17a51313dSChris Lattner //===--- CGExprAgg.cpp - Emit LLVM Code from Aggregate Expressions --------===//
27a51313dSChris Lattner //
37a51313dSChris Lattner //                     The LLVM Compiler Infrastructure
47a51313dSChris Lattner //
57a51313dSChris Lattner // This file is distributed under the University of Illinois Open Source
67a51313dSChris Lattner // License. See LICENSE.TXT for details.
77a51313dSChris Lattner //
87a51313dSChris Lattner //===----------------------------------------------------------------------===//
97a51313dSChris Lattner //
107a51313dSChris Lattner // This contains code to emit Aggregate Expr nodes as LLVM code.
117a51313dSChris Lattner //
127a51313dSChris Lattner //===----------------------------------------------------------------------===//
137a51313dSChris Lattner 
147a51313dSChris Lattner #include "CodeGenFunction.h"
157a51313dSChris Lattner #include "CodeGenModule.h"
16ad319a73SDaniel Dunbar #include "clang/AST/ASTContext.h"
17ad319a73SDaniel Dunbar #include "clang/AST/StmtVisitor.h"
187a51313dSChris Lattner #include "llvm/Constants.h"
197a51313dSChris Lattner #include "llvm/Function.h"
207a51313dSChris Lattner #include "llvm/GlobalVariable.h"
217a51313dSChris Lattner #include "llvm/Support/Compiler.h"
22579a05d7SChris Lattner #include "llvm/Intrinsics.h"
237a51313dSChris Lattner using namespace clang;
247a51313dSChris Lattner using namespace CodeGen;
257a51313dSChris Lattner 
267a51313dSChris Lattner //===----------------------------------------------------------------------===//
277a51313dSChris Lattner //                        Aggregate Expression Emitter
287a51313dSChris Lattner //===----------------------------------------------------------------------===//
297a51313dSChris Lattner 
307a51313dSChris Lattner namespace  {
317a51313dSChris Lattner class VISIBILITY_HIDDEN AggExprEmitter : public StmtVisitor<AggExprEmitter> {
327a51313dSChris Lattner   CodeGenFunction &CGF;
33cb463859SDaniel Dunbar   CGBuilderTy &Builder;
347a51313dSChris Lattner   llvm::Value *DestPtr;
357a51313dSChris Lattner   bool VolatileDest;
367a51313dSChris Lattner public:
377a51313dSChris Lattner   AggExprEmitter(CodeGenFunction &cgf, llvm::Value *destPtr, bool volatileDest)
387a51313dSChris Lattner     : CGF(cgf), Builder(CGF.Builder),
397a51313dSChris Lattner       DestPtr(destPtr), VolatileDest(volatileDest) {
407a51313dSChris Lattner   }
417a51313dSChris Lattner 
427a51313dSChris Lattner   //===--------------------------------------------------------------------===//
437a51313dSChris Lattner   //                               Utilities
447a51313dSChris Lattner   //===--------------------------------------------------------------------===//
457a51313dSChris Lattner 
467a51313dSChris Lattner   /// EmitAggLoadOfLValue - Given an expression with aggregate type that
477a51313dSChris Lattner   /// represents a value lvalue, this method emits the address of the lvalue,
487a51313dSChris Lattner   /// then loads the result into DestPtr.
497a51313dSChris Lattner   void EmitAggLoadOfLValue(const Expr *E);
507a51313dSChris Lattner 
517a51313dSChris Lattner   void EmitNonConstInit(InitListExpr *E);
527a51313dSChris Lattner 
537a51313dSChris Lattner   //===--------------------------------------------------------------------===//
547a51313dSChris Lattner   //                            Visitor Methods
557a51313dSChris Lattner   //===--------------------------------------------------------------------===//
567a51313dSChris Lattner 
577a51313dSChris Lattner   void VisitStmt(Stmt *S) {
58a7c8cf62SDaniel Dunbar     CGF.ErrorUnsupported(S, "aggregate expression");
597a51313dSChris Lattner   }
607a51313dSChris Lattner   void VisitParenExpr(ParenExpr *PE) { Visit(PE->getSubExpr()); }
613f66b84cSEli Friedman   void VisitUnaryExtension(UnaryOperator *E) { Visit(E->getSubExpr()); }
627a51313dSChris Lattner 
637a51313dSChris Lattner   // l-values.
647a51313dSChris Lattner   void VisitDeclRefExpr(DeclRefExpr *DRE) { EmitAggLoadOfLValue(DRE); }
657a51313dSChris Lattner   void VisitMemberExpr(MemberExpr *ME) { EmitAggLoadOfLValue(ME); }
667a51313dSChris Lattner   void VisitUnaryDeref(UnaryOperator *E) { EmitAggLoadOfLValue(E); }
677a51313dSChris Lattner   void VisitStringLiteral(StringLiteral *E) { EmitAggLoadOfLValue(E); }
6821911e89SEli Friedman   void VisitCompoundLiteralExpr(CompoundLiteralExpr *E)
6921911e89SEli Friedman       { EmitAggLoadOfLValue(E); }
707a51313dSChris Lattner 
717a51313dSChris Lattner   void VisitArraySubscriptExpr(ArraySubscriptExpr *E) {
727a51313dSChris Lattner     EmitAggLoadOfLValue(E);
737a51313dSChris Lattner   }
747a51313dSChris Lattner 
757a51313dSChris Lattner   // Operators.
