159486a2dSAnders Carlsson //===--- CGExprCXX.cpp - Emit LLVM Code for C++ expressions ---------------===// 259486a2dSAnders Carlsson // 359486a2dSAnders Carlsson // The LLVM Compiler Infrastructure 459486a2dSAnders Carlsson // 559486a2dSAnders Carlsson // This file is distributed under the University of Illinois Open Source 659486a2dSAnders Carlsson // License. See LICENSE.TXT for details. 759486a2dSAnders Carlsson // 859486a2dSAnders Carlsson //===----------------------------------------------------------------------===// 959486a2dSAnders Carlsson // 1059486a2dSAnders Carlsson // This contains code dealing with code generation of C++ expressions 1159486a2dSAnders Carlsson // 1259486a2dSAnders Carlsson //===----------------------------------------------------------------------===// 1359486a2dSAnders Carlsson 1491bbb554SDevang Patel #include "clang/Frontend/CodeGenOptions.h" 1559486a2dSAnders Carlsson #include "CodeGenFunction.h" 165d865c32SJohn McCall #include "CGCXXABI.h" 1760d215b6SFariborz Jahanian #include "CGObjCRuntime.h" 1891bbb554SDevang Patel #include "CGDebugInfo.h" 1926008e07SChris Lattner #include "llvm/Intrinsics.h" 2059486a2dSAnders Carlsson using namespace clang; 2159486a2dSAnders Carlsson using namespace CodeGen; 2259486a2dSAnders Carlsson 2327da15baSAnders Carlsson RValue CodeGenFunction::EmitCXXMemberCall(const CXXMethodDecl *MD, 2427da15baSAnders Carlsson llvm::Value *Callee, 2527da15baSAnders Carlsson ReturnValueSlot ReturnValue, 2627da15baSAnders Carlsson llvm::Value *This, 27e36a6b3eSAnders Carlsson llvm::Value *VTT, 2827da15baSAnders Carlsson CallExpr::const_arg_iterator ArgBeg, 2927da15baSAnders Carlsson CallExpr::const_arg_iterator ArgEnd) { 3027da15baSAnders Carlsson assert(MD->isInstance() && 3127da15baSAnders Carlsson "Trying to emit a member call expr on a static method!"); 3227da15baSAnders Carlsson 3327da15baSAnders Carlsson const FunctionProtoType *FPT = MD->getType()->getAs<FunctionProtoType>(); 3427da15baSAnders Carlsson 3527da15baSAnders Carlsson CallArgList Args; 3627da15baSAnders Carlsson 3727da15baSAnders Carlsson // Push the this ptr. 3827da15baSAnders Carlsson Args.push_back(std::make_pair(RValue::get(This), 3927da15baSAnders Carlsson MD->getThisType(getContext()))); 4027da15baSAnders Carlsson 41e36a6b3eSAnders Carlsson // If there is a VTT parameter, emit it. 42e36a6b3eSAnders Carlsson if (VTT) { 43e36a6b3eSAnders Carlsson QualType T = getContext().getPointerType(getContext().VoidPtrTy); 44e36a6b3eSAnders Carlsson Args.push_back(std::make_pair(RValue::get(VTT), T)); 45e36a6b3eSAnders Carlsson } 46e36a6b3eSAnders Carlsson 4727da15baSAnders Carlsson // And the rest of the call args 4827da15baSAnders Carlsson EmitCallArgs(Args, FPT, ArgBeg, ArgEnd); 4927da15baSAnders Carlsson 50ab26cfa5SJohn McCall QualType ResultType = FPT->getResultType(); 5199cc30c3STilmann Scheller return EmitCall(CGM.getTypes().getFunctionInfo(ResultType, Args, 5299cc30c3STilmann Scheller FPT->getExtInfo()), 53c50c27ccSRafael Espindola Callee, ReturnValue, Args, MD); 5427da15baSAnders Carlsson } 5527da15baSAnders Carlsson 561ae64c5aSAnders Carlsson static const CXXRecordDecl *getMostDerivedClassDecl(const Expr *Base) { 576b3afd7dSAnders Carlsson const Expr *E = Base; 586b3afd7dSAnders Carlsson 596b3afd7dSAnders Carlsson while (true) { 606b3afd7dSAnders Carlsson E = E->IgnoreParens(); 616b3afd7dSAnders Carlsson if (const CastExpr *CE = dyn_cast<CastExpr>(E)) { 626b3afd7dSAnders Carlsson if (CE->getCastKind() == CK_DerivedToBase || 636b3afd7dSAnders Carlsson CE->getCastKind() == CK_UncheckedDerivedToBase || 646b3afd7dSAnders Carlsson CE->getCastKind() == CK_NoOp) { 656b3afd7dSAnders Carlsson E = CE->getSubExpr(); 666b3afd7dSAnders Carlsson continue; 676b3afd7dSAnders Carlsson } 686b3afd7dSAnders Carlsson } 696b3afd7dSAnders Carlsson 706b3afd7dSAnders Carlsson break; 716b3afd7dSAnders Carlsson } 726b3afd7dSAnders Carlsson 736b3afd7dSAnders Carlsson QualType DerivedType = E->getType(); 741ae64c5aSAnders Carlsson if (const PointerType *PTy = DerivedType->getAs<PointerType>()) 751ae64c5aSAnders Carlsson DerivedType = PTy->getPointeeType(); 761ae64c5aSAnders Carlsson 771ae64c5aSAnders Carlsson return cast<CXXRecordDecl>(DerivedType->castAs<RecordType>()->getDecl()); 781ae64c5aSAnders Carlsson } 791ae64c5aSAnders Carlsson 80*c53d9e83SAnders Carlsson // FIXME: Ideally Expr::IgnoreParenNoopCasts should do this, but it doesn't do 81*c53d9e83SAnders Carlsson // quite what we want. 82*c53d9e83SAnders Carlsson static const Expr *skipNoOpCastsAndParens(const Expr *E) { 83*c53d9e83SAnders Carlsson while (true) { 84*c53d9e83SAnders Carlsson if (const ParenExpr *PE = dyn_cast<ParenExpr>(E)) { 85*c53d9e83SAnders Carlsson E = PE->getSubExpr(); 86*c53d9e83SAnders Carlsson continue; 87*c53d9e83SAnders Carlsson } 88*c53d9e83SAnders Carlsson 89*c53d9e83SAnders Carlsson if (const CastExpr *CE = dyn_cast<CastExpr>(E)) { 90*c53d9e83SAnders Carlsson if (CE->getCastKind() == CK_NoOp) { 91*c53d9e83SAnders Carlsson E = CE->getSubExpr(); 92*c53d9e83SAnders Carlsson continue; 93*c53d9e83SAnders Carlsson } 94*c53d9e83SAnders Carlsson } 95*c53d9e83SAnders Carlsson if (const UnaryOperator *UO = dyn_cast<UnaryOperator>(E)) { 96*c53d9e83SAnders Carlsson if (UO->getOpcode() == UO_Extension) { 97*c53d9e83SAnders Carlsson E = UO->getSubExpr(); 98*c53d9e83SAnders Carlsson continue; 99*c53d9e83SAnders Carlsson } 100*c53d9e83SAnders Carlsson } 101*c53d9e83SAnders Carlsson return E; 102*c53d9e83SAnders Carlsson } 103*c53d9e83SAnders Carlsson } 104*c53d9e83SAnders Carlsson 10527da15baSAnders Carlsson /// canDevirtualizeMemberFunctionCalls - Checks whether virtual calls on given 10627da15baSAnders Carlsson /// expr can be devirtualized. 107252a47f6SFariborz Jahanian static bool canDevirtualizeMemberFunctionCalls(ASTContext &Context, 108252a47f6SFariborz Jahanian const Expr *Base, 109a7911fa3SAnders Carlsson const CXXMethodDecl *MD) { 110a7911fa3SAnders Carlsson 1111ae64c5aSAnders Carlsson // When building with -fapple-kext, all calls must go through the vtable since 1121ae64c5aSAnders Carlsson // the kernel linker can do runtime patching of vtables. 113252a47f6SFariborz Jahanian if (Context.getLangOptions().AppleKext) 114252a47f6SFariborz Jahanian return false; 115252a47f6SFariborz Jahanian 1161ae64c5aSAnders Carlsson // If the most derived class is marked final, we know that no subclass can 1171ae64c5aSAnders Carlsson // override this member function and so we can devirtualize it. For example: 1181ae64c5aSAnders Carlsson // 1191ae64c5aSAnders Carlsson // struct A { virtual void f(); } 1201ae64c5aSAnders Carlsson // struct B final : A { }; 1211ae64c5aSAnders Carlsson // 1221ae64c5aSAnders Carlsson // void f(B *b) { 1231ae64c5aSAnders Carlsson // b->f(); 1241ae64c5aSAnders Carlsson // } 1251ae64c5aSAnders Carlsson // 1261ae64c5aSAnders Carlsson const CXXRecordDecl *MostDerivedClassDecl = getMostDerivedClassDecl(Base); 1271ae64c5aSAnders Carlsson if (MostDerivedClassDecl->hasAttr<FinalAttr>()) 1281ae64c5aSAnders Carlsson return true; 1291ae64c5aSAnders Carlsson 13019588aa4SAnders Carlsson // If the member function is marked 'final', we know that it can't be 131b00c2144SAnders Carlsson // overridden and can therefore devirtualize it. 1321eb95961SAnders Carlsson if (MD->hasAttr<FinalAttr>()) 133a7911fa3SAnders Carlsson return true; 134a7911fa3SAnders Carlsson 13519588aa4SAnders Carlsson // Similarly, if the class itself is marked 'final' it can't be overridden 13619588aa4SAnders Carlsson // and we can therefore devirtualize the member function call. 1371eb95961SAnders Carlsson if (MD->getParent()->hasAttr<FinalAttr>()) 138b00c2144SAnders Carlsson return true; 139b00c2144SAnders Carlsson 140*c53d9e83SAnders Carlsson Base = skipNoOpCastsAndParens(Base); 14127da15baSAnders Carlsson if (const DeclRefExpr *DRE = dyn_cast<DeclRefExpr>(Base)) { 14227da15baSAnders Carlsson if (const VarDecl *VD = dyn_cast<VarDecl>(DRE->getDecl())) { 14327da15baSAnders Carlsson // This is a record decl. We know the type and can devirtualize it. 14427da15baSAnders Carlsson return VD->getType()->isRecordType(); 14527da15baSAnders Carlsson } 14627da15baSAnders Carlsson 14727da15baSAnders Carlsson return false; 14827da15baSAnders Carlsson } 14927da15baSAnders Carlsson 15027da15baSAnders Carlsson // We can always devirtualize calls on temporary object expressions. 151a682427eSEli Friedman if (isa<CXXConstructExpr>(Base)) 15227da15baSAnders Carlsson return true; 15327da15baSAnders Carlsson 15427da15baSAnders Carlsson // And calls on bound temporaries. 15527da15baSAnders Carlsson if (isa<CXXBindTemporaryExpr>(Base)) 15627da15baSAnders Carlsson return true; 15727da15baSAnders Carlsson 15827da15baSAnders Carlsson // Check if this is a call expr that returns a record type. 15927da15baSAnders Carlsson if (const CallExpr *CE = dyn_cast<CallExpr>(Base)) 16027da15baSAnders Carlsson return CE->getCallReturnType()->isRecordType(); 16127da15baSAnders Carlsson 16227da15baSAnders Carlsson // We can't devirtualize the call. 16327da15baSAnders Carlsson return false; 16427da15baSAnders Carlsson } 16527da15baSAnders Carlsson 16664225794SFrancois Pichet // Note: This function also emit constructor calls to support a MSVC 16764225794SFrancois Pichet // extensions allowing explicit constructor function call. 16827da15baSAnders Carlsson RValue CodeGenFunction::EmitCXXMemberCallExpr(const CXXMemberCallExpr *CE, 16927da15baSAnders Carlsson ReturnValueSlot ReturnValue) { 17027da15baSAnders Carlsson if (isa<BinaryOperator>(CE->getCallee()->IgnoreParens())) 17127da15baSAnders Carlsson return EmitCXXMemberPointerCallExpr(CE, ReturnValue); 17227da15baSAnders Carlsson 17327da15baSAnders Carlsson const MemberExpr *ME = cast<MemberExpr>(CE->getCallee()->IgnoreParens()); 17427da15baSAnders Carlsson const CXXMethodDecl *MD = cast<CXXMethodDecl>(ME->getMemberDecl()); 17527da15baSAnders Carlsson 17691bbb554SDevang Patel CGDebugInfo *DI = getDebugInfo(); 177401c916cSDevang Patel if (DI && CGM.getCodeGenOpts().LimitDebugInfo 178401c916cSDevang Patel && !isa<CallExpr>(ME->getBase())) { 17991bbb554SDevang Patel QualType PQTy = ME->getBase()->IgnoreParenImpCasts()->getType(); 18091bbb554SDevang Patel if (const PointerType * PTy = dyn_cast<PointerType>(PQTy)) { 18191bbb554SDevang Patel DI->getOrCreateRecordType(PTy->getPointeeType(), 18291bbb554SDevang Patel MD->getParent()->getLocation()); 18391bbb554SDevang Patel } 18491bbb554SDevang Patel } 18591bbb554SDevang Patel 18627da15baSAnders Carlsson if (MD->isStatic()) { 18727da15baSAnders Carlsson // The method is static, emit it as we would a regular call. 18827da15baSAnders Carlsson llvm::Value *Callee = CGM.GetAddrOfFunction(MD); 18927da15baSAnders Carlsson return EmitCall(getContext().getPointerType(MD->getType()), Callee, 19027da15baSAnders Carlsson ReturnValue, CE->arg_begin(), CE->arg_end()); 19127da15baSAnders Carlsson } 19227da15baSAnders Carlsson 1930d635f53SJohn McCall // Compute the object pointer. 