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Chris Lattner4b009652007-07-25 00:24:17 +00001//===--- CodeGenFunction.h - Per-Function state for LLVM CodeGen ----------===//
2//
3// The LLVM Compiler Infrastructure
4//
5// This file was developed by Chris Lattner and is distributed under
6// the University of Illinois Open Source License. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
9//
10// This is the internal per-function state used for llvm translation.
11//
12//===----------------------------------------------------------------------===//
13
14#ifndef CODEGEN_CODEGENFUNCTION_H
15#define CODEGEN_CODEGENFUNCTION_H
16
17#include "llvm/ADT/DenseMap.h"
18#include "llvm/ADT/SmallVector.h"
19#include "llvm/Support/LLVMBuilder.h"
20#include <vector>
21
22namespace llvm {
23 class Module;
24}
25
26namespace clang {
27 class ASTContext;
28 class Decl;
29 class FunctionDecl;
30 class TargetInfo;
31 class QualType;
32 class FunctionTypeProto;
33
34 class Stmt;
35 class CompoundStmt;
36 class LabelStmt;
37 class GotoStmt;
38 class IfStmt;
39 class WhileStmt;
40 class DoStmt;
41 class ForStmt;
42 class ReturnStmt;
43 class DeclStmt;
44
45 class Expr;
46 class DeclRefExpr;
47 class StringLiteral;
48 class IntegerLiteral;
49 class FloatingLiteral;
50 class CharacterLiteral;
Chris Lattner4ca7e752007-08-03 17:51:03 +000051 class TypesCompatibleExpr;
52
Chris Lattnerb2cb9cb2007-08-20 22:37:10 +000053 class ImplicitCastExpr;
Chris Lattner4b009652007-07-25 00:24:17 +000054 class CastExpr;
55 class CallExpr;
56 class UnaryOperator;
57 class BinaryOperator;
58 class CompoundAssignOperator;
59 class ArraySubscriptExpr;
Chris Lattnera0d03a72007-08-03 17:31:20 +000060 class OCUVectorElementExpr;
Chris Lattner4b009652007-07-25 00:24:17 +000061 class ConditionalOperator;
Chris Lattner44fcf4f2007-08-04 00:20:15 +000062 class ChooseExpr;
Chris Lattner4b009652007-07-25 00:24:17 +000063 class PreDefinedExpr;
Anders Carlssona66cad42007-08-21 17:43:55 +000064 class ObjCStringLiteral;
Chris Lattner4b009652007-07-25 00:24:17 +000065
66 class BlockVarDecl;
67 class EnumConstantDecl;
68 class ParmVarDecl;
69namespace CodeGen {
70 class CodeGenModule;
71
72
73/// RValue - This trivial value class is used to represent the result of an
74/// expression that is evaluated. It can be one of two things: either a simple
75/// LLVM SSA value, or the address of an aggregate value in memory. These two
76/// possibilities are discriminated by isAggregate/isScalar.
77class RValue {
78 llvm::Value *V;
79 // TODO: Encode this into the low bit of pointer for more efficient
80 // return-by-value.
81 bool IsAggregate;
82
83 // FIXME: Aggregate rvalues need to retain information about whether they are
84 // volatile or not.
85public:
86
87 bool isAggregate() const { return IsAggregate; }
88 bool isScalar() const { return !IsAggregate; }
89
90 /// getVal() - Return the Value* of this scalar value.
91 llvm::Value *getVal() const {
92 assert(!isAggregate() && "Not a scalar!");
93 return V;
94 }
95
96 /// getAggregateAddr() - Return the Value* of the address of the aggregate.
97 llvm::Value *getAggregateAddr() const {
98 assert(isAggregate() && "Not an aggregate!");
99 return V;
100 }
101
102 static RValue get(llvm::Value *V) {
103 RValue ER;
104 ER.V = V;
105 ER.IsAggregate = false;
106 return ER;
107 }
108 static RValue getAggregate(llvm::Value *V) {
109 RValue ER;
110 ER.V = V;
111 ER.IsAggregate = true;
112 return ER;
113 }
114};
115
116
117/// LValue - This represents an lvalue references. Because C/C++ allow
118/// bitfields, this is not a simple LLVM pointer, it may be a pointer plus a
119/// bitrange.
120class LValue {
121 // FIXME: Volatility. Restrict?
122 // alignment?
123
124 enum {
Chris Lattner65520192007-08-02 23:37:31 +0000125 Simple, // This is a normal l-value, use getAddress().
