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Chris Lattner4b009652007-07-25 00:24:17 +00001//===--- Expr.cpp - Expression AST Node Implementation --------------------===//
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 file implements the Expr class and subclasses.
11//
12//===----------------------------------------------------------------------===//
13
14#include "clang/AST/Expr.h"
15#include "clang/AST/ASTContext.h"
16#include "clang/AST/StmtVisitor.h"
17#include "clang/Lex/IdentifierTable.h"
18using namespace clang;
19
20//===----------------------------------------------------------------------===//
21// Primary Expressions.
22//===----------------------------------------------------------------------===//
23
24StringLiteral::StringLiteral(const char *strData, unsigned byteLength,
25 bool Wide, QualType t, SourceLocation firstLoc,
26 SourceLocation lastLoc) :
27 Expr(StringLiteralClass, t) {
28 // OPTIMIZE: could allocate this appended to the StringLiteral.
29 char *AStrData = new char[byteLength];
30 memcpy(AStrData, strData, byteLength);
31 StrData = AStrData;
32 ByteLength = byteLength;
33 IsWide = Wide;
34 firstTokLoc = firstLoc;
35 lastTokLoc = lastLoc;
36}
37
38StringLiteral::~StringLiteral() {
39 delete[] StrData;
40}
41
42bool UnaryOperator::isPostfix(Opcode Op) {
43 switch (Op) {
44 case PostInc:
45 case PostDec:
46 return true;
47 default:
48 return false;
49 }
50}
51
52/// getOpcodeStr - Turn an Opcode enum value into the punctuation char it
53/// corresponds to, e.g. "sizeof" or "[pre]++".
54const char *UnaryOperator::getOpcodeStr(Opcode Op) {
55 switch (Op) {
56 default: assert(0 && "Unknown unary operator");
57 case PostInc: return "++";
58 case PostDec: return "--";
59 case PreInc: return "++";
60 case PreDec: return "--";
61 case AddrOf: return "&";
62 case Deref: return "*";
63 case Plus: return "+";
64 case Minus: return "-";
65 case Not: return "~";
66 case LNot: return "!";
67 case Real: return "__real";
68 case Imag: return "__imag";
69 case SizeOf: return "sizeof";
70 case AlignOf: return "alignof";
71 case Extension: return "__extension__";
Chris Lattner0d9bcea2007-08-30 17:45:32 +000072 case OffsetOf: return "__builtin_offsetof";
Chris Lattner4b009652007-07-25 00:24:17 +000073 }
74}
75
76//===----------------------------------------------------------------------===//
77// Postfix Operators.
78//===----------------------------------------------------------------------===//
79
80CallExpr::CallExpr(Expr *fn, Expr **args, unsigned numargs, QualType t,
81 SourceLocation rparenloc)
Ted Kremeneke4acb9c2007-08-24 18:13:47 +000082 : Expr(CallExprClass, t), NumArgs(numargs) {
83 SubExprs = new Expr*[numargs+1];
84 SubExprs[FN] = fn;
Chris Lattner4b009652007-07-25 00:24:17 +000085 for (unsigned i = 0; i != numargs; ++i)
Ted Kremeneke4acb9c2007-08-24 18:13:47 +000086 SubExprs[i+ARGS_START] = args[i];
Chris Lattner4b009652007-07-25 00:24:17 +000087 RParenLoc = rparenloc;
88}
89
Steve Naroff8d3b1702007-08-08 22:15:55 +000090bool CallExpr::isBuiltinClassifyType(llvm::APSInt &Result) const {
91 // The following enum mimics gcc's internal "typeclass.h" file.
92 enum gcc_type_class {
93 no_type_class = -1,
94 void_type_class, integer_type_class, char_type_class,
95 enumeral_type_class, boolean_type_class,
96 pointer_type_class, reference_type_class, offset_type_class,
97 real_type_class, complex_type_class,
98 function_type_class, method_type_class,
99 record_type_class, union_type_class,
100 array_type_class, string_type_class,
101 lang_type_class
102 };
103 Result.setIsSigned(true);
104
105 // All simple function calls (e.g. func()) are implicitly cast to pointer to
106 // function. As a result, we try and obtain the DeclRefExpr from the
107 // ImplicitCastExpr.
108 const ImplicitCastExpr *ICE = dyn_cast<ImplicitCastExpr>(getCallee());
109 if (!ICE) // FIXME: deal with more complex calls (e.g. (func)(), (*func)()).
110 return false;
111 const DeclRefExpr *DRE = dyn_cast<DeclRefExpr>(ICE->getSubExpr());
112 if (!DRE)
113 return false;
114
115 // We have a DeclRefExpr.
116 if (strcmp(DRE->getDecl()->getName(), "__builtin_classify_type") == 0) {
117 // If no argument was supplied, default to "no_type_class". This isn't
118 // ideal, however it's what gcc does.
119 Result = static_cast<uint64_t>(no_type_class);
120 if (NumArgs >= 1) {
121 QualType argType = getArg(0)->getType();
122
123 if (argType->isVoidType())
124 Result = void_type_class;
125 else if (argType->isEnumeralType())
126 Result = enumeral_type_class;
127 else if (argType->isBooleanType())
128 Result = boolean_type_class;
129 else if (argType->isCharType())
130 Result = string_type_class; // gcc doesn't appear to use char_type_class
131 else if (argType->isIntegerType())
132 Result = integer_type_class;
133 else if (argType->isPointerType())
134 Result = pointer_type_class;
135 else if (argType->isReferenceType())
136 Result = reference_type_class;
137 else if (argType->isRealType())
138 Result = real_type_class;
139 else if (argType->isComplexType())
140 Result = complex_type_class;
141 else if (argType->isFunctionType())
142 Result = function_type_class;
143 else if (argType->isStructureType())
144 Result = record_type_class;
145 else if (argType->isUnionType())
146 Result = union_type_class;
147 else if (argType->isArrayType())
148 Result = array_type_class;
149 else if (argType->isUnionType())
150 Result = union_type_class;
151 else // FIXME: offset_type_class, method_type_class, & lang_type_class?
152 assert(1 && "CallExpr::isBuiltinClassifyType(): unimplemented type");
153 }
154 return true;
155 }
156 return false;
157}
158
Chris Lattner4b009652007-07-25 00:24:17 +0000159/// getOpcodeStr - Turn an Opcode enum value into the punctuation char it
160/// corresponds to, e.g. "<<=".