19427da15baSAnders Carlsson llvm::Value *This; 19527da15baSAnders Carlsson if (ME->isArrow()) 19627da15baSAnders Carlsson This = EmitScalarExpr(ME->getBase()); 197f93ac894SFariborz Jahanian else 198e26a872bSJohn McCall This = EmitLValue(ME->getBase()).getAddress(); 19927da15baSAnders Carlsson 2000d635f53SJohn McCall if (MD->isTrivial()) { 2010d635f53SJohn McCall if (isa<CXXDestructorDecl>(MD)) return RValue::get(0); 20264225794SFrancois Pichet if (isa<CXXConstructorDecl>(MD) && 20364225794SFrancois Pichet cast<CXXConstructorDecl>(MD)->isDefaultConstructor()) 20464225794SFrancois Pichet return RValue::get(0); 2050d635f53SJohn McCall 20664225794SFrancois Pichet if (MD->isCopyAssignmentOperator()) { 20727da15baSAnders Carlsson // We don't like to generate the trivial copy assignment operator when 20827da15baSAnders Carlsson // it isn't necessary; just produce the proper effect here. 20927da15baSAnders Carlsson llvm::Value *RHS = EmitLValue(*CE->arg_begin()).getAddress(); 21027da15baSAnders Carlsson EmitAggregateCopy(This, RHS, CE->getType()); 21127da15baSAnders Carlsson return RValue::get(This); 21227da15baSAnders Carlsson } 21327da15baSAnders Carlsson 21464225794SFrancois Pichet if (isa<CXXConstructorDecl>(MD) && 21564225794SFrancois Pichet cast<CXXConstructorDecl>(MD)->isCopyConstructor()) { 21664225794SFrancois Pichet llvm::Value *RHS = EmitLValue(*CE->arg_begin()).getAddress(); 21764225794SFrancois Pichet EmitSynthesizedCXXCopyCtorCall(cast<CXXConstructorDecl>(MD), This, RHS, 21864225794SFrancois Pichet CE->arg_begin(), CE->arg_end()); 21964225794SFrancois Pichet return RValue::get(This); 22064225794SFrancois Pichet } 22164225794SFrancois Pichet llvm_unreachable("unknown trivial member function"); 22264225794SFrancois Pichet } 22364225794SFrancois Pichet 2240d635f53SJohn McCall // Compute the function type we're calling. 22564225794SFrancois Pichet const CGFunctionInfo *FInfo = 0; 22664225794SFrancois Pichet if (isa<CXXDestructorDecl>(MD)) 22764225794SFrancois Pichet FInfo = &CGM.getTypes().getFunctionInfo(cast<CXXDestructorDecl>(MD), 22864225794SFrancois Pichet Dtor_Complete); 22964225794SFrancois Pichet else if (isa<CXXConstructorDecl>(MD)) 23064225794SFrancois Pichet FInfo = &CGM.getTypes().getFunctionInfo(cast<CXXConstructorDecl>(MD), 23164225794SFrancois Pichet Ctor_Complete); 23264225794SFrancois Pichet else 23364225794SFrancois Pichet FInfo = &CGM.getTypes().getFunctionInfo(MD); 2340d635f53SJohn McCall 2350d635f53SJohn McCall const FunctionProtoType *FPT = MD->getType()->getAs<FunctionProtoType>(); 2360d635f53SJohn McCall const llvm::Type *Ty 23764225794SFrancois Pichet = CGM.getTypes().GetFunctionType(*FInfo, FPT->isVariadic()); 2380d635f53SJohn McCall 23927da15baSAnders Carlsson // C++ [class.virtual]p12: 24027da15baSAnders Carlsson // Explicit qualification with the scope operator (5.1) suppresses the 24127da15baSAnders Carlsson // virtual call mechanism. 24227da15baSAnders Carlsson // 24327da15baSAnders Carlsson // We also don't emit a virtual call if the base expression has a record type 24427da15baSAnders Carlsson // because then we know what the type is. 24547609b08SFariborz Jahanian bool UseVirtualCall; 24647609b08SFariborz Jahanian UseVirtualCall = MD->isVirtual() && !ME->hasQualifier() 247252a47f6SFariborz Jahanian && !canDevirtualizeMemberFunctionCalls(getContext(), 248252a47f6SFariborz Jahanian ME->getBase(), MD); 24927da15baSAnders Carlsson llvm::Value *Callee; 2500d635f53SJohn McCall if (const CXXDestructorDecl *Dtor = dyn_cast<CXXDestructorDecl>(MD)) { 2510d635f53SJohn McCall if (UseVirtualCall) { 2520d635f53SJohn McCall Callee = BuildVirtualCall(Dtor, Dtor_Complete, This, Ty); 25327da15baSAnders Carlsson } else { 254265c325eSFariborz Jahanian if (getContext().getLangOptions().AppleKext && 255265c325eSFariborz Jahanian MD->isVirtual() && 256265c325eSFariborz Jahanian ME->hasQualifier()) 2577f6f81baSFariborz Jahanian Callee = BuildAppleKextVirtualCall(MD, ME->getQualifier(), Ty); 258265c325eSFariborz Jahanian else 2590d635f53SJohn McCall Callee = CGM.GetAddrOfFunction(GlobalDecl(Dtor, Dtor_Complete), Ty); 26027da15baSAnders Carlsson } 26164225794SFrancois Pichet } else if (const CXXConstructorDecl *Ctor = 26264225794SFrancois Pichet dyn_cast<CXXConstructorDecl>(MD)) { 26364225794SFrancois Pichet Callee = CGM.GetAddrOfFunction(GlobalDecl(Ctor, Ctor_Complete), Ty); 2640d635f53SJohn McCall } else if (UseVirtualCall) { 26527da15baSAnders Carlsson Callee = BuildVirtualCall(MD, This, Ty); 26627da15baSAnders Carlsson } else { 267252a47f6SFariborz Jahanian if (getContext().getLangOptions().AppleKext && 2689f9438b3SFariborz Jahanian MD->isVirtual() && 269252a47f6SFariborz Jahanian ME->hasQualifier()) 2707f6f81baSFariborz Jahanian Callee = BuildAppleKextVirtualCall(MD, ME->getQualifier(), Ty); 271252a47f6SFariborz Jahanian else 27227da15baSAnders Carlsson Callee = CGM.GetAddrOfFunction(MD, Ty); 27327da15baSAnders Carlsson } 27427da15baSAnders Carlsson 275e36a6b3eSAnders Carlsson return EmitCXXMemberCall(MD, Callee, ReturnValue, This, /*VTT=*/0, 27627da15baSAnders Carlsson CE->arg_begin(), CE->arg_end()); 27727da15baSAnders Carlsson } 27827da15baSAnders Carlsson 27927da15baSAnders Carlsson RValue 28027da15baSAnders Carlsson CodeGenFunction::EmitCXXMemberPointerCallExpr(const CXXMemberCallExpr *E, 28127da15baSAnders Carlsson ReturnValueSlot ReturnValue) { 28227da15baSAnders Carlsson const BinaryOperator *BO = 28327da15baSAnders Carlsson cast<BinaryOperator>(E->getCallee()->IgnoreParens()); 28427da15baSAnders Carlsson const Expr *BaseExpr = BO->getLHS(); 28527da15baSAnders Carlsson const Expr *MemFnExpr = BO->getRHS(); 28627da15baSAnders Carlsson 28727da15baSAnders Carlsson const MemberPointerType *MPT = 28827da15baSAnders Carlsson MemFnExpr->getType()->getAs<MemberPointerType>(); 289475999dcSJohn McCall 29027da15baSAnders Carlsson const FunctionProtoType *FPT = 29127da15baSAnders Carlsson MPT->getPointeeType()->getAs<FunctionProtoType>(); 29227da15baSAnders Carlsson const CXXRecordDecl *RD = 29327da15baSAnders Carlsson cast<CXXRecordDecl>(MPT->getClass()->getAs<RecordType>()->getDecl()); 29427da15baSAnders Carlsson 29527da15baSAnders Carlsson // Get the member function pointer. 296a1dee530SJohn McCall llvm::Value *MemFnPtr = EmitScalarExpr(MemFnExpr); 29727da15baSAnders Carlsson 29827da15baSAnders Carlsson // Emit the 'this' pointer. 29927da15baSAnders Carlsson llvm::Value *This; 30027da15baSAnders Carlsson 301e302792bSJohn McCall if (BO->getOpcode() == BO_PtrMemI) 30227da15baSAnders Carlsson This = EmitScalarExpr(BaseExpr); 30327da15baSAnders Carlsson else 30427da15baSAnders Carlsson This = EmitLValue(BaseExpr).getAddress(); 30527da15baSAnders Carlsson 306475999dcSJohn McCall // Ask the ABI to load the callee. Note that This is modified. 307475999dcSJohn McCall llvm::Value *Callee = 308ad7c5c16SJohn McCall CGM.getCXXABI().EmitLoadOfMemberFunctionPointer(*this, This, MemFnPtr, MPT); 30927da15baSAnders Carlsson 31027da15baSAnders Carlsson CallArgList Args; 31127da15baSAnders Carlsson 31227da15baSAnders Carlsson QualType ThisType = 31327da15baSAnders Carlsson getContext().getPointerType(getContext().getTagDeclType(RD)); 31427da15baSAnders Carlsson 31527da15baSAnders Carlsson // Push the this ptr. 31627da15baSAnders Carlsson Args.push_back(std::make_pair(RValue::get(This), ThisType)); 31727da15baSAnders Carlsson 31827da15baSAnders Carlsson // And the rest of the call args 31927da15baSAnders Carlsson EmitCallArgs(Args, FPT, E->arg_begin(), E->arg_end()); 320ab26cfa5SJohn McCall const FunctionType *BO_FPT = BO->getType()->getAs<FunctionProtoType>(); 32199cc30c3STilmann Scheller return EmitCall(CGM.getTypes().getFunctionInfo(Args, BO_FPT), Callee, 32299cc30c3STilmann Scheller ReturnValue, Args); 32327da15baSAnders Carlsson } 32427da15baSAnders Carlsson 32527da15baSAnders Carlsson RValue 32627da15baSAnders Carlsson CodeGenFunction::EmitCXXOperatorMemberCallExpr(const CXXOperatorCallExpr *E, 32727da15baSAnders Carlsson const CXXMethodDecl *MD, 32827da15baSAnders Carlsson ReturnValueSlot ReturnValue) { 32927da15baSAnders Carlsson assert(MD->isInstance() && 33027da15baSAnders Carlsson "Trying to emit a member call expr on a static method!"); 331e26a872bSJohn McCall LValue LV = EmitLValue(E->getArg(0)); 332e26a872bSJohn McCall llvm::Value *This = LV.getAddress(); 333e26a872bSJohn McCall 334ec3bec0cSDouglas Gregor if (MD->isCopyAssignmentOperator()) { 33527da15baSAnders Carlsson const CXXRecordDecl *ClassDecl = cast<CXXRecordDecl>(MD->getDeclContext()); 33627da15baSAnders Carlsson if (ClassDecl->hasTrivialCopyAssignment()) { 33727da15baSAnders Carlsson assert(!ClassDecl->hasUserDeclaredCopyAssignment() && 33827da15baSAnders Carlsson "EmitCXXOperatorMemberCallExpr - user declared copy assignment"); 33927da15baSAnders Carlsson llvm::Value *Src = EmitLValue(E->getArg(1)).getAddress(); 34027da15baSAnders Carlsson QualType Ty = E->getType(); 34127da15baSAnders Carlsson EmitAggregateCopy(This, Src, Ty); 34227da15baSAnders Carlsson return RValue::get(This); 34327da15baSAnders Carlsson } 34427da15baSAnders Carlsson } 34527da15baSAnders Carlsson 34627da15baSAnders Carlsson const FunctionProtoType *FPT = MD->getType()->getAs<FunctionProtoType>(); 34727da15baSAnders Carlsson const llvm::Type *Ty = 34827da15baSAnders Carlsson CGM.getTypes().GetFunctionType(CGM.getTypes().getFunctionInfo(MD), 34927da15baSAnders Carlsson FPT->isVariadic()); 35027da15baSAnders Carlsson llvm::Value *Callee; 35147609b08SFariborz Jahanian if (MD->isVirtual() && 352252a47f6SFariborz Jahanian !canDevirtualizeMemberFunctionCalls(getContext(), 353252a47f6SFariborz Jahanian E->getArg(0), MD)) 35427da15baSAnders Carlsson Callee = BuildVirtualCall(MD, This, Ty); 35527da15baSAnders Carlsson else 35627da15baSAnders Carlsson Callee = CGM.GetAddrOfFunction(MD, Ty); 35727da15baSAnders Carlsson 358e36a6b3eSAnders Carlsson return EmitCXXMemberCall(MD, Callee, ReturnValue, This, /*VTT=*/0, 35927da15baSAnders Carlsson E->arg_begin() + 1, E->arg_end()); 36027da15baSAnders Carlsson } 36127da15baSAnders Carlsson 36227da15baSAnders Carlsson void 3637a626f63SJohn McCall CodeGenFunction::EmitCXXConstructExpr(const CXXConstructExpr *E, 3647a626f63SJohn McCall AggValueSlot Dest) { 3657a626f63SJohn McCall assert(!Dest.isIgnored() && "Must have a destination!"); 36627da15baSAnders Carlsson const CXXConstructorDecl *CD = E->getConstructor(); 367630c76efSDouglas Gregor 368630c76efSDouglas Gregor // If we require zero initialization before (or instead of) calling the 369630c76efSDouglas Gregor // constructor, as can be the case with a non-user-provided default 370630c76efSDouglas Gregor // constructor, emit the zero initialization now. 371e3b3464dSDouglas Gregor if (E->requiresZeroInitialization()) 3727a626f63SJohn McCall EmitNullInitialization(Dest.getAddr(), E->getType()); 373630c76efSDouglas Gregor 374630c76efSDouglas Gregor // If this is a call to a trivial default constructor, do nothing. 375630c76efSDouglas Gregor if (CD->isTrivial() && CD->isDefaultConstructor()) 37627da15baSAnders Carlsson return; 377630c76efSDouglas Gregor 3788ea46b66SJohn McCall // Elide the constructor if we're constructing from a temporary. 