767a51313dSChris Lattner   //  case Expr::UnaryOperatorClass:
777a51313dSChris Lattner   //  case Expr::CastExprClass:
787ffcf93bSNuno Lopes   void VisitCStyleCastExpr(CStyleCastExpr *E);
797a51313dSChris Lattner   void VisitImplicitCastExpr(ImplicitCastExpr *E);
807a51313dSChris Lattner   void VisitCallExpr(const CallExpr *E);
817a51313dSChris Lattner   void VisitStmtExpr(const StmtExpr *E);
827a51313dSChris Lattner   void VisitBinaryOperator(const BinaryOperator *BO);
837a51313dSChris Lattner   void VisitBinAssign(const BinaryOperator *E);
844b0e2a30SEli Friedman   void VisitBinComma(const BinaryOperator *E);
857a51313dSChris Lattner 
86b1d329daSChris Lattner   void VisitObjCMessageExpr(ObjCMessageExpr *E);
87c8317a44SDaniel Dunbar   void VisitObjCIvarRefExpr(ObjCIvarRefExpr *E) {
88c8317a44SDaniel Dunbar     EmitAggLoadOfLValue(E);
89c8317a44SDaniel Dunbar   }
9055310df7SDaniel Dunbar   void VisitObjCPropertyRefExpr(ObjCPropertyRefExpr *E);
918a1810f0SFariborz Jahanian   void VisitObjCKVCRefExpr(ObjCKVCRefExpr *E);
927a51313dSChris Lattner 
937a51313dSChris Lattner   void VisitConditionalOperator(const ConditionalOperator *CO);
947a51313dSChris Lattner   void VisitInitListExpr(InitListExpr *E);
95aa9c7aedSChris Lattner   void VisitCXXDefaultArgExpr(CXXDefaultArgExpr *DAE) {
96aa9c7aedSChris Lattner     Visit(DAE->getExpr());
97aa9c7aedSChris Lattner   }
9821911e89SEli Friedman   void VisitVAArgExpr(VAArgExpr *E);
99579a05d7SChris Lattner 
100579a05d7SChris Lattner   void EmitInitializationToLValue(Expr *E, LValue Address);
101579a05d7SChris Lattner   void EmitNullInitializationToLValue(LValue Address, QualType T);
1027a51313dSChris Lattner   //  case Expr::ChooseExprClass:
1037a51313dSChris Lattner 
1047a51313dSChris Lattner };
1057a51313dSChris Lattner }  // end anonymous namespace.
1067a51313dSChris Lattner 
1077a51313dSChris Lattner //===----------------------------------------------------------------------===//
1087a51313dSChris Lattner //                                Utilities
1097a51313dSChris Lattner //===----------------------------------------------------------------------===//
1107a51313dSChris Lattner 
1117a51313dSChris Lattner /// EmitAggLoadOfLValue - Given an expression with aggregate type that
1127a51313dSChris Lattner /// represents a value lvalue, this method emits the address of the lvalue,
1137a51313dSChris Lattner /// then loads the result into DestPtr.
1147a51313dSChris Lattner void AggExprEmitter::EmitAggLoadOfLValue(const Expr *E) {
1157a51313dSChris Lattner   LValue LV = CGF.EmitLValue(E);
1167a51313dSChris Lattner   assert(LV.isSimple() && "Can't have aggregate bitfield, vector, etc");
1177a51313dSChris Lattner   llvm::Value *SrcPtr = LV.getAddress();
1187a51313dSChris Lattner 
1197a51313dSChris Lattner   // If the result is ignored, don't copy from the value.
1207a51313dSChris Lattner   if (DestPtr == 0)
1217a51313dSChris Lattner     // FIXME: If the source is volatile, we must read from it.
1227a51313dSChris Lattner     return;
1237a51313dSChris Lattner 
1240bc8e86dSDaniel Dunbar   CGF.EmitAggregateCopy(DestPtr, SrcPtr, E->getType());
1257a51313dSChris Lattner }
1267a51313dSChris Lattner 
1277a51313dSChris Lattner //===----------------------------------------------------------------------===//
1287a51313dSChris Lattner //                            Visitor Methods
1297a51313dSChris Lattner //===----------------------------------------------------------------------===//
1307a51313dSChris Lattner 
1317ffcf93bSNuno Lopes void AggExprEmitter::VisitCStyleCastExpr(CStyleCastExpr *E) {
1327ffcf93bSNuno Lopes   // GCC union extension
1337ffcf93bSNuno Lopes   if (E->getType()->isUnionType()) {
1347ffcf93bSNuno Lopes     RecordDecl *SD = E->getType()->getAsRecordType()->getDecl();
1357ffcf93bSNuno Lopes     LValue FieldLoc = CGF.EmitLValueForField(DestPtr, *SD->field_begin(), true, 0);
1367ffcf93bSNuno Lopes     EmitInitializationToLValue(E->getSubExpr(), FieldLoc);
1377ffcf93bSNuno Lopes     return;
1387ffcf93bSNuno Lopes   }
1397ffcf93bSNuno Lopes 
1407ffcf93bSNuno Lopes   Visit(E->getSubExpr());
1417ffcf93bSNuno Lopes }
1427ffcf93bSNuno Lopes 
1430f398c44SChris Lattner void AggExprEmitter::VisitImplicitCastExpr(ImplicitCastExpr *E) {
1447a51313dSChris Lattner   assert(CGF.getContext().typesAreCompatible(
1450f398c44SChris Lattner                           E->getSubExpr()->getType().getUnqualifiedType(),
1460f398c44SChris Lattner                           E->getType().getUnqualifiedType()) &&
1470f398c44SChris Lattner          "Implicit cast types must be compatible");
1487a51313dSChris Lattner   Visit(E->getSubExpr());
1497a51313dSChris Lattner }
1507a51313dSChris Lattner 
1510f398c44SChris Lattner void AggExprEmitter::VisitCallExpr(const CallExpr *E) {
1527a51313dSChris Lattner   RValue RV = CGF.EmitCallExpr(E);
1537a51313dSChris Lattner   assert(RV.isAggregate() && "Return value must be aggregate value!");
1547a51313dSChris Lattner 
1557a51313dSChris Lattner   // If the result is ignored, don't copy from the value.
