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Chris Lattner2da04b32007-08-24 05:35:26 +00001//===--- CGExprScalar.cpp - Emit LLVM Code for Scalar Exprs ---------------===//
2//
3// The LLVM Compiler Infrastructure
4//
Chris Lattner5b12ab82007-12-29 19:59:25 +00005// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
Chris Lattner2da04b32007-08-24 05:35:26 +00007//
8//===----------------------------------------------------------------------===//
9//
10// This contains code to emit Expr nodes with scalar LLVM types as LLVM code.
11//
12//===----------------------------------------------------------------------===//
13
Devang Patel44b8bf02010-10-04 21:46:04 +000014#include "clang/Frontend/CodeGenOptions.h"
Chris Lattner2da04b32007-08-24 05:35:26 +000015#include "CodeGenFunction.h"
John McCall5d865c322010-08-31 07:33:07 +000016#include "CGCXXABI.h"
Fariborz Jahanian07ca7272009-10-10 20:07:56 +000017#include "CGObjCRuntime.h"
Chris Lattner2da04b32007-08-24 05:35:26 +000018#include "CodeGenModule.h"
Devang Patel44b8bf02010-10-04 21:46:04 +000019#include "CGDebugInfo.h"
Daniel Dunbarad319a72008-08-11 05:00:27 +000020#include "clang/AST/ASTContext.h"
Daniel Dunbar6630e102008-08-12 05:08:18 +000021#include "clang/AST/DeclObjC.h"
Anders Carlsson15b73de2009-07-18 19:43:29 +000022#include "clang/AST/RecordLayout.h"
Daniel Dunbarad319a72008-08-11 05:00:27 +000023#include "clang/AST/StmtVisitor.h"
Chris Lattnerff2367c2008-04-20 00:50:39 +000024#include "clang/Basic/TargetInfo.h"
Chris Lattner2da04b32007-08-24 05:35:26 +000025#include "llvm/Constants.h"
26#include "llvm/Function.h"
Anders Carlssond8499822007-10-29 05:01:08 +000027#include "llvm/GlobalVariable.h"
Anders Carlsson7e13ab82007-10-15 20:28:48 +000028#include "llvm/Intrinsics.h"
Mike Stump0c61b732009-04-01 20:28:16 +000029#include "llvm/Module.h"
Chris Lattner35710d182008-11-12 08:38:24 +000030#include "llvm/Support/CFG.h"
Mike Stumpcb2fbcb2009-02-21 20:00:35 +000031#include "llvm/Target/TargetData.h"
Chris Lattner1800c182008-01-03 07:05:49 +000032#include <cstdarg>
Ted Kremenekf182e812007-12-10 23:44:32 +000033
Chris Lattner2da04b32007-08-24 05:35:26 +000034using namespace clang;
35using namespace CodeGen;
36using llvm::Value;
37
38//===----------------------------------------------------------------------===//
39// Scalar Expression Emitter
40//===----------------------------------------------------------------------===//
41
42struct BinOpInfo {
43 Value *LHS;
44 Value *RHS;
Chris Lattner3d966d62007-08-24 21:00:35 +000045 QualType Ty; // Computation Type.
Chris Lattner0bf27622010-06-26 21:48:21 +000046 BinaryOperator::Opcode Opcode; // Opcode of BinOp to perform
47 const Expr *E; // Entire expr, for error unsupported. May not be binop.
Chris Lattner2da04b32007-08-24 05:35:26 +000048};
49
50namespace {
Benjamin Kramer337e3a52009-11-28 19:45:26 +000051class ScalarExprEmitter
Chris Lattner2da04b32007-08-24 05:35:26 +000052 : public StmtVisitor<ScalarExprEmitter, Value*> {
53 CodeGenFunction &CGF;
Daniel Dunbarcb463852008-11-01 01:53:16 +000054 CGBuilderTy &Builder;
Mike Stumpdf0fe272009-05-29 15:46:01 +000055 bool IgnoreResultAssign;
Owen Anderson170229f2009-07-14 23:10:40 +000056 llvm::LLVMContext &VMContext;
Chris Lattner2da04b32007-08-24 05:35:26 +000057public:
58
Mike Stumpdf0fe272009-05-29 15:46:01 +000059 ScalarExprEmitter(CodeGenFunction &cgf, bool ira=false)
Mike Stump4a3999f2009-09-09 13:00:44 +000060 : CGF(cgf), Builder(CGF.Builder), IgnoreResultAssign(ira),
Owen Anderson170229f2009-07-14 23:10:40 +000061 VMContext(cgf.getLLVMContext()) {
Chris Lattner2da04b32007-08-24 05:35:26 +000062 }
Mike Stump4a3999f2009-09-09 13:00:44 +000063
Chris Lattner2da04b32007-08-24 05:35:26 +000064 //===--------------------------------------------------------------------===//
65 // Utilities
66 //===--------------------------------------------------------------------===//
67
Mike Stumpdf0fe272009-05-29 15:46:01 +000068 bool TestAndClearIgnoreResultAssign() {
Chris Lattner2a7deb62009-07-08 01:08:03 +000069 bool I = IgnoreResultAssign;
70 IgnoreResultAssign = false;
71 return I;
72 }
Mike Stumpdf0fe272009-05-29 15:46:01 +000073
Chris Lattner2da04b32007-08-24 05:35:26 +000074 const llvm::Type *ConvertType(QualType T) { return CGF.ConvertType(T); }
75 LValue EmitLValue(const Expr *E) { return CGF.EmitLValue(E); }
Mike Stump3f6f9fe2009-12-16 02:57:00 +000076 LValue EmitCheckedLValue(const Expr *E) { return CGF.EmitCheckedLValue(E); }
Chris Lattner2da04b32007-08-24 05:35:26 +000077
78 Value *EmitLoadOfLValue(LValue LV, QualType T) {
Chris Lattner4647a212007-08-31 22:49:20 +000079 return CGF.EmitLoadOfLValue(LV, T).getScalarVal();
Chris Lattner2da04b32007-08-24 05:35:26 +000080 }
Mike Stump4a3999f2009-09-09 13:00:44 +000081
Chris Lattner2da04b32007-08-24 05:35:26 +000082 /// EmitLoadOfLValue - Given an expression with complex type that represents a
83 /// value l-value, this method emits the address of the l-value, then loads
84 /// and returns the result.
85 Value *EmitLoadOfLValue(const Expr *E) {
Mike Stump3f6f9fe2009-12-16 02:57:00 +000086 return EmitLoadOfLValue(EmitCheckedLValue(E), E->getType());
Chris Lattner2da04b32007-08-24 05:35:26 +000087 }
Mike Stump4a3999f2009-09-09 13:00:44 +000088
Chris Lattnere0044382007-08-26 16:42:57 +000089 /// EmitConversionToBool - Convert the specified expression value to a
Chris Lattner2e928882007-08-26 17:25:57 +000090 /// boolean (i1) truth value. This is equivalent to "Val != 0".
Chris Lattnere0044382007-08-26 16:42:57 +000091 Value *EmitConversionToBool(Value *Src, QualType DstTy);
Mike Stump4a3999f2009-09-09 13:00:44 +000092
Chris Lattner3474c202007-08-26 06:48:56 +000093 /// EmitScalarConversion - Emit a conversion from the specified type to the
94 /// specified destination type, both of which are LLVM scalar types.
Chris Lattner42e6b812007-08-26 16:34:22 +000095 Value *EmitScalarConversion(Value *Src, QualType SrcTy, QualType DstTy);
96
97 /// EmitComplexToScalarConversion - Emit a conversion from the specified
Mike Stump4a3999f2009-09-09 13:00:44 +000098 /// complex type to the specified destination type, where the destination type
99 /// is an LLVM scalar type.
Chris Lattner42e6b812007-08-26 16:34:22 +0000100 Value *EmitComplexToScalarConversion(CodeGenFunction::ComplexPairTy Src,
101 QualType SrcTy, QualType DstTy);
Mike Stumpab3afd82009-02-12 18:29:15 +0000102
Anders Carlsson5b944432010-05-22 17:45:10 +0000103 /// EmitNullValue - Emit a value that corresponds to null for the given type.
104 Value *EmitNullValue(QualType Ty);
105
Chris Lattner2da04b32007-08-24 05:35:26 +0000106 //===--------------------------------------------------------------------===//
107 // Visitor Methods
108 //===--------------------------------------------------------------------===//
109
Fariborz Jahanian5bbd1b02010-09-17 15:51:28 +0000110 Value *Visit(Expr *E) {
111 llvm::DenseMap<const Expr *, llvm::Value *>::iterator I =
112 CGF.ConditionalSaveExprs.find(E);
113 if (I != CGF.ConditionalSaveExprs.end())
114 return I->second;
115
116 return StmtVisitor<ScalarExprEmitter, Value*>::Visit(E);
117 }
118
Chris Lattner2da04b32007-08-24 05:35:26 +0000119 Value *VisitStmt(Stmt *S) {
Ted Kremenekd4e5fba2007-12-11 21:27:55 +0000120 S->dump(CGF.getContext().getSourceManager());
Chris Lattner2da04b32007-08-24 05:35:26 +0000121 assert(0 && "Stmt can't have complex result type!");
122 return 0;
123 }
124 Value *VisitExpr(Expr *S);
Fariborz Jahanian52987dc2009-10-21 23:45:42 +0000125
Fariborz Jahanian5bbd1b02010-09-17 15:51:28 +0000126 Value *VisitParenExpr(ParenExpr *PE) {
127 return Visit(PE->getSubExpr());
128 }
Chris Lattner2da04b32007-08-24 05:35:26 +0000129
130 // Leaves.
131 Value *VisitIntegerLiteral(const IntegerLiteral *E) {
Owen Andersonb7a2fe62009-07-24 23:12:58 +0000132 return llvm::ConstantInt::get(VMContext, E->getValue());
Chris Lattner2da04b32007-08-24 05:35:26 +0000133 }
134 Value *VisitFloatingLiteral(const FloatingLiteral *E) {
Owen Andersone05f2ed2009-07-27 21:00:51 +0000135 return llvm::ConstantFP::get(VMContext, E->getValue());
Chris Lattner2da04b32007-08-24 05:35:26 +0000136 }
137 Value *VisitCharacterLiteral(const CharacterLiteral *E) {
Owen Andersonb7a2fe62009-07-24 23:12:58 +0000138 return llvm::ConstantInt::get(ConvertType(E->getType()), E->getValue());
Chris Lattner2da04b32007-08-24 05:35:26 +0000139 }
Nate Begeman4c18c232007-11-15 05:40:03 +0000140 Value *VisitCXXBoolLiteralExpr(const CXXBoolLiteralExpr *E) {
Owen Andersonb7a2fe62009-07-24 23:12:58 +0000141 return llvm::ConstantInt::get(ConvertType(E->getType()), E->getValue());
Nate Begeman4c18c232007-11-15 05:40:03 +0000142 }
Douglas Gregor747eb782010-07-08 06:14:04 +0000143 Value *VisitCXXScalarValueInitExpr(const CXXScalarValueInitExpr *E) {
Anders Carlsson5b944432010-05-22 17:45:10 +0000144 return EmitNullValue(E->getType());
Argyrios Kyrtzidisce4528f2008-08-23 19:35:47 +0000145 }
Anders Carlsson39def3a2008-12-21 22:39:40 +0000146 Value *VisitGNUNullExpr(const GNUNullExpr *E) {
Anders Carlsson5b944432010-05-22 17:45:10 +0000147 return EmitNullValue(E->getType());
Anders Carlsson39def3a2008-12-21 22:39:40 +0000148 }
Chris Lattner2da04b32007-08-24 05:35:26 +0000149 Value *VisitTypesCompatibleExpr(const TypesCompatibleExpr *E) {
Owen Andersonb7a2fe62009-07-24 23:12:58 +0000150 return llvm::ConstantInt::get(ConvertType(E->getType()),
Steve Naroff32e44c02007-10-15 20:41:53 +0000151 CGF.getContext().typesAreCompatible(
152 E->getArgType1(), E->getArgType2()));
Chris Lattner2da04b32007-08-24 05:35:26 +0000153 }
Eli Friedmand7c72322010-08-05 09:58:49 +0000154 Value *VisitOffsetOfExpr(OffsetOfExpr *E);
Sebastian Redl6f282892008-11-11 17:56:53 +0000155 Value *VisitSizeOfAlignOfExpr(const SizeOfAlignOfExpr *E);
Daniel Dunbar88402ce2008-08-04 16:51:22 +0000156 Value *VisitAddrLabelExpr(const AddrLabelExpr *E) {
Chris Lattner6c4d2552009-10-28 23:59:40 +0000157 llvm::Value *V = CGF.GetAddrOfLabel(E->getLabel());
158 return Builder.CreateBitCast(V, ConvertType(E->getType()));
Daniel Dunbar88402ce2008-08-04 16:51:22 +0000159 }
Mike Stump4a3999f2009-09-09 13:00:44 +0000160
Chris Lattner2da04b32007-08-24 05:35:26 +0000161 // l-values.
162 Value *VisitDeclRefExpr(DeclRefExpr *E) {
Eli Friedmancb422f12009-11-26 03:22:21 +0000163 Expr::EvalResult Result;
164 if (E->Evaluate(Result, CGF.getContext()) && Result.Val.isInt()) {
165 assert(!Result.HasSideEffects && "Constant declref with side-effect?!");
Devang Pateldc866e12010-08-10 17:53:33 +0000166 llvm::ConstantInt *CI
167 = llvm::ConstantInt::get(VMContext, Result.Val.getInt());
168 CGF.EmitDeclRefExprDbgValue(E, CI);
169 return CI;
Eli Friedmancb422f12009-11-26 03:22:21 +0000170 }
Chris Lattner2da04b32007-08-24 05:35:26 +0000171 return EmitLoadOfLValue(E);
172 }
Mike Stump4a3999f2009-09-09 13:00:44 +0000173 Value *VisitObjCSelectorExpr(ObjCSelectorExpr *E) {
174 return CGF.EmitObjCSelectorExpr(E);
Daniel Dunbar55310df2008-08-27 06:57:25 +0000175 }
Mike Stump4a3999f2009-09-09 13:00:44 +0000176 Value *VisitObjCProtocolExpr(ObjCProtocolExpr *E) {
177 return CGF.EmitObjCProtocolExpr(E);
Daniel Dunbar55310df2008-08-27 06:57:25 +0000178 }
Mike Stump4a3999f2009-09-09 13:00:44 +0000179 Value *VisitObjCIvarRefExpr(ObjCIvarRefExpr *E) {
Daniel Dunbar55310df2008-08-27 06:57:25 +0000180 return EmitLoadOfLValue(E);
181 }
Daniel Dunbarc8317a42008-08-23 10:51:21 +0000182 Value *VisitObjCPropertyRefExpr(ObjCPropertyRefExpr *E) {
Daniel Dunbar9e22c0d2008-08-29 08:11:39 +0000183 return EmitLoadOfLValue(E);
Daniel Dunbar55310df2008-08-27 06:57:25 +0000184 }
Fariborz Jahanian9a846652009-08-20 17:02:02 +0000185 Value *VisitObjCImplicitSetterGetterRefExpr(
186 ObjCImplicitSetterGetterRefExpr *E) {
Fariborz Jahanian9ac53512008-11-22 22:30:21 +0000187 return EmitLoadOfLValue(E);
188 }
Daniel Dunbar55310df2008-08-27 06:57:25 +0000189 Value *VisitObjCMessageExpr(ObjCMessageExpr *E) {
190 return CGF.EmitObjCMessageExpr(E).getScalarVal();
Daniel Dunbarc8317a42008-08-23 10:51:21 +0000191 }
192
Fariborz Jahaniana5fee262009-12-09 19:05:56 +0000193 Value *VisitObjCIsaExpr(ObjCIsaExpr *E) {
Fariborz Jahanian531c16f2009-12-09 23:35:29 +0000194 LValue LV = CGF.EmitObjCIsaExpr(E);
195 Value *V = CGF.EmitLoadOfLValue(LV, E->getType()).getScalarVal();
Fariborz Jahaniana5fee262009-12-09 19:05:56 +0000196 return V;
197 }
198
Chris Lattner2da04b32007-08-24 05:35:26 +0000199 Value *VisitArraySubscriptExpr(ArraySubscriptExpr *E);
Eli Friedmana1b4ed82008-05-14 19:38:39 +0000200 Value *VisitShuffleVectorExpr(ShuffleVectorExpr *E);
Eli Friedmancb422f12009-11-26 03:22:21 +0000201 Value *VisitMemberExpr(MemberExpr *E);
Nate Begemance4d7fc2008-04-18 23:10:10 +0000202 Value *VisitExtVectorElementExpr(Expr *E) { return EmitLoadOfLValue(E); }
Chris Lattner084bc322008-10-26 23:53:12 +0000203 Value *VisitCompoundLiteralExpr(CompoundLiteralExpr *E) {
204 return EmitLoadOfLValue(E);
205 }
Devang Patel43fc86d2007-10-24 17:18:43 +0000206
Nate Begeman19351632009-10-18 20:10:40 +0000207 Value *VisitInitListExpr(InitListExpr *E);
Mike Stump4a3999f2009-09-09 13:00:44 +0000208
Douglas Gregor0202cb42009-01-29 17:44:32 +0000209 Value *VisitImplicitValueInitExpr(const ImplicitValueInitExpr *E) {
Anders Carlsson65c6d542010-05-14 15:05:19 +0000210 return CGF.CGM.EmitNullConstant(E->getType());
Douglas Gregor0202cb42009-01-29 17:44:32 +0000211 }
Eli Friedmane96f1d32009-11-27 04:41:50 +0000212 Value *VisitCastExpr(CastExpr *E) {
Eli Friedmanbc633be2009-04-20 03:54:15 +0000213 // Make sure to evaluate VLA bounds now so that we have them for later.
Fariborz Jahanian8fb87ae2010-09-24 17:30:16 +0000214 if (E->getType()->isVariablyModifiedType())
215 CGF.EmitVLASize(E->getType());
Eli Friedmanbc633be2009-04-20 03:54:15 +0000216
Anders Carlsson8c978b42009-09-22 22:00:46 +0000217 return EmitCastExpr(E);
Chris Lattner2da04b32007-08-24 05:35:26 +0000218 }
Eli Friedmane96f1d32009-11-27 04:41:50 +0000219 Value *EmitCastExpr(CastExpr *E);
Chris Lattner2da04b32007-08-24 05:35:26 +0000220
221 Value *VisitCallExpr(const CallExpr *E) {
Anders Carlssond8b7ae22009-05-27 03:37:57 +0000222 if (E->getCallReturnType()->isReferenceType())
223 return EmitLoadOfLValue(E);
Mike Stump4a3999f2009-09-09 13:00:44 +0000224
Chris Lattner4647a212007-08-31 22:49:20 +0000225 return CGF.EmitCallExpr(E).getScalarVal();
Chris Lattner2da04b32007-08-24 05:35:26 +0000226 }
Daniel Dunbar97db84c2008-08-23 03:46:30 +0000227
Chris Lattner04a913b2007-08-31 22:09:40 +0000228 Value *VisitStmtExpr(const StmtExpr *E);
Mike Stumpcb2fbcb2009-02-21 20:00:35 +0000229
Mike Stump1db7d042009-02-28 09:07:16 +0000230 Value *VisitBlockDeclRefExpr(const BlockDeclRefExpr *E);
Mike Stump4a3999f2009-09-09 13:00:44 +0000231
Chris Lattner2da04b32007-08-24 05:35:26 +0000232 // Unary Operators.
Chris Lattner2da04b32007-08-24 05:35:26 +0000233 Value *VisitUnaryPostDec(const UnaryOperator *E) {
Chris Lattner05dc78c2010-06-26 22:09:34 +0000234 LValue LV = EmitLValue(E->getSubExpr());
235 return EmitScalarPrePostIncDec(E, LV, false, false);
Chris Lattner2da04b32007-08-24 05:35:26 +0000236 }
237 Value *VisitUnaryPostInc(const UnaryOperator *E) {
Chris Lattner05dc78c2010-06-26 22:09:34 +0000238 LValue LV = EmitLValue(E->getSubExpr());
239 return EmitScalarPrePostIncDec(E, LV, true, false);
Chris Lattner2da04b32007-08-24 05:35:26 +0000240 }
241 Value *VisitUnaryPreDec(const UnaryOperator *E) {
Chris Lattner05dc78c2010-06-26 22:09:34 +0000242 LValue LV = EmitLValue(E->getSubExpr());
243 return EmitScalarPrePostIncDec(E, LV, false, true);
Chris Lattner2da04b32007-08-24 05:35:26 +0000244 }
245 Value *VisitUnaryPreInc(const UnaryOperator *E) {
Chris Lattner05dc78c2010-06-26 22:09:34 +0000246 LValue LV = EmitLValue(E->getSubExpr());
247 return EmitScalarPrePostIncDec(E, LV, true, true);
Chris Lattner2da04b32007-08-24 05:35:26 +0000248 }
Chris Lattner05dc78c2010-06-26 22:09:34 +0000249
250 llvm::Value *EmitScalarPrePostIncDec(const UnaryOperator *E, LValue LV,
251 bool isInc, bool isPre);
252
253
Chris Lattner2da04b32007-08-24 05:35:26 +0000254 Value *VisitUnaryAddrOf(const UnaryOperator *E) {
John McCalla1dee5302010-08-22 10:59:02 +0000255 // If the sub-expression is an instance member reference,
256 // EmitDeclRefLValue will magically emit it with the appropriate
257 // value as the "address".
Chris Lattner2da04b32007-08-24 05:35:26 +0000258 return EmitLValue(E->getSubExpr()).getAddress();
259 }
260 Value *VisitUnaryDeref(const Expr *E) { return EmitLoadOfLValue(E); }
261 Value *VisitUnaryPlus(const UnaryOperator *E) {
Mike Stumpdf0fe272009-05-29 15:46:01 +0000262 // This differs from gcc, though, most likely due to a bug in gcc.