3798ea46b66SJohn McCall // The temporary check is required because Sema sets this on NRVO 3808ea46b66SJohn McCall // returns. 38127da15baSAnders Carlsson if (getContext().getLangOptions().ElideConstructors && E->isElidable()) { 3828ea46b66SJohn McCall assert(getContext().hasSameUnqualifiedType(E->getType(), 3838ea46b66SJohn McCall E->getArg(0)->getType())); 3847a626f63SJohn McCall if (E->getArg(0)->isTemporaryObject(getContext(), CD->getParent())) { 3857a626f63SJohn McCall EmitAggExpr(E->getArg(0), Dest); 38627da15baSAnders Carlsson return; 38727da15baSAnders Carlsson } 388222cf0efSDouglas Gregor } 389630c76efSDouglas Gregor 390630c76efSDouglas Gregor const ConstantArrayType *Array 391630c76efSDouglas Gregor = getContext().getAsConstantArrayType(E->getType()); 39227da15baSAnders Carlsson if (Array) { 39327da15baSAnders Carlsson QualType BaseElementTy = getContext().getBaseElementType(Array); 39427da15baSAnders Carlsson const llvm::Type *BasePtr = ConvertType(BaseElementTy); 39527da15baSAnders Carlsson BasePtr = llvm::PointerType::getUnqual(BasePtr); 39627da15baSAnders Carlsson llvm::Value *BaseAddrPtr = 3977a626f63SJohn McCall Builder.CreateBitCast(Dest.getAddr(), BasePtr); 39827da15baSAnders Carlsson 39927da15baSAnders Carlsson EmitCXXAggrConstructorCall(CD, Array, BaseAddrPtr, 40027da15baSAnders Carlsson E->arg_begin(), E->arg_end()); 40127da15baSAnders Carlsson } 402e11f9ce9SAnders Carlsson else { 403e11f9ce9SAnders Carlsson CXXCtorType Type = 404e11f9ce9SAnders Carlsson (E->getConstructionKind() == CXXConstructExpr::CK_Complete) 405e11f9ce9SAnders Carlsson ? Ctor_Complete : Ctor_Base; 406e11f9ce9SAnders Carlsson bool ForVirtualBase = 407e11f9ce9SAnders Carlsson E->getConstructionKind() == CXXConstructExpr::CK_VirtualBase; 408e11f9ce9SAnders Carlsson 40927da15baSAnders Carlsson // Call the constructor. 4107a626f63SJohn McCall EmitCXXConstructorCall(CD, Type, ForVirtualBase, Dest.getAddr(), 41127da15baSAnders Carlsson E->arg_begin(), E->arg_end()); 41227da15baSAnders Carlsson } 413e11f9ce9SAnders Carlsson } 41427da15baSAnders Carlsson 415e988bdacSFariborz Jahanian void 416e988bdacSFariborz Jahanian CodeGenFunction::EmitSynthesizedCXXCopyCtor(llvm::Value *Dest, 417e988bdacSFariborz Jahanian llvm::Value *Src, 41850198098SFariborz Jahanian const Expr *Exp) { 4195d413781SJohn McCall if (const ExprWithCleanups *E = dyn_cast<ExprWithCleanups>(Exp)) 420e988bdacSFariborz Jahanian Exp = E->getSubExpr(); 421e988bdacSFariborz Jahanian assert(isa<CXXConstructExpr>(Exp) && 422e988bdacSFariborz Jahanian "EmitSynthesizedCXXCopyCtor - unknown copy ctor expr"); 423e988bdacSFariborz Jahanian const CXXConstructExpr* E = cast<CXXConstructExpr>(Exp); 424e988bdacSFariborz Jahanian const CXXConstructorDecl *CD = E->getConstructor(); 425e988bdacSFariborz Jahanian RunCleanupsScope Scope(*this); 426e988bdacSFariborz Jahanian 427e988bdacSFariborz Jahanian // If we require zero initialization before (or instead of) calling the 428e988bdacSFariborz Jahanian // constructor, as can be the case with a non-user-provided default 429e988bdacSFariborz Jahanian // constructor, emit the zero initialization now. 430e988bdacSFariborz Jahanian // FIXME. Do I still need this for a copy ctor synthesis? 431e988bdacSFariborz Jahanian if (E->requiresZeroInitialization()) 432e988bdacSFariborz Jahanian EmitNullInitialization(Dest, E->getType()); 433e988bdacSFariborz Jahanian 43499da11cfSChandler Carruth assert(!getContext().getAsConstantArrayType(E->getType()) 43599da11cfSChandler Carruth && "EmitSynthesizedCXXCopyCtor - Copied-in Array"); 436e988bdacSFariborz Jahanian EmitSynthesizedCXXCopyCtorCall(CD, Dest, Src, 437e988bdacSFariborz Jahanian E->arg_begin(), E->arg_end()); 438e988bdacSFariborz Jahanian } 439e988bdacSFariborz Jahanian 440aa4149a2SJohn McCall /// Check whether the given operator new[] is the global placement 441aa4149a2SJohn McCall /// operator new[]. 442aa4149a2SJohn McCall static bool IsPlacementOperatorNewArray(ASTContext &Ctx, 443aa4149a2SJohn McCall const FunctionDecl *Fn) { 444aa4149a2SJohn McCall // Must be in global scope. Note that allocation functions can't be 445aa4149a2SJohn McCall // declared in namespaces. 44650c68258SSebastian Redl if (!Fn->getDeclContext()->getRedeclContext()->isFileContext()) 447aa4149a2SJohn McCall return false; 448aa4149a2SJohn McCall 449aa4149a2SJohn McCall // Signature must be void *operator new[](size_t, void*). 450aa4149a2SJohn McCall // The size_t is common to all operator new[]s. 451aa4149a2SJohn McCall if (Fn->getNumParams() != 2) 452aa4149a2SJohn McCall return false; 453aa4149a2SJohn McCall 454aa4149a2SJohn McCall CanQualType ParamType = Ctx.getCanonicalType(Fn->getParamDecl(1)->getType()); 455aa4149a2SJohn McCall return (ParamType == Ctx.VoidPtrTy); 456aa4149a2SJohn McCall } 457aa4149a2SJohn McCall 4588ed55a54SJohn McCall static CharUnits CalculateCookiePadding(CodeGenFunction &CGF, 4598ed55a54SJohn McCall const CXXNewExpr *E) { 46021122cf6SAnders Carlsson if (!E->isArray()) 4613eb55cfeSKen Dyck return CharUnits::Zero(); 46221122cf6SAnders Carlsson 463399f499fSAnders Carlsson // No cookie is required if the new operator being used is 464399f499fSAnders Carlsson // ::operator new[](size_t, void*). 465399f499fSAnders Carlsson const FunctionDecl *OperatorNew = E->getOperatorNew(); 4668ed55a54SJohn McCall if (IsPlacementOperatorNewArray(CGF.getContext(), OperatorNew)) 4673eb55cfeSKen Dyck return CharUnits::Zero(); 468399f499fSAnders Carlsson 469284c48ffSJohn McCall return CGF.CGM.getCXXABI().GetArrayCookieSize(E); 47059486a2dSAnders Carlsson } 47159486a2dSAnders Carlsson 47247b4629bSFariborz Jahanian static llvm::Value *EmitCXXNewAllocSize(ASTContext &Context, 47347b4629bSFariborz Jahanian CodeGenFunction &CGF, 47459486a2dSAnders Carlsson const CXXNewExpr *E, 47505fc5be3SDouglas Gregor llvm::Value *&NumElements, 47605fc5be3SDouglas Gregor llvm::Value *&SizeWithoutCookie) { 4777648fb46SArgyrios Kyrtzidis QualType ElemType = E->getAllocatedType(); 47859486a2dSAnders Carlsson 4798ed55a54SJohn McCall const llvm::IntegerType *SizeTy = 4808ed55a54SJohn McCall cast<llvm::IntegerType>(CGF.ConvertType(CGF.getContext().getSizeType())); 4818ed55a54SJohn McCall 4827648fb46SArgyrios Kyrtzidis CharUnits TypeSize = CGF.getContext().getTypeSizeInChars(ElemType); 4838ed55a54SJohn McCall 4848ed55a54SJohn McCall if (!E->isArray()) { 48505fc5be3SDouglas Gregor SizeWithoutCookie = llvm::ConstantInt::get(SizeTy, TypeSize.getQuantity()); 48605fc5be3SDouglas Gregor return SizeWithoutCookie; 48705fc5be3SDouglas Gregor } 48859486a2dSAnders Carlsson 4898ed55a54SJohn McCall // Figure out the cookie size. 4908ed55a54SJohn McCall CharUnits CookieSize = CalculateCookiePadding(CGF, E); 4918ed55a54SJohn McCall 49259486a2dSAnders Carlsson // Emit the array size expression. 4937648fb46SArgyrios Kyrtzidis // We multiply the size of all dimensions for NumElements. 4947648fb46SArgyrios Kyrtzidis // e.g for 'int[2][3]', ElemType is 'int' and NumElements is 6. 49559486a2dSAnders Carlsson NumElements = CGF.EmitScalarExpr(E->getArraySize()); 4968ed55a54SJohn McCall assert(NumElements->getType() == SizeTy && "element count not a size_t"); 4978ed55a54SJohn McCall 4988ed55a54SJohn McCall uint64_t ArraySizeMultiplier = 1; 4997648fb46SArgyrios Kyrtzidis while (const ConstantArrayType *CAT 5007648fb46SArgyrios Kyrtzidis = CGF.getContext().getAsConstantArrayType(ElemType)) { 5017648fb46SArgyrios Kyrtzidis ElemType = CAT->getElementType(); 5028ed55a54SJohn McCall ArraySizeMultiplier *= CAT->getSize().getZExtValue(); 5037648fb46SArgyrios Kyrtzidis } 50459486a2dSAnders Carlsson 5058ed55a54SJohn McCall llvm::Value *Size; 50632ac583dSChris Lattner 50732ac583dSChris Lattner // If someone is doing 'new int[42]' there is no need to do a dynamic check. 50832ac583dSChris Lattner // Don't bloat the -O0 code. 50932ac583dSChris Lattner if (llvm::ConstantInt *NumElementsC = 51032ac583dSChris Lattner dyn_cast<llvm::ConstantInt>(NumElements)) { 51132ac583dSChris Lattner llvm::APInt NEC = NumElementsC->getValue(); 5128ed55a54SJohn McCall unsigned SizeWidth = NEC.getBitWidth(); 51332ac583dSChris Lattner 5148ed55a54SJohn McCall // Determine if there is an overflow here by doing an extended multiply. 5156d4db0c8SJay Foad NEC = NEC.zext(SizeWidth*2); 5168ed55a54SJohn McCall llvm::APInt SC(SizeWidth*2, TypeSize.getQuantity()); 51732ac583dSChris Lattner SC *= NEC; 51832ac583dSChris Lattner 5198ed55a54SJohn McCall if (!CookieSize.isZero()) { 5208ed55a54SJohn McCall // Save the current size without a cookie. We don't care if an 5218ed55a54SJohn McCall // overflow's already happened because SizeWithoutCookie isn't 5228ed55a54SJohn McCall // used if the allocator returns null or throws, as it should 5238ed55a54SJohn McCall // always do on an overflow. 5246d4db0c8SJay Foad llvm::APInt SWC = SC.trunc(SizeWidth); 5258ed55a54SJohn McCall SizeWithoutCookie = llvm::ConstantInt::get(SizeTy, SWC); 5268ed55a54SJohn McCall 5278ed55a54SJohn McCall // Add the cookie size. 5288ed55a54SJohn McCall SC += llvm::APInt(SizeWidth*2, CookieSize.getQuantity()); 5298ed55a54SJohn McCall } 5308ed55a54SJohn McCall 5318ed55a54SJohn McCall if (SC.countLeadingZeros() >= SizeWidth) { 5326d4db0c8SJay Foad SC = SC.trunc(SizeWidth); 5338ed55a54SJohn McCall Size = llvm::ConstantInt::get(SizeTy, SC); 53432ac583dSChris Lattner } else { 53532ac583dSChris Lattner // On overflow, produce a -1 so operator new throws. 5368ed55a54SJohn McCall Size = llvm::Constant::getAllOnesValue(SizeTy); 53732ac583dSChris Lattner } 53832ac583dSChris Lattner 5398ed55a54SJohn McCall // Scale NumElements while we're at it. 5408ed55a54SJohn McCall uint64_t N = NEC.getZExtValue() * ArraySizeMultiplier; 5418ed55a54SJohn McCall NumElements = llvm::ConstantInt::get(SizeTy, N); 54247b4629bSFariborz Jahanian 5438ed55a54SJohn McCall // Otherwise, we don't need to do an overflow-checked multiplication if 5448ed55a54SJohn McCall // we're multiplying by one. 5458ed55a54SJohn McCall } else if (TypeSize.isOne()) { 5468ed55a54SJohn McCall assert(ArraySizeMultiplier == 1); 547f2f38701SChris Lattner 5488ed55a54SJohn McCall Size = NumElements; 549f2f38701SChris Lattner 5508ed55a54SJohn McCall // If we need a cookie, add its size in with an overflow check. 5518ed55a54SJohn McCall // This is maybe a little paranoid. 5528ed55a54SJohn McCall if (!CookieSize.isZero()) { 55305fc5be3SDouglas Gregor SizeWithoutCookie = Size; 554f2f38701SChris Lattner 5558ed55a54SJohn McCall llvm::Value *CookieSizeV 5568ed55a54SJohn McCall = llvm::ConstantInt::get(SizeTy, CookieSize.getQuantity()); 5578ed55a54SJohn McCall 5588ed55a54SJohn McCall const llvm::Type *Types[] = { SizeTy }; 5598ed55a54SJohn McCall llvm::Value *UAddF 5608ed55a54SJohn McCall = CGF.CGM.getIntrinsic(llvm::Intrinsic::uadd_with_overflow, Types, 1); 5618ed55a54SJohn McCall llvm::Value *AddRes 5628ed55a54SJohn McCall = CGF.Builder.CreateCall2(UAddF, Size, CookieSizeV); 5638ed55a54SJohn McCall 5648ed55a54SJohn McCall Size = CGF.Builder.CreateExtractValue(AddRes, 0); 5658ed55a54SJohn McCall llvm::Value *DidOverflow = CGF.Builder.CreateExtractValue(AddRes, 1); 5668ed55a54SJohn McCall Size = CGF.Builder.CreateSelect(DidOverflow, 5678ed55a54SJohn McCall llvm::ConstantInt::get(SizeTy, -1), 5688ed55a54SJohn McCall Size); 5698ed55a54SJohn McCall } 5708ed55a54SJohn McCall 5718ed55a54SJohn McCall // Otherwise use the int.umul.with.overflow intrinsic. 