17a51313dSChris Lattner //===--- CGExprComplex.cpp - Emit LLVM Code for Complex Exprs -------------===// 27a51313dSChris Lattner // 3*2946cd70SChandler Carruth // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions. 4*2946cd70SChandler Carruth // See https://llvm.org/LICENSE.txt for license information. 5*2946cd70SChandler Carruth // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception 67a51313dSChris Lattner // 77a51313dSChris Lattner //===----------------------------------------------------------------------===// 87a51313dSChris Lattner // 97a51313dSChris Lattner // This contains code to emit Expr nodes with complex types as LLVM code. 107a51313dSChris Lattner // 117a51313dSChris Lattner //===----------------------------------------------------------------------===// 127a51313dSChris Lattner 137a51313dSChris Lattner #include "CodeGenFunction.h" 147a51313dSChris Lattner #include "CodeGenModule.h" 15ad319a73SDaniel Dunbar #include "clang/AST/StmtVisitor.h" 160c4b230bSChandler Carruth #include "llvm/ADT/STLExtras.h" 17ffd5551bSChandler Carruth #include "llvm/IR/Constants.h" 180c4b230bSChandler Carruth #include "llvm/IR/Instructions.h" 190c4b230bSChandler Carruth #include "llvm/IR/MDBuilder.h" 200c4b230bSChandler Carruth #include "llvm/IR/Metadata.h" 2127dcbb24SJF Bastien #include <algorithm> 227a51313dSChris Lattner using namespace clang; 237a51313dSChris Lattner using namespace CodeGen; 247a51313dSChris Lattner 257a51313dSChris Lattner //===----------------------------------------------------------------------===// 267a51313dSChris Lattner // Complex Expression Emitter 277a51313dSChris Lattner //===----------------------------------------------------------------------===// 287a51313dSChris Lattner 297a51313dSChris Lattner typedef CodeGenFunction::ComplexPairTy ComplexPairTy; 307a51313dSChris Lattner 3147fb9508SJohn McCall /// Return the complex type that we are meant to emit. 3247fb9508SJohn McCall static const ComplexType *getComplexType(QualType type) { 3347fb9508SJohn McCall type = type.getCanonicalType(); 3447fb9508SJohn McCall if (const ComplexType *comp = dyn_cast<ComplexType>(type)) { 3547fb9508SJohn McCall return comp; 3647fb9508SJohn McCall } else { 3747fb9508SJohn McCall return cast<ComplexType>(cast<AtomicType>(type)->getValueType()); 3847fb9508SJohn McCall } 3947fb9508SJohn McCall } 4047fb9508SJohn McCall 417a51313dSChris Lattner namespace { 42337e3a5fSBenjamin Kramer class ComplexExprEmitter 437a51313dSChris Lattner : public StmtVisitor<ComplexExprEmitter, ComplexPairTy> { 447a51313dSChris Lattner CodeGenFunction &CGF; 45cb463859SDaniel Dunbar CGBuilderTy &Builder; 46df0fe27bSMike Stump bool IgnoreReal; 47df0fe27bSMike Stump bool IgnoreImag; 487a51313dSChris Lattner public: 4907bb1966SJohn McCall ComplexExprEmitter(CodeGenFunction &cgf, bool ir=false, bool ii=false) 5007bb1966SJohn McCall : CGF(cgf), Builder(CGF.Builder), IgnoreReal(ir), IgnoreImag(ii) { 517a51313dSChris Lattner } 527a51313dSChris Lattner 537a51313dSChris Lattner 547a51313dSChris Lattner //===--------------------------------------------------------------------===// 557a51313dSChris Lattner // Utilities 567a51313dSChris Lattner //===--------------------------------------------------------------------===// 577a51313dSChris Lattner 58df0fe27bSMike Stump bool TestAndClearIgnoreReal() { 59df0fe27bSMike Stump bool I = IgnoreReal; 60df0fe27bSMike Stump IgnoreReal = false; 61df0fe27bSMike Stump return I; 62df0fe27bSMike Stump } 63df0fe27bSMike Stump bool TestAndClearIgnoreImag() { 64df0fe27bSMike Stump bool I = IgnoreImag; 65df0fe27bSMike Stump IgnoreImag = false; 66df0fe27bSMike Stump return I; 67df0fe27bSMike Stump } 68df0fe27bSMike Stump 697a51313dSChris Lattner /// EmitLoadOfLValue - Given an expression with complex type that represents a 707a51313dSChris Lattner /// value l-value, this method emits the address of the l-value, then loads 717a51313dSChris Lattner /// and returns the result. 727a51313dSChris Lattner ComplexPairTy EmitLoadOfLValue(const Expr *E) { 732d84e842SNick Lewycky return EmitLoadOfLValue(CGF.EmitLValue(E), E->getExprLoc()); 74e26a872bSJohn McCall } 75e26a872bSJohn McCall 762d84e842SNick Lewycky ComplexPairTy EmitLoadOfLValue(LValue LV, SourceLocation Loc); 77e26a872bSJohn McCall 787a51313dSChris Lattner /// EmitStoreOfComplex - Store the specified real/imag parts into the 797a51313dSChris Lattner /// specified value pointer. 8066e4197fSDavid Blaikie void EmitStoreOfComplex(ComplexPairTy Val, LValue LV, bool isInit); 817a51313dSChris Lattner 82650d7f7dSFilipe Cabecinhas /// Emit a cast from complex value Val to DestType. 837a51313dSChris Lattner ComplexPairTy EmitComplexToComplexCast(ComplexPairTy Val, QualType SrcType, 847af183d8SFilipe Cabecinhas QualType DestType, SourceLocation Loc); 85650d7f7dSFilipe Cabecinhas /// Emit a cast from scalar value Val to DestType. 86f045007fSEli Friedman ComplexPairTy EmitScalarToComplexCast(llvm::Value *Val, QualType SrcType, 877af183d8SFilipe Cabecinhas QualType DestType, SourceLocation Loc); 887a51313dSChris Lattner 897a51313dSChris Lattner //===--------------------------------------------------------------------===// 907a51313dSChris Lattner // Visitor Methods 917a51313dSChris Lattner //===--------------------------------------------------------------------===// 927a51313dSChris Lattner 938162d4adSFariborz Jahanian ComplexPairTy Visit(Expr *E) { 949b479666SDavid Blaikie ApplyDebugLocation DL(CGF, E); 958162d4adSFariborz Jahanian return StmtVisitor<ComplexExprEmitter, ComplexPairTy>::Visit(E); 968162d4adSFariborz Jahanian } 978162d4adSFariborz Jahanian 987a51313dSChris Lattner ComplexPairTy VisitStmt(Stmt *S) { 997a51313dSChris Lattner S->dump(CGF.getContext().getSourceManager()); 10083d382b1SDavid Blaikie llvm_unreachable("Stmt can't have complex result type!"); 1017a51313dSChris Lattner } 1027a51313dSChris Lattner ComplexPairTy VisitExpr(Expr *S); 1038003edc9SBill Wendling ComplexPairTy VisitConstantExpr(ConstantExpr *E) { 1048003edc9SBill Wendling return Visit(E->getSubExpr()); 1058003edc9SBill Wendling } 1067a51313dSChris Lattner ComplexPairTy VisitParenExpr(ParenExpr *PE) { return Visit(PE->getSubExpr());} 10791147596SPeter Collingbourne ComplexPairTy VisitGenericSelectionExpr(GenericSelectionExpr *GE) { 10891147596SPeter Collingbourne return Visit(GE->getResultExpr()); 10991147596SPeter Collingbourne } 1107a51313dSChris Lattner ComplexPairTy VisitImaginaryLiteral(const ImaginaryLiteral *IL); 1117c454bb8SJohn McCall ComplexPairTy 1127c454bb8SJohn McCall VisitSubstNonTypeTemplateParmExpr(SubstNonTypeTemplateParmExpr *PE) { 1137c454bb8SJohn McCall return Visit(PE->getReplacement()); 1147c454bb8SJohn McCall } 1155eb58583SGor Nishanov ComplexPairTy VisitCoawaitExpr(CoawaitExpr *S) { 1165eb58583SGor Nishanov return CGF.EmitCoawaitExpr(*S).getComplexVal(); 1175eb58583SGor Nishanov } 1185eb58583SGor Nishanov ComplexPairTy VisitCoyieldExpr(CoyieldExpr *S) { 1195eb58583SGor Nishanov return CGF.EmitCoyieldExpr(*S).getComplexVal(); 1205eb58583SGor Nishanov } 1215eb58583SGor Nishanov ComplexPairTy VisitUnaryCoawait(const UnaryOperator *E) { 1225eb58583SGor Nishanov return Visit(E->getSubExpr()); 1235eb58583SGor Nishanov } 1245eb58583SGor Nishanov 1256cc8317cSAlex Lorenz ComplexPairTy emitConstant(const CodeGenFunction::ConstantEmission &Constant, 1266cc8317cSAlex Lorenz Expr *E) { 1276cc8317cSAlex Lorenz assert(Constant && "not a constant"); 1286cc8317cSAlex Lorenz if (Constant.isReference()) 1296cc8317cSAlex Lorenz return EmitLoadOfLValue(Constant.getReferenceLValue(CGF, E), 1302d84e842SNick Lewycky E->getExprLoc()); 13171335059SJohn McCall 1326cc8317cSAlex Lorenz llvm::Constant *pair = Constant.getValue(); 13364f23918SEli Friedman return ComplexPairTy(pair->getAggregateElement(0U), 13464f23918SEli Friedman pair->getAggregateElement(1U)); 13571335059SJohn McCall } 1366cc8317cSAlex Lorenz 1376cc8317cSAlex Lorenz // l-values. 