263 TestAndClearIgnoreResultAssign();
Chris Lattner2da04b32007-08-24 05:35:26 +0000264 return Visit(E->getSubExpr());
265 }
266 Value *VisitUnaryMinus (const UnaryOperator *E);
267 Value *VisitUnaryNot (const UnaryOperator *E);
268 Value *VisitUnaryLNot (const UnaryOperator *E);
Chris Lattner9f0ad962007-08-24 21:20:17 +0000269 Value *VisitUnaryReal (const UnaryOperator *E);
270 Value *VisitUnaryImag (const UnaryOperator *E);
Chris Lattner2da04b32007-08-24 05:35:26 +0000271 Value *VisitUnaryExtension(const UnaryOperator *E) {
272 return Visit(E->getSubExpr());
273 }
Douglas Gregor882211c2010-04-28 22:16:22 +0000274
Anders Carlssona5d077d2009-04-14 16:58:56 +0000275 // C++
Chris Lattneraa9c7ae2008-04-08 04:40:51 +0000276 Value *VisitCXXDefaultArgExpr(CXXDefaultArgExpr *DAE) {
277 return Visit(DAE->getExpr());
278 }
Anders Carlssona5d077d2009-04-14 16:58:56 +0000279 Value *VisitCXXThisExpr(CXXThisExpr *TE) {
280 return CGF.LoadCXXThis();
Mike Stump4a3999f2009-09-09 13:00:44 +0000281 }
282
Anders Carlssonc82b86d2009-05-19 04:48:36 +0000283 Value *VisitCXXExprWithTemporaries(CXXExprWithTemporaries *E) {
Anders Carlsson2262b302009-05-31 00:09:15 +0000284 return CGF.EmitCXXExprWithTemporaries(E).getScalarVal();
Anders Carlssonc82b86d2009-05-19 04:48:36 +0000285 }
Anders Carlsson4a7b49b2009-05-31 01:40:14 +0000286 Value *VisitCXXNewExpr(const CXXNewExpr *E) {
287 return CGF.EmitCXXNewExpr(E);
288 }
Anders Carlsson81f0df92009-08-16 21:13:42 +0000289 Value *VisitCXXDeleteExpr(const CXXDeleteExpr *E) {
290 CGF.EmitCXXDeleteExpr(E);
291 return 0;
292 }
Eli Friedmand70bbfd2009-12-10 22:40:32 +0000293 Value *VisitUnaryTypeTraitExpr(const UnaryTypeTraitExpr *E) {
Sebastian Redl8eb06f12010-09-13 20:56:31 +0000294 return llvm::ConstantInt::get(Builder.getInt1Ty(), E->getValue());
Eli Friedmand70bbfd2009-12-10 22:40:32 +0000295 }
Mike Stump4a3999f2009-09-09 13:00:44 +0000296
Douglas Gregorad8a3362009-09-04 17:36:40 +0000297 Value *VisitCXXPseudoDestructorExpr(const CXXPseudoDestructorExpr *E) {
298 // C++ [expr.pseudo]p1:
Mike Stump4a3999f2009-09-09 13:00:44 +0000299 // The result shall only be used as the operand for the function call
Douglas Gregorad8a3362009-09-04 17:36:40 +0000300 // operator (), and the result of such a call has type void. The only
301 // effect is the evaluation of the postfix-expression before the dot or
302 // arrow.
303 CGF.EmitScalarExpr(E->getBase());
304 return 0;
305 }
Mike Stump4a3999f2009-09-09 13:00:44 +0000306
Anders Carlsson04c3bf42009-09-15 04:39:46 +0000307 Value *VisitCXXNullPtrLiteralExpr(const CXXNullPtrLiteralExpr *E) {
Anders Carlsson5b944432010-05-22 17:45:10 +0000308 return EmitNullValue(E->getType());
Anders Carlsson04c3bf42009-09-15 04:39:46 +0000309 }
Anders Carlsson4b08db72009-10-30 01:42:31 +0000310
311 Value *VisitCXXThrowExpr(const CXXThrowExpr *E) {
312 CGF.EmitCXXThrowExpr(E);
313 return 0;
314 }
315
Sebastian Redlb67655f2010-09-10 21:04:00 +0000316 Value *VisitCXXNoexceptExpr(const CXXNoexceptExpr *E) {
317 return llvm::ConstantInt::get(Builder.getInt1Ty(), E->getValue());
318 }
319
Chris Lattner2da04b32007-08-24 05:35:26 +0000320 // Binary Operators.
Chris Lattner2da04b32007-08-24 05:35:26 +0000321 Value *EmitMul(const BinOpInfo &Ops) {
Douglas Gregor5cc2c8b2010-07-23 15:58:24 +0000322 if (Ops.Ty->hasSignedIntegerRepresentation()) {
Chris Lattner51924e512010-06-26 21:25:03 +0000323 switch (CGF.getContext().getLangOptions().getSignedOverflowBehavior()) {
324 case LangOptions::SOB_Undefined:
325 return Builder.CreateNSWMul(Ops.LHS, Ops.RHS, "mul");
326 case LangOptions::SOB_Defined:
327 return Builder.CreateMul(Ops.LHS, Ops.RHS, "mul");
328 case LangOptions::SOB_Trapping:
329 return EmitOverflowCheckedBinOp(Ops);
330 }
331 }
332
Duncan Sands998f9d92010-02-15 16:14:01 +0000333 if (Ops.LHS->getType()->isFPOrFPVectorTy())
Chris Lattner94dfae22009-06-17 06:36:24 +0000334 return Builder.CreateFMul(Ops.LHS, Ops.RHS, "mul");
Chris Lattner2da04b32007-08-24 05:35:26 +0000335 return Builder.CreateMul(Ops.LHS, Ops.RHS, "mul");
336 }
Chris Lattner8ee6a412010-09-11 21:47:09 +0000337 bool isTrapvOverflowBehavior() {
338 return CGF.getContext().getLangOptions().getSignedOverflowBehavior()
339 == LangOptions::SOB_Trapping;
340 }
Mike Stump0c61b732009-04-01 20:28:16 +0000341 /// Create a binary op that checks for overflow.
342 /// Currently only supports +, - and *.
343 Value *EmitOverflowCheckedBinOp(const BinOpInfo &Ops);
Chris Lattner8ee6a412010-09-11 21:47:09 +0000344 // Emit the overflow BB when -ftrapv option is activated.
345 void EmitOverflowBB(llvm::BasicBlock *overflowBB) {
346 Builder.SetInsertPoint(overflowBB);
347 llvm::Function *Trap = CGF.CGM.getIntrinsic(llvm::Intrinsic::trap);
348 Builder.CreateCall(Trap);
349 Builder.CreateUnreachable();
350 }
351 // Check for undefined division and modulus behaviors.
352 void EmitUndefinedBehaviorIntegerDivAndRemCheck(const BinOpInfo &Ops,
353 llvm::Value *Zero,bool isDiv);
Chris Lattner2da04b32007-08-24 05:35:26 +0000354 Value *EmitDiv(const BinOpInfo &Ops);
355 Value *EmitRem(const BinOpInfo &Ops);
356 Value *EmitAdd(const BinOpInfo &Ops);
357 Value *EmitSub(const BinOpInfo &Ops);
358 Value *EmitShl(const BinOpInfo &Ops);
359 Value *EmitShr(const BinOpInfo &Ops);
360 Value *EmitAnd(const BinOpInfo &Ops) {
361 return Builder.CreateAnd(Ops.LHS, Ops.RHS, "and");
362 }
363 Value *EmitXor(const BinOpInfo &Ops) {
364 return Builder.CreateXor(Ops.LHS, Ops.RHS, "xor");
365 }
366 Value *EmitOr (const BinOpInfo &Ops) {
367 return Builder.CreateOr(Ops.LHS, Ops.RHS, "or");
368 }
369
Chris Lattner3d966d62007-08-24 21:00:35 +0000370 BinOpInfo EmitBinOps(const BinaryOperator *E);
Douglas Gregor914af212010-04-23 04:16:32 +0000371 LValue EmitCompoundAssignLValue(const CompoundAssignOperator *E,
372 Value *(ScalarExprEmitter::*F)(const BinOpInfo &),
Daniel Dunbarc85ea8e2010-06-29 22:00:45 +0000373 Value *&Result);
Douglas Gregor914af212010-04-23 04:16:32 +0000374
Chris Lattnerb6334692007-08-26 21:41:21 +0000375 Value *EmitCompoundAssign(const CompoundAssignOperator *E,
Chris Lattner3d966d62007-08-24 21:00:35 +0000376 Value *(ScalarExprEmitter::*F)(const BinOpInfo &));
377
378 // Binary operators and binary compound assignment operators.
379#define HANDLEBINOP(OP) \
Chris Lattnerb6334692007-08-26 21:41:21 +0000380 Value *VisitBin ## OP(const BinaryOperator *E) { \
381 return Emit ## OP(EmitBinOps(E)); \
382 } \
383 Value *VisitBin ## OP ## Assign(const CompoundAssignOperator *E) { \
384 return EmitCompoundAssign(E, &ScalarExprEmitter::Emit ## OP); \
Chris Lattner3d966d62007-08-24 21:00:35 +0000385 }
Daniel Dunbare017ecc2009-12-19 17:50:07 +0000386 HANDLEBINOP(Mul)
387 HANDLEBINOP(Div)
388 HANDLEBINOP(Rem)
389 HANDLEBINOP(Add)
390 HANDLEBINOP(Sub)
391 HANDLEBINOP(Shl)
392 HANDLEBINOP(Shr)
393 HANDLEBINOP(And)
394 HANDLEBINOP(Xor)
395 HANDLEBINOP(Or)
Chris Lattner3d966d62007-08-24 21:00:35 +0000396#undef HANDLEBINOP
Daniel Dunbarbfb1cd72008-08-06 02:00:38 +0000397
Chris Lattner2da04b32007-08-24 05:35:26 +0000398 // Comparisons.
399 Value *EmitCompare(const BinaryOperator *E, unsigned UICmpOpc,
400 unsigned SICmpOpc, unsigned FCmpOpc);
401#define VISITCOMP(CODE, UI, SI, FP) \
402 Value *VisitBin##CODE(const BinaryOperator *E) { \
403 return EmitCompare(E, llvm::ICmpInst::UI, llvm::ICmpInst::SI, \
404 llvm::FCmpInst::FP); }
Daniel Dunbare017ecc2009-12-19 17:50:07 +0000405 VISITCOMP(LT, ICMP_ULT, ICMP_SLT, FCMP_OLT)
406 VISITCOMP(GT, ICMP_UGT, ICMP_SGT, FCMP_OGT)
407 VISITCOMP(LE, ICMP_ULE, ICMP_SLE, FCMP_OLE)
408 VISITCOMP(GE, ICMP_UGE, ICMP_SGE, FCMP_OGE)
409 VISITCOMP(EQ, ICMP_EQ , ICMP_EQ , FCMP_OEQ)
410 VISITCOMP(NE, ICMP_NE , ICMP_NE , FCMP_UNE)
Chris Lattner2da04b32007-08-24 05:35:26 +0000411#undef VISITCOMP
Mike Stump4a3999f2009-09-09 13:00:44 +0000412
Chris Lattner2da04b32007-08-24 05:35:26 +0000413 Value *VisitBinAssign (const BinaryOperator *E);
414
415 Value *VisitBinLAnd (const BinaryOperator *E);
416 Value *VisitBinLOr (const BinaryOperator *E);
Chris Lattner2da04b32007-08-24 05:35:26 +0000417 Value *VisitBinComma (const BinaryOperator *E);
418
Eli Friedmanacfb1df2009-11-18 09:41:26 +0000419 Value *VisitBinPtrMemD(const Expr *E) { return EmitLoadOfLValue(E); }
420 Value *VisitBinPtrMemI(const Expr *E) { return EmitLoadOfLValue(E); }
421
Chris Lattner2da04b32007-08-24 05:35:26 +0000422 // Other Operators.
Mike Stumpab3afd82009-02-12 18:29:15 +0000423 Value *VisitBlockExpr(const BlockExpr *BE);
Chris Lattner2da04b32007-08-24 05:35:26 +0000424 Value *VisitConditionalOperator(const ConditionalOperator *CO);
425 Value *VisitChooseExpr(ChooseExpr *CE);
Anders Carlsson7e13ab82007-10-15 20:28:48 +0000426 Value *VisitVAArgExpr(VAArgExpr *VE);
Chris Lattner2da04b32007-08-24 05:35:26 +0000427 Value *VisitObjCStringLiteral(const ObjCStringLiteral *E) {
428 return CGF.EmitObjCStringLiteral(E);
429 }
430};
431} // end anonymous namespace.
432
433//===----------------------------------------------------------------------===//
434// Utilities
435//===----------------------------------------------------------------------===//
436
Chris Lattnere0044382007-08-26 16:42:57 +0000437/// EmitConversionToBool - Convert the specified expression value to a
Chris Lattner2e928882007-08-26 17:25:57 +0000438/// boolean (i1) truth value. This is equivalent to "Val != 0".
Chris Lattnere0044382007-08-26 16:42:57 +0000439Value *ScalarExprEmitter::EmitConversionToBool(Value *Src, QualType SrcType) {
John McCallb692a092009-10-22 20:10:53 +0000440 assert(SrcType.isCanonical() && "EmitScalarConversion strips typedefs");
Mike Stump4a3999f2009-09-09 13:00:44 +0000441
Chris Lattnere0044382007-08-26 16:42:57 +0000442 if (SrcType->isRealFloatingType()) {
443 // Compare against 0.0 for fp scalars.
Owen Anderson0b75f232009-07-31 20:28:54 +0000444 llvm::Value *Zero = llvm::Constant::getNullValue(Src->getType());
Chris Lattnere0044382007-08-26 16:42:57 +0000445 return Builder.CreateFCmpUNE(Src, Zero, "tobool");
446 }
Mike Stump4a3999f2009-09-09 13:00:44 +0000447
John McCall7a9aac22010-08-23 01:21:21 +0000448 if (const MemberPointerType *MPT = dyn_cast<MemberPointerType>(SrcType))
449 return CGF.CGM.getCXXABI().EmitMemberPointerIsNotNull(CGF, Src, MPT);
Mike Stump4a3999f2009-09-09 13:00:44 +0000450
Daniel Dunbaref957f32008-08-25 10:38:11 +0000451 assert((SrcType->isIntegerType() || isa<llvm::PointerType>(Src->getType())) &&
Chris Lattnere0044382007-08-26 16:42:57 +0000452 "Unknown scalar type to convert");
Mike Stump4a3999f2009-09-09 13:00:44 +0000453
Chris Lattnere0044382007-08-26 16:42:57 +0000454 // Because of the type rules of C, we often end up computing a logical value,
455 // then zero extending it to int, then wanting it as a logical value again.
456 // Optimize this common case.
457 if (llvm::ZExtInst *ZI = dyn_cast<llvm::ZExtInst>(Src)) {
Owen Anderson41a75022009-08-13 21:57:51 +0000458 if (ZI->getOperand(0)->getType() ==
459 llvm::Type::getInt1Ty(CGF.getLLVMContext())) {
Chris Lattnere0044382007-08-26 16:42:57 +0000460 Value *Result = ZI->getOperand(0);
Eli Friedman7031d732008-01-29 18:13:51 +0000461 // If there aren't any more uses, zap the instruction to save space.
462 // Note that there can be more uses, for example if this
463 // is the result of an assignment.
464 if (ZI->use_empty())
465 ZI->eraseFromParent();
Chris Lattnere0044382007-08-26 16:42:57 +0000466 return Result;
467 }
468 }
Mike Stump4a3999f2009-09-09 13:00:44 +0000469
Chris Lattnere0044382007-08-26 16:42:57 +0000470 // Compare against an integer or pointer null.
Owen Anderson0b75f232009-07-31 20:28:54 +0000471 llvm::Value *Zero = llvm::Constant::getNullValue(Src->getType());
Chris Lattnere0044382007-08-26 16:42:57 +0000472 return Builder.CreateICmpNE(Src, Zero, "tobool");
473}
474
Chris Lattner3474c202007-08-26 06:48:56 +0000475/// EmitScalarConversion - Emit a conversion from the specified type to the
476/// specified destination type, both of which are LLVM scalar types.
Chris Lattner42e6b812007-08-26 16:34:22 +0000477Value *ScalarExprEmitter::EmitScalarConversion(Value *Src, QualType SrcType,
478 QualType DstType) {
Chris Lattner0f398c42008-07-26 22:37:01 +0000479 SrcType = CGF.getContext().getCanonicalType(SrcType);
480 DstType = CGF.getContext().getCanonicalType(DstType);
Chris Lattner3474c202007-08-26 06:48:56 +0000481 if (SrcType == DstType) return Src;
Mike Stump4a3999f2009-09-09 13:00:44 +0000482
Chris Lattner08c611e2007-08-26 07:21:11 +0000483 if (DstType->isVoidType()) return 0;
Mike Stump4a3999f2009-09-09 13:00:44 +0000484
Chris Lattner3474c202007-08-26 06:48:56 +0000485 // Handle conversions to bool first, they are special: comparisons against 0.
Chris Lattnerc141c1b2007-08-26 16:52:28 +0000486 if (DstType->isBooleanType())
487 return EmitConversionToBool(Src, SrcType);
Mike Stump4a3999f2009-09-09 13:00:44 +0000488
Chris Lattner3474c202007-08-26 06:48:56 +0000489 const llvm::Type *DstTy = ConvertType(DstType);
490
491 // Ignore conversions like int -> uint.
492 if (Src->getType() == DstTy)
493 return Src;
494
Mike Stump4a3999f2009-09-09 13:00:44 +0000495 // Handle pointer conversions next: pointers can only be converted to/from
496 // other pointers and integers. Check for pointer types in terms of LLVM, as
497 // some native types (like Obj-C id) may map to a pointer type.
Daniel Dunbar427f8732008-08-25 09:51:32 +0000498 if (isa<llvm::PointerType>(DstTy)) {
Chris Lattner3474c202007-08-26 06:48:56 +0000499 // The source value may be an integer, or a pointer.
Anders Carlsson12f5a252009-09-12 04:57:16 +0000500 if (isa<llvm::PointerType>(Src->getType()))
Chris Lattner3474c202007-08-26 06:48:56 +0000501 return Builder.CreateBitCast(Src, DstTy, "conv");
Anders Carlsson12f5a252009-09-12 04:57:16 +0000502
Chris Lattner3474c202007-08-26 06:48:56 +0000503 assert(SrcType->isIntegerType() && "Not ptr->ptr or int->ptr conversion?");
Eli Friedman42d2a3a2009-03-04 04:02:35 +0000504 // First, convert to the correct width so that we control the kind of
505 // extension.
Chris Lattner5e016ae2010-06-27 07:15:29 +0000506 const llvm::Type *MiddleTy = CGF.IntPtrTy;
Eli Friedman42d2a3a2009-03-04 04:02:35 +0000507 bool InputSigned = SrcType->isSignedIntegerType();
508 llvm::Value* IntResult =
509 Builder.CreateIntCast(Src, MiddleTy, InputSigned, "conv");
510 // Then, cast to pointer.
511 return Builder.CreateIntToPtr(IntResult, DstTy, "conv");
Chris Lattner3474c202007-08-26 06:48:56 +0000512 }
Mike Stump4a3999f2009-09-09 13:00:44 +0000513
Daniel Dunbar427f8732008-08-25 09:51:32 +0000514 if (isa<llvm::PointerType>(Src->getType())) {
Chris Lattner3474c202007-08-26 06:48:56 +0000515 // Must be an ptr to int cast.
516 assert(isa<llvm::IntegerType>(DstTy) && "not ptr->int?");
Anders Carlssone89b84a2007-10-31 23:18:02 +0000517 return Builder.CreatePtrToInt(Src, DstTy, "conv");
Chris Lattner3474c202007-08-26 06:48:56 +0000518 }
Mike Stump4a3999f2009-09-09 13:00:44 +0000519
Nate Begemance4d7fc2008-04-18 23:10:10 +0000520 // A scalar can be splatted to an extended vector of the same element type
Nate Begeman5ec4b312009-08-10 23:49:36 +0000521 if (DstType->isExtVectorType() && !SrcType->isVectorType()) {
Nate Begemanb699c9b2009-01-18 06:42:49 +0000522 // Cast the scalar to element type
John McCall9dd450b2009-09-21 23:43:11 +0000523 QualType EltTy = DstType->getAs<ExtVectorType>()->getElementType();
Nate Begemanb699c9b2009-01-18 06:42:49 +0000524 llvm::Value *Elt = EmitScalarConversion(Src, SrcType, EltTy);
525
526 // Insert the element in element zero of an undef vector
Owen Anderson7ec07a52009-07-30 23:11:26 +0000527 llvm::Value *UnV = llvm::UndefValue::get(DstTy);
Chris Lattner5e016ae2010-06-27 07:15:29 +0000528 llvm::Value *Idx = llvm::ConstantInt::get(CGF.Int32Ty, 0);
Nate Begemanb699c9b2009-01-18 06:42:49 +0000529 UnV = Builder.CreateInsertElement(UnV, Elt, Idx, "tmp");
530
531 // Splat the element across to all elements
532 llvm::SmallVector<llvm::Constant*, 16> Args;
533 unsigned NumElements = cast<llvm::VectorType>(DstTy)->getNumElements();
534 for (unsigned i = 0; i < NumElements; i++)
Chris Lattner5e016ae2010-06-27 07:15:29 +0000535 Args.push_back(llvm::ConstantInt::get(CGF.Int32Ty, 0));
Mike Stump4a3999f2009-09-09 13:00:44 +0000536
Owen Anderson3cc120a2009-07-28 21:22:35 +0000537 llvm::Constant *Mask = llvm::ConstantVector::get(&Args[0], NumElements);
Nate Begemanb699c9b2009-01-18 06:42:49 +0000538 llvm::Value *Yay = Builder.CreateShuffleVector(UnV, UnV, Mask, "splat");
539 return Yay;
540 }
Nate Begeman330aaa72007-12-30 02:59:45 +0000541
Chris Lattner6cba8e92008-02-02 04:51:41 +0000542 // Allow bitcast from vector to integer/fp of the same size.
Anders Carlssona297e7a2007-12-05 07:36:10 +0000543 if (isa<llvm::VectorType>(Src->getType()) ||
Chris Lattner6cba8e92008-02-02 04:51:41 +0000544 isa<llvm::VectorType>(DstTy))
Anders Carlssona297e7a2007-12-05 07:36:10 +0000545 return Builder.CreateBitCast(Src, DstTy, "conv");
Mike Stump4a3999f2009-09-09 13:00:44 +0000546
Chris Lattner3474c202007-08-26 06:48:56 +0000547 // Finally, we have the arithmetic types: real int/float.
548 if (isa<llvm::IntegerType>(Src->getType())) {
549 bool InputSigned = SrcType->isSignedIntegerType();
Anders Carlssonc9d41e72007-12-26 18:20:19 +0000550 if (isa<llvm::IntegerType>(DstTy))
551 return Builder.CreateIntCast(Src, DstTy, InputSigned, "conv");
552 else if (InputSigned)
553 return Builder.CreateSIToFP(Src, DstTy, "conv");
554 else
555 return Builder.CreateUIToFP(Src, DstTy, "conv");
Chris Lattner3474c202007-08-26 06:48:56 +0000556 }
Mike Stump4a3999f2009-09-09 13:00:44 +0000557
Duncan Sands998f9d92010-02-15 16:14:01 +0000558 assert(Src->getType()->isFloatingPointTy() && "Unknown real conversion");
Chris Lattner3474c202007-08-26 06:48:56 +0000559 if (isa<llvm::IntegerType>(DstTy)) {
Anders Carlssonc9d41e72007-12-26 18:20:19 +0000560 if (DstType->isSignedIntegerType())
561 return Builder.CreateFPToSI(Src, DstTy, "conv");
562 else
563 return Builder.CreateFPToUI(Src, DstTy, "conv");
Chris Lattner3474c202007-08-26 06:48:56 +0000564 }
565
Duncan Sands998f9d92010-02-15 16:14:01 +0000566 assert(DstTy->isFloatingPointTy() && "Unknown real conversion");
Anders Carlssonc9d41e72007-12-26 18:20:19 +0000567 if (DstTy->getTypeID() < Src->getType()->getTypeID())
568 return Builder.CreateFPTrunc(Src, DstTy, "conv");
569 else
570 return Builder.CreateFPExt(Src, DstTy, "conv");
Chris Lattner3474c202007-08-26 06:48:56 +0000571}
572
Mike Stump4a3999f2009-09-09 13:00:44 +0000573/// EmitComplexToScalarConversion - Emit a conversion from the specified complex
574/// type to the specified destination type, where the destination type is an
575/// LLVM scalar type.