1567a51313dSChris Lattner   if (DestPtr == 0)
1577a51313dSChris Lattner     // FIXME: If the source is volatile, we must read from it.
1587a51313dSChris Lattner     return;
1597a51313dSChris Lattner 
1600bc8e86dSDaniel Dunbar   CGF.EmitAggregateCopy(DestPtr, RV.getAggregateAddr(), E->getType());
1617a51313dSChris Lattner }
1620f398c44SChris Lattner 
1630f398c44SChris Lattner void AggExprEmitter::VisitObjCMessageExpr(ObjCMessageExpr *E) {
16497db84ceSDaniel Dunbar   RValue RV = CGF.EmitObjCMessageExpr(E);
16597db84ceSDaniel Dunbar   assert(RV.isAggregate() && "Return value must be aggregate value!");
166b1d329daSChris Lattner 
167b1d329daSChris Lattner   // If the result is ignored, don't copy from the value.
168b1d329daSChris Lattner   if (DestPtr == 0)
16997db84ceSDaniel Dunbar     // FIXME: If the source is volatile, we must read from it.
170b1d329daSChris Lattner     return;
171b1d329daSChris Lattner 
1720bc8e86dSDaniel Dunbar   CGF.EmitAggregateCopy(DestPtr, RV.getAggregateAddr(), E->getType());
173b1d329daSChris Lattner }
1747a51313dSChris Lattner 
17555310df7SDaniel Dunbar void AggExprEmitter::VisitObjCPropertyRefExpr(ObjCPropertyRefExpr *E) {
17655310df7SDaniel Dunbar   RValue RV = CGF.EmitObjCPropertyGet(E);
17755310df7SDaniel Dunbar   assert(RV.isAggregate() && "Return value must be aggregate value!");
17855310df7SDaniel Dunbar 
17955310df7SDaniel Dunbar   // If the result is ignored, don't copy from the value.
18055310df7SDaniel Dunbar   if (DestPtr == 0)
18155310df7SDaniel Dunbar     // FIXME: If the source is volatile, we must read from it.
18255310df7SDaniel Dunbar     return;
18355310df7SDaniel Dunbar 
1840bc8e86dSDaniel Dunbar   CGF.EmitAggregateCopy(DestPtr, RV.getAggregateAddr(), E->getType());
18555310df7SDaniel Dunbar }
18655310df7SDaniel Dunbar 
1878a1810f0SFariborz Jahanian void AggExprEmitter::VisitObjCKVCRefExpr(ObjCKVCRefExpr *E) {
1888a1810f0SFariborz Jahanian   RValue RV = CGF.EmitObjCPropertyGet(E);
1898a1810f0SFariborz Jahanian   assert(RV.isAggregate() && "Return value must be aggregate value!");
1908a1810f0SFariborz Jahanian 
1918a1810f0SFariborz Jahanian   // If the result is ignored, don't copy from the value.
1928a1810f0SFariborz Jahanian   if (DestPtr == 0)
1938a1810f0SFariborz Jahanian     // FIXME: If the source is volatile, we must read from it.
1948a1810f0SFariborz Jahanian     return;
1958a1810f0SFariborz Jahanian 
1968a1810f0SFariborz Jahanian   CGF.EmitAggregateCopy(DestPtr, RV.getAggregateAddr(), E->getType());
1978a1810f0SFariborz Jahanian }
1988a1810f0SFariborz Jahanian 
1990f398c44SChris Lattner void AggExprEmitter::VisitBinComma(const BinaryOperator *E) {
2004b0e2a30SEli Friedman   CGF.EmitAnyExpr(E->getLHS());
2014b0e2a30SEli Friedman   CGF.EmitAggExpr(E->getRHS(), DestPtr, false);
2024b0e2a30SEli Friedman }
2034b0e2a30SEli Friedman 
2047a51313dSChris Lattner void AggExprEmitter::VisitStmtExpr(const StmtExpr *E) {
2057a51313dSChris Lattner   CGF.EmitCompoundStmt(*E->getSubStmt(), true, DestPtr, VolatileDest);
2067a51313dSChris Lattner }
2077a51313dSChris Lattner 
2087a51313dSChris Lattner void AggExprEmitter::VisitBinaryOperator(const BinaryOperator *E) {
209a7c8cf62SDaniel Dunbar   CGF.ErrorUnsupported(E, "aggregate binary expression");
2107a51313dSChris Lattner }
2117a51313dSChris Lattner 
2127a51313dSChris Lattner void AggExprEmitter::VisitBinAssign(const BinaryOperator *E) {
2137a51313dSChris Lattner   // For an assignment to work, the value on the right has
2147a51313dSChris Lattner   // to be compatible with the value on the left.