1386cc8317cSAlex Lorenz ComplexPairTy VisitDeclRefExpr(DeclRefExpr *E) { 1396cc8317cSAlex Lorenz if (CodeGenFunction::ConstantEmission Constant = CGF.tryEmitAsConstant(E)) 1406cc8317cSAlex Lorenz return emitConstant(Constant, E); 141113bee05SJohn McCall return EmitLoadOfLValue(E); 14271335059SJohn McCall } 14376d864c7SDaniel Dunbar ComplexPairTy VisitObjCIvarRefExpr(ObjCIvarRefExpr *E) { 14476d864c7SDaniel Dunbar return EmitLoadOfLValue(E); 14576d864c7SDaniel Dunbar } 14676d864c7SDaniel Dunbar ComplexPairTy VisitObjCMessageExpr(ObjCMessageExpr *E) { 14776d864c7SDaniel Dunbar return CGF.EmitObjCMessageExpr(E).getComplexVal(); 14876d864c7SDaniel Dunbar } 1497a51313dSChris Lattner ComplexPairTy VisitArraySubscriptExpr(Expr *E) { return EmitLoadOfLValue(E); } 1506cc8317cSAlex Lorenz ComplexPairTy VisitMemberExpr(MemberExpr *ME) { 1516cc8317cSAlex Lorenz if (CodeGenFunction::ConstantEmission Constant = 1526cc8317cSAlex Lorenz CGF.tryEmitAsConstant(ME)) { 1536cc8317cSAlex Lorenz CGF.EmitIgnoredExpr(ME->getBase()); 1546cc8317cSAlex Lorenz return emitConstant(Constant, ME); 1556cc8317cSAlex Lorenz } 1566cc8317cSAlex Lorenz return EmitLoadOfLValue(ME); 1576cc8317cSAlex Lorenz } 1581bf5846aSJohn McCall ComplexPairTy VisitOpaqueValueExpr(OpaqueValueExpr *E) { 159c07a0c7eSJohn McCall if (E->isGLValue()) 160797afe3aSAkira Hatanaka return EmitLoadOfLValue(CGF.getOrCreateOpaqueLValueMapping(E), 161797afe3aSAkira Hatanaka E->getExprLoc()); 162797afe3aSAkira Hatanaka return CGF.getOrCreateOpaqueRValueMapping(E).getComplexVal(); 1631bf5846aSJohn McCall } 1647a51313dSChris Lattner 165fe96e0b6SJohn McCall ComplexPairTy VisitPseudoObjectExpr(PseudoObjectExpr *E) { 166fe96e0b6SJohn McCall return CGF.EmitPseudoObjectRValue(E).getComplexVal(); 167fe96e0b6SJohn McCall } 168fe96e0b6SJohn McCall 1697a51313dSChris Lattner // FIXME: CompoundLiteralExpr 1707a51313dSChris Lattner 1711a07fd18SCraig Topper ComplexPairTy EmitCast(CastKind CK, Expr *Op, QualType DestTy); 1727a51313dSChris Lattner ComplexPairTy VisitImplicitCastExpr(ImplicitCastExpr *E) { 1737a51313dSChris Lattner // Unlike for scalars, we don't have to worry about function->ptr demotion 1747a51313dSChris Lattner // here. 175c357f412SDouglas Gregor return EmitCast(E->getCastKind(), E->getSubExpr(), E->getType()); 1767a51313dSChris Lattner } 1777a51313dSChris Lattner ComplexPairTy VisitCastExpr(CastExpr *E) { 1782bf9b4c0SAlexey Bataev if (const auto *ECE = dyn_cast<ExplicitCastExpr>(E)) 1792bf9b4c0SAlexey Bataev CGF.CGM.EmitExplicitCastExprType(ECE, &CGF); 180c357f412SDouglas Gregor return EmitCast(E->getCastKind(), E->getSubExpr(), E->getType()); 1817a51313dSChris Lattner } 1827a51313dSChris Lattner ComplexPairTy VisitCallExpr(const CallExpr *E); 1837a51313dSChris Lattner ComplexPairTy VisitStmtExpr(const StmtExpr *E); 1847a51313dSChris Lattner 1857a51313dSChris Lattner // Operators. 1867a51313dSChris Lattner ComplexPairTy VisitPrePostIncDec(const UnaryOperator *E, 187116ce8f1SChris Lattner bool isInc, bool isPre) { 188116ce8f1SChris Lattner LValue LV = CGF.EmitLValue(E->getSubExpr()); 189116ce8f1SChris Lattner return CGF.EmitComplexPrePostIncDec(E, LV, isInc, isPre); 190116ce8f1SChris Lattner } 1917a51313dSChris Lattner ComplexPairTy VisitUnaryPostDec(const UnaryOperator *E) { 1927a51313dSChris Lattner return VisitPrePostIncDec(E, false, false); 1937a51313dSChris Lattner } 1947a51313dSChris Lattner ComplexPairTy VisitUnaryPostInc(const UnaryOperator *E) { 1957a51313dSChris Lattner return VisitPrePostIncDec(E, true, false); 1967a51313dSChris Lattner } 1977a51313dSChris Lattner ComplexPairTy VisitUnaryPreDec(const UnaryOperator *E) { 1987a51313dSChris Lattner return VisitPrePostIncDec(E, false, true); 1997a51313dSChris Lattner } 2007a51313dSChris Lattner ComplexPairTy VisitUnaryPreInc(const UnaryOperator *E) { 2017a51313dSChris Lattner return VisitPrePostIncDec(E, true, true); 2027a51313dSChris Lattner } 2037a51313dSChris Lattner ComplexPairTy VisitUnaryDeref(const Expr *E) { return EmitLoadOfLValue(E); } 2047a51313dSChris Lattner ComplexPairTy VisitUnaryPlus (const UnaryOperator *E) { 205df0fe27bSMike Stump TestAndClearIgnoreReal(); 206df0fe27bSMike Stump TestAndClearIgnoreImag(); 2077a51313dSChris Lattner return Visit(E->getSubExpr()); 2087a51313dSChris Lattner } 2097a51313dSChris Lattner ComplexPairTy VisitUnaryMinus (const UnaryOperator *E); 2107a51313dSChris Lattner ComplexPairTy VisitUnaryNot (const UnaryOperator *E); 2116f28289aSSebastian Redl // LNot,Real,Imag never return complex. 2127a51313dSChris Lattner ComplexPairTy VisitUnaryExtension(const UnaryOperator *E) { 2137a51313dSChris Lattner return Visit(E->getSubExpr()); 2147a51313dSChris Lattner } 215aa9c7aedSChris Lattner ComplexPairTy VisitCXXDefaultArgExpr(CXXDefaultArgExpr *DAE) { 216aa9c7aedSChris Lattner return Visit(DAE->getExpr()); 217aa9c7aedSChris Lattner } 218852c9db7SRichard Smith ComplexPairTy VisitCXXDefaultInitExpr(CXXDefaultInitExpr *DIE) { 219852c9db7SRichard Smith CodeGenFunction::CXXDefaultInitExprScope Scope(CGF); 220852c9db7SRichard Smith return Visit(DIE->getExpr()); 221852c9db7SRichard Smith } 2225d413781SJohn McCall ComplexPairTy VisitExprWithCleanups(ExprWithCleanups *E) { 22308ef4660SJohn McCall CGF.enterFullExpression(E); 22408ef4660SJohn McCall CodeGenFunction::RunCleanupsScope Scope(CGF); 225092d0652SReid Kleckner ComplexPairTy Vals = Visit(E->getSubExpr()); 226092d0652SReid Kleckner // Defend against dominance problems caused by jumps out of expression 227092d0652SReid Kleckner // evaluation through the shared cleanup block. 228092d0652SReid Kleckner Scope.ForceCleanup({&Vals.first, &Vals.second}); 229092d0652SReid Kleckner return Vals; 230c0092ad3SAnders Carlsson } 231747eb784SDouglas Gregor ComplexPairTy VisitCXXScalarValueInitExpr(CXXScalarValueInitExpr *E) { 232ce4528f0SArgyrios Kyrtzidis assert(E->getType()->isAnyComplexType() && "Expected complex type!"); 23347fb9508SJohn McCall QualType Elem = E->getType()->castAs<ComplexType>()->getElementType(); 2344a3999feSMike Stump llvm::Constant *Null = llvm::Constant::getNullValue(CGF.ConvertType(Elem)); 235ce4528f0SArgyrios Kyrtzidis return ComplexPairTy(Null, Null); 236ce4528f0SArgyrios Kyrtzidis } 2370202cb40SDouglas Gregor ComplexPairTy VisitImplicitValueInitExpr(ImplicitValueInitExpr *E) { 2380202cb40SDouglas Gregor assert(E->getType()->isAnyComplexType() && "Expected complex type!"); 23947fb9508SJohn McCall QualType Elem = E->getType()->castAs<ComplexType>()->getElementType(); 240ae86c19eSOwen Anderson llvm::Constant *Null = 2410b75f23bSOwen Anderson llvm::Constant::getNullValue(CGF.ConvertType(Elem)); 2420202cb40SDouglas Gregor return ComplexPairTy(Null, Null); 2430202cb40SDouglas Gregor } 2447a51313dSChris Lattner 2457a51313dSChris Lattner struct BinOpInfo { 2467a51313dSChris Lattner ComplexPairTy LHS; 2477a51313dSChris Lattner ComplexPairTy RHS; 2487a51313dSChris Lattner QualType Ty; // Computation Type. 2497a51313dSChris Lattner }; 2507a51313dSChris Lattner 2517a51313dSChris Lattner BinOpInfo EmitBinOps(const BinaryOperator *E); 25207bb1966SJohn McCall LValue EmitCompoundAssignLValue(const CompoundAssignOperator *E, 25307bb1966SJohn McCall ComplexPairTy (ComplexExprEmitter::*Func) 25407bb1966SJohn McCall (const BinOpInfo &), 255f045007fSEli Friedman RValue &Val); 2567a51313dSChris Lattner ComplexPairTy EmitCompoundAssign(const CompoundAssignOperator *E, 2577a51313dSChris Lattner ComplexPairTy (ComplexExprEmitter::*Func) 2587a51313dSChris Lattner (const BinOpInfo &)); 2597a51313dSChris Lattner 2607a51313dSChris Lattner ComplexPairTy EmitBinAdd(const BinOpInfo &Op); 2617a51313dSChris Lattner ComplexPairTy EmitBinSub(const BinOpInfo &Op); 2627a51313dSChris Lattner ComplexPairTy EmitBinMul(const BinOpInfo &Op); 2637a51313dSChris Lattner ComplexPairTy EmitBinDiv(const BinOpInfo &Op); 2647a51313dSChris Lattner 265a216cad0SChandler Carruth ComplexPairTy EmitComplexBinOpLibCall(StringRef LibCallName, 266a216cad0SChandler Carruth const BinOpInfo &Op); 267a216cad0SChandler Carruth 2687a51313dSChris Lattner ComplexPairTy VisitBinAdd(const BinaryOperator *E) { 2697a51313dSChris Lattner return EmitBinAdd(EmitBinOps(E)); 2707a51313dSChris Lattner } 2717a51313dSChris Lattner ComplexPairTy VisitBinSub(const BinaryOperator *E) { 2727a51313dSChris Lattner return EmitBinSub(EmitBinOps(E)); 2737a51313dSChris Lattner } 27407bb1966SJohn McCall ComplexPairTy VisitBinMul(const BinaryOperator *E) { 27507bb1966SJohn McCall return EmitBinMul(EmitBinOps(E)); 27607bb1966SJohn McCall } 2777a51313dSChris Lattner ComplexPairTy VisitBinDiv(const BinaryOperator *E) { 2787a51313dSChris Lattner return EmitBinDiv(EmitBinOps(E)); 2797a51313dSChris Lattner } 2807a51313dSChris Lattner 2817a51313dSChris Lattner // Compound assignments. 2827a51313dSChris Lattner ComplexPairTy VisitBinAddAssign(const CompoundAssignOperator *E) { 2837a51313dSChris Lattner return EmitCompoundAssign(E, &ComplexExprEmitter::EmitBinAdd); 2847a51313dSChris Lattner } 2857a51313dSChris Lattner ComplexPairTy VisitBinSubAssign(const CompoundAssignOperator *E) { 2867a51313dSChris Lattner return EmitCompoundAssign(E, &ComplexExprEmitter::EmitBinSub); 2877a51313dSChris Lattner } 2887a51313dSChris Lattner ComplexPairTy VisitBinMulAssign(const CompoundAssignOperator *E) { 2897a51313dSChris Lattner return EmitCompoundAssign(E, &ComplexExprEmitter::EmitBinMul); 2907a51313dSChris Lattner } 2917a51313dSChris Lattner ComplexPairTy VisitBinDivAssign(const CompoundAssignOperator *E) { 2927a51313dSChris Lattner return EmitCompoundAssign(E, &ComplexExprEmitter::EmitBinDiv); 2937a51313dSChris Lattner } 2947a51313dSChris Lattner 2957a51313dSChris Lattner // GCC rejects rem/and/or/xor for integer complex. 