source: src/SynTree/Expression.h@ b4cd03b7

ADT aaron-thesis arm-eh ast-experimental cleanup-dtors ctor deferred_resn demangler enum forall-pointer-decay gc_noraii jacob/cs343-translation jenkins-sandbox memory new-ast new-ast-unique-expr new-env no_list persistent-indexer pthread-emulation qualifiedEnum resolv-new string with_gc
Last change on this file since b4cd03b7 was 25a054f, checked in by Aaron Moss <a3moss@…>, 10 years ago

Add OffsetofExpr for field offsets

  • Property mode set to 100644
File size: 20.3 KB
RevLine 
[0dd3a2f]1//
2// Cforall Version 1.0.0 Copyright (C) 2015 University of Waterloo
3//
4// The contents of this file are covered under the licence agreement in the
5// file "LICENCE" distributed with Cforall.
6//
7// Expression.h --
8//
9// Author : Richard C. Bilson
10// Created On : Mon May 18 07:44:20 2015
[baf7fee]11// Last Modified By : Rob Schluntz
12// Last Modified On : Wed Dec 09 14:10:21 2015
13// Update Count : 19
[0dd3a2f]14//
[51b73452]15
16#ifndef EXPRESSION_H
17#define EXPRESSION_H
18
19#include <map>
20#include "SynTree.h"
21#include "Visitor.h"
22#include "Mutator.h"
23#include "Constant.h"
24
[47534159]25/// Expression is the root type for all expressions
[0dd3a2f]26class Expression {
27 public:
28 Expression(Expression *_aname = 0 );
29 Expression( const Expression &other );
30 virtual ~Expression();
31
32 std::list<Type *>& get_results() { return results; }
[7f5566b]33 void add_result( Type *t );
[0dd3a2f]34
35 TypeSubstitution *get_env() const { return env; }
36 void set_env( TypeSubstitution *newValue ) { env = newValue; }
37 Expression *get_argName() const { return argName; }
38 void set_argName( Expression *name ) { argName = name; }
39
40 virtual Expression *clone() const = 0;
41 virtual void accept( Visitor &v ) = 0;
42 virtual Expression *acceptMutator( Mutator &m ) = 0;
43 virtual void print( std::ostream &os, int indent = 0 ) const;
44 protected:
45 std::list<Type *> results;
46 TypeSubstitution *env;
47 Expression* argName; // if expression is used as an argument, it can be "designated" by this name
[51b73452]48};
49
[47534159]50/// ParamEntry contains the i.d. of a declaration and a type that is derived from that declaration,
51/// but subject to decay-to-pointer and type parameter renaming
[0dd3a2f]52struct ParamEntry {
53 ParamEntry(): decl( 0 ), actualType( 0 ), formalType( 0 ), expr( 0 ) {}
54 ParamEntry( UniqueId decl, Type *actualType, Type *formalType, Expression* expr ): decl( decl ), actualType( actualType ), formalType( formalType ), expr( expr ) {}
55 ParamEntry( const ParamEntry &other );
56 ~ParamEntry();
57 ParamEntry &operator=( const ParamEntry &other );
58
59 UniqueId decl;
60 Type *actualType;
61 Type *formalType;
62 Expression* expr;
[51b73452]63};
64
65typedef std::map< UniqueId, ParamEntry > InferredParams;
66
[47534159]67/// ApplicationExpr represents the application of a function to a set of parameters. This is the
68/// result of running an UntypedExpr through the expression analyzer.
[0dd3a2f]69class ApplicationExpr : public Expression {
70 public:
71 ApplicationExpr( Expression *function );
72 ApplicationExpr( const ApplicationExpr &other );
73 virtual ~ApplicationExpr();
74
75 Expression *get_function() const { return function; }
76 void set_function( Expression *newValue ) { function = newValue; }
77 std::list<Expression *>& get_args() { return args; }
78 InferredParams &get_inferParams() { return inferParams; }
79
80 virtual ApplicationExpr *clone() const { return new ApplicationExpr( *this ); }
81 virtual void accept( Visitor &v ) { v.visit( this ); }
82 virtual Expression *acceptMutator( Mutator &m ) { return m.mutate( this ); }
83 virtual void print( std::ostream &os, int indent = 0 ) const;
84 private:
85 Expression *function;
86 std::list<Expression *> args;
87 InferredParams inferParams;
[51b73452]88};
89
[47534159]90/// UntypedExpr represents the application of a function to a set of parameters, but where the
91/// particular overload for the function name has not yet been determined. Most operators are
92/// converted into functional form automatically, to permit operator overloading.
