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Chris Lattner9fba49a2007-08-24 05:35:26 +00001//===--- CGExprScalar.cpp - Emit LLVM Code for Scalar Exprs ---------------===//
2//
3// The LLVM Compiler Infrastructure
4//
Chris Lattner959e5be2007-12-29 19:59:25 +00005// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
Chris Lattner9fba49a2007-08-24 05:35:26 +00007//
8//===----------------------------------------------------------------------===//
9//
10// This contains code to emit Expr nodes with scalar LLVM types as LLVM code.
11//
12//===----------------------------------------------------------------------===//
13
14#include "CodeGenFunction.h"
15#include "CodeGenModule.h"
Daniel Dunbareee5cd12008-08-11 05:00:27 +000016#include "clang/AST/ASTContext.h"
Daniel Dunbarfa456242008-08-12 05:08:18 +000017#include "clang/AST/DeclObjC.h"
Eli Friedmanccffea92009-01-24 22:38:55 +000018#include "clang/AST/RecordLayout.h"
Daniel Dunbareee5cd12008-08-11 05:00:27 +000019#include "clang/AST/StmtVisitor.h"
Chris Lattnerd54d1f22008-04-20 00:50:39 +000020#include "clang/Basic/TargetInfo.h"
Chris Lattner9fba49a2007-08-24 05:35:26 +000021#include "llvm/Constants.h"
22#include "llvm/Function.h"
Anders Carlsson36f07d82007-10-29 05:01:08 +000023#include "llvm/GlobalVariable.h"
Anders Carlsson36760332007-10-15 20:28:48 +000024#include "llvm/Intrinsics.h"
Mike Stumpdb789912009-04-01 20:28:16 +000025#include "llvm/Module.h"
Chris Lattner9fba49a2007-08-24 05:35:26 +000026#include "llvm/Support/Compiler.h"
Chris Lattner7f80bb32008-11-12 08:38:24 +000027#include "llvm/Support/CFG.h"
Mike Stumpfca5da02009-02-21 20:00:35 +000028#include "llvm/Target/TargetData.h"
Chris Lattnerc2126682008-01-03 07:05:49 +000029#include <cstdarg>
Ted Kremenek03cf4df2007-12-10 23:44:32 +000030
Chris Lattner9fba49a2007-08-24 05:35:26 +000031using namespace clang;
32using namespace CodeGen;
33using llvm::Value;
34
35//===----------------------------------------------------------------------===//
36// Scalar Expression Emitter
37//===----------------------------------------------------------------------===//
38
39struct BinOpInfo {
40 Value *LHS;
41 Value *RHS;
Chris Lattner660e31d2007-08-24 21:00:35 +000042 QualType Ty; // Computation Type.
Chris Lattner9fba49a2007-08-24 05:35:26 +000043 const BinaryOperator *E;
44};
45
46namespace {
47class VISIBILITY_HIDDEN ScalarExprEmitter
48 : public StmtVisitor<ScalarExprEmitter, Value*> {
49 CodeGenFunction &CGF;
Daniel Dunbard916e6e2008-11-01 01:53:16 +000050 CGBuilderTy &Builder;
Mike Stumpb8fc73e2009-05-29 15:46:01 +000051 bool IgnoreResultAssign;
Chris Lattnercbfb5512008-03-01 08:45:05 +000052
Chris Lattner9fba49a2007-08-24 05:35:26 +000053public:
54
Mike Stumpb8fc73e2009-05-29 15:46:01 +000055 ScalarExprEmitter(CodeGenFunction &cgf, bool ira=false)
56 : CGF(cgf), Builder(CGF.Builder), IgnoreResultAssign(ira) {
Chris Lattner9fba49a2007-08-24 05:35:26 +000057 }
Chris Lattner9fba49a2007-08-24 05:35:26 +000058
59 //===--------------------------------------------------------------------===//
60 // Utilities
61 //===--------------------------------------------------------------------===//
62
Mike Stumpb8fc73e2009-05-29 15:46:01 +000063 bool TestAndClearIgnoreResultAssign() {
64 bool I = IgnoreResultAssign; IgnoreResultAssign = false;
65 return I; }
66
Chris Lattner9fba49a2007-08-24 05:35:26 +000067 const llvm::Type *ConvertType(QualType T) { return CGF.ConvertType(T); }
68 LValue EmitLValue(const Expr *E) { return CGF.EmitLValue(E); }
69
70 Value *EmitLoadOfLValue(LValue LV, QualType T) {
Chris Lattnere24c4cf2007-08-31 22:49:20 +000071 return CGF.EmitLoadOfLValue(LV, T).getScalarVal();
Chris Lattner9fba49a2007-08-24 05:35:26 +000072 }
73
74 /// EmitLoadOfLValue - Given an expression with complex type that represents a
75 /// value l-value, this method emits the address of the l-value, then loads
76 /// and returns the result.
77 Value *EmitLoadOfLValue(const Expr *E) {
Chris Lattner9fba49a2007-08-24 05:35:26 +000078 return EmitLoadOfLValue(EmitLValue(E), E->getType());
79 }
80
Chris Lattnerd8d44222007-08-26 16:42:57 +000081 /// EmitConversionToBool - Convert the specified expression value to a
Chris Lattner05942062007-08-26 17:25:57 +000082 /// boolean (i1) truth value. This is equivalent to "Val != 0".
Chris Lattnerd8d44222007-08-26 16:42:57 +000083 Value *EmitConversionToBool(Value *Src, QualType DstTy);
84
Chris Lattner4e05d1e2007-08-26 06:48:56 +000085 /// EmitScalarConversion - Emit a conversion from the specified type to the
86 /// specified destination type, both of which are LLVM scalar types.
Chris Lattnerfb182ee2007-08-26 16:34:22 +000087 Value *EmitScalarConversion(Value *Src, QualType SrcTy, QualType DstTy);
88
89 /// EmitComplexToScalarConversion - Emit a conversion from the specified
90 /// complex type to the specified destination type, where the destination
91 /// type is an LLVM scalar type.
92 Value *EmitComplexToScalarConversion(CodeGenFunction::ComplexPairTy Src,
93 QualType SrcTy, QualType DstTy);
Mike Stump4eb81dc2009-02-12 18:29:15 +000094
Chris Lattner9fba49a2007-08-24 05:35:26 +000095 //===--------------------------------------------------------------------===//
96 // Visitor Methods
97 //===--------------------------------------------------------------------===//
98
99 Value *VisitStmt(Stmt *S) {
Ted Kremenekb3ee1932007-12-11 21:27:55 +0000100 S->dump(CGF.getContext().getSourceManager());
Chris Lattner9fba49a2007-08-24 05:35:26 +0000101 assert(0 && "Stmt can't have complex result type!");
102 return 0;
103 }
104 Value *VisitExpr(Expr *S);
105 Value *VisitParenExpr(ParenExpr *PE) { return Visit(PE->getSubExpr()); }
106
107 // Leaves.
108 Value *VisitIntegerLiteral(const IntegerLiteral *E) {
109 return llvm::ConstantInt::get(E->getValue());
110 }
111 Value *VisitFloatingLiteral(const FloatingLiteral *E) {
Chris Lattner70c38672008-04-20 00:45:53 +0000112 return llvm::ConstantFP::get(E->getValue());
Chris Lattner9fba49a2007-08-24 05:35:26 +0000113 }
114 Value *VisitCharacterLiteral(const CharacterLiteral *E) {
115 return llvm::ConstantInt::get(ConvertType(E->getType()), E->getValue());
116 }
Nate Begemane9bfe6d2007-11-15 05:40:03 +0000117 Value *VisitCXXBoolLiteralExpr(const CXXBoolLiteralExpr *E) {
118 return llvm::ConstantInt::get(ConvertType(E->getType()), E->getValue());
119 }
Argiris Kirtzidis750eb972008-08-23 19:35:47 +0000120 Value *VisitCXXZeroInitValueExpr(const CXXZeroInitValueExpr *E) {
121 return llvm::Constant::getNullValue(ConvertType(E->getType()));
122 }
Anders Carlsson774f9c72008-12-21 22:39:40 +0000123 Value *VisitGNUNullExpr(const GNUNullExpr *E) {
124 return llvm::Constant::getNullValue(ConvertType(E->getType()));
125 }
Chris Lattner9fba49a2007-08-24 05:35:26 +0000126 Value *VisitTypesCompatibleExpr(const TypesCompatibleExpr *E) {
127 return llvm::ConstantInt::get(ConvertType(E->getType()),
Steve Naroff85f0dc52007-10-15 20:41:53 +0000128 CGF.getContext().typesAreCompatible(
129 E->getArgType1(), E->getArgType2()));
Chris Lattner9fba49a2007-08-24 05:35:26 +0000130 }
Sebastian Redl0cb7c872008-11-11 17:56:53 +0000131 Value *VisitSizeOfAlignOfExpr(const SizeOfAlignOfExpr *E);
Daniel Dunbar879788d2008-08-04 16:51:22 +0000132 Value *VisitAddrLabelExpr(const AddrLabelExpr *E) {
Daniel Dunbarb5fda0c2008-08-16 01:41:47 +0000133 llvm::Value *V =
134 llvm::ConstantInt::get(llvm::Type::Int32Ty,
135 CGF.GetIDForAddrOfLabel(E->getLabel()));
136
137 return Builder.CreateIntToPtr(V, ConvertType(E->getType()));
Daniel Dunbar879788d2008-08-04 16:51:22 +0000138 }
Chris Lattner9fba49a2007-08-24 05:35:26 +0000139
140 // l-values.
141 Value *VisitDeclRefExpr(DeclRefExpr *E) {
142 if (const EnumConstantDecl *EC = dyn_cast<EnumConstantDecl>(E->getDecl()))
143 return llvm::ConstantInt::get(EC->getInitVal());
144 return EmitLoadOfLValue(E);
145 }
Daniel Dunbar91cc4022008-08-27 06:57:25 +0000146 Value *VisitObjCSelectorExpr(ObjCSelectorExpr *E) {
147 return CGF.EmitObjCSelectorExpr(E);
148 }
149 Value *VisitObjCProtocolExpr(ObjCProtocolExpr *E) {
150 return CGF.EmitObjCProtocolExpr(E);
151 }
152 Value *VisitObjCIvarRefExpr(ObjCIvarRefExpr *E) {
153 return EmitLoadOfLValue(E);
154 }
Daniel Dunbar5e105892008-08-23 10:51:21 +0000155 Value *VisitObjCPropertyRefExpr(ObjCPropertyRefExpr *E) {
Daniel Dunbare6c31752008-08-29 08:11:39 +0000156 return EmitLoadOfLValue(E);
Daniel Dunbar91cc4022008-08-27 06:57:25 +0000157 }
Fariborz Jahanianb0973da2008-11-22 22:30:21 +0000158 Value *VisitObjCKVCRefExpr(ObjCKVCRefExpr *E) {
159 return EmitLoadOfLValue(E);
160 }
Daniel Dunbar91cc4022008-08-27 06:57:25 +0000161 Value *VisitObjCMessageExpr(ObjCMessageExpr *E) {
162 return CGF.EmitObjCMessageExpr(E).getScalarVal();
Daniel Dunbar5e105892008-08-23 10:51:21 +0000163 }
164
Chris Lattner9fba49a2007-08-24 05:35:26 +0000165 Value *VisitArraySubscriptExpr(ArraySubscriptExpr *E);
Eli Friedmand0e9d092008-05-14 19:38:39 +0000166 Value *VisitShuffleVectorExpr(ShuffleVectorExpr *E);
Chris Lattner9fba49a2007-08-24 05:35:26 +0000167 Value *VisitMemberExpr(Expr *E) { return EmitLoadOfLValue(E); }
Nate Begemanaf6ed502008-04-18 23:10:10 +0000168 Value *VisitExtVectorElementExpr(Expr *E) { return EmitLoadOfLValue(E); }
Chris Lattnera9177982008-10-26 23:53:12 +0000169 Value *VisitCompoundLiteralExpr(CompoundLiteralExpr *E) {
170 return EmitLoadOfLValue(E);
171 }
Chris Lattner9fba49a2007-08-24 05:35:26 +0000172 Value *VisitStringLiteral(Expr *E) { return EmitLValue(E).getAddress(); }
Chris Lattnerc5d32632009-02-24 22:18:39 +0000173 Value *VisitObjCEncodeExpr(const ObjCEncodeExpr *E) {
174 return EmitLValue(E).getAddress();
175 }
176
Chris Lattner69909292008-08-10 01:53:14 +0000177 Value *VisitPredefinedExpr(Expr *E) { return EmitLValue(E).getAddress(); }
Devang Patel01ab1302007-10-24 17:18:43 +0000178
179 Value *VisitInitListExpr(InitListExpr *E) {
Mike Stumpb8fc73e2009-05-29 15:46:01 +0000180 bool Ignore = TestAndClearIgnoreResultAssign();
181 (void)Ignore;
182 assert (Ignore == false && "init list ignored");
Anders Carlsson4513ecb2007-12-05 07:36:10 +0000183 unsigned NumInitElements = E->getNumInits();
184
Douglas Gregor9fddded2009-01-29 19:42:23 +0000185 if (E->hadArrayRangeDesignator()) {
186 CGF.ErrorUnsupported(E, "GNU array range designator extension");
187 }
188
Anders Carlsson4513ecb2007-12-05 07:36:10 +0000189 const llvm::VectorType *VType =
Anders Carlsson35ab4f92008-01-29 01:15:48 +0000190 dyn_cast<llvm::VectorType>(ConvertType(E->getType()));
191
192 // We have a scalar in braces. Just use the first element.
193 if (!VType)
194 return Visit(E->getInit(0));
Anders Carlsson4513ecb2007-12-05 07:36:10 +0000195
Anders Carlsson4513ecb2007-12-05 07:36:10 +0000196 unsigned NumVectorElements = VType->getNumElements();
197 const llvm::Type *ElementType = VType->getElementType();
Anders Carlsson4513ecb2007-12-05 07:36:10 +0000198
199 // Emit individual vector element stores.