2967a51313dSChris Lattner // Logical and/or always return int, never complex. 2977a51313dSChris Lattner 2987a51313dSChris Lattner // No comparisons produce a complex result. 29907bb1966SJohn McCall 30007bb1966SJohn McCall LValue EmitBinAssignLValue(const BinaryOperator *E, 30107bb1966SJohn McCall ComplexPairTy &Val); 3027a51313dSChris Lattner ComplexPairTy VisitBinAssign (const BinaryOperator *E); 3037a51313dSChris Lattner ComplexPairTy VisitBinComma (const BinaryOperator *E); 3047a51313dSChris Lattner 3057a51313dSChris Lattner 306c07a0c7eSJohn McCall ComplexPairTy 307c07a0c7eSJohn McCall VisitAbstractConditionalOperator(const AbstractConditionalOperator *CO); 3087a51313dSChris Lattner ComplexPairTy VisitChooseExpr(ChooseExpr *CE); 309dd7406e6SEli Friedman 310dd7406e6SEli Friedman ComplexPairTy VisitInitListExpr(InitListExpr *E); 31100079612SDaniel Dunbar 312afa84ae8SEli Friedman ComplexPairTy VisitCompoundLiteralExpr(CompoundLiteralExpr *E) { 313afa84ae8SEli Friedman return EmitLoadOfLValue(E); 314afa84ae8SEli Friedman } 315afa84ae8SEli Friedman 31600079612SDaniel Dunbar ComplexPairTy VisitVAArgExpr(VAArgExpr *E); 317df14b3a8SEli Friedman 318df14b3a8SEli Friedman ComplexPairTy VisitAtomicExpr(AtomicExpr *E) { 319df14b3a8SEli Friedman return CGF.EmitAtomicExpr(E).getComplexVal(); 320df14b3a8SEli Friedman } 3217a51313dSChris Lattner }; 3227a51313dSChris Lattner } // end anonymous namespace. 3237a51313dSChris Lattner 3247a51313dSChris Lattner //===----------------------------------------------------------------------===// 3257a51313dSChris Lattner // Utilities 3267a51313dSChris Lattner //===----------------------------------------------------------------------===// 3277a51313dSChris Lattner 3287f416cc4SJohn McCall Address CodeGenFunction::emitAddrOfRealComponent(Address addr, 3297f416cc4SJohn McCall QualType complexType) { 3307f416cc4SJohn McCall CharUnits offset = CharUnits::Zero(); 3317f416cc4SJohn McCall return Builder.CreateStructGEP(addr, 0, offset, addr.getName() + ".realp"); 3327f416cc4SJohn McCall } 3337f416cc4SJohn McCall 3347f416cc4SJohn McCall Address CodeGenFunction::emitAddrOfImagComponent(Address addr, 3357f416cc4SJohn McCall QualType complexType) { 3367f416cc4SJohn McCall QualType eltType = complexType->castAs<ComplexType>()->getElementType(); 3377f416cc4SJohn McCall CharUnits offset = getContext().getTypeSizeInChars(eltType); 3387f416cc4SJohn McCall return Builder.CreateStructGEP(addr, 1, offset, addr.getName() + ".imagp"); 3397f416cc4SJohn McCall } 3407f416cc4SJohn McCall 34147fb9508SJohn McCall /// EmitLoadOfLValue - Given an RValue reference for a complex, emit code to 3427a51313dSChris Lattner /// load the real and imaginary pieces, returning them as Real/Imag. 3432d84e842SNick Lewycky ComplexPairTy ComplexExprEmitter::EmitLoadOfLValue(LValue lvalue, 3442d84e842SNick Lewycky SourceLocation loc) { 34547fb9508SJohn McCall assert(lvalue.isSimple() && "non-simple complex l-value?"); 346a8ec7eb9SJohn McCall if (lvalue.getType()->isAtomicType()) 3472d84e842SNick Lewycky return CGF.EmitAtomicLoad(lvalue, loc).getComplexVal(); 348a8ec7eb9SJohn McCall 3497f416cc4SJohn McCall Address SrcPtr = lvalue.getAddress(); 35047fb9508SJohn McCall bool isVolatile = lvalue.isVolatileQualified(); 35147fb9508SJohn McCall 3528a13c418SCraig Topper llvm::Value *Real = nullptr, *Imag = nullptr; 353df0fe27bSMike Stump 35483fe49d1SJohn McCall if (!IgnoreReal || isVolatile) { 3557f416cc4SJohn McCall Address RealP = CGF.emitAddrOfRealComponent(SrcPtr, lvalue.getType()); 3567f416cc4SJohn McCall Real = Builder.CreateLoad(RealP, isVolatile, SrcPtr.getName() + ".real"); 357df0fe27bSMike Stump } 358df0fe27bSMike Stump 35983fe49d1SJohn McCall if (!IgnoreImag || isVolatile) { 3607f416cc4SJohn McCall Address ImagP = CGF.emitAddrOfImagComponent(SrcPtr, lvalue.getType()); 3617f416cc4SJohn McCall Imag = Builder.CreateLoad(ImagP, isVolatile, SrcPtr.getName() + ".imag"); 362df0fe27bSMike Stump } 3637f416cc4SJohn McCall 3647a51313dSChris Lattner return ComplexPairTy(Real, Imag); 3657a51313dSChris Lattner } 3667a51313dSChris Lattner 3677a51313dSChris Lattner /// EmitStoreOfComplex - Store the specified real/imag parts into the 3687a51313dSChris Lattner /// specified value pointer. 369538deffdSDavid Blaikie void ComplexExprEmitter::EmitStoreOfComplex(ComplexPairTy Val, LValue lvalue, 37066e4197fSDavid Blaikie bool isInit) { 371a5b195a1SDavid Majnemer if (lvalue.getType()->isAtomicType() || 372a5b195a1SDavid Majnemer (!isInit && CGF.LValueIsSuitableForInlineAtomic(lvalue))) 373a8ec7eb9SJohn McCall return CGF.EmitAtomicStore(RValue::getComplex(Val), lvalue, isInit); 374a8ec7eb9SJohn McCall 3757f416cc4SJohn McCall Address Ptr = lvalue.getAddress(); 3767f416cc4SJohn McCall Address RealPtr = CGF.emitAddrOfRealComponent(Ptr, lvalue.getType()); 3777f416cc4SJohn McCall Address ImagPtr = CGF.emitAddrOfImagComponent(Ptr, lvalue.getType()); 3787a51313dSChris Lattner 3797f416cc4SJohn McCall Builder.CreateStore(Val.first, RealPtr, lvalue.isVolatileQualified()); 3807f416cc4SJohn McCall Builder.CreateStore(Val.second, ImagPtr, lvalue.isVolatileQualified()); 3817a51313dSChris Lattner } 3827a51313dSChris Lattner 3837a51313dSChris Lattner 3847a51313dSChris Lattner 3857a51313dSChris Lattner //===----------------------------------------------------------------------===// 3867a51313dSChris Lattner // Visitor Methods 3877a51313dSChris Lattner //===----------------------------------------------------------------------===// 3887a51313dSChris Lattner 3897a51313dSChris Lattner ComplexPairTy ComplexExprEmitter::VisitExpr(Expr *E) { 390b74711dfSFariborz Jahanian CGF.ErrorUnsupported(E, "complex expression"); 391b74711dfSFariborz Jahanian llvm::Type *EltTy = 39247fb9508SJohn McCall CGF.ConvertType(getComplexType(E->getType())->getElementType()); 393b74711dfSFariborz Jahanian llvm::Value *U = llvm::UndefValue::get(EltTy); 394b74711dfSFariborz Jahanian return ComplexPairTy(U, U); 3957a51313dSChris Lattner } 3967a51313dSChris Lattner 3977a51313dSChris Lattner ComplexPairTy ComplexExprEmitter:: 3987a51313dSChris Lattner VisitImaginaryLiteral(const ImaginaryLiteral *IL) { 3997a51313dSChris Lattner llvm::Value *Imag = CGF.EmitScalarExpr(IL->getSubExpr()); 400294c2db4SJohn McCall return ComplexPairTy(llvm::Constant::getNullValue(Imag->getType()), Imag); 4017a51313dSChris Lattner } 4027a51313dSChris Lattner 4037a51313dSChris Lattner 4047a51313dSChris Lattner ComplexPairTy ComplexExprEmitter::VisitCallExpr(const CallExpr *E) { 405ced8bdf7SDavid Majnemer if (E->getCallReturnType(CGF.getContext())->isReferenceType()) 406d8b7ae20SAnders Carlsson return EmitLoadOfLValue(E); 407d8b7ae20SAnders Carlsson 4087a51313dSChris Lattner return CGF.EmitCallExpr(E).getComplexVal(); 4097a51313dSChris Lattner } 4107a51313dSChris Lattner 4117a51313dSChris Lattner ComplexPairTy ComplexExprEmitter::VisitStmtExpr(const StmtExpr *E) { 412ce1de617SJohn McCall CodeGenFunction::StmtExprEvaluation eval(CGF); 4137f416cc4SJohn McCall Address RetAlloca = CGF.EmitCompoundStmt(*E->getSubStmt(), true); 4147f416cc4SJohn McCall assert(RetAlloca.isValid() && "Expected complex return value"); 4152d84e842SNick Lewycky return EmitLoadOfLValue(CGF.MakeAddrLValue(RetAlloca, E->getType()), 4162d84e842SNick Lewycky E->getExprLoc()); 4177a51313dSChris Lattner } 4187a51313dSChris Lattner 419650d7f7dSFilipe Cabecinhas /// Emit a cast from complex value Val to DestType. 4207a51313dSChris Lattner ComplexPairTy ComplexExprEmitter::EmitComplexToComplexCast(ComplexPairTy Val, 4217a51313dSChris Lattner QualType SrcType, 4227af183d8SFilipe Cabecinhas QualType DestType, 4237af183d8SFilipe Cabecinhas SourceLocation Loc) { 4247a51313dSChris Lattner // Get the src/dest element type. 42547fb9508SJohn McCall SrcType = SrcType->castAs<ComplexType>()->getElementType(); 42647fb9508SJohn McCall DestType = DestType->castAs<ComplexType>()->getElementType(); 4277a51313dSChris Lattner 4287a51313dSChris Lattner // C99 6.3.1.6: When a value of complex type is converted to another 4297a51313dSChris Lattner // complex type, both the real and imaginary parts follow the conversion 4307a51313dSChris Lattner // rules for the corresponding real types. 4317af183d8SFilipe Cabecinhas Val.first = CGF.EmitScalarConversion(Val.first, SrcType, DestType, Loc); 4327af183d8SFilipe Cabecinhas Val.second = CGF.EmitScalarConversion(Val.second, SrcType, DestType, Loc); 4337a51313dSChris Lattner return Val; 4347a51313dSChris Lattner } 4357a51313dSChris Lattner 436f045007fSEli Friedman ComplexPairTy ComplexExprEmitter::EmitScalarToComplexCast(llvm::Value *Val, 437f045007fSEli Friedman QualType SrcType, 4387af183d8SFilipe Cabecinhas QualType DestType, 4397af183d8SFilipe Cabecinhas SourceLocation Loc) { 440f045007fSEli Friedman // Convert the input element to the element type of the complex. 