[0dd3a2f]93class UntypedExpr : public Expression {
94 public:
95 UntypedExpr( Expression *function, Expression *_aname = 0 );
96 UntypedExpr( const UntypedExpr &other );
97 UntypedExpr( Expression *function, std::list<Expression *> &args, Expression *_aname = 0 );
98 virtual ~UntypedExpr();
99
100 Expression *get_function() const { return function; }
101 void set_function( Expression *newValue ) { function = newValue; }
102
103 void set_args( std::list<Expression *> &listArgs ) { args = listArgs; }
104 std::list<Expression*>::iterator begin_args() { return args.begin(); }
105 std::list<Expression*>::iterator end_args() { return args.end(); }
106 std::list<Expression*>& get_args() { return args; }
107
108 virtual UntypedExpr *clone() const { return new UntypedExpr( *this ); }
109 virtual void accept( Visitor &v ) { v.visit( this ); }
110 virtual Expression *acceptMutator( Mutator &m ) { return m.mutate( this ); }
111 virtual void print( std::ostream &os, int indent = 0 ) const;
112 virtual void printArgs(std::ostream &os, int indent = 0) const;
113 private:
114 Expression *function;
115 std::list<Expression*> args;
[51b73452]116};
117
[47534159]118/// NameExpr contains a name whose meaning is still not determined
[0dd3a2f]119class NameExpr : public Expression {
120 public:
121 NameExpr( std::string name, Expression *_aname = 0 );
122 NameExpr( const NameExpr &other );
123 virtual ~NameExpr();
124
[5f2f2d7]125 const std::string &get_name() const { return name; }
[0dd3a2f]126 void set_name( std::string newValue ) { name = newValue; }
127
128 virtual NameExpr *clone() const { return new NameExpr( *this ); }
129 virtual void accept( Visitor &v ) { v.visit( this ); }
130 virtual Expression *acceptMutator( Mutator &m ) { return m.mutate( this ); }
131 virtual void print( std::ostream &os, int indent = 0 ) const;
132 private:
133 std::string name;
[51b73452]134};
135
136// The following classes are used to represent expression types that cannot be converted into
137// function-call format.
138
[47534159]139/// AddressExpr represents a address-of expression, e.g. &e
[0dd3a2f]140class AddressExpr : public Expression {
141 public:
142 AddressExpr( Expression *arg, Expression *_aname = 0 );
143 AddressExpr( const AddressExpr &other );
144 virtual ~AddressExpr();
145
146 Expression *get_arg() const { return arg; }
147 void set_arg(Expression *newValue ) { arg = newValue; }
148
149 virtual AddressExpr *clone() const { return new AddressExpr( *this ); }
150 virtual void accept( Visitor &v ) { v.visit( this ); }
151 virtual Expression *acceptMutator( Mutator &m ) { return m.mutate( this ); }
152 virtual void print( std::ostream &os, int indent = 0 ) const;
153 private:
154 Expression *arg;
[51b73452]155};
156
[0dd3a2f]157class LabelAddressExpr : public Expression {
158 public:
159 LabelAddressExpr( Expression *arg );
160 LabelAddressExpr( const AddressExpr &other );
161 virtual ~LabelAddressExpr();
162
163 Expression *get_arg() const { return arg; }
164 void set_arg(Expression *newValue ) { arg = newValue; }
165
166 virtual LabelAddressExpr *clone() const { return new LabelAddressExpr( *this ); }
167 virtual void accept( Visitor &v ) { v.visit( this ); }
168 virtual Expression *acceptMutator( Mutator &m ) { return m.mutate( this ); }
169 virtual void print( std::ostream &os, int indent = 0 ) const;
170 private:
171 Expression *arg;
[51b73452]172};
173
[47534159]174/// CastExpr represents a type cast expression, e.g. (int)e
[0dd3a2f]175class CastExpr : public Expression {
176 public:
177 CastExpr( Expression *arg, Expression *_aname = 0 );
178 CastExpr( Expression *arg, Type *toType, Expression *_aname = 0 );
179 CastExpr( const CastExpr &other );
180 virtual ~CastExpr();
181
182 Expression *get_arg() const { return arg; }
183 void set_arg(Expression *newValue ) { arg = newValue; }
184
185 virtual CastExpr *clone() const { return new CastExpr( *this ); }
186 virtual void accept( Visitor &v ) { v.visit( this ); }
187 virtual Expression *acceptMutator( Mutator &m ) { return m.mutate( this ); }
188 virtual void print( std::ostream &os, int indent = 0 ) const;
189 private:
190 Expression *arg;
[51b73452]191};
192
[47534159]193/// UntypedMemberExpr represents a member selection operation, e.g. q.p before processing by the expression analyzer
[0dd3a2f]194class UntypedMemberExpr : public Expression {
195 public:
196 UntypedMemberExpr( std::string member, Expression *aggregate, Expression *_aname = 0 );
197 UntypedMemberExpr( const UntypedMemberExpr &other );