200 llvm::Value *V = llvm::UndefValue::get(VType);
201
Anders Carlsson323d5682007-12-18 02:45:33 +0000202 // Emit initializers
203 unsigned i;
204 for (i = 0; i < NumInitElements; ++i) {
Devang Patel32c39832007-10-24 18:05:48 +0000205 Value *NewV = Visit(E->getInit(i));
206 Value *Idx = llvm::ConstantInt::get(llvm::Type::Int32Ty, i);
207 V = Builder.CreateInsertElement(V, NewV, Idx);
Devang Patel01ab1302007-10-24 17:18:43 +0000208 }
Anders Carlsson4513ecb2007-12-05 07:36:10 +0000209
210 // Emit remaining default initializers
211 for (/* Do not initialize i*/; i < NumVectorElements; ++i) {
212 Value *Idx = llvm::ConstantInt::get(llvm::Type::Int32Ty, i);
213 llvm::Value *NewV = llvm::Constant::getNullValue(ElementType);
214 V = Builder.CreateInsertElement(V, NewV, Idx);
215 }
216
Devang Patel32c39832007-10-24 18:05:48 +0000217 return V;
Devang Patel01ab1302007-10-24 17:18:43 +0000218 }
Chris Lattner3e254fb2008-04-08 04:40:51 +0000219
Douglas Gregorc9e012a2009-01-29 17:44:32 +0000220 Value *VisitImplicitValueInitExpr(const ImplicitValueInitExpr *E) {
221 return llvm::Constant::getNullValue(ConvertType(E->getType()));
222 }
Chris Lattner9fba49a2007-08-24 05:35:26 +0000223 Value *VisitImplicitCastExpr(const ImplicitCastExpr *E);
Eli Friedmana7ef8e52009-04-20 03:54:15 +0000224 Value *VisitCastExpr(const CastExpr *E) {
225 // Make sure to evaluate VLA bounds now so that we have them for later.
226 if (E->getType()->isVariablyModifiedType())
227 CGF.EmitVLASize(E->getType());
228
Chris Lattner9fba49a2007-08-24 05:35:26 +0000229 return EmitCastExpr(E->getSubExpr(), E->getType());
230 }
231 Value *EmitCastExpr(const Expr *E, QualType T);
232
233 Value *VisitCallExpr(const CallExpr *E) {
Anders Carlssoncd295282009-05-27 03:37:57 +0000234 if (E->getCallReturnType()->isReferenceType())
235 return EmitLoadOfLValue(E);
236
Chris Lattnere24c4cf2007-08-31 22:49:20 +0000237 return CGF.EmitCallExpr(E).getScalarVal();
Chris Lattner9fba49a2007-08-24 05:35:26 +0000238 }
Daniel Dunbara04840b2008-08-23 03:46:30 +0000239
Chris Lattnerea6cdd72007-08-31 22:09:40 +0000240 Value *VisitStmtExpr(const StmtExpr *E);
Mike Stumpfca5da02009-02-21 20:00:35 +0000241
Mike Stump2b6933f2009-02-28 09:07:16 +0000242 Value *VisitBlockDeclRefExpr(const BlockDeclRefExpr *E);
Chris Lattnerea6cdd72007-08-31 22:09:40 +0000243
Chris Lattner9fba49a2007-08-24 05:35:26 +0000244 // Unary Operators.
245 Value *VisitPrePostIncDec(const UnaryOperator *E, bool isInc, bool isPre);
246 Value *VisitUnaryPostDec(const UnaryOperator *E) {
247 return VisitPrePostIncDec(E, false, false);
248 }
249 Value *VisitUnaryPostInc(const UnaryOperator *E) {
250 return VisitPrePostIncDec(E, true, false);
251 }
252 Value *VisitUnaryPreDec(const UnaryOperator *E) {
253 return VisitPrePostIncDec(E, false, true);
254 }
255 Value *VisitUnaryPreInc(const UnaryOperator *E) {
256 return VisitPrePostIncDec(E, true, true);
257 }
258 Value *VisitUnaryAddrOf(const UnaryOperator *E) {
259 return EmitLValue(E->getSubExpr()).getAddress();
260 }
261 Value *VisitUnaryDeref(const Expr *E) { return EmitLoadOfLValue(E); }
262 Value *VisitUnaryPlus(const UnaryOperator *E) {
Mike Stumpb8fc73e2009-05-29 15:46:01 +0000263 // This differs from gcc, though, most likely due to a bug in gcc.
264 TestAndClearIgnoreResultAssign();
Chris Lattner9fba49a2007-08-24 05:35:26 +0000265 return Visit(E->getSubExpr());
266 }
267 Value *VisitUnaryMinus (const UnaryOperator *E);
268 Value *VisitUnaryNot (const UnaryOperator *E);
269 Value *VisitUnaryLNot (const UnaryOperator *E);
Chris Lattner01211af2007-08-24 21:20:17 +0000270 Value *VisitUnaryReal (const UnaryOperator *E);
271 Value *VisitUnaryImag (const UnaryOperator *E);
Chris Lattner9fba49a2007-08-24 05:35:26 +0000272 Value *VisitUnaryExtension(const UnaryOperator *E) {
273 return Visit(E->getSubExpr());
274 }
Anders Carlsson52774ad2008-01-29 15:56:48 +0000275 Value *VisitUnaryOffsetOf(const UnaryOperator *E);
Anders Carlsson49d4a572009-04-14 16:58:56 +0000276
277 // C++
Chris Lattner3e254fb2008-04-08 04:40:51 +0000278 Value *VisitCXXDefaultArgExpr(CXXDefaultArgExpr *DAE) {
279 return Visit(DAE->getExpr());
280 }
Anders Carlsson49d4a572009-04-14 16:58:56 +0000281 Value *VisitCXXThisExpr(CXXThisExpr *TE) {
282 return CGF.LoadCXXThis();
283 }
Anders Carlsson52774ad2008-01-29 15:56:48 +0000284
Anders Carlsson272b5f52009-05-19 04:48:36 +0000285 Value *VisitCXXExprWithTemporaries(CXXExprWithTemporaries *E) {
Anders Carlssond6775602009-05-31 00:09:15 +0000286 return CGF.EmitCXXExprWithTemporaries(E).getScalarVal();
Anders Carlsson272b5f52009-05-19 04:48:36 +0000287 }
288
Chris Lattner9fba49a2007-08-24 05:35:26 +0000289 // Binary Operators.
Chris Lattner9fba49a2007-08-24 05:35:26 +0000290 Value *EmitMul(const BinOpInfo &Ops) {
Mike Stumpf71b7742009-04-02 18:15:54 +0000291 if (CGF.getContext().getLangOptions().OverflowChecking
292 && Ops.Ty->isSignedIntegerType())
Mike Stumpdb789912009-04-01 20:28:16 +0000293 return EmitOverflowCheckedBinOp(Ops);
Chris Lattner9fba49a2007-08-24 05:35:26 +0000294 return Builder.CreateMul(Ops.LHS, Ops.RHS, "mul");
295 }
Mike Stumpdb789912009-04-01 20:28:16 +0000296 /// Create a binary op that checks for overflow.
297 /// Currently only supports +, - and *.
298 Value *EmitOverflowCheckedBinOp(const BinOpInfo &Ops);
Chris Lattner9fba49a2007-08-24 05:35:26 +0000299 Value *EmitDiv(const BinOpInfo &Ops);
300 Value *EmitRem(const BinOpInfo &Ops);
301 Value *EmitAdd(const BinOpInfo &Ops);
302 Value *EmitSub(const BinOpInfo &Ops);
303 Value *EmitShl(const BinOpInfo &Ops);
304 Value *EmitShr(const BinOpInfo &Ops);
305 Value *EmitAnd(const BinOpInfo &Ops) {
306 return Builder.CreateAnd(Ops.LHS, Ops.RHS, "and");
307 }
308 Value *EmitXor(const BinOpInfo &Ops) {
309 return Builder.CreateXor(Ops.LHS, Ops.RHS, "xor");
310 }
311 Value *EmitOr (const BinOpInfo &Ops) {
312 return Builder.CreateOr(Ops.LHS, Ops.RHS, "or");
313 }
314
Chris Lattner660e31d2007-08-24 21:00:35 +0000315 BinOpInfo EmitBinOps(const BinaryOperator *E);
Chris Lattner0d965302007-08-26 21:41:21 +0000316 Value *EmitCompoundAssign(const CompoundAssignOperator *E,
Chris Lattner660e31d2007-08-24 21:00:35 +0000317 Value *(ScalarExprEmitter::*F)(const BinOpInfo &));
318
319 // Binary operators and binary compound assignment operators.
320#define HANDLEBINOP(OP) \
Chris Lattner0d965302007-08-26 21:41:21 +0000321 Value *VisitBin ## OP(const BinaryOperator *E) { \
322 return Emit ## OP(EmitBinOps(E)); \
323 } \
324 Value *VisitBin ## OP ## Assign(const CompoundAssignOperator *E) { \
325 return EmitCompoundAssign(E, &ScalarExprEmitter::Emit ## OP); \
Chris Lattner660e31d2007-08-24 21:00:35 +0000326 }
327 HANDLEBINOP(Mul);
328 HANDLEBINOP(Div);
329 HANDLEBINOP(Rem);
330 HANDLEBINOP(Add);
Daniel Dunbar5d7d0382008-08-06 02:00:38 +0000331 HANDLEBINOP(Sub);
Chris Lattner660e31d2007-08-24 21:00:35 +0000332 HANDLEBINOP(Shl);
333 HANDLEBINOP(Shr);
334 HANDLEBINOP(And);
335 HANDLEBINOP(Xor);
336 HANDLEBINOP(Or);
337#undef HANDLEBINOP
Daniel Dunbar5d7d0382008-08-06 02:00:38 +0000338
Chris Lattner9fba49a2007-08-24 05:35:26 +0000339 // Comparisons.
340 Value *EmitCompare(const BinaryOperator *E, unsigned UICmpOpc,
341 unsigned SICmpOpc, unsigned FCmpOpc);
342#define VISITCOMP(CODE, UI, SI, FP) \
343 Value *VisitBin##CODE(const BinaryOperator *E) { \
344 return EmitCompare(E, llvm::ICmpInst::UI, llvm::ICmpInst::SI, \
345 llvm::FCmpInst::FP); }
346 VISITCOMP(LT, ICMP_ULT, ICMP_SLT, FCMP_OLT);
347 VISITCOMP(GT, ICMP_UGT, ICMP_SGT, FCMP_OGT);
348 VISITCOMP(LE, ICMP_ULE, ICMP_SLE, FCMP_OLE);
349 VISITCOMP(GE, ICMP_UGE, ICMP_SGE, FCMP_OGE);
350 VISITCOMP(EQ, ICMP_EQ , ICMP_EQ , FCMP_OEQ);
351 VISITCOMP(NE, ICMP_NE , ICMP_NE , FCMP_UNE);
352#undef VISITCOMP
353
354 Value *VisitBinAssign (const BinaryOperator *E);
355
356 Value *VisitBinLAnd (const BinaryOperator *E);
357 Value *VisitBinLOr (const BinaryOperator *E);
Chris Lattner9fba49a2007-08-24 05:35:26 +0000358 Value *VisitBinComma (const BinaryOperator *E);
359
360 // Other Operators.
Mike Stump4eb81dc2009-02-12 18:29:15 +0000361 Value *VisitBlockExpr(const BlockExpr *BE);
Chris Lattner9fba49a2007-08-24 05:35:26 +0000362 Value *VisitConditionalOperator(const ConditionalOperator *CO);
363 Value *VisitChooseExpr(ChooseExpr *CE);
Anders Carlsson36760332007-10-15 20:28:48 +0000364 Value *VisitVAArgExpr(VAArgExpr *VE);
Chris Lattner9fba49a2007-08-24 05:35:26 +0000365 Value *VisitObjCStringLiteral(const ObjCStringLiteral *E) {
366 return CGF.EmitObjCStringLiteral(E);
367 }
368};
369} // end anonymous namespace.
370
371//===----------------------------------------------------------------------===//
372// Utilities
373//===----------------------------------------------------------------------===//
374
Chris Lattnerd8d44222007-08-26 16:42:57 +0000375/// EmitConversionToBool - Convert the specified expression value to a
Chris Lattner05942062007-08-26 17:25:57 +0000376/// boolean (i1) truth value. This is equivalent to "Val != 0".
Chris Lattnerd8d44222007-08-26 16:42:57 +0000377Value *ScalarExprEmitter::EmitConversionToBool(Value *Src, QualType SrcType) {
378 assert(SrcType->isCanonical() && "EmitScalarConversion strips typedefs");
379
380 if (SrcType->isRealFloatingType()) {
381 // Compare against 0.0 for fp scalars.
382 llvm::Value *Zero = llvm::Constant::getNullValue(Src->getType());
Chris Lattnerd8d44222007-08-26 16:42:57 +0000383 return Builder.CreateFCmpUNE(Src, Zero, "tobool");
384 }
385
Daniel Dunbar5d54eed2008-08-25 10:38:11 +0000386 assert((SrcType->isIntegerType() || isa<llvm::PointerType>(Src->getType())) &&
Chris Lattnerd8d44222007-08-26 16:42:57 +0000387 "Unknown scalar type to convert");
388
389 // Because of the type rules of C, we often end up computing a logical value,
390 // then zero extending it to int, then wanting it as a logical value again.
391 // Optimize this common case.
392 if (llvm::ZExtInst *ZI = dyn_cast<llvm::ZExtInst>(Src)) {
393 if (ZI->getOperand(0)->getType() == llvm::Type::Int1Ty) {
394 Value *Result = ZI->getOperand(0);
Eli Friedman24f33972008-01-29 18:13:51 +0000395 // If there aren't any more uses, zap the instruction to save space.