Chris Lattner42e6b812007-08-26 16:34:22 +0000576Value *ScalarExprEmitter::
577EmitComplexToScalarConversion(CodeGenFunction::ComplexPairTy Src,
578 QualType SrcTy, QualType DstTy) {
Chris Lattnerc141c1b2007-08-26 16:52:28 +0000579 // Get the source element type.
John McCall9dd450b2009-09-21 23:43:11 +0000580 SrcTy = SrcTy->getAs<ComplexType>()->getElementType();
Mike Stump4a3999f2009-09-09 13:00:44 +0000581
Chris Lattnerc141c1b2007-08-26 16:52:28 +0000582 // Handle conversions to bool first, they are special: comparisons against 0.
583 if (DstTy->isBooleanType()) {
584 // Complex != 0 -> (Real != 0) | (Imag != 0)
585 Src.first = EmitScalarConversion(Src.first, SrcTy, DstTy);
586 Src.second = EmitScalarConversion(Src.second, SrcTy, DstTy);
587 return Builder.CreateOr(Src.first, Src.second, "tobool");
588 }
Mike Stump4a3999f2009-09-09 13:00:44 +0000589
Chris Lattner42e6b812007-08-26 16:34:22 +0000590 // C99 6.3.1.7p2: "When a value of complex type is converted to a real type,
591 // the imaginary part of the complex value is discarded and the value of the
592 // real part is converted according to the conversion rules for the
Mike Stump4a3999f2009-09-09 13:00:44 +0000593 // corresponding real type.
Chris Lattner42e6b812007-08-26 16:34:22 +0000594 return EmitScalarConversion(Src.first, SrcTy, DstTy);
595}
596
Anders Carlsson5b944432010-05-22 17:45:10 +0000597Value *ScalarExprEmitter::EmitNullValue(QualType Ty) {
John McCall7a9aac22010-08-23 01:21:21 +0000598 if (const MemberPointerType *MPT = Ty->getAs<MemberPointerType>())
599 return CGF.CGM.getCXXABI().EmitNullMemberPointer(MPT);
600
601 return llvm::Constant::getNullValue(ConvertType(Ty));
Anders Carlsson5b944432010-05-22 17:45:10 +0000602}
Chris Lattner42e6b812007-08-26 16:34:22 +0000603
Chris Lattner2da04b32007-08-24 05:35:26 +0000604//===----------------------------------------------------------------------===//
605// Visitor Methods
606//===----------------------------------------------------------------------===//
607
608Value *ScalarExprEmitter::VisitExpr(Expr *E) {
Daniel Dunbara7c8cf62008-08-16 00:56:44 +0000609 CGF.ErrorUnsupported(E, "scalar expression");
Chris Lattner2da04b32007-08-24 05:35:26 +0000610 if (E->getType()->isVoidType())
611 return 0;
Owen Anderson7ec07a52009-07-30 23:11:26 +0000612 return llvm::UndefValue::get(CGF.ConvertType(E->getType()));
Chris Lattner2da04b32007-08-24 05:35:26 +0000613}
614
Eli Friedmana1b4ed82008-05-14 19:38:39 +0000615Value *ScalarExprEmitter::VisitShuffleVectorExpr(ShuffleVectorExpr *E) {
Nate Begemana0110022010-06-08 00:16:34 +0000616 // Vector Mask Case
617 if (E->getNumSubExprs() == 2 ||
Rafael Espindola9cdbd9d2010-06-09 02:17:08 +0000618 (E->getNumSubExprs() == 3 && E->getExpr(2)->getType()->isVectorType())) {
Chris Lattner5e016ae2010-06-27 07:15:29 +0000619 Value *LHS = CGF.EmitScalarExpr(E->getExpr(0));
620 Value *RHS = CGF.EmitScalarExpr(E->getExpr(1));
621 Value *Mask;
Nate Begemana0110022010-06-08 00:16:34 +0000622
Nate Begemana0110022010-06-08 00:16:34 +0000623 const llvm::VectorType *LTy = cast<llvm::VectorType>(LHS->getType());
624 unsigned LHSElts = LTy->getNumElements();
625
626 if (E->getNumSubExprs() == 3) {
627 Mask = CGF.EmitScalarExpr(E->getExpr(2));
628
629 // Shuffle LHS & RHS into one input vector.
630 llvm::SmallVector<llvm::Constant*, 32> concat;
631 for (unsigned i = 0; i != LHSElts; ++i) {
Chris Lattner5e016ae2010-06-27 07:15:29 +0000632 concat.push_back(llvm::ConstantInt::get(CGF.Int32Ty, 2*i));
633 concat.push_back(llvm::ConstantInt::get(CGF.Int32Ty, 2*i+1));
Nate Begemana0110022010-06-08 00:16:34 +0000634 }
635
636 Value* CV = llvm::ConstantVector::get(concat.begin(), concat.size());
637 LHS = Builder.CreateShuffleVector(LHS, RHS, CV, "concat");
638 LHSElts *= 2;
639 } else {
640 Mask = RHS;
641 }
642
643 const llvm::VectorType *MTy = cast<llvm::VectorType>(Mask->getType());
644 llvm::Constant* EltMask;
645
646 // Treat vec3 like vec4.
647 if ((LHSElts == 6) && (E->getNumSubExprs() == 3))
648 EltMask = llvm::ConstantInt::get(MTy->getElementType(),
649 (1 << llvm::Log2_32(LHSElts+2))-1);
650 else if ((LHSElts == 3) && (E->getNumSubExprs() == 2))
651 EltMask = llvm::ConstantInt::get(MTy->getElementType(),
652 (1 << llvm::Log2_32(LHSElts+1))-1);
653 else
654 EltMask = llvm::ConstantInt::get(MTy->getElementType(),
655 (1 << llvm::Log2_32(LHSElts))-1);
656
657 // Mask off the high bits of each shuffle index.
658 llvm::SmallVector<llvm::Constant *, 32> MaskV;
659 for (unsigned i = 0, e = MTy->getNumElements(); i != e; ++i)
660 MaskV.push_back(EltMask);
661
662 Value* MaskBits = llvm::ConstantVector::get(MaskV.begin(), MaskV.size());
663 Mask = Builder.CreateAnd(Mask, MaskBits, "mask");
664
665 // newv = undef
666 // mask = mask & maskbits
667 // for each elt
668 // n = extract mask i
669 // x = extract val n
670 // newv = insert newv, x, i
671 const llvm::VectorType *RTy = llvm::VectorType::get(LTy->getElementType(),
672 MTy->getNumElements());
673 Value* NewV = llvm::UndefValue::get(RTy);
674 for (unsigned i = 0, e = MTy->getNumElements(); i != e; ++i) {
Chris Lattner5e016ae2010-06-27 07:15:29 +0000675 Value *Indx = llvm::ConstantInt::get(CGF.Int32Ty, i);
Nate Begemana0110022010-06-08 00:16:34 +0000676 Indx = Builder.CreateExtractElement(Mask, Indx, "shuf_idx");
Chris Lattner5e016ae2010-06-27 07:15:29 +0000677 Indx = Builder.CreateZExt(Indx, CGF.Int32Ty, "idx_zext");
Nate Begemana0110022010-06-08 00:16:34 +0000678
679 // Handle vec3 special since the index will be off by one for the RHS.
680 if ((LHSElts == 6) && (E->getNumSubExprs() == 3)) {
681 Value *cmpIndx, *newIndx;
Chris Lattner5e016ae2010-06-27 07:15:29 +0000682 cmpIndx = Builder.CreateICmpUGT(Indx,
683 llvm::ConstantInt::get(CGF.Int32Ty, 3),
Nate Begemana0110022010-06-08 00:16:34 +0000684 "cmp_shuf_idx");
Chris Lattner5e016ae2010-06-27 07:15:29 +0000685 newIndx = Builder.CreateSub(Indx, llvm::ConstantInt::get(CGF.Int32Ty,1),
Nate Begemana0110022010-06-08 00:16:34 +0000686 "shuf_idx_adj");
687 Indx = Builder.CreateSelect(cmpIndx, newIndx, Indx, "sel_shuf_idx");
688 }
689 Value *VExt = Builder.CreateExtractElement(LHS, Indx, "shuf_elt");
690 NewV = Builder.CreateInsertElement(NewV, VExt, Indx, "shuf_ins");
691 }
692 return NewV;
Eli Friedmana1b4ed82008-05-14 19:38:39 +0000693 }
Nate Begemana0110022010-06-08 00:16:34 +0000694
Eli Friedmana1b4ed82008-05-14 19:38:39 +0000695 Value* V1 = CGF.EmitScalarExpr(E->getExpr(0));
696 Value* V2 = CGF.EmitScalarExpr(E->getExpr(1));
Nate Begemana0110022010-06-08 00:16:34 +0000697
698 // Handle vec3 special since the index will be off by one for the RHS.
699 llvm::SmallVector<llvm::Constant*, 32> indices;
700 for (unsigned i = 2; i < E->getNumSubExprs(); i++) {
701 llvm::Constant *C = cast<llvm::Constant>(CGF.EmitScalarExpr(E->getExpr(i)));
702 const llvm::VectorType *VTy = cast<llvm::VectorType>(V1->getType());
703 if (VTy->getNumElements() == 3) {
704 if (llvm::ConstantInt *CI = dyn_cast<llvm::ConstantInt>(C)) {
705 uint64_t cVal = CI->getZExtValue();
706 if (cVal > 3) {
707 C = llvm::ConstantInt::get(C->getType(), cVal-1);
708 }
709 }
710 }
711 indices.push_back(C);
712 }
713
Owen Anderson3cc120a2009-07-28 21:22:35 +0000714 Value* SV = llvm::ConstantVector::get(indices.begin(), indices.size());
Eli Friedmana1b4ed82008-05-14 19:38:39 +0000715 return Builder.CreateShuffleVector(V1, V2, SV, "shuffle");
716}
Eli Friedmancb422f12009-11-26 03:22:21 +0000717Value *ScalarExprEmitter::VisitMemberExpr(MemberExpr *E) {
718 Expr::EvalResult Result;
719 if (E->Evaluate(Result, CGF.getContext()) && Result.Val.isInt()) {
720 if (E->isArrow())
721 CGF.EmitScalarExpr(E->getBase());
722 else
723 EmitLValue(E->getBase());
724 return llvm::ConstantInt::get(VMContext, Result.Val.getInt());
725 }
Devang Patel44b8bf02010-10-04 21:46:04 +0000726
727 // Emit debug info for aggregate now, if it was delayed to reduce
728 // debug info size.
729 CGDebugInfo *DI = CGF.getDebugInfo();
730 if (DI && CGF.CGM.getCodeGenOpts().LimitDebugInfo) {
731 QualType PQTy = E->getBase()->IgnoreParenImpCasts()->getType();
732 if (const PointerType * PTy = dyn_cast<PointerType>(PQTy))
Devang Patel3703ff42010-10-04 22:28:23 +0000733 if (FieldDecl *M = dyn_cast<FieldDecl>(E->getMemberDecl()))
Devang Patel44b8bf02010-10-04 21:46:04 +0000734 DI->getOrCreateRecordType(PTy->getPointeeType(),
735 M->getParent()->getLocation());
Devang Patel95eea452010-10-04 22:13:18 +0000736 }
Eli Friedmancb422f12009-11-26 03:22:21 +0000737 return EmitLoadOfLValue(E);
738}
Eli Friedmana1b4ed82008-05-14 19:38:39 +0000739
Chris Lattner2da04b32007-08-24 05:35:26 +0000740Value *ScalarExprEmitter::VisitArraySubscriptExpr(ArraySubscriptExpr *E) {
Mike Stumpdf0fe272009-05-29 15:46:01 +0000741 TestAndClearIgnoreResultAssign();
742
Chris Lattner2da04b32007-08-24 05:35:26 +0000743 // Emit subscript expressions in rvalue context's. For most cases, this just
744 // loads the lvalue formed by the subscript expr. However, we have to be
745 // careful, because the base of a vector subscript is occasionally an rvalue,
746 // so we can't get it as an lvalue.
747 if (!E->getBase()->getType()->isVectorType())
748 return EmitLoadOfLValue(E);
Mike Stump4a3999f2009-09-09 13:00:44 +0000749
Chris Lattner2da04b32007-08-24 05:35:26 +0000750 // Handle the vector case. The base must be a vector, the index must be an
751 // integer value.
752 Value *Base = Visit(E->getBase());
753 Value *Idx = Visit(E->getIdx());
Eli Friedmane381f7e2009-03-28 02:45:41 +0000754 bool IdxSigned = E->getIdx()->getType()->isSignedIntegerType();
Chris Lattner5e016ae2010-06-27 07:15:29 +0000755 Idx = Builder.CreateIntCast(Idx, CGF.Int32Ty, IdxSigned, "vecidxcast");
Chris Lattner2da04b32007-08-24 05:35:26 +0000756 return Builder.CreateExtractElement(Base, Idx, "vecext");
757}
758
Nate Begeman19351632009-10-18 20:10:40 +0000759static llvm::Constant *getMaskElt(llvm::ShuffleVectorInst *SVI, unsigned Idx,
760 unsigned Off, const llvm::Type *I32Ty) {
761 int MV = SVI->getMaskValue(Idx);
762 if (MV == -1)
763 return llvm::UndefValue::get(I32Ty);
764 return llvm::ConstantInt::get(I32Ty, Off+MV);
765}
766
767Value *ScalarExprEmitter::VisitInitListExpr(InitListExpr *E) {
768 bool Ignore = TestAndClearIgnoreResultAssign();
769 (void)Ignore;
770 assert (Ignore == false && "init list ignored");
771 unsigned NumInitElements = E->getNumInits();
772
773 if (E->hadArrayRangeDesignator())
774 CGF.ErrorUnsupported(E, "GNU array range designator extension");
775
776 const llvm::VectorType *VType =
777 dyn_cast<llvm::VectorType>(ConvertType(E->getType()));
778
779 // We have a scalar in braces. Just use the first element.
780 if (!VType)
781 return Visit(E->getInit(0));
782
783 unsigned ResElts = VType->getNumElements();
Nate Begeman19351632009-10-18 20:10:40 +0000784
785 // Loop over initializers collecting the Value for each, and remembering
786 // whether the source was swizzle (ExtVectorElementExpr). This will allow
787 // us to fold the shuffle for the swizzle into the shuffle for the vector
788 // initializer, since LLVM optimizers generally do not want to touch
789 // shuffles.
790 unsigned CurIdx = 0;
791 bool VIsUndefShuffle = false;
792 llvm::Value *V = llvm::UndefValue::get(VType);
793 for (unsigned i = 0; i != NumInitElements; ++i) {
794 Expr *IE = E->getInit(i);
795 Value *Init = Visit(IE);
796 llvm::SmallVector<llvm::Constant*, 16> Args;
797
798 const llvm::VectorType *VVT = dyn_cast<llvm::VectorType>(Init->getType());
799
800 // Handle scalar elements. If the scalar initializer is actually one
801 // element of a different vector of the same width, use shuffle instead of
802 // extract+insert.
803 if (!VVT) {
804 if (isa<ExtVectorElementExpr>(IE)) {
805 llvm::ExtractElementInst *EI = cast<llvm::ExtractElementInst>(Init);
806
807 if (EI->getVectorOperandType()->getNumElements() == ResElts) {
808 llvm::ConstantInt *C = cast<llvm::ConstantInt>(EI->getIndexOperand());
809 Value *LHS = 0, *RHS = 0;
810 if (CurIdx == 0) {
811 // insert into undef -> shuffle (src, undef)
812 Args.push_back(C);
813 for (unsigned j = 1; j != ResElts; ++j)
Chris Lattner5e016ae2010-06-27 07:15:29 +0000814 Args.push_back(llvm::UndefValue::get(CGF.Int32Ty));
Nate Begeman19351632009-10-18 20:10:40 +0000815
816 LHS = EI->getVectorOperand();
817 RHS = V;
818 VIsUndefShuffle = true;
819 } else if (VIsUndefShuffle) {
820 // insert into undefshuffle && size match -> shuffle (v, src)
821 llvm::ShuffleVectorInst *SVV = cast<llvm::ShuffleVectorInst>(V);
822 for (unsigned j = 0; j != CurIdx; ++j)
Chris Lattner5e016ae2010-06-27 07:15:29 +0000823 Args.push_back(getMaskElt(SVV, j, 0, CGF.Int32Ty));
824 Args.push_back(llvm::ConstantInt::get(CGF.Int32Ty,
Nate Begeman19351632009-10-18 20:10:40 +0000825 ResElts + C->getZExtValue()));
826 for (unsigned j = CurIdx + 1; j != ResElts; ++j)
Chris Lattner5e016ae2010-06-27 07:15:29 +0000827 Args.push_back(llvm::UndefValue::get(CGF.Int32Ty));
Nate Begeman19351632009-10-18 20:10:40 +0000828
829 LHS = cast<llvm::ShuffleVectorInst>(V)->getOperand(0);
830 RHS = EI->getVectorOperand();
831 VIsUndefShuffle = false;
832 }
833 if (!Args.empty()) {
834 llvm::Constant *Mask = llvm::ConstantVector::get(&Args[0], ResElts);
835 V = Builder.CreateShuffleVector(LHS, RHS, Mask);
836 ++CurIdx;
837 continue;
838 }
839 }
840 }
Chris Lattner5e016ae2010-06-27 07:15:29 +0000841 Value *Idx = llvm::ConstantInt::get(CGF.Int32Ty, CurIdx);
Nate Begeman19351632009-10-18 20:10:40 +0000842 V = Builder.CreateInsertElement(V, Init, Idx, "vecinit");
843 VIsUndefShuffle = false;
844 ++CurIdx;
845 continue;
846 }
847
848 unsigned InitElts = VVT->getNumElements();
849
850 // If the initializer is an ExtVecEltExpr (a swizzle), and the swizzle's
851 // input is the same width as the vector being constructed, generate an
852 // optimized shuffle of the swizzle input into the result.
Nate Begemanb8326be2009-10-25 02:26:01 +0000853 unsigned Offset = (CurIdx == 0) ? 0 : ResElts;
Nate Begeman19351632009-10-18 20:10:40 +0000854 if (isa<ExtVectorElementExpr>(IE)) {
855 llvm::ShuffleVectorInst *SVI = cast<llvm::ShuffleVectorInst>(Init);
856 Value *SVOp = SVI->getOperand(0);
857 const llvm::VectorType *OpTy = cast<llvm::VectorType>(SVOp->getType());
858
859 if (OpTy->getNumElements() == ResElts) {
Nate Begeman19351632009-10-18 20:10:40 +0000860 for (unsigned j = 0; j != CurIdx; ++j) {
861 // If the current vector initializer is a shuffle with undef, merge
862 // this shuffle directly into it.
863 if (VIsUndefShuffle) {
864 Args.push_back(getMaskElt(cast<llvm::ShuffleVectorInst>(V), j, 0,
Chris Lattner5e016ae2010-06-27 07:15:29 +0000865 CGF.Int32Ty));
Nate Begeman19351632009-10-18 20:10:40 +0000866 } else {
Chris Lattner5e016ae2010-06-27 07:15:29 +0000867 Args.push_back(llvm::ConstantInt::get(CGF.Int32Ty, j));
Nate Begeman19351632009-10-18 20:10:40 +0000868 }
869 }
870 for (unsigned j = 0, je = InitElts; j != je; ++j)
Chris Lattner5e016ae2010-06-27 07:15:29 +0000871 Args.push_back(getMaskElt(SVI, j, Offset, CGF.Int32Ty));
Nate Begeman19351632009-10-18 20:10:40 +0000872 for (unsigned j = CurIdx + InitElts; j != ResElts; ++j)
Chris Lattner5e016ae2010-06-27 07:15:29 +0000873 Args.push_back(llvm::UndefValue::get(CGF.Int32Ty));
Nate Begeman19351632009-10-18 20:10:40 +0000874
875 if (VIsUndefShuffle)
876 V = cast<llvm::ShuffleVectorInst>(V)->getOperand(0);
877
878 Init = SVOp;
879 }
880 }
881
882 // Extend init to result vector length, and then shuffle its contribution
883 // to the vector initializer into V.
884 if (Args.empty()) {
885 for (unsigned j = 0; j != InitElts; ++j)
Chris Lattner5e016ae2010-06-27 07:15:29 +0000886 Args.push_back(llvm::ConstantInt::get(CGF.Int32Ty, j));
Nate Begeman19351632009-10-18 20:10:40 +0000887 for (unsigned j = InitElts; j != ResElts; ++j)
Chris Lattner5e016ae2010-06-27 07:15:29 +0000888 Args.push_back(llvm::UndefValue::get(CGF.Int32Ty));
Nate Begeman19351632009-10-18 20:10:40 +0000889 llvm::Constant *Mask = llvm::ConstantVector::get(&Args[0], ResElts);
890 Init = Builder.CreateShuffleVector(Init, llvm::UndefValue::get(VVT),
Nate Begemanb8326be2009-10-25 02:26:01 +0000891 Mask, "vext");
Nate Begeman19351632009-10-18 20:10:40 +0000892
893 Args.clear();
894 for (unsigned j = 0; j != CurIdx; ++j)
Chris Lattner5e016ae2010-06-27 07:15:29 +0000895 Args.push_back(llvm::ConstantInt::get(CGF.Int32Ty, j));
Nate Begeman19351632009-10-18 20:10:40 +0000896 for (unsigned j = 0; j != InitElts; ++j)
Chris Lattner5e016ae2010-06-27 07:15:29 +0000897 Args.push_back(llvm::ConstantInt::get(CGF.Int32Ty, j+Offset));
Nate Begeman19351632009-10-18 20:10:40 +0000898 for (unsigned j = CurIdx + InitElts; j != ResElts; ++j)
Chris Lattner5e016ae2010-06-27 07:15:29 +0000899 Args.push_back(llvm::UndefValue::get(CGF.Int32Ty));
Nate Begeman19351632009-10-18 20:10:40 +0000900 }
901
902 // If V is undef, make sure it ends up on the RHS of the shuffle to aid
903 // merging subsequent shuffles into this one.
904 if (CurIdx == 0)
905 std::swap(V, Init);
906 llvm::Constant *Mask = llvm::ConstantVector::get(&Args[0], ResElts);
907 V = Builder.CreateShuffleVector(V, Init, Mask, "vecinit");
908 VIsUndefShuffle = isa<llvm::UndefValue>(Init);
909 CurIdx += InitElts;
910 }
911
912 // FIXME: evaluate codegen vs. shuffling against constant null vector.