161const char *BinaryOperator::getOpcodeStr(Opcode Op) {
162 switch (Op) {
163 default: assert(0 && "Unknown binary operator");
164 case Mul: return "*";
165 case Div: return "/";
166 case Rem: return "%";
167 case Add: return "+";
168 case Sub: return "-";
169 case Shl: return "<<";
170 case Shr: return ">>";
171 case LT: return "<";
172 case GT: return ">";
173 case LE: return "<=";
174 case GE: return ">=";
175 case EQ: return "==";
176 case NE: return "!=";
177 case And: return "&";
178 case Xor: return "^";
179 case Or: return "|";
180 case LAnd: return "&&";
181 case LOr: return "||";
182 case Assign: return "=";
183 case MulAssign: return "*=";
184 case DivAssign: return "/=";
185 case RemAssign: return "%=";
186 case AddAssign: return "+=";
187 case SubAssign: return "-=";
188 case ShlAssign: return "<<=";
189 case ShrAssign: return ">>=";
190 case AndAssign: return "&=";
191 case XorAssign: return "^=";
192 case OrAssign: return "|=";
193 case Comma: return ",";
194 }
195}
196
Anders Carlsson762b7c72007-08-31 04:56:16 +0000197InitListExpr::InitListExpr(SourceLocation lbraceloc,
198 Expr **initexprs, unsigned numinits,
199 SourceLocation rbraceloc)
200 : Expr(InitListExprClass, QualType())
201 , NumInits(numinits)
202 , LBraceLoc(lbraceloc)
203 , RBraceLoc(rbraceloc)
204{
205 InitExprs = new Expr*[numinits];
206 for (unsigned i = 0; i != numinits; i++)
207 InitExprs[i] = initexprs[i];
208}
Chris Lattner4b009652007-07-25 00:24:17 +0000209
210//===----------------------------------------------------------------------===//
211// Generic Expression Routines
212//===----------------------------------------------------------------------===//
213
214/// hasLocalSideEffect - Return true if this immediate expression has side
215/// effects, not counting any sub-expressions.
216bool Expr::hasLocalSideEffect() const {
217 switch (getStmtClass()) {
218 default:
219 return false;
220 case ParenExprClass:
221 return cast<ParenExpr>(this)->getSubExpr()->hasLocalSideEffect();
222 case UnaryOperatorClass: {
223 const UnaryOperator *UO = cast<UnaryOperator>(this);
224
225 switch (UO->getOpcode()) {
226 default: return false;
227 case UnaryOperator::PostInc:
228 case UnaryOperator::PostDec:
229 case UnaryOperator::PreInc:
230 case UnaryOperator::PreDec:
231 return true; // ++/--
232
233 case UnaryOperator::Deref:
234 // Dereferencing a volatile pointer is a side-effect.
235 return getType().isVolatileQualified();
236 case UnaryOperator::Real:
237 case UnaryOperator::Imag:
238 // accessing a piece of a volatile complex is a side-effect.
239 return UO->getSubExpr()->getType().isVolatileQualified();
240
241 case UnaryOperator::Extension:
242 return UO->getSubExpr()->hasLocalSideEffect();
243 }
244 }
245 case BinaryOperatorClass:
246 return cast<BinaryOperator>(this)->isAssignmentOp();
Chris Lattner06078d22007-08-25 02:00:02 +0000247 case CompoundAssignOperatorClass:
Chris Lattner9c0da3b2007-08-25 01:55:00 +0000248 return true;
Chris Lattner4b009652007-07-25 00:24:17 +0000249
250 case MemberExprClass:
251 case ArraySubscriptExprClass:
252 // If the base pointer or element is to a volatile pointer/field, accessing
253 // if is a side effect.
254 return getType().isVolatileQualified();
255
256 case CallExprClass:
257 // TODO: check attributes for pure/const. "void foo() { strlen("bar"); }"
258 // should warn.
259 return true;
260
261 case CastExprClass:
262 // If this is a cast to void, check the operand. Otherwise, the result of
263 // the cast is unused.
264 if (getType()->isVoidType())
265 return cast<CastExpr>(this)->getSubExpr()->hasLocalSideEffect();
266 return false;
267 }
268}
269
270/// isLvalue - C99 6.3.2.1: an lvalue is an expression with an object type or an
271/// incomplete type other than void. Nonarray expressions that can be lvalues:
272/// - name, where name must be a variable
273/// - e[i]
274/// - (e), where e must be an lvalue
275/// - e.name, where e must be an lvalue
276/// - e->name
277/// - *e, the type of e cannot be a function type
278/// - string-constant
279/// - reference type [C++ [expr]]
280///
281Expr::isLvalueResult Expr::isLvalue() const {
282 // first, check the type (C99 6.3.2.1)
283 if (TR->isFunctionType()) // from isObjectType()
284 return LV_NotObjectType;
285
286 if (TR->isVoidType())
287 return LV_IncompleteVoidType;
288
289 if (TR->isReferenceType()) // C++ [expr]
290 return LV_Valid;
291
292 // the type looks fine, now check the expression
293 switch (getStmtClass()) {
294 case StringLiteralClass: // C99 6.5.1p4
295 case ArraySubscriptExprClass: // C99 6.5.3p4 (e1[e2] == (*((e1)+(e2))))
296 // For vectors, make sure base is an lvalue (i.e. not a function call).
297 if (cast<ArraySubscriptExpr>(this)->getBase()->getType()->isVectorType())
298 return cast<ArraySubscriptExpr>(this)->getBase()->isLvalue();
299 return LV_Valid;
300 case DeclRefExprClass: // C99 6.5.1p2
301 if (isa<VarDecl>(cast<DeclRefExpr>(this)->getDecl()))
302 return LV_Valid;
303 break;
304 case MemberExprClass: { // C99 6.5.2.3p4
305 const MemberExpr *m = cast<MemberExpr>(this);
306 return m->isArrow() ? LV_Valid : m->getBase()->isLvalue();
307 }
308 case UnaryOperatorClass: // C99 6.5.3p4
309 if (cast<UnaryOperator>(this)->getOpcode() == UnaryOperator::Deref)
310 return LV_Valid;
311 break;
312 case ParenExprClass: // C99 6.5.1p5
313 return cast<ParenExpr>(this)->getSubExpr()->isLvalue();
Chris Lattnera0d03a72007-08-03 17:31:20 +0000314 case OCUVectorElementExprClass:
315 if (cast<OCUVectorElementExpr>(this)->containsDuplicateElements())
Steve Naroffba67f692007-07-30 03:29:09 +0000316 return LV_DuplicateVectorComponents;
317 return LV_Valid;
Chris Lattner4b009652007-07-25 00:24:17 +0000318 default:
319 break;
320 }
321 return LV_InvalidExpression;
322}
323
324/// isModifiableLvalue - C99 6.3.2.1: an lvalue that does not have array type,
325/// does not have an incomplete type, does not have a const-qualified type, and
326/// if it is a structure or union, does not have any member (including,
327/// recursively, any member or element of all contained aggregates or unions)
328/// with a const-qualified type.