126 VectorElt, // This is a vector element l-value (V[i]), use getVector*
127 BitField, // This is a bitfield l-value, use getBitfield*.
Chris Lattnera0d03a72007-08-03 17:31:20 +0000128 OCUVectorElt // This is an ocu vector subset, use getOCUVectorComp
Chris Lattner4b009652007-07-25 00:24:17 +0000129 } LVType;
130
131 llvm::Value *V;
132
133 union {
Chris Lattner65520192007-08-02 23:37:31 +0000134 llvm::Value *VectorIdx; // Index into a vector subscript: V[i]
Chris Lattnera0d03a72007-08-03 17:31:20 +0000135 unsigned VectorElts; // Encoded OCUVector element subset: V.xyx
Chris Lattner4b009652007-07-25 00:24:17 +0000136 };
137public:
138 bool isSimple() const { return LVType == Simple; }
139 bool isVectorElt() const { return LVType == VectorElt; }
140 bool isBitfield() const { return LVType == BitField; }
Chris Lattnera0d03a72007-08-03 17:31:20 +0000141 bool isOCUVectorElt() const { return LVType == OCUVectorElt; }
Chris Lattner4b009652007-07-25 00:24:17 +0000142
143 // simple lvalue
144 llvm::Value *getAddress() const { assert(isSimple()); return V; }
145 // vector elt lvalue
146 llvm::Value *getVectorAddr() const { assert(isVectorElt()); return V; }
147 llvm::Value *getVectorIdx() const { assert(isVectorElt()); return VectorIdx; }
Chris Lattnera0d03a72007-08-03 17:31:20 +0000148 // ocu vector elements.
149 llvm::Value *getOCUVectorAddr() const { assert(isOCUVectorElt()); return V; }
150 unsigned getOCUVectorElts() const {
151 assert(isOCUVectorElt());
152 return VectorElts;
Chris Lattner65520192007-08-02 23:37:31 +0000153 }
154
Chris Lattner4b009652007-07-25 00:24:17 +0000155
156 static LValue MakeAddr(llvm::Value *V) {
157 LValue R;
158 R.LVType = Simple;
159 R.V = V;
160 return R;
161 }
162
163 static LValue MakeVectorElt(llvm::Value *Vec, llvm::Value *Idx) {
164 LValue R;
165 R.LVType = VectorElt;
166 R.V = Vec;
167 R.VectorIdx = Idx;
168 return R;
169 }
170
Chris Lattnera0d03a72007-08-03 17:31:20 +0000171 static LValue MakeOCUVectorElt(llvm::Value *Vec, unsigned Elements) {
Chris Lattner65520192007-08-02 23:37:31 +0000172 LValue R;
Chris Lattnera0d03a72007-08-03 17:31:20 +0000173 R.LVType = OCUVectorElt;
Chris Lattner65520192007-08-02 23:37:31 +0000174 R.V = Vec;
Chris Lattnera0d03a72007-08-03 17:31:20 +0000175 R.VectorElts = Elements;
Chris Lattner65520192007-08-02 23:37:31 +0000176 return R;
177 }
Chris Lattner4b009652007-07-25 00:24:17 +0000178};
179
180/// CodeGenFunction - This class organizes the per-function state that is used
181/// while generating LLVM code.
182class CodeGenFunction {
183 CodeGenModule &CGM; // Per-module state.
184 TargetInfo &Target;
Chris Lattnerb50e3902007-08-21 04:25:47 +0000185public:
Chris Lattner5280c5f2007-08-21 16:57:55 +0000186 typedef std::pair<llvm::Value *, llvm::Value *> ComplexPairTy;
Chris Lattner4b009652007-07-25 00:24:17 +0000187 llvm::LLVMBuilder Builder;
188
189 const FunctionDecl *CurFuncDecl;
190 llvm::Function *CurFn;
191
192 /// AllocaInsertPoint - This is an instruction in the entry block before which
193 /// we prefer to insert allocas.
194 llvm::Instruction *AllocaInsertPt;
195
196 const llvm::Type *LLVMIntTy;
197 unsigned LLVMPointerWidth;
198
Chris Lattner9fba49a2007-08-24 05:35:26 +0000199private:
Chris Lattner4b009652007-07-25 00:24:17 +0000200 /// LocalDeclMap - This keeps track of the LLVM allocas or globals for local C
201 /// decls.
202 llvm::DenseMap<const Decl*, llvm::Value*> LocalDeclMap;
203
204 /// LabelMap - This keeps track of the LLVM basic block for each C label.
205 llvm::DenseMap<const LabelStmt*, llvm::BasicBlock*> LabelMap;
206
207 // BreakContinueStack - This keeps track of where break and continue
208 // statements should jump to.