198 virtual ~UntypedMemberExpr();
199
200 std::string get_member() const { return member; }
201 void set_member( const std::string &newValue ) { member = newValue; }
202 Expression *get_aggregate() const { return aggregate; }
203 void set_aggregate( Expression *newValue ) { aggregate = newValue; }
204
205 virtual UntypedMemberExpr *clone() const { return new UntypedMemberExpr( *this ); }
206 virtual void accept( Visitor &v ) { v.visit( this ); }
207 virtual Expression *acceptMutator( Mutator &m ) { return m.mutate( this ); }
208 virtual void print( std::ostream &os, int indent = 0 ) const;
209 private:
210 std::string member;
211 Expression *aggregate;
[51b73452]212};
213
[47534159]214/// MemberExpr represents a member selection operation, e.g. q.p after processing by the expression analyzer
[0dd3a2f]215class MemberExpr : public Expression {
216 public:
217 MemberExpr( DeclarationWithType *member, Expression *aggregate, Expression *_aname = 0 );
218 MemberExpr( const MemberExpr &other );
219 virtual ~MemberExpr();
220
221 DeclarationWithType *get_member() const { return member; }
222 void set_member( DeclarationWithType *newValue ) { member = newValue; }
223 Expression *get_aggregate() const { return aggregate; }
224 void set_aggregate( Expression *newValue ) { aggregate = newValue; }
225
226 virtual MemberExpr *clone() const { return new MemberExpr( *this ); }
227 virtual void accept( Visitor &v ) { v.visit( this ); }
228 virtual Expression *acceptMutator( Mutator &m ) { return m.mutate( this ); }
229 virtual void print( std::ostream &os, int indent = 0 ) const;
230 private:
231 DeclarationWithType *member;
232 Expression *aggregate;
[51b73452]233};
234
[47534159]235/// VariableExpr represents an expression that simply refers to the value of a named variable
[0dd3a2f]236class VariableExpr : public Expression {
237 public:
238 VariableExpr( DeclarationWithType *var, Expression *_aname = 0 );
239 VariableExpr( const VariableExpr &other );
240 virtual ~VariableExpr();
241
242 DeclarationWithType *get_var() const { return var; }
243 void set_var( DeclarationWithType *newValue ) { var = newValue; }
244
245 virtual VariableExpr *clone() const { return new VariableExpr( *this ); }
246 virtual void accept( Visitor &v ) { v.visit( this ); }
247 virtual Expression *acceptMutator( Mutator &m ) { return m.mutate( this ); }
248 virtual void print( std::ostream &os, int indent = 0 ) const;
249 private:
250 DeclarationWithType *var;
[51b73452]251};
252
[47534159]253/// ConstantExpr represents an expression that simply refers to the value of a constant
[0dd3a2f]254class ConstantExpr : public Expression {
255 public:
256 ConstantExpr( Constant constant, Expression *_aname = 0 );
257 ConstantExpr( const ConstantExpr &other );
258 virtual ~ConstantExpr();
259
260 Constant *get_constant() { return &constant; }
261 void set_constant( const Constant &newValue ) { constant = newValue; }
262
263 virtual ConstantExpr *clone() const { return new ConstantExpr( *this ); }
264 virtual void accept( Visitor &v ) { v.visit( this ); }
265 virtual Expression *acceptMutator( Mutator &m ) { return m.mutate( this ); }
266 virtual void print( std::ostream &os, int indent = 0 ) const;
267 private:
268 Constant constant;
[51b73452]269};
270
[47534159]271/// SizeofExpr represents a sizeof expression (could be sizeof(int) or sizeof 3+4)
[0dd3a2f]272class SizeofExpr : public Expression {
273 public:
274 SizeofExpr( Expression *expr, Expression *_aname = 0 );
275 SizeofExpr( const SizeofExpr &other );
276 SizeofExpr( Type *type, Expression *_aname = 0 );
277 virtual ~SizeofExpr();
278
279 Expression *get_expr() const { return expr; }
280 void set_expr( Expression *newValue ) { expr = newValue; }
281 Type *get_type() const { return type; }
282 void set_type( Type *newValue ) { type = newValue; }
283 bool get_isType() const { return isType; }
284 void set_isType( bool newValue ) { isType = newValue; }
285
286 virtual SizeofExpr *clone() const { return new SizeofExpr( *this ); }
287 virtual void accept( Visitor &v ) { v.visit( this ); }
288 virtual Expression *acceptMutator( Mutator &m ) { return m.mutate( this ); }
289 virtual void print( std::ostream &os, int indent = 0 ) const;
290 private:
291 Expression *expr;
292 Type *type;
293 bool isType;
[51b73452]294};
295
[47534159]296/// AlignofExpr represents an alignof expression
297class AlignofExpr : public Expression {
298 public:
299 AlignofExpr( Expression *expr, Expression *_aname = 0 );
300 AlignofExpr( const AlignofExpr &other );
301 AlignofExpr( Type *type