329Expr::isModifiableLvalueResult Expr::isModifiableLvalue() const {
330 isLvalueResult lvalResult = isLvalue();
331
332 switch (lvalResult) {
333 case LV_Valid: break;
334 case LV_NotObjectType: return MLV_NotObjectType;
335 case LV_IncompleteVoidType: return MLV_IncompleteVoidType;
Steve Naroffba67f692007-07-30 03:29:09 +0000336 case LV_DuplicateVectorComponents: return MLV_DuplicateVectorComponents;
Chris Lattner4b009652007-07-25 00:24:17 +0000337 case LV_InvalidExpression: return MLV_InvalidExpression;
338 }
339 if (TR.isConstQualified())
340 return MLV_ConstQualified;
341 if (TR->isArrayType())
342 return MLV_ArrayType;
343 if (TR->isIncompleteType())
344 return MLV_IncompleteType;
345
346 if (const RecordType *r = dyn_cast<RecordType>(TR.getCanonicalType())) {
347 if (r->hasConstFields())
348 return MLV_ConstQualified;
349 }
350 return MLV_Valid;
351}
352
Steve Naroff7c9d72d2007-09-02 20:30:18 +0000353bool Expr::isConstantExpr(ASTContext &Ctx, SourceLocation *Loc) const {
354
355 switch (getStmtClass()) {
356 default:
357 if (Loc) *Loc = getLocStart();
358 return false;
359 case ParenExprClass:
360 return cast<ParenExpr>(this)->getSubExpr()->isConstantExpr(Ctx, Loc);
361 case StringLiteralClass:
362 case FloatingLiteralClass:
363 case IntegerLiteralClass:
364 case CharacterLiteralClass:
365 case ImaginaryLiteralClass:
366 case TypesCompatibleExprClass:
367 break;
368 case CallExprClass: {
369 const CallExpr *CE = cast<CallExpr>(this);
370 llvm::APSInt Result(32);
Hartmut Kaiser38af7012007-09-16 21:35:35 +0000371 Result.zextOrTrunc(
372 static_cast<uint32_t>(Ctx.getTypeSize(getType(), CE->getLocStart())));
Steve Naroff7c9d72d2007-09-02 20:30:18 +0000373 if (CE->isBuiltinClassifyType(Result))
374 break;
375 if (Loc) *Loc = getLocStart();
376 return false;
377 }
378 case DeclRefExprClass:
379 if (isa<EnumConstantDecl>(cast<DeclRefExpr>(this)->getDecl()))
380 break;
381 if (Loc) *Loc = getLocStart();
382 return false;
383 case UnaryOperatorClass: {
384 const UnaryOperator *Exp = cast<UnaryOperator>(this);
385
386 // Get the operand value. If this is sizeof/alignof, do not evalute the
387 // operand. This affects C99 6.6p3.
388 if (!Exp->isSizeOfAlignOfOp() &&
389 !Exp->getSubExpr()->isConstantExpr(Ctx, Loc))
390 return false;
391
392 switch (Exp->getOpcode()) {
393 // Address, indirect, pre/post inc/dec, etc are not valid constant exprs.
394 // See C99 6.6p3.
395 default:
396 if (Loc) *Loc = Exp->getOperatorLoc();
397 return false;
398 case UnaryOperator::Extension:
399 return true; // FIXME: this is wrong.
400 case UnaryOperator::SizeOf:
401 case UnaryOperator::AlignOf:
402 // sizeof(vla) is not a constantexpr: C99 6.5.3.4p2.
403 if (!Exp->getSubExpr()->getType()->isConstantSizeType(Ctx, Loc))
404 return false;
405 break;
406 case UnaryOperator::LNot:
407 case UnaryOperator::Plus:
408 case UnaryOperator::Minus:
409 case UnaryOperator::Not:
410 break;
411 }
412 break;
413 }
414 case SizeOfAlignOfTypeExprClass: {
415 const SizeOfAlignOfTypeExpr *Exp = cast<SizeOfAlignOfTypeExpr>(this);
416 // alignof always evaluates to a constant.
417 if (Exp->isSizeOf() && !Exp->getArgumentType()->isConstantSizeType(Ctx,Loc))
418 return false;
419 break;
420 }
421 case BinaryOperatorClass: {
422 const BinaryOperator *Exp = cast<BinaryOperator>(this);
423
424 // The LHS of a constant expr is always evaluated and needed.
425 if (!Exp->getLHS()->isConstantExpr(Ctx, Loc))
426 return false;
427
428 if (!Exp->getRHS()->isConstantExpr(Ctx, Loc))
429 return false;
430
431 break;
432 }
433 case ImplicitCastExprClass:
434 case CastExprClass: {
435 const Expr *SubExpr;
436 SourceLocation CastLoc;
437 if (const CastExpr *C = dyn_cast<CastExpr>(this)) {
438 SubExpr = C->getSubExpr();
439 CastLoc = C->getLParenLoc();
440 } else {
441 SubExpr = cast<ImplicitCastExpr>(this)->getSubExpr();
442 CastLoc = getLocStart();
443 }
444 if (!SubExpr->isConstantExpr(Ctx, Loc)) {
445 if (Loc) *Loc = SubExpr->getLocStart();
446 return false;
447 }
448 break;
449 }
450 case ConditionalOperatorClass: {
451 const ConditionalOperator *Exp = cast<ConditionalOperator>(this);
452
453 if (!Exp->getCond()->isConstantExpr(Ctx, Loc))
454 return false;
455
456 if (!Exp->getLHS()->isConstantExpr(Ctx, Loc))
457 return false;
458
459 if (!Exp->getRHS()->isConstantExpr(Ctx, Loc))
460 return false;
461 break;
462 }
463 }
464
465 return true;
466}
467
Chris Lattner4b009652007-07-25 00:24:17 +0000468/// isIntegerConstantExpr - this recursive routine will test if an expression is
469/// an integer constant expression. Note: With the introduction of VLA's in
470/// C99 the result of the sizeof operator is no longer always a constant
471/// expression. The generalization of the wording to include any subexpression
472/// that is not evaluated (C99 6.6p3) means that nonconstant subexpressions
473/// can appear as operands to other operators (e.g. &&, ||, ?:). For instance,
474/// "0 || f()" can be treated as a constant expression. In C90 this expression,
475/// occurring in a context requiring a constant, would have been a constraint
476/// violation. FIXME: This routine currently implements C90 semantics.