2157a51313dSChris Lattner   assert(CGF.getContext().typesAreCompatible(
2167a51313dSChris Lattner              E->getLHS()->getType().getUnqualifiedType(),
2177a51313dSChris Lattner              E->getRHS()->getType().getUnqualifiedType())
2187a51313dSChris Lattner          && "Invalid assignment");
2197a51313dSChris Lattner   LValue LHS = CGF.EmitLValue(E->getLHS());
2207a51313dSChris Lattner 
2214b8c6db9SDaniel Dunbar   // We have to special case property setters, otherwise we must have
2224b8c6db9SDaniel Dunbar   // a simple lvalue (no aggregates inside vectors, bitfields).
2234b8c6db9SDaniel Dunbar   if (LHS.isPropertyRef()) {
2244b8c6db9SDaniel Dunbar     // FIXME: Volatility?
2254b8c6db9SDaniel Dunbar     llvm::Value *AggLoc = DestPtr;
2264b8c6db9SDaniel Dunbar     if (!AggLoc)
2274b8c6db9SDaniel Dunbar       AggLoc = CGF.CreateTempAlloca(CGF.ConvertType(E->getRHS()->getType()));
2284b8c6db9SDaniel Dunbar     CGF.EmitAggExpr(E->getRHS(), AggLoc, false);
2294b8c6db9SDaniel Dunbar     CGF.EmitObjCPropertySet(LHS.getPropertyRefExpr(),
2304b8c6db9SDaniel Dunbar                             RValue::getAggregate(AggLoc));
2319ac53516SFariborz Jahanian   }
2329ac53516SFariborz Jahanian   else if (LHS.isKVCRef()) {
2339ac53516SFariborz Jahanian     // FIXME: Volatility?
2349ac53516SFariborz Jahanian     llvm::Value *AggLoc = DestPtr;
2359ac53516SFariborz Jahanian     if (!AggLoc)
2369ac53516SFariborz Jahanian       AggLoc = CGF.CreateTempAlloca(CGF.ConvertType(E->getRHS()->getType()));
2379ac53516SFariborz Jahanian     CGF.EmitAggExpr(E->getRHS(), AggLoc, false);
2389ac53516SFariborz Jahanian     CGF.EmitObjCPropertySet(LHS.getKVCRefExpr(),
2399ac53516SFariborz Jahanian                             RValue::getAggregate(AggLoc));
2404b8c6db9SDaniel Dunbar   } else {
2417a51313dSChris Lattner     // Codegen the RHS so that it stores directly into the LHS.
2427a51313dSChris Lattner     CGF.EmitAggExpr(E->getRHS(), LHS.getAddress(), false /*FIXME: VOLATILE LHS*/);
2437a51313dSChris Lattner 
2447a51313dSChris Lattner     if (DestPtr == 0)
2457a51313dSChris Lattner       return;
2467a51313dSChris Lattner 
2477a51313dSChris Lattner     // If the result of the assignment is used, copy the RHS there also.
2480bc8e86dSDaniel Dunbar     CGF.EmitAggregateCopy(DestPtr, LHS.getAddress(), E->getType());
2497a51313dSChris Lattner   }
2504b8c6db9SDaniel Dunbar }
2517a51313dSChris Lattner 
2527a51313dSChris Lattner void AggExprEmitter::VisitConditionalOperator(const ConditionalOperator *E) {
253a612e79bSDaniel Dunbar   llvm::BasicBlock *LHSBlock = CGF.createBasicBlock("cond.true");
254a612e79bSDaniel Dunbar   llvm::BasicBlock *RHSBlock = CGF.createBasicBlock("cond.false");
255a612e79bSDaniel Dunbar   llvm::BasicBlock *ContBlock = CGF.createBasicBlock("cond.end");
2567a51313dSChris Lattner 
2577a51313dSChris Lattner   llvm::Value *Cond = CGF.EvaluateExprAsBool(E->getCond());
2587a51313dSChris Lattner   Builder.CreateCondBr(Cond, LHSBlock, RHSBlock);
2597a51313dSChris Lattner 
2607a51313dSChris Lattner   CGF.EmitBlock(LHSBlock);
2617a51313dSChris Lattner 
2627a51313dSChris Lattner   // Handle the GNU extension for missing LHS.