5728ed55a54SJohn McCall } else { 5738ed55a54SJohn McCall llvm::Value *OutermostElementSize 5748ed55a54SJohn McCall = llvm::ConstantInt::get(SizeTy, TypeSize.getQuantity()); 5758ed55a54SJohn McCall 5768ed55a54SJohn McCall llvm::Value *NumOutermostElements = NumElements; 5778ed55a54SJohn McCall 5788ed55a54SJohn McCall // Scale NumElements by the array size multiplier. This might 5798ed55a54SJohn McCall // overflow, but only if the multiplication below also overflows, 5808ed55a54SJohn McCall // in which case this multiplication isn't used. 5818ed55a54SJohn McCall if (ArraySizeMultiplier != 1) 5828ed55a54SJohn McCall NumElements = CGF.Builder.CreateMul(NumElements, 5838ed55a54SJohn McCall llvm::ConstantInt::get(SizeTy, ArraySizeMultiplier)); 5848ed55a54SJohn McCall 5858ed55a54SJohn McCall // The requested size of the outermost array is non-constant. 5868ed55a54SJohn McCall // Multiply that by the static size of the elements of that array; 5878ed55a54SJohn McCall // on unsigned overflow, set the size to -1 to trigger an 5888ed55a54SJohn McCall // exception from the allocation routine. This is sufficient to 5898ed55a54SJohn McCall // prevent buffer overruns from the allocator returning a 5908ed55a54SJohn McCall // seemingly valid pointer to insufficient space. This idea comes 5918ed55a54SJohn McCall // originally from MSVC, and GCC has an open bug requesting 5928ed55a54SJohn McCall // similar behavior: 5938ed55a54SJohn McCall // http://gcc.gnu.org/bugzilla/show_bug.cgi?id=19351 5948ed55a54SJohn McCall // 5958ed55a54SJohn McCall // This will not be sufficient for C++0x, which requires a 5968ed55a54SJohn McCall // specific exception class (std::bad_array_new_length). 5978ed55a54SJohn McCall // That will require ABI support that has not yet been specified. 5988ed55a54SJohn McCall const llvm::Type *Types[] = { SizeTy }; 5998ed55a54SJohn McCall llvm::Value *UMulF 6008ed55a54SJohn McCall = CGF.CGM.getIntrinsic(llvm::Intrinsic::umul_with_overflow, Types, 1); 6018ed55a54SJohn McCall llvm::Value *MulRes = CGF.Builder.CreateCall2(UMulF, NumOutermostElements, 6028ed55a54SJohn McCall OutermostElementSize); 6038ed55a54SJohn McCall 6048ed55a54SJohn McCall // The overflow bit. 6058ed55a54SJohn McCall llvm::Value *DidOverflow = CGF.Builder.CreateExtractValue(MulRes, 1); 6068ed55a54SJohn McCall 6078ed55a54SJohn McCall // The result of the multiplication. 6088ed55a54SJohn McCall Size = CGF.Builder.CreateExtractValue(MulRes, 0); 6098ed55a54SJohn McCall 6108ed55a54SJohn McCall // If we have a cookie, we need to add that size in, too. 6118ed55a54SJohn McCall if (!CookieSize.isZero()) { 6128ed55a54SJohn McCall SizeWithoutCookie = Size; 6138ed55a54SJohn McCall 6148ed55a54SJohn McCall llvm::Value *CookieSizeV 6158ed55a54SJohn McCall = llvm::ConstantInt::get(SizeTy, CookieSize.getQuantity()); 6168ed55a54SJohn McCall llvm::Value *UAddF 6178ed55a54SJohn McCall = CGF.CGM.getIntrinsic(llvm::Intrinsic::uadd_with_overflow, Types, 1); 6188ed55a54SJohn McCall llvm::Value *AddRes 6198ed55a54SJohn McCall = CGF.Builder.CreateCall2(UAddF, SizeWithoutCookie, CookieSizeV); 6208ed55a54SJohn McCall 6218ed55a54SJohn McCall Size = CGF.Builder.CreateExtractValue(AddRes, 0); 6228ed55a54SJohn McCall 6238ed55a54SJohn McCall llvm::Value *AddDidOverflow = CGF.Builder.CreateExtractValue(AddRes, 1); 624db42a3e8SEli Friedman DidOverflow = CGF.Builder.CreateOr(DidOverflow, AddDidOverflow); 6258ed55a54SJohn McCall } 6268ed55a54SJohn McCall 6278ed55a54SJohn McCall Size = CGF.Builder.CreateSelect(DidOverflow, 6288ed55a54SJohn McCall llvm::ConstantInt::get(SizeTy, -1), 6298ed55a54SJohn McCall Size); 6308ed55a54SJohn McCall } 6318ed55a54SJohn McCall 6328ed55a54SJohn McCall if (CookieSize.isZero()) 6338ed55a54SJohn McCall SizeWithoutCookie = Size; 6348ed55a54SJohn McCall else 6358ed55a54SJohn McCall assert(SizeWithoutCookie && "didn't set SizeWithoutCookie?"); 63659486a2dSAnders Carlsson 63732ac583dSChris Lattner return Size; 63859486a2dSAnders Carlsson } 63959486a2dSAnders Carlsson 640d5202e09SFariborz Jahanian static void StoreAnyExprIntoOneUnit(CodeGenFunction &CGF, const CXXNewExpr *E, 641d5202e09SFariborz Jahanian llvm::Value *NewPtr) { 642d5202e09SFariborz Jahanian 643d5202e09SFariborz Jahanian assert(E->getNumConstructorArgs() == 1 && 644d5202e09SFariborz Jahanian "Can only have one argument to initializer of POD type."); 645d5202e09SFariborz Jahanian 646d5202e09SFariborz Jahanian const Expr *Init = E->getConstructorArg(0); 647d5202e09SFariborz Jahanian QualType AllocType = E->getAllocatedType(); 648d5202e09SFariborz Jahanian 6490381634aSDaniel Dunbar unsigned Alignment = 6500381634aSDaniel Dunbar CGF.getContext().getTypeAlignInChars(AllocType).getQuantity(); 651d5202e09SFariborz Jahanian if (!CGF.hasAggregateLLVMType(AllocType)) 652d5202e09SFariborz Jahanian CGF.EmitStoreOfScalar(CGF.EmitScalarExpr(Init), NewPtr, 6530381634aSDaniel Dunbar AllocType.isVolatileQualified(), Alignment, 6540381634aSDaniel Dunbar AllocType); 655d5202e09SFariborz Jahanian else if (AllocType->isAnyComplexType()) 656d5202e09SFariborz Jahanian CGF.EmitComplexExprIntoAddr(Init, NewPtr, 657d5202e09SFariborz Jahanian AllocType.isVolatileQualified()); 6587a626f63SJohn McCall else { 6597a626f63SJohn McCall AggValueSlot Slot 6607a626f63SJohn McCall = AggValueSlot::forAddr(NewPtr, AllocType.isVolatileQualified(), true); 6617a626f63SJohn McCall CGF.EmitAggExpr(Init, Slot); 6627a626f63SJohn McCall } 663d5202e09SFariborz Jahanian } 664d5202e09SFariborz Jahanian 665d5202e09SFariborz Jahanian void 666d5202e09SFariborz Jahanian CodeGenFunction::EmitNewArrayInitializer(const CXXNewExpr *E, 667d5202e09SFariborz Jahanian llvm::Value *NewPtr, 668d5202e09SFariborz Jahanian llvm::Value *NumElements) { 669b66b08efSFariborz Jahanian // We have a POD type. 670b66b08efSFariborz Jahanian if (E->getNumConstructorArgs() == 0) 671b66b08efSFariborz Jahanian return; 672b66b08efSFariborz Jahanian 673d5202e09SFariborz Jahanian const llvm::Type *SizeTy = ConvertType(getContext().getSizeType()); 674d5202e09SFariborz Jahanian 675d5202e09SFariborz Jahanian // Create a temporary for the loop index and initialize it with 0. 676d5202e09SFariborz Jahanian llvm::Value *IndexPtr = CreateTempAlloca(SizeTy, "loop.index"); 677d5202e09SFariborz Jahanian llvm::Value *Zero = llvm::Constant::getNullValue(SizeTy); 678d5202e09SFariborz Jahanian Builder.CreateStore(Zero, IndexPtr); 679d5202e09SFariborz Jahanian 680d5202e09SFariborz Jahanian // Start the loop with a block that tests the condition. 681d5202e09SFariborz Jahanian llvm::BasicBlock *CondBlock = createBasicBlock("for.cond"); 682d5202e09SFariborz Jahanian llvm::BasicBlock *AfterFor = createBasicBlock("for.end"); 683d5202e09SFariborz Jahanian 684d5202e09SFariborz Jahanian EmitBlock(CondBlock); 685d5202e09SFariborz Jahanian 686d5202e09SFariborz Jahanian llvm::BasicBlock *ForBody = createBasicBlock("for.body"); 687d5202e09SFariborz Jahanian 688d5202e09SFariborz Jahanian // Generate: if (loop-index < number-of-elements fall to the loop body, 689d5202e09SFariborz Jahanian // otherwise, go to the block after the for-loop. 690d5202e09SFariborz Jahanian llvm::Value *Counter = Builder.CreateLoad(IndexPtr); 691d5202e09SFariborz Jahanian llvm::Value *IsLess = Builder.CreateICmpULT(Counter, NumElements, "isless"); 692d5202e09SFariborz Jahanian // If the condition is true, execute the body. 693d5202e09SFariborz Jahanian Builder.CreateCondBr(IsLess, ForBody, AfterFor); 694d5202e09SFariborz Jahanian 695d5202e09SFariborz Jahanian EmitBlock(ForBody); 696d5202e09SFariborz Jahanian 697d5202e09SFariborz Jahanian llvm::BasicBlock *ContinueBlock = createBasicBlock("for.inc"); 698d5202e09SFariborz Jahanian // Inside the loop body, emit the constructor call on the array element. 699d5202e09SFariborz Jahanian Counter = Builder.CreateLoad(IndexPtr); 700d5202e09SFariborz Jahanian llvm::Value *Address = Builder.CreateInBoundsGEP(NewPtr, Counter, 701d5202e09SFariborz Jahanian "arrayidx"); 702d5202e09SFariborz Jahanian StoreAnyExprIntoOneUnit(*this, E, Address); 703d5202e09SFariborz Jahanian 704d5202e09SFariborz Jahanian EmitBlock(ContinueBlock); 705d5202e09SFariborz Jahanian 706d5202e09SFariborz Jahanian // Emit the increment of the loop counter. 707d5202e09SFariborz Jahanian llvm::Value *NextVal = llvm::ConstantInt::get(SizeTy, 1); 708d5202e09SFariborz Jahanian Counter = Builder.CreateLoad(IndexPtr); 709d5202e09SFariborz Jahanian NextVal = Builder.CreateAdd(Counter, NextVal, "inc"); 710d5202e09SFariborz Jahanian Builder.CreateStore(NextVal, IndexPtr); 711d5202e09SFariborz Jahanian 712d5202e09SFariborz Jahanian // Finally, branch back up to the condition for the next iteration. 713d5202e09SFariborz Jahanian EmitBranch(CondBlock); 714d5202e09SFariborz Jahanian 715d5202e09SFariborz Jahanian // Emit the fall-through block. 716d5202e09SFariborz Jahanian EmitBlock(AfterFor, true); 717d5202e09SFariborz Jahanian } 718d5202e09SFariborz Jahanian 71905fc5be3SDouglas Gregor static void EmitZeroMemSet(CodeGenFunction &CGF, QualType T, 72005fc5be3SDouglas Gregor llvm::Value *NewPtr, llvm::Value *Size) { 721ad7c5c16SJohn McCall CGF.EmitCastToVoidPtr(NewPtr); 722705ba07eSKen Dyck CharUnits Alignment = CGF.getContext().getTypeAlignInChars(T); 723acc6b4e2SBenjamin Kramer CGF.Builder.CreateMemSet(NewPtr, CGF.Builder.getInt8(0), Size, 724705ba07eSKen Dyck Alignment.getQuantity(), false); 72505fc5be3SDouglas Gregor } 72605fc5be3SDouglas Gregor 72759486a2dSAnders Carlsson static void EmitNewInitializer(CodeGenFunction &CGF, const CXXNewExpr *E, 72859486a2dSAnders Carlsson llvm::Value *NewPtr, 72905fc5be3SDouglas Gregor llvm::Value *NumElements, 73005fc5be3SDouglas Gregor llvm::Value *AllocSizeWithoutCookie) { 7313a202f60SAnders Carlsson if (E->isArray()) { 732d040e6b2SAnders Carlsson if (CXXConstructorDecl *Ctor = E->getConstructor()) { 73305fc5be3SDouglas Gregor bool RequiresZeroInitialization = false; 73405fc5be3SDouglas Gregor if (Ctor->getParent()->hasTrivialConstructor()) { 73505fc5be3SDouglas Gregor // If new expression did not specify value-initialization, then there 73605fc5be3SDouglas Gregor // is no initialization. 