441f045007fSEli Friedman DestType = DestType->castAs<ComplexType>()->getElementType(); 4427af183d8SFilipe Cabecinhas Val = CGF.EmitScalarConversion(Val, SrcType, DestType, Loc); 443f045007fSEli Friedman 444f045007fSEli Friedman // Return (realval, 0). 445f045007fSEli Friedman return ComplexPairTy(Val, llvm::Constant::getNullValue(Val->getType())); 446f045007fSEli Friedman } 447f045007fSEli Friedman 4481a07fd18SCraig Topper ComplexPairTy ComplexExprEmitter::EmitCast(CastKind CK, Expr *Op, 449c357f412SDouglas Gregor QualType DestTy) { 45034376a68SJohn McCall switch (CK) { 4515836852eSEli Friedman case CK_Dependent: llvm_unreachable("dependent cast kind in IR gen!"); 45234376a68SJohn McCall 453fa35df62SDavid Chisnall // Atomic to non-atomic casts may be more than a no-op for some platforms and 454fa35df62SDavid Chisnall // for some types. 455fa35df62SDavid Chisnall case CK_AtomicToNonAtomic: 456fa35df62SDavid Chisnall case CK_NonAtomicToAtomic: 45734376a68SJohn McCall case CK_NoOp: 45834376a68SJohn McCall case CK_LValueToRValue: 4595836852eSEli Friedman case CK_UserDefinedConversion: 46034376a68SJohn McCall return Visit(Op); 46134376a68SJohn McCall 4625836852eSEli Friedman case CK_LValueBitCast: { 46347fb9508SJohn McCall LValue origLV = CGF.EmitLValue(Op); 4647f416cc4SJohn McCall Address V = origLV.getAddress(); 4657f416cc4SJohn McCall V = Builder.CreateElementBitCast(V, CGF.ConvertType(DestTy)); 4667f416cc4SJohn McCall return EmitLoadOfLValue(CGF.MakeAddrLValue(V, DestTy), Op->getExprLoc()); 467c357f412SDouglas Gregor } 468c357f412SDouglas Gregor 4695836852eSEli Friedman case CK_BitCast: 4705836852eSEli Friedman case CK_BaseToDerived: 4715836852eSEli Friedman case CK_DerivedToBase: 4725836852eSEli Friedman case CK_UncheckedDerivedToBase: 4735836852eSEli Friedman case CK_Dynamic: 4745836852eSEli Friedman case CK_ToUnion: 4755836852eSEli Friedman case CK_ArrayToPointerDecay: 4765836852eSEli Friedman case CK_FunctionToPointerDecay: 4775836852eSEli Friedman case CK_NullToPointer: 4785836852eSEli Friedman case CK_NullToMemberPointer: 4795836852eSEli Friedman case CK_BaseToDerivedMemberPointer: 4805836852eSEli Friedman case CK_DerivedToBaseMemberPointer: 4815836852eSEli Friedman case CK_MemberPointerToBoolean: 482c62bb391SJohn McCall case CK_ReinterpretMemberPointer: 4835836852eSEli Friedman case CK_ConstructorConversion: 4845836852eSEli Friedman case CK_IntegralToPointer: 4855836852eSEli Friedman case CK_PointerToIntegral: 4865836852eSEli Friedman case CK_PointerToBoolean: 4875836852eSEli Friedman case CK_ToVoid: 4885836852eSEli Friedman case CK_VectorSplat: 4895836852eSEli Friedman case CK_IntegralCast: 490df1ed009SGeorge Burgess IV case CK_BooleanToSignedIntegral: 4915836852eSEli Friedman case CK_IntegralToBoolean: 4925836852eSEli Friedman case CK_IntegralToFloating: 4935836852eSEli Friedman case CK_FloatingToIntegral: 4945836852eSEli Friedman case CK_FloatingToBoolean: 4955836852eSEli Friedman case CK_FloatingCast: 4969320b87cSJohn McCall case CK_CPointerToObjCPointerCast: 4979320b87cSJohn McCall case CK_BlockPointerToObjCPointerCast: 4985836852eSEli Friedman case CK_AnyPointerToBlockPointerCast: 4995836852eSEli Friedman case CK_ObjCObjectLValueCast: 5005836852eSEli Friedman case CK_FloatingComplexToReal: 5015836852eSEli Friedman case CK_FloatingComplexToBoolean: 5025836852eSEli Friedman case CK_IntegralComplexToReal: 5035836852eSEli Friedman case CK_IntegralComplexToBoolean: 5042d637d2eSJohn McCall case CK_ARCProduceObject: 5052d637d2eSJohn McCall case CK_ARCConsumeObject: 5062d637d2eSJohn McCall case CK_ARCReclaimReturnedObject: 5072d637d2eSJohn McCall case CK_ARCExtendBlockObject: 508ed90df38SDouglas Gregor case CK_CopyAndAutoreleaseBlockObject: 50934866c77SEli Friedman case CK_BuiltinFnToFnPtr: 510b555b76eSAndrew Savonichev case CK_ZeroToOCLOpaqueType: 511e1468322SDavid Tweed case CK_AddressSpaceConversion: 5120bc4b2d3SYaxun Liu case CK_IntToOCLSampler: 51399bda375SLeonard Chan case CK_FixedPointCast: 514b4ba467dSLeonard Chan case CK_FixedPointToBoolean: 5155836852eSEli Friedman llvm_unreachable("invalid cast kind for complex value"); 5165836852eSEli Friedman 5175836852eSEli Friedman case CK_FloatingRealToComplex: 518f045007fSEli Friedman case CK_IntegralRealToComplex: 5197af183d8SFilipe Cabecinhas return EmitScalarToComplexCast(CGF.EmitScalarExpr(Op), Op->getType(), 5207af183d8SFilipe Cabecinhas DestTy, Op->getExprLoc()); 5217a51313dSChris Lattner 5225836852eSEli Friedman case CK_FloatingComplexCast: 5235836852eSEli Friedman case CK_FloatingComplexToIntegralComplex: 5245836852eSEli Friedman case CK_IntegralComplexCast: 5255836852eSEli Friedman case CK_IntegralComplexToFloatingComplex: 5267af183d8SFilipe Cabecinhas return EmitComplexToComplexCast(Visit(Op), Op->getType(), DestTy, 5277af183d8SFilipe Cabecinhas Op->getExprLoc()); 5285836852eSEli Friedman } 5295836852eSEli Friedman 5305836852eSEli Friedman llvm_unreachable("unknown cast resulting in complex value"); 5315836852eSEli Friedman } 5325836852eSEli Friedman 5337a51313dSChris Lattner ComplexPairTy ComplexExprEmitter::VisitUnaryMinus(const UnaryOperator *E) { 534df0fe27bSMike Stump TestAndClearIgnoreReal(); 535df0fe27bSMike Stump TestAndClearIgnoreImag(); 5367a51313dSChris Lattner ComplexPairTy Op = Visit(E->getSubExpr()); 53794dfae24SChris Lattner 53894dfae24SChris Lattner llvm::Value *ResR, *ResI; 539998f9d97SDuncan Sands if (Op.first->getType()->isFloatingPointTy()) { 54094dfae24SChris Lattner ResR = Builder.CreateFNeg(Op.first, "neg.r"); 54194dfae24SChris Lattner ResI = Builder.CreateFNeg(Op.second, "neg.i"); 54294dfae24SChris Lattner } else { 54394dfae24SChris Lattner ResR = Builder.CreateNeg(Op.first, "neg.r"); 54494dfae24SChris Lattner ResI = Builder.CreateNeg(Op.second, "neg.i"); 54594dfae24SChris Lattner } 5467a51313dSChris Lattner return ComplexPairTy(ResR, ResI); 5477a51313dSChris Lattner } 5487a51313dSChris Lattner 5497a51313dSChris Lattner ComplexPairTy ComplexExprEmitter::VisitUnaryNot(const UnaryOperator *E) { 550df0fe27bSMike Stump TestAndClearIgnoreReal(); 551df0fe27bSMike Stump TestAndClearIgnoreImag(); 5527a51313dSChris Lattner // ~(a+ib) = a + i*-b 5537a51313dSChris Lattner ComplexPairTy Op = Visit(E->getSubExpr()); 55494dfae24SChris Lattner llvm::Value *ResI; 555998f9d97SDuncan Sands if (Op.second->getType()->isFloatingPointTy()) 55694dfae24SChris Lattner ResI = Builder.CreateFNeg(Op.second, "conj.i"); 55794dfae24SChris Lattner else 55894dfae24SChris Lattner ResI = Builder.CreateNeg(Op.second, "conj.i"); 55994dfae24SChris Lattner 5607a51313dSChris Lattner return ComplexPairTy(Op.first, ResI); 5617a51313dSChris Lattner } 5627a51313dSChris Lattner 5637a51313dSChris Lattner ComplexPairTy ComplexExprEmitter::EmitBinAdd(const BinOpInfo &Op) { 56494dfae24SChris Lattner llvm::Value *ResR, *ResI; 56594dfae24SChris Lattner 566998f9d97SDuncan Sands if (Op.LHS.first->getType()->isFloatingPointTy()) { 56794dfae24SChris Lattner ResR = Builder.CreateFAdd(Op.LHS.first, Op.RHS.first, "add.r"); 568a216cad0SChandler Carruth if (Op.LHS.second && Op.RHS.second) 56994dfae24SChris Lattner ResI = Builder.CreateFAdd(Op.LHS.second, Op.RHS.second, "add.i"); 570a216cad0SChandler Carruth else 571a216cad0SChandler Carruth ResI = Op.LHS.second ? Op.LHS.second : Op.RHS.second; 572a216cad0SChandler Carruth assert(ResI && "Only one operand may be real!"); 57394dfae24SChris Lattner } else { 57494dfae24SChris Lattner ResR = Builder.CreateAdd(Op.LHS.first, Op.RHS.first, "add.r"); 575a216cad0SChandler Carruth assert(Op.LHS.second && Op.RHS.second && 576a216cad0SChandler Carruth "Both operands of integer complex operators must be complex!"); 57794dfae24SChris Lattner ResI = Builder.CreateAdd(Op.LHS.second, Op.RHS.second, "add.i"); 57894dfae24SChris Lattner } 5797a51313dSChris Lattner return ComplexPairTy(ResR, ResI); 5807a51313dSChris Lattner } 5817a51313dSChris Lattner 5827a51313dSChris Lattner ComplexPairTy ComplexExprEmitter::EmitBinSub(const BinOpInfo &Op) { 58394dfae24SChris Lattner llvm::Value *ResR, *ResI; 584998f9d97SDuncan Sands if (Op.LHS.first->getType()->isFloatingPointTy()) { 58594dfae24SChris Lattner ResR = Builder.CreateFSub(Op.LHS.first, Op.RHS.first, "sub.r"); 586a216cad0SChandler Carruth if (Op.LHS.second && Op.RHS.second) 58794dfae24SChris Lattner ResI = Builder.CreateFSub(Op.LHS.second, Op.RHS.second, "sub.i"); 588a216cad0SChandler Carruth else 589a216cad0SChandler Carruth ResI = Op.LHS.second ? Op.LHS.second 590a216cad0SChandler Carruth : Builder.CreateFNeg(Op.RHS.second, "sub.i"); 591a216cad0SChandler Carruth assert(ResI && "Only one operand may be real!"); 59294dfae24SChris Lattner } else { 59394dfae24SChris Lattner ResR = Builder.CreateSub(Op.LHS.first, Op.RHS.first, "sub.r"); 594a216cad0SChandler Carruth assert(Op.LHS.second && Op.RHS.second && 595a216cad0SChandler Carruth "Both operands of integer complex operators must be complex!"); 59694dfae24SChris Lattner ResI = Builder.CreateSub(Op.LHS.second, Op.RHS.second, "sub.i"); 59794dfae24SChris Lattner } 5987a51313dSChris Lattner return ComplexPairTy(ResR, ResI); 5997a51313dSChris Lattner } 6007a51313dSChris Lattner 6019fc8faf9SAdrian Prantl /// Emit a libcall for a binary operation on complex types. 