477/// To properly implement C99 semantics this routine will need to evaluate
478/// expressions involving operators previously mentioned.
479
480/// FIXME: Pass up a reason why! Invalid operation in i-c-e, division by zero,
481/// comma, etc
482///
483/// FIXME: This should ext-warn on overflow during evaluation! ISO C does not
484/// permit this.
485///
486/// FIXME: Handle offsetof. Two things to do: Handle GCC's __builtin_offsetof
487/// to support gcc 4.0+ and handle the idiom GCC recognizes with a null pointer
488/// cast+dereference.
489bool Expr::isIntegerConstantExpr(llvm::APSInt &Result, ASTContext &Ctx,
490 SourceLocation *Loc, bool isEvaluated) const {
491 switch (getStmtClass()) {
492 default:
493 if (Loc) *Loc = getLocStart();
494 return false;
495 case ParenExprClass:
496 return cast<ParenExpr>(this)->getSubExpr()->
497 isIntegerConstantExpr(Result, Ctx, Loc, isEvaluated);
498 case IntegerLiteralClass:
499 Result = cast<IntegerLiteral>(this)->getValue();
500 break;
501 case CharacterLiteralClass: {
502 const CharacterLiteral *CL = cast<CharacterLiteral>(this);
Chris Lattner3496d522007-09-04 02:45:27 +0000503 Result.zextOrTrunc(
504 static_cast<uint32_t>(Ctx.getTypeSize(getType(), CL->getLoc())));
Chris Lattner4b009652007-07-25 00:24:17 +0000505 Result = CL->getValue();
506 Result.setIsUnsigned(!getType()->isSignedIntegerType());
507 break;
508 }
Steve Naroffc6f0fd32007-08-02 04:09:23 +0000509 case TypesCompatibleExprClass: {
510 const TypesCompatibleExpr *TCE = cast<TypesCompatibleExpr>(this);
Chris Lattner3496d522007-09-04 02:45:27 +0000511 Result.zextOrTrunc(
512 static_cast<uint32_t>(Ctx.getTypeSize(getType(), TCE->getLocStart())));
Steve Naroffc6f0fd32007-08-02 04:09:23 +0000513 Result = TCE->typesAreCompatible();
Steve Naroff1200b5a2007-08-02 00:13:27 +0000514 break;
Steve Naroffc6f0fd32007-08-02 04:09:23 +0000515 }
Steve Naroff8d3b1702007-08-08 22:15:55 +0000516 case CallExprClass: {
517 const CallExpr *CE = cast<CallExpr>(this);
Chris Lattner3496d522007-09-04 02:45:27 +0000518 Result.zextOrTrunc(
519 static_cast<uint32_t>(Ctx.getTypeSize(getType(), CE->getLocStart())));
Steve Naroff8d3b1702007-08-08 22:15:55 +0000520 if (CE->isBuiltinClassifyType(Result))
521 break;
522 if (Loc) *Loc = getLocStart();
523 return false;
524 }
Chris Lattner4b009652007-07-25 00:24:17 +0000525 case DeclRefExprClass:
526 if (const EnumConstantDecl *D =
527 dyn_cast<EnumConstantDecl>(cast<DeclRefExpr>(this)->getDecl())) {
528 Result = D->getInitVal();
529 break;
530 }
531 if (Loc) *Loc = getLocStart();
532 return false;
533 case UnaryOperatorClass: {
534 const UnaryOperator *Exp = cast<UnaryOperator>(this);
535
536 // Get the operand value. If this is sizeof/alignof, do not evalute the
537 // operand. This affects C99 6.6p3.
Chris Lattner5a9b6242007-08-23 21:42:50 +0000538 if (!Exp->isSizeOfAlignOfOp() &&
539 !Exp->getSubExpr()->isIntegerConstantExpr(Result, Ctx, Loc,isEvaluated))
Chris Lattner4b009652007-07-25 00:24:17 +0000540 return false;
541
542 switch (Exp->getOpcode()) {
543 // Address, indirect, pre/post inc/dec, etc are not valid constant exprs.
544 // See C99 6.6p3.
545 default:
546 if (Loc) *Loc = Exp->getOperatorLoc();
547 return false;
548 case UnaryOperator::Extension:
549 return true; // FIXME: this is wrong.
550 case UnaryOperator::SizeOf:
551 case UnaryOperator::AlignOf:
552 // sizeof(vla) is not a constantexpr: C99 6.5.3.4p2.
553 if (!Exp->getSubExpr()->getType()->isConstantSizeType(Ctx, Loc))
554 return false;
555
556 // Return the result in the right width.
Chris Lattner3496d522007-09-04 02:45:27 +0000557 Result.zextOrTrunc(
558 static_cast<uint32_t>(Ctx.getTypeSize(getType(), Exp->getOperatorLoc())));
Chris Lattner4b009652007-07-25 00:24:17 +0000559
560 // Get information about the size or align.
561 if (Exp->getOpcode() == UnaryOperator::SizeOf)
562 Result = Ctx.getTypeSize(Exp->getSubExpr()->getType(),
563 Exp->getOperatorLoc());
564 else
565 Result = Ctx.getTypeAlign(Exp->getSubExpr()->getType(),
566 Exp->getOperatorLoc());
567 break;
568 case UnaryOperator::LNot: {
569 bool Val = Result != 0;
Chris Lattner3496d522007-09-04 02:45:27 +0000570 Result.zextOrTrunc(
571 static_cast<uint32_t>(Ctx.getTypeSize(getType(), Exp->getOperatorLoc())));
Chris Lattner4b009652007-07-25 00:24:17 +0000572 Result = Val;
573 break;
574 }
575 case UnaryOperator::Plus:
576 break;
577 case UnaryOperator::Minus:
578 Result = -Result;
579 break;
580 case UnaryOperator::Not:
581 Result = ~Result;
582 break;
583 }
584 break;
585 }
586 case SizeOfAlignOfTypeExprClass: {
587 const SizeOfAlignOfTypeExpr *Exp = cast<SizeOfAlignOfTypeExpr>(this);
588 // alignof always evaluates to a constant.