73705fc5be3SDouglas Gregor if (!E->hasInitializer() || Ctor->getParent()->isEmpty()) 73805fc5be3SDouglas Gregor return; 73905fc5be3SDouglas Gregor 740614dbdcdSJohn McCall if (CGF.CGM.getTypes().isZeroInitializable(E->getAllocatedType())) { 74105fc5be3SDouglas Gregor // Optimization: since zero initialization will just set the memory 74205fc5be3SDouglas Gregor // to all zeroes, generate a single memset to do it in one shot. 74305fc5be3SDouglas Gregor EmitZeroMemSet(CGF, E->getAllocatedType(), NewPtr, 74405fc5be3SDouglas Gregor AllocSizeWithoutCookie); 7453a202f60SAnders Carlsson return; 7463a202f60SAnders Carlsson } 74705fc5be3SDouglas Gregor 74805fc5be3SDouglas Gregor RequiresZeroInitialization = true; 74905fc5be3SDouglas Gregor } 75005fc5be3SDouglas Gregor 75105fc5be3SDouglas Gregor CGF.EmitCXXAggrConstructorCall(Ctor, NumElements, NewPtr, 75205fc5be3SDouglas Gregor E->constructor_arg_begin(), 75305fc5be3SDouglas Gregor E->constructor_arg_end(), 75405fc5be3SDouglas Gregor RequiresZeroInitialization); 75505fc5be3SDouglas Gregor return; 75605fc5be3SDouglas Gregor } else if (E->getNumConstructorArgs() == 1 && 75705fc5be3SDouglas Gregor isa<ImplicitValueInitExpr>(E->getConstructorArg(0))) { 75805fc5be3SDouglas Gregor // Optimization: since zero initialization will just set the memory 75905fc5be3SDouglas Gregor // to all zeroes, generate a single memset to do it in one shot. 76005fc5be3SDouglas Gregor EmitZeroMemSet(CGF, E->getAllocatedType(), NewPtr, 76105fc5be3SDouglas Gregor AllocSizeWithoutCookie); 76205fc5be3SDouglas Gregor return; 76305fc5be3SDouglas Gregor } else { 764d5202e09SFariborz Jahanian CGF.EmitNewArrayInitializer(E, NewPtr, NumElements); 765d5202e09SFariborz Jahanian return; 766d040e6b2SAnders Carlsson } 767d5202e09SFariborz Jahanian } 76859486a2dSAnders Carlsson 76959486a2dSAnders Carlsson if (CXXConstructorDecl *Ctor = E->getConstructor()) { 770747eb784SDouglas Gregor // Per C++ [expr.new]p15, if we have an initializer, then we're performing 771747eb784SDouglas Gregor // direct initialization. C++ [dcl.init]p5 requires that we 772747eb784SDouglas Gregor // zero-initialize storage if there are no user-declared constructors. 773747eb784SDouglas Gregor if (E->hasInitializer() && 774747eb784SDouglas Gregor !Ctor->getParent()->hasUserDeclaredConstructor() && 775747eb784SDouglas Gregor !Ctor->getParent()->isEmpty()) 776747eb784SDouglas Gregor CGF.EmitNullInitialization(NewPtr, E->getAllocatedType()); 777747eb784SDouglas Gregor 778e11f9ce9SAnders Carlsson CGF.EmitCXXConstructorCall(Ctor, Ctor_Complete, /*ForVirtualBase=*/false, 779e11f9ce9SAnders Carlsson NewPtr, E->constructor_arg_begin(), 78059486a2dSAnders Carlsson E->constructor_arg_end()); 78159486a2dSAnders Carlsson 78259486a2dSAnders Carlsson return; 78359486a2dSAnders Carlsson } 784b66b08efSFariborz Jahanian // We have a POD type. 785b66b08efSFariborz Jahanian if (E->getNumConstructorArgs() == 0) 786b66b08efSFariborz Jahanian return; 78759486a2dSAnders Carlsson 788d5202e09SFariborz Jahanian StoreAnyExprIntoOneUnit(CGF, E, NewPtr); 78959486a2dSAnders Carlsson } 79059486a2dSAnders Carlsson 791824c2f53SJohn McCall namespace { 792824c2f53SJohn McCall /// A cleanup to call the given 'operator delete' function upon 793824c2f53SJohn McCall /// abnormal exit from a new expression. 794824c2f53SJohn McCall class CallDeleteDuringNew : public EHScopeStack::Cleanup { 795824c2f53SJohn McCall size_t NumPlacementArgs; 796824c2f53SJohn McCall const FunctionDecl *OperatorDelete; 797824c2f53SJohn McCall llvm::Value *Ptr; 798824c2f53SJohn McCall llvm::Value *AllocSize; 799824c2f53SJohn McCall 800824c2f53SJohn McCall RValue *getPlacementArgs() { return reinterpret_cast<RValue*>(this+1); } 801824c2f53SJohn McCall 802824c2f53SJohn McCall public: 803824c2f53SJohn McCall static size_t getExtraSize(size_t NumPlacementArgs) { 804824c2f53SJohn McCall return NumPlacementArgs * sizeof(RValue); 805824c2f53SJohn McCall } 806824c2f53SJohn McCall 807824c2f53SJohn McCall CallDeleteDuringNew(size_t NumPlacementArgs, 808824c2f53SJohn McCall const FunctionDecl *OperatorDelete, 809824c2f53SJohn McCall llvm::Value *Ptr, 810824c2f53SJohn McCall llvm::Value *AllocSize) 811824c2f53SJohn McCall : NumPlacementArgs(NumPlacementArgs), OperatorDelete(OperatorDelete), 812824c2f53SJohn McCall Ptr(Ptr), AllocSize(AllocSize) {} 813824c2f53SJohn McCall 814824c2f53SJohn McCall void setPlacementArg(unsigned I, RValue Arg) { 815824c2f53SJohn McCall assert(I < NumPlacementArgs && "index out of range"); 816824c2f53SJohn McCall getPlacementArgs()[I] = Arg; 817824c2f53SJohn McCall } 818824c2f53SJohn McCall 819824c2f53SJohn McCall void Emit(CodeGenFunction &CGF, bool IsForEH) { 820824c2f53SJohn McCall const FunctionProtoType *FPT 821824c2f53SJohn McCall = OperatorDelete->getType()->getAs<FunctionProtoType>(); 822824c2f53SJohn McCall assert(FPT->getNumArgs() == NumPlacementArgs + 1 || 823d441b1e6SJohn McCall (FPT->getNumArgs() == 2 && NumPlacementArgs == 0)); 824824c2f53SJohn McCall 825824c2f53SJohn McCall CallArgList DeleteArgs; 826824c2f53SJohn McCall 827824c2f53SJohn McCall // The first argument is always a void*. 828824c2f53SJohn McCall FunctionProtoType::arg_type_iterator AI = FPT->arg_type_begin(); 829824c2f53SJohn McCall DeleteArgs.push_back(std::make_pair(RValue::get(Ptr), *AI++)); 830824c2f53SJohn McCall 831824c2f53SJohn McCall // A member 'operator delete' can take an extra 'size_t' argument. 832824c2f53SJohn McCall if (FPT->getNumArgs() == NumPlacementArgs + 2) 833824c2f53SJohn McCall DeleteArgs.push_back(std::make_pair(RValue::get(AllocSize), *AI++)); 834824c2f53SJohn McCall 835824c2f53SJohn McCall // Pass the rest of the arguments, which must match exactly. 836824c2f53SJohn McCall for (unsigned I = 0; I != NumPlacementArgs; ++I) 837824c2f53SJohn McCall DeleteArgs.push_back(std::make_pair(getPlacementArgs()[I], *AI++)); 838824c2f53SJohn McCall 839824c2f53SJohn McCall // Call 'operator delete'. 84099cc30c3STilmann Scheller CGF.EmitCall(CGF.CGM.getTypes().getFunctionInfo(DeleteArgs, FPT), 841824c2f53SJohn McCall CGF.CGM.GetAddrOfFunction(OperatorDelete), 842824c2f53SJohn McCall ReturnValueSlot(), DeleteArgs, OperatorDelete); 843824c2f53SJohn McCall } 844824c2f53SJohn McCall }; 8457f9c92a9SJohn McCall 8467f9c92a9SJohn McCall /// A cleanup to call the given 'operator delete' function upon 8477f9c92a9SJohn McCall /// abnormal exit from a new expression when the new expression is 8487f9c92a9SJohn McCall /// conditional. 8497f9c92a9SJohn McCall class CallDeleteDuringConditionalNew : public EHScopeStack::Cleanup { 8507f9c92a9SJohn McCall size_t NumPlacementArgs; 8517f9c92a9SJohn McCall const FunctionDecl *OperatorDelete; 852cb5f77f0SJohn McCall DominatingValue<RValue>::saved_type Ptr; 853cb5f77f0SJohn McCall DominatingValue<RValue>::saved_type AllocSize; 8547f9c92a9SJohn McCall 855cb5f77f0SJohn McCall DominatingValue<RValue>::saved_type *getPlacementArgs() { 856cb5f77f0SJohn McCall return reinterpret_cast<DominatingValue<RValue>::saved_type*>(this+1); 8577f9c92a9SJohn McCall } 8587f9c92a9SJohn McCall 8597f9c92a9SJohn McCall public: 8607f9c92a9SJohn McCall static size_t getExtraSize(size_t NumPlacementArgs) { 861cb5f77f0SJohn McCall return NumPlacementArgs * sizeof(DominatingValue<RValue>::saved_type); 8627f9c92a9SJohn McCall } 8637f9c92a9SJohn McCall 8647f9c92a9SJohn McCall CallDeleteDuringConditionalNew(size_t NumPlacementArgs, 8657f9c92a9SJohn McCall const FunctionDecl *OperatorDelete, 866cb5f77f0SJohn McCall DominatingValue<RValue>::saved_type Ptr, 867cb5f77f0SJohn McCall DominatingValue<RValue>::saved_type AllocSize) 8687f9c92a9SJohn McCall : NumPlacementArgs(NumPlacementArgs), OperatorDelete(OperatorDelete), 8697f9c92a9SJohn McCall Ptr(Ptr), AllocSize(AllocSize) {} 8707f9c92a9SJohn McCall 871cb5f77f0SJohn McCall void setPlacementArg(unsigned I, DominatingValue<RValue>::saved_type Arg) { 8727f9c92a9SJohn McCall assert(I < NumPlacementArgs && "index out of range"); 8737f9c92a9SJohn McCall getPlacementArgs()[I] = Arg; 8747f9c92a9SJohn McCall } 8757f9c92a9SJohn McCall 8767f9c92a9SJohn McCall void Emit(CodeGenFunction &CGF, bool IsForEH) { 8777f9c92a9SJohn McCall const FunctionProtoType *FPT 8787f9c92a9SJohn McCall = OperatorDelete->getType()->getAs<FunctionProtoType>(); 8797f9c92a9SJohn McCall assert(FPT->getNumArgs() == NumPlacementArgs + 1 || 8807f9c92a9SJohn McCall (FPT->getNumArgs() == 2 && NumPlacementArgs == 0)); 8817f9c92a9SJohn McCall 8827f9c92a9SJohn McCall CallArgList DeleteArgs; 8837f9c92a9SJohn McCall 8847f9c92a9SJohn McCall // The first argument is always a void*. 8857f9c92a9SJohn McCall FunctionProtoType::arg_type_iterator AI = FPT->arg_type_begin(); 886cb5f77f0SJohn McCall DeleteArgs.push_back(std::make_pair(Ptr.restore(CGF), *AI++)); 8877f9c92a9SJohn McCall 8887f9c92a9SJohn McCall // A member 'operator delete' can take an extra 'size_t' argument. 8897f9c92a9SJohn McCall if (FPT->getNumArgs() == NumPlacementArgs + 2) { 890cb5f77f0SJohn McCall RValue RV = AllocSize.restore(CGF); 8917f9c92a9SJohn McCall DeleteArgs.push_back(std::make_pair(RV, *AI++)); 8927f9c92a9SJohn McCall } 8937f9c92a9SJohn McCall 8947f9c92a9SJohn McCall // Pass the rest of the arguments, which must match exactly. 8957f9c92a9SJohn McCall for (unsigned I = 0; I != NumPlacementArgs; ++I) { 896cb5f77f0SJohn McCall RValue RV = getPlacementArgs()[I].restore(CGF); 8977f9c92a9SJohn McCall DeleteArgs.push_back(std::make_pair(RV, *AI++)); 8987f9c92a9SJohn McCall } 8997f9c92a9SJohn McCall 9007f9c92a9SJohn McCall // Call 'operator delete'. 90199cc30c3STilmann Scheller CGF.EmitCall(CGF.CGM.getTypes().getFunctionInfo(DeleteArgs, FPT), 9027f9c92a9SJohn McCall CGF.CGM.GetAddrOfFunction(OperatorDelete), 9037f9c92a9SJohn McCall ReturnValueSlot(), DeleteArgs, OperatorDelete); 9047f9c92a9SJohn McCall } 9057f9c92a9SJohn McCall }; 9067f9c92a9SJohn McCall } 9077f9c92a9SJohn McCall 9087f9c92a9SJohn McCall /// Enter a cleanup to call 'operator delete' if the initializer in a 9097f9c92a9SJohn McCall /// new-expression throws. 9107f9c92a9SJohn McCall static void EnterNewDeleteCleanup(CodeGenFunction &CGF, 9117f9c92a9SJohn McCall const CXXNewExpr *E, 9127f9c92a9SJohn McCall llvm::Value *NewPtr, 9137f9c92a9SJohn McCall llvm::Value *AllocSize, 9147f9c92a9SJohn McCall const CallArgList &NewArgs) { 9157f9c92a9SJohn McCall // If we're not inside a conditional branch, then the cleanup will 9167f9c92a9SJohn McCall // dominate and we can do the easier (and more efficient) thing. 9177f9c92a9SJohn McCall if (!CGF.isInConditionalBranch()) { 9187f9c92a9SJohn McCall CallDeleteDuringNew *Cleanup = CGF.EHStack 9197f9c92a9SJohn McCall .pushCleanupWithExtra<CallDeleteDuringNew>(EHCleanup, 9207f9c92a9SJohn McCall E->getNumPlacementArgs(), 9217f9c92a9SJohn McCall E->getOperatorDelete(), 9227f9c92a9SJohn McCall NewPtr, AllocSize); 9237f9c92a9SJohn McCall for (unsigned I = 0, N = E->getNumPlacementArgs(); I != N; ++I) 9247f9c92a9SJohn McCall Cleanup->setPlacementArg(I, NewArgs[I+1].first); 9257f9c92a9SJohn McCall 9267f9c92a9SJohn McCall return; 9277f9c92a9SJohn McCall } 9287f9c92a9SJohn McCall 9297f9c92a9SJohn McCall // Otherwise, we need to save all this stuff. 