2637a51313dSChris Lattner   assert(E->getLHS() && "Must have LHS for aggregate value");
2647a51313dSChris Lattner 
2657a51313dSChris Lattner   Visit(E->getLHS());
266c56e6764SDaniel Dunbar   CGF.EmitBranch(ContBlock);
2677a51313dSChris Lattner 
2687a51313dSChris Lattner   CGF.EmitBlock(RHSBlock);
2697a51313dSChris Lattner 
2707a51313dSChris Lattner   Visit(E->getRHS());
271c56e6764SDaniel Dunbar   CGF.EmitBranch(ContBlock);
2727a51313dSChris Lattner 
2737a51313dSChris Lattner   CGF.EmitBlock(ContBlock);
2747a51313dSChris Lattner }
2757a51313dSChris Lattner 
27621911e89SEli Friedman void AggExprEmitter::VisitVAArgExpr(VAArgExpr *VE) {
277e9fcadd2SDaniel Dunbar   llvm::Value *ArgValue = CGF.EmitVAListRef(VE->getSubExpr());
27813abd7e9SAnders Carlsson   llvm::Value *ArgPtr = CGF.EmitVAArg(ArgValue, VE->getType());
27913abd7e9SAnders Carlsson 
280020cddcfSSebastian Redl   if (!ArgPtr) {
28113abd7e9SAnders Carlsson     CGF.ErrorUnsupported(VE, "aggregate va_arg expression");
282020cddcfSSebastian Redl     return;
283020cddcfSSebastian Redl   }
28413abd7e9SAnders Carlsson 
28521911e89SEli Friedman   if (DestPtr)
286327944b3SEli Friedman     // FIXME: volatility
28713abd7e9SAnders Carlsson     CGF.EmitAggregateCopy(DestPtr, ArgPtr, VE->getType());
28821911e89SEli Friedman }
28921911e89SEli Friedman 
2907a51313dSChris Lattner void AggExprEmitter::EmitNonConstInit(InitListExpr *E) {
2917a51313dSChris Lattner   const llvm::PointerType *APType =
2927a51313dSChris Lattner     cast<llvm::PointerType>(DestPtr->getType());
2937a51313dSChris Lattner   const llvm::Type *DestType = APType->getElementType();
2947a51313dSChris Lattner 
295bf7207a1SDouglas Gregor   if (E->hadArrayRangeDesignator()) {
296bf7207a1SDouglas Gregor     CGF.ErrorUnsupported(E, "GNU array range designator extension");
297bf7207a1SDouglas Gregor   }
298bf7207a1SDouglas Gregor 
2997a51313dSChris Lattner   if (const llvm::ArrayType *AType = dyn_cast<llvm::ArrayType>(DestType)) {
3007a51313dSChris Lattner     unsigned NumInitElements = E->getNumInits();
3017a51313dSChris Lattner 
3027a51313dSChris Lattner     unsigned i;
3037a51313dSChris Lattner     for (i = 0; i != NumInitElements; ++i) {
3043e593cdbSChris Lattner       llvm::Value *NextVal = Builder.CreateStructGEP(DestPtr, i, ".array");
3057a51313dSChris Lattner       Expr *Init = E->getInit(i);
3067a51313dSChris Lattner       if (isa<InitListExpr>(Init))
3077a51313dSChris Lattner         CGF.EmitAggExpr(Init, NextVal, VolatileDest);
3087a51313dSChris Lattner       else
309327944b3SEli Friedman         // FIXME: volatility
3107a51313dSChris Lattner         Builder.CreateStore(CGF.EmitScalarExpr(Init), NextVal);
3117a51313dSChris Lattner     }
3127a51313dSChris Lattner 
3137a51313dSChris Lattner     // Emit remaining default initializers
3147a51313dSChris Lattner     unsigned NumArrayElements = AType->getNumElements();
3157a51313dSChris Lattner     QualType QType = E->getInit(0)->getType();
3167a51313dSChris Lattner     const llvm::Type *EType = AType->getElementType();
3177a51313dSChris Lattner     for (/*Do not initialize i*/; i < NumArrayElements; ++i) {
3183e593cdbSChris Lattner       llvm::Value *NextVal = Builder.CreateStructGEP(DestPtr, i, ".array");
3195d30975eSDan Gohman       if (EType->isSingleValueType())
320327944b3SEli Friedman         // FIXME: volatility
3217a51313dSChris Lattner         Builder.CreateStore(llvm::Constant::getNullValue(EType), NextVal);
3227a51313dSChris Lattner       else
3230bc8e86dSDaniel Dunbar         CGF.EmitAggregateClear(NextVal, QType);
3247a51313dSChris Lattner     }
3257a51313dSChris Lattner   } else
3267a51313dSChris Lattner     assert(false && "Invalid initializer");
3277a51313dSChris Lattner }
3287a51313dSChris Lattner 
329579a05d7SChris Lattner void AggExprEmitter::EmitInitializationToLValue(Expr* E, LValue LV) {
330579a05d7SChris Lattner   // FIXME: Are initializers affected by volatile?
3310202cb40SDouglas Gregor   if (isa<ImplicitValueInitExpr>(E)) {
332347f7eabSDouglas Gregor     EmitNullInitializationToLValue(LV, E->getType());
3330202cb40SDouglas Gregor   } else if (E->getType()->isComplexType()) {
3340202cb40SDouglas Gregor     CGF.EmitComplexExprIntoAddr(E, LV.getAddress(), false);
3356e313210SEli Friedman   } else if (CGF.hasAggregateLLVMType(E->getType())) {
3366e313210SEli Friedman     CGF.EmitAnyExpr(E, LV.getAddress(), false);
3376e313210SEli Friedman   } else {
3386e313210SEli Friedman     CGF.EmitStoreThroughLValue(CGF.EmitAnyExpr(E), LV, E->getType());
3397a51313dSChris Lattner   }
340579a05d7SChris Lattner }
341579a05d7SChris Lattner 
342579a05d7SChris Lattner void AggExprEmitter::EmitNullInitializationToLValue(LValue LV, QualType T) {
343579a05d7SChris Lattner   if (!CGF.hasAggregateLLVMType(T)) {
344579a05d7SChris Lattner     // For non-aggregates, we can store zero
345e8bdce44SDaniel Dunbar     llvm::Value *Null = llvm::Constant::getNullValue(CGF.ConvertType(T));
346e8bdce44SDaniel Dunbar     CGF.EmitStoreThroughLValue(RValue::get(Null), LV, T);
347579a05d7SChris Lattner   } else {
348579a05d7SChris Lattner     // Otherwise, just memset the whole thing to zero.  This is legal
349579a05d7SChris Lattner     // because in LLVM, all default initializers are guaranteed to have a
350579a05d7SChris Lattner     // bit pattern of all zeros.