209 struct BreakContinue {
210 BreakContinue(llvm::BasicBlock *bb, llvm::BasicBlock *cb)
211 : BreakBlock(bb), ContinueBlock(cb) {}
212
213 llvm::BasicBlock *BreakBlock;
214 llvm::BasicBlock *ContinueBlock;
215 };
216 llvm::SmallVector<BreakContinue, 8> BreakContinueStack;
217
218public:
219 CodeGenFunction(CodeGenModule &cgm);
220
221 ASTContext &getContext() const;
222
223 void GenerateCode(const FunctionDecl *FD);
224
225 const llvm::Type *ConvertType(QualType T);
226
227 /// hasAggregateLLVMType - Return true if the specified AST type will map into
228 /// an aggregate LLVM type or is void.
229 static bool hasAggregateLLVMType(QualType T);
230
231 /// getBasicBlockForLabel - Return the LLVM basicblock that the specified
232 /// label maps to.
233 llvm::BasicBlock *getBasicBlockForLabel(const LabelStmt *S);
234
235
236 void EmitBlock(llvm::BasicBlock *BB);
237
238 //===--------------------------------------------------------------------===//
239 // Helpers
240 //===--------------------------------------------------------------------===//
241
242 /// CreateTempAlloca - This creates a alloca and inserts it into the entry
243 /// block.
244 llvm::AllocaInst *CreateTempAlloca(const llvm::Type *Ty,
245 const char *Name = "tmp");
246
247 /// EvaluateExprAsBool - Perform the usual unary conversions on the specified
248 /// expression and compare the result against zero, returning an Int1Ty value.
249 llvm::Value *EvaluateExprAsBool(const Expr *E);
250
251
Chris Lattner4b009652007-07-25 00:24:17 +0000252 //===--------------------------------------------------------------------===//
Chris Lattner4b009652007-07-25 00:24:17 +0000253 // Declaration Emission
254 //===--------------------------------------------------------------------===//
255
256 void EmitDecl(const Decl &D);
257 void EmitEnumConstantDecl(const EnumConstantDecl &D);
258 void EmitBlockVarDecl(const BlockVarDecl &D);
259 void EmitLocalBlockVarDecl(const BlockVarDecl &D);
260 void EmitParmDecl(const ParmVarDecl &D, llvm::Value *Arg);
261
262 //===--------------------------------------------------------------------===//
263 // Statement Emission
264 //===--------------------------------------------------------------------===//
265
266 void EmitStmt(const Stmt *S);
267 void EmitCompoundStmt(const CompoundStmt &S);
268 void EmitLabelStmt(const LabelStmt &S);
269 void EmitGotoStmt(const GotoStmt &S);
270 void EmitIfStmt(const IfStmt &S);
271 void EmitWhileStmt(const WhileStmt &S);
272 void EmitDoStmt(const DoStmt &S);
273 void EmitForStmt(const ForStmt &S);
274 void EmitReturnStmt(const ReturnStmt &S);
275 void EmitDeclStmt(const DeclStmt &S);
276 void EmitBreakStmt();
277 void EmitContinueStmt();
278
279 //===--------------------------------------------------------------------===//
280 // LValue Expression Emission
281 //===--------------------------------------------------------------------===//
282
283 /// EmitLValue - Emit code to compute a designator that specifies the location
284 /// of the expression.
285 ///
286 /// This can return one of two things: a simple address or a bitfield
287 /// reference. In either case, the LLVM Value* in the LValue structure is
288 /// guaranteed to be an LLVM pointer type.
289 ///
290 /// If this returns a bitfield reference, nothing about the pointee type of
291 /// the LLVM value is known: For example, it may not be a pointer to an
292 /// integer.
293 ///
294 /// If this returns a normal address, and if the lvalue's C type is fixed
295 /// size, this method guarantees that the returned pointer type will point to
296 /// an LLVM type of the same size of the lvalue's type. If the lvalue has a
297 /// variable length type, this is not possible.
298 ///
299 LValue EmitLValue(const Expr *E);
300
301 /// EmitLoadOfLValue - Given an expression that represents a value lvalue,
302 /// this method emits the address of the lvalue, then loads the result as an
303 /// rvalue, returning the rvalue.
304 RValue EmitLoadOfLValue(const Expr *E);
305 RValue EmitLoadOfLValue(LValue V, QualType LVType);
Chris Lattnera0d03a72007-08-03 17:31:20 +0000306 RValue EmitLoadOfOCUElementLValue(LValue V, QualType LVType);
Chris Lattner4b009652007-07-25 00:24:17 +0000307
Chris Lattner944f7962007-08-03 16:18:34 +0000308
Chris Lattner4b009652007-07-25 00:24:17 +0000309 /// EmitStoreThroughLValue - Store the specified rvalue into the specified
310 /// lvalue, where both are guaranteed to the have the same type, and that type
311 /// is 'Ty'.
