SChris Lattner } 12865cd84755SChris Lattner } 1287c5cc2fb9SChris Lattner 1288c5cc2fb9SChris Lattner 1289df94cb7dSKen Dyck CharUnits NumNonZeroBytes = CharUnits::Zero(); 129027a3631bSChris Lattner for (unsigned i = 0, e = ILE->getNumInits(); i != e; ++i) 129127a3631bSChris Lattner NumNonZeroBytes += GetNumNonZeroBytesInInit(ILE->getInit(i), CGF); 129227a3631bSChris Lattner return NumNonZeroBytes; 129327a3631bSChris Lattner } 129427a3631bSChris Lattner 129527a3631bSChris Lattner /// CheckAggExprForMemSetUse - If the initializer is large and has a lot of 129627a3631bSChris Lattner /// zeros in it, emit a memset and avoid storing the individual zeros. 129727a3631bSChris Lattner /// 129827a3631bSChris Lattner static void CheckAggExprForMemSetUse(AggValueSlot &Slot, const Expr *E, 129927a3631bSChris Lattner CodeGenFunction &CGF) { 130027a3631bSChris Lattner // If the slot is already known to be zeroed, nothing to do. Don't mess with 130127a3631bSChris Lattner // volatile stores. 130227a3631bSChris Lattner if (Slot.isZeroed() || Slot.isVolatile() || Slot.getAddr() == 0) return; 130327a3631bSChris Lattner 130403535265SArgyrios Kyrtzidis // C++ objects with a user-declared constructor don't need zero'ing. 13059c6890a7SRichard Smith if (CGF.getLangOpts().CPlusPlus) 130603535265SArgyrios Kyrtzidis if (const RecordType *RT = CGF.getContext() 130703535265SArgyrios Kyrtzidis .getBaseElementType(E->getType())->getAs<RecordType>()) { 130803535265SArgyrios Kyrtzidis const CXXRecordDecl *RD = cast<CXXRecordDecl>(RT->getDecl()); 130903535265SArgyrios Kyrtzidis if (RD->hasUserDeclaredConstructor()) 131003535265SArgyrios Kyrtzidis return; 131103535265SArgyrios Kyrtzidis } 131203535265SArgyrios Kyrtzidis 131327a3631bSChris Lattner // If the type is 16-bytes or smaller, prefer individual stores over memset. 1314239a3357SKen Dyck std::pair<CharUnits, CharUnits> TypeInfo = 1315239a3357SKen Dyck CGF.getContext().getTypeInfoInChars(E->getType()); 1316239a3357SKen Dyck if (TypeInfo.first <= CharUnits::fromQuantity(16)) 131727a3631bSChris Lattner return; 131827a3631bSChris Lattner 131927a3631bSChris Lattner // Check to see if over 3/4 of the initializer are known to be zero. If so, 132027a3631bSChris Lattner // we prefer to emit memset + individual stores for the rest. 1321239a3357SKen Dyck CharUnits NumNonZeroBytes = GetNumNonZeroBytesInInit(E, CGF); 1322239a3357SKen Dyck if (NumNonZeroBytes*4 > TypeInfo.first) 132327a3631bSChris Lattner return; 132427a3631bSChris Lattner 132527a3631bSChris Lattner // Okay, it seems like a good idea to use an initial memset, emit the call. 1326239a3357SKen Dyck llvm::Constant *SizeVal = CGF.Builder.getInt64(TypeInfo.first.getQuantity()); 1327239a3357SKen Dyck CharUnits Align = TypeInfo.second; 132827a3631bSChris Lattner 132927a3631bSChris Lattner llvm::Value *Loc = Slot.getAddr(); 133027a3631bSChris Lattner 1331ece0409aSChris Lattner Loc = CGF.Builder.CreateBitCast(Loc, CGF.Int8PtrTy); 1332239a3357SKen Dyck CGF.Builder.CreateMemSet(Loc, CGF.Builder.getInt8(0), SizeVal, 1333239a3357SKen Dyck Align.getQuantity(), false); 133427a3631bSChris Lattner 133527a3631bSChris Lattner // Tell the AggExprEmitter that the slot is known zero. 133627a3631bSChris Lattner Slot.setZeroed(); 133727a3631bSChris Lattner } 133827a3631bSChris Lattner 133927a3631bSChris Lattner 134027a3631bSChris Lattner 134127a3631bSChris Lattner 134225306cacSMike Stump /// EmitAggExpr - Emit the computation of the specified expression of aggregate 134325306cacSMike Stump /// type. The result is computed into DestPtr. Note that if DestPtr is null, 134425306cacSMike Stump /// the value of the aggregate expression is not needed. If VolatileDest is 134525306cacSMike Stump /// true, DestPtr cannot be 0. 