396 // Note that there can be more uses, for example if this
397 // is the result of an assignment.
398 if (ZI->use_empty())
399 ZI->eraseFromParent();
Chris Lattnerd8d44222007-08-26 16:42:57 +0000400 return Result;
401 }
402 }
403
404 // Compare against an integer or pointer null.
405 llvm::Value *Zero = llvm::Constant::getNullValue(Src->getType());
406 return Builder.CreateICmpNE(Src, Zero, "tobool");
407}
408
Chris Lattner4e05d1e2007-08-26 06:48:56 +0000409/// EmitScalarConversion - Emit a conversion from the specified type to the
410/// specified destination type, both of which are LLVM scalar types.
Chris Lattnerfb182ee2007-08-26 16:34:22 +0000411Value *ScalarExprEmitter::EmitScalarConversion(Value *Src, QualType SrcType,
412 QualType DstType) {
Chris Lattnerc154ac12008-07-26 22:37:01 +0000413 SrcType = CGF.getContext().getCanonicalType(SrcType);
414 DstType = CGF.getContext().getCanonicalType(DstType);
Chris Lattner4e05d1e2007-08-26 06:48:56 +0000415 if (SrcType == DstType) return Src;
Chris Lattnere133d7f2007-08-26 07:21:11 +0000416
417 if (DstType->isVoidType()) return 0;
Chris Lattner4e05d1e2007-08-26 06:48:56 +0000418
419 // Handle conversions to bool first, they are special: comparisons against 0.
Chris Lattnerc39c3652007-08-26 16:52:28 +0000420 if (DstType->isBooleanType())
421 return EmitConversionToBool(Src, SrcType);
Chris Lattner4e05d1e2007-08-26 06:48:56 +0000422
423 const llvm::Type *DstTy = ConvertType(DstType);
424
425 // Ignore conversions like int -> uint.
426 if (Src->getType() == DstTy)
427 return Src;
428
Daniel Dunbar238335f2008-08-25 09:51:32 +0000429 // Handle pointer conversions next: pointers can only be converted
430 // to/from other pointers and integers. Check for pointer types in
431 // terms of LLVM, as some native types (like Obj-C id) may map to a
432 // pointer type.
433 if (isa<llvm::PointerType>(DstTy)) {
Chris Lattner4e05d1e2007-08-26 06:48:56 +0000434 // The source value may be an integer, or a pointer.
435 if (isa<llvm::PointerType>(Src->getType()))
436 return Builder.CreateBitCast(Src, DstTy, "conv");
437 assert(SrcType->isIntegerType() && "Not ptr->ptr or int->ptr conversion?");
Eli Friedman35bcec82009-03-04 04:02:35 +0000438 // First, convert to the correct width so that we control the kind of
439 // extension.
440 const llvm::Type *MiddleTy = llvm::IntegerType::get(CGF.LLVMPointerWidth);
441 bool InputSigned = SrcType->isSignedIntegerType();
442 llvm::Value* IntResult =
443 Builder.CreateIntCast(Src, MiddleTy, InputSigned, "conv");
444 // Then, cast to pointer.
445 return Builder.CreateIntToPtr(IntResult, DstTy, "conv");
Chris Lattner4e05d1e2007-08-26 06:48:56 +0000446 }
447
Daniel Dunbar238335f2008-08-25 09:51:32 +0000448 if (isa<llvm::PointerType>(Src->getType())) {
Chris Lattner4e05d1e2007-08-26 06:48:56 +0000449 // Must be an ptr to int cast.
450 assert(isa<llvm::IntegerType>(DstTy) && "not ptr->int?");
Anders Carlsson44db38f2007-10-31 23:18:02 +0000451 return Builder.CreatePtrToInt(Src, DstTy, "conv");
Chris Lattner4e05d1e2007-08-26 06:48:56 +0000452 }
453
Nate Begemanaf6ed502008-04-18 23:10:10 +0000454 // A scalar can be splatted to an extended vector of the same element type
Nate Begeman7903d052009-01-18 06:42:49 +0000455 if (DstType->isExtVectorType() && !isa<VectorType>(SrcType)) {
456 // Cast the scalar to element type
457 QualType EltTy = DstType->getAsExtVectorType()->getElementType();
458 llvm::Value *Elt = EmitScalarConversion(Src, SrcType, EltTy);
459
460 // Insert the element in element zero of an undef vector
461 llvm::Value *UnV = llvm::UndefValue::get(DstTy);
462 llvm::Value *Idx = llvm::ConstantInt::get(llvm::Type::Int32Ty, 0);
463 UnV = Builder.CreateInsertElement(UnV, Elt, Idx, "tmp");
464
465 // Splat the element across to all elements
466 llvm::SmallVector<llvm::Constant*, 16> Args;
467 unsigned NumElements = cast<llvm::VectorType>(DstTy)->getNumElements();
468 for (unsigned i = 0; i < NumElements; i++)
469 Args.push_back(llvm::ConstantInt::get(llvm::Type::Int32Ty, 0));
470
471 llvm::Constant *Mask = llvm::ConstantVector::get(&Args[0], NumElements);
472 llvm::Value *Yay = Builder.CreateShuffleVector(UnV, UnV, Mask, "splat");
473 return Yay;
474 }
Nate Begemanec2d1062007-12-30 02:59:45 +0000475
Chris Lattner4f025a42008-02-02 04:51:41 +0000476 // Allow bitcast from vector to integer/fp of the same size.
Anders Carlsson4513ecb2007-12-05 07:36:10 +0000477 if (isa<llvm::VectorType>(Src->getType()) ||
Chris Lattner4f025a42008-02-02 04:51:41 +0000478 isa<llvm::VectorType>(DstTy))
Anders Carlsson4513ecb2007-12-05 07:36:10 +0000479 return Builder.CreateBitCast(Src, DstTy, "conv");
Anders Carlsson4513ecb2007-12-05 07:36:10 +0000480
Chris Lattner4e05d1e2007-08-26 06:48:56 +0000481 // Finally, we have the arithmetic types: real int/float.
482 if (isa<llvm::IntegerType>(Src->getType())) {
483 bool InputSigned = SrcType->isSignedIntegerType();
Anders Carlsson4dac3f42007-12-26 18:20:19 +0000484 if (isa<llvm::IntegerType>(DstTy))
485 return Builder.CreateIntCast(Src, DstTy, InputSigned, "conv");
486 else if (InputSigned)
487 return Builder.CreateSIToFP(Src, DstTy, "conv");
488 else
489 return Builder.CreateUIToFP(Src, DstTy, "conv");
Chris Lattner4e05d1e2007-08-26 06:48:56 +0000490 }
491
492 assert(Src->getType()->isFloatingPoint() && "Unknown real conversion");
493 if (isa<llvm::IntegerType>(DstTy)) {
Anders Carlsson4dac3f42007-12-26 18:20:19 +0000494 if (DstType->isSignedIntegerType())
495 return Builder.CreateFPToSI(Src, DstTy, "conv");
496 else
497 return Builder.CreateFPToUI(Src, DstTy, "conv");
Chris Lattner4e05d1e2007-08-26 06:48:56 +0000498 }
499
500 assert(DstTy->isFloatingPoint() && "Unknown real conversion");
Anders Carlsson4dac3f42007-12-26 18:20:19 +0000501 if (DstTy->getTypeID() < Src->getType()->getTypeID())
502 return Builder.CreateFPTrunc(Src, DstTy, "conv");
503 else
504 return Builder.CreateFPExt(Src, DstTy, "conv");
Chris Lattner4e05d1e2007-08-26 06:48:56 +0000505}
506
Chris Lattnerfb182ee2007-08-26 16:34:22 +0000507/// EmitComplexToScalarConversion - Emit a conversion from the specified
508/// complex type to the specified destination type, where the destination
509/// type is an LLVM scalar type.
510Value *ScalarExprEmitter::
511EmitComplexToScalarConversion(CodeGenFunction::ComplexPairTy Src,
512 QualType SrcTy, QualType DstTy) {
Chris Lattnerc39c3652007-08-26 16:52:28 +0000513 // Get the source element type.
Chris Lattnerc154ac12008-07-26 22:37:01 +0000514 SrcTy = SrcTy->getAsComplexType()->getElementType();
Chris Lattnerc39c3652007-08-26 16:52:28 +0000515
516 // Handle conversions to bool first, they are special: comparisons against 0.
517 if (DstTy->isBooleanType()) {
518 // Complex != 0 -> (Real != 0) | (Imag != 0)
519 Src.first = EmitScalarConversion(Src.first, SrcTy, DstTy);
520 Src.second = EmitScalarConversion(Src.second, SrcTy, DstTy);
521 return Builder.CreateOr(Src.first, Src.second, "tobool");
522 }
523
Chris Lattnerfb182ee2007-08-26 16:34:22 +0000524 // C99 6.3.1.7p2: "When a value of complex type is converted to a real type,
525 // the imaginary part of the complex value is discarded and the value of the
526 // real part is converted according to the conversion rules for the
527 // corresponding real type.
Chris Lattnerfb182ee2007-08-26 16:34:22 +0000528 return EmitScalarConversion(Src.first, SrcTy, DstTy);
529}
530
531
Chris Lattner9fba49a2007-08-24 05:35:26 +0000532//===----------------------------------------------------------------------===//
533// Visitor Methods
534//===----------------------------------------------------------------------===//
535
536Value *ScalarExprEmitter::VisitExpr(Expr *E) {
Daniel Dunbar9503b782008-08-16 00:56:44 +0000537 CGF.ErrorUnsupported(E, "scalar expression");
Chris Lattner9fba49a2007-08-24 05:35:26 +0000538 if (E->getType()->isVoidType())
539 return 0;
540 return llvm::UndefValue::get(CGF.ConvertType(E->getType()));
541}
542
Eli Friedmand0e9d092008-05-14 19:38:39 +0000543Value *ScalarExprEmitter::VisitShuffleVectorExpr(ShuffleVectorExpr *E) {
544 llvm::SmallVector<llvm::Constant*, 32> indices;
545 for (unsigned i = 2; i < E->getNumSubExprs(); i++) {
546 indices.push_back(cast<llvm::Constant>(CGF.EmitScalarExpr(E->getExpr(i))));
547 }
548 Value* V1 = CGF.EmitScalarExpr(E->getExpr(0));
549 Value* V2 = CGF.EmitScalarExpr(E->getExpr(1));
550 Value* SV = llvm::ConstantVector::get(indices.begin(), indices.size());
551 return Builder.CreateShuffleVector(V1, V2, SV, "shuffle");
552}
553
Chris Lattner9fba49a2007-08-24 05:35:26 +0000554Value *ScalarExprEmitter::VisitArraySubscriptExpr(ArraySubscriptExpr *E) {
Mike Stumpb8fc73e2009-05-29 15:46:01 +0000555 TestAndClearIgnoreResultAssign();
556
Chris Lattner9fba49a2007-08-24 05:35:26 +0000557 // Emit subscript expressions in rvalue context's. For most cases, this just
558 // loads the lvalue formed by the subscript expr. However, we have to be
559 // careful, because the base of a vector subscript is occasionally an rvalue,
560 // so we can't get it as an lvalue.
561 if (!E->getBase()->getType()->isVectorType())
562 return EmitLoadOfLValue(E);
563
564 // Handle the vector case. The base must be a vector, the index must be an
565 // integer value.
566 Value *Base = Visit(E->getBase());
567 Value *Idx = Visit(E->getIdx());
Eli Friedman4a0073b2009-03-28 02:45:41 +0000568 bool IdxSigned = E->getIdx()->getType()->isSignedIntegerType();
Eli Friedmand4531942009-03-28 03:27:06 +0000569 Idx = Builder.CreateIntCast(Idx, llvm::Type::Int32Ty, IdxSigned,
570 "vecidxcast");
Chris Lattner9fba49a2007-08-24 05:35:26 +0000571 return Builder.CreateExtractElement(Base, Idx, "vecext");
572}
573
574/// VisitImplicitCastExpr - Implicit casts are the same as normal casts, but
575/// also handle things like function to pointer-to-function decay, and array to
576/// pointer decay.
577Value *ScalarExprEmitter::VisitImplicitCastExpr(const ImplicitCastExpr *E) {
578 const Expr *Op = E->getSubExpr();
579
580 // If this is due to array->pointer conversion, emit the array expression as
581 // an l-value.
582 if (Op->getType()->isArrayType()) {
Chris Lattnerfb182ee2007-08-26 16:34:22 +0000583 Value *V = EmitLValue(Op).getAddress(); // Bitfields can't be arrays.
Eli Friedman8fef47e2008-12-20 23:11:59 +0000584
Eli Friedman4a0073b2009-03-28 02:45:41 +0000585 // Note that VLA pointers are always decayed, so we don't need to do
586 // anything here.
Eli Friedman8fef47e2008-12-20 23:11:59 +0000587 if (!Op->getType()->isVariableArrayType()) {
588 assert(isa<llvm::PointerType>(V->getType()) && "Expected pointer");
589 assert(isa<llvm::ArrayType>(cast<llvm::PointerType>(V->getType())
590 ->getElementType()) &&
591 "Expected pointer to array");
592 V = Builder.CreateStructGEP(V, 0, "arraydecay");
Daniel Dunbar952f4732008-08-29 17:28:43 +0000593 }
Chris Lattnere54443b2007-12-12 04:13:20 +0000594
595 // The resultant pointer type can be implicitly casted to other pointer
Chris Lattner3b8f5c62008-07-23 06:31:27 +0000596 // types as well (e.g. void*) and can be implicitly converted to integer.