589 if (Exp->isSizeOf() && !Exp->getArgumentType()->isConstantSizeType(Ctx,Loc))
590 return false;
591
592 // Return the result in the right width.
Chris Lattner3496d522007-09-04 02:45:27 +0000593 Result.zextOrTrunc(
594 static_cast<uint32_t>(Ctx.getTypeSize(getType(), Exp->getOperatorLoc())));
Chris Lattner4b009652007-07-25 00:24:17 +0000595
596 // Get information about the size or align.
597 if (Exp->isSizeOf())
598 Result = Ctx.getTypeSize(Exp->getArgumentType(), Exp->getOperatorLoc());
599 else
600 Result = Ctx.getTypeAlign(Exp->getArgumentType(), Exp->getOperatorLoc());
601 break;
602 }
603 case BinaryOperatorClass: {
604 const BinaryOperator *Exp = cast<BinaryOperator>(this);
605
606 // The LHS of a constant expr is always evaluated and needed.
607 if (!Exp->getLHS()->isIntegerConstantExpr(Result, Ctx, Loc, isEvaluated))
608 return false;
609
610 llvm::APSInt RHS(Result);
611
612 // The short-circuiting &&/|| operators don't necessarily evaluate their
613 // RHS. Make sure to pass isEvaluated down correctly.
614 if (Exp->isLogicalOp()) {
615 bool RHSEval;
616 if (Exp->getOpcode() == BinaryOperator::LAnd)
617 RHSEval = Result != 0;
618 else {
619 assert(Exp->getOpcode() == BinaryOperator::LOr &&"Unexpected logical");
620 RHSEval = Result == 0;
621 }
622
623 if (!Exp->getRHS()->isIntegerConstantExpr(RHS, Ctx, Loc,
624 isEvaluated & RHSEval))
625 return false;
626 } else {
627 if (!Exp->getRHS()->isIntegerConstantExpr(RHS, Ctx, Loc, isEvaluated))
628 return false;
629 }
630
631 switch (Exp->getOpcode()) {
632 default:
633 if (Loc) *Loc = getLocStart();
634 return false;
635 case BinaryOperator::Mul:
636 Result *= RHS;
637 break;
638 case BinaryOperator::Div:
639 if (RHS == 0) {
640 if (!isEvaluated) break;
641 if (Loc) *Loc = getLocStart();
642 return false;
643 }
644 Result /= RHS;
645 break;
646 case BinaryOperator::Rem:
647 if (RHS == 0) {
648 if (!isEvaluated) break;
649 if (Loc) *Loc = getLocStart();
650 return false;
651 }
652 Result %= RHS;
653 break;
654 case BinaryOperator::Add: Result += RHS; break;
655 case BinaryOperator::Sub: Result -= RHS; break;
656 case BinaryOperator::Shl:
Chris Lattner3496d522007-09-04 02:45:27 +0000657 Result <<=
658 static_cast<uint32_t>(RHS.getLimitedValue(Result.getBitWidth()-1));
Chris Lattner4b009652007-07-25 00:24:17 +0000659 break;
660 case BinaryOperator::Shr:
Chris Lattner3496d522007-09-04 02:45:27 +0000661 Result >>=
662 static_cast<uint32_t>(RHS.getLimitedValue(Result.getBitWidth()-1));
Chris Lattner4b009652007-07-25 00:24:17 +0000663 break;
664 case BinaryOperator::LT: Result = Result < RHS; break;
665 case BinaryOperator::GT: Result = Result > RHS; break;
666 case BinaryOperator::LE: Result = Result <= RHS; break;
667 case BinaryOperator::GE: Result = Result >= RHS; break;
668 case BinaryOperator::EQ: Result = Result == RHS; break;
669 case BinaryOperator::NE: Result = Result != RHS; break;
670 case BinaryOperator::And: Result &= RHS; break;
671 case BinaryOperator::Xor: Result ^= RHS; break;
672 case BinaryOperator::Or: Result |= RHS; break;
673 case BinaryOperator::LAnd:
674 Result = Result != 0 && RHS != 0;
675 break;
676 case BinaryOperator::LOr:
677 Result = Result != 0 || RHS != 0;
678 break;
679
680 case BinaryOperator::Comma:
681 // C99 6.6p3: "shall not contain assignment, ..., or comma operators,
682 // *except* when they are contained within a subexpression that is not
683 // evaluated". Note that Assignment can never happen due to constraints
684 // on the LHS subexpr, so we don't need to check it here.
685 if (isEvaluated) {
686 if (Loc) *Loc = getLocStart();
687 return false;
688 }
689
690 // The result of the constant expr is the RHS.
691 Result = RHS;
692 return true;
693 }
694
695 assert(!Exp->isAssignmentOp() && "LHS can't be a constant expr!");
696 break;
697 }
698 case ImplicitCastExprClass:
699 case CastExprClass: {
700 const Expr *SubExpr;
701 SourceLocation CastLoc;
702 if (const CastExpr *C = dyn_cast<CastExpr>(this)) {
703 SubExpr = C->getSubExpr();
704 CastLoc = C->getLParenLoc();
705 } else {
706 SubExpr = cast<ImplicitCastExpr>(this)->getSubExpr();
707 CastLoc = getLocStart();
708 }
709
710 // C99 6.6p6: shall only convert arithmetic types to integer types.
711 if (!SubExpr->getType()->isArithmeticType() ||
712 !getType()->isIntegerType()) {
713 if (Loc) *Loc = SubExpr->getLocStart();
714 return false;
715 }
716
717 // Handle simple integer->integer casts.
718 if (SubExpr->getType()->isIntegerType()) {
719 if (!SubExpr->isIntegerConstantExpr(Result, Ctx, Loc, isEvaluated))
720 return false;
721
722 // Figure out if this is a truncate, extend or noop cast.