930cb5f77f0SJohn McCall DominatingValue<RValue>::saved_type SavedNewPtr = 931cb5f77f0SJohn McCall DominatingValue<RValue>::save(CGF, RValue::get(NewPtr)); 932cb5f77f0SJohn McCall DominatingValue<RValue>::saved_type SavedAllocSize = 933cb5f77f0SJohn McCall DominatingValue<RValue>::save(CGF, RValue::get(AllocSize)); 9347f9c92a9SJohn McCall 9357f9c92a9SJohn McCall CallDeleteDuringConditionalNew *Cleanup = CGF.EHStack 9367f9c92a9SJohn McCall .pushCleanupWithExtra<CallDeleteDuringConditionalNew>(InactiveEHCleanup, 9377f9c92a9SJohn McCall E->getNumPlacementArgs(), 9387f9c92a9SJohn McCall E->getOperatorDelete(), 9397f9c92a9SJohn McCall SavedNewPtr, 9407f9c92a9SJohn McCall SavedAllocSize); 9417f9c92a9SJohn McCall for (unsigned I = 0, N = E->getNumPlacementArgs(); I != N; ++I) 942cb5f77f0SJohn McCall Cleanup->setPlacementArg(I, 943cb5f77f0SJohn McCall DominatingValue<RValue>::save(CGF, NewArgs[I+1].first)); 9447f9c92a9SJohn McCall 9457f9c92a9SJohn McCall CGF.ActivateCleanupBlock(CGF.EHStack.stable_begin()); 946824c2f53SJohn McCall } 947824c2f53SJohn McCall 94859486a2dSAnders Carlsson llvm::Value *CodeGenFunction::EmitCXXNewExpr(const CXXNewExpr *E) { 94975f9498aSJohn McCall // The element type being allocated. 95075f9498aSJohn McCall QualType allocType = getContext().getBaseElementType(E->getAllocatedType()); 9518ed55a54SJohn McCall 95275f9498aSJohn McCall // 1. Build a call to the allocation function. 95375f9498aSJohn McCall FunctionDecl *allocator = E->getOperatorNew(); 95475f9498aSJohn McCall const FunctionProtoType *allocatorType = 95575f9498aSJohn McCall allocator->getType()->castAs<FunctionProtoType>(); 95659486a2dSAnders Carlsson 95775f9498aSJohn McCall CallArgList allocatorArgs; 95859486a2dSAnders Carlsson 95959486a2dSAnders Carlsson // The allocation size is the first argument. 96075f9498aSJohn McCall QualType sizeType = getContext().getSizeType(); 96159486a2dSAnders Carlsson 96275f9498aSJohn McCall llvm::Value *numElements = 0; 96375f9498aSJohn McCall llvm::Value *allocSizeWithoutCookie = 0; 96475f9498aSJohn McCall llvm::Value *allocSize = 96575f9498aSJohn McCall EmitCXXNewAllocSize(getContext(), *this, E, numElements, 96675f9498aSJohn McCall allocSizeWithoutCookie); 96759486a2dSAnders Carlsson 96875f9498aSJohn McCall allocatorArgs.push_back(std::make_pair(RValue::get(allocSize), sizeType)); 96959486a2dSAnders Carlsson 97059486a2dSAnders Carlsson // Emit the rest of the arguments. 97159486a2dSAnders Carlsson // FIXME: Ideally, this should just use EmitCallArgs. 97275f9498aSJohn McCall CXXNewExpr::const_arg_iterator placementArg = E->placement_arg_begin(); 97359486a2dSAnders Carlsson 97459486a2dSAnders Carlsson // First, use the types from the function type. 97559486a2dSAnders Carlsson // We start at 1 here because the first argument (the allocation size) 97659486a2dSAnders Carlsson // has already been emitted. 97775f9498aSJohn McCall for (unsigned i = 1, e = allocatorType->getNumArgs(); i != e; 97875f9498aSJohn McCall ++i, ++placementArg) { 97975f9498aSJohn McCall QualType argType = allocatorType->getArgType(i); 98059486a2dSAnders Carlsson 98175f9498aSJohn McCall assert(getContext().hasSameUnqualifiedType(argType.getNonReferenceType(), 98275f9498aSJohn McCall placementArg->getType()) && 98359486a2dSAnders Carlsson "type mismatch in call argument!"); 98459486a2dSAnders Carlsson 98532ea9694SJohn McCall EmitCallArg(allocatorArgs, *placementArg, argType); 98659486a2dSAnders Carlsson } 98759486a2dSAnders Carlsson 98859486a2dSAnders Carlsson // Either we've emitted all the call args, or we have a call to a 98959486a2dSAnders Carlsson // variadic function. 99075f9498aSJohn McCall assert((placementArg == E->placement_arg_end() || 99175f9498aSJohn McCall allocatorType->isVariadic()) && 99275f9498aSJohn McCall "Extra arguments to non-variadic function!"); 99359486a2dSAnders Carlsson 99459486a2dSAnders Carlsson // If we still have any arguments, emit them using the type of the argument. 99575f9498aSJohn McCall for (CXXNewExpr::const_arg_iterator placementArgsEnd = E->placement_arg_end(); 99675f9498aSJohn McCall placementArg != placementArgsEnd; ++placementArg) { 99732ea9694SJohn McCall EmitCallArg(allocatorArgs, *placementArg, placementArg->getType()); 99859486a2dSAnders Carlsson } 99959486a2dSAnders Carlsson 100075f9498aSJohn McCall // Emit the allocation call. 100159486a2dSAnders Carlsson RValue RV = 100275f9498aSJohn McCall EmitCall(CGM.getTypes().getFunctionInfo(allocatorArgs, allocatorType), 100375f9498aSJohn McCall CGM.GetAddrOfFunction(allocator), ReturnValueSlot(), 100475f9498aSJohn McCall allocatorArgs, allocator); 100559486a2dSAnders Carlsson 100675f9498aSJohn McCall // Emit a null check on the allocation result if the allocation 100775f9498aSJohn McCall // function is allowed to return null (because it has a non-throwing 100875f9498aSJohn McCall // exception spec; for this part, we inline 100975f9498aSJohn McCall // CXXNewExpr::shouldNullCheckAllocation()) and we have an 101075f9498aSJohn McCall // interesting initializer. 101131ad754cSSebastian Redl bool nullCheck = allocatorType->isNothrow(getContext()) && 101275f9498aSJohn McCall !(allocType->isPODType() && !E->hasInitializer()); 101359486a2dSAnders Carlsson 101475f9498aSJohn McCall llvm::BasicBlock *nullCheckBB = 0; 101575f9498aSJohn McCall llvm::BasicBlock *contBB = 0; 101659486a2dSAnders Carlsson 101775f9498aSJohn McCall llvm::Value *allocation = RV.getScalarVal(); 101875f9498aSJohn McCall unsigned AS = 101975f9498aSJohn McCall cast<llvm::PointerType>(allocation->getType())->getAddressSpace(); 102059486a2dSAnders Carlsson 1021f7dcf320SJohn McCall // The null-check means that the initializer is conditionally 1022f7dcf320SJohn McCall // evaluated. 1023f7dcf320SJohn McCall ConditionalEvaluation conditional(*this); 1024f7dcf320SJohn McCall 102575f9498aSJohn McCall if (nullCheck) { 1026f7dcf320SJohn McCall conditional.begin(*this); 102775f9498aSJohn McCall 102875f9498aSJohn McCall nullCheckBB = Builder.GetInsertBlock(); 102975f9498aSJohn McCall llvm::BasicBlock *notNullBB = createBasicBlock("new.notnull"); 103075f9498aSJohn McCall contBB = createBasicBlock("new.cont"); 103175f9498aSJohn McCall 103275f9498aSJohn McCall llvm::Value *isNull = Builder.CreateIsNull(allocation, "new.isnull"); 103375f9498aSJohn McCall Builder.CreateCondBr(isNull, contBB, notNullBB); 103475f9498aSJohn McCall EmitBlock(notNullBB); 103559486a2dSAnders Carlsson } 103659486a2dSAnders Carlsson 103775f9498aSJohn McCall assert((allocSize == allocSizeWithoutCookie) == 10388ed55a54SJohn McCall CalculateCookiePadding(*this, E).isZero()); 103975f9498aSJohn McCall if (allocSize != allocSizeWithoutCookie) { 10408ed55a54SJohn McCall assert(E->isArray()); 104175f9498aSJohn McCall allocation = CGM.getCXXABI().InitializeArrayCookie(*this, allocation, 104275f9498aSJohn McCall numElements, 104375f9498aSJohn McCall E, allocType); 104459486a2dSAnders Carlsson } 104559486a2dSAnders Carlsson 1046824c2f53SJohn McCall // If there's an operator delete, enter a cleanup to call it if an 1047824c2f53SJohn McCall // exception is thrown. 104875f9498aSJohn McCall EHScopeStack::stable_iterator operatorDeleteCleanup; 1049824c2f53SJohn McCall if (E->getOperatorDelete()) { 105075f9498aSJohn McCall EnterNewDeleteCleanup(*this, E, allocation, allocSize, allocatorArgs); 105175f9498aSJohn McCall operatorDeleteCleanup = EHStack.stable_begin(); 1052824c2f53SJohn McCall } 1053824c2f53SJohn McCall 105475f9498aSJohn McCall const llvm::Type *elementPtrTy 105575f9498aSJohn McCall = ConvertTypeForMem(allocType)->getPointerTo(AS); 105675f9498aSJohn McCall llvm::Value *result = Builder.CreateBitCast(allocation, elementPtrTy); 1057824c2f53SJohn McCall 10588ed55a54SJohn McCall if (E->isArray()) { 105975f9498aSJohn McCall EmitNewInitializer(*this, E, result, numElements, allocSizeWithoutCookie); 10608ed55a54SJohn McCall 10618ed55a54SJohn McCall // NewPtr is a pointer to the base element type. If we're 10628ed55a54SJohn McCall // allocating an array of arrays, we'll need to cast back to the 10638ed55a54SJohn McCall // array pointer type. 106475f9498aSJohn McCall const llvm::Type *resultType = ConvertTypeForMem(E->getType()); 106575f9498aSJohn McCall if (result->getType() != resultType) 106675f9498aSJohn McCall result = Builder.CreateBitCast(result, resultType); 10678ed55a54SJohn McCall } else { 106875f9498aSJohn McCall EmitNewInitializer(*this, E, result, numElements, allocSizeWithoutCookie); 106947b4629bSFariborz Jahanian } 107059486a2dSAnders Carlsson 1071824c2f53SJohn McCall // Deactivate the 'operator delete' cleanup if we finished 1072824c2f53SJohn McCall // initialization. 107375f9498aSJohn McCall if (operatorDeleteCleanup.isValid()) 107475f9498aSJohn McCall DeactivateCleanupBlock(operatorDeleteCleanup); 1075824c2f53SJohn McCall 107675f9498aSJohn McCall if (nullCheck) { 1077f7dcf320SJohn McCall conditional.end(*this); 1078f7dcf320SJohn McCall 107975f9498aSJohn McCall llvm::BasicBlock *notNullBB = Builder.GetInsertBlock(); 108075f9498aSJohn McCall EmitBlock(contBB); 108159486a2dSAnders Carlsson 108220c0f02cSJay Foad llvm::PHINode *PHI = Builder.CreatePHI(result->getType(), 2); 108375f9498aSJohn McCall PHI->addIncoming(result, notNullBB); 108475f9498aSJohn McCall PHI->addIncoming(llvm::Constant::getNullValue(result->getType()), 108575f9498aSJohn McCall nullCheckBB); 108659486a2dSAnders Carlsson 108775f9498aSJohn McCall result = PHI; 108859486a2dSAnders Carlsson } 108959486a2dSAnders Carlsson 109075f9498aSJohn McCall return result; 109159486a2dSAnders Carlsson } 109259486a2dSAnders Carlsson 109359486a2dSAnders Carlsson void CodeGenFunction::EmitDeleteCall(const FunctionDecl *DeleteFD, 109459486a2dSAnders Carlsson llvm::Value *Ptr, 109559486a2dSAnders Carlsson QualType DeleteTy) { 10968ed55a54SJohn McCall assert(DeleteFD->getOverloadedOperator() == OO_Delete); 10978ed55a54SJohn McCall 109859486a2dSAnders Carlsson const FunctionProtoType *DeleteFTy = 109959486a2dSAnders Carlsson DeleteFD->getType()->getAs<FunctionProtoType>(); 110059486a2dSAnders Carlsson 110159486a2dSAnders Carlsson CallArgList DeleteArgs; 110259486a2dSAnders Carlsson 110321122cf6SAnders Carlsson // Check if we need to pass the size to the delete operator. 110421122cf6SAnders Carlsson llvm::Value *Size = 0; 110521122cf6SAnders Carlsson QualType SizeTy; 110621122cf6SAnders Carlsson if (DeleteFTy->getNumArgs() == 2) { 110721122cf6SAnders Carlsson SizeTy = DeleteFTy->getArgType(1); 11087df3cbebSKen Dyck CharUnits DeleteTypeSize = getContext().getTypeSizeInChars(DeleteTy); 11097df3cbebSKen Dyck Size = llvm::ConstantInt::get(ConvertType(SizeTy), 11107df3cbebSKen Dyck DeleteTypeSize.getQuantity()); 111121122cf6SAnders Carlsson } 111221122cf6SAnders Carlsson 111359486a2dSAnders Carlsson QualType ArgTy = DeleteFTy->getArgType(0); 111459486a2dSAnders Carlsson llvm::Value *DeletePtr = Builder.CreateBitCast(Ptr, ConvertType(ArgTy)); 111559486a2dSAnders Carlsson DeleteArgs.push_back(std::make_pair(RValue::get(DeletePtr), ArgTy)); 111659486a2dSAnders Carlsson 111721122cf6SAnders Carlsson if (Size) 111859486a2dSAnders Carlsson DeleteArgs.push_back(std::make_pair(RValue::get(Size), SizeTy)); 111959486a2dSAnders Carlsson 112059486a2dSAnders Carlsson // Emit the call to delete. 112199cc30c3STilmann Scheller EmitCall(CGM.getTypes().getFunctionInfo(DeleteArgs, DeleteFTy), 112261a401caSAnders Carlsson CGM.GetAddrOfFunction(DeleteFD), ReturnValueSlot(), 112359486a2dSAnders Carlsson DeleteArgs, DeleteFD); 112459486a2dSAnders Carlsson } 112559486a2dSAnders Carlsson 11268ed55a54SJohn McCall namespace { 11278ed55a54SJohn McCall /// Calls the given 'operator delete' on a single object. 