597 const llvm::Type *DestTy = ConvertType(E->getType());
598 if (V->getType() != DestTy) {
599 if (isa<llvm::PointerType>(DestTy))
600 V = Builder.CreateBitCast(V, DestTy, "ptrconv");
601 else {
602 assert(isa<llvm::IntegerType>(DestTy) && "Unknown array decay");
603 V = Builder.CreatePtrToInt(V, DestTy, "ptrconv");
604 }
605 }
Chris Lattnere54443b2007-12-12 04:13:20 +0000606 return V;
Chris Lattner9fba49a2007-08-24 05:35:26 +0000607 }
Eli Friedman4a0073b2009-03-28 02:45:41 +0000608
Chris Lattner9fba49a2007-08-24 05:35:26 +0000609 return EmitCastExpr(Op, E->getType());
610}
611
612
613// VisitCastExpr - Emit code for an explicit or implicit cast. Implicit casts
614// have to handle a more broad range of conversions than explicit casts, as they
615// handle things like function to ptr-to-function decay etc.
616Value *ScalarExprEmitter::EmitCastExpr(const Expr *E, QualType DestTy) {
Mike Stumpb8fc73e2009-05-29 15:46:01 +0000617 if (!DestTy->isVoidType())
618 TestAndClearIgnoreResultAssign();
619
Chris Lattner82e10392007-08-26 07:26:12 +0000620 // Handle cases where the source is an non-complex type.
Chris Lattner77288792008-02-16 23:55:16 +0000621
622 if (!CGF.hasAggregateLLVMType(E->getType())) {
Chris Lattner4e05d1e2007-08-26 06:48:56 +0000623 Value *Src = Visit(const_cast<Expr*>(E));
624
Chris Lattner4e05d1e2007-08-26 06:48:56 +0000625 // Use EmitScalarConversion to perform the conversion.
626 return EmitScalarConversion(Src, E->getType(), DestTy);
627 }
Chris Lattner77288792008-02-16 23:55:16 +0000628
Chris Lattnerde0908b2008-04-04 16:54:41 +0000629 if (E->getType()->isAnyComplexType()) {
Chris Lattner77288792008-02-16 23:55:16 +0000630 // Handle cases where the source is a complex type.
Mike Stumpb8fc73e2009-05-29 15:46:01 +0000631 bool IgnoreImag = true;
632 bool IgnoreImagAssign = true;
633 bool IgnoreReal = IgnoreResultAssign;
634 bool IgnoreRealAssign = IgnoreResultAssign;
635 if (DestTy->isBooleanType())
636 IgnoreImagAssign = IgnoreImag = false;
637 else if (DestTy->isVoidType()) {
638 IgnoreReal = IgnoreImag = false;
639 IgnoreRealAssign = IgnoreImagAssign = true;
640 }
641 CodeGenFunction::ComplexPairTy V
642 = CGF.EmitComplexExpr(E, IgnoreReal, IgnoreImag, IgnoreRealAssign,
643 IgnoreImagAssign);
644 return EmitComplexToScalarConversion(V, E->getType(), DestTy);
Chris Lattner77288792008-02-16 23:55:16 +0000645 }
Chris Lattnerd579f7f2007-08-26 07:16:41 +0000646
Chris Lattner77288792008-02-16 23:55:16 +0000647 // Okay, this is a cast from an aggregate. It must be a cast to void. Just
648 // evaluate the result and return.
Mike Stumpb8fc73e2009-05-29 15:46:01 +0000649 CGF.EmitAggExpr(E, 0, false, true);
Chris Lattner77288792008-02-16 23:55:16 +0000650 return 0;
Chris Lattner9fba49a2007-08-24 05:35:26 +0000651}
652
Chris Lattnerea6cdd72007-08-31 22:09:40 +0000653Value *ScalarExprEmitter::VisitStmtExpr(const StmtExpr *E) {
Chris Lattner09cee852008-07-26 20:23:23 +0000654 return CGF.EmitCompoundStmt(*E->getSubStmt(),
655 !E->getType()->isVoidType()).getScalarVal();
Chris Lattnerea6cdd72007-08-31 22:09:40 +0000656}
657
Mike Stump2b6933f2009-02-28 09:07:16 +0000658Value *ScalarExprEmitter::VisitBlockDeclRefExpr(const BlockDeclRefExpr *E) {
659 return Builder.CreateLoad(CGF.GetAddrOfBlockDecl(E), false, "tmp");
Mike Stumpfca5da02009-02-21 20:00:35 +0000660}
Chris Lattnerea6cdd72007-08-31 22:09:40 +0000661
Chris Lattner9fba49a2007-08-24 05:35:26 +0000662//===----------------------------------------------------------------------===//
663// Unary Operators
664//===----------------------------------------------------------------------===//
665
666Value *ScalarExprEmitter::VisitPrePostIncDec(const UnaryOperator *E,
Chris Lattner855e3d72007-08-24 16:24:49 +0000667 bool isInc, bool isPre) {
Chris Lattner9fba49a2007-08-24 05:35:26 +0000668 LValue LV = EmitLValue(E->getSubExpr());
Eli Friedman6a259872009-03-23 03:00:06 +0000669 QualType ValTy = E->getSubExpr()->getType();
670 Value *InVal = CGF.EmitLoadOfLValue(LV, ValTy).getScalarVal();
Chris Lattner9fba49a2007-08-24 05:35:26 +0000671
672 int AmountVal = isInc ? 1 : -1;
Eli Friedman4a0073b2009-03-28 02:45:41 +0000673
674 if (ValTy->isPointerType() &&
675 ValTy->getAsPointerType()->isVariableArrayType()) {
676 // The amount of the addition/subtraction needs to account for the VLA size
677 CGF.ErrorUnsupported(E, "VLA pointer inc/dec");
678 }
679
Chris Lattner9fba49a2007-08-24 05:35:26 +0000680 Value *NextVal;
Chris Lattner8360c612009-03-18 04:25:13 +0000681 if (const llvm::PointerType *PT =
682 dyn_cast<llvm::PointerType>(InVal->getType())) {
Chris Lattner8360c612009-03-18 04:25:13 +0000683 llvm::Constant *Inc =llvm::ConstantInt::get(llvm::Type::Int32Ty, AmountVal);
684 if (!isa<llvm::FunctionType>(PT->getElementType())) {
685 NextVal = Builder.CreateGEP(InVal, Inc, "ptrincdec");
686 } else {
687 const llvm::Type *i8Ty = llvm::PointerType::getUnqual(llvm::Type::Int8Ty);
688 NextVal = Builder.CreateBitCast(InVal, i8Ty, "tmp");
689 NextVal = Builder.CreateGEP(NextVal, Inc, "ptrincdec");
690 NextVal = Builder.CreateBitCast(NextVal, InVal->getType());
691 }
Chris Lattner49083172009-02-11 07:40:06 +0000692 } else if (InVal->getType() == llvm::Type::Int1Ty && isInc) {
693 // Bool++ is an interesting case, due to promotion rules, we get:
694 // Bool++ -> Bool = Bool+1 -> Bool = (int)Bool+1 ->
695 // Bool = ((int)Bool+1) != 0
696 // An interesting aspect of this is that increment is always true.
697 // Decrement does not have this property.
698 NextVal = llvm::ConstantInt::getTrue();
Chris Lattner0dc11f62007-08-26 05:10:16 +0000699 } else {
700 // Add the inc/dec to the real part.
701 if (isa<llvm::IntegerType>(InVal->getType()))
702 NextVal = llvm::ConstantInt::get(InVal->getType(), AmountVal);
Chris Lattnerb2a7dab2007-09-13 06:19:18 +0000703 else if (InVal->getType() == llvm::Type::FloatTy)
Devang Patel0f2a8fb2007-10-30 20:59:40 +0000704 NextVal =
Chris Lattner70c38672008-04-20 00:45:53 +0000705 llvm::ConstantFP::get(llvm::APFloat(static_cast<float>(AmountVal)));
Chris Lattnerd54d1f22008-04-20 00:50:39 +0000706 else if (InVal->getType() == llvm::Type::DoubleTy)
Devang Patel0f2a8fb2007-10-30 20:59:40 +0000707 NextVal =
Chris Lattner70c38672008-04-20 00:45:53 +0000708 llvm::ConstantFP::get(llvm::APFloat(static_cast<double>(AmountVal)));
Chris Lattnerd54d1f22008-04-20 00:50:39 +0000709 else {
710 llvm::APFloat F(static_cast<float>(AmountVal));
Dale Johannesen2461f612008-10-09 23:02:32 +0000711 bool ignored;
712 F.convert(CGF.Target.getLongDoubleFormat(), llvm::APFloat::rmTowardZero,
713 &ignored);
Chris Lattnerd54d1f22008-04-20 00:50:39 +0000714 NextVal = llvm::ConstantFP::get(F);
Chris Lattnerb2a7dab2007-09-13 06:19:18 +0000715 }
Chris Lattner0dc11f62007-08-26 05:10:16 +0000716 NextVal = Builder.CreateAdd(InVal, NextVal, isInc ? "inc" : "dec");
717 }
Chris Lattner9fba49a2007-08-24 05:35:26 +0000718
719 // Store the updated result through the lvalue.
Eli Friedman6a259872009-03-23 03:00:06 +0000720 if (LV.isBitfield())
721 CGF.EmitStoreThroughBitfieldLValue(RValue::get(NextVal), LV, ValTy,
722 &NextVal);
723 else
724 CGF.EmitStoreThroughLValue(RValue::get(NextVal), LV, ValTy);
Chris Lattner9fba49a2007-08-24 05:35:26 +0000725
726 // If this is a postinc, return the value read from memory, otherwise use the
727 // updated value.
728 return isPre ? NextVal : InVal;
729}
730
731
732Value *ScalarExprEmitter::VisitUnaryMinus(const UnaryOperator *E) {
Mike Stumpb8fc73e2009-05-29 15:46:01 +0000733 TestAndClearIgnoreResultAssign();
Chris Lattner9fba49a2007-08-24 05:35:26 +0000734 Value *Op = Visit(E->getSubExpr());
735 return Builder.CreateNeg(Op, "neg");
736}
737
738Value *ScalarExprEmitter::VisitUnaryNot(const UnaryOperator *E) {
Mike Stumpb8fc73e2009-05-29 15:46:01 +0000739 TestAndClearIgnoreResultAssign();
Chris Lattner9fba49a2007-08-24 05:35:26 +0000740 Value *Op = Visit(E->getSubExpr());
741 return Builder.CreateNot(Op, "neg");
742}
743
744Value *ScalarExprEmitter::VisitUnaryLNot(const UnaryOperator *E) {
745 // Compare operand to zero.
746 Value *BoolVal = CGF.EvaluateExprAsBool(E->getSubExpr());
747
748 // Invert value.
749 // TODO: Could dynamically modify easy computations here. For example, if
750 // the operand is an icmp ne, turn into icmp eq.
751 BoolVal = Builder.CreateNot(BoolVal, "lnot");
752
Anders Carlsson62943f32009-05-19 18:44:53 +0000753 // ZExt result to the expr type.
754 return Builder.CreateZExt(BoolVal, ConvertType(E->getType()), "lnot.ext");
Chris Lattner9fba49a2007-08-24 05:35:26 +0000755}
756
Sebastian Redl0cb7c872008-11-11 17:56:53 +0000757/// VisitSizeOfAlignOfExpr - Return the size or alignment of the type of
758/// argument of the sizeof expression as an integer.
759Value *
760ScalarExprEmitter::VisitSizeOfAlignOfExpr(const SizeOfAlignOfExpr *E) {
Sebastian Redl0cb7c872008-11-11 17:56:53 +0000761 QualType TypeToSize = E->getTypeOfArgument();
Eli Friedman5a2c38f2009-01-24 22:19:05 +0000762 if (E->isSizeOf()) {
763 if (const VariableArrayType *VAT =
764 CGF.getContext().getAsVariableArrayType(TypeToSize)) {
765 if (E->isArgumentType()) {
766 // sizeof(type) - make sure to emit the VLA size.
767 CGF.EmitVLASize(TypeToSize);
Eli Friedman04659bd2009-04-20 03:21:44 +0000768 } else {
769 // C99 6.5.3.4p2: If the argument is an expression of type
770 // VLA, it is evaluated.
771 CGF.EmitAnyExpr(E->getArgumentExpr());
Eli Friedman5a2c38f2009-01-24 22:19:05 +0000772 }
Anders Carlssond309f572009-01-30 16:41:04 +0000773
Anders Carlsson8f30de92009-02-05 19:43:10 +0000774 return CGF.GetVLASize(VAT);
Anders Carlsson6cb99b72008-12-21 03:33:21 +0000775 }
Anders Carlsson9be6aaf2008-12-12 07:38:43 +0000776 }
Eli Friedman5a2c38f2009-01-24 22:19:05 +0000777
778 // If this isn't sizeof(vla), the result must be constant; use the
779 // constant folding logic so we don't have to duplicate it here.
780 Expr::EvalResult Result;
781 E->Evaluate(Result, CGF.getContext());
782 return llvm::ConstantInt::get(Result.Val.getInt());
Chris Lattner9fba49a2007-08-24 05:35:26 +0000783}
784
Chris Lattner01211af2007-08-24 21:20:17 +0000785Value *ScalarExprEmitter::VisitUnaryReal(const UnaryOperator *E) {
786 Expr *Op = E->getSubExpr();
Chris Lattnerde0908b2008-04-04 16:54:41 +0000787 if (Op->getType()->isAnyComplexType())
Mike Stumpb8fc73e2009-05-29 15:46:01 +0000788 return CGF.EmitComplexExpr(Op, false, true, false, true).first;
Chris Lattner01211af2007-08-24 21:20:17 +0000789 return Visit(Op);
790}
791Value *ScalarExprEmitter::VisitUnaryImag(const UnaryOperator *E) {
792 Expr *Op = E->getSubExpr();
Chris Lattnerde0908b2008-04-04 16:54:41 +0000793 if (Op->getType()->isAnyComplexType())
Mike Stumpb8fc73e2009-05-29 15:46:01 +0000794 return CGF.EmitComplexExpr(Op, true, false, true, false).second;
Chris Lattnerdb8a6c92007-08-26 05:29:21 +0000795
Mike Stumpb8fc73e2009-05-29 15:46:01 +0000796 // __imag on a scalar returns zero. Emit the subexpr to ensure side
797 // effects are evaluated, but not the actual value.