913 // Emit remaining default initializers.
914 const llvm::Type *EltTy = VType->getElementType();
915
916 // Emit remaining default initializers
917 for (/* Do not initialize i*/; CurIdx < ResElts; ++CurIdx) {
Chris Lattner5e016ae2010-06-27 07:15:29 +0000918 Value *Idx = llvm::ConstantInt::get(CGF.Int32Ty, CurIdx);
Nate Begeman19351632009-10-18 20:10:40 +0000919 llvm::Value *Init = llvm::Constant::getNullValue(EltTy);
920 V = Builder.CreateInsertElement(V, Init, Idx, "vecinit");
921 }
922 return V;
923}
924
Anders Carlsson8c793172009-11-23 17:57:54 +0000925static bool ShouldNullCheckClassCastValue(const CastExpr *CE) {
926 const Expr *E = CE->getSubExpr();
John McCalld9c7c6562010-03-30 23:58:03 +0000927
John McCalle3027922010-08-25 11:45:40 +0000928 if (CE->getCastKind() == CK_UncheckedDerivedToBase)
John McCalld9c7c6562010-03-30 23:58:03 +0000929 return false;
Anders Carlsson8c793172009-11-23 17:57:54 +0000930
931 if (isa<CXXThisExpr>(E)) {
932 // We always assume that 'this' is never null.
933 return false;
934 }
935
936 if (const ImplicitCastExpr *ICE = dyn_cast<ImplicitCastExpr>(CE)) {
Sebastian Redlc57d34b2010-07-20 04:20:21 +0000937 // And that glvalue casts are never null.
John McCall2536c6d2010-08-25 10:28:54 +0000938 if (ICE->getValueKind() != VK_RValue)
Anders Carlsson8c793172009-11-23 17:57:54 +0000939 return false;
940 }
941
942 return true;
943}
944
Chris Lattner2da04b32007-08-24 05:35:26 +0000945// VisitCastExpr - Emit code for an explicit or implicit cast. Implicit casts
946// have to handle a more broad range of conversions than explicit casts, as they
947// handle things like function to ptr-to-function decay etc.
Eli Friedmane96f1d32009-11-27 04:41:50 +0000948Value *ScalarExprEmitter::EmitCastExpr(CastExpr *CE) {
949 Expr *E = CE->getSubExpr();
Anders Carlsson8c978b42009-09-22 22:00:46 +0000950 QualType DestTy = CE->getType();
John McCalle3027922010-08-25 11:45:40 +0000951 CastKind Kind = CE->getCastKind();
Anders Carlsson8c978b42009-09-22 22:00:46 +0000952
Mike Stumpdf0fe272009-05-29 15:46:01 +0000953 if (!DestTy->isVoidType())
954 TestAndClearIgnoreResultAssign();
Mike Stump4a3999f2009-09-09 13:00:44 +0000955
Eli Friedman0dfc6802009-11-27 02:07:44 +0000956 // Since almost all cast kinds apply to scalars, this switch doesn't have
957 // a default case, so the compiler will warn on a missing case. The cases
958 // are in the same order as in the CastKind enum.
Anders Carlsson3df53bc2009-08-24 18:26:39 +0000959 switch (Kind) {
John McCalle3027922010-08-25 11:45:40 +0000960 case CK_Unknown:
Eli Friedmane96f1d32009-11-27 04:41:50 +0000961 // FIXME: All casts should have a known kind!
Eli Friedmanc08bdea2009-11-16 21:33:53 +0000962 //assert(0 && "Unknown cast kind!");
Anders Carlsson3df53bc2009-08-24 18:26:39 +0000963 break;
Eli Friedmanc08bdea2009-11-16 21:33:53 +0000964
John McCalle3027922010-08-25 11:45:40 +0000965 case CK_LValueBitCast:
966 case CK_ObjCObjectLValueCast: {
Douglas Gregor51954272010-07-13 23:17:26 +0000967 Value *V = EmitLValue(E).getAddress();
968 V = Builder.CreateBitCast(V,
969 ConvertType(CGF.getContext().getPointerType(DestTy)));
Daniel Dunbarf6fb7e22010-08-21 03:08:16 +0000970 return EmitLoadOfLValue(CGF.MakeAddrLValue(V, DestTy), DestTy);
Douglas Gregor51954272010-07-13 23:17:26 +0000971 }
972
John McCalle3027922010-08-25 11:45:40 +0000973 case CK_AnyPointerToObjCPointerCast:
974 case CK_AnyPointerToBlockPointerCast:
975 case CK_BitCast: {
Anders Carlssonf1ae6d42009-09-01 20:52:42 +0000976 Value *Src = Visit(const_cast<Expr*>(E));
977 return Builder.CreateBitCast(Src, ConvertType(DestTy));
978 }
John McCalle3027922010-08-25 11:45:40 +0000979 case CK_NoOp:
980 case CK_UserDefinedConversion:
Eli Friedmanc08bdea2009-11-16 21:33:53 +0000981 return Visit(const_cast<Expr*>(E));
Mike Stump4a3999f2009-09-09 13:00:44 +0000982
John McCalle3027922010-08-25 11:45:40 +0000983 case CK_BaseToDerived: {
Anders Carlsson8c793172009-11-23 17:57:54 +0000984 const CXXRecordDecl *DerivedClassDecl =
985 DestTy->getCXXRecordDeclForPointerType();
986
Anders Carlsson8a64c1c2010-04-24 21:23:59 +0000987 return CGF.GetAddressOfDerivedClass(Visit(E), DerivedClassDecl,
John McCallcf142162010-08-07 06:22:56 +0000988 CE->path_begin(), CE->path_end(),
Anders Carlsson8a64c1c2010-04-24 21:23:59 +0000989 ShouldNullCheckClassCastValue(CE));
Anders Carlsson8c793172009-11-23 17:57:54 +0000990 }
John McCalle3027922010-08-25 11:45:40 +0000991 case CK_UncheckedDerivedToBase:
992 case CK_DerivedToBase: {
Anders Carlsson12f5a252009-09-12 04:57:16 +0000993 const RecordType *DerivedClassTy =
994 E->getType()->getAs<PointerType>()->getPointeeType()->getAs<RecordType>();
995 CXXRecordDecl *DerivedClassDecl =
996 cast<CXXRecordDecl>(DerivedClassTy->getDecl());
997
Anders Carlssond829a022010-04-24 21:06:20 +0000998 return CGF.GetAddressOfBaseClass(Visit(E), DerivedClassDecl,
John McCallcf142162010-08-07 06:22:56 +0000999 CE->path_begin(), CE->path_end(),
Anders Carlssond829a022010-04-24 21:06:20 +00001000 ShouldNullCheckClassCastValue(CE));
Anders Carlsson12f5a252009-09-12 04:57:16 +00001001 }
John McCalle3027922010-08-25 11:45:40 +00001002 case CK_Dynamic: {
Eli Friedman0dfc6802009-11-27 02:07:44 +00001003 Value *V = Visit(const_cast<Expr*>(E));
1004 const CXXDynamicCastExpr *DCE = cast<CXXDynamicCastExpr>(CE);
1005 return CGF.EmitDynamicCast(V, DCE);
1006 }
John McCalle3027922010-08-25 11:45:40 +00001007 case CK_ToUnion:
Eli Friedmanc08bdea2009-11-16 21:33:53 +00001008 assert(0 && "Should be unreachable!");
1009 break;
Eli Friedmane96f1d32009-11-27 04:41:50 +00001010
John McCalle3027922010-08-25 11:45:40 +00001011 case CK_ArrayToPointerDecay: {
Eli Friedmanc08bdea2009-11-16 21:33:53 +00001012 assert(E->getType()->isArrayType() &&
1013 "Array to pointer decay must have array source type!");
1014
1015 Value *V = EmitLValue(E).getAddress(); // Bitfields can't be arrays.
1016
1017 // Note that VLA pointers are always decayed, so we don't need to do
1018 // anything here.
1019 if (!E->getType()->isVariableArrayType()) {
1020 assert(isa<llvm::PointerType>(V->getType()) && "Expected pointer");
1021 assert(isa<llvm::ArrayType>(cast<llvm::PointerType>(V->getType())
1022 ->getElementType()) &&
1023 "Expected pointer to array");
1024 V = Builder.CreateStructGEP(V, 0, "arraydecay");
1025 }
1026
1027 return V;
1028 }
John McCalle3027922010-08-25 11:45:40 +00001029 case CK_FunctionToPointerDecay:
Eli Friedmanc08bdea2009-11-16 21:33:53 +00001030 return EmitLValue(E).getAddress();
1031
John McCalle3027922010-08-25 11:45:40 +00001032 case CK_NullToMemberPointer: {
John McCalla1dee5302010-08-22 10:59:02 +00001033 // If the subexpression's type is the C++0x nullptr_t, emit the
1034 // subexpression, which may have side effects.
1035 if (E->getType()->isNullPtrType())
1036 (void) Visit(E);
1037
John McCall7a9aac22010-08-23 01:21:21 +00001038 const MemberPointerType *MPT = CE->getType()->getAs<MemberPointerType>();
1039 return CGF.CGM.getCXXABI().EmitNullMemberPointer(MPT);
1040 }
Anders Carlsson12f5a252009-09-12 04:57:16 +00001041
John McCalle3027922010-08-25 11:45:40 +00001042 case CK_BaseToDerivedMemberPointer:
1043 case CK_DerivedToBaseMemberPointer: {
Eli Friedmane96f1d32009-11-27 04:41:50 +00001044 Value *Src = Visit(E);
John McCalla1dee5302010-08-22 10:59:02 +00001045
1046 // Note that the AST doesn't distinguish between checked and
1047 // unchecked member pointer conversions, so we always have to
1048 // implement checked conversions here. This is inefficient when
1049 // actual control flow may be required in order to perform the
1050 // check, which it is for data member pointers (but not member
1051 // function pointers on Itanium and ARM).
John McCall7a9aac22010-08-23 01:21:21 +00001052 return CGF.CGM.getCXXABI().EmitMemberPointerConversion(CGF, CE, Src);
Eli Friedmane96f1d32009-11-27 04:41:50 +00001053 }
John McCall7a9aac22010-08-23 01:21:21 +00001054
Eli Friedmane96f1d32009-11-27 04:41:50 +00001055
John McCalle3027922010-08-25 11:45:40 +00001056 case CK_ConstructorConversion:
Eli Friedmane96f1d32009-11-27 04:41:50 +00001057 assert(0 && "Should be unreachable!");
Eli Friedman0dfc6802009-11-27 02:07:44 +00001058 break;
1059
John McCalle3027922010-08-25 11:45:40 +00001060 case CK_IntegralToPointer: {
Anders Carlsson7cd39e02009-09-15 04:48:33 +00001061 Value *Src = Visit(const_cast<Expr*>(E));
Daniel Dunbaread6824c2010-08-25 03:32:38 +00001062
Anders Carlsson094c4592009-10-18 18:12:03 +00001063 // First, convert to the correct width so that we control the kind of
1064 // extension.
Chris Lattner5e016ae2010-06-27 07:15:29 +00001065 const llvm::Type *MiddleTy = CGF.IntPtrTy;
Anders Carlsson094c4592009-10-18 18:12:03 +00001066 bool InputSigned = E->getType()->isSignedIntegerType();
1067 llvm::Value* IntResult =
1068 Builder.CreateIntCast(Src, MiddleTy, InputSigned, "conv");
Daniel Dunbaread6824c2010-08-25 03:32:38 +00001069
Anders Carlsson094c4592009-10-18 18:12:03 +00001070 return Builder.CreateIntToPtr(IntResult, ConvertType(DestTy));
Anders Carlsson7cd39e02009-09-15 04:48:33 +00001071 }
John McCalle3027922010-08-25 11:45:40 +00001072 case CK_PointerToIntegral: {
Anders Carlsson7cd39e02009-09-15 04:48:33 +00001073 Value *Src = Visit(const_cast<Expr*>(E));
Daniel Dunbaread6824c2010-08-25 03:32:38 +00001074
1075 // Handle conversion to bool correctly.
1076 if (DestTy->isBooleanType())
Daniel Dunbar2f8df982010-09-03 02:07:00 +00001077 return EmitScalarConversion(Src, E->getType(), DestTy);
Daniel Dunbaread6824c2010-08-25 03:32:38 +00001078
Anders Carlsson7cd39e02009-09-15 04:48:33 +00001079 return Builder.CreatePtrToInt(Src, ConvertType(DestTy));
1080 }
John McCalle3027922010-08-25 11:45:40 +00001081 case CK_ToVoid: {
Fariborz Jahanian60babfb2010-09-04 19:49:18 +00001082 if (E->Classify(CGF.getContext()).isGLValue()) {
1083 LValue LV = CGF.EmitLValue(E);
1084 if (LV.isPropertyRef())
1085 CGF.EmitLoadOfPropertyRefLValue(LV, E->getType());
1086 else if (LV.isKVCRef())
1087 CGF.EmitLoadOfKVCRefLValue(LV, E->getType());
1088 }
Douglas Gregor8b2d2fe2010-08-07 11:51:51 +00001089 else
John McCall7a626f62010-09-15 10:14:12 +00001090 CGF.EmitAnyExpr(E, AggValueSlot::ignored(), true);
Eli Friedmanc08bdea2009-11-16 21:33:53 +00001091 return 0;
1092 }
John McCalle3027922010-08-25 11:45:40 +00001093 case CK_VectorSplat: {
Eli Friedmanc08bdea2009-11-16 21:33:53 +00001094 const llvm::Type *DstTy = ConvertType(DestTy);
1095 Value *Elt = Visit(const_cast<Expr*>(E));
1096
1097 // Insert the element in element zero of an undef vector
1098 llvm::Value *UnV = llvm::UndefValue::get(DstTy);
Chris Lattner5e016ae2010-06-27 07:15:29 +00001099 llvm::Value *Idx = llvm::ConstantInt::get(CGF.Int32Ty, 0);
Eli Friedmanc08bdea2009-11-16 21:33:53 +00001100 UnV = Builder.CreateInsertElement(UnV, Elt, Idx, "tmp");
1101
1102 // Splat the element across to all elements
1103 llvm::SmallVector<llvm::Constant*, 16> Args;
1104 unsigned NumElements = cast<llvm::VectorType>(DstTy)->getNumElements();
1105 for (unsigned i = 0; i < NumElements; i++)
Chris Lattner5e016ae2010-06-27 07:15:29 +00001106 Args.push_back(llvm::ConstantInt::get(CGF.Int32Ty, 0));
Eli Friedmanc08bdea2009-11-16 21:33:53 +00001107
1108 llvm::Constant *Mask = llvm::ConstantVector::get(&Args[0], NumElements);
1109 llvm::Value *Yay = Builder.CreateShuffleVector(UnV, UnV, Mask, "splat");
1110 return Yay;
1111 }
John McCalle3027922010-08-25 11:45:40 +00001112 case CK_IntegralCast:
1113 case CK_IntegralToFloating:
1114 case CK_FloatingToIntegral:
1115 case CK_FloatingCast:
Eli Friedmane96f1d32009-11-27 04:41:50 +00001116 return EmitScalarConversion(Visit(E), E->getType(), DestTy);
Eli Friedmanc08bdea2009-11-16 21:33:53 +00001117
John McCalle3027922010-08-25 11:45:40 +00001118 case CK_MemberPointerToBoolean: {
John McCall7a9aac22010-08-23 01:21:21 +00001119 llvm::Value *MemPtr = Visit(E);
1120 const MemberPointerType *MPT = E->getType()->getAs<MemberPointerType>();
1121 return CGF.CGM.getCXXABI().EmitMemberPointerIsNotNull(CGF, MemPtr, MPT);
Anders Carlsson3df53bc2009-08-24 18:26:39 +00001122 }
John McCall7a9aac22010-08-23 01:21:21 +00001123 }
1124
Chris Lattner5de3b172007-08-26 07:26:12 +00001125 // Handle cases where the source is an non-complex type.
Mike Stump4a3999f2009-09-09 13:00:44 +00001126
Chris Lattnerdf53e202008-02-16 23:55:16 +00001127 if (!CGF.hasAggregateLLVMType(E->getType())) {
Chris Lattner3474c202007-08-26 06:48:56 +00001128 Value *Src = Visit(const_cast<Expr*>(E));
1129
Chris Lattner3474c202007-08-26 06:48:56 +00001130 // Use EmitScalarConversion to perform the conversion.
1131 return EmitScalarConversion(Src, E->getType(), DestTy);
1132 }
Mike Stump4a3999f2009-09-09 13:00:44 +00001133
Chris Lattnerf3bc75a2008-04-04 16:54:41 +00001134 if (E->getType()->isAnyComplexType()) {
Chris Lattnerdf53e202008-02-16 23:55:16 +00001135 // Handle cases where the source is a complex type.
Mike Stumpdf0fe272009-05-29 15:46:01 +00001136 bool IgnoreImag = true;
1137 bool IgnoreImagAssign = true;
1138 bool IgnoreReal = IgnoreResultAssign;
1139 bool IgnoreRealAssign = IgnoreResultAssign;
1140 if (DestTy->isBooleanType())
1141 IgnoreImagAssign = IgnoreImag = false;
1142 else if (DestTy->isVoidType()) {
1143 IgnoreReal = IgnoreImag = false;
1144 IgnoreRealAssign = IgnoreImagAssign = true;
1145 }
1146 CodeGenFunction::ComplexPairTy V
1147 = CGF.EmitComplexExpr(E, IgnoreReal, IgnoreImag, IgnoreRealAssign,
1148 IgnoreImagAssign);
1149 return EmitComplexToScalarConversion(V, E->getType(), DestTy);
Chris Lattnerdf53e202008-02-16 23:55:16 +00001150 }
Chris Lattner46c71612007-08-26 07:16:41 +00001151
Chris Lattnerdf53e202008-02-16 23:55:16 +00001152 // Okay, this is a cast from an aggregate. It must be a cast to void. Just
1153 // evaluate the result and return.
John McCall7a626f62010-09-15 10:14:12 +00001154 CGF.EmitAggExpr(E, AggValueSlot::ignored(), true);
Chris Lattnerdf53e202008-02-16 23:55:16 +00001155 return 0;
Chris Lattner2da04b32007-08-24 05:35:26 +00001156}
1157
Chris Lattner04a913b2007-08-31 22:09:40 +00001158Value *ScalarExprEmitter::VisitStmtExpr(const StmtExpr *E) {
Chris Lattner7e800972008-07-26 20:23:23 +00001159 return CGF.EmitCompoundStmt(*E->getSubStmt(),
1160 !E->getType()->isVoidType()).getScalarVal();
Chris Lattner04a913b2007-08-31 22:09:40 +00001161}
1162
Mike Stump1db7d042009-02-28 09:07:16 +00001163Value *ScalarExprEmitter::VisitBlockDeclRefExpr(const BlockDeclRefExpr *E) {
Fariborz Jahanian07ca7272009-10-10 20:07:56 +00001164 llvm::Value *V = CGF.GetAddrOfBlockDecl(E);
1165 if (E->getType().isObjCGCWeak())
1166 return CGF.CGM.getObjCRuntime().EmitObjCWeakRead(CGF, V);
Fariborz Jahanian087206d2010-09-03 23:07:53 +00001167 return CGF.EmitLoadOfScalar(V, false, 0, E->getType());
Mike Stumpcb2fbcb2009-02-21 20:00:35 +00001168}
Chris Lattner04a913b2007-08-31 22:09:40 +00001169
Chris Lattner2da04b32007-08-24 05:35:26 +00001170//===----------------------------------------------------------------------===//
1171// Unary Operators
1172//===----------------------------------------------------------------------===//
1173
Chris Lattner05dc78c2010-06-26 22:09:34 +00001174llvm::Value *ScalarExprEmitter::
1175EmitScalarPrePostIncDec(const UnaryOperator *E, LValue LV,
1176 bool isInc, bool isPre) {
1177
1178 QualType ValTy = E->getSubExpr()->getType();
1179 llvm::Value *InVal = EmitLoadOfLValue(LV, ValTy);
1180
1181 int AmountVal = isInc ? 1 : -1;
1182
1183 if (ValTy->isPointerType() &&
1184 ValTy->getAs<PointerType>()->isVariableArrayType()) {
1185 // The amount of the addition/subtraction needs to account for the VLA size
1186 CGF.ErrorUnsupported(E, "VLA pointer inc/dec");
1187 }
1188
1189 llvm::Value *NextVal;
1190 if (const llvm::PointerType *PT =
1191 dyn_cast<llvm::PointerType>(InVal->getType())) {
Chris Lattner5e016ae2010-06-27 07:15:29 +00001192 llvm::Constant *Inc = llvm::ConstantInt::get(CGF.Int32Ty, AmountVal);
Chris Lattner05dc78c2010-06-26 22:09:34 +00001193 if (!isa<llvm::FunctionType>(PT->getElementType())) {
1194 QualType PTEE = ValTy->getPointeeType();
1195 if (const ObjCObjectType *OIT = PTEE->getAs<ObjCObjectType>()) {
1196 // Handle interface types, which are not represented with a concrete
1197 // type.
1198 int size = CGF.getContext().getTypeSize(OIT) / 8;
1199 if (!isInc)
1200 size = -size;
1201 Inc = llvm::ConstantInt::get(Inc->getType(), size);
1202 const llvm::Type *i8Ty = llvm::Type::getInt8PtrTy(VMContext);
1203 InVal = Builder.CreateBitCast(InVal, i8Ty);
1204 NextVal = Builder.CreateGEP(InVal, Inc, "add.ptr");
1205 llvm::Value *lhs = LV.getAddress();
1206 lhs = Builder.CreateBitCast(lhs, llvm::PointerType::getUnqual(i8Ty));
Daniel Dunbarf6fb7e22010-08-21 03:08:16 +00001207 LV = CGF.MakeAddrLValue(lhs, ValTy);
Chris Lattner05dc78c2010-06-26 22:09:34 +00001208 } else
1209 NextVal = Builder.CreateInBoundsGEP(InVal, Inc, "ptrincdec");
1210 } else {
1211 const llvm::Type *i8Ty = llvm::Type::getInt8PtrTy(VMContext);
1212 NextVal = Builder.CreateBitCast(InVal, i8Ty, "tmp");
1213 NextVal = Builder.CreateGEP(NextVal, Inc, "ptrincdec");
1214 NextVal = Builder.CreateBitCast(NextVal, InVal->getType());
1215 }
1216 } else if (InVal->getType()->isIntegerTy(1) && isInc) {
1217 // Bool++ is an interesting case, due to promotion rules, we get:
1218 // Bool++ -> Bool = Bool+1 -> Bool = (int)Bool+1 ->
1219 // Bool = ((int)Bool+1) != 0
1220 // An interesting aspect of this is that increment is always true.
1221 // Decrement does not have this property.