351579a05d7SChris Lattner     // There's a potential optimization opportunity in combining
352579a05d7SChris Lattner     // memsets; that would be easy for arrays, but relatively
353579a05d7SChris Lattner     // difficult for structures with the current code.
3540f137df0SChris Lattner     const llvm::Type *SizeTy = llvm::Type::Int64Ty;
3550f137df0SChris Lattner     llvm::Value *MemSet = CGF.CGM.getIntrinsic(llvm::Intrinsic::memset,
3560f137df0SChris Lattner                                                &SizeTy, 1);
357579a05d7SChris Lattner     uint64_t Size = CGF.getContext().getTypeSize(T);
358579a05d7SChris Lattner 
359579a05d7SChris Lattner     const llvm::Type *BP = llvm::PointerType::getUnqual(llvm::Type::Int8Ty);
360579a05d7SChris Lattner     llvm::Value* DestPtr = Builder.CreateBitCast(LV.getAddress(), BP, "tmp");
361dbcc2ca6SChris Lattner     Builder.CreateCall4(MemSet, DestPtr,
362dbcc2ca6SChris Lattner                         llvm::ConstantInt::get(llvm::Type::Int8Ty, 0),
3630f137df0SChris Lattner                         llvm::ConstantInt::get(SizeTy, Size/8),
364dbcc2ca6SChris Lattner                         llvm::ConstantInt::get(llvm::Type::Int32Ty, 0));
365579a05d7SChris Lattner   }
366579a05d7SChris Lattner }
367579a05d7SChris Lattner 
368579a05d7SChris Lattner void AggExprEmitter::VisitInitListExpr(InitListExpr *E) {
369f5d08c9eSEli Friedman #if 0
370f5d08c9eSEli Friedman   // FIXME: Disabled while we figure out what to do about
371f5d08c9eSEli Friedman   // test/CodeGen/bitfield.c
372f5d08c9eSEli Friedman   //
373c59bb48eSEli Friedman   // If we can, prefer a copy from a global; this is a lot less
374c59bb48eSEli Friedman   // code for long globals, and it's easier for the current optimizers
375c59bb48eSEli Friedman   // to analyze.
376c59bb48eSEli Friedman   // FIXME: Should we really be doing this? Should we try to avoid
377c59bb48eSEli Friedman   // cases where we emit a global with a lot of zeros?  Should
378c59bb48eSEli Friedman   // we try to avoid short globals?
3797139af42SEli Friedman   if (E->isConstantInitializer(CGF.getContext(), 0)) {
380c59bb48eSEli Friedman     llvm::Constant* C = CGF.CGM.EmitConstantExpr(E, &CGF);
381c59bb48eSEli Friedman     llvm::GlobalVariable* GV =
382c59bb48eSEli Friedman     new llvm::GlobalVariable(C->getType(), true,
383c59bb48eSEli Friedman                              llvm::GlobalValue::InternalLinkage,
384c59bb48eSEli Friedman                              C, "", &CGF.CGM.getModule(), 0);
385c59bb48eSEli Friedman     CGF.EmitAggregateCopy(DestPtr, GV, E->getType());
386c59bb48eSEli Friedman     return;
387c59bb48eSEli Friedman   }
388f5d08c9eSEli Friedman #endif
389bf7207a1SDouglas Gregor   if (E->hadArrayRangeDesignator()) {
390bf7207a1SDouglas Gregor     CGF.ErrorUnsupported(E, "GNU array range designator extension");
391bf7207a1SDouglas Gregor   }
392bf7207a1SDouglas Gregor 
393579a05d7SChris Lattner   // Handle initialization of an array.