Chris Lattner3496d522007-09-04 02:45:27 +0000723 unsigned DestWidth =
724 static_cast<uint32_t>(Ctx.getTypeSize(getType(), CastLoc));
Chris Lattner4b009652007-07-25 00:24:17 +0000725
726 // If the input is signed, do a sign extend, noop, or truncate.
727 if (SubExpr->getType()->isSignedIntegerType())
728 Result.sextOrTrunc(DestWidth);
729 else // If the input is unsigned, do a zero extend, noop, or truncate.
730 Result.zextOrTrunc(DestWidth);
731 break;
732 }
733
734 // Allow floating constants that are the immediate operands of casts or that
735 // are parenthesized.
736 const Expr *Operand = SubExpr;
737 while (const ParenExpr *PE = dyn_cast<ParenExpr>(Operand))
738 Operand = PE->getSubExpr();
739
740 if (const FloatingLiteral *FL = dyn_cast<FloatingLiteral>(Operand)) {
741 // FIXME: Evaluate this correctly!
742 Result = (int)FL->getValue();
743 break;
744 }
745 if (Loc) *Loc = Operand->getLocStart();
746 return false;
747 }
748 case ConditionalOperatorClass: {
749 const ConditionalOperator *Exp = cast<ConditionalOperator>(this);
750
751 if (!Exp->getCond()->isIntegerConstantExpr(Result, Ctx, Loc, isEvaluated))
752 return false;
753
754 const Expr *TrueExp = Exp->getLHS();
755 const Expr *FalseExp = Exp->getRHS();
756 if (Result == 0) std::swap(TrueExp, FalseExp);
757
758 // Evaluate the false one first, discard the result.
759 if (!FalseExp->isIntegerConstantExpr(Result, Ctx, Loc, false))
760 return false;
761 // Evalute the true one, capture the result.
762 if (!TrueExp->isIntegerConstantExpr(Result, Ctx, Loc, isEvaluated))
763 return false;
764 break;
765 }
766 }
767
768 // Cases that are valid constant exprs fall through to here.
769 Result.setIsUnsigned(getType()->isUnsignedIntegerType());
770 return true;
771}
772
773
774/// isNullPointerConstant - C99 6.3.2.3p3 - Return true if this is either an
775/// integer constant expression with the value zero, or if this is one that is
776/// cast to void*.
777bool Expr::isNullPointerConstant(ASTContext &Ctx) const {
778 // Strip off a cast to void*, if it exists.
779 if (const CastExpr *CE = dyn_cast<CastExpr>(this)) {
780 // Check that it is a cast to void*.
781 if (const PointerType *PT = dyn_cast<PointerType>(CE->getType())) {
782 QualType Pointee = PT->getPointeeType();
783 if (Pointee.getQualifiers() == 0 && Pointee->isVoidType() && // to void*
784 CE->getSubExpr()->getType()->isIntegerType()) // from int.
785 return CE->getSubExpr()->isNullPointerConstant(Ctx);
786 }
Steve Naroff1d6b2472007-08-28 21:20:34 +0000787 } else if (const ImplicitCastExpr *ICE = dyn_cast<ImplicitCastExpr>(this)) {
Steve Naroff3d052872007-08-29 00:00:02 +0000788 // Ignore the ImplicitCastExpr type entirely.
789 return ICE->getSubExpr()->isNullPointerConstant(Ctx);
Chris Lattner4b009652007-07-25 00:24:17 +0000790 } else if (const ParenExpr *PE = dyn_cast<ParenExpr>(this)) {
791 // Accept ((void*)0) as a null pointer constant, as many other
792 // implementations do.
793 return PE->getSubExpr()->isNullPointerConstant(Ctx);
794 }
795
796 // This expression must be an integer type.
797 if (!getType()->isIntegerType())
798 return false;
799
800 // If we have an integer constant expression, we need to *evaluate* it and
801 // test for the value 0.
802 llvm::APSInt Val(32);
803 return isIntegerConstantExpr(Val, Ctx, 0, true) && Val == 0;
804}
Steve Naroffc11705f2007-07-28 23:10:27 +0000805
Chris Lattnera0d03a72007-08-03 17:31:20 +0000806unsigned OCUVectorElementExpr::getNumElements() const {
Chris Lattner50547852007-08-03 16:00:20 +0000807 return strlen(Accessor.getName());
808}
809
810
Chris Lattnerf4bf5512007-08-02 21:47:28 +0000811/// getComponentType - Determine whether the components of this access are
812/// "point" "color" or "texture" elements.
Chris Lattnera0d03a72007-08-03 17:31:20 +0000813OCUVectorElementExpr::ElementType
814OCUVectorElementExpr::getElementType() const {
Steve Naroffc11705f2007-07-28 23:10:27 +0000815 // derive the component type, no need to waste space.
816 const char *compStr = Accessor.getName();
Chris Lattnerabf25b32007-08-02 22:20:00 +0000817
Chris Lattner9096b792007-08-02 22:33:49 +0000818 if (OCUVectorType::getPointAccessorIdx(*compStr) != -1) return Point;
819 if (OCUVectorType::getColorAccessorIdx(*compStr) != -1) return Color;
Chris Lattnerabf25b32007-08-02 22:20:00 +0000820
Chris Lattner9096b792007-08-02 22:33:49 +0000821 assert(OCUVectorType::getTextureAccessorIdx(*compStr) != -1 &&
Chris Lattnerabf25b32007-08-02 22:20:00 +0000822 "getComponentType(): Illegal accessor");
823 return Texture;
Steve Naroffc11705f2007-07-28 23:10:27 +0000824}
Steve Naroffba67f692007-07-30 03:29:09 +0000825
Chris Lattnera0d03a72007-08-03 17:31:20 +0000826/// containsDuplicateElements - Return true if any element access is
Chris Lattnerf4bf5512007-08-02 21:47:28 +0000827/// repeated.
Chris Lattnera0d03a72007-08-03 17:31:20 +0000828bool OCUVectorElementExpr::containsDuplicateElements() const {
Steve Naroffba67f692007-07-30 03:29:09 +0000829 const char *compStr = Accessor.getName();
830 unsigned length = strlen(compStr);
831
832 for (unsigned i = 0; i < length-1; i++) {
833 const char *s = compStr+i;
834 for (const char c = *s++; *s; s++)
835 if (c == *s)
836 return true;
837 }
838 return false;
839}
Chris Lattner42158e72007-08-02 23:36:59 +0000840
841/// getEncodedElementAccess - We encode fields with two bits per component.