13464e8ca4faSJohn McCall void CodeGenFunction::EmitAggExpr(const Expr *E, AggValueSlot Slot) { 134747fb9508SJohn McCall assert(E && hasAggregateEvaluationKind(E->getType()) && 13487a51313dSChris Lattner "Invalid aggregate expression to emit"); 134927a3631bSChris Lattner assert((Slot.getAddr() != 0 || Slot.isIgnored()) && 135027a3631bSChris Lattner "slot has bits but no address"); 13517a51313dSChris Lattner 135227a3631bSChris Lattner // Optimize the slot if possible. 135327a3631bSChris Lattner CheckAggExprForMemSetUse(Slot, E, *this); 135427a3631bSChris Lattner 13554e8ca4faSJohn McCall AggExprEmitter(*this, Slot).Visit(const_cast<Expr*>(E)); 13567a51313dSChris Lattner } 13570bc8e86dSDaniel Dunbar 1358d0bc7b9dSDaniel Dunbar LValue CodeGenFunction::EmitAggExprToLValue(const Expr *E) { 135947fb9508SJohn McCall assert(hasAggregateEvaluationKind(E->getType()) && "Invalid argument!"); 1360a7566f16SDaniel Dunbar llvm::Value *Temp = CreateMemTemp(E->getType()); 13612e442a00SDaniel Dunbar LValue LV = MakeAddrLValue(Temp, E->getType()); 13628d6fc958SJohn McCall EmitAggExpr(E, AggValueSlot::forLValue(LV, AggValueSlot::IsNotDestructed, 136346759f4fSJohn McCall AggValueSlot::DoesNotNeedGCBarriers, 1364615ed1a3SChad Rosier AggValueSlot::IsNotAliased)); 13652e442a00SDaniel Dunbar return LV; 1366d0bc7b9dSDaniel Dunbar } 1367d0bc7b9dSDaniel Dunbar 1368615ed1a3SChad Rosier void CodeGenFunction::EmitAggregateCopy(llvm::Value *DestPtr, 1369615ed1a3SChad Rosier llvm::Value *SrcPtr, QualType Ty, 13704e8ca4faSJohn McCall bool isVolatile, 13711ca66919SBenjamin Kramer CharUnits alignment, 13721ca66919SBenjamin Kramer bool isAssignment) { 1373615ed1a3SChad Rosier assert(!Ty->isAnyComplexType() && "Shouldn't happen for complex"); 13740bc8e86dSDaniel Dunbar 13759c6890a7SRichard Smith if (getLangOpts().CPlusPlus) { 1376615ed1a3SChad Rosier if (const RecordType *RT = Ty->getAs<RecordType>()) { 1377615ed1a3SChad Rosier CXXRecordDecl *Record = cast<CXXRecordDecl>(RT->getDecl()); 1378615ed1a3SChad Rosier assert((Record->hasTrivialCopyConstructor() || 1379615ed1a3SChad Rosier Record->hasTrivialCopyAssignment() || 1380615ed1a3SChad Rosier Record->hasTrivialMoveConstructor() || 1381615ed1a3SChad Rosier Record->hasTrivialMoveAssignment()) && 138216488472SRichard Smith "Trying to aggregate-copy a type without a trivial copy/move " 1383f22101a0SDouglas Gregor "constructor or assignment operator"); 1384615ed1a3SChad Rosier // Ignore empty classes in C++. 1385615ed1a3SChad Rosier if (Record->isEmpty()) 138616e94af6SAnders Carlsson return; 138716e94af6SAnders Carlsson } 138816e94af6SAnders Carlsson } 138916e94af6SAnders Carlsson 1390ca05dfefSChris Lattner // Aggregate assignment turns into llvm.memcpy. This is almost valid per 13913ef668c2SChris Lattner // C99 6.5.16.1p3, which states "If the value being stored in an object is 13923ef668c2SChris Lattner // read from another object that overlaps in anyway the storage of the first 13933ef668c2SChris Lattner // object, then the overlap shall be exact and the two objects shall have 13943ef668c2SChris Lattner // qualified or unqualified versions of a compatible type." 13953ef668c2SChris Lattner // 1396ca05dfefSChris Lattner // memcpy is not defined if the source and destination pointers are exactly 13973ef668c2SChris Lattner // equal, but other compilers do this optimization, and almost every memcpy 13983ef668c2SChris Lattner // implementation handles this case safely. If there is a libc that does not 13993ef668c2SChris Lattner // safely handle this, we can add a target hook. 14000bc8e86dSDaniel Dunbar 14011ca66919SBenjamin Kramer // Get data size and alignment info for this aggregate. If this is an 14021ca66919SBenjamin Kramer // assignment don't copy the tail padding. Otherwise copying it is fine. 14031ca66919SBenjamin Kramer std::pair<CharUnits, CharUnits> TypeInfo; 14041ca66919SBenjamin Kramer if (isAssignment) 14051ca66919SBenjamin Kramer TypeInfo = getContext().getTypeInfoDataSizeInChars(Ty); 14061ca66919SBenjamin Kramer else 14071ca66919SBenjamin Kramer TypeInfo = getContext().getTypeInfoInChars(Ty); 1408615ed1a3SChad Rosier 14094e8ca4faSJohn McCall if (alignment.isZero()) 14104e8ca4faSJohn McCall alignment = TypeInfo.second; 1411615ed1a3SChad Rosier 1412615ed1a3SChad Rosier // FIXME: Handle variable sized types. 