1222 NextVal = llvm::ConstantInt::getTrue(VMContext);
1223 } else if (isa<llvm::IntegerType>(InVal->getType())) {
1224 NextVal = llvm::ConstantInt::get(InVal->getType(), AmountVal);
1225
Chris Lattner431bef42010-06-26 22:18:28 +00001226 if (!ValTy->isSignedIntegerType())
1227 // Unsigned integer inc is always two's complement.
Chris Lattner05dc78c2010-06-26 22:09:34 +00001228 NextVal = Builder.CreateAdd(InVal, NextVal, isInc ? "inc" : "dec");
Chris Lattner431bef42010-06-26 22:18:28 +00001229 else {
1230 switch (CGF.getContext().getLangOptions().getSignedOverflowBehavior()) {
1231 case LangOptions::SOB_Undefined:
1232 NextVal = Builder.CreateNSWAdd(InVal, NextVal, isInc ? "inc" : "dec");
1233 break;
1234 case LangOptions::SOB_Defined:
1235 NextVal = Builder.CreateAdd(InVal, NextVal, isInc ? "inc" : "dec");
1236 break;
1237 case LangOptions::SOB_Trapping:
1238 BinOpInfo BinOp;
1239 BinOp.LHS = InVal;
1240 BinOp.RHS = NextVal;
1241 BinOp.Ty = E->getType();
John McCalle3027922010-08-25 11:45:40 +00001242 BinOp.Opcode = BO_Add;
Chris Lattner431bef42010-06-26 22:18:28 +00001243 BinOp.E = E;
John McCalla9731a42010-08-05 17:39:44 +00001244 NextVal = EmitOverflowCheckedBinOp(BinOp);
1245 break;
Chris Lattner431bef42010-06-26 22:18:28 +00001246 }
1247 }
Chris Lattner05dc78c2010-06-26 22:09:34 +00001248 } else {
1249 // Add the inc/dec to the real part.
1250 if (InVal->getType()->isFloatTy())
1251 NextVal =
1252 llvm::ConstantFP::get(VMContext,
1253 llvm::APFloat(static_cast<float>(AmountVal)));
1254 else if (InVal->getType()->isDoubleTy())
1255 NextVal =
1256 llvm::ConstantFP::get(VMContext,
1257 llvm::APFloat(static_cast<double>(AmountVal)));
1258 else {
1259 llvm::APFloat F(static_cast<float>(AmountVal));
1260 bool ignored;
1261 F.convert(CGF.Target.getLongDoubleFormat(), llvm::APFloat::rmTowardZero,
1262 &ignored);
1263 NextVal = llvm::ConstantFP::get(VMContext, F);
1264 }
1265 NextVal = Builder.CreateFAdd(InVal, NextVal, isInc ? "inc" : "dec");
1266 }
1267
1268 // Store the updated result through the lvalue.
1269 if (LV.isBitField())
1270 CGF.EmitStoreThroughBitfieldLValue(RValue::get(NextVal), LV, ValTy, &NextVal);
1271 else
1272 CGF.EmitStoreThroughLValue(RValue::get(NextVal), LV, ValTy);
1273
1274 // If this is a postinc, return the value read from memory, otherwise use the
1275 // updated value.
1276 return isPre ? NextVal : InVal;
1277}
1278
1279
1280
Chris Lattner2da04b32007-08-24 05:35:26 +00001281Value *ScalarExprEmitter::VisitUnaryMinus(const UnaryOperator *E) {
Mike Stumpdf0fe272009-05-29 15:46:01 +00001282 TestAndClearIgnoreResultAssign();
Chris Lattner0bf27622010-06-26 21:48:21 +00001283 // Emit unary minus with EmitSub so we handle overflow cases etc.
1284 BinOpInfo BinOp;
Chris Lattnerc1028f62010-06-28 17:12:37 +00001285 BinOp.RHS = Visit(E->getSubExpr());
1286
1287 if (BinOp.RHS->getType()->isFPOrFPVectorTy())
1288 BinOp.LHS = llvm::ConstantFP::getZeroValueForNegation(BinOp.RHS->getType());
1289 else
1290 BinOp.LHS = llvm::Constant::getNullValue(BinOp.RHS->getType());
Chris Lattner0bf27622010-06-26 21:48:21 +00001291 BinOp.Ty = E->getType();
John McCalle3027922010-08-25 11:45:40 +00001292 BinOp.Opcode = BO_Sub;
Chris Lattner0bf27622010-06-26 21:48:21 +00001293 BinOp.E = E;
1294 return EmitSub(BinOp);
Chris Lattner2da04b32007-08-24 05:35:26 +00001295}
1296
1297Value *ScalarExprEmitter::VisitUnaryNot(const UnaryOperator *E) {
Mike Stumpdf0fe272009-05-29 15:46:01 +00001298 TestAndClearIgnoreResultAssign();
Chris Lattner2da04b32007-08-24 05:35:26 +00001299 Value *Op = Visit(E->getSubExpr());
1300 return Builder.CreateNot(Op, "neg");
1301}
1302
1303Value *ScalarExprEmitter::VisitUnaryLNot(const UnaryOperator *E) {
1304 // Compare operand to zero.
1305 Value *BoolVal = CGF.EvaluateExprAsBool(E->getSubExpr());
Mike Stump4a3999f2009-09-09 13:00:44 +00001306
Chris Lattner2da04b32007-08-24 05:35:26 +00001307 // Invert value.
1308 // TODO: Could dynamically modify easy computations here. For example, if
1309 // the operand is an icmp ne, turn into icmp eq.
1310 BoolVal = Builder.CreateNot(BoolVal, "lnot");
Mike Stump4a3999f2009-09-09 13:00:44 +00001311
Anders Carlsson775640d2009-05-19 18:44:53 +00001312 // ZExt result to the expr type.
1313 return Builder.CreateZExt(BoolVal, ConvertType(E->getType()), "lnot.ext");
Chris Lattner2da04b32007-08-24 05:35:26 +00001314}
1315
Eli Friedmand7c72322010-08-05 09:58:49 +00001316Value *ScalarExprEmitter::VisitOffsetOfExpr(OffsetOfExpr *E) {
1317 // Try folding the offsetof to a constant.
1318 Expr::EvalResult EvalResult;
1319 if (E->Evaluate(EvalResult, CGF.getContext()))
1320 return llvm::ConstantInt::get(VMContext, EvalResult.Val.getInt());
1321
1322 // Loop over the components of the offsetof to compute the value.
1323 unsigned n = E->getNumComponents();
1324 const llvm::Type* ResultType = ConvertType(E->getType());
1325 llvm::Value* Result = llvm::Constant::getNullValue(ResultType);
1326 QualType CurrentType = E->getTypeSourceInfo()->getType();
1327 for (unsigned i = 0; i != n; ++i) {
1328 OffsetOfExpr::OffsetOfNode ON = E->getComponent(i);
Eli Friedman165301d2010-08-06 16:37:05 +00001329 llvm::Value *Offset = 0;
Eli Friedmand7c72322010-08-05 09:58:49 +00001330 switch (ON.getKind()) {
1331 case OffsetOfExpr::OffsetOfNode::Array: {
1332 // Compute the index
1333 Expr *IdxExpr = E->getIndexExpr(ON.getArrayExprIndex());
1334 llvm::Value* Idx = CGF.EmitScalarExpr(IdxExpr);
1335 bool IdxSigned = IdxExpr->getType()->isSignedIntegerType();
1336 Idx = Builder.CreateIntCast(Idx, ResultType, IdxSigned, "conv");
1337
1338 // Save the element type
1339 CurrentType =
1340 CGF.getContext().getAsArrayType(CurrentType)->getElementType();
1341
1342 // Compute the element size
1343 llvm::Value* ElemSize = llvm::ConstantInt::get(ResultType,
1344 CGF.getContext().getTypeSizeInChars(CurrentType).getQuantity());
1345
1346 // Multiply out to compute the result
1347 Offset = Builder.CreateMul(Idx, ElemSize);
1348 break;
1349 }
1350
1351 case OffsetOfExpr::OffsetOfNode::Field: {
1352 FieldDecl *MemberDecl = ON.getField();
1353 RecordDecl *RD = CurrentType->getAs<RecordType>()->getDecl();
1354 const ASTRecordLayout &RL = CGF.getContext().getASTRecordLayout(RD);
1355
1356 // Compute the index of the field in its parent.
1357 unsigned i = 0;
1358 // FIXME: It would be nice if we didn't have to loop here!
1359 for (RecordDecl::field_iterator Field = RD->field_begin(),
1360 FieldEnd = RD->field_end();
1361 Field != FieldEnd; (void)++Field, ++i) {
1362 if (*Field == MemberDecl)
1363 break;
1364 }
1365 assert(i < RL.getFieldCount() && "offsetof field in wrong type");
1366
1367 // Compute the offset to the field
1368 int64_t OffsetInt = RL.getFieldOffset(i) /
1369 CGF.getContext().getCharWidth();
1370 Offset = llvm::ConstantInt::get(ResultType, OffsetInt);
1371
1372 // Save the element type.
1373 CurrentType = MemberDecl->getType();
1374 break;
1375 }
Eli Friedman165301d2010-08-06 16:37:05 +00001376
Eli Friedmand7c72322010-08-05 09:58:49 +00001377 case OffsetOfExpr::OffsetOfNode::Identifier:
Eli Friedmane83d2b762010-08-06 01:17:25 +00001378 llvm_unreachable("dependent __builtin_offsetof");
Eli Friedman165301d2010-08-06 16:37:05 +00001379
Eli Friedmand7c72322010-08-05 09:58:49 +00001380 case OffsetOfExpr::OffsetOfNode::Base: {
1381 if (ON.getBase()->isVirtual()) {
1382 CGF.ErrorUnsupported(E, "virtual base in offsetof");
1383 continue;
1384 }
1385
1386 RecordDecl *RD = CurrentType->getAs<RecordType>()->getDecl();
1387 const ASTRecordLayout &RL = CGF.getContext().getASTRecordLayout(RD);
1388
1389 // Save the element type.
1390 CurrentType = ON.getBase()->getType();
1391
1392 // Compute the offset to the base.
1393 const RecordType *BaseRT = CurrentType->getAs<RecordType>();
1394 CXXRecordDecl *BaseRD = cast<CXXRecordDecl>(BaseRT->getDecl());
1395 int64_t OffsetInt = RL.getBaseClassOffset(BaseRD) /
1396 CGF.getContext().getCharWidth();
1397 Offset = llvm::ConstantInt::get(ResultType, OffsetInt);
1398 break;
1399 }
1400 }
1401 Result = Builder.CreateAdd(Result, Offset);
1402 }
1403 return Result;
Douglas Gregor882211c2010-04-28 22:16:22 +00001404}
1405
Sebastian Redl6f282892008-11-11 17:56:53 +00001406/// VisitSizeOfAlignOfExpr - Return the size or alignment of the type of
1407/// argument of the sizeof expression as an integer.
1408Value *
1409ScalarExprEmitter::VisitSizeOfAlignOfExpr(const SizeOfAlignOfExpr *E) {
Sebastian Redl6f282892008-11-11 17:56:53 +00001410 QualType TypeToSize = E->getTypeOfArgument();
Eli Friedman2aa38fe2009-01-24 22:19:05 +00001411 if (E->isSizeOf()) {
Mike Stump4a3999f2009-09-09 13:00:44 +00001412 if (const VariableArrayType *VAT =
Eli Friedman2aa38fe2009-01-24 22:19:05 +00001413 CGF.getContext().getAsVariableArrayType(TypeToSize)) {
1414 if (E->isArgumentType()) {
1415 // sizeof(type) - make sure to emit the VLA size.
1416 CGF.EmitVLASize(TypeToSize);
Eli Friedman3253e182009-04-20 03:21:44 +00001417 } else {
1418 // C99 6.5.3.4p2: If the argument is an expression of type
1419 // VLA, it is evaluated.
1420 CGF.EmitAnyExpr(E->getArgumentExpr());
Eli Friedman2aa38fe2009-01-24 22:19:05 +00001421 }
Mike Stump4a3999f2009-09-09 13:00:44 +00001422
Anders Carlsson31f86492009-02-05 19:43:10 +00001423 return CGF.GetVLASize(VAT);
Anders Carlsson76dbc042008-12-21 03:33:21 +00001424 }
Anders Carlsson30032882008-12-12 07:38:43 +00001425 }
Eli Friedman2aa38fe2009-01-24 22:19:05 +00001426
Mike Stump4a3999f2009-09-09 13:00:44 +00001427 // If this isn't sizeof(vla), the result must be constant; use the constant
1428 // folding logic so we don't have to duplicate it here.
Eli Friedman2aa38fe2009-01-24 22:19:05 +00001429 Expr::EvalResult Result;
1430 E->Evaluate(Result, CGF.getContext());
Owen Andersonb7a2fe62009-07-24 23:12:58 +00001431 return llvm::ConstantInt::get(VMContext, Result.Val.getInt());
Chris Lattner2da04b32007-08-24 05:35:26 +00001432}
1433
Chris Lattner9f0ad962007-08-24 21:20:17 +00001434Value *ScalarExprEmitter::VisitUnaryReal(const UnaryOperator *E) {
1435 Expr *Op = E->getSubExpr();
Chris Lattnerf3bc75a2008-04-04 16:54:41 +00001436 if (Op->getType()->isAnyComplexType())
Mike Stumpdf0fe272009-05-29 15:46:01 +00001437 return CGF.EmitComplexExpr(Op, false, true, false, true).first;
Chris Lattner9f0ad962007-08-24 21:20:17 +00001438 return Visit(Op);
1439}
1440Value *ScalarExprEmitter::VisitUnaryImag(const UnaryOperator *E) {
1441 Expr *Op = E->getSubExpr();
Chris Lattnerf3bc75a2008-04-04 16:54:41 +00001442 if (Op->getType()->isAnyComplexType())
Mike Stumpdf0fe272009-05-29 15:46:01 +00001443 return CGF.EmitComplexExpr(Op, true, false, true, false).second;
Mike Stump4a3999f2009-09-09 13:00:44 +00001444
Mike Stumpdf0fe272009-05-29 15:46:01 +00001445 // __imag on a scalar returns zero. Emit the subexpr to ensure side
1446 // effects are evaluated, but not the actual value.
1447 if (E->isLvalue(CGF.getContext()) == Expr::LV_Valid)
1448 CGF.EmitLValue(Op);
1449 else
1450 CGF.EmitScalarExpr(Op, true);
Owen Anderson0b75f232009-07-31 20:28:54 +00001451 return llvm::Constant::getNullValue(ConvertType(E->getType()));
Chris Lattner9f0ad962007-08-24 21:20:17 +00001452}
1453
Chris Lattner2da04b32007-08-24 05:35:26 +00001454//===----------------------------------------------------------------------===//
1455// Binary Operators
1456//===----------------------------------------------------------------------===//
1457
1458BinOpInfo ScalarExprEmitter::EmitBinOps(const BinaryOperator *E) {
Mike Stumpdf0fe272009-05-29 15:46:01 +00001459 TestAndClearIgnoreResultAssign();
Chris Lattner2da04b32007-08-24 05:35:26 +00001460 BinOpInfo Result;
1461 Result.LHS = Visit(E->getLHS());
1462 Result.RHS = Visit(E->getRHS());
Chris Lattner3d966d62007-08-24 21:00:35 +00001463 Result.Ty = E->getType();
Chris Lattner0bf27622010-06-26 21:48:21 +00001464 Result.Opcode = E->getOpcode();
Chris Lattner2da04b32007-08-24 05:35:26 +00001465 Result.E = E;
1466 return Result;
1467}
1468
Douglas Gregor914af212010-04-23 04:16:32 +00001469LValue ScalarExprEmitter::EmitCompoundAssignLValue(
1470 const CompoundAssignOperator *E,
1471 Value *(ScalarExprEmitter::*Func)(const BinOpInfo &),
Daniel Dunbarc85ea8e2010-06-29 22:00:45 +00001472 Value *&Result) {
Benjamin Kramerd20ef752009-12-25 15:43:36 +00001473 QualType LHSTy = E->getLHS()->getType();
Chris Lattner3d966d62007-08-24 21:00:35 +00001474 BinOpInfo OpInfo;
Douglas Gregor914af212010-04-23 04:16:32 +00001475
Eli Friedman8b7b1b12009-03-28 01:22:36 +00001476 if (E->getComputationResultType()->isAnyComplexType()) {
Mike Stump4a3999f2009-09-09 13:00:44 +00001477 // This needs to go through the complex expression emitter, but it's a tad
1478 // complicated to do that... I'm leaving it out for now. (Note that we do
1479 // actually need the imaginary part of the RHS for multiplication and
1480 // division.)
Eli Friedman8b7b1b12009-03-28 01:22:36 +00001481 CGF.ErrorUnsupported(E, "complex compound assignment");
Daniel Dunbarc85ea8e2010-06-29 22:00:45 +00001482 Result = llvm::UndefValue::get(CGF.ConvertType(E->getType()));
Douglas Gregor914af212010-04-23 04:16:32 +00001483 return LValue();
Eli Friedman8b7b1b12009-03-28 01:22:36 +00001484 }
Douglas Gregor914af212010-04-23 04:16:32 +00001485
Mike Stumpc63428b2009-05-22 19:07:20 +00001486 // Emit the RHS first. __block variables need to have the rhs evaluated
1487 // first, plus this should improve codegen a little.
1488 OpInfo.RHS = Visit(E->getRHS());
1489 OpInfo.Ty = E->getComputationResultType();
Chris Lattner0bf27622010-06-26 21:48:21 +00001490 OpInfo.Opcode = E->getOpcode();
Mike Stumpc63428b2009-05-22 19:07:20 +00001491 OpInfo.E = E;
Eli Friedman8b7b1b12009-03-28 01:22:36 +00001492 // Load/convert the LHS.
Mike Stump3f6f9fe2009-12-16 02:57:00 +00001493 LValue LHSLV = EmitCheckedLValue(E->getLHS());
Chris Lattner3d966d62007-08-24 21:00:35 +00001494 OpInfo.LHS = EmitLoadOfLValue(LHSLV, LHSTy);
Eli Friedman8b7b1b12009-03-28 01:22:36 +00001495 OpInfo.LHS = EmitScalarConversion(OpInfo.LHS, LHSTy,
1496 E->getComputationLHSType());
Douglas Gregor914af212010-04-23 04:16:32 +00001497
Chris Lattner3d966d62007-08-24 21:00:35 +00001498 // Expand the binary operator.
Daniel Dunbarc85ea8e2010-06-29 22:00:45 +00001499 Result = (this->*Func)(OpInfo);
Douglas Gregor914af212010-04-23 04:16:32 +00001500
Daniel Dunbarbfb1cd72008-08-06 02:00:38 +00001501 // Convert the result back to the LHS type.
Eli Friedman8b7b1b12009-03-28 01:22:36 +00001502 Result = EmitScalarConversion(Result, E->getComputationResultType(), LHSTy);
Douglas Gregor914af212010-04-23 04:16:32 +00001503
Mike Stump4a3999f2009-09-09 13:00:44 +00001504 // Store the result value into the LHS lvalue. Bit-fields are handled
1505 // specially because the result is altered by the store, i.e., [C99 6.5.16p1]
1506 // 'An assignment expression has the value of the left operand after the
1507 // assignment...'.
Daniel Dunbarc85ea8e2010-06-29 22:00:45 +00001508 if (LHSLV.isBitField())
1509 CGF.EmitStoreThroughBitfieldLValue(RValue::get(Result), LHSLV, LHSTy,
1510 &Result);
1511 else
Daniel Dunbar9b1335e2008-11-19 09:36:46 +00001512 CGF.EmitStoreThroughLValue(RValue::get(Result), LHSLV, LHSTy);
Daniel Dunbarc85ea8e2010-06-29 22:00:45 +00001513
Douglas Gregor914af212010-04-23 04:16:32 +00001514 return LHSLV;
1515}
1516
1517Value *ScalarExprEmitter::EmitCompoundAssign(const CompoundAssignOperator *E,
1518 Value *(ScalarExprEmitter::*Func)(const BinOpInfo &)) {
1519 bool Ignore = TestAndClearIgnoreResultAssign();
Daniel Dunbarc85ea8e2010-06-29 22:00:45 +00001520 Value *RHS;
1521 LValue LHS = EmitCompoundAssignLValue(E, Func, RHS);
1522
1523 // If the result is clearly ignored, return now.
Mike Stumpdf0fe272009-05-29 15:46:01 +00001524 if (Ignore)
1525 return 0;
Daniel Dunbarc85ea8e2010-06-29 22:00:45 +00001526
1527 // Objective-C property assignment never reloads the value following a store.
1528 if (LHS.isPropertyRef() || LHS.isKVCRef())
1529 return RHS;
1530
1531 // If the lvalue is non-volatile, return the computed value of the assignment.
1532 if (!LHS.isVolatileQualified())
1533 return RHS;
1534
1535 // Otherwise, reload the value.
1536 return EmitLoadOfLValue(LHS, E->getType());
Chris Lattner3d966d62007-08-24 21:00:35 +00001537}
1538
Chris Lattner8ee6a412010-09-11 21:47:09 +00001539void ScalarExprEmitter::EmitUndefinedBehaviorIntegerDivAndRemCheck(
1540 const BinOpInfo &Ops,
1541 llvm::Value *Zero, bool isDiv) {
1542 llvm::BasicBlock *overflowBB = CGF.createBasicBlock("overflow", CGF.CurFn);
1543 llvm::BasicBlock *contBB =
1544 CGF.createBasicBlock(isDiv ? "div.cont" : "rem.cont", CGF.CurFn);
1545
1546 const llvm::IntegerType *Ty = cast<llvm::IntegerType>(Zero->getType());
1547
1548 if (Ops.Ty->hasSignedIntegerRepresentation()) {
1549 llvm::Value *IntMin =
1550 llvm::ConstantInt::get(VMContext,
1551 llvm::APInt::getSignedMinValue(Ty->getBitWidth()));
1552 llvm::Value *NegOne = llvm::ConstantInt::get(Ty, -1ULL);
1553
1554 llvm::Value *Cond1 = Builder.CreateICmpEQ(Ops.RHS, Zero);
1555 llvm::Value *LHSCmp = Builder.CreateICmpEQ(Ops.LHS, IntMin);
1556 llvm::Value *RHSCmp = Builder.CreateICmpEQ(Ops.RHS, NegOne);
1557 llvm::Value *Cond2 = Builder.CreateAnd(LHSCmp, RHSCmp, "and");
1558 Builder.CreateCondBr(Builder.CreateOr(Cond1, Cond2, "or"),
1559 overflowBB, contBB);
1560 } else {
1561 CGF.Builder.CreateCondBr(Builder.CreateICmpEQ(Ops.RHS, Zero),
1562 overflowBB, contBB);
1563 }
1564 EmitOverflowBB(overflowBB);
1565 Builder.SetInsertPoint(contBB);
1566}
Chris Lattner3d966d62007-08-24 21:00:35 +00001567
Chris Lattner2da04b32007-08-24 05:35:26 +00001568Value *ScalarExprEmitter::EmitDiv(const BinOpInfo &Ops) {
Chris Lattner8ee6a412010-09-11 21:47:09 +00001569 if (isTrapvOverflowBehavior()) {
1570 llvm::Value *Zero = llvm::Constant::getNullValue(ConvertType(Ops.Ty));
1571
1572 if (Ops.Ty->isIntegerType())
1573 EmitUndefinedBehaviorIntegerDivAndRemCheck(Ops, Zero, true);
1574 else if (Ops.Ty->isRealFloatingType()) {
1575 llvm::BasicBlock *overflowBB = CGF.createBasicBlock("overflow",
1576 CGF.CurFn);
1577 llvm::BasicBlock *DivCont = CGF.createBasicBlock("div.cont", CGF.CurFn);
1578 CGF.Builder.CreateCondBr(Builder.CreateFCmpOEQ(Ops.RHS, Zero),
1579 overflowBB, DivCont);
1580 EmitOverflowBB(overflowBB);
1581 Builder.SetInsertPoint(DivCont);
1582 }
1583 }
Duncan Sands998f9d92010-02-15 16:14:01 +00001584 if (Ops.LHS->getType()->isFPOrFPVectorTy())
Chris Lattner2da04b32007-08-24 05:35:26 +00001585 return Builder.CreateFDiv(Ops.LHS, Ops.RHS, "div");
Douglas Gregor5cc2c8b2010-07-23 15:58:24 +00001586 else if (Ops.Ty->hasUnsignedIntegerRepresentation())
Chris Lattner2da04b32007-08-24 05:35:26 +00001587 return Builder.CreateUDiv(Ops.LHS, Ops.RHS, "div");
1588 else
1589 return Builder.CreateSDiv(Ops.LHS, Ops.RHS, "div");
1590}
1591
1592Value *ScalarExprEmitter::EmitRem(const BinOpInfo &Ops) {
1593 // Rem in C can't be a floating point type: C99 6.5.5p2.