602a216cad0SChandler Carruth ComplexPairTy ComplexExprEmitter::EmitComplexBinOpLibCall(StringRef LibCallName, 603a216cad0SChandler Carruth const BinOpInfo &Op) { 604a216cad0SChandler Carruth CallArgList Args; 605a216cad0SChandler Carruth Args.add(RValue::get(Op.LHS.first), 606a216cad0SChandler Carruth Op.Ty->castAs<ComplexType>()->getElementType()); 607a216cad0SChandler Carruth Args.add(RValue::get(Op.LHS.second), 608a216cad0SChandler Carruth Op.Ty->castAs<ComplexType>()->getElementType()); 609a216cad0SChandler Carruth Args.add(RValue::get(Op.RHS.first), 610a216cad0SChandler Carruth Op.Ty->castAs<ComplexType>()->getElementType()); 611a216cad0SChandler Carruth Args.add(RValue::get(Op.RHS.second), 612a216cad0SChandler Carruth Op.Ty->castAs<ComplexType>()->getElementType()); 6137a51313dSChris Lattner 614a216cad0SChandler Carruth // We *must* use the full CG function call building logic here because the 615d90dd797SAnton Korobeynikov // complex type has special ABI handling. We also should not forget about 616d90dd797SAnton Korobeynikov // special calling convention which may be used for compiler builtins. 617798f11cfSSamuel Antao 618798f11cfSSamuel Antao // We create a function qualified type to state that this call does not have 619798f11cfSSamuel Antao // any exceptions. 620798f11cfSSamuel Antao FunctionProtoType::ExtProtoInfo EPI; 621798f11cfSSamuel Antao EPI = EPI.withExceptionSpec( 622798f11cfSSamuel Antao FunctionProtoType::ExceptionSpecInfo(EST_BasicNoexcept)); 623798f11cfSSamuel Antao SmallVector<QualType, 4> ArgsQTys( 624798f11cfSSamuel Antao 4, Op.Ty->castAs<ComplexType>()->getElementType()); 625798f11cfSSamuel Antao QualType FQTy = CGF.getContext().getFunctionType(Op.Ty, ArgsQTys, EPI); 626798f11cfSSamuel Antao const CGFunctionInfo &FuncInfo = CGF.CGM.getTypes().arrangeFreeFunctionCall( 627798f11cfSSamuel Antao Args, cast<FunctionType>(FQTy.getTypePtr()), false); 628798f11cfSSamuel Antao 629a216cad0SChandler Carruth llvm::FunctionType *FTy = CGF.CGM.getTypes().GetFunctionType(FuncInfo); 630d90dd797SAnton Korobeynikov llvm::Constant *Func = CGF.CGM.CreateBuiltinFunction(FTy, LibCallName); 631b92ab1afSJohn McCall CGCallee Callee = CGCallee::forDirect(Func, FQTy->getAs<FunctionProtoType>()); 632a216cad0SChandler Carruth 633b92ab1afSJohn McCall llvm::Instruction *Call; 634b92ab1afSJohn McCall RValue Res = CGF.EmitCall(FuncInfo, Callee, ReturnValueSlot(), Args, &Call); 635f4ec803cSRafael Espindola cast<llvm::CallInst>(Call)->setCallingConv(CGF.CGM.getRuntimeCC()); 636d90dd797SAnton Korobeynikov return Res.getComplexVal(); 637a216cad0SChandler Carruth } 638a216cad0SChandler Carruth 6399fc8faf9SAdrian Prantl /// Lookup the libcall name for a given floating point type complex 6400c4b230bSChandler Carruth /// multiply. 6410c4b230bSChandler Carruth static StringRef getComplexMultiplyLibCallName(llvm::Type *Ty) { 6420c4b230bSChandler Carruth switch (Ty->getTypeID()) { 6430c4b230bSChandler Carruth default: 6440c4b230bSChandler Carruth llvm_unreachable("Unsupported floating point type!"); 6450c4b230bSChandler Carruth case llvm::Type::HalfTyID: 6460c4b230bSChandler Carruth return "__mulhc3"; 6470c4b230bSChandler Carruth case llvm::Type::FloatTyID: 6480c4b230bSChandler Carruth return "__mulsc3"; 6490c4b230bSChandler Carruth case llvm::Type::DoubleTyID: 6500c4b230bSChandler Carruth return "__muldc3"; 6510c4b230bSChandler Carruth case llvm::Type::PPC_FP128TyID: 6520c4b230bSChandler Carruth return "__multc3"; 6530c4b230bSChandler Carruth case llvm::Type::X86_FP80TyID: 6540c4b230bSChandler Carruth return "__mulxc3"; 655444822bbSJiangning Liu case llvm::Type::FP128TyID: 656444822bbSJiangning Liu return "__multc3"; 6570c4b230bSChandler Carruth } 6580c4b230bSChandler Carruth } 6590c4b230bSChandler Carruth 660a216cad0SChandler Carruth // See C11 Annex G.5.1 for the semantics of multiplicative operators on complex 661a216cad0SChandler Carruth // typed values. 6627a51313dSChris Lattner ComplexPairTy ComplexExprEmitter::EmitBinMul(const BinOpInfo &Op) { 66394dfae24SChris Lattner using llvm::Value; 66494dfae24SChris Lattner Value *ResR, *ResI; 6650c4b230bSChandler Carruth llvm::MDBuilder MDHelper(CGF.getLLVMContext()); 6667a51313dSChris Lattner 667998f9d97SDuncan Sands if (Op.LHS.first->getType()->isFloatingPointTy()) { 668a216cad0SChandler Carruth // The general formulation is: 669a216cad0SChandler Carruth // (a + ib) * (c + id) = (a * c - b * d) + i(a * d + b * c) 670a216cad0SChandler Carruth // 671a216cad0SChandler Carruth // But we can fold away components which would be zero due to a real 672a216cad0SChandler Carruth // operand according to C11 Annex G.5.1p2. 673a216cad0SChandler Carruth // FIXME: C11 also provides for imaginary types which would allow folding 674a216cad0SChandler Carruth // still more of this within the type system. 67594dfae24SChris Lattner 676a216cad0SChandler Carruth if (Op.LHS.second && Op.RHS.second) { 6770c4b230bSChandler Carruth // If both operands are complex, emit the core math directly, and then 6780c4b230bSChandler Carruth // test for NaNs. If we find NaNs in the result, we delegate to a libcall 6790c4b230bSChandler Carruth // to carefully re-compute the correct infinity representation if 6800c4b230bSChandler Carruth // possible. The expectation is that the presence of NaNs here is 6810c4b230bSChandler Carruth // *extremely* rare, and so the cost of the libcall is almost irrelevant. 6820c4b230bSChandler Carruth // This is good, because the libcall re-computes the core multiplication 6830c4b230bSChandler Carruth // exactly the same as we do here and re-tests for NaNs in order to be 6840c4b230bSChandler Carruth // a generic complex*complex libcall. 6850c4b230bSChandler Carruth 6860c4b230bSChandler Carruth // First compute the four products. 6870c4b230bSChandler Carruth Value *AC = Builder.CreateFMul(Op.LHS.first, Op.RHS.first, "mul_ac"); 6880c4b230bSChandler Carruth Value *BD = Builder.CreateFMul(Op.LHS.second, Op.RHS.second, "mul_bd"); 6890c4b230bSChandler Carruth Value *AD = Builder.CreateFMul(Op.LHS.first, Op.RHS.second, "mul_ad"); 6900c4b230bSChandler Carruth Value *BC = Builder.CreateFMul(Op.LHS.second, Op.RHS.first, "mul_bc"); 6910c4b230bSChandler Carruth 6920c4b230bSChandler Carruth // The real part is the difference of the first two, the imaginary part is 6930c4b230bSChandler Carruth // the sum of the second. 6940c4b230bSChandler Carruth ResR = Builder.CreateFSub(AC, BD, "mul_r"); 6950c4b230bSChandler Carruth ResI = Builder.CreateFAdd(AD, BC, "mul_i"); 6960c4b230bSChandler Carruth 6970c4b230bSChandler Carruth // Emit the test for the real part becoming NaN and create a branch to 6980c4b230bSChandler Carruth // handle it. We test for NaN by comparing the number to itself. 6990c4b230bSChandler Carruth Value *IsRNaN = Builder.CreateFCmpUNO(ResR, ResR, "isnan_cmp"); 7000c4b230bSChandler Carruth llvm::BasicBlock *ContBB = CGF.createBasicBlock("complex_mul_cont"); 7010c4b230bSChandler Carruth llvm::BasicBlock *INaNBB = CGF.createBasicBlock("complex_mul_imag_nan"); 7020c4b230bSChandler Carruth llvm::Instruction *Branch = Builder.CreateCondBr(IsRNaN, INaNBB, ContBB); 7030c4b230bSChandler Carruth llvm::BasicBlock *OrigBB = Branch->getParent(); 7040c4b230bSChandler Carruth 7050c4b230bSChandler Carruth // Give hint that we very much don't expect to see NaNs. 7060c4b230bSChandler Carruth // Value chosen to match UR_NONTAKEN_WEIGHT, see BranchProbabilityInfo.cpp 7070c4b230bSChandler Carruth llvm::MDNode *BrWeight = MDHelper.createBranchWeights(1, (1U << 20) - 1); 7080c4b230bSChandler Carruth Branch->setMetadata(llvm::LLVMContext::MD_prof, BrWeight); 7090c4b230bSChandler Carruth 7100c4b230bSChandler Carruth // Now test the imaginary part and create its branch. 7110c4b230bSChandler Carruth CGF.EmitBlock(INaNBB); 7120c4b230bSChandler Carruth Value *IsINaN = Builder.CreateFCmpUNO(ResI, ResI, "isnan_cmp"); 7130c4b230bSChandler Carruth llvm::BasicBlock *LibCallBB = CGF.createBasicBlock("complex_mul_libcall"); 7140c4b230bSChandler Carruth Branch = Builder.CreateCondBr(IsINaN, LibCallBB, ContBB); 7150c4b230bSChandler Carruth Branch->setMetadata(llvm::LLVMContext::MD_prof, BrWeight); 7160c4b230bSChandler Carruth 7170c4b230bSChandler Carruth // Now emit the libcall on this slowest of the slow paths. 