312 void EmitStoreThroughLValue(RValue Src, LValue Dst, QualType Ty);
Chris Lattner5bfdd232007-08-03 16:28:33 +0000313 void EmitStoreThroughOCUComponentLValue(RValue Src, LValue Dst, QualType Ty);
Chris Lattner4b009652007-07-25 00:24:17 +0000314
315 LValue EmitDeclRefLValue(const DeclRefExpr *E);
316 LValue EmitStringLiteralLValue(const StringLiteral *E);
317 LValue EmitPreDefinedLValue(const PreDefinedExpr *E);
318 LValue EmitUnaryOpLValue(const UnaryOperator *E);
319 LValue EmitArraySubscriptExpr(const ArraySubscriptExpr *E);
Chris Lattnera0d03a72007-08-03 17:31:20 +0000320 LValue EmitOCUVectorElementExpr(const OCUVectorElementExpr *E);
Chris Lattner4b009652007-07-25 00:24:17 +0000321
322 //===--------------------------------------------------------------------===//
Chris Lattnerbdb8ffb2007-08-11 00:04:45 +0000323 // Scalar Expression Emission
Chris Lattner4b009652007-07-25 00:24:17 +0000324 //===--------------------------------------------------------------------===//
325
Chris Lattner4b009652007-07-25 00:24:17 +0000326 void EmitCompoundAssignmentOperands(const CompoundAssignOperator *CAO,
327 LValue &LHSLV, RValue &LHS, RValue &RHS);
328 RValue EmitCompoundAssignmentResult(const CompoundAssignOperator *E,
329 LValue LHSLV, RValue ResV);
330
Chris Lattner4b009652007-07-25 00:24:17 +0000331 RValue EmitCallExpr(const CallExpr *E);
Chris Lattner35055b82007-08-26 22:58:05 +0000332 RValue EmitBuiltinExpr(unsigned BuiltinID, const CallExpr *E);
Chris Lattner4b009652007-07-25 00:24:17 +0000333
Chris Lattner9fba49a2007-08-24 05:35:26 +0000334 llvm::Value *EmitObjCStringLiteral(const ObjCStringLiteral *E);
Anders Carlssona66cad42007-08-21 17:43:55 +0000335
Chris Lattnerbdb8ffb2007-08-11 00:04:45 +0000336 //===--------------------------------------------------------------------===//
337 // Aggregate Expression Emission
338 //===--------------------------------------------------------------------===//
339
340 void EmitAggregateCopy(llvm::Value *DestPtr, llvm::Value *SrcPtr,
341 QualType EltTy);
342
Chris Lattner9fba49a2007-08-24 05:35:26 +0000343 /// EmitScalarExpr - Emit the computation of the specified expression of
344 /// LLVM scalar type, returning the result.
345 llvm::Value *EmitScalarExpr(const Expr *E);
346
Chris Lattner4e05d1e2007-08-26 06:48:56 +0000347 /// EmitScalarConversion - Emit a conversion from the specified type to the
348 /// specified destination type, both of which are LLVM scalar types.
349 llvm::Value *EmitScalarConversion(llvm::Value *Src, QualType SrcTy,
350 QualType DstTy);
351
Chris Lattnerfb182ee2007-08-26 16:34:22 +0000352 /// EmitComplexToScalarConversion - Emit a conversion from the specified
353 /// complex type to the specified destination type, where the destination
354 /// type is an LLVM scalar type.
355 llvm::Value *EmitComplexToScalarConversion(ComplexPairTy Src, QualType SrcTy,
356 QualType DstTy);
357
Chris Lattner4e05d1e2007-08-26 06:48:56 +0000358
Chris Lattnerbdb8ffb2007-08-11 00:04:45 +0000359 /// EmitAggExpr - Emit the computation of the specified expression of
360 /// aggregate type. The result is computed into DestPtr. Note that if
361 /// DestPtr is null, the value of the aggregate expression is not needed.
362 void EmitAggExpr(const Expr *E, llvm::Value *DestPtr, bool VolatileDest);
Chris Lattner8d0cc2f2007-08-21 05:54:00 +0000363
364 /// EmitComplexExpr - Emit the computation of the specified expression of
Chris Lattner348c8a22007-08-23 23:43:33 +0000365 /// complex type, returning the result.
Chris Lattner5280c5f2007-08-21 16:57:55 +0000366 ComplexPairTy EmitComplexExpr(const Expr *E);
Chris Lattner348c8a22007-08-23 23:43:33 +0000367
368 /// EmitComplexExprIntoAddr - Emit the computation of the specified expression
369 /// of complex type, storing into the specified Value*.
Chris Lattner8e1f6e02007-08-26 16:22:13 +0000370 void EmitComplexExprIntoAddr(const Expr *E, llvm::Value *DestAddr,
371 bool DestIsVolatile);
Chris Lattner4b009652007-07-25 00:24:17 +0000372};
373} // end namespace CodeGen
374} // end namespace clang
375
376#endif