1413615ed1a3SChad Rosier 1414615ed1a3SChad Rosier // FIXME: If we have a volatile struct, the optimizer can remove what might 1415615ed1a3SChad Rosier // appear to be `extra' memory ops: 1416615ed1a3SChad Rosier // 1417615ed1a3SChad Rosier // volatile struct { int i; } a, b; 1418615ed1a3SChad Rosier // 1419615ed1a3SChad Rosier // int main() { 1420615ed1a3SChad Rosier // a = b; 1421615ed1a3SChad Rosier // a = b; 1422615ed1a3SChad Rosier // } 1423615ed1a3SChad Rosier // 1424615ed1a3SChad Rosier // we need to use a different call here. We use isVolatile to indicate when 1425615ed1a3SChad Rosier // either the source or the destination is volatile. 1426615ed1a3SChad Rosier 1427615ed1a3SChad Rosier llvm::PointerType *DPT = cast<llvm::PointerType>(DestPtr->getType()); 1428615ed1a3SChad Rosier llvm::Type *DBP = 1429615ed1a3SChad Rosier llvm::Type::getInt8PtrTy(getLLVMContext(), DPT->getAddressSpace()); 1430615ed1a3SChad Rosier DestPtr = Builder.CreateBitCast(DestPtr, DBP); 1431615ed1a3SChad Rosier 1432615ed1a3SChad Rosier llvm::PointerType *SPT = cast<llvm::PointerType>(SrcPtr->getType()); 1433615ed1a3SChad Rosier llvm::Type *SBP = 1434615ed1a3SChad Rosier llvm::Type::getInt8PtrTy(getLLVMContext(), SPT->getAddressSpace()); 1435615ed1a3SChad Rosier SrcPtr = Builder.CreateBitCast(SrcPtr, SBP); 1436615ed1a3SChad Rosier 1437615ed1a3SChad Rosier // Don't do any of the memmove_collectable tests if GC isn't set. 1438615ed1a3SChad Rosier if (CGM.getLangOpts().getGC() == LangOptions::NonGC) { 1439615ed1a3SChad Rosier // fall through 1440615ed1a3SChad Rosier } else if (const RecordType *RecordTy = Ty->getAs<RecordType>()) { 1441615ed1a3SChad Rosier RecordDecl *Record = RecordTy->getDecl(); 1442615ed1a3SChad Rosier if (Record->hasObjectMember()) { 1443615ed1a3SChad Rosier CharUnits size = TypeInfo.first; 1444615ed1a3SChad Rosier llvm::Type *SizeTy = ConvertType(getContext().getSizeType()); 1445615ed1a3SChad Rosier llvm::Value *SizeVal = llvm::ConstantInt::get(SizeTy, size.getQuantity()); 1446615ed1a3SChad Rosier CGM.getObjCRuntime().EmitGCMemmoveCollectable(*this, DestPtr, SrcPtr, 1447615ed1a3SChad Rosier SizeVal); 1448615ed1a3SChad Rosier return; 1449615ed1a3SChad Rosier } 1450615ed1a3SChad Rosier } else if (Ty->isArrayType()) { 1451615ed1a3SChad Rosier QualType BaseType = getContext().getBaseElementType(Ty); 1452615ed1a3SChad Rosier if (const RecordType *RecordTy = BaseType->getAs<RecordType>()) { 1453615ed1a3SChad Rosier if (RecordTy->getDecl()->hasObjectMember()) { 1454615ed1a3SChad Rosier CharUnits size = TypeInfo.first; 1455615ed1a3SChad Rosier llvm::Type *SizeTy = ConvertType(getContext().getSizeType()); 1456615ed1a3SChad Rosier llvm::Value *SizeVal = 1457615ed1a3SChad Rosier llvm::ConstantInt::get(SizeTy, size.getQuantity()); 1458615ed1a3SChad Rosier CGM.getObjCRuntime().EmitGCMemmoveCollectable(*this, DestPtr, SrcPtr, 1459615ed1a3SChad Rosier SizeVal); 1460615ed1a3SChad Rosier return; 1461615ed1a3SChad Rosier } 1462615ed1a3SChad Rosier } 1463615ed1a3SChad Rosier } 1464615ed1a3SChad Rosier 146522695fceSDan Gohman // Determine the metadata to describe the position of any padding in this 146622695fceSDan Gohman // memcpy, as well as the TBAA tags for the members of the struct, in case 146722695fceSDan Gohman // the optimizer wishes to expand it in to scalar memory operations. 146822695fceSDan Gohman llvm::MDNode *TBAAStructTag = CGM.getTBAAStructInfo(Ty); 146922695fceSDan Gohman 1470615ed1a3SChad Rosier Builder.CreateMemCpy(DestPtr, SrcPtr, 1471615ed1a3SChad Rosier llvm::ConstantInt::get(IntPtrTy, 1472615ed1a3SChad Rosier TypeInfo.first.getQuantity()), 147322695fceSDan Gohman alignment.getQuantity(), isVolatile, 147422695fceSDan Gohman /*TBAATag=*/0, TBAAStructTag); 14750bc8e86dSDaniel Dunbar } 1476