7180c4b230bSChandler Carruth CGF.EmitBlock(LibCallBB); 7190c4b230bSChandler Carruth Value *LibCallR, *LibCallI; 7200c4b230bSChandler Carruth std::tie(LibCallR, LibCallI) = EmitComplexBinOpLibCall( 7210c4b230bSChandler Carruth getComplexMultiplyLibCallName(Op.LHS.first->getType()), Op); 7220c4b230bSChandler Carruth Builder.CreateBr(ContBB); 7230c4b230bSChandler Carruth 7240c4b230bSChandler Carruth // Finally continue execution by phi-ing together the different 7250c4b230bSChandler Carruth // computation paths. 7260c4b230bSChandler Carruth CGF.EmitBlock(ContBB); 7270c4b230bSChandler Carruth llvm::PHINode *RealPHI = Builder.CreatePHI(ResR->getType(), 3, "real_mul_phi"); 7280c4b230bSChandler Carruth RealPHI->addIncoming(ResR, OrigBB); 7290c4b230bSChandler Carruth RealPHI->addIncoming(ResR, INaNBB); 7300c4b230bSChandler Carruth RealPHI->addIncoming(LibCallR, LibCallBB); 7310c4b230bSChandler Carruth llvm::PHINode *ImagPHI = Builder.CreatePHI(ResI->getType(), 3, "imag_mul_phi"); 7320c4b230bSChandler Carruth ImagPHI->addIncoming(ResI, OrigBB); 7330c4b230bSChandler Carruth ImagPHI->addIncoming(ResI, INaNBB); 7340c4b230bSChandler Carruth ImagPHI->addIncoming(LibCallI, LibCallBB); 7350c4b230bSChandler Carruth return ComplexPairTy(RealPHI, ImagPHI); 736a216cad0SChandler Carruth } 737a216cad0SChandler Carruth assert((Op.LHS.second || Op.RHS.second) && 738a216cad0SChandler Carruth "At least one operand must be complex!"); 739a216cad0SChandler Carruth 740a216cad0SChandler Carruth // If either of the operands is a real rather than a complex, the 741a216cad0SChandler Carruth // imaginary component is ignored when computing the real component of the 742a216cad0SChandler Carruth // result. 743a216cad0SChandler Carruth ResR = Builder.CreateFMul(Op.LHS.first, Op.RHS.first, "mul.rl"); 744a216cad0SChandler Carruth 745a216cad0SChandler Carruth ResI = Op.LHS.second 746a216cad0SChandler Carruth ? Builder.CreateFMul(Op.LHS.second, Op.RHS.first, "mul.il") 747a216cad0SChandler Carruth : Builder.CreateFMul(Op.LHS.first, Op.RHS.second, "mul.ir"); 74894dfae24SChris Lattner } else { 749a216cad0SChandler Carruth assert(Op.LHS.second && Op.RHS.second && 750a216cad0SChandler Carruth "Both operands of integer complex operators must be complex!"); 75194dfae24SChris Lattner Value *ResRl = Builder.CreateMul(Op.LHS.first, Op.RHS.first, "mul.rl"); 75294dfae24SChris Lattner Value *ResRr = Builder.CreateMul(Op.LHS.second, Op.RHS.second, "mul.rr"); 75394dfae24SChris Lattner ResR = Builder.CreateSub(ResRl, ResRr, "mul.r"); 75494dfae24SChris Lattner 75594dfae24SChris Lattner Value *ResIl = Builder.CreateMul(Op.LHS.second, Op.RHS.first, "mul.il"); 75694dfae24SChris Lattner Value *ResIr = Builder.CreateMul(Op.LHS.first, Op.RHS.second, "mul.ir"); 75794dfae24SChris Lattner ResI = Builder.CreateAdd(ResIl, ResIr, "mul.i"); 75894dfae24SChris Lattner } 7597a51313dSChris Lattner return ComplexPairTy(ResR, ResI); 7607a51313dSChris Lattner } 7617a51313dSChris Lattner 762a216cad0SChandler Carruth // See C11 Annex G.5.1 for the semantics of multiplicative operators on complex 763a216cad0SChandler Carruth // typed values. 7647a51313dSChris Lattner ComplexPairTy ComplexExprEmitter::EmitBinDiv(const BinOpInfo &Op) { 7657a51313dSChris Lattner llvm::Value *LHSr = Op.LHS.first, *LHSi = Op.LHS.second; 7667a51313dSChris Lattner llvm::Value *RHSr = Op.RHS.first, *RHSi = Op.RHS.second; 7677a51313dSChris Lattner 76894dfae24SChris Lattner llvm::Value *DSTr, *DSTi; 769a216cad0SChandler Carruth if (LHSr->getType()->isFloatingPointTy()) { 770b1c9dbddSFlorian Hahn // If we have a complex operand on the RHS and FastMath is not allowed, we 771b1c9dbddSFlorian Hahn // delegate to a libcall to handle all of the complexities and minimize 772b1c9dbddSFlorian Hahn // underflow/overflow cases. When FastMath is allowed we construct the 773b1c9dbddSFlorian Hahn // divide inline using the same algorithm as for integer operands. 774a216cad0SChandler Carruth // 775a216cad0SChandler Carruth // FIXME: We would be able to avoid the libcall in many places if we 776a216cad0SChandler Carruth // supported imaginary types in addition to complex types. 777b1c9dbddSFlorian Hahn if (RHSi && !CGF.getLangOpts().FastMath) { 778a216cad0SChandler Carruth BinOpInfo LibCallOp = Op; 779a216cad0SChandler Carruth // If LHS was a real, supply a null imaginary part. 780a216cad0SChandler Carruth if (!LHSi) 781a216cad0SChandler Carruth LibCallOp.LHS.second = llvm::Constant::getNullValue(LHSr->getType()); 78294dfae24SChris Lattner 783a216cad0SChandler Carruth switch (LHSr->getType()->getTypeID()) { 784a216cad0SChandler Carruth default: 785a216cad0SChandler Carruth llvm_unreachable("Unsupported floating point type!"); 786a216cad0SChandler Carruth case llvm::Type::HalfTyID: 787a216cad0SChandler Carruth return EmitComplexBinOpLibCall("__divhc3", LibCallOp); 788a216cad0SChandler Carruth case llvm::Type::FloatTyID: 789a216cad0SChandler Carruth return EmitComplexBinOpLibCall("__divsc3", LibCallOp); 790a216cad0SChandler Carruth case llvm::Type::DoubleTyID: 791a216cad0SChandler Carruth return EmitComplexBinOpLibCall("__divdc3", LibCallOp); 792aa3e9f5aSJoerg Sonnenberger case llvm::Type::PPC_FP128TyID: 793aa3e9f5aSJoerg Sonnenberger return EmitComplexBinOpLibCall("__divtc3", LibCallOp); 794a216cad0SChandler Carruth case llvm::Type::X86_FP80TyID: 795a216cad0SChandler Carruth return EmitComplexBinOpLibCall("__divxc3", LibCallOp); 796444822bbSJiangning Liu case llvm::Type::FP128TyID: 797444822bbSJiangning Liu return EmitComplexBinOpLibCall("__divtc3", LibCallOp); 798a216cad0SChandler Carruth } 799b1c9dbddSFlorian Hahn } else if (RHSi) { 800b1c9dbddSFlorian Hahn if (!LHSi) 801b1c9dbddSFlorian Hahn LHSi = llvm::Constant::getNullValue(RHSi->getType()); 802b1c9dbddSFlorian Hahn 803b1c9dbddSFlorian Hahn // (a+ib) / (c+id) = ((ac+bd)/(cc+dd)) + i((bc-ad)/(cc+dd)) 804b1c9dbddSFlorian Hahn llvm::Value *AC = Builder.CreateFMul(LHSr, RHSr); // a*c 805b1c9dbddSFlorian Hahn llvm::Value *BD = Builder.CreateFMul(LHSi, RHSi); // b*d 806b1c9dbddSFlorian Hahn llvm::Value *ACpBD = Builder.CreateFAdd(AC, BD); // ac+bd 807b1c9dbddSFlorian Hahn 808b1c9dbddSFlorian Hahn llvm::Value *CC = Builder.CreateFMul(RHSr, RHSr); // c*c 809b1c9dbddSFlorian Hahn llvm::Value *DD = Builder.CreateFMul(RHSi, RHSi); // d*d 810b1c9dbddSFlorian Hahn llvm::Value *CCpDD = Builder.CreateFAdd(CC, DD); // cc+dd 811b1c9dbddSFlorian Hahn 812b1c9dbddSFlorian Hahn llvm::Value *BC = Builder.CreateFMul(LHSi, RHSr); // b*c 813b1c9dbddSFlorian Hahn llvm::Value *AD = Builder.CreateFMul(LHSr, RHSi); // a*d 814b1c9dbddSFlorian Hahn llvm::Value *BCmAD = Builder.CreateFSub(BC, AD); // bc-ad 815b1c9dbddSFlorian Hahn 816b1c9dbddSFlorian Hahn DSTr = Builder.CreateFDiv(ACpBD, CCpDD); 817b1c9dbddSFlorian Hahn DSTi = Builder.CreateFDiv(BCmAD, CCpDD); 818b1c9dbddSFlorian Hahn } else { 819a216cad0SChandler Carruth assert(LHSi && "Can have at most one non-complex operand!"); 82094dfae24SChris Lattner 821a216cad0SChandler Carruth DSTr = Builder.CreateFDiv(LHSr, RHSr); 822a216cad0SChandler Carruth DSTi = Builder.CreateFDiv(LHSi, RHSr); 823b1c9dbddSFlorian Hahn } 82494dfae24SChris Lattner } else { 825a216cad0SChandler Carruth assert(Op.LHS.second && Op.RHS.second && 826a216cad0SChandler Carruth "Both operands of integer complex operators must be complex!"); 8277a51313dSChris Lattner // (a+ib) / (c+id) = ((ac+bd)/(cc+dd)) + i((bc-ad)/(cc+dd)) 82876399eb2SBenjamin Kramer llvm::Value *Tmp1 = Builder.CreateMul(LHSr, RHSr); // a*c 82976399eb2SBenjamin Kramer llvm::Value *Tmp2 = Builder.CreateMul(LHSi, RHSi); // b*d 83076399eb2SBenjamin Kramer llvm::Value *Tmp3 = Builder.CreateAdd(Tmp1, Tmp2); // ac+bd 8317a51313dSChris Lattner 83276399eb2SBenjamin Kramer llvm::Value *Tmp4 = Builder.CreateMul(RHSr, RHSr); // c*c 83376399eb2SBenjamin Kramer llvm::Value *Tmp5 = Builder.CreateMul(RHSi, RHSi); // d*d 83476399eb2SBenjamin Kramer llvm::Value *Tmp6 = Builder.CreateAdd(Tmp4, Tmp5); // cc+dd 8357a51313dSChris Lattner 83676399eb2SBenjamin Kramer llvm::Value *Tmp7 = Builder.CreateMul(LHSi, RHSr); // b*c 83776399eb2SBenjamin Kramer llvm::Value *Tmp8 = Builder.CreateMul(LHSr, RHSi); // a*d 83876399eb2SBenjamin Kramer llvm::Value *Tmp9 = Builder.CreateSub(Tmp7, Tmp8); // bc-ad 8397a51313dSChris Lattner 84047fb9508SJohn McCall if (Op.Ty->castAs<ComplexType>()->getElementType()->isUnsignedIntegerType()) { 84176399eb2SBenjamin Kramer DSTr = Builder.CreateUDiv(Tmp3, Tmp6); 84276399eb2SBenjamin Kramer DSTi = Builder.CreateUDiv(Tmp9, Tmp6); 8437a51313dSChris Lattner } else { 84476399eb2SBenjamin Kramer DSTr = Builder.CreateSDiv(Tmp3, Tmp6); 84576399eb2SBenjamin Kramer DSTi = Builder.CreateSDiv(Tmp9, Tmp6); 8467a51313dSChris Lattner } 8477a51313dSChris Lattner } 8487a51313dSChris Lattner 8497a51313dSChris Lattner return ComplexPairTy(DSTr, DSTi); 8507a51313dSChris Lattner } 8517a51313dSChris Lattner 8527a51313dSChris Lattner ComplexExprEmitter::BinOpInfo 8537a51313dSChris Lattner ComplexExprEmitter::EmitBinOps(const BinaryOperator *E) { 854df0fe27bSMike Stump TestAndClearIgnoreReal(); 