Chris Lattner8ee6a412010-09-11 21:47:09 +00001594 if (isTrapvOverflowBehavior()) {
1595 llvm::Value *Zero = llvm::Constant::getNullValue(ConvertType(Ops.Ty));
1596
1597 if (Ops.Ty->isIntegerType())
1598 EmitUndefinedBehaviorIntegerDivAndRemCheck(Ops, Zero, false);
1599 }
1600
Chris Lattner3d966d62007-08-24 21:00:35 +00001601 if (Ops.Ty->isUnsignedIntegerType())
Chris Lattner2da04b32007-08-24 05:35:26 +00001602 return Builder.CreateURem(Ops.LHS, Ops.RHS, "rem");
1603 else
1604 return Builder.CreateSRem(Ops.LHS, Ops.RHS, "rem");
1605}
1606
Mike Stump0c61b732009-04-01 20:28:16 +00001607Value *ScalarExprEmitter::EmitOverflowCheckedBinOp(const BinOpInfo &Ops) {
1608 unsigned IID;
1609 unsigned OpID = 0;
Mike Stump40968592009-04-02 01:03:55 +00001610
Chris Lattner0bf27622010-06-26 21:48:21 +00001611 switch (Ops.Opcode) {
John McCalle3027922010-08-25 11:45:40 +00001612 case BO_Add:
1613 case BO_AddAssign:
Mike Stumpd3e38852009-04-02 18:15:54 +00001614 OpID = 1;
1615 IID = llvm::Intrinsic::sadd_with_overflow;
1616 break;
John McCalle3027922010-08-25 11:45:40 +00001617 case BO_Sub:
1618 case BO_SubAssign:
Mike Stumpd3e38852009-04-02 18:15:54 +00001619 OpID = 2;
1620 IID = llvm::Intrinsic::ssub_with_overflow;
1621 break;
John McCalle3027922010-08-25 11:45:40 +00001622 case BO_Mul:
1623 case BO_MulAssign:
Mike Stumpd3e38852009-04-02 18:15:54 +00001624 OpID = 3;
1625 IID = llvm::Intrinsic::smul_with_overflow;
1626 break;
1627 default:
1628 assert(false && "Unsupported operation for overflow detection");
Daniel Dunbard92123f2009-04-08 16:23:09 +00001629 IID = 0;
Mike Stump0c61b732009-04-01 20:28:16 +00001630 }
Mike Stumpd3e38852009-04-02 18:15:54 +00001631 OpID <<= 1;
1632 OpID |= 1;
1633
Mike Stump0c61b732009-04-01 20:28:16 +00001634 const llvm::Type *opTy = CGF.CGM.getTypes().ConvertType(Ops.Ty);
1635
1636 llvm::Function *intrinsic = CGF.CGM.getIntrinsic(IID, &opTy, 1);
1637
1638 Value *resultAndOverflow = Builder.CreateCall2(intrinsic, Ops.LHS, Ops.RHS);
1639 Value *result = Builder.CreateExtractValue(resultAndOverflow, 0);
1640 Value *overflow = Builder.CreateExtractValue(resultAndOverflow, 1);
1641
1642 // Branch in case of overflow.
David Chisnalldd84ef12010-09-17 18:29:54 +00001643 llvm::BasicBlock *initialBB = Builder.GetInsertBlock();
Chris Lattner8139c982010-08-07 00:20:46 +00001644 llvm::BasicBlock *overflowBB = CGF.createBasicBlock("overflow", CGF.CurFn);
1645 llvm::BasicBlock *continueBB = CGF.createBasicBlock("nooverflow", CGF.CurFn);
Mike Stump0c61b732009-04-01 20:28:16 +00001646
1647 Builder.CreateCondBr(overflow, overflowBB, continueBB);
1648
Chris Lattner8139c982010-08-07 00:20:46 +00001649 // Handle overflow with llvm.trap.
David Chisnalldd84ef12010-09-17 18:29:54 +00001650 const std::string *handlerName =
1651 &CGF.getContext().getLangOptions().OverflowHandler;
1652 if (handlerName->empty()) {
1653 EmitOverflowBB(overflowBB);
1654 Builder.SetInsertPoint(continueBB);
1655 return result;
1656 }
1657
1658 // If an overflow handler is set, then we want to call it and then use its
1659 // result, if it returns.
1660 Builder.SetInsertPoint(overflowBB);
1661
1662 // Get the overflow handler.
1663 const llvm::Type *Int8Ty = llvm::Type::getInt8Ty(VMContext);
1664 std::vector<const llvm::Type*> argTypes;
1665 argTypes.push_back(CGF.Int64Ty); argTypes.push_back(CGF.Int64Ty);
1666 argTypes.push_back(Int8Ty); argTypes.push_back(Int8Ty);
1667 llvm::FunctionType *handlerTy =
1668 llvm::FunctionType::get(CGF.Int64Ty, argTypes, true);
1669 llvm::Value *handler = CGF.CGM.CreateRuntimeFunction(handlerTy, *handlerName);
1670
1671 // Sign extend the args to 64-bit, so that we can use the same handler for
1672 // all types of overflow.
1673 llvm::Value *lhs = Builder.CreateSExt(Ops.LHS, CGF.Int64Ty);
1674 llvm::Value *rhs = Builder.CreateSExt(Ops.RHS, CGF.Int64Ty);
1675
1676 // Call the handler with the two arguments, the operation, and the size of
1677 // the result.
1678 llvm::Value *handlerResult = Builder.CreateCall4(handler, lhs, rhs,
1679 Builder.getInt8(OpID),
1680 Builder.getInt8(cast<llvm::IntegerType>(opTy)->getBitWidth()));
1681
1682 // Truncate the result back to the desired size.
1683 handlerResult = Builder.CreateTrunc(handlerResult, opTy);
1684 Builder.CreateBr(continueBB);
1685
Mike Stump0c61b732009-04-01 20:28:16 +00001686 Builder.SetInsertPoint(continueBB);
David Chisnalldd84ef12010-09-17 18:29:54 +00001687 llvm::PHINode *phi = Builder.CreatePHI(opTy);
1688 phi->reserveOperandSpace(2);
1689 phi->addIncoming(result, initialBB);
1690 phi->addIncoming(handlerResult, overflowBB);
1691
1692 return phi;
Mike Stump0c61b732009-04-01 20:28:16 +00001693}
Chris Lattner2da04b32007-08-24 05:35:26 +00001694
1695Value *ScalarExprEmitter::EmitAdd(const BinOpInfo &Ops) {
Steve Naroff6b712a72009-07-14 18:25:06 +00001696 if (!Ops.Ty->isAnyPointerType()) {
Douglas Gregor5cc2c8b2010-07-23 15:58:24 +00001697 if (Ops.Ty->hasSignedIntegerRepresentation()) {
Chris Lattner51924e512010-06-26 21:25:03 +00001698 switch (CGF.getContext().getLangOptions().getSignedOverflowBehavior()) {
1699 case LangOptions::SOB_Undefined:
1700 return Builder.CreateNSWAdd(Ops.LHS, Ops.RHS, "add");
1701 case LangOptions::SOB_Defined:
1702 return Builder.CreateAdd(Ops.LHS, Ops.RHS, "add");
1703 case LangOptions::SOB_Trapping:
1704 return EmitOverflowCheckedBinOp(Ops);
1705 }
1706 }
1707
Duncan Sands998f9d92010-02-15 16:14:01 +00001708 if (Ops.LHS->getType()->isFPOrFPVectorTy())
Chris Lattner94dfae22009-06-17 06:36:24 +00001709 return Builder.CreateFAdd(Ops.LHS, Ops.RHS, "add");
Dan Gohmanb3210392009-08-12 01:16:29 +00001710
Chris Lattner2da04b32007-08-24 05:35:26 +00001711 return Builder.CreateAdd(Ops.LHS, Ops.RHS, "add");
Mike Stump0c61b732009-04-01 20:28:16 +00001712 }
Eli Friedmane381f7e2009-03-28 02:45:41 +00001713
Chris Lattnerfa20e952010-06-26 21:52:32 +00001714 // Must have binary (not unary) expr here. Unary pointer decrement doesn't
Chris Lattner0bf27622010-06-26 21:48:21 +00001715 // use this path.
1716 const BinaryOperator *BinOp = cast<BinaryOperator>(Ops.E);
1717
Steve Naroff7cae42b2009-07-10 23:34:53 +00001718 if (Ops.Ty->isPointerType() &&
Ted Kremenekc23c7e62009-07-29 21:53:49 +00001719 Ops.Ty->getAs<PointerType>()->isVariableArrayType()) {
Eli Friedmane381f7e2009-03-28 02:45:41 +00001720 // The amount of the addition needs to account for the VLA size
Chris Lattner0bf27622010-06-26 21:48:21 +00001721 CGF.ErrorUnsupported(BinOp, "VLA pointer addition");
Eli Friedmane381f7e2009-03-28 02:45:41 +00001722 }
Chris Lattner0bf27622010-06-26 21:48:21 +00001723
Chris Lattner20455f22008-01-03 06:36:51 +00001724 Value *Ptr, *Idx;
1725 Expr *IdxExp;
Chris Lattner0bf27622010-06-26 21:48:21 +00001726 const PointerType *PT = BinOp->getLHS()->getType()->getAs<PointerType>();
Mike Stump4a3999f2009-09-09 13:00:44 +00001727 const ObjCObjectPointerType *OPT =
Chris Lattner0bf27622010-06-26 21:48:21 +00001728 BinOp->getLHS()->getType()->getAs<ObjCObjectPointerType>();
Steve Naroff7cae42b2009-07-10 23:34:53 +00001729 if (PT || OPT) {
Chris Lattner20455f22008-01-03 06:36:51 +00001730 Ptr = Ops.LHS;
1731 Idx = Ops.RHS;
Chris Lattner0bf27622010-06-26 21:48:21 +00001732 IdxExp = BinOp->getRHS();
Steve Naroff7cae42b2009-07-10 23:34:53 +00001733 } else { // int + pointer
Chris Lattner0bf27622010-06-26 21:48:21 +00001734 PT = BinOp->getRHS()->getType()->getAs<PointerType>();
1735 OPT = BinOp->getRHS()->getType()->getAs<ObjCObjectPointerType>();
Steve Naroff7cae42b2009-07-10 23:34:53 +00001736 assert((PT || OPT) && "Invalid add expr");
Chris Lattner20455f22008-01-03 06:36:51 +00001737 Ptr = Ops.RHS;
1738 Idx = Ops.LHS;
Chris Lattner0bf27622010-06-26 21:48:21 +00001739 IdxExp = BinOp->getLHS();
Chris Lattner20455f22008-01-03 06:36:51 +00001740 }
1741
1742 unsigned Width = cast<llvm::IntegerType>(Idx->getType())->getBitWidth();
Sanjiv Gupta47425152009-04-24 02:40:57 +00001743 if (Width < CGF.LLVMPointerWidth) {
Chris Lattner20455f22008-01-03 06:36:51 +00001744 // Zero or sign extend the pointer value based on whether the index is
1745 // signed or not.
Chris Lattner5e016ae2010-06-27 07:15:29 +00001746 const llvm::Type *IdxType = CGF.IntPtrTy;
Chris Lattner0f398c42008-07-26 22:37:01 +00001747 if (IdxExp->getType()->isSignedIntegerType())
Chris Lattner20455f22008-01-03 06:36:51 +00001748 Idx = Builder.CreateSExt(Idx, IdxType, "idx.ext");
1749 else
1750 Idx = Builder.CreateZExt(Idx, IdxType, "idx.ext");
1751 }
Steve Naroff7cae42b2009-07-10 23:34:53 +00001752 const QualType ElementType = PT ? PT->getPointeeType() : OPT->getPointeeType();
Mike Stump4a3999f2009-09-09 13:00:44 +00001753 // Handle interface types, which are not represented with a concrete type.
John McCall8b07ec22010-05-15 11:32:37 +00001754 if (const ObjCObjectType *OIT = ElementType->getAs<ObjCObjectType>()) {
Mike Stump4a3999f2009-09-09 13:00:44 +00001755 llvm::Value *InterfaceSize =
Owen Andersonb7a2fe62009-07-24 23:12:58 +00001756 llvm::ConstantInt::get(Idx->getType(),
Ken Dyck40775002010-01-11 17:06:35 +00001757 CGF.getContext().getTypeSizeInChars(OIT).getQuantity());
Daniel Dunbaref2ffbc2009-04-25 05:08:32 +00001758 Idx = Builder.CreateMul(Idx, InterfaceSize);
Benjamin Kramerabd5b902009-10-13 10:07:13 +00001759 const llvm::Type *i8Ty = llvm::Type::getInt8PtrTy(VMContext);
Daniel Dunbaref2ffbc2009-04-25 05:08:32 +00001760 Value *Casted = Builder.CreateBitCast(Ptr, i8Ty);
1761 Value *Res = Builder.CreateGEP(Casted, Idx, "add.ptr");
1762 return Builder.CreateBitCast(Res, Ptr->getType());
Mike Stump4a3999f2009-09-09 13:00:44 +00001763 }
Daniel Dunbaref2ffbc2009-04-25 05:08:32 +00001764
Mike Stump4a3999f2009-09-09 13:00:44 +00001765 // Explicitly handle GNU void* and function pointer arithmetic extensions. The
1766 // GNU void* casts amount to no-ops since our void* type is i8*, but this is
1767 // future proof.
Daniel Dunbar42a8cd32009-01-23 18:51:09 +00001768 if (ElementType->isVoidType() || ElementType->isFunctionType()) {
Benjamin Kramerabd5b902009-10-13 10:07:13 +00001769 const llvm::Type *i8Ty = llvm::Type::getInt8PtrTy(VMContext);
Daniel Dunbar42a8cd32009-01-23 18:51:09 +00001770 Value *Casted = Builder.CreateBitCast(Ptr, i8Ty);
Daniel Dunbaref2ffbc2009-04-25 05:08:32 +00001771 Value *Res = Builder.CreateGEP(Casted, Idx, "add.ptr");
Daniel Dunbar42a8cd32009-01-23 18:51:09 +00001772 return Builder.CreateBitCast(Res, Ptr->getType());
Mike Stump4a3999f2009-09-09 13:00:44 +00001773 }
1774
Dan Gohman43b44842009-08-12 00:33:55 +00001775 return Builder.CreateInBoundsGEP(Ptr, Idx, "add.ptr");
Chris Lattner2da04b32007-08-24 05:35:26 +00001776}
1777
1778Value *ScalarExprEmitter::EmitSub(const BinOpInfo &Ops) {
Mike Stump0c61b732009-04-01 20:28:16 +00001779 if (!isa<llvm::PointerType>(Ops.LHS->getType())) {
Douglas Gregor5cc2c8b2010-07-23 15:58:24 +00001780 if (Ops.Ty->hasSignedIntegerRepresentation()) {
Chris Lattner51924e512010-06-26 21:25:03 +00001781 switch (CGF.getContext().getLangOptions().getSignedOverflowBehavior()) {
1782 case LangOptions::SOB_Undefined:
1783 return Builder.CreateNSWSub(Ops.LHS, Ops.RHS, "sub");
1784 case LangOptions::SOB_Defined:
1785 return Builder.CreateSub(Ops.LHS, Ops.RHS, "sub");
1786 case LangOptions::SOB_Trapping:
1787 return EmitOverflowCheckedBinOp(Ops);
1788 }
1789 }
1790
Duncan Sands998f9d92010-02-15 16:14:01 +00001791 if (Ops.LHS->getType()->isFPOrFPVectorTy())
Chris Lattner94dfae22009-06-17 06:36:24 +00001792 return Builder.CreateFSub(Ops.LHS, Ops.RHS, "sub");
Chris Lattner5902e7b2010-03-29 17:28:16 +00001793
Chris Lattner2da04b32007-08-24 05:35:26 +00001794 return Builder.CreateSub(Ops.LHS, Ops.RHS, "sub");
Mike Stump0c61b732009-04-01 20:28:16 +00001795 }
Chris Lattner3d966d62007-08-24 21:00:35 +00001796
Chris Lattner0bf27622010-06-26 21:48:21 +00001797 // Must have binary (not unary) expr here. Unary pointer increment doesn't
1798 // use this path.
1799 const BinaryOperator *BinOp = cast<BinaryOperator>(Ops.E);
1800
1801 if (BinOp->getLHS()->getType()->isPointerType() &&
1802 BinOp->getLHS()->getType()->getAs<PointerType>()->isVariableArrayType()) {
Eli Friedmane381f7e2009-03-28 02:45:41 +00001803 // The amount of the addition needs to account for the VLA size for
1804 // ptr-int
1805 // The amount of the division needs to account for the VLA size for
1806 // ptr-ptr.
Chris Lattner0bf27622010-06-26 21:48:21 +00001807 CGF.ErrorUnsupported(BinOp, "VLA pointer subtraction");
Eli Friedmane381f7e2009-03-28 02:45:41 +00001808 }
1809
Chris Lattner0bf27622010-06-26 21:48:21 +00001810 const QualType LHSType = BinOp->getLHS()->getType();
Steve Naroff7cae42b2009-07-10 23:34:53 +00001811 const QualType LHSElementType = LHSType->getPointeeType();
Daniel Dunbarbfb1cd72008-08-06 02:00:38 +00001812 if (!isa<llvm::PointerType>(Ops.RHS->getType())) {
1813 // pointer - int
1814 Value *Idx = Ops.RHS;
1815 unsigned Width = cast<llvm::IntegerType>(Idx->getType())->getBitWidth();
Sanjiv Gupta47425152009-04-24 02:40:57 +00001816 if (Width < CGF.LLVMPointerWidth) {
Daniel Dunbarbfb1cd72008-08-06 02:00:38 +00001817 // Zero or sign extend the pointer value based on whether the index is
1818 // signed or not.
Chris Lattner5e016ae2010-06-27 07:15:29 +00001819 const llvm::Type *IdxType = CGF.IntPtrTy;
Chris Lattner0bf27622010-06-26 21:48:21 +00001820 if (BinOp->getRHS()->getType()->isSignedIntegerType())
Daniel Dunbarbfb1cd72008-08-06 02:00:38 +00001821 Idx = Builder.CreateSExt(Idx, IdxType, "idx.ext");
1822 else
1823 Idx = Builder.CreateZExt(Idx, IdxType, "idx.ext");
1824 }
1825 Idx = Builder.CreateNeg(Idx, "sub.ptr.neg");
Daniel Dunbar42a8cd32009-01-23 18:51:09 +00001826
Mike Stump4a3999f2009-09-09 13:00:44 +00001827 // Handle interface types, which are not represented with a concrete type.
John McCall8b07ec22010-05-15 11:32:37 +00001828 if (const ObjCObjectType *OIT = LHSElementType->getAs<ObjCObjectType>()) {
Mike Stump4a3999f2009-09-09 13:00:44 +00001829 llvm::Value *InterfaceSize =
Owen Andersonb7a2fe62009-07-24 23:12:58 +00001830 llvm::ConstantInt::get(Idx->getType(),
Ken Dyck40775002010-01-11 17:06:35 +00001831 CGF.getContext().
1832 getTypeSizeInChars(OIT).getQuantity());
Daniel Dunbaref2ffbc2009-04-25 05:08:32 +00001833 Idx = Builder.CreateMul(Idx, InterfaceSize);
Benjamin Kramerabd5b902009-10-13 10:07:13 +00001834 const llvm::Type *i8Ty = llvm::Type::getInt8PtrTy(VMContext);
Daniel Dunbaref2ffbc2009-04-25 05:08:32 +00001835 Value *LHSCasted = Builder.CreateBitCast(Ops.LHS, i8Ty);
1836 Value *Res = Builder.CreateGEP(LHSCasted, Idx, "add.ptr");
1837 return Builder.CreateBitCast(Res, Ops.LHS->getType());
Mike Stump4a3999f2009-09-09 13:00:44 +00001838 }
Daniel Dunbaref2ffbc2009-04-25 05:08:32 +00001839
Daniel Dunbar42a8cd32009-01-23 18:51:09 +00001840 // Explicitly handle GNU void* and function pointer arithmetic
Mike Stump4a3999f2009-09-09 13:00:44 +00001841 // extensions. The GNU void* casts amount to no-ops since our void* type is
1842 // i8*, but this is future proof.
Daniel Dunbar42a8cd32009-01-23 18:51:09 +00001843 if (LHSElementType->isVoidType() || LHSElementType->isFunctionType()) {
Benjamin Kramerabd5b902009-10-13 10:07:13 +00001844 const llvm::Type *i8Ty = llvm::Type::getInt8PtrTy(VMContext);
Daniel Dunbar42a8cd32009-01-23 18:51:09 +00001845 Value *LHSCasted = Builder.CreateBitCast(Ops.LHS, i8Ty);
1846 Value *Res = Builder.CreateGEP(LHSCasted, Idx, "sub.ptr");
1847 return Builder.CreateBitCast(Res, Ops.LHS->getType());
Mike Stump4a3999f2009-09-09 13:00:44 +00001848 }
1849
Dan Gohman43b44842009-08-12 00:33:55 +00001850 return Builder.CreateInBoundsGEP(Ops.LHS, Idx, "sub.ptr");
Daniel Dunbar5aa55d52008-08-05 00:47:03 +00001851 } else {
Daniel Dunbarbfb1cd72008-08-06 02:00:38 +00001852 // pointer - pointer
1853 Value *LHS = Ops.LHS;
1854 Value *RHS = Ops.RHS;
Mike Stump4a3999f2009-09-09 13:00:44 +00001855
Ken Dyck40775002010-01-11 17:06:35 +00001856 CharUnits ElementSize;
Daniel Dunbar5aa55d52008-08-05 00:47:03 +00001857
Chris Lattner60dcdc72009-02-11 07:21:43 +00001858 // Handle GCC extension for pointer arithmetic on void* and function pointer
1859 // types.