798 if (E->isLvalue(CGF.getContext()) == Expr::LV_Valid)
799 CGF.EmitLValue(Op);
800 else
801 CGF.EmitScalarExpr(Op, true);
Chris Lattnerdb8a6c92007-08-26 05:29:21 +0000802 return llvm::Constant::getNullValue(ConvertType(E->getType()));
Chris Lattner01211af2007-08-24 21:20:17 +0000803}
804
Anders Carlsson52774ad2008-01-29 15:56:48 +0000805Value *ScalarExprEmitter::VisitUnaryOffsetOf(const UnaryOperator *E)
806{
Eli Friedman342d9432009-02-27 06:44:11 +0000807 Value* ResultAsPtr = EmitLValue(E->getSubExpr()).getAddress();
Eli Friedmanccffea92009-01-24 22:38:55 +0000808 const llvm::Type* ResultType = ConvertType(E->getType());
Eli Friedman342d9432009-02-27 06:44:11 +0000809 return Builder.CreatePtrToInt(ResultAsPtr, ResultType, "offsetof");
Anders Carlsson52774ad2008-01-29 15:56:48 +0000810}
Chris Lattner01211af2007-08-24 21:20:17 +0000811
Chris Lattner9fba49a2007-08-24 05:35:26 +0000812//===----------------------------------------------------------------------===//
813// Binary Operators
814//===----------------------------------------------------------------------===//
815
816BinOpInfo ScalarExprEmitter::EmitBinOps(const BinaryOperator *E) {
Mike Stumpb8fc73e2009-05-29 15:46:01 +0000817 TestAndClearIgnoreResultAssign();
Chris Lattner9fba49a2007-08-24 05:35:26 +0000818 BinOpInfo Result;
819 Result.LHS = Visit(E->getLHS());
820 Result.RHS = Visit(E->getRHS());
Chris Lattner660e31d2007-08-24 21:00:35 +0000821 Result.Ty = E->getType();
Chris Lattner9fba49a2007-08-24 05:35:26 +0000822 Result.E = E;
823 return Result;
824}
825
Chris Lattner0d965302007-08-26 21:41:21 +0000826Value *ScalarExprEmitter::EmitCompoundAssign(const CompoundAssignOperator *E,
Chris Lattner660e31d2007-08-24 21:00:35 +0000827 Value *(ScalarExprEmitter::*Func)(const BinOpInfo &)) {
Mike Stumpb8fc73e2009-05-29 15:46:01 +0000828 bool Ignore = TestAndClearIgnoreResultAssign();
Chris Lattner660e31d2007-08-24 21:00:35 +0000829 QualType LHSTy = E->getLHS()->getType(), RHSTy = E->getRHS()->getType();
830
831 BinOpInfo OpInfo;
832
Eli Friedman3cd92882009-03-28 01:22:36 +0000833 if (E->getComputationResultType()->isAnyComplexType()) {
Eli Friedman4a0073b2009-03-28 02:45:41 +0000834 // This needs to go through the complex expression emitter, but
Eli Friedman3cd92882009-03-28 01:22:36 +0000835 // it's a tad complicated to do that... I'm leaving it out for now.
836 // (Note that we do actually need the imaginary part of the RHS for
837 // multiplication and division.)
838 CGF.ErrorUnsupported(E, "complex compound assignment");
839 return llvm::UndefValue::get(CGF.ConvertType(E->getType()));
840 }
841
Mike Stump8d962262009-05-22 19:07:20 +0000842 // Emit the RHS first. __block variables need to have the rhs evaluated
843 // first, plus this should improve codegen a little.
844 OpInfo.RHS = Visit(E->getRHS());
845 OpInfo.Ty = E->getComputationResultType();
846 OpInfo.E = E;
Eli Friedman3cd92882009-03-28 01:22:36 +0000847 // Load/convert the LHS.
Chris Lattner660e31d2007-08-24 21:00:35 +0000848 LValue LHSLV = EmitLValue(E->getLHS());
849 OpInfo.LHS = EmitLoadOfLValue(LHSLV, LHSTy);
Eli Friedman3cd92882009-03-28 01:22:36 +0000850 OpInfo.LHS = EmitScalarConversion(OpInfo.LHS, LHSTy,
851 E->getComputationLHSType());
Chris Lattner660e31d2007-08-24 21:00:35 +0000852
853 // Expand the binary operator.
854 Value *Result = (this->*Func)(OpInfo);
855
Daniel Dunbar5d7d0382008-08-06 02:00:38 +0000856 // Convert the result back to the LHS type.
Eli Friedman3cd92882009-03-28 01:22:36 +0000857 Result = EmitScalarConversion(Result, E->getComputationResultType(), LHSTy);
858
Daniel Dunbar2668dd12008-11-19 09:36:46 +0000859 // Store the result value into the LHS lvalue. Bit-fields are
Daniel Dunbar2710fc92008-11-19 11:54:05 +0000860 // handled specially because the result is altered by the store,
861 // i.e., [C99 6.5.16p1] 'An assignment expression has the value of
862 // the left operand after the assignment...'.
Mike Stumpb8fc73e2009-05-29 15:46:01 +0000863 if (LHSLV.isBitfield()) {
864 if (!LHSLV.isVolatileQualified()) {
865 CGF.EmitStoreThroughBitfieldLValue(RValue::get(Result), LHSLV, LHSTy,
866 &Result);
867 return Result;
868 } else
869 CGF.EmitStoreThroughBitfieldLValue(RValue::get(Result), LHSLV, LHSTy);
870 } else
Daniel Dunbar2668dd12008-11-19 09:36:46 +0000871 CGF.EmitStoreThroughLValue(RValue::get(Result), LHSLV, LHSTy);
Mike Stumpb8fc73e2009-05-29 15:46:01 +0000872 if (Ignore)
873 return 0;
874 return EmitLoadOfLValue(LHSLV, E->getType());
Chris Lattner660e31d2007-08-24 21:00:35 +0000875}
876
877
Chris Lattner9fba49a2007-08-24 05:35:26 +0000878Value *ScalarExprEmitter::EmitDiv(const BinOpInfo &Ops) {
Nate Begemanaade3bf2007-12-30 01:28:16 +0000879 if (Ops.LHS->getType()->isFPOrFPVector())
Chris Lattner9fba49a2007-08-24 05:35:26 +0000880 return Builder.CreateFDiv(Ops.LHS, Ops.RHS, "div");
Chris Lattner660e31d2007-08-24 21:00:35 +0000881 else if (Ops.Ty->isUnsignedIntegerType())
Chris Lattner9fba49a2007-08-24 05:35:26 +0000882 return Builder.CreateUDiv(Ops.LHS, Ops.RHS, "div");
883 else
884 return Builder.CreateSDiv(Ops.LHS, Ops.RHS, "div");
885}
886
887Value *ScalarExprEmitter::EmitRem(const BinOpInfo &Ops) {
888 // Rem in C can't be a floating point type: C99 6.5.5p2.
Chris Lattner660e31d2007-08-24 21:00:35 +0000889 if (Ops.Ty->isUnsignedIntegerType())
Chris Lattner9fba49a2007-08-24 05:35:26 +0000890 return Builder.CreateURem(Ops.LHS, Ops.RHS, "rem");
891 else
892 return Builder.CreateSRem(Ops.LHS, Ops.RHS, "rem");
893}
894
Mike Stumpdb789912009-04-01 20:28:16 +0000895Value *ScalarExprEmitter::EmitOverflowCheckedBinOp(const BinOpInfo &Ops) {
896 unsigned IID;
897 unsigned OpID = 0;
Mike Stump0f595bb2009-04-02 01:03:55 +0000898
Mike Stumpf71b7742009-04-02 18:15:54 +0000899 switch (Ops.E->getOpcode()) {
900 case BinaryOperator::Add:
901 case BinaryOperator::AddAssign:
902 OpID = 1;
903 IID = llvm::Intrinsic::sadd_with_overflow;
904 break;
905 case BinaryOperator::Sub:
906 case BinaryOperator::SubAssign:
907 OpID = 2;
908 IID = llvm::Intrinsic::ssub_with_overflow;
909 break;
910 case BinaryOperator::Mul:
911 case BinaryOperator::MulAssign:
912 OpID = 3;
913 IID = llvm::Intrinsic::smul_with_overflow;
914 break;
915 default:
916 assert(false && "Unsupported operation for overflow detection");
Daniel Dunbar96e909b2009-04-08 16:23:09 +0000917 IID = 0;
Mike Stumpdb789912009-04-01 20:28:16 +0000918 }
Mike Stumpf71b7742009-04-02 18:15:54 +0000919 OpID <<= 1;
920 OpID |= 1;
921
Mike Stumpdb789912009-04-01 20:28:16 +0000922 const llvm::Type *opTy = CGF.CGM.getTypes().ConvertType(Ops.Ty);
923
924 llvm::Function *intrinsic = CGF.CGM.getIntrinsic(IID, &opTy, 1);
925
926 Value *resultAndOverflow = Builder.CreateCall2(intrinsic, Ops.LHS, Ops.RHS);
927 Value *result = Builder.CreateExtractValue(resultAndOverflow, 0);
928 Value *overflow = Builder.CreateExtractValue(resultAndOverflow, 1);
929
930 // Branch in case of overflow.
931 llvm::BasicBlock *initialBB = Builder.GetInsertBlock();
932 llvm::BasicBlock *overflowBB =
933 CGF.createBasicBlock("overflow", CGF.CurFn);
934 llvm::BasicBlock *continueBB =
935 CGF.createBasicBlock("overflow.continue", CGF.CurFn);
936
937 Builder.CreateCondBr(overflow, overflowBB, continueBB);
938
939 // Handle overflow
940
941 Builder.SetInsertPoint(overflowBB);
942
943 // Handler is:
944 // long long *__overflow_handler)(long long a, long long b, char op,
945 // char width)
946 std::vector<const llvm::Type*> handerArgTypes;
947 handerArgTypes.push_back(llvm::Type::Int64Ty);
948 handerArgTypes.push_back(llvm::Type::Int64Ty);
949 handerArgTypes.push_back(llvm::Type::Int8Ty);
950 handerArgTypes.push_back(llvm::Type::Int8Ty);
951 llvm::FunctionType *handlerTy = llvm::FunctionType::get(llvm::Type::Int64Ty,
952 handerArgTypes, false);
953 llvm::Value *handlerFunction =
954 CGF.CGM.getModule().getOrInsertGlobal("__overflow_handler",
955 llvm::PointerType::getUnqual(handlerTy));
956 handlerFunction = Builder.CreateLoad(handlerFunction);
957
958 llvm::Value *handlerResult = Builder.CreateCall4(handlerFunction,
959 Builder.CreateSExt(Ops.LHS, llvm::Type::Int64Ty),
960 Builder.CreateSExt(Ops.RHS, llvm::Type::Int64Ty),
961 llvm::ConstantInt::get(llvm::Type::Int8Ty, OpID),
962 llvm::ConstantInt::get(llvm::Type::Int8Ty,
963 cast<llvm::IntegerType>(opTy)->getBitWidth()));
964
965 handlerResult = Builder.CreateTrunc(handlerResult, opTy);
966
967 Builder.CreateBr(continueBB);
968
969 // Set up the continuation
970 Builder.SetInsertPoint(continueBB);
971 // Get the correct result
972 llvm::PHINode *phi = Builder.CreatePHI(opTy);
973 phi->reserveOperandSpace(2);
974 phi->addIncoming(result, initialBB);
975 phi->addIncoming(handlerResult, overflowBB);
976
977 return phi;
978}
Chris Lattner9fba49a2007-08-24 05:35:26 +0000979
980Value *ScalarExprEmitter::EmitAdd(const BinOpInfo &Ops) {
Mike Stumpdb789912009-04-01 20:28:16 +0000981 if (!Ops.Ty->isPointerType()) {
Mike Stumpf71b7742009-04-02 18:15:54 +0000982 if (CGF.getContext().getLangOptions().OverflowChecking
983 && Ops.Ty->isSignedIntegerType())
Mike Stumpdb789912009-04-01 20:28:16 +0000984 return EmitOverflowCheckedBinOp(Ops);
Chris Lattner9fba49a2007-08-24 05:35:26 +0000985 return Builder.CreateAdd(Ops.LHS, Ops.RHS, "add");
Mike Stumpdb789912009-04-01 20:28:16 +0000986 }
Eli Friedman4a0073b2009-03-28 02:45:41 +0000987
988 if (Ops.Ty->getAsPointerType()->isVariableArrayType()) {
989 // The amount of the addition needs to account for the VLA size
990 CGF.ErrorUnsupported(Ops.E, "VLA pointer addition");
991 }
Chris Lattner17c0cb02008-01-03 06:36:51 +0000992 Value *Ptr, *Idx;
993 Expr *IdxExp;
Daniel Dunbar4fd58ab2009-01-23 18:51:09 +0000994 const PointerType *PT;
995 if ((PT = Ops.E->getLHS()->getType()->getAsPointerType())) {
Chris Lattner17c0cb02008-01-03 06:36:51 +0000996 Ptr = Ops.LHS;
997 Idx = Ops.RHS;
998 IdxExp = Ops.E->getRHS();
999 } else { // int + pointer
Daniel Dunbar4fd58ab2009-01-23 18:51:09 +00001000 PT = Ops.E->getRHS()->getType()->getAsPointerType();
1001 assert(PT && "Invalid add expr");
Chris Lattner17c0cb02008-01-03 06:36:51 +00001002 Ptr = Ops.RHS;
1003 Idx = Ops.LHS;
1004 IdxExp = Ops.E->getLHS();
1005 }
1006
1007 unsigned Width = cast<llvm::IntegerType>(Idx->getType())->getBitWidth();
Sanjiv Guptacee8fea2009-04-24 02:40:57 +00001008 if (Width < CGF.LLVMPointerWidth) {
Chris Lattner17c0cb02008-01-03 06:36:51 +00001009 // Zero or sign extend the pointer value based on whether the index is
1010 // signed or not.