855df0fe27bSMike Stump TestAndClearIgnoreImag(); 8567a51313dSChris Lattner BinOpInfo Ops; 857a216cad0SChandler Carruth if (E->getLHS()->getType()->isRealFloatingType()) 858a216cad0SChandler Carruth Ops.LHS = ComplexPairTy(CGF.EmitScalarExpr(E->getLHS()), nullptr); 859a216cad0SChandler Carruth else 8607a51313dSChris Lattner Ops.LHS = Visit(E->getLHS()); 861a216cad0SChandler Carruth if (E->getRHS()->getType()->isRealFloatingType()) 862a216cad0SChandler Carruth Ops.RHS = ComplexPairTy(CGF.EmitScalarExpr(E->getRHS()), nullptr); 863a216cad0SChandler Carruth else 8647a51313dSChris Lattner Ops.RHS = Visit(E->getRHS()); 865a216cad0SChandler Carruth 8667a51313dSChris Lattner Ops.Ty = E->getType(); 8677a51313dSChris Lattner return Ops; 8687a51313dSChris Lattner } 8697a51313dSChris Lattner 8707a51313dSChris Lattner 87107bb1966SJohn McCall LValue ComplexExprEmitter:: 87207bb1966SJohn McCall EmitCompoundAssignLValue(const CompoundAssignOperator *E, 87307bb1966SJohn McCall ComplexPairTy (ComplexExprEmitter::*Func)(const BinOpInfo&), 874f045007fSEli Friedman RValue &Val) { 875df0fe27bSMike Stump TestAndClearIgnoreReal(); 876df0fe27bSMike Stump TestAndClearIgnoreImag(); 8778dfa5f17SJeffrey Yasskin QualType LHSTy = E->getLHS()->getType(); 878ce27e42dSDavid Majnemer if (const AtomicType *AT = LHSTy->getAs<AtomicType>()) 879ce27e42dSDavid Majnemer LHSTy = AT->getValueType(); 8807a51313dSChris Lattner 881df0fe27bSMike Stump BinOpInfo OpInfo; 882df0fe27bSMike Stump 883df0fe27bSMike Stump // Load the RHS and LHS operands. 884df0fe27bSMike Stump // __block variables need to have the rhs evaluated first, plus this should 885fa8edb11SJohn McCall // improve codegen a little. 886df0fe27bSMike Stump OpInfo.Ty = E->getComputationResultType(); 887a216cad0SChandler Carruth QualType ComplexElementTy = cast<ComplexType>(OpInfo.Ty)->getElementType(); 888fa8edb11SJohn McCall 889fa8edb11SJohn McCall // The RHS should have been converted to the computation type. 890a216cad0SChandler Carruth if (E->getRHS()->getType()->isRealFloatingType()) { 891a216cad0SChandler Carruth assert( 892a216cad0SChandler Carruth CGF.getContext() 893a216cad0SChandler Carruth .hasSameUnqualifiedType(ComplexElementTy, E->getRHS()->getType())); 894a216cad0SChandler Carruth OpInfo.RHS = ComplexPairTy(CGF.EmitScalarExpr(E->getRHS()), nullptr); 895a216cad0SChandler Carruth } else { 896a216cad0SChandler Carruth assert(CGF.getContext() 897a216cad0SChandler Carruth .hasSameUnqualifiedType(OpInfo.Ty, E->getRHS()->getType())); 898fa8edb11SJohn McCall OpInfo.RHS = Visit(E->getRHS()); 899a216cad0SChandler Carruth } 900df0fe27bSMike Stump 9018c94ffe7SDaniel Dunbar LValue LHS = CGF.EmitLValue(E->getLHS()); 902e26a872bSJohn McCall 903f045007fSEli Friedman // Load from the l-value and convert it. 9047af183d8SFilipe Cabecinhas SourceLocation Loc = E->getExprLoc(); 905f045007fSEli Friedman if (LHSTy->isAnyComplexType()) { 9067af183d8SFilipe Cabecinhas ComplexPairTy LHSVal = EmitLoadOfLValue(LHS, Loc); 9077af183d8SFilipe Cabecinhas OpInfo.LHS = EmitComplexToComplexCast(LHSVal, LHSTy, OpInfo.Ty, Loc); 908f045007fSEli Friedman } else { 9097af183d8SFilipe Cabecinhas llvm::Value *LHSVal = CGF.EmitLoadOfScalar(LHS, Loc); 910a216cad0SChandler Carruth // For floating point real operands we can directly pass the scalar form 911a216cad0SChandler Carruth // to the binary operator emission and potentially get more efficient code. 912a216cad0SChandler Carruth if (LHSTy->isRealFloatingType()) { 913a216cad0SChandler Carruth if (!CGF.getContext().hasSameUnqualifiedType(ComplexElementTy, LHSTy)) 9147af183d8SFilipe Cabecinhas LHSVal = CGF.EmitScalarConversion(LHSVal, LHSTy, ComplexElementTy, Loc); 915a216cad0SChandler Carruth OpInfo.LHS = ComplexPairTy(LHSVal, nullptr); 916a216cad0SChandler Carruth } else { 9177af183d8SFilipe Cabecinhas OpInfo.LHS = EmitScalarToComplexCast(LHSVal, LHSTy, OpInfo.Ty, Loc); 918f045007fSEli Friedman } 919a216cad0SChandler Carruth } 9207a51313dSChris Lattner 9217a51313dSChris Lattner // Expand the binary operator. 9227a51313dSChris Lattner ComplexPairTy Result = (this->*Func)(OpInfo); 9237a51313dSChris Lattner 924f045007fSEli Friedman // Truncate the result and store it into the LHS lvalue. 925f045007fSEli Friedman if (LHSTy->isAnyComplexType()) { 9267af183d8SFilipe Cabecinhas ComplexPairTy ResVal = 9277af183d8SFilipe Cabecinhas EmitComplexToComplexCast(Result, OpInfo.Ty, LHSTy, Loc); 92866e4197fSDavid Blaikie EmitStoreOfComplex(ResVal, LHS, /*isInit*/ false); 929f045007fSEli Friedman Val = RValue::getComplex(ResVal); 930f045007fSEli Friedman } else { 931f045007fSEli Friedman llvm::Value *ResVal = 9327af183d8SFilipe Cabecinhas CGF.EmitComplexToScalarConversion(Result, OpInfo.Ty, LHSTy, Loc); 933f045007fSEli Friedman CGF.EmitStoreOfScalar(ResVal, LHS, /*isInit*/ false); 934f045007fSEli Friedman Val = RValue::get(ResVal); 935f045007fSEli Friedman } 9368c94ffe7SDaniel Dunbar 93707bb1966SJohn McCall return LHS; 9387a51313dSChris Lattner } 9397a51313dSChris Lattner 94007bb1966SJohn McCall // Compound assignments. 94107bb1966SJohn McCall ComplexPairTy ComplexExprEmitter:: 94207bb1966SJohn McCall EmitCompoundAssign(const CompoundAssignOperator *E, 94307bb1966SJohn McCall ComplexPairTy (ComplexExprEmitter::*Func)(const BinOpInfo&)){ 944f045007fSEli Friedman RValue Val; 94507bb1966SJohn McCall LValue LV = EmitCompoundAssignLValue(E, Func, Val); 94607bb1966SJohn McCall 94707bb1966SJohn McCall // The result of an assignment in C is the assigned r-value. 9489c6890a7SRichard Smith if (!CGF.getLangOpts().CPlusPlus) 949f045007fSEli Friedman return Val.getComplexVal(); 95007bb1966SJohn McCall 95107bb1966SJohn McCall // If the lvalue is non-volatile, return the computed value of the assignment. 95207bb1966SJohn McCall if (!LV.isVolatileQualified()) 953f045007fSEli Friedman return Val.getComplexVal(); 95407bb1966SJohn McCall 9552d84e842SNick Lewycky return EmitLoadOfLValue(LV, E->getExprLoc()); 95607bb1966SJohn McCall } 95707bb1966SJohn McCall 95807bb1966SJohn McCall LValue ComplexExprEmitter::EmitBinAssignLValue(const BinaryOperator *E, 95907bb1966SJohn McCall ComplexPairTy &Val) { 960a8a089bfSDouglas Gregor assert(CGF.getContext().hasSameUnqualifiedType(E->getLHS()->getType(), 961a8a089bfSDouglas Gregor E->getRHS()->getType()) && 9620f398c44SChris Lattner "Invalid assignment"); 96307bb1966SJohn McCall TestAndClearIgnoreReal(); 96407bb1966SJohn McCall TestAndClearIgnoreImag(); 96507bb1966SJohn McCall 966d0a30016SJohn McCall // Emit the RHS. __block variables need the RHS evaluated first. 96707bb1966SJohn McCall Val = Visit(E->getRHS()); 9687a51313dSChris Lattner 9697a51313dSChris Lattner // Compute the address to store into. 9707a51313dSChris Lattner LValue LHS = CGF.EmitLValue(E->getLHS()); 9717a51313dSChris Lattner 9728c94ffe7SDaniel Dunbar // Store the result value into the LHS lvalue. 97366e4197fSDavid Blaikie EmitStoreOfComplex(Val, LHS, /*isInit*/ false); 97476d864c7SDaniel Dunbar 97507bb1966SJohn McCall return LHS; 97607bb1966SJohn McCall } 9778c94ffe7SDaniel Dunbar 97807bb1966SJohn McCall ComplexPairTy ComplexExprEmitter::VisitBinAssign(const BinaryOperator *E) { 97907bb1966SJohn McCall ComplexPairTy Val; 98007bb1966SJohn McCall LValue LV = EmitBinAssignLValue(E, Val); 98107bb1966SJohn McCall 98207bb1966SJohn McCall // The result of an assignment in C is the assigned r-value. 9839c6890a7SRichard Smith if (!CGF.getLangOpts().CPlusPlus) 98476d864c7SDaniel Dunbar return Val; 98507bb1966SJohn McCall 98607bb1966SJohn McCall // If the lvalue is non-volatile, return the computed value of the assignment. 98707bb1966SJohn McCall if (!LV.isVolatileQualified()) 98807bb1966SJohn McCall return Val; 98907bb1966SJohn McCall 9902d84e842SNick Lewycky return EmitLoadOfLValue(LV, E->getExprLoc()); 99176d864c7SDaniel Dunbar } 99276d864c7SDaniel Dunbar 9937a51313dSChris Lattner ComplexPairTy ComplexExprEmitter::VisitBinComma(const BinaryOperator *E) { 994a2342eb8SJohn McCall CGF.EmitIgnoredExpr(E->getLHS()); 9957a51313dSChris Lattner return Visit(E->getRHS()); 9967a51313dSChris Lattner } 9977a51313dSChris Lattner 9987a51313dSChris Lattner ComplexPairTy ComplexExprEmitter:: 999c07a0c7eSJohn McCall VisitAbstractConditionalOperator(const AbstractConditionalOperator *E) { 1000df0fe27bSMike Stump TestAndClearIgnoreReal(); 1001df0fe27bSMike Stump TestAndClearIgnoreImag(); 1002a612e79bSDaniel Dunbar llvm::BasicBlock *LHSBlock = CGF.createBasicBlock("cond.true"); 1003a612e79bSDaniel Dunbar llvm::BasicBlock *RHSBlock = CGF.createBasicBlock("cond.false"); 1004a612e79bSDaniel Dunbar llvm::BasicBlock *ContBlock = CGF.createBasicBlock("cond.end"); 10057a51313dSChris Lattner 1006c07a0c7eSJohn McCall // Bind the common expression if necessary. 