394579a05d7SChris Lattner   if (E->getType()->isArrayType()) {
395579a05d7SChris Lattner     const llvm::PointerType *APType =
396579a05d7SChris Lattner       cast<llvm::PointerType>(DestPtr->getType());
397579a05d7SChris Lattner     const llvm::ArrayType *AType =
398579a05d7SChris Lattner       cast<llvm::ArrayType>(APType->getElementType());
399579a05d7SChris Lattner 
400579a05d7SChris Lattner     uint64_t NumInitElements = E->getNumInits();
401f23b6fa4SEli Friedman 
4020f398c44SChris Lattner     if (E->getNumInits() > 0) {
4030f398c44SChris Lattner       QualType T1 = E->getType();
4040f398c44SChris Lattner       QualType T2 = E->getInit(0)->getType();
4050f398c44SChris Lattner       if (CGF.getContext().getCanonicalType(T1).getUnqualifiedType() ==
4060f398c44SChris Lattner           CGF.getContext().getCanonicalType(T2).getUnqualifiedType()) {
407f23b6fa4SEli Friedman         EmitAggLoadOfLValue(E->getInit(0));
408f23b6fa4SEli Friedman         return;
409f23b6fa4SEli Friedman       }
4100f398c44SChris Lattner     }
411f23b6fa4SEli Friedman 
412579a05d7SChris Lattner     uint64_t NumArrayElements = AType->getNumElements();
4137adf0760SChris Lattner     QualType ElementType = CGF.getContext().getCanonicalType(E->getType());
4147adf0760SChris Lattner     ElementType = CGF.getContext().getAsArrayType(ElementType)->getElementType();
415579a05d7SChris Lattner 
4167adf0760SChris Lattner     unsigned CVRqualifier = ElementType.getCVRQualifiers();
417327944b3SEli Friedman 
418579a05d7SChris Lattner     for (uint64_t i = 0; i != NumArrayElements; ++i) {
419579a05d7SChris Lattner       llvm::Value *NextVal = Builder.CreateStructGEP(DestPtr, i, ".array");
420579a05d7SChris Lattner       if (i < NumInitElements)
421327944b3SEli Friedman         EmitInitializationToLValue(E->getInit(i),
422327944b3SEli Friedman                                    LValue::MakeAddr(NextVal, CVRqualifier));
423579a05d7SChris Lattner       else
424327944b3SEli Friedman         EmitNullInitializationToLValue(LValue::MakeAddr(NextVal, CVRqualifier),
425579a05d7SChris Lattner                                        ElementType);
426579a05d7SChris Lattner     }
427579a05d7SChris Lattner     return;
428579a05d7SChris Lattner   }
429579a05d7SChris Lattner 
430579a05d7SChris Lattner   assert(E->getType()->isRecordType() && "Only support structs/unions here!");
431579a05d7SChris Lattner 
432579a05d7SChris Lattner   // Do struct initialization; this code just sets each individual member
433579a05d7SChris Lattner   // to the approprate value.  This makes bitfield support automatic;
434579a05d7SChris Lattner   // the disadvantage is that the generated code is more difficult for
435579a05d7SChris Lattner   // the optimizer, especially with bitfields.
436579a05d7SChris Lattner   unsigned NumInitElements = E->getNumInits();
437579a05d7SChris Lattner   RecordDecl *SD = E->getType()->getAsRecordType()->getDecl();
438579a05d7SChris Lattner   unsigned CurInitVal = 0;
4395169570eSDouglas Gregor 
4405169570eSDouglas Gregor   if (E->getType()->isUnionType()) {
4415169570eSDouglas Gregor     // Only initialize one field of a union. The field itself is
4425169570eSDouglas Gregor     // specified by the initializer list.
4435169570eSDouglas Gregor     if (!E->getInitializedFieldInUnion()) {
4445169570eSDouglas Gregor       // Empty union; we have nothing to do.
4455169570eSDouglas Gregor 
4465169570eSDouglas Gregor #ifndef NDEBUG
4475169570eSDouglas Gregor       // Make sure that it's really an empty and not a failure of
4485169570eSDouglas Gregor       // semantic analysis.
4495169570eSDouglas Gregor       for (RecordDecl::field_iterator Field = SD->field_begin(),
4505169570eSDouglas Gregor                                    FieldEnd = SD->field_end();
4515169570eSDouglas Gregor            Field != FieldEnd; ++Field)
4525169570eSDouglas Gregor         assert(Field->isUnnamedBitfield() && "Only unnamed bitfields allowed");
4535169570eSDouglas Gregor #endif
4545169570eSDouglas Gregor       return;
4555169570eSDouglas Gregor     }
4565169570eSDouglas Gregor 
4575169570eSDouglas Gregor     // FIXME: volatility
4585169570eSDouglas Gregor     FieldDecl *Field = E->getInitializedFieldInUnion();
4595169570eSDouglas Gregor     LValue FieldLoc = CGF.EmitLValueForField(DestPtr, Field, true, 0);
4605169570eSDouglas Gregor 
4615169570eSDouglas Gregor     if (NumInitElements) {
4625169570eSDouglas Gregor       // Store the initializer into the field
4635169570eSDouglas Gregor       EmitInitializationToLValue(E->getInit(0), FieldLoc);
4645169570eSDouglas Gregor     } else {
4655169570eSDouglas Gregor       // Default-initialize to null
4665169570eSDouglas Gregor       EmitNullInitializationToLValue(FieldLoc, Field->getType());
4675169570eSDouglas Gregor     }
4685169570eSDouglas Gregor 
4695169570eSDouglas Gregor     return;
4705169570eSDouglas Gregor   }
471579a05d7SChris Lattner 
472579a05d7SChris Lattner   // Here we iterate over the fields; this makes it simpler to both
473579a05d7SChris Lattner   // default-initialize fields and skip over unnamed fields.