Chris Lattnera0d03a72007-08-03 17:31:20 +0000842unsigned OCUVectorElementExpr::getEncodedElementAccess() const {
Chris Lattner42158e72007-08-02 23:36:59 +0000843 const char *compStr = Accessor.getName();
Chris Lattnera0d03a72007-08-03 17:31:20 +0000844 unsigned length = getNumElements();
Chris Lattner42158e72007-08-02 23:36:59 +0000845
846 unsigned Result = 0;
847
848 while (length--) {
849 Result <<= 2;
850 int Idx = OCUVectorType::getAccessorIdx(compStr[length]);
851 assert(Idx != -1 && "Invalid accessor letter");
852 Result |= Idx;
853 }
854 return Result;
855}
856
Ted Kremeneke4acb9c2007-08-24 18:13:47 +0000857//===----------------------------------------------------------------------===//
858// Child Iterators for iterating over subexpressions/substatements
859//===----------------------------------------------------------------------===//
860
861// DeclRefExpr
Ted Kremenek9fdc8a92007-08-24 20:06:47 +0000862Stmt::child_iterator DeclRefExpr::child_begin() { return NULL; }
863Stmt::child_iterator DeclRefExpr::child_end() { return NULL; }
Ted Kremeneke4acb9c2007-08-24 18:13:47 +0000864
865// PreDefinedExpr
Ted Kremenek9fdc8a92007-08-24 20:06:47 +0000866Stmt::child_iterator PreDefinedExpr::child_begin() { return NULL; }
867Stmt::child_iterator PreDefinedExpr::child_end() { return NULL; }
Ted Kremeneke4acb9c2007-08-24 18:13:47 +0000868
869// IntegerLiteral
Ted Kremenek9fdc8a92007-08-24 20:06:47 +0000870Stmt::child_iterator IntegerLiteral::child_begin() { return NULL; }
871Stmt::child_iterator IntegerLiteral::child_end() { return NULL; }
Ted Kremeneke4acb9c2007-08-24 18:13:47 +0000872
873// CharacterLiteral
Ted Kremenek9fdc8a92007-08-24 20:06:47 +0000874Stmt::child_iterator CharacterLiteral::child_begin() { return NULL; }
875Stmt::child_iterator CharacterLiteral::child_end() { return NULL; }
Ted Kremeneke4acb9c2007-08-24 18:13:47 +0000876
877// FloatingLiteral
Ted Kremenek9fdc8a92007-08-24 20:06:47 +0000878Stmt::child_iterator FloatingLiteral::child_begin() { return NULL; }
879Stmt::child_iterator FloatingLiteral::child_end() { return NULL; }
Ted Kremeneke4acb9c2007-08-24 18:13:47 +0000880
Chris Lattner1de66eb2007-08-26 03:42:43 +0000881// ImaginaryLiteral
882Stmt::child_iterator ImaginaryLiteral::child_begin() {
883 return reinterpret_cast<Stmt**>(&Val);
884}
885Stmt::child_iterator ImaginaryLiteral::child_end() {
886 return reinterpret_cast<Stmt**>(&Val)+1;
887}
888
Ted Kremeneke4acb9c2007-08-24 18:13:47 +0000889// StringLiteral
Ted Kremenek9fdc8a92007-08-24 20:06:47 +0000890Stmt::child_iterator StringLiteral::child_begin() { return NULL; }
891Stmt::child_iterator StringLiteral::child_end() { return NULL; }
Ted Kremeneke4acb9c2007-08-24 18:13:47 +0000892
893// ParenExpr
894Stmt::child_iterator ParenExpr::child_begin() {
895 return reinterpret_cast<Stmt**>(&Val);
896}
Ted Kremeneke4acb9c2007-08-24 18:13:47 +0000897Stmt::child_iterator ParenExpr::child_end() {
Chris Lattner1de66eb2007-08-26 03:42:43 +0000898 return reinterpret_cast<Stmt**>(&Val)+1;
Ted Kremeneke4acb9c2007-08-24 18:13:47 +0000899}
900
901// UnaryOperator
902Stmt::child_iterator UnaryOperator::child_begin() {
903 return reinterpret_cast<Stmt**>(&Val);
904}
Ted Kremeneke4acb9c2007-08-24 18:13:47 +0000905Stmt::child_iterator UnaryOperator::child_end() {
Chris Lattner1de66eb2007-08-26 03:42:43 +0000906 return reinterpret_cast<Stmt**>(&Val)+1;
Ted Kremeneke4acb9c2007-08-24 18:13:47 +0000907}
908
909// SizeOfAlignOfTypeExpr
Chris Lattner1de66eb2007-08-26 03:42:43 +0000910Stmt::child_iterator SizeOfAlignOfTypeExpr::child_begin() { return NULL; }
911Stmt::child_iterator SizeOfAlignOfTypeExpr::child_end() { return NULL; }
Ted Kremeneke4acb9c2007-08-24 18:13:47 +0000912
913// ArraySubscriptExpr
Ted Kremenek9fdc8a92007-08-24 20:06:47 +0000914Stmt::child_iterator ArraySubscriptExpr::child_begin() {
Ted Kremeneke4acb9c2007-08-24 18:13:47 +0000915 return reinterpret_cast<Stmt**>(&SubExprs);
916}
Ted Kremenek9fdc8a92007-08-24 20:06:47 +0000917Stmt::child_iterator ArraySubscriptExpr::child_end() {
Chris Lattner1de66eb2007-08-26 03:42:43 +0000918 return reinterpret_cast<Stmt**>(&SubExprs)+END_EXPR;
Ted Kremeneke4acb9c2007-08-24 18:13:47 +0000919}
920
921// CallExpr
Ted Kremenek9fdc8a92007-08-24 20:06:47 +0000922Stmt::child_iterator CallExpr::child_begin() {
Ted Kremenek15ede502007-08-27 21:11:44 +0000923 return reinterpret_cast<Stmt**>(&SubExprs[0]);
Ted Kremeneke4acb9c2007-08-24 18:13:47 +0000924}
Ted Kremenek9fdc8a92007-08-24 20:06:47 +0000925Stmt::child_iterator CallExpr::child_end() {