100748fd89adSEli Friedman CodeGenFunction::OpaqueValueMapping binding(CGF, E); 1008ce1de617SJohn McCall 100966242d6cSJustin Bogner 1010c07a0c7eSJohn McCall CodeGenFunction::ConditionalEvaluation eval(CGF); 101166242d6cSJustin Bogner CGF.EmitBranchOnBoolExpr(E->getCond(), LHSBlock, RHSBlock, 101266242d6cSJustin Bogner CGF.getProfileCount(E)); 10137a51313dSChris Lattner 1014ce1de617SJohn McCall eval.begin(CGF); 10157a51313dSChris Lattner CGF.EmitBlock(LHSBlock); 101666242d6cSJustin Bogner CGF.incrementProfileCounter(E); 10178162d4adSFariborz Jahanian ComplexPairTy LHS = Visit(E->getTrueExpr()); 10187a51313dSChris Lattner LHSBlock = Builder.GetInsertBlock(); 1019c56e6764SDaniel Dunbar CGF.EmitBranch(ContBlock); 1020ce1de617SJohn McCall eval.end(CGF); 10217a51313dSChris Lattner 1022ce1de617SJohn McCall eval.begin(CGF); 10237a51313dSChris Lattner CGF.EmitBlock(RHSBlock); 1024c07a0c7eSJohn McCall ComplexPairTy RHS = Visit(E->getFalseExpr()); 10257a51313dSChris Lattner RHSBlock = Builder.GetInsertBlock(); 10267a51313dSChris Lattner CGF.EmitBlock(ContBlock); 1027ce1de617SJohn McCall eval.end(CGF); 10287a51313dSChris Lattner 10297a51313dSChris Lattner // Create a PHI node for the real part. 103020c0f02cSJay Foad llvm::PHINode *RealPN = Builder.CreatePHI(LHS.first->getType(), 2, "cond.r"); 10317a51313dSChris Lattner RealPN->addIncoming(LHS.first, LHSBlock); 10327a51313dSChris Lattner RealPN->addIncoming(RHS.first, RHSBlock); 10337a51313dSChris Lattner 10347a51313dSChris Lattner // Create a PHI node for the imaginary part. 103520c0f02cSJay Foad llvm::PHINode *ImagPN = Builder.CreatePHI(LHS.first->getType(), 2, "cond.i"); 10367a51313dSChris Lattner ImagPN->addIncoming(LHS.second, LHSBlock); 10377a51313dSChris Lattner ImagPN->addIncoming(RHS.second, RHSBlock); 10387a51313dSChris Lattner 10397a51313dSChris Lattner return ComplexPairTy(RealPN, ImagPN); 10407a51313dSChris Lattner } 10417a51313dSChris Lattner 10427a51313dSChris Lattner ComplexPairTy ComplexExprEmitter::VisitChooseExpr(ChooseExpr *E) { 104375807f23SEli Friedman return Visit(E->getChosenSubExpr()); 10447a51313dSChris Lattner } 10457a51313dSChris Lattner 1046dd7406e6SEli Friedman ComplexPairTy ComplexExprEmitter::VisitInitListExpr(InitListExpr *E) { 1047df0fe27bSMike Stump bool Ignore = TestAndClearIgnoreReal(); 1048df0fe27bSMike Stump (void)Ignore; 1049df0fe27bSMike Stump assert (Ignore == false && "init list ignored"); 1050df0fe27bSMike Stump Ignore = TestAndClearIgnoreImag(); 1051df0fe27bSMike Stump (void)Ignore; 1052df0fe27bSMike Stump assert (Ignore == false && "init list ignored"); 10536b9c41eaSEli Friedman 10546b9c41eaSEli Friedman if (E->getNumInits() == 2) { 10556b9c41eaSEli Friedman llvm::Value *Real = CGF.EmitScalarExpr(E->getInit(0)); 10566b9c41eaSEli Friedman llvm::Value *Imag = CGF.EmitScalarExpr(E->getInit(1)); 10576b9c41eaSEli Friedman return ComplexPairTy(Real, Imag); 10586b9c41eaSEli Friedman } else if (E->getNumInits() == 1) { 1059dd7406e6SEli Friedman return Visit(E->getInit(0)); 10606b9c41eaSEli Friedman } 1061dd7406e6SEli Friedman 10622a8c18d9SAlexander Kornienko // Empty init list initializes to null 10636b9c41eaSEli Friedman assert(E->getNumInits() == 0 && "Unexpected number of inits"); 106447fb9508SJohn McCall QualType Ty = E->getType()->castAs<ComplexType>()->getElementType(); 10652192fe50SChris Lattner llvm::Type* LTy = CGF.ConvertType(Ty); 10660b75f23bSOwen Anderson llvm::Value* zeroConstant = llvm::Constant::getNullValue(LTy); 1067dd7406e6SEli Friedman return ComplexPairTy(zeroConstant, zeroConstant); 1068dd7406e6SEli Friedman } 1069dd7406e6SEli Friedman 107000079612SDaniel Dunbar ComplexPairTy ComplexExprEmitter::VisitVAArgExpr(VAArgExpr *E) { 1071c7d5c94fSCharles Davis Address ArgValue = Address::invalid(); 1072c7d5c94fSCharles Davis Address ArgPtr = CGF.EmitVAArg(E, ArgValue); 107300079612SDaniel Dunbar 10747f416cc4SJohn McCall if (!ArgPtr.isValid()) { 107500079612SDaniel Dunbar CGF.ErrorUnsupported(E, "complex va_arg expression"); 10762192fe50SChris Lattner llvm::Type *EltTy = 107747fb9508SJohn McCall CGF.ConvertType(E->getType()->castAs<ComplexType>()->getElementType()); 107800079612SDaniel Dunbar llvm::Value *U = llvm::UndefValue::get(EltTy); 107900079612SDaniel Dunbar return ComplexPairTy(U, U); 108000079612SDaniel Dunbar } 108100079612SDaniel Dunbar 10827f416cc4SJohn McCall return EmitLoadOfLValue(CGF.MakeAddrLValue(ArgPtr, E->getType()), 10832d84e842SNick Lewycky E->getExprLoc()); 108400079612SDaniel Dunbar } 108500079612SDaniel Dunbar 10867a51313dSChris Lattner //===----------------------------------------------------------------------===// 10877a51313dSChris Lattner // Entry Point into this File 10887a51313dSChris Lattner //===----------------------------------------------------------------------===// 10897a51313dSChris Lattner 10907a51313dSChris Lattner /// EmitComplexExpr - Emit the computation of the specified expression of 10917a51313dSChris Lattner /// complex type, ignoring the result. 1092df0fe27bSMike Stump ComplexPairTy CodeGenFunction::EmitComplexExpr(const Expr *E, bool IgnoreReal, 109307bb1966SJohn McCall bool IgnoreImag) { 109447fb9508SJohn McCall assert(E && getComplexType(E->getType()) && 10957a51313dSChris Lattner "Invalid complex expression to emit"); 10967a51313dSChris Lattner 109738b25914SDavid Blaikie return ComplexExprEmitter(*this, IgnoreReal, IgnoreImag) 1098df0fe27bSMike Stump .Visit(const_cast<Expr *>(E)); 10997a51313dSChris Lattner } 11007a51313dSChris Lattner 110147fb9508SJohn McCall void CodeGenFunction::EmitComplexExprIntoLValue(const Expr *E, LValue dest, 110266e4197fSDavid Blaikie bool isInit) { 110347fb9508SJohn McCall assert(E && getComplexType(E->getType()) && 11047a51313dSChris Lattner "Invalid complex expression to emit"); 11057a51313dSChris Lattner ComplexExprEmitter Emitter(*this); 11067a51313dSChris Lattner ComplexPairTy Val = Emitter.Visit(const_cast<Expr*>(E)); 110766e4197fSDavid Blaikie Emitter.EmitStoreOfComplex(Val, dest, isInit); 11087a51313dSChris Lattner } 11097a51313dSChris Lattner 111047fb9508SJohn McCall /// EmitStoreOfComplex - Store a complex number into the specified l-value. 111147fb9508SJohn McCall void CodeGenFunction::EmitStoreOfComplex(ComplexPairTy V, LValue dest, 111266e4197fSDavid Blaikie bool isInit) { 111366e4197fSDavid Blaikie ComplexExprEmitter(*this).EmitStoreOfComplex(V, dest, isInit); 11144b8c6db9SDaniel Dunbar } 11154b8c6db9SDaniel Dunbar 111647fb9508SJohn McCall /// EmitLoadOfComplex - Load a complex number from the specified address. 11172d84e842SNick Lewycky ComplexPairTy CodeGenFunction::EmitLoadOfComplex(LValue src, 11182d84e842SNick Lewycky SourceLocation loc) { 11192d84e842SNick Lewycky return ComplexExprEmitter(*this).EmitLoadOfLValue(src, loc); 11207a51313dSChris Lattner } 11214f29b49dSJohn McCall 11224f29b49dSJohn McCall LValue CodeGenFunction::EmitComplexAssignmentLValue(const BinaryOperator *E) { 1123a2342eb8SJohn McCall assert(E->getOpcode() == BO_Assign); 11244f29b49dSJohn McCall ComplexPairTy Val; // ignored 11254f29b49dSJohn McCall return ComplexExprEmitter(*this).EmitBinAssignLValue(E, Val); 1126a2342eb8SJohn McCall } 11274f29b49dSJohn McCall 1128f045007fSEli Friedman typedef ComplexPairTy (ComplexExprEmitter::*CompoundFunc)( 1129f045007fSEli Friedman const ComplexExprEmitter::BinOpInfo &); 11304f29b49dSJohn McCall 1131f045007fSEli Friedman static CompoundFunc getComplexOp(BinaryOperatorKind Op) { 1132f045007fSEli Friedman switch (Op) { 1133f045007fSEli Friedman case BO_MulAssign: return &ComplexExprEmitter::EmitBinMul; 1134f045007fSEli Friedman case BO_DivAssign: return &ComplexExprEmitter::EmitBinDiv; 1135f045007fSEli Friedman case BO_SubAssign: return &ComplexExprEmitter::EmitBinSub; 1136f045007fSEli Friedman case BO_AddAssign: return &ComplexExprEmitter::EmitBinAdd; 11374f29b49dSJohn McCall default: 11384f29b49dSJohn McCall llvm_unreachable("unexpected complex compound assignment"); 11394f29b49dSJohn McCall } 1140f045007fSEli Friedman } 11414f29b49dSJohn McCall 1142f045007fSEli Friedman LValue CodeGenFunction:: 1143f045007fSEli Friedman EmitComplexCompoundAssignmentLValue(const CompoundAssignOperator *E) { 1144f045007fSEli Friedman CompoundFunc Op = getComplexOp(E->getOpcode()); 1145f045007fSEli Friedman RValue Val; 1146a2342eb8SJohn McCall return ComplexExprEmitter(*this).EmitCompoundAssignLValue(E, Op, Val); 11474f29b49dSJohn McCall } 1148f045007fSEli Friedman 1149f045007fSEli Friedman LValue CodeGenFunction:: 1150527473dfSRichard Smith EmitScalarCompoundAssignWithComplex(const CompoundAssignOperator *E, 1151f045007fSEli Friedman llvm::Value *&Result) { 1152f045007fSEli Friedman CompoundFunc Op = getComplexOp(E->getOpcode()); 1153f045007fSEli Friedman RValue Val; 1154f045007fSEli Friedman LValue Ret = ComplexExprEmitter(*this).EmitCompoundAssignLValue(E, Op, Val); 1155f045007fSEli Friedman Result = Val.getScalarVal(); 1156f045007fSEli Friedman return Ret; 1157f045007fSEli Friedman } 1158