1860 if (LHSElementType->isVoidType() || LHSElementType->isFunctionType()) {
Ken Dyck40775002010-01-11 17:06:35 +00001861 ElementSize = CharUnits::One();
Daniel Dunbarbfb1cd72008-08-06 02:00:38 +00001862 } else {
Ken Dyck40775002010-01-11 17:06:35 +00001863 ElementSize = CGF.getContext().getTypeSizeInChars(LHSElementType);
Daniel Dunbarbfb1cd72008-08-06 02:00:38 +00001864 }
Mike Stump4a3999f2009-09-09 13:00:44 +00001865
Daniel Dunbarbfb1cd72008-08-06 02:00:38 +00001866 const llvm::Type *ResultType = ConvertType(Ops.Ty);
1867 LHS = Builder.CreatePtrToInt(LHS, ResultType, "sub.ptr.lhs.cast");
1868 RHS = Builder.CreatePtrToInt(RHS, ResultType, "sub.ptr.rhs.cast");
1869 Value *BytesBetween = Builder.CreateSub(LHS, RHS, "sub.ptr.sub");
Mike Stump4a3999f2009-09-09 13:00:44 +00001870
Chris Lattner60dcdc72009-02-11 07:21:43 +00001871 // Optimize out the shift for element size of 1.
Ken Dyck40775002010-01-11 17:06:35 +00001872 if (ElementSize.isOne())
Chris Lattner60dcdc72009-02-11 07:21:43 +00001873 return BytesBetween;
Dan Gohman1cebe562009-08-11 22:40:09 +00001874
1875 // Otherwise, do a full sdiv. This uses the "exact" form of sdiv, since
Mike Stump4a3999f2009-09-09 13:00:44 +00001876 // pointer difference in C is only defined in the case where both operands
1877 // are pointing to elements of an array.
Ken Dyck40775002010-01-11 17:06:35 +00001878 Value *BytesPerElt =
1879 llvm::ConstantInt::get(ResultType, ElementSize.getQuantity());
Dan Gohman1cebe562009-08-11 22:40:09 +00001880 return Builder.CreateExactSDiv(BytesBetween, BytesPerElt, "sub.ptr.div");
Chris Lattner2da04b32007-08-24 05:35:26 +00001881 }
Chris Lattner2da04b32007-08-24 05:35:26 +00001882}
1883
1884Value *ScalarExprEmitter::EmitShl(const BinOpInfo &Ops) {
1885 // LLVM requires the LHS and RHS to be the same type: promote or truncate the
1886 // RHS to the same size as the LHS.
1887 Value *RHS = Ops.RHS;
1888 if (Ops.LHS->getType() != RHS->getType())
1889 RHS = Builder.CreateIntCast(RHS, Ops.LHS->getType(), false, "sh_prom");
Mike Stump4a3999f2009-09-09 13:00:44 +00001890
Mike Stumpba6a0c42009-12-14 21:58:14 +00001891 if (CGF.CatchUndefined
1892 && isa<llvm::IntegerType>(Ops.LHS->getType())) {
1893 unsigned Width = cast<llvm::IntegerType>(Ops.LHS->getType())->getBitWidth();
1894 llvm::BasicBlock *Cont = CGF.createBasicBlock("cont");
1895 CGF.Builder.CreateCondBr(Builder.CreateICmpULT(RHS,
1896 llvm::ConstantInt::get(RHS->getType(), Width)),
Mike Stumpe8c3b3e2009-12-15 00:35:12 +00001897 Cont, CGF.getTrapBB());
Mike Stumpba6a0c42009-12-14 21:58:14 +00001898 CGF.EmitBlock(Cont);
1899 }
1900
Chris Lattner2da04b32007-08-24 05:35:26 +00001901 return Builder.CreateShl(Ops.LHS, RHS, "shl");
1902}
1903
1904Value *ScalarExprEmitter::EmitShr(const BinOpInfo &Ops) {
1905 // LLVM requires the LHS and RHS to be the same type: promote or truncate the
1906 // RHS to the same size as the LHS.
1907 Value *RHS = Ops.RHS;
1908 if (Ops.LHS->getType() != RHS->getType())
1909 RHS = Builder.CreateIntCast(RHS, Ops.LHS->getType(), false, "sh_prom");
Mike Stump4a3999f2009-09-09 13:00:44 +00001910
Mike Stumpba6a0c42009-12-14 21:58:14 +00001911 if (CGF.CatchUndefined
1912 && isa<llvm::IntegerType>(Ops.LHS->getType())) {
1913 unsigned Width = cast<llvm::IntegerType>(Ops.LHS->getType())->getBitWidth();
1914 llvm::BasicBlock *Cont = CGF.createBasicBlock("cont");
1915 CGF.Builder.CreateCondBr(Builder.CreateICmpULT(RHS,
1916 llvm::ConstantInt::get(RHS->getType(), Width)),
Mike Stumpe8c3b3e2009-12-15 00:35:12 +00001917 Cont, CGF.getTrapBB());
Mike Stumpba6a0c42009-12-14 21:58:14 +00001918 CGF.EmitBlock(Cont);
1919 }
1920
Douglas Gregor5cc2c8b2010-07-23 15:58:24 +00001921 if (Ops.Ty->hasUnsignedIntegerRepresentation())
Chris Lattner2da04b32007-08-24 05:35:26 +00001922 return Builder.CreateLShr(Ops.LHS, RHS, "shr");
1923 return Builder.CreateAShr(Ops.LHS, RHS, "shr");
1924}
1925
1926Value *ScalarExprEmitter::EmitCompare(const BinaryOperator *E,unsigned UICmpOpc,
1927 unsigned SICmpOpc, unsigned FCmpOpc) {
Mike Stumpdf0fe272009-05-29 15:46:01 +00001928 TestAndClearIgnoreResultAssign();
Chris Lattner42e6b812007-08-26 16:34:22 +00001929 Value *Result;
Chris Lattner2da04b32007-08-24 05:35:26 +00001930 QualType LHSTy = E->getLHS()->getType();
John McCall7a9aac22010-08-23 01:21:21 +00001931 if (const MemberPointerType *MPT = LHSTy->getAs<MemberPointerType>()) {
John McCalle3027922010-08-25 11:45:40 +00001932 assert(E->getOpcode() == BO_EQ ||
1933 E->getOpcode() == BO_NE);
John McCalla1dee5302010-08-22 10:59:02 +00001934 Value *LHS = CGF.EmitScalarExpr(E->getLHS());
1935 Value *RHS = CGF.EmitScalarExpr(E->getRHS());
John McCall7a9aac22010-08-23 01:21:21 +00001936 Result = CGF.CGM.getCXXABI().EmitMemberPointerComparison(
John McCalle3027922010-08-25 11:45:40 +00001937 CGF, LHS, RHS, MPT, E->getOpcode() == BO_NE);
Eli Friedman1762cf22009-12-11 07:36:43 +00001938 } else if (!LHSTy->isAnyComplexType()) {
Chris Lattner2da04b32007-08-24 05:35:26 +00001939 Value *LHS = Visit(E->getLHS());
1940 Value *RHS = Visit(E->getRHS());
Mike Stump4a3999f2009-09-09 13:00:44 +00001941
Duncan Sands998f9d92010-02-15 16:14:01 +00001942 if (LHS->getType()->isFPOrFPVectorTy()) {
Nate Begemanfe79ca22008-07-25 20:16:05 +00001943 Result = Builder.CreateFCmp((llvm::CmpInst::Predicate)FCmpOpc,
Chris Lattner2da04b32007-08-24 05:35:26 +00001944 LHS, RHS, "cmp");
Douglas Gregor5cc2c8b2010-07-23 15:58:24 +00001945 } else if (LHSTy->hasSignedIntegerRepresentation()) {
Eli Friedman3c285242008-05-29 15:09:15 +00001946 Result = Builder.CreateICmp((llvm::ICmpInst::Predicate)SICmpOpc,
Chris Lattner2da04b32007-08-24 05:35:26 +00001947 LHS, RHS, "cmp");
1948 } else {
Eli Friedman3c285242008-05-29 15:09:15 +00001949 // Unsigned integers and pointers.
1950 Result = Builder.CreateICmp((llvm::ICmpInst::Predicate)UICmpOpc,
Chris Lattner2da04b32007-08-24 05:35:26 +00001951 LHS, RHS, "cmp");
1952 }
Chris Lattner2a7deb62009-07-08 01:08:03 +00001953
1954 // If this is a vector comparison, sign extend the result to the appropriate
1955 // vector integer type and return it (don't convert to bool).
1956 if (LHSTy->isVectorType())
1957 return Builder.CreateSExt(Result, ConvertType(E->getType()), "sext");
Mike Stump4a3999f2009-09-09 13:00:44 +00001958
Chris Lattner2da04b32007-08-24 05:35:26 +00001959 } else {
1960 // Complex Comparison: can only be an equality comparison.
1961 CodeGenFunction::ComplexPairTy LHS = CGF.EmitComplexExpr(E->getLHS());
1962 CodeGenFunction::ComplexPairTy RHS = CGF.EmitComplexExpr(E->getRHS());
Mike Stump4a3999f2009-09-09 13:00:44 +00001963
John McCall9dd450b2009-09-21 23:43:11 +00001964 QualType CETy = LHSTy->getAs<ComplexType>()->getElementType();
Mike Stump4a3999f2009-09-09 13:00:44 +00001965
Chris Lattner42e6b812007-08-26 16:34:22 +00001966 Value *ResultR, *ResultI;
Chris Lattner2da04b32007-08-24 05:35:26 +00001967 if (CETy->isRealFloatingType()) {
1968 ResultR = Builder.CreateFCmp((llvm::FCmpInst::Predicate)FCmpOpc,
1969 LHS.first, RHS.first, "cmp.r");
1970 ResultI = Builder.CreateFCmp((llvm::FCmpInst::Predicate)FCmpOpc,
1971 LHS.second, RHS.second, "cmp.i");
1972 } else {
1973 // Complex comparisons can only be equality comparisons. As such, signed
1974 // and unsigned opcodes are the same.
1975 ResultR = Builder.CreateICmp((llvm::ICmpInst::Predicate)UICmpOpc,
1976 LHS.first, RHS.first, "cmp.r");
1977 ResultI = Builder.CreateICmp((llvm::ICmpInst::Predicate)UICmpOpc,
1978 LHS.second, RHS.second, "cmp.i");
1979 }
Mike Stump4a3999f2009-09-09 13:00:44 +00001980
John McCalle3027922010-08-25 11:45:40 +00001981 if (E->getOpcode() == BO_EQ) {
Chris Lattner2da04b32007-08-24 05:35:26 +00001982 Result = Builder.CreateAnd(ResultR, ResultI, "and.ri");
1983 } else {
John McCalle3027922010-08-25 11:45:40 +00001984 assert(E->getOpcode() == BO_NE &&
Chris Lattner2da04b32007-08-24 05:35:26 +00001985 "Complex comparison other than == or != ?");
1986 Result = Builder.CreateOr(ResultR, ResultI, "or.ri");
1987 }
1988 }
Nuno Lopesa0abe622009-01-11 23:22:37 +00001989
1990 return EmitScalarConversion(Result, CGF.getContext().BoolTy, E->getType());
Chris Lattner2da04b32007-08-24 05:35:26 +00001991}
1992
1993Value *ScalarExprEmitter::VisitBinAssign(const BinaryOperator *E) {
Mike Stumpdf0fe272009-05-29 15:46:01 +00001994 bool Ignore = TestAndClearIgnoreResultAssign();
1995
1996 // __block variables need to have the rhs evaluated first, plus this should
1997 // improve codegen just a little.
Chris Lattner2da04b32007-08-24 05:35:26 +00001998 Value *RHS = Visit(E->getRHS());
Mike Stump3f6f9fe2009-12-16 02:57:00 +00001999 LValue LHS = EmitCheckedLValue(E->getLHS());
Mike Stump4a3999f2009-09-09 13:00:44 +00002000
Daniel Dunbar9b1335e2008-11-19 09:36:46 +00002001 // Store the value into the LHS. Bit-fields are handled specially
Daniel Dunbar7689f6b2008-11-19 11:54:05 +00002002 // because the result is altered by the store, i.e., [C99 6.5.16p1]
2003 // 'An assignment expression has the value of the left operand after
Eli Friedmane381f7e2009-03-28 02:45:41 +00002004 // the assignment...'.
Daniel Dunbarc85ea8e2010-06-29 22:00:45 +00002005 if (LHS.isBitField())
2006 CGF.EmitStoreThroughBitfieldLValue(RValue::get(RHS), LHS, E->getType(),
2007 &RHS);
2008 else
Daniel Dunbar9b1335e2008-11-19 09:36:46 +00002009 CGF.EmitStoreThroughLValue(RValue::get(RHS), LHS, E->getType());
Daniel Dunbarc85ea8e2010-06-29 22:00:45 +00002010
2011 // If the result is clearly ignored, return now.
Mike Stumpdf0fe272009-05-29 15:46:01 +00002012 if (Ignore)
2013 return 0;
Daniel Dunbarc85ea8e2010-06-29 22:00:45 +00002014
2015 // Objective-C property assignment never reloads the value following a store.
2016 if (LHS.isPropertyRef() || LHS.isKVCRef())
2017 return RHS;
2018
2019 // If the lvalue is non-volatile, return the computed value of the assignment.
2020 if (!LHS.isVolatileQualified())
2021 return RHS;
2022
2023 // Otherwise, reload the value.
Mike Stumpdf0fe272009-05-29 15:46:01 +00002024 return EmitLoadOfLValue(LHS, E->getType());
Chris Lattner2da04b32007-08-24 05:35:26 +00002025}
2026
2027Value *ScalarExprEmitter::VisitBinLAnd(const BinaryOperator *E) {
Chris Lattner671fec82009-10-17 04:24:20 +00002028 const llvm::Type *ResTy = ConvertType(E->getType());
2029
Chris Lattner8b084582008-11-12 08:26:50 +00002030 // If we have 0 && RHS, see if we can elide RHS, if so, just return 0.
2031 // If we have 1 && X, just emit X without inserting the control flow.
2032 if (int Cond = CGF.ConstantFoldsToSimpleInteger(E->getLHS())) {
2033 if (Cond == 1) { // If we have 1 && X, just emit X.
Chris Lattner5b1964b2008-11-11 07:41:27 +00002034 Value *RHSCond = CGF.EvaluateExprAsBool(E->getRHS());
Chris Lattner671fec82009-10-17 04:24:20 +00002035 // ZExt result to int or bool.
2036 return Builder.CreateZExtOrBitCast(RHSCond, ResTy, "land.ext");
Chris Lattner5b1964b2008-11-11 07:41:27 +00002037 }
Mike Stump4a3999f2009-09-09 13:00:44 +00002038
Chris Lattner671fec82009-10-17 04:24:20 +00002039 // 0 && RHS: If it is safe, just elide the RHS, and return 0/false.
Chris Lattner8b084582008-11-12 08:26:50 +00002040 if (!CGF.ContainsLabel(E->getRHS()))
Chris Lattner671fec82009-10-17 04:24:20 +00002041 return llvm::Constant::getNullValue(ResTy);
Chris Lattner5b1964b2008-11-11 07:41:27 +00002042 }
Mike Stump4a3999f2009-09-09 13:00:44 +00002043
Daniel Dunbara612e792008-11-13 01:38:36 +00002044 llvm::BasicBlock *ContBlock = CGF.createBasicBlock("land.end");
2045 llvm::BasicBlock *RHSBlock = CGF.createBasicBlock("land.rhs");
Chris Lattner8b084582008-11-12 08:26:50 +00002046
Chris Lattner35710d182008-11-12 08:38:24 +00002047 // Branch on the LHS first. If it is false, go to the failure (cont) block.
2048 CGF.EmitBranchOnBoolExpr(E->getLHS(), RHSBlock, ContBlock);
2049
2050 // Any edges into the ContBlock are now from an (indeterminate number of)
2051 // edges from this first condition. All of these values will be false. Start
2052 // setting up the PHI node in the Cont Block for this.
Owen Anderson41a75022009-08-13 21:57:51 +00002053 llvm::PHINode *PN = llvm::PHINode::Create(llvm::Type::getInt1Ty(VMContext),
2054 "", ContBlock);
Chris Lattner35710d182008-11-12 08:38:24 +00002055 PN->reserveOperandSpace(2); // Normal case, two inputs.
2056 for (llvm::pred_iterator PI = pred_begin(ContBlock), PE = pred_end(ContBlock);
2057 PI != PE; ++PI)
Owen Andersonfe4e3472009-07-31 17:39:36 +00002058 PN->addIncoming(llvm::ConstantInt::getFalse(VMContext), *PI);
Mike Stump4a3999f2009-09-09 13:00:44 +00002059
Anders Carlssonae612d22010-02-04 17:18:07 +00002060 CGF.BeginConditionalBranch();
Chris Lattner2da04b32007-08-24 05:35:26 +00002061 CGF.EmitBlock(RHSBlock);
2062 Value *RHSCond = CGF.EvaluateExprAsBool(E->getRHS());
Anders Carlssonae612d22010-02-04 17:18:07 +00002063 CGF.EndConditionalBranch();
Mike Stump4a3999f2009-09-09 13:00:44 +00002064
Chris Lattner2da04b32007-08-24 05:35:26 +00002065 // Reaquire the RHS block, as there may be subblocks inserted.
2066 RHSBlock = Builder.GetInsertBlock();
Chris Lattner35710d182008-11-12 08:38:24 +00002067
2068 // Emit an unconditional branch from this block to ContBlock. Insert an entry
2069 // into the phi node for the edge with the value of RHSCond.
Chris Lattner2da04b32007-08-24 05:35:26 +00002070 CGF.EmitBlock(ContBlock);
Chris Lattner2da04b32007-08-24 05:35:26 +00002071 PN->addIncoming(RHSCond, RHSBlock);
Mike Stump4a3999f2009-09-09 13:00:44 +00002072
Chris Lattner2da04b32007-08-24 05:35:26 +00002073 // ZExt result to int.
Chris Lattner671fec82009-10-17 04:24:20 +00002074 return Builder.CreateZExtOrBitCast(PN, ResTy, "land.ext");
Chris Lattner2da04b32007-08-24 05:35:26 +00002075}
2076
2077Value *ScalarExprEmitter::VisitBinLOr(const BinaryOperator *E) {
Chris Lattner671fec82009-10-17 04:24:20 +00002078 const llvm::Type *ResTy = ConvertType(E->getType());
2079
Chris Lattner8b084582008-11-12 08:26:50 +00002080 // If we have 1 || RHS, see if we can elide RHS, if so, just return 1.
2081 // If we have 0 || X, just emit X without inserting the control flow.
2082 if (int Cond = CGF.ConstantFoldsToSimpleInteger(E->getLHS())) {
2083 if (Cond == -1) { // If we have 0 || X, just emit X.
Chris Lattner5b1964b2008-11-11 07:41:27 +00002084 Value *RHSCond = CGF.EvaluateExprAsBool(E->getRHS());
Chris Lattner671fec82009-10-17 04:24:20 +00002085 // ZExt result to int or bool.
2086 return Builder.CreateZExtOrBitCast(RHSCond, ResTy, "lor.ext");
Chris Lattner5b1964b2008-11-11 07:41:27 +00002087 }
Mike Stump4a3999f2009-09-09 13:00:44 +00002088
Chris Lattner671fec82009-10-17 04:24:20 +00002089 // 1 || RHS: If it is safe, just elide the RHS, and return 1/true.
Chris Lattner8b084582008-11-12 08:26:50 +00002090 if (!CGF.ContainsLabel(E->getRHS()))
Chris Lattner671fec82009-10-17 04:24:20 +00002091 return llvm::ConstantInt::get(ResTy, 1);
Chris Lattner5b1964b2008-11-11 07:41:27 +00002092 }
Mike Stump4a3999f2009-09-09 13:00:44 +00002093
Daniel Dunbara612e792008-11-13 01:38:36 +00002094 llvm::BasicBlock *ContBlock = CGF.createBasicBlock("lor.end");
2095 llvm::BasicBlock *RHSBlock = CGF.createBasicBlock("lor.rhs");
Mike Stump4a3999f2009-09-09 13:00:44 +00002096
Chris Lattner35710d182008-11-12 08:38:24 +00002097 // Branch on the LHS first. If it is true, go to the success (cont) block.
2098 CGF.EmitBranchOnBoolExpr(E->getLHS(), ContBlock, RHSBlock);
2099
2100 // Any edges into the ContBlock are now from an (indeterminate number of)
2101 // edges from this first condition. All of these values will be true. Start
2102 // setting up the PHI node in the Cont Block for this.
Owen Anderson41a75022009-08-13 21:57:51 +00002103 llvm::PHINode *PN = llvm::PHINode::Create(llvm::Type::getInt1Ty(VMContext),
2104 "", ContBlock);
Chris Lattner35710d182008-11-12 08:38:24 +00002105 PN->reserveOperandSpace(2); // Normal case, two inputs.
2106 for (llvm::pred_iterator PI = pred_begin(ContBlock), PE = pred_end(ContBlock);
2107 PI != PE; ++PI)
Owen Andersonfe4e3472009-07-31 17:39:36 +00002108 PN->addIncoming(llvm::ConstantInt::getTrue(VMContext), *PI);
Chris Lattner35710d182008-11-12 08:38:24 +00002109
Anders Carlssonae612d22010-02-04 17:18:07 +00002110 CGF.BeginConditionalBranch();
Anders Carlssonf47a3de2009-06-04 02:53:13 +00002111
Chris Lattner35710d182008-11-12 08:38:24 +00002112 // Emit the RHS condition as a bool value.
Chris Lattner2da04b32007-08-24 05:35:26 +00002113 CGF.EmitBlock(RHSBlock);
2114 Value *RHSCond = CGF.EvaluateExprAsBool(E->getRHS());
Mike Stump4a3999f2009-09-09 13:00:44 +00002115
Anders Carlssonae612d22010-02-04 17:18:07 +00002116 CGF.EndConditionalBranch();
Mike Stump4a3999f2009-09-09 13:00:44 +00002117
Chris Lattner2da04b32007-08-24 05:35:26 +00002118 // Reaquire the RHS block, as there may be subblocks inserted.
2119 RHSBlock = Builder.GetInsertBlock();
Mike Stump4a3999f2009-09-09 13:00:44 +00002120
Chris Lattner35710d182008-11-12 08:38:24 +00002121 // Emit an unconditional branch from this block to ContBlock. Insert an entry
2122 // into the phi node for the edge with the value of RHSCond.