Sanjiv Guptacee8fea2009-04-24 02:40:57 +00001011 const llvm::Type *IdxType = llvm::IntegerType::get(CGF.LLVMPointerWidth);
Chris Lattnerc154ac12008-07-26 22:37:01 +00001012 if (IdxExp->getType()->isSignedIntegerType())
Chris Lattner17c0cb02008-01-03 06:36:51 +00001013 Idx = Builder.CreateSExt(Idx, IdxType, "idx.ext");
1014 else
1015 Idx = Builder.CreateZExt(Idx, IdxType, "idx.ext");
1016 }
Daniel Dunbar4fd58ab2009-01-23 18:51:09 +00001017
Daniel Dunbar6864c0d2009-04-25 05:08:32 +00001018 const QualType ElementType = PT->getPointeeType();
1019 // Handle interface types, which are not represented with a concrete
1020 // type.
1021 if (const ObjCInterfaceType *OIT = dyn_cast<ObjCInterfaceType>(ElementType)) {
1022 llvm::Value *InterfaceSize =
1023 llvm::ConstantInt::get(Idx->getType(),
1024 CGF.getContext().getTypeSize(OIT) / 8);
1025 Idx = Builder.CreateMul(Idx, InterfaceSize);
1026 const llvm::Type *i8Ty = llvm::PointerType::getUnqual(llvm::Type::Int8Ty);
1027 Value *Casted = Builder.CreateBitCast(Ptr, i8Ty);
1028 Value *Res = Builder.CreateGEP(Casted, Idx, "add.ptr");
1029 return Builder.CreateBitCast(Res, Ptr->getType());
1030 }
1031
Daniel Dunbar4fd58ab2009-01-23 18:51:09 +00001032 // Explicitly handle GNU void* and function pointer arithmetic
1033 // extensions. The GNU void* casts amount to no-ops since our void*
1034 // type is i8*, but this is future proof.
Daniel Dunbar4fd58ab2009-01-23 18:51:09 +00001035 if (ElementType->isVoidType() || ElementType->isFunctionType()) {
1036 const llvm::Type *i8Ty = llvm::PointerType::getUnqual(llvm::Type::Int8Ty);
1037 Value *Casted = Builder.CreateBitCast(Ptr, i8Ty);
Daniel Dunbar6864c0d2009-04-25 05:08:32 +00001038 Value *Res = Builder.CreateGEP(Casted, Idx, "add.ptr");
Daniel Dunbar4fd58ab2009-01-23 18:51:09 +00001039 return Builder.CreateBitCast(Res, Ptr->getType());
1040 }
Chris Lattner17c0cb02008-01-03 06:36:51 +00001041
1042 return Builder.CreateGEP(Ptr, Idx, "add.ptr");
Chris Lattner9fba49a2007-08-24 05:35:26 +00001043}
1044
1045Value *ScalarExprEmitter::EmitSub(const BinOpInfo &Ops) {
Mike Stumpdb789912009-04-01 20:28:16 +00001046 if (!isa<llvm::PointerType>(Ops.LHS->getType())) {
Mike Stumpf71b7742009-04-02 18:15:54 +00001047 if (CGF.getContext().getLangOptions().OverflowChecking
1048 && Ops.Ty->isSignedIntegerType())
Mike Stumpdb789912009-04-01 20:28:16 +00001049 return EmitOverflowCheckedBinOp(Ops);
Chris Lattner9fba49a2007-08-24 05:35:26 +00001050 return Builder.CreateSub(Ops.LHS, Ops.RHS, "sub");
Mike Stumpdb789912009-04-01 20:28:16 +00001051 }
Chris Lattner660e31d2007-08-24 21:00:35 +00001052
Eli Friedman4a0073b2009-03-28 02:45:41 +00001053 if (Ops.E->getLHS()->getType()->getAsPointerType()->isVariableArrayType()) {
1054 // The amount of the addition needs to account for the VLA size for
1055 // ptr-int
1056 // The amount of the division needs to account for the VLA size for
1057 // ptr-ptr.
1058 CGF.ErrorUnsupported(Ops.E, "VLA pointer subtraction");
1059 }
1060
Daniel Dunbar4fd58ab2009-01-23 18:51:09 +00001061 const QualType LHSType = Ops.E->getLHS()->getType();
1062 const QualType LHSElementType = LHSType->getAsPointerType()->getPointeeType();
Daniel Dunbar5d7d0382008-08-06 02:00:38 +00001063 if (!isa<llvm::PointerType>(Ops.RHS->getType())) {
1064 // pointer - int
1065 Value *Idx = Ops.RHS;
1066 unsigned Width = cast<llvm::IntegerType>(Idx->getType())->getBitWidth();
Sanjiv Guptacee8fea2009-04-24 02:40:57 +00001067 if (Width < CGF.LLVMPointerWidth) {
Daniel Dunbar5d7d0382008-08-06 02:00:38 +00001068 // Zero or sign extend the pointer value based on whether the index is
1069 // signed or not.
Sanjiv Guptacee8fea2009-04-24 02:40:57 +00001070 const llvm::Type *IdxType = llvm::IntegerType::get(CGF.LLVMPointerWidth);
Daniel Dunbar5d7d0382008-08-06 02:00:38 +00001071 if (Ops.E->getRHS()->getType()->isSignedIntegerType())
1072 Idx = Builder.CreateSExt(Idx, IdxType, "idx.ext");
1073 else
1074 Idx = Builder.CreateZExt(Idx, IdxType, "idx.ext");
1075 }
1076 Idx = Builder.CreateNeg(Idx, "sub.ptr.neg");
Daniel Dunbar4fd58ab2009-01-23 18:51:09 +00001077
Daniel Dunbar6864c0d2009-04-25 05:08:32 +00001078 // Handle interface types, which are not represented with a concrete
1079 // type.
1080 if (const ObjCInterfaceType *OIT =
1081 dyn_cast<ObjCInterfaceType>(LHSElementType)) {
1082 llvm::Value *InterfaceSize =
1083 llvm::ConstantInt::get(Idx->getType(),
1084 CGF.getContext().getTypeSize(OIT) / 8);
1085 Idx = Builder.CreateMul(Idx, InterfaceSize);
1086 const llvm::Type *i8Ty = llvm::PointerType::getUnqual(llvm::Type::Int8Ty);
1087 Value *LHSCasted = Builder.CreateBitCast(Ops.LHS, i8Ty);
1088 Value *Res = Builder.CreateGEP(LHSCasted, Idx, "add.ptr");
1089 return Builder.CreateBitCast(Res, Ops.LHS->getType());
1090 }
1091
Daniel Dunbar4fd58ab2009-01-23 18:51:09 +00001092 // Explicitly handle GNU void* and function pointer arithmetic
1093 // extensions. The GNU void* casts amount to no-ops since our
1094 // void* type is i8*, but this is future proof.
1095 if (LHSElementType->isVoidType() || LHSElementType->isFunctionType()) {
1096 const llvm::Type *i8Ty = llvm::PointerType::getUnqual(llvm::Type::Int8Ty);
1097 Value *LHSCasted = Builder.CreateBitCast(Ops.LHS, i8Ty);
1098 Value *Res = Builder.CreateGEP(LHSCasted, Idx, "sub.ptr");
1099 return Builder.CreateBitCast(Res, Ops.LHS->getType());
1100 }
1101
Daniel Dunbar5d7d0382008-08-06 02:00:38 +00001102 return Builder.CreateGEP(Ops.LHS, Idx, "sub.ptr");
Daniel Dunbar0aac9f62008-08-05 00:47:03 +00001103 } else {
Daniel Dunbar5d7d0382008-08-06 02:00:38 +00001104 // pointer - pointer
1105 Value *LHS = Ops.LHS;
1106 Value *RHS = Ops.RHS;
Chris Lattner660e31d2007-08-24 21:00:35 +00001107
Daniel Dunbar5d7d0382008-08-06 02:00:38 +00001108 uint64_t ElementSize;
Daniel Dunbar0aac9f62008-08-05 00:47:03 +00001109
Chris Lattner6d2e3492009-02-11 07:21:43 +00001110 // Handle GCC extension for pointer arithmetic on void* and function pointer
1111 // types.
1112 if (LHSElementType->isVoidType() || LHSElementType->isFunctionType()) {
Daniel Dunbar5d7d0382008-08-06 02:00:38 +00001113 ElementSize = 1;
1114 } else {
1115 ElementSize = CGF.getContext().getTypeSize(LHSElementType) / 8;
1116 }
1117
1118 const llvm::Type *ResultType = ConvertType(Ops.Ty);
1119 LHS = Builder.CreatePtrToInt(LHS, ResultType, "sub.ptr.lhs.cast");
1120 RHS = Builder.CreatePtrToInt(RHS, ResultType, "sub.ptr.rhs.cast");
1121 Value *BytesBetween = Builder.CreateSub(LHS, RHS, "sub.ptr.sub");
1122
Chris Lattner6d2e3492009-02-11 07:21:43 +00001123 // Optimize out the shift for element size of 1.
1124 if (ElementSize == 1)
1125 return BytesBetween;
1126
Daniel Dunbar5d7d0382008-08-06 02:00:38 +00001127 // HACK: LLVM doesn't have an divide instruction that 'knows' there is no
1128 // remainder. As such, we handle common power-of-two cases here to generate
1129 // better code. See PR2247.
1130 if (llvm::isPowerOf2_64(ElementSize)) {
1131 Value *ShAmt =
1132 llvm::ConstantInt::get(ResultType, llvm::Log2_64(ElementSize));
1133 return Builder.CreateAShr(BytesBetween, ShAmt, "sub.ptr.shr");
1134 }
1135
1136 // Otherwise, do a full sdiv.
1137 Value *BytesPerElt = llvm::ConstantInt::get(ResultType, ElementSize);
1138 return Builder.CreateSDiv(BytesBetween, BytesPerElt, "sub.ptr.div");
Chris Lattner9fba49a2007-08-24 05:35:26 +00001139 }
Chris Lattner9fba49a2007-08-24 05:35:26 +00001140}
1141
1142Value *ScalarExprEmitter::EmitShl(const BinOpInfo &Ops) {
1143 // LLVM requires the LHS and RHS to be the same type: promote or truncate the
1144 // RHS to the same size as the LHS.
1145 Value *RHS = Ops.RHS;
1146 if (Ops.LHS->getType() != RHS->getType())
1147 RHS = Builder.CreateIntCast(RHS, Ops.LHS->getType(), false, "sh_prom");
1148
1149 return Builder.CreateShl(Ops.LHS, RHS, "shl");
1150}
1151
1152Value *ScalarExprEmitter::EmitShr(const BinOpInfo &Ops) {
1153 // LLVM requires the LHS and RHS to be the same type: promote or truncate the
1154 // RHS to the same size as the LHS.
1155 Value *RHS = Ops.RHS;
1156 if (Ops.LHS->getType() != RHS->getType())
1157 RHS = Builder.CreateIntCast(RHS, Ops.LHS->getType(), false, "sh_prom");
1158
Chris Lattner660e31d2007-08-24 21:00:35 +00001159 if (Ops.Ty->isUnsignedIntegerType())
Chris Lattner9fba49a2007-08-24 05:35:26 +00001160 return Builder.CreateLShr(Ops.LHS, RHS, "shr");
1161 return Builder.CreateAShr(Ops.LHS, RHS, "shr");
1162}
1163
1164Value *ScalarExprEmitter::EmitCompare(const BinaryOperator *E,unsigned UICmpOpc,
1165 unsigned SICmpOpc, unsigned FCmpOpc) {
Mike Stumpb8fc73e2009-05-29 15:46:01 +00001166 TestAndClearIgnoreResultAssign();
Chris Lattnerfb182ee2007-08-26 16:34:22 +00001167 Value *Result;
Chris Lattner9fba49a2007-08-24 05:35:26 +00001168 QualType LHSTy = E->getLHS()->getType();
Nate Begeman1591bc52008-07-25 20:16:05 +00001169 if (!LHSTy->isAnyComplexType() && !LHSTy->isVectorType()) {
Chris Lattner9fba49a2007-08-24 05:35:26 +00001170 Value *LHS = Visit(E->getLHS());
1171 Value *RHS = Visit(E->getRHS());
1172
1173 if (LHS->getType()->isFloatingPoint()) {
Nate Begeman1591bc52008-07-25 20:16:05 +00001174 Result = Builder.CreateFCmp((llvm::CmpInst::Predicate)FCmpOpc,
Chris Lattner9fba49a2007-08-24 05:35:26 +00001175 LHS, RHS, "cmp");
Eli Friedman850ea372008-05-29 15:09:15 +00001176 } else if (LHSTy->isSignedIntegerType()) {
1177 Result = Builder.CreateICmp((llvm::ICmpInst::Predicate)SICmpOpc,
Chris Lattner9fba49a2007-08-24 05:35:26 +00001178 LHS, RHS, "cmp");
1179 } else {
Eli Friedman850ea372008-05-29 15:09:15 +00001180 // Unsigned integers and pointers.