11288ed55a54SJohn McCall struct CallObjectDelete : EHScopeStack::Cleanup { 11298ed55a54SJohn McCall llvm::Value *Ptr; 11308ed55a54SJohn McCall const FunctionDecl *OperatorDelete; 11318ed55a54SJohn McCall QualType ElementType; 11328ed55a54SJohn McCall 11338ed55a54SJohn McCall CallObjectDelete(llvm::Value *Ptr, 11348ed55a54SJohn McCall const FunctionDecl *OperatorDelete, 11358ed55a54SJohn McCall QualType ElementType) 11368ed55a54SJohn McCall : Ptr(Ptr), OperatorDelete(OperatorDelete), ElementType(ElementType) {} 11378ed55a54SJohn McCall 11388ed55a54SJohn McCall void Emit(CodeGenFunction &CGF, bool IsForEH) { 11398ed55a54SJohn McCall CGF.EmitDeleteCall(OperatorDelete, Ptr, ElementType); 11408ed55a54SJohn McCall } 11418ed55a54SJohn McCall }; 11428ed55a54SJohn McCall } 11438ed55a54SJohn McCall 11448ed55a54SJohn McCall /// Emit the code for deleting a single object. 11458ed55a54SJohn McCall static void EmitObjectDelete(CodeGenFunction &CGF, 11468ed55a54SJohn McCall const FunctionDecl *OperatorDelete, 11478ed55a54SJohn McCall llvm::Value *Ptr, 11488ed55a54SJohn McCall QualType ElementType) { 11498ed55a54SJohn McCall // Find the destructor for the type, if applicable. If the 11508ed55a54SJohn McCall // destructor is virtual, we'll just emit the vcall and return. 11518ed55a54SJohn McCall const CXXDestructorDecl *Dtor = 0; 11528ed55a54SJohn McCall if (const RecordType *RT = ElementType->getAs<RecordType>()) { 11538ed55a54SJohn McCall CXXRecordDecl *RD = cast<CXXRecordDecl>(RT->getDecl()); 11548ed55a54SJohn McCall if (!RD->hasTrivialDestructor()) { 11558ed55a54SJohn McCall Dtor = RD->getDestructor(); 11568ed55a54SJohn McCall 11578ed55a54SJohn McCall if (Dtor->isVirtual()) { 11588ed55a54SJohn McCall const llvm::Type *Ty = 11590d635f53SJohn McCall CGF.getTypes().GetFunctionType(CGF.getTypes().getFunctionInfo(Dtor, 11600d635f53SJohn McCall Dtor_Complete), 11618ed55a54SJohn McCall /*isVariadic=*/false); 11628ed55a54SJohn McCall 11638ed55a54SJohn McCall llvm::Value *Callee 11648ed55a54SJohn McCall = CGF.BuildVirtualCall(Dtor, Dtor_Deleting, Ptr, Ty); 11658ed55a54SJohn McCall CGF.EmitCXXMemberCall(Dtor, Callee, ReturnValueSlot(), Ptr, /*VTT=*/0, 11668ed55a54SJohn McCall 0, 0); 11678ed55a54SJohn McCall 11688ed55a54SJohn McCall // The dtor took care of deleting the object. 11698ed55a54SJohn McCall return; 11708ed55a54SJohn McCall } 11718ed55a54SJohn McCall } 11728ed55a54SJohn McCall } 11738ed55a54SJohn McCall 11748ed55a54SJohn McCall // Make sure that we call delete even if the dtor throws. 1175e4df6c8dSJohn McCall // This doesn't have to a conditional cleanup because we're going 1176e4df6c8dSJohn McCall // to pop it off in a second. 11778ed55a54SJohn McCall CGF.EHStack.pushCleanup<CallObjectDelete>(NormalAndEHCleanup, 11788ed55a54SJohn McCall Ptr, OperatorDelete, ElementType); 11798ed55a54SJohn McCall 11808ed55a54SJohn McCall if (Dtor) 11818ed55a54SJohn McCall CGF.EmitCXXDestructorCall(Dtor, Dtor_Complete, 11828ed55a54SJohn McCall /*ForVirtualBase=*/false, Ptr); 11838ed55a54SJohn McCall 11848ed55a54SJohn McCall CGF.PopCleanupBlock(); 11858ed55a54SJohn McCall } 11868ed55a54SJohn McCall 11878ed55a54SJohn McCall namespace { 11888ed55a54SJohn McCall /// Calls the given 'operator delete' on an array of objects. 11898ed55a54SJohn McCall struct CallArrayDelete : EHScopeStack::Cleanup { 11908ed55a54SJohn McCall llvm::Value *Ptr; 11918ed55a54SJohn McCall const FunctionDecl *OperatorDelete; 11928ed55a54SJohn McCall llvm::Value *NumElements; 11938ed55a54SJohn McCall QualType ElementType; 11948ed55a54SJohn McCall CharUnits CookieSize; 11958ed55a54SJohn McCall 11968ed55a54SJohn McCall CallArrayDelete(llvm::Value *Ptr, 11978ed55a54SJohn McCall const FunctionDecl *OperatorDelete, 11988ed55a54SJohn McCall llvm::Value *NumElements, 11998ed55a54SJohn McCall QualType ElementType, 12008ed55a54SJohn McCall CharUnits CookieSize) 12018ed55a54SJohn McCall : Ptr(Ptr), OperatorDelete(OperatorDelete), NumElements(NumElements), 12028ed55a54SJohn McCall ElementType(ElementType), CookieSize(CookieSize) {} 12038ed55a54SJohn McCall 12048ed55a54SJohn McCall void Emit(CodeGenFunction &CGF, bool IsForEH) { 12058ed55a54SJohn McCall const FunctionProtoType *DeleteFTy = 12068ed55a54SJohn McCall OperatorDelete->getType()->getAs<FunctionProtoType>(); 12078ed55a54SJohn McCall assert(DeleteFTy->getNumArgs() == 1 || DeleteFTy->getNumArgs() == 2); 12088ed55a54SJohn McCall 12098ed55a54SJohn McCall CallArgList Args; 12108ed55a54SJohn McCall 12118ed55a54SJohn McCall // Pass the pointer as the first argument. 12128ed55a54SJohn McCall QualType VoidPtrTy = DeleteFTy->getArgType(0); 12138ed55a54SJohn McCall llvm::Value *DeletePtr 12148ed55a54SJohn McCall = CGF.Builder.CreateBitCast(Ptr, CGF.ConvertType(VoidPtrTy)); 12158ed55a54SJohn McCall Args.push_back(std::make_pair(RValue::get(DeletePtr), VoidPtrTy)); 12168ed55a54SJohn McCall 12178ed55a54SJohn McCall // Pass the original requested size as the second argument. 12188ed55a54SJohn McCall if (DeleteFTy->getNumArgs() == 2) { 12198ed55a54SJohn McCall QualType size_t = DeleteFTy->getArgType(1); 12208ed55a54SJohn McCall const llvm::IntegerType *SizeTy 12218ed55a54SJohn McCall = cast<llvm::IntegerType>(CGF.ConvertType(size_t)); 12228ed55a54SJohn McCall 12238ed55a54SJohn McCall CharUnits ElementTypeSize = 12248ed55a54SJohn McCall CGF.CGM.getContext().getTypeSizeInChars(ElementType); 12258ed55a54SJohn McCall 12268ed55a54SJohn McCall // The size of an element, multiplied by the number of elements. 12278ed55a54SJohn McCall llvm::Value *Size 12288ed55a54SJohn McCall = llvm::ConstantInt::get(SizeTy, ElementTypeSize.getQuantity()); 12298ed55a54SJohn McCall Size = CGF.Builder.CreateMul(Size, NumElements); 12308ed55a54SJohn McCall 12318ed55a54SJohn McCall // Plus the size of the cookie if applicable. 12328ed55a54SJohn McCall if (!CookieSize.isZero()) { 12338ed55a54SJohn McCall llvm::Value *CookieSizeV 12348ed55a54SJohn McCall = llvm::ConstantInt::get(SizeTy, CookieSize.getQuantity()); 12358ed55a54SJohn McCall Size = CGF.Builder.CreateAdd(Size, CookieSizeV); 12368ed55a54SJohn McCall } 12378ed55a54SJohn McCall 12388ed55a54SJohn McCall Args.push_back(std::make_pair(RValue::get(Size), size_t)); 12398ed55a54SJohn McCall } 12408ed55a54SJohn McCall 12418ed55a54SJohn McCall // Emit the call to delete. 124299cc30c3STilmann Scheller CGF.EmitCall(CGF.getTypes().getFunctionInfo(Args, DeleteFTy), 12438ed55a54SJohn McCall CGF.CGM.GetAddrOfFunction(OperatorDelete), 12448ed55a54SJohn McCall ReturnValueSlot(), Args, OperatorDelete); 12458ed55a54SJohn McCall } 12468ed55a54SJohn McCall }; 12478ed55a54SJohn McCall } 12488ed55a54SJohn McCall 12498ed55a54SJohn McCall /// Emit the code for deleting an array of objects. 12508ed55a54SJohn McCall static void EmitArrayDelete(CodeGenFunction &CGF, 1251284c48ffSJohn McCall const CXXDeleteExpr *E, 12528ed55a54SJohn McCall llvm::Value *Ptr, 12538ed55a54SJohn McCall QualType ElementType) { 12548ed55a54SJohn McCall llvm::Value *NumElements = 0; 12558ed55a54SJohn McCall llvm::Value *AllocatedPtr = 0; 12568ed55a54SJohn McCall CharUnits CookieSize; 1257284c48ffSJohn McCall CGF.CGM.getCXXABI().ReadArrayCookie(CGF, Ptr, E, ElementType, 12588ed55a54SJohn McCall NumElements, AllocatedPtr, CookieSize); 12598ed55a54SJohn McCall 12608ed55a54SJohn McCall assert(AllocatedPtr && "ReadArrayCookie didn't set AllocatedPtr"); 12618ed55a54SJohn McCall 12628ed55a54SJohn McCall // Make sure that we call delete even if one of the dtors throws. 1263284c48ffSJohn McCall const FunctionDecl *OperatorDelete = E->getOperatorDelete(); 12648ed55a54SJohn McCall CGF.EHStack.pushCleanup<CallArrayDelete>(NormalAndEHCleanup, 12658ed55a54SJohn McCall AllocatedPtr, OperatorDelete, 12668ed55a54SJohn McCall NumElements, ElementType, 12678ed55a54SJohn McCall CookieSize); 12688ed55a54SJohn McCall 12698ed55a54SJohn McCall if (const CXXRecordDecl *RD = ElementType->getAsCXXRecordDecl()) { 12708ed55a54SJohn McCall if (!RD->hasTrivialDestructor()) { 12718ed55a54SJohn McCall assert(NumElements && "ReadArrayCookie didn't find element count" 12728ed55a54SJohn McCall " for a class with destructor"); 12738ed55a54SJohn McCall CGF.EmitCXXAggrDestructorCall(RD->getDestructor(), NumElements, Ptr); 12748ed55a54SJohn McCall } 12758ed55a54SJohn McCall } 12768ed55a54SJohn McCall 12778ed55a54SJohn McCall CGF.PopCleanupBlock(); 12788ed55a54SJohn McCall } 12798ed55a54SJohn McCall 128059486a2dSAnders Carlsson void CodeGenFunction::EmitCXXDeleteExpr(const CXXDeleteExpr *E) { 128159486a2dSAnders Carlsson 128259486a2dSAnders Carlsson // Get at the argument before we performed the implicit conversion 128359486a2dSAnders Carlsson // to void*. 128459486a2dSAnders Carlsson const Expr *Arg = E->getArgument(); 128559486a2dSAnders Carlsson while (const ImplicitCastExpr *ICE = dyn_cast<ImplicitCastExpr>(Arg)) { 1286e302792bSJohn McCall if (ICE->getCastKind() != CK_UserDefinedConversion && 128759486a2dSAnders Carlsson ICE->getType()->isVoidPointerType()) 128859486a2dSAnders Carlsson Arg = ICE->getSubExpr(); 128959486a2dSAnders Carlsson else 129059486a2dSAnders Carlsson break; 129159486a2dSAnders Carlsson } 129259486a2dSAnders Carlsson 129359486a2dSAnders Carlsson llvm::Value *Ptr = EmitScalarExpr(Arg); 129459486a2dSAnders Carlsson 129559486a2dSAnders Carlsson // Null check the pointer. 129659486a2dSAnders Carlsson llvm::BasicBlock *DeleteNotNull = createBasicBlock("delete.notnull"); 129759486a2dSAnders Carlsson llvm::BasicBlock *DeleteEnd = createBasicBlock("delete.end"); 129859486a2dSAnders Carlsson 129959486a2dSAnders Carlsson llvm::Value *IsNull = 130059486a2dSAnders Carlsson Builder.CreateICmpEQ(Ptr, llvm::Constant::getNullValue(Ptr->getType()), 130159486a2dSAnders Carlsson "isnull"); 130259486a2dSAnders Carlsson 130359486a2dSAnders Carlsson Builder.CreateCondBr(IsNull, DeleteEnd, DeleteNotNull); 130459486a2dSAnders Carlsson EmitBlock(DeleteNotNull); 130559486a2dSAnders Carlsson 13068ed55a54SJohn McCall // We might be deleting a pointer to array. If so, GEP down to the 13078ed55a54SJohn McCall // first non-array element. 13088ed55a54SJohn McCall // (this assumes that A(*)[3][7] is converted to [3 x [7 x %A]]*) 13098ed55a54SJohn McCall QualType DeleteTy = Arg->getType()->getAs<PointerType>()->getPointeeType(); 13108ed55a54SJohn McCall if (DeleteTy->isConstantArrayType()) { 13118ed55a54SJohn McCall llvm::Value *Zero = Builder.getInt32(0); 13128ed55a54SJohn McCall llvm::SmallVector<llvm::Value*,8> GEP; 131359486a2dSAnders Carlsson 13148ed55a54SJohn McCall GEP.push_back(Zero); // point at the outermost array 13158ed55a54SJohn McCall 13168ed55a54SJohn McCall // For each layer of array type we're pointing at: 13178ed55a54SJohn McCall while (const ConstantArrayType *Arr 13188ed55a54SJohn McCall = getContext().getAsConstantArrayType(DeleteTy)) { 13198ed55a54SJohn McCall // 1. Unpeel the array type. 13208ed55a54SJohn McCall DeleteTy = Arr->getElementType(); 13218ed55a54SJohn McCall 13228ed55a54SJohn McCall // 2. GEP to the first element of the array. 