2123 CGF.EmitBlock(ContBlock);
Chris Lattner2da04b32007-08-24 05:35:26 +00002124 PN->addIncoming(RHSCond, RHSBlock);
Mike Stump4a3999f2009-09-09 13:00:44 +00002125
Chris Lattner2da04b32007-08-24 05:35:26 +00002126 // ZExt result to int.
Chris Lattner671fec82009-10-17 04:24:20 +00002127 return Builder.CreateZExtOrBitCast(PN, ResTy, "lor.ext");
Chris Lattner2da04b32007-08-24 05:35:26 +00002128}
2129
2130Value *ScalarExprEmitter::VisitBinComma(const BinaryOperator *E) {
2131 CGF.EmitStmt(E->getLHS());
Daniel Dunbar5c7e3932008-11-11 23:11:34 +00002132 CGF.EnsureInsertPoint();
Chris Lattner2da04b32007-08-24 05:35:26 +00002133 return Visit(E->getRHS());
2134}
2135
2136//===----------------------------------------------------------------------===//
2137// Other Operators
2138//===----------------------------------------------------------------------===//
2139
Chris Lattner3fd91f832008-11-12 08:55:54 +00002140/// isCheapEnoughToEvaluateUnconditionally - Return true if the specified
2141/// expression is cheap enough and side-effect-free enough to evaluate
2142/// unconditionally instead of conditionally. This is used to convert control
2143/// flow into selects in some cases.
Mike Stump53f9ded2009-11-03 23:25:48 +00002144static bool isCheapEnoughToEvaluateUnconditionally(const Expr *E,
2145 CodeGenFunction &CGF) {
Chris Lattner3fd91f832008-11-12 08:55:54 +00002146 if (const ParenExpr *PE = dyn_cast<ParenExpr>(E))
Mike Stump53f9ded2009-11-03 23:25:48 +00002147 return isCheapEnoughToEvaluateUnconditionally(PE->getSubExpr(), CGF);
Mike Stump4a3999f2009-09-09 13:00:44 +00002148
Chris Lattner3fd91f832008-11-12 08:55:54 +00002149 // TODO: Allow anything we can constant fold to an integer or fp constant.
2150 if (isa<IntegerLiteral>(E) || isa<CharacterLiteral>(E) ||
2151 isa<FloatingLiteral>(E))
2152 return true;
Mike Stump4a3999f2009-09-09 13:00:44 +00002153
Chris Lattner3fd91f832008-11-12 08:55:54 +00002154 // Non-volatile automatic variables too, to get "cond ? X : Y" where
2155 // X and Y are local variables.
2156 if (const DeclRefExpr *DRE = dyn_cast<DeclRefExpr>(E))
2157 if (const VarDecl *VD = dyn_cast<VarDecl>(DRE->getDecl()))
Mike Stump53f9ded2009-11-03 23:25:48 +00002158 if (VD->hasLocalStorage() && !(CGF.getContext()
2159 .getCanonicalType(VD->getType())
2160 .isVolatileQualified()))
Chris Lattner3fd91f832008-11-12 08:55:54 +00002161 return true;
Mike Stump4a3999f2009-09-09 13:00:44 +00002162
Chris Lattner3fd91f832008-11-12 08:55:54 +00002163 return false;
2164}
2165
2166
Chris Lattner2da04b32007-08-24 05:35:26 +00002167Value *ScalarExprEmitter::
2168VisitConditionalOperator(const ConditionalOperator *E) {
Mike Stumpdf0fe272009-05-29 15:46:01 +00002169 TestAndClearIgnoreResultAssign();
Chris Lattnercd439292008-11-12 08:04:58 +00002170 // If the condition constant folds and can be elided, try to avoid emitting
2171 // the condition and the dead arm.
2172 if (int Cond = CGF.ConstantFoldsToSimpleInteger(E->getCond())){
Chris Lattnerd53e2332008-11-11 18:56:45 +00002173 Expr *Live = E->getLHS(), *Dead = E->getRHS();
Chris Lattnercd439292008-11-12 08:04:58 +00002174 if (Cond == -1)
Chris Lattnerd53e2332008-11-11 18:56:45 +00002175 std::swap(Live, Dead);
Mike Stump4a3999f2009-09-09 13:00:44 +00002176
Chris Lattnercd439292008-11-12 08:04:58 +00002177 // If the dead side doesn't have labels we need, and if the Live side isn't
2178 // the gnu missing ?: extension (which we could handle, but don't bother
2179 // to), just emit the Live part.
2180 if ((!Dead || !CGF.ContainsLabel(Dead)) && // No labels in dead part
2181 Live) // Live part isn't missing.
2182 return Visit(Live);
Chris Lattnerd53e2332008-11-11 18:56:45 +00002183 }
Mike Stump4a3999f2009-09-09 13:00:44 +00002184
Nate Begemanabb5a732010-09-20 22:41:17 +00002185 // OpenCL: If the condition is a vector, we can treat this condition like
2186 // the select function.
2187 if (CGF.getContext().getLangOptions().OpenCL
2188 && E->getCond()->getType()->isVectorType()) {
2189 llvm::Value *CondV = CGF.EmitScalarExpr(E->getCond());
2190 llvm::Value *LHS = Visit(E->getLHS());
2191 llvm::Value *RHS = Visit(E->getRHS());
2192
2193 const llvm::Type *condType = ConvertType(E->getCond()->getType());
2194 const llvm::VectorType *vecTy = cast<llvm::VectorType>(condType);
2195
2196 unsigned numElem = vecTy->getNumElements();
2197 const llvm::Type *elemType = vecTy->getElementType();
2198
2199 std::vector<llvm::Constant*> Zvals;
2200 for (unsigned i = 0; i < numElem; ++i)
2201 Zvals.push_back(llvm::ConstantInt::get(elemType,0));
Mike Stump4a3999f2009-09-09 13:00:44 +00002202
Nate Begemanabb5a732010-09-20 22:41:17 +00002203 llvm::Value *zeroVec = llvm::ConstantVector::get(Zvals);
2204 llvm::Value *TestMSB = Builder.CreateICmpSLT(CondV, zeroVec);
2205 llvm::Value *tmp = Builder.CreateSExt(TestMSB,
2206 llvm::VectorType::get(elemType,
2207 numElem),
2208 "sext");
2209 llvm::Value *tmp2 = Builder.CreateNot(tmp);
2210
2211 // Cast float to int to perform ANDs if necessary.
2212 llvm::Value *RHSTmp = RHS;
2213 llvm::Value *LHSTmp = LHS;
2214 bool wasCast = false;
2215 const llvm::VectorType *rhsVTy = cast<llvm::VectorType>(RHS->getType());
2216 if (rhsVTy->getElementType()->isFloatTy()) {
2217 RHSTmp = Builder.CreateBitCast(RHS, tmp2->getType());
2218 LHSTmp = Builder.CreateBitCast(LHS, tmp->getType());
2219 wasCast = true;
2220 }
2221
2222 llvm::Value *tmp3 = Builder.CreateAnd(RHSTmp, tmp2);
2223 llvm::Value *tmp4 = Builder.CreateAnd(LHSTmp, tmp);
2224 llvm::Value *tmp5 = Builder.CreateOr(tmp3, tmp4, "cond");
2225 if (wasCast)
2226 tmp5 = Builder.CreateBitCast(tmp5, RHS->getType());
2227
2228 return tmp5;
2229 }
2230
Chris Lattner3fd91f832008-11-12 08:55:54 +00002231 // If this is a really simple expression (like x ? 4 : 5), emit this as a
2232 // select instead of as control flow. We can only do this if it is cheap and
Chris Lattner9ce8a532008-11-16 06:16:27 +00002233 // safe to evaluate the LHS and RHS unconditionally.
Mike Stump53f9ded2009-11-03 23:25:48 +00002234 if (E->getLHS() && isCheapEnoughToEvaluateUnconditionally(E->getLHS(),
2235 CGF) &&
2236 isCheapEnoughToEvaluateUnconditionally(E->getRHS(), CGF)) {
Chris Lattner3fd91f832008-11-12 08:55:54 +00002237 llvm::Value *CondV = CGF.EvaluateExprAsBool(E->getCond());
2238 llvm::Value *LHS = Visit(E->getLHS());
2239 llvm::Value *RHS = Visit(E->getRHS());
2240 return Builder.CreateSelect(CondV, LHS, RHS, "cond");
2241 }
Mike Stump4a3999f2009-09-09 13:00:44 +00002242
Daniel Dunbard2a53a72008-11-12 10:13:37 +00002243 llvm::BasicBlock *LHSBlock = CGF.createBasicBlock("cond.true");
2244 llvm::BasicBlock *RHSBlock = CGF.createBasicBlock("cond.false");
Daniel Dunbara612e792008-11-13 01:38:36 +00002245 llvm::BasicBlock *ContBlock = CGF.createBasicBlock("cond.end");
Fariborz Jahanian5bbd1b02010-09-17 15:51:28 +00002246
Mike Stump4a3999f2009-09-09 13:00:44 +00002247 // If we don't have the GNU missing condition extension, emit a branch on bool
2248 // the normal way.
Chris Lattnercd7bc142009-02-13 23:35:32 +00002249 if (E->getLHS()) {
2250 // Otherwise, just use EmitBranchOnBoolExpr to get small and simple code for
2251 // the branch on bool.
2252 CGF.EmitBranchOnBoolExpr(E->getCond(), LHSBlock, RHSBlock);
2253 } else {
2254 // Otherwise, for the ?: extension, evaluate the conditional and then
2255 // convert it to bool the hard way. We do this explicitly because we need
2256 // the unconverted value for the missing middle value of the ?:.
Fariborz Jahanian5bbd1b02010-09-17 15:51:28 +00002257 Expr *save = E->getSAVE();
2258 assert(save && "VisitConditionalOperator - save is null");
2259 // Intentianlly not doing direct assignment to ConditionalSaveExprs[save] !!
2260 Value *SaveVal = CGF.EmitScalarExpr(save);
2261 CGF.ConditionalSaveExprs[save] = SaveVal;
2262 Value *CondVal = Visit(E->getCond());
Chris Lattnercd7bc142009-02-13 23:35:32 +00002263 // In some cases, EmitScalarConversion will delete the "CondVal" expression
2264 // if there are no extra uses (an optimization). Inhibit this by making an
2265 // extra dead use, because we're going to add a use of CondVal later. We
2266 // don't use the builder for this, because we don't want it to get optimized
2267 // away. This leaves dead code, but the ?: extension isn't common.
2268 new llvm::BitCastInst(CondVal, CondVal->getType(), "dummy?:holder",
2269 Builder.GetInsertBlock());
Mike Stump4a3999f2009-09-09 13:00:44 +00002270
Chris Lattner51e71182008-11-12 08:08:13 +00002271 Value *CondBoolVal =
2272 CGF.EmitScalarConversion(CondVal, E->getCond()->getType(),
2273 CGF.getContext().BoolTy);
2274 Builder.CreateCondBr(CondBoolVal, LHSBlock, RHSBlock);
Chris Lattner51e71182008-11-12 08:08:13 +00002275 }
Anders Carlsson43c52cd2009-06-04 03:00:32 +00002276
Anders Carlssonae612d22010-02-04 17:18:07 +00002277 CGF.BeginConditionalBranch();
Chris Lattner2da04b32007-08-24 05:35:26 +00002278 CGF.EmitBlock(LHSBlock);
Mike Stump4a3999f2009-09-09 13:00:44 +00002279
Chris Lattner2da04b32007-08-24 05:35:26 +00002280 // Handle the GNU extension for missing LHS.
Fariborz Jahanian5bbd1b02010-09-17 15:51:28 +00002281 Value *LHS = Visit(E->getTrueExpr());
Mike Stump4a3999f2009-09-09 13:00:44 +00002282
Anders Carlssonae612d22010-02-04 17:18:07 +00002283 CGF.EndConditionalBranch();
Chris Lattner2da04b32007-08-24 05:35:26 +00002284 LHSBlock = Builder.GetInsertBlock();
Daniel Dunbarc56e6762008-11-11 09:41:28 +00002285 CGF.EmitBranch(ContBlock);
Mike Stump4a3999f2009-09-09 13:00:44 +00002286
Anders Carlssonae612d22010-02-04 17:18:07 +00002287 CGF.BeginConditionalBranch();
Chris Lattner2da04b32007-08-24 05:35:26 +00002288 CGF.EmitBlock(RHSBlock);
Mike Stump4a3999f2009-09-09 13:00:44 +00002289
Eli Friedmand5a48382008-05-16 20:38:39 +00002290 Value *RHS = Visit(E->getRHS());
Anders Carlssonae612d22010-02-04 17:18:07 +00002291 CGF.EndConditionalBranch();
Chris Lattner2da04b32007-08-24 05:35:26 +00002292 RHSBlock = Builder.GetInsertBlock();
Daniel Dunbarc56e6762008-11-11 09:41:28 +00002293 CGF.EmitBranch(ContBlock);
Mike Stump4a3999f2009-09-09 13:00:44 +00002294
Chris Lattner2da04b32007-08-24 05:35:26 +00002295 CGF.EmitBlock(ContBlock);
Mike Stump4a3999f2009-09-09 13:00:44 +00002296
Eli Friedmanf6c175b2009-12-07 20:25:53 +00002297 // If the LHS or RHS is a throw expression, it will be legitimately null.
2298 if (!LHS)
2299 return RHS;
2300 if (!RHS)
2301 return LHS;
Mike Stump4a3999f2009-09-09 13:00:44 +00002302
Chris Lattner2da04b32007-08-24 05:35:26 +00002303 // Create a PHI node for the real part.
2304 llvm::PHINode *PN = Builder.CreatePHI(LHS->getType(), "cond");
2305 PN->reserveOperandSpace(2);
2306 PN->addIncoming(LHS, LHSBlock);
2307 PN->addIncoming(RHS, RHSBlock);
2308 return PN;
2309}
2310
2311Value *ScalarExprEmitter::VisitChooseExpr(ChooseExpr *E) {
Eli Friedmane0a5b8b2009-03-04 05:52:32 +00002312 return Visit(E->getChosenSubExpr(CGF.getContext()));
Chris Lattner2da04b32007-08-24 05:35:26 +00002313}
2314
Chris Lattnerb6a7b582007-11-30 17:56:23 +00002315Value *ScalarExprEmitter::VisitVAArgExpr(VAArgExpr *VE) {
Eli Friedmanddea0ad2009-01-20 17:46:04 +00002316 llvm::Value *ArgValue = CGF.EmitVAListRef(VE->getSubExpr());
Anders Carlsson13abd7e2008-11-04 05:30:00 +00002317 llvm::Value *ArgPtr = CGF.EmitVAArg(ArgValue, VE->getType());
2318
2319 // If EmitVAArg fails, we fall back to the LLVM instruction.
Mike Stump4a3999f2009-09-09 13:00:44 +00002320 if (!ArgPtr)
Anders Carlsson13abd7e2008-11-04 05:30:00 +00002321 return Builder.CreateVAArg(ArgValue, ConvertType(VE->getType()));
2322
Mike Stumpdf0fe272009-05-29 15:46:01 +00002323 // FIXME Volatility.
Anders Carlsson13abd7e2008-11-04 05:30:00 +00002324 return Builder.CreateLoad(ArgPtr);
Anders Carlsson7e13ab82007-10-15 20:28:48 +00002325}
2326
Mike Stumpab3afd82009-02-12 18:29:15 +00002327Value *ScalarExprEmitter::VisitBlockExpr(const BlockExpr *BE) {
Mike Stumpaeb0ffd2009-03-07 02:35:30 +00002328 return CGF.BuildBlockLiteralTmp(BE);
Mike Stumpab3afd82009-02-12 18:29:15 +00002329}
2330
Chris Lattner2da04b32007-08-24 05:35:26 +00002331//===----------------------------------------------------------------------===//
2332// Entry Point into this File
2333//===----------------------------------------------------------------------===//
2334
Mike Stump4a3999f2009-09-09 13:00:44 +00002335/// EmitScalarExpr - Emit the computation of the specified expression of scalar
2336/// type, ignoring the result.
Mike Stumpdf0fe272009-05-29 15:46:01 +00002337Value *CodeGenFunction::EmitScalarExpr(const Expr *E, bool IgnoreResultAssign) {
Chris Lattner2da04b32007-08-24 05:35:26 +00002338 assert(E && !hasAggregateLLVMType(E->getType()) &&
2339 "Invalid scalar expression to emit");
Mike Stump4a3999f2009-09-09 13:00:44 +00002340
Mike Stumpdf0fe272009-05-29 15:46:01 +00002341 return ScalarExprEmitter(*this, IgnoreResultAssign)
2342 .Visit(const_cast<Expr*>(E));
Chris Lattner2da04b32007-08-24 05:35:26 +00002343}
Chris Lattner3474c202007-08-26 06:48:56 +00002344
2345/// EmitScalarConversion - Emit a conversion from the specified type to the
2346/// specified destination type, both of which are LLVM scalar types.
Chris Lattner42e6b812007-08-26 16:34:22 +00002347Value *CodeGenFunction::EmitScalarConversion(Value *Src, QualType SrcTy,
2348 QualType DstTy) {
Chris Lattner3474c202007-08-26 06:48:56 +00002349 assert(!hasAggregateLLVMType(SrcTy) && !hasAggregateLLVMType(DstTy) &&
2350 "Invalid scalar expression to emit");
2351 return ScalarExprEmitter(*this).EmitScalarConversion(Src, SrcTy, DstTy);
2352}
Chris Lattner42e6b812007-08-26 16:34:22 +00002353
Mike Stump4a3999f2009-09-09 13:00:44 +00002354/// EmitComplexToScalarConversion - Emit a conversion from the specified complex
2355/// type to the specified destination type, where the destination type is an
2356/// LLVM scalar type.
Chris Lattner42e6b812007-08-26 16:34:22 +00002357Value *CodeGenFunction::EmitComplexToScalarConversion(ComplexPairTy Src,
2358 QualType SrcTy,
2359 QualType DstTy) {
Chris Lattnerf3bc75a2008-04-04 16:54:41 +00002360 assert(SrcTy->isAnyComplexType() && !hasAggregateLLVMType(DstTy) &&
Chris Lattner42e6b812007-08-26 16:34:22 +00002361 "Invalid complex -> scalar conversion");
2362 return ScalarExprEmitter(*this).EmitComplexToScalarConversion(Src, SrcTy,
2363 DstTy);
2364}
Anders Carlssonb9eb82c2007-12-10 19:35:18 +00002365
Chris Lattner05dc78c2010-06-26 22:09:34 +00002366
2367llvm::Value *CodeGenFunction::
2368EmitScalarPrePostIncDec(const UnaryOperator *E, LValue LV,
2369 bool isInc, bool isPre) {
2370 return ScalarExprEmitter(*this).EmitScalarPrePostIncDec(E, LV, isInc, isPre);
2371}
2372
Fariborz Jahanian531c16f2009-12-09 23:35:29 +00002373LValue CodeGenFunction::EmitObjCIsaExpr(const ObjCIsaExpr *E) {
2374 llvm::Value *V;
2375 // object->isa or (*object).isa
2376 // Generate code as for: *(Class*)object
Fariborz Jahanian531c16f2009-12-09 23:35:29 +00002377 // build Class* type
2378 const llvm::Type *ClassPtrTy = ConvertType(E->getType());
Fariborz Jahaniandf506b92010-02-05 19:18:30 +00002379
2380 Expr *BaseExpr = E->getBase();
2381 if (BaseExpr->isLvalue(getContext()) != Expr::LV_Valid) {
2382 V = CreateTempAlloca(ClassPtrTy, "resval");
2383 llvm::Value *Src = EmitScalarExpr(BaseExpr);
2384 Builder.CreateStore(Src, V);
Daniel Dunbarf6fb7e22010-08-21 03:08:16 +00002385 V = ScalarExprEmitter(*this).EmitLoadOfLValue(
2386 MakeAddrLValue(V, E->getType()), E->getType());
2387 } else {
2388 if (E->isArrow())
2389 V = ScalarExprEmitter(*this).EmitLoadOfLValue(BaseExpr);
2390 else
2391 V = EmitLValue(BaseExpr).getAddress();
Fariborz Jahaniandf506b92010-02-05 19:18:30 +00002392 }
2393
2394 // build Class* type
Fariborz Jahanian531c16f2009-12-09 23:35:29 +00002395 ClassPtrTy = ClassPtrTy->getPointerTo();
2396 V = Builder.CreateBitCast(V, ClassPtrTy);
Daniel Dunbarf6fb7e22010-08-21 03:08:16 +00002397 return MakeAddrLValue(V, E->getType());
Fariborz Jahanian531c16f2009-12-09 23:35:29 +00002398}
2399
Douglas Gregor914af212010-04-23 04:16:32 +00002400
2401LValue CodeGenFunction::EmitCompoundAssignOperatorLValue(
2402 const CompoundAssignOperator *E) {
2403 ScalarExprEmitter Scalar(*this);
Daniel Dunbarc85ea8e2010-06-29 22:00:45 +00002404 Value *Result = 0;
Douglas Gregor914af212010-04-23 04:16:32 +00002405 switch (E->getOpcode()) {
2406#define COMPOUND_OP(Op) \
John McCalle3027922010-08-25 11:45:40 +00002407 case BO_##Op##Assign: \
Douglas Gregor914af212010-04-23 04:16:32 +00002408 return Scalar.EmitCompoundAssignLValue(E, &ScalarExprEmitter::Emit##Op, \
Daniel Dunbarc85ea8e2010-06-29 22:00:45 +00002409 Result)
Douglas Gregor914af212010-04-23 04:16:32 +00002410 COMPOUND_OP(Mul);
2411 COMPOUND_OP(Div);
2412 COMPOUND_OP(Rem);
2413 COMPOUND_OP(Add);
2414 COMPOUND_OP(Sub);
2415 COMPOUND_OP(Shl);
2416 COMPOUND_OP(Shr);
2417 COMPOUND_OP(And);
2418 COMPOUND_OP(Xor);
2419 COMPOUND_OP(Or);
2420#undef COMPOUND_OP
2421
John McCalle3027922010-08-25 11:45:40 +00002422 case BO_PtrMemD:
2423 case BO_PtrMemI:
2424 case BO_Mul:
2425 case BO_Div:
2426 case BO_Rem:
2427 case BO_Add:
2428 case BO_Sub:
2429 case BO_Shl:
2430 case BO_Shr:
2431 case BO_LT:
2432 case BO_GT:
2433 case BO_LE:
2434 case BO_GE:
2435 case BO_EQ:
2436 case BO_NE:
2437 case BO_And:
2438 case BO_Xor:
2439 case BO_Or:
2440 case BO_LAnd:
2441 case BO_LOr:
2442 case BO_Assign:
2443 case BO_Comma:
Douglas Gregor914af212010-04-23 04:16:32 +00002444 assert(false && "Not valid compound assignment operators");
2445 break;
2446 }
2447
2448 llvm_unreachable("Unhandled compound assignment operator");
2449}