47491f84216SDouglas Gregor   for (RecordDecl::field_iterator Field = SD->field_begin(),
47591f84216SDouglas Gregor                                FieldEnd = SD->field_end();
47691f84216SDouglas Gregor        Field != FieldEnd; ++Field) {
47791f84216SDouglas Gregor     // We're done once we hit the flexible array member
47891f84216SDouglas Gregor     if (Field->getType()->isIncompleteArrayType())
47991f84216SDouglas Gregor       break;
48091f84216SDouglas Gregor 
48117bd094aSDouglas Gregor     if (Field->isUnnamedBitfield())
482579a05d7SChris Lattner       continue;
48317bd094aSDouglas Gregor 
484327944b3SEli Friedman     // FIXME: volatility
4855169570eSDouglas Gregor     LValue FieldLoc = CGF.EmitLValueForField(DestPtr, *Field, false, 0);
486579a05d7SChris Lattner     if (CurInitVal < NumInitElements) {
487579a05d7SChris Lattner       // Store the initializer into the field
488579a05d7SChris Lattner       EmitInitializationToLValue(E->getInit(CurInitVal++), FieldLoc);
489579a05d7SChris Lattner     } else {
490579a05d7SChris Lattner       // We're out of initalizers; default-initialize to null
49191f84216SDouglas Gregor       EmitNullInitializationToLValue(FieldLoc, Field->getType());
492579a05d7SChris Lattner     }
4937a51313dSChris Lattner   }
4947a51313dSChris Lattner }
4957a51313dSChris Lattner 
4967a51313dSChris Lattner //===----------------------------------------------------------------------===//
4977a51313dSChris Lattner //                        Entry Points into this File
4987a51313dSChris Lattner //===----------------------------------------------------------------------===//
4997a51313dSChris Lattner 
5007a51313dSChris Lattner /// EmitAggExpr - Emit the computation of the specified expression of
5017a51313dSChris Lattner /// aggregate type.  The result is computed into DestPtr.  Note that if
5027a51313dSChris Lattner /// DestPtr is null, the value of the aggregate expression is not needed.
5037a51313dSChris Lattner void CodeGenFunction::EmitAggExpr(const Expr *E, llvm::Value *DestPtr,
5047a51313dSChris Lattner                                   bool VolatileDest) {
5057a51313dSChris Lattner   assert(E && hasAggregateLLVMType(E->getType()) &&
5067a51313dSChris Lattner          "Invalid aggregate expression to emit");
5077a51313dSChris Lattner 
5087a51313dSChris Lattner   AggExprEmitter(*this, DestPtr, VolatileDest).Visit(const_cast<Expr*>(E));
5097a51313dSChris Lattner }
5100bc8e86dSDaniel Dunbar 
5110bc8e86dSDaniel Dunbar void CodeGenFunction::EmitAggregateClear(llvm::Value *DestPtr, QualType Ty) {
5120bc8e86dSDaniel Dunbar   assert(!Ty->isAnyComplexType() && "Shouldn't happen for complex");
5130bc8e86dSDaniel Dunbar 
5140bc8e86dSDaniel Dunbar   EmitMemSetToZero(DestPtr, Ty);
5150bc8e86dSDaniel Dunbar }
5160bc8e86dSDaniel Dunbar 
5170bc8e86dSDaniel Dunbar void CodeGenFunction::EmitAggregateCopy(llvm::Value *DestPtr,
5180bc8e86dSDaniel Dunbar                                         llvm::Value *SrcPtr, QualType Ty) {
5190bc8e86dSDaniel Dunbar   assert(!Ty->isAnyComplexType() && "Shouldn't happen for complex");
5200bc8e86dSDaniel Dunbar 
521*ca05dfefSChris Lattner   // Aggregate assignment turns into llvm.memcpy.  This is almost valid per
5223ef668c2SChris Lattner   // C99 6.5.16.1p3, which states "If the value being stored in an object is
5233ef668c2SChris Lattner   // read from another object that overlaps in anyway the storage of the first
5243ef668c2SChris Lattner   // object, then the overlap shall be exact and the two objects shall have
5253ef668c2SChris Lattner   // qualified or unqualified versions of a compatible type."
5263ef668c2SChris Lattner   //
527*ca05dfefSChris Lattner   // memcpy is not defined if the source and destination pointers are exactly
5283ef668c2SChris Lattner   // equal, but other compilers do this optimization, and almost every memcpy
5293ef668c2SChris Lattner   // implementation handles this case safely.  If there is a libc that does not
5303ef668c2SChris Lattner   // safely handle this, we can add a target hook.
5310bc8e86dSDaniel Dunbar   const llvm::Type *BP = llvm::PointerType::getUnqual(llvm::Type::Int8Ty);
5320bc8e86dSDaniel Dunbar   if (DestPtr->getType() != BP)
5330bc8e86dSDaniel Dunbar     DestPtr = Builder.CreateBitCast(DestPtr, BP, "tmp");
5340bc8e86dSDaniel Dunbar   if (SrcPtr->getType() != BP)
5350bc8e86dSDaniel Dunbar     SrcPtr = Builder.CreateBitCast(SrcPtr, BP, "tmp");
5360bc8e86dSDaniel Dunbar 
5370bc8e86dSDaniel Dunbar   // Get size and alignment info for this aggregate.
5380bc8e86dSDaniel Dunbar   std::pair<uint64_t, unsigned> TypeInfo = getContext().getTypeInfo(Ty);
5390bc8e86dSDaniel Dunbar 
5400bc8e86dSDaniel Dunbar   // FIXME: Handle variable sized types.
5410bc8e86dSDaniel Dunbar   const llvm::Type *IntPtr = llvm::IntegerType::get(LLVMPointerWidth);
5420bc8e86dSDaniel Dunbar 
5433ef668c2SChris Lattner   Builder.CreateCall4(CGM.getMemCpyFn(),
5440bc8e86dSDaniel Dunbar                       DestPtr, SrcPtr,
5450bc8e86dSDaniel Dunbar                       // TypeInfo.first describes size in bits.
5460bc8e86dSDaniel Dunbar                       llvm::ConstantInt::get(IntPtr, TypeInfo.first/8),
5470bc8e86dSDaniel Dunbar                       llvm::ConstantInt::get(llvm::Type::Int32Ty,
5480bc8e86dSDaniel Dunbar                                              TypeInfo.second/8));
5490bc8e86dSDaniel Dunbar }
550