1181 Result = Builder.CreateICmp((llvm::ICmpInst::Predicate)UICmpOpc,
Chris Lattner9fba49a2007-08-24 05:35:26 +00001182 LHS, RHS, "cmp");
1183 }
Nate Begeman1591bc52008-07-25 20:16:05 +00001184 } else if (LHSTy->isVectorType()) {
1185 Value *LHS = Visit(E->getLHS());
1186 Value *RHS = Visit(E->getRHS());
1187
1188 if (LHS->getType()->isFPOrFPVector()) {
1189 Result = Builder.CreateVFCmp((llvm::CmpInst::Predicate)FCmpOpc,
1190 LHS, RHS, "cmp");
1191 } else if (LHSTy->isUnsignedIntegerType()) {
1192 Result = Builder.CreateVICmp((llvm::CmpInst::Predicate)UICmpOpc,
1193 LHS, RHS, "cmp");
1194 } else {
1195 // Signed integers and pointers.
1196 Result = Builder.CreateVICmp((llvm::CmpInst::Predicate)SICmpOpc,
1197 LHS, RHS, "cmp");
1198 }
1199 return Result;
Chris Lattner9fba49a2007-08-24 05:35:26 +00001200 } else {
1201 // Complex Comparison: can only be an equality comparison.
1202 CodeGenFunction::ComplexPairTy LHS = CGF.EmitComplexExpr(E->getLHS());
1203 CodeGenFunction::ComplexPairTy RHS = CGF.EmitComplexExpr(E->getRHS());
1204
Chris Lattnerc154ac12008-07-26 22:37:01 +00001205 QualType CETy = LHSTy->getAsComplexType()->getElementType();
Chris Lattner9fba49a2007-08-24 05:35:26 +00001206
Chris Lattnerfb182ee2007-08-26 16:34:22 +00001207 Value *ResultR, *ResultI;
Chris Lattner9fba49a2007-08-24 05:35:26 +00001208 if (CETy->isRealFloatingType()) {
1209 ResultR = Builder.CreateFCmp((llvm::FCmpInst::Predicate)FCmpOpc,
1210 LHS.first, RHS.first, "cmp.r");
1211 ResultI = Builder.CreateFCmp((llvm::FCmpInst::Predicate)FCmpOpc,
1212 LHS.second, RHS.second, "cmp.i");
1213 } else {
1214 // Complex comparisons can only be equality comparisons. As such, signed
1215 // and unsigned opcodes are the same.
1216 ResultR = Builder.CreateICmp((llvm::ICmpInst::Predicate)UICmpOpc,
1217 LHS.first, RHS.first, "cmp.r");
1218 ResultI = Builder.CreateICmp((llvm::ICmpInst::Predicate)UICmpOpc,
1219 LHS.second, RHS.second, "cmp.i");
1220 }
1221
1222 if (E->getOpcode() == BinaryOperator::EQ) {
1223 Result = Builder.CreateAnd(ResultR, ResultI, "and.ri");
1224 } else {
1225 assert(E->getOpcode() == BinaryOperator::NE &&
1226 "Complex comparison other than == or != ?");
1227 Result = Builder.CreateOr(ResultR, ResultI, "or.ri");
1228 }
1229 }
Nuno Lopes92577002009-01-11 23:22:37 +00001230
1231 return EmitScalarConversion(Result, CGF.getContext().BoolTy, E->getType());
Chris Lattner9fba49a2007-08-24 05:35:26 +00001232}
1233
1234Value *ScalarExprEmitter::VisitBinAssign(const BinaryOperator *E) {
Mike Stumpb8fc73e2009-05-29 15:46:01 +00001235 bool Ignore = TestAndClearIgnoreResultAssign();
1236
1237 // __block variables need to have the rhs evaluated first, plus this should
1238 // improve codegen just a little.
Chris Lattner9fba49a2007-08-24 05:35:26 +00001239 Value *RHS = Visit(E->getRHS());
Mike Stump68df15c2009-05-21 21:05:15 +00001240 LValue LHS = EmitLValue(E->getLHS());
Chris Lattner9fba49a2007-08-24 05:35:26 +00001241
Daniel Dunbar2668dd12008-11-19 09:36:46 +00001242 // Store the value into the LHS. Bit-fields are handled specially
Daniel Dunbar2710fc92008-11-19 11:54:05 +00001243 // because the result is altered by the store, i.e., [C99 6.5.16p1]
1244 // 'An assignment expression has the value of the left operand after
Eli Friedman4a0073b2009-03-28 02:45:41 +00001245 // the assignment...'.
Mike Stumpb8fc73e2009-05-29 15:46:01 +00001246 if (LHS.isBitfield()) {
1247 if (!LHS.isVolatileQualified()) {
1248 CGF.EmitStoreThroughBitfieldLValue(RValue::get(RHS), LHS, E->getType(),
1249 &RHS);
1250 return RHS;
1251 } else
1252 CGF.EmitStoreThroughBitfieldLValue(RValue::get(RHS), LHS, E->getType());
1253 } else
Daniel Dunbar2668dd12008-11-19 09:36:46 +00001254 CGF.EmitStoreThroughLValue(RValue::get(RHS), LHS, E->getType());
Mike Stumpb8fc73e2009-05-29 15:46:01 +00001255 if (Ignore)
1256 return 0;
1257 return EmitLoadOfLValue(LHS, E->getType());
Chris Lattner9fba49a2007-08-24 05:35:26 +00001258}
1259
1260Value *ScalarExprEmitter::VisitBinLAnd(const BinaryOperator *E) {
Chris Lattner715c2a72008-11-12 08:26:50 +00001261 // If we have 0 && RHS, see if we can elide RHS, if so, just return 0.
1262 // If we have 1 && X, just emit X without inserting the control flow.
1263 if (int Cond = CGF.ConstantFoldsToSimpleInteger(E->getLHS())) {
1264 if (Cond == 1) { // If we have 1 && X, just emit X.
Chris Lattner3f73d0d2008-11-11 07:41:27 +00001265 Value *RHSCond = CGF.EvaluateExprAsBool(E->getRHS());
1266 // ZExt result to int.
1267 return Builder.CreateZExt(RHSCond, CGF.LLVMIntTy, "land.ext");
1268 }
Chris Lattner715c2a72008-11-12 08:26:50 +00001269
1270 // 0 && RHS: If it is safe, just elide the RHS, and return 0.
1271 if (!CGF.ContainsLabel(E->getRHS()))
1272 return llvm::Constant::getNullValue(CGF.LLVMIntTy);
Chris Lattner3f73d0d2008-11-11 07:41:27 +00001273 }
1274
Daniel Dunbar6e3a10c2008-11-13 01:38:36 +00001275 llvm::BasicBlock *ContBlock = CGF.createBasicBlock("land.end");
1276 llvm::BasicBlock *RHSBlock = CGF.createBasicBlock("land.rhs");
Chris Lattner715c2a72008-11-12 08:26:50 +00001277
Chris Lattner7f80bb32008-11-12 08:38:24 +00001278 // Branch on the LHS first. If it is false, go to the failure (cont) block.
1279 CGF.EmitBranchOnBoolExpr(E->getLHS(), RHSBlock, ContBlock);
1280
1281 // Any edges into the ContBlock are now from an (indeterminate number of)
1282 // edges from this first condition. All of these values will be false. Start
1283 // setting up the PHI node in the Cont Block for this.
1284 llvm::PHINode *PN = llvm::PHINode::Create(llvm::Type::Int1Ty, "", ContBlock);
1285 PN->reserveOperandSpace(2); // Normal case, two inputs.
1286 for (llvm::pred_iterator PI = pred_begin(ContBlock), PE = pred_end(ContBlock);
1287 PI != PE; ++PI)
1288 PN->addIncoming(llvm::ConstantInt::getFalse(), *PI);
Chris Lattner9fba49a2007-08-24 05:35:26 +00001289
1290 CGF.EmitBlock(RHSBlock);
1291 Value *RHSCond = CGF.EvaluateExprAsBool(E->getRHS());
1292
1293 // Reaquire the RHS block, as there may be subblocks inserted.
1294 RHSBlock = Builder.GetInsertBlock();
Chris Lattner7f80bb32008-11-12 08:38:24 +00001295
1296 // Emit an unconditional branch from this block to ContBlock. Insert an entry
1297 // into the phi node for the edge with the value of RHSCond.
Chris Lattner9fba49a2007-08-24 05:35:26 +00001298 CGF.EmitBlock(ContBlock);
Chris Lattner9fba49a2007-08-24 05:35:26 +00001299 PN->addIncoming(RHSCond, RHSBlock);
1300
1301 // ZExt result to int.
1302 return Builder.CreateZExt(PN, CGF.LLVMIntTy, "land.ext");
1303}
1304
1305Value *ScalarExprEmitter::VisitBinLOr(const BinaryOperator *E) {
Chris Lattner715c2a72008-11-12 08:26:50 +00001306 // If we have 1 || RHS, see if we can elide RHS, if so, just return 1.
1307 // If we have 0 || X, just emit X without inserting the control flow.
1308 if (int Cond = CGF.ConstantFoldsToSimpleInteger(E->getLHS())) {
1309 if (Cond == -1) { // If we have 0 || X, just emit X.
Chris Lattner3f73d0d2008-11-11 07:41:27 +00001310 Value *RHSCond = CGF.EvaluateExprAsBool(E->getRHS());
1311 // ZExt result to int.
1312 return Builder.CreateZExt(RHSCond, CGF.LLVMIntTy, "lor.ext");
1313 }
Chris Lattner715c2a72008-11-12 08:26:50 +00001314
Eli Friedmanea137cd2008-12-02 16:02:46 +00001315 // 1 || RHS: If it is safe, just elide the RHS, and return 1.
Chris Lattner715c2a72008-11-12 08:26:50 +00001316 if (!CGF.ContainsLabel(E->getRHS()))
Eli Friedmanea137cd2008-12-02 16:02:46 +00001317 return llvm::ConstantInt::get(CGF.LLVMIntTy, 1);
Chris Lattner3f73d0d2008-11-11 07:41:27 +00001318 }
1319
Daniel Dunbar6e3a10c2008-11-13 01:38:36 +00001320 llvm::BasicBlock *ContBlock = CGF.createBasicBlock("lor.end");
1321 llvm::BasicBlock *RHSBlock = CGF.createBasicBlock("lor.rhs");
Chris Lattner9fba49a2007-08-24 05:35:26 +00001322
Chris Lattner7f80bb32008-11-12 08:38:24 +00001323 // Branch on the LHS first. If it is true, go to the success (cont) block.
1324 CGF.EmitBranchOnBoolExpr(E->getLHS(), ContBlock, RHSBlock);
1325
1326 // Any edges into the ContBlock are now from an (indeterminate number of)
1327 // edges from this first condition. All of these values will be true. Start
1328 // setting up the PHI node in the Cont Block for this.
1329 llvm::PHINode *PN = llvm::PHINode::Create(llvm::Type::Int1Ty, "", ContBlock);
1330 PN->reserveOperandSpace(2); // Normal case, two inputs.
1331 for (llvm::pred_iterator PI = pred_begin(ContBlock), PE = pred_end(ContBlock);
1332 PI != PE; ++PI)
1333 PN->addIncoming(llvm::ConstantInt::getTrue(), *PI);
1334
1335 // Emit the RHS condition as a bool value.
Chris Lattner9fba49a2007-08-24 05:35:26 +00001336 CGF.EmitBlock(RHSBlock);
1337 Value *RHSCond = CGF.EvaluateExprAsBool(E->getRHS());
1338
1339 // Reaquire the RHS block, as there may be subblocks inserted.
1340 RHSBlock = Builder.GetInsertBlock();
Chris Lattner9fba49a2007-08-24 05:35:26 +00001341
Chris Lattner7f80bb32008-11-12 08:38:24 +00001342 // Emit an unconditional branch from this block to ContBlock. Insert an entry
1343 // into the phi node for the edge with the value of RHSCond.
1344 CGF.EmitBlock(ContBlock);
Chris Lattner9fba49a2007-08-24 05:35:26 +00001345 PN->addIncoming(RHSCond, RHSBlock);
1346
1347 // ZExt result to int.
1348 return Builder.CreateZExt(PN, CGF.LLVMIntTy, "lor.ext");
1349}
1350
1351Value *ScalarExprEmitter::VisitBinComma(const BinaryOperator *E) {
1352 CGF.EmitStmt(E->getLHS());
Daniel Dunbar5aa22bc2008-11-11 23:11:34 +00001353 CGF.EnsureInsertPoint();
Chris Lattner9fba49a2007-08-24 05:35:26 +00001354 return Visit(E->getRHS());
1355}
1356
1357//===----------------------------------------------------------------------===//
1358// Other Operators
1359//===----------------------------------------------------------------------===//
1360
Chris Lattner504a5282008-11-12 08:55:54 +00001361/// isCheapEnoughToEvaluateUnconditionally - Return true if the specified
1362/// expression is cheap enough and side-effect-free enough to evaluate
1363/// unconditionally instead of conditionally. This is used to convert control
1364/// flow into selects in some cases.
1365static bool isCheapEnoughToEvaluateUnconditionally(const Expr *E) {
1366 if (const ParenExpr *PE = dyn_cast<ParenExpr>(E))
1367 return isCheapEnoughToEvaluateUnconditionally(PE->getSubExpr());
1368
1369 // TODO: Allow anything we can constant fold to an integer or fp constant.
1370 if (isa<IntegerLiteral>(E) || isa<CharacterLiteral>(E) ||
1371 isa<FloatingLiteral>(E))
1372 return true;
1373
1374 // Non-volatile automatic variables too, to get "cond ? X : Y" where
1375 // X and Y are local variables.