13238ed55a54SJohn McCall GEP.push_back(Zero); 13248ed55a54SJohn McCall } 13258ed55a54SJohn McCall 13268ed55a54SJohn McCall Ptr = Builder.CreateInBoundsGEP(Ptr, GEP.begin(), GEP.end(), "del.first"); 13278ed55a54SJohn McCall } 13288ed55a54SJohn McCall 132904f36218SDouglas Gregor assert(ConvertTypeForMem(DeleteTy) == 133004f36218SDouglas Gregor cast<llvm::PointerType>(Ptr->getType())->getElementType()); 13318ed55a54SJohn McCall 133259486a2dSAnders Carlsson if (E->isArrayForm()) { 1333284c48ffSJohn McCall EmitArrayDelete(*this, E, Ptr, DeleteTy); 13348ed55a54SJohn McCall } else { 13358ed55a54SJohn McCall EmitObjectDelete(*this, E->getOperatorDelete(), Ptr, DeleteTy); 133659486a2dSAnders Carlsson } 133759486a2dSAnders Carlsson 133859486a2dSAnders Carlsson EmitBlock(DeleteEnd); 133959486a2dSAnders Carlsson } 134059486a2dSAnders Carlsson 134159486a2dSAnders Carlsson llvm::Value *CodeGenFunction::EmitCXXTypeidExpr(const CXXTypeidExpr *E) { 134259486a2dSAnders Carlsson QualType Ty = E->getType(); 134359486a2dSAnders Carlsson const llvm::Type *LTy = ConvertType(Ty)->getPointerTo(); 1344fd7dfeb7SAnders Carlsson 13453f4336cbSAnders Carlsson if (E->isTypeOperand()) { 13463f4336cbSAnders Carlsson llvm::Constant *TypeInfo = 13473f4336cbSAnders Carlsson CGM.GetAddrOfRTTIDescriptor(E->getTypeOperand()); 13483f4336cbSAnders Carlsson return Builder.CreateBitCast(TypeInfo, LTy); 13493f4336cbSAnders Carlsson } 1350fd7dfeb7SAnders Carlsson 135159486a2dSAnders Carlsson Expr *subE = E->getExprOperand(); 135259486a2dSAnders Carlsson Ty = subE->getType(); 135359486a2dSAnders Carlsson CanQualType CanTy = CGM.getContext().getCanonicalType(Ty); 135459486a2dSAnders Carlsson Ty = CanTy.getUnqualifiedType().getNonReferenceType(); 135559486a2dSAnders Carlsson if (const RecordType *RT = Ty->getAs<RecordType>()) { 135659486a2dSAnders Carlsson const CXXRecordDecl *RD = cast<CXXRecordDecl>(RT->getDecl()); 135759486a2dSAnders Carlsson if (RD->isPolymorphic()) { 135859486a2dSAnders Carlsson // FIXME: if subE is an lvalue do 135959486a2dSAnders Carlsson LValue Obj = EmitLValue(subE); 136059486a2dSAnders Carlsson llvm::Value *This = Obj.getAddress(); 136159486a2dSAnders Carlsson // We need to do a zero check for *p, unless it has NonNullAttr. 136259486a2dSAnders Carlsson // FIXME: PointerType->hasAttr<NonNullAttr>() 136359486a2dSAnders Carlsson bool CanBeZero = false; 136459486a2dSAnders Carlsson if (UnaryOperator *UO = dyn_cast<UnaryOperator>(subE->IgnoreParens())) 1365e302792bSJohn McCall if (UO->getOpcode() == UO_Deref) 136659486a2dSAnders Carlsson CanBeZero = true; 136759486a2dSAnders Carlsson if (CanBeZero) { 136859486a2dSAnders Carlsson llvm::BasicBlock *NonZeroBlock = createBasicBlock(); 136959486a2dSAnders Carlsson llvm::BasicBlock *ZeroBlock = createBasicBlock(); 137059486a2dSAnders Carlsson 13718fc50c29SDan Gohman llvm::Value *Zero = llvm::Constant::getNullValue(This->getType()); 13728fc50c29SDan Gohman Builder.CreateCondBr(Builder.CreateICmpNE(This, Zero), 137359486a2dSAnders Carlsson NonZeroBlock, ZeroBlock); 137459486a2dSAnders Carlsson EmitBlock(ZeroBlock); 137559486a2dSAnders Carlsson /// Call __cxa_bad_typeid 1376ad7c5c16SJohn McCall const llvm::Type *ResultType = llvm::Type::getVoidTy(getLLVMContext()); 137759486a2dSAnders Carlsson const llvm::FunctionType *FTy; 137859486a2dSAnders Carlsson FTy = llvm::FunctionType::get(ResultType, false); 137959486a2dSAnders Carlsson llvm::Value *F = CGM.CreateRuntimeFunction(FTy, "__cxa_bad_typeid"); 138059486a2dSAnders Carlsson Builder.CreateCall(F)->setDoesNotReturn(); 138159486a2dSAnders Carlsson Builder.CreateUnreachable(); 138259486a2dSAnders Carlsson EmitBlock(NonZeroBlock); 138359486a2dSAnders Carlsson } 13848fc50c29SDan Gohman llvm::Value *V = GetVTablePtr(This, LTy->getPointerTo()); 138559486a2dSAnders Carlsson V = Builder.CreateConstInBoundsGEP1_64(V, -1ULL); 138659486a2dSAnders Carlsson V = Builder.CreateLoad(V); 138759486a2dSAnders Carlsson return V; 138859486a2dSAnders Carlsson } 138959486a2dSAnders Carlsson } 13903f4336cbSAnders Carlsson return Builder.CreateBitCast(CGM.GetAddrOfRTTIDescriptor(Ty), LTy); 139159486a2dSAnders Carlsson } 139259486a2dSAnders Carlsson 139359486a2dSAnders Carlsson llvm::Value *CodeGenFunction::EmitDynamicCast(llvm::Value *V, 139459486a2dSAnders Carlsson const CXXDynamicCastExpr *DCE) { 13953f4336cbSAnders Carlsson QualType SrcTy = DCE->getSubExpr()->getType(); 13963f4336cbSAnders Carlsson QualType DestTy = DCE->getTypeAsWritten(); 13973f4336cbSAnders Carlsson QualType InnerType = DestTy->getPointeeType(); 13983f4336cbSAnders Carlsson 139959486a2dSAnders Carlsson const llvm::Type *LTy = ConvertType(DCE->getType()); 140059486a2dSAnders Carlsson 140159486a2dSAnders Carlsson bool CanBeZero = false; 140259486a2dSAnders Carlsson bool ToVoid = false; 140359486a2dSAnders Carlsson bool ThrowOnBad = false; 14043f4336cbSAnders Carlsson if (DestTy->isPointerType()) { 140559486a2dSAnders Carlsson // FIXME: if PointerType->hasAttr<NonNullAttr>(), we don't set this 140659486a2dSAnders Carlsson CanBeZero = true; 140759486a2dSAnders Carlsson if (InnerType->isVoidType()) 140859486a2dSAnders Carlsson ToVoid = true; 140959486a2dSAnders Carlsson } else { 141059486a2dSAnders Carlsson LTy = LTy->getPointerTo(); 1411fa8b4955SDouglas Gregor 1412fa8b4955SDouglas Gregor // FIXME: What if exceptions are disabled? 141359486a2dSAnders Carlsson ThrowOnBad = true; 141459486a2dSAnders Carlsson } 141559486a2dSAnders Carlsson 14163f4336cbSAnders Carlsson if (SrcTy->isPointerType() || SrcTy->isReferenceType()) 14173f4336cbSAnders Carlsson SrcTy = SrcTy->getPointeeType(); 14183f4336cbSAnders Carlsson SrcTy = SrcTy.getUnqualifiedType(); 14193f4336cbSAnders Carlsson 14200087bc85SAnders Carlsson if (DestTy->isPointerType() || DestTy->isReferenceType()) 14213f4336cbSAnders Carlsson DestTy = DestTy->getPointeeType(); 14223f4336cbSAnders Carlsson DestTy = DestTy.getUnqualifiedType(); 142359486a2dSAnders Carlsson 142459486a2dSAnders Carlsson llvm::BasicBlock *ContBlock = createBasicBlock(); 142559486a2dSAnders Carlsson llvm::BasicBlock *NullBlock = 0; 142659486a2dSAnders Carlsson llvm::BasicBlock *NonZeroBlock = 0; 142759486a2dSAnders Carlsson if (CanBeZero) { 142859486a2dSAnders Carlsson NonZeroBlock = createBasicBlock(); 142959486a2dSAnders Carlsson NullBlock = createBasicBlock(); 14303f4336cbSAnders Carlsson Builder.CreateCondBr(Builder.CreateIsNotNull(V), NonZeroBlock, NullBlock); 143159486a2dSAnders Carlsson EmitBlock(NonZeroBlock); 143259486a2dSAnders Carlsson } 143359486a2dSAnders Carlsson 143459486a2dSAnders Carlsson llvm::BasicBlock *BadCastBlock = 0; 143559486a2dSAnders Carlsson 14363f4336cbSAnders Carlsson const llvm::Type *PtrDiffTy = ConvertType(getContext().getPointerDiffType()); 143759486a2dSAnders Carlsson 143859486a2dSAnders Carlsson // See if this is a dynamic_cast(void*) 143959486a2dSAnders Carlsson if (ToVoid) { 144059486a2dSAnders Carlsson llvm::Value *This = V; 14418fc50c29SDan Gohman V = GetVTablePtr(This, PtrDiffTy->getPointerTo()); 144259486a2dSAnders Carlsson V = Builder.CreateConstInBoundsGEP1_64(V, -2ULL); 144359486a2dSAnders Carlsson V = Builder.CreateLoad(V, "offset to top"); 1444ad7c5c16SJohn McCall This = EmitCastToVoidPtr(This); 144559486a2dSAnders Carlsson V = Builder.CreateInBoundsGEP(This, V); 144659486a2dSAnders Carlsson V = Builder.CreateBitCast(V, LTy); 144759486a2dSAnders Carlsson } else { 144859486a2dSAnders Carlsson /// Call __dynamic_cast 1449ad7c5c16SJohn McCall const llvm::Type *ResultType = Int8PtrTy; 145059486a2dSAnders Carlsson const llvm::FunctionType *FTy; 145159486a2dSAnders Carlsson std::vector<const llvm::Type*> ArgTys; 1452ad7c5c16SJohn McCall ArgTys.push_back(Int8PtrTy); 1453ad7c5c16SJohn McCall ArgTys.push_back(Int8PtrTy); 1454ad7c5c16SJohn McCall ArgTys.push_back(Int8PtrTy); 145559486a2dSAnders Carlsson ArgTys.push_back(PtrDiffTy); 145659486a2dSAnders Carlsson FTy = llvm::FunctionType::get(ResultType, ArgTys, false); 145759486a2dSAnders Carlsson 145859486a2dSAnders Carlsson // FIXME: Calculate better hint. 145959486a2dSAnders Carlsson llvm::Value *hint = llvm::ConstantInt::get(PtrDiffTy, -1ULL); 14603f4336cbSAnders Carlsson 14613f4336cbSAnders Carlsson assert(SrcTy->isRecordType() && "Src type must be record type!"); 14623f4336cbSAnders Carlsson assert(DestTy->isRecordType() && "Dest type must be record type!"); 14633f4336cbSAnders Carlsson 1464247894b3SDouglas Gregor llvm::Value *SrcArg 1465247894b3SDouglas Gregor = CGM.GetAddrOfRTTIDescriptor(SrcTy.getUnqualifiedType()); 1466247894b3SDouglas Gregor llvm::Value *DestArg 1467247894b3SDouglas Gregor = CGM.GetAddrOfRTTIDescriptor(DestTy.getUnqualifiedType()); 14683f4336cbSAnders Carlsson 1469ad7c5c16SJohn McCall V = Builder.CreateBitCast(V, Int8PtrTy); 147059486a2dSAnders Carlsson V = Builder.CreateCall4(CGM.CreateRuntimeFunction(FTy, "__dynamic_cast"), 14713f4336cbSAnders Carlsson V, SrcArg, DestArg, hint); 147259486a2dSAnders Carlsson V = Builder.CreateBitCast(V, LTy); 147359486a2dSAnders Carlsson 147459486a2dSAnders Carlsson if (ThrowOnBad) { 147559486a2dSAnders Carlsson BadCastBlock = createBasicBlock(); 14763f4336cbSAnders Carlsson Builder.CreateCondBr(Builder.CreateIsNotNull(V), ContBlock, BadCastBlock); 147759486a2dSAnders Carlsson EmitBlock(BadCastBlock); 1478fa8b4955SDouglas Gregor /// Invoke __cxa_bad_cast 1479ad7c5c16SJohn McCall ResultType = llvm::Type::getVoidTy(getLLVMContext()); 148059486a2dSAnders Carlsson const llvm::FunctionType *FBadTy; 148159486a2dSAnders Carlsson FBadTy = llvm::FunctionType::get(ResultType, false); 148259486a2dSAnders Carlsson llvm::Value *F = CGM.CreateRuntimeFunction(FBadTy, "__cxa_bad_cast"); 1483fa8b4955SDouglas Gregor if (llvm::BasicBlock *InvokeDest = getInvokeDest()) { 1484fa8b4955SDouglas Gregor llvm::BasicBlock *Cont = createBasicBlock("invoke.cont"); 1485fa8b4955SDouglas Gregor Builder.CreateInvoke(F, Cont, InvokeDest)->setDoesNotReturn(); 1486fa8b4955SDouglas Gregor EmitBlock(Cont); 1487fa8b4955SDouglas Gregor } else { 1488fa8b4955SDouglas Gregor // FIXME: Does this ever make sense? 148959486a2dSAnders Carlsson Builder.CreateCall(F)->setDoesNotReturn(); 1490fa8b4955SDouglas Gregor } 149159486a2dSAnders Carlsson Builder.CreateUnreachable(); 149259486a2dSAnders Carlsson } 149359486a2dSAnders Carlsson } 149459486a2dSAnders Carlsson 149559486a2dSAnders Carlsson if (CanBeZero) { 149659486a2dSAnders Carlsson Builder.CreateBr(ContBlock); 149759486a2dSAnders Carlsson EmitBlock(NullBlock); 149859486a2dSAnders Carlsson Builder.CreateBr(ContBlock); 149959486a2dSAnders Carlsson } 150059486a2dSAnders Carlsson EmitBlock(ContBlock); 150159486a2dSAnders Carlsson if (CanBeZero) { 150220c0f02cSJay Foad llvm::PHINode *PHI = Builder.CreatePHI(LTy, 2); 150359486a2dSAnders Carlsson PHI->addIncoming(V, NonZeroBlock); 150459486a2dSAnders Carlsson PHI->addIncoming(llvm::Constant::getNullValue(LTy), NullBlock); 150559486a2dSAnders Carlsson V = PHI; 150659486a2dSAnders Carlsson } 150759486a2dSAnders Carlsson 150859486a2dSAnders Carlsson return V; 150959486a2dSAnders Carlsson } 1510