Ted Kremenek15ede502007-08-27 21:11:44 +0000926 return reinterpret_cast<Stmt**>(&SubExprs[NumArgs+ARGS_START]);
Ted Kremeneke4acb9c2007-08-24 18:13:47 +0000927}
Ted Kremenek9fdc8a92007-08-24 20:06:47 +0000928
929// MemberExpr
930Stmt::child_iterator MemberExpr::child_begin() {
931 return reinterpret_cast<Stmt**>(&Base);
932}
Ted Kremenek9fdc8a92007-08-24 20:06:47 +0000933Stmt::child_iterator MemberExpr::child_end() {
Chris Lattner1de66eb2007-08-26 03:42:43 +0000934 return reinterpret_cast<Stmt**>(&Base)+1;
Ted Kremenek9fdc8a92007-08-24 20:06:47 +0000935}
936
937// OCUVectorElementExpr
938Stmt::child_iterator OCUVectorElementExpr::child_begin() {
939 return reinterpret_cast<Stmt**>(&Base);
940}
Ted Kremenek9fdc8a92007-08-24 20:06:47 +0000941Stmt::child_iterator OCUVectorElementExpr::child_end() {
Chris Lattner1de66eb2007-08-26 03:42:43 +0000942 return reinterpret_cast<Stmt**>(&Base)+1;
Ted Kremenek9fdc8a92007-08-24 20:06:47 +0000943}
944
945// CompoundLiteralExpr
946Stmt::child_iterator CompoundLiteralExpr::child_begin() {
947 return reinterpret_cast<Stmt**>(&Init);
948}
Ted Kremenek9fdc8a92007-08-24 20:06:47 +0000949Stmt::child_iterator CompoundLiteralExpr::child_end() {
Chris Lattner1de66eb2007-08-26 03:42:43 +0000950 return reinterpret_cast<Stmt**>(&Init)+1;
Ted Kremenek9fdc8a92007-08-24 20:06:47 +0000951}
952
953// ImplicitCastExpr
954Stmt::child_iterator ImplicitCastExpr::child_begin() {
955 return reinterpret_cast<Stmt**>(&Op);
956}
Ted Kremenek9fdc8a92007-08-24 20:06:47 +0000957Stmt::child_iterator ImplicitCastExpr::child_end() {
Chris Lattner1de66eb2007-08-26 03:42:43 +0000958 return reinterpret_cast<Stmt**>(&Op)+1;
Ted Kremenek9fdc8a92007-08-24 20:06:47 +0000959}
960
961// CastExpr
962Stmt::child_iterator CastExpr::child_begin() {
963 return reinterpret_cast<Stmt**>(&Op);
964}
Ted Kremenek9fdc8a92007-08-24 20:06:47 +0000965Stmt::child_iterator CastExpr::child_end() {
Chris Lattner1de66eb2007-08-26 03:42:43 +0000966 return reinterpret_cast<Stmt**>(&Op)+1;
Ted Kremenek9fdc8a92007-08-24 20:06:47 +0000967}
968
969// BinaryOperator
970Stmt::child_iterator BinaryOperator::child_begin() {
971 return reinterpret_cast<Stmt**>(&SubExprs);
972}
Ted Kremenek9fdc8a92007-08-24 20:06:47 +0000973Stmt::child_iterator BinaryOperator::child_end() {
Chris Lattner1de66eb2007-08-26 03:42:43 +0000974 return reinterpret_cast<Stmt**>(&SubExprs)+END_EXPR;
Ted Kremenek9fdc8a92007-08-24 20:06:47 +0000975}
976
977// ConditionalOperator
978Stmt::child_iterator ConditionalOperator::child_begin() {
979 return reinterpret_cast<Stmt**>(&SubExprs);
980}
Ted Kremenek9fdc8a92007-08-24 20:06:47 +0000981Stmt::child_iterator ConditionalOperator::child_end() {
Chris Lattner1de66eb2007-08-26 03:42:43 +0000982 return reinterpret_cast<Stmt**>(&SubExprs)+END_EXPR;
Ted Kremenek9fdc8a92007-08-24 20:06:47 +0000983}
984
985// AddrLabelExpr
986Stmt::child_iterator AddrLabelExpr::child_begin() { return NULL; }
987Stmt::child_iterator AddrLabelExpr::child_end() { return NULL; }
988
Ted Kremenek9fdc8a92007-08-24 20:06:47 +0000989// StmtExpr
990Stmt::child_iterator StmtExpr::child_begin() {
991 return reinterpret_cast<Stmt**>(&SubStmt);
992}
Ted Kremenek9fdc8a92007-08-24 20:06:47 +0000993Stmt::child_iterator StmtExpr::child_end() {
Chris Lattner1de66eb2007-08-26 03:42:43 +0000994 return reinterpret_cast<Stmt**>(&SubStmt)+1;
Ted Kremenek9fdc8a92007-08-24 20:06:47 +0000995}
996
997// TypesCompatibleExpr
998Stmt::child_iterator TypesCompatibleExpr::child_begin() { return NULL; }
999Stmt::child_iterator TypesCompatibleExpr::child_end() { return NULL; }
1000
1001// ChooseExpr
1002Stmt::child_iterator ChooseExpr::child_begin() {
1003 return reinterpret_cast<Stmt**>(&SubExprs);
1004}
1005
1006Stmt::child_iterator ChooseExpr::child_end() {
Chris Lattner1de66eb2007-08-26 03:42:43 +00001007 return reinterpret_cast<Stmt**>(&SubExprs)+END_EXPR;
Ted Kremenek9fdc8a92007-08-24 20:06:47 +00001008}
1009
Anders Carlsson762b7c72007-08-31 04:56:16 +00001010// InitListExpr
1011Stmt::child_iterator InitListExpr::child_begin() {
1012 return reinterpret_cast<Stmt**>(&InitExprs[0]);
1013}
1014Stmt::child_iterator InitListExpr::child_end() {
1015 return reinterpret_cast<Stmt**>(&InitExprs[NumInits]);
1016}
1017
Ted Kremenek9fdc8a92007-08-24 20:06:47 +00001018// ObjCStringLiteral
1019Stmt::child_iterator ObjCStringLiteral::child_begin() { return NULL; }
1020Stmt::child_iterator ObjCStringLiteral::child_end() { return NULL; }
1021
1022// ObjCEncodeExpr
1023Stmt::child_iterator ObjCEncodeExpr::child_begin() { return NULL; }
1024Stmt::child_iterator ObjCEncodeExpr::child_end() { return NULL; }
1025