1376 if (const DeclRefExpr *DRE = dyn_cast<DeclRefExpr>(E))
1377 if (const VarDecl *VD = dyn_cast<VarDecl>(DRE->getDecl()))
1378 if (VD->hasLocalStorage() && !VD->getType().isVolatileQualified())
1379 return true;
1380
1381 return false;
1382}
1383
1384
Chris Lattner9fba49a2007-08-24 05:35:26 +00001385Value *ScalarExprEmitter::
1386VisitConditionalOperator(const ConditionalOperator *E) {
Mike Stumpb8fc73e2009-05-29 15:46:01 +00001387 TestAndClearIgnoreResultAssign();
Chris Lattner3d6606b2008-11-12 08:04:58 +00001388 // If the condition constant folds and can be elided, try to avoid emitting
1389 // the condition and the dead arm.
1390 if (int Cond = CGF.ConstantFoldsToSimpleInteger(E->getCond())){
Chris Lattner044bffc2008-11-11 18:56:45 +00001391 Expr *Live = E->getLHS(), *Dead = E->getRHS();
Chris Lattner3d6606b2008-11-12 08:04:58 +00001392 if (Cond == -1)
Chris Lattner044bffc2008-11-11 18:56:45 +00001393 std::swap(Live, Dead);
Chris Lattner3d6606b2008-11-12 08:04:58 +00001394
1395 // If the dead side doesn't have labels we need, and if the Live side isn't
1396 // the gnu missing ?: extension (which we could handle, but don't bother
1397 // to), just emit the Live part.
1398 if ((!Dead || !CGF.ContainsLabel(Dead)) && // No labels in dead part
1399 Live) // Live part isn't missing.
1400 return Visit(Live);
Chris Lattner044bffc2008-11-11 18:56:45 +00001401 }
1402
Chris Lattner504a5282008-11-12 08:55:54 +00001403
1404 // If this is a really simple expression (like x ? 4 : 5), emit this as a
1405 // select instead of as control flow. We can only do this if it is cheap and
Chris Lattner1f11af22008-11-16 06:16:27 +00001406 // safe to evaluate the LHS and RHS unconditionally.
Chris Lattner504a5282008-11-12 08:55:54 +00001407 if (E->getLHS() && isCheapEnoughToEvaluateUnconditionally(E->getLHS()) &&
1408 isCheapEnoughToEvaluateUnconditionally(E->getRHS())) {
1409 llvm::Value *CondV = CGF.EvaluateExprAsBool(E->getCond());
1410 llvm::Value *LHS = Visit(E->getLHS());
1411 llvm::Value *RHS = Visit(E->getRHS());
1412 return Builder.CreateSelect(CondV, LHS, RHS, "cond");
1413 }
1414
1415
Daniel Dunbarb23e9922008-11-12 10:13:37 +00001416 llvm::BasicBlock *LHSBlock = CGF.createBasicBlock("cond.true");
1417 llvm::BasicBlock *RHSBlock = CGF.createBasicBlock("cond.false");
Daniel Dunbar6e3a10c2008-11-13 01:38:36 +00001418 llvm::BasicBlock *ContBlock = CGF.createBasicBlock("cond.end");
Chris Lattner67e22462008-11-12 08:08:13 +00001419 Value *CondVal = 0;
Chris Lattner3d6606b2008-11-12 08:04:58 +00001420
Chris Lattner86031712009-02-13 23:35:32 +00001421 // If we don't have the GNU missing condition extension, emit a branch on
1422 // bool the normal way.
1423 if (E->getLHS()) {
1424 // Otherwise, just use EmitBranchOnBoolExpr to get small and simple code for
1425 // the branch on bool.
1426 CGF.EmitBranchOnBoolExpr(E->getCond(), LHSBlock, RHSBlock);
1427 } else {
1428 // Otherwise, for the ?: extension, evaluate the conditional and then
1429 // convert it to bool the hard way. We do this explicitly because we need
1430 // the unconverted value for the missing middle value of the ?:.
Chris Lattner67e22462008-11-12 08:08:13 +00001431 CondVal = CGF.EmitScalarExpr(E->getCond());
Chris Lattner86031712009-02-13 23:35:32 +00001432
1433 // In some cases, EmitScalarConversion will delete the "CondVal" expression
1434 // if there are no extra uses (an optimization). Inhibit this by making an
1435 // extra dead use, because we're going to add a use of CondVal later. We
1436 // don't use the builder for this, because we don't want it to get optimized
1437 // away. This leaves dead code, but the ?: extension isn't common.
1438 new llvm::BitCastInst(CondVal, CondVal->getType(), "dummy?:holder",
1439 Builder.GetInsertBlock());
1440
Chris Lattner67e22462008-11-12 08:08:13 +00001441 Value *CondBoolVal =
1442 CGF.EmitScalarConversion(CondVal, E->getCond()->getType(),
1443 CGF.getContext().BoolTy);
1444 Builder.CreateCondBr(CondBoolVal, LHSBlock, RHSBlock);
Chris Lattner67e22462008-11-12 08:08:13 +00001445 }
Chris Lattner9fba49a2007-08-24 05:35:26 +00001446
1447 CGF.EmitBlock(LHSBlock);
1448
1449 // Handle the GNU extension for missing LHS.
Chris Lattner98a425c2007-11-26 01:40:58 +00001450 Value *LHS;
1451 if (E->getLHS())
Eli Friedmance8d7032008-05-16 20:38:39 +00001452 LHS = Visit(E->getLHS());
Chris Lattner98a425c2007-11-26 01:40:58 +00001453 else // Perform promotions, to handle cases like "short ?: int"
1454 LHS = EmitScalarConversion(CondVal, E->getCond()->getType(), E->getType());
1455
Chris Lattner9fba49a2007-08-24 05:35:26 +00001456 LHSBlock = Builder.GetInsertBlock();
Daniel Dunbar5276caa2008-11-11 09:41:28 +00001457 CGF.EmitBranch(ContBlock);
Chris Lattner9fba49a2007-08-24 05:35:26 +00001458
1459 CGF.EmitBlock(RHSBlock);
1460
Eli Friedmance8d7032008-05-16 20:38:39 +00001461 Value *RHS = Visit(E->getRHS());
Chris Lattner9fba49a2007-08-24 05:35:26 +00001462 RHSBlock = Builder.GetInsertBlock();
Daniel Dunbar5276caa2008-11-11 09:41:28 +00001463 CGF.EmitBranch(ContBlock);
Chris Lattner9fba49a2007-08-24 05:35:26 +00001464
1465 CGF.EmitBlock(ContBlock);
1466
Nuno Lopesb62ff242008-06-04 19:15:45 +00001467 if (!LHS || !RHS) {
Chris Lattner307da022007-11-30 17:56:23 +00001468 assert(E->getType()->isVoidType() && "Non-void value should have a value");
1469 return 0;
1470 }
1471
Chris Lattner9fba49a2007-08-24 05:35:26 +00001472 // Create a PHI node for the real part.
1473 llvm::PHINode *PN = Builder.CreatePHI(LHS->getType(), "cond");
1474 PN->reserveOperandSpace(2);
1475 PN->addIncoming(LHS, LHSBlock);
1476 PN->addIncoming(RHS, RHSBlock);
1477 return PN;
1478}
1479
1480Value *ScalarExprEmitter::VisitChooseExpr(ChooseExpr *E) {
Eli Friedmand540c112009-03-04 05:52:32 +00001481 return Visit(E->getChosenSubExpr(CGF.getContext()));
Chris Lattner9fba49a2007-08-24 05:35:26 +00001482}
1483
Chris Lattner307da022007-11-30 17:56:23 +00001484Value *ScalarExprEmitter::VisitVAArgExpr(VAArgExpr *VE) {
Eli Friedman8f5e8782009-01-20 17:46:04 +00001485 llvm::Value *ArgValue = CGF.EmitVAListRef(VE->getSubExpr());
Anders Carlsson285611e2008-11-04 05:30:00 +00001486 llvm::Value *ArgPtr = CGF.EmitVAArg(ArgValue, VE->getType());
1487
1488 // If EmitVAArg fails, we fall back to the LLVM instruction.
1489 if (!ArgPtr)
1490 return Builder.CreateVAArg(ArgValue, ConvertType(VE->getType()));
1491
Mike Stumpb8fc73e2009-05-29 15:46:01 +00001492 // FIXME Volatility.
Anders Carlsson285611e2008-11-04 05:30:00 +00001493 return Builder.CreateLoad(ArgPtr);
Anders Carlsson36760332007-10-15 20:28:48 +00001494}
1495
Mike Stump4eb81dc2009-02-12 18:29:15 +00001496Value *ScalarExprEmitter::VisitBlockExpr(const BlockExpr *BE) {
Mike Stump1fa52fe2009-03-07 02:35:30 +00001497 return CGF.BuildBlockLiteralTmp(BE);
Mike Stump4eb81dc2009-02-12 18:29:15 +00001498}
1499
Chris Lattner9fba49a2007-08-24 05:35:26 +00001500//===----------------------------------------------------------------------===//
1501// Entry Point into this File
1502//===----------------------------------------------------------------------===//
1503
Mike Stumpb8fc73e2009-05-29 15:46:01 +00001504/// EmitScalarExpr - Emit the computation of the specified expression of
1505/// scalar type, ignoring the result.
1506Value *CodeGenFunction::EmitScalarExpr(const Expr *E, bool IgnoreResultAssign) {
Chris Lattner9fba49a2007-08-24 05:35:26 +00001507 assert(E && !hasAggregateLLVMType(E->getType()) &&
1508 "Invalid scalar expression to emit");
1509
Mike Stumpb8fc73e2009-05-29 15:46:01 +00001510 return ScalarExprEmitter(*this, IgnoreResultAssign)
1511 .Visit(const_cast<Expr*>(E));
Chris Lattner9fba49a2007-08-24 05:35:26 +00001512}
Chris Lattner4e05d1e2007-08-26 06:48:56 +00001513
1514/// EmitScalarConversion - Emit a conversion from the specified type to the
1515/// specified destination type, both of which are LLVM scalar types.
Chris Lattnerfb182ee2007-08-26 16:34:22 +00001516Value *CodeGenFunction::EmitScalarConversion(Value *Src, QualType SrcTy,
1517 QualType DstTy) {
Chris Lattner4e05d1e2007-08-26 06:48:56 +00001518 assert(!hasAggregateLLVMType(SrcTy) && !hasAggregateLLVMType(DstTy) &&
1519 "Invalid scalar expression to emit");
1520 return ScalarExprEmitter(*this).EmitScalarConversion(Src, SrcTy, DstTy);
1521}
Chris Lattnerfb182ee2007-08-26 16:34:22 +00001522
1523/// EmitComplexToScalarConversion - Emit a conversion from the specified
1524/// complex type to the specified destination type, where the destination
1525/// type is an LLVM scalar type.
1526Value *CodeGenFunction::EmitComplexToScalarConversion(ComplexPairTy Src,
1527 QualType SrcTy,
1528 QualType DstTy) {
Chris Lattnerde0908b2008-04-04 16:54:41 +00001529 assert(SrcTy->isAnyComplexType() && !hasAggregateLLVMType(DstTy) &&
Chris Lattnerfb182ee2007-08-26 16:34:22 +00001530 "Invalid complex -> scalar conversion");
1531 return ScalarExprEmitter(*this).EmitComplexToScalarConversion(Src, SrcTy,
1532 DstTy);
1533}
Anders Carlssona9234fe2007-12-10 19:35:18 +00001534
1535Value *CodeGenFunction::EmitShuffleVector(Value* V1, Value *V2, ...) {
1536 assert(V1->getType() == V2->getType() &&
1537 "Vector operands must be of the same type");
Anders Carlssona9234fe2007-12-10 19:35:18 +00001538 unsigned NumElements =
1539 cast<llvm::VectorType>(V1->getType())->getNumElements();
1540
1541 va_list va;
1542 va_start(va, V2);
1543
1544 llvm::SmallVector<llvm::Constant*, 16> Args;
Anders Carlssona9234fe2007-12-10 19:35:18 +00001545 for (unsigned i = 0; i < NumElements; i++) {
1546 int n = va_arg(va, int);
Anders Carlssona9234fe2007-12-10 19:35:18 +00001547 assert(n >= 0 && n < (int)NumElements * 2 &&
1548 "Vector shuffle index out of bounds!");
Anders Carlssona9234fe2007-12-10 19:35:18 +00001549 Args.push_back(llvm::ConstantInt::get(llvm::Type::Int32Ty, n));
1550 }
1551
1552 const char *Name = va_arg(va, const char *);
1553 va_end(va);
1554
1555 llvm::Constant *Mask = llvm::ConstantVector::get(&Args[0], NumElements);
1556
1557 return Builder.CreateShuffleVector(V1, V2, Mask, Name);
1558}
1559
Anders Carlsson68b8be92007-12-15 21:23:30 +00001560llvm::Value *CodeGenFunction::EmitVector(llvm::Value * const *Vals,
Chris Lattnera23eb7b2008-07-26 20:15:14 +00001561 unsigned NumVals, bool isSplat) {
Anders Carlsson68b8be92007-12-15 21:23:30 +00001562 llvm::Value *Vec
Chris Lattnera23eb7b2008-07-26 20:15:14 +00001563 = llvm::UndefValue::get(llvm::VectorType::get(Vals[0]->getType(), NumVals));
Anders Carlsson68b8be92007-12-15 21:23:30 +00001564
Chris Lattnera23eb7b2008-07-26 20:15:14 +00001565 for (unsigned i = 0, e = NumVals; i != e; ++i) {
Nate Begemanec2d1062007-12-30 02:59:45 +00001566 llvm::Value *Val = isSplat ? Vals[0] : Vals[i];
Anders Carlsson68b8be92007-12-15 21:23:30 +00001567 llvm::Value *Idx = llvm::ConstantInt::get(llvm::Type::Int32Ty, i);
Nate Begemanec2d1062007-12-30 02:59:45 +00001568 Vec = Builder.CreateInsertElement(Vec, Val, Idx, "tmp");
Anders Carlsson68b8be92007-12-15 21:23:30 +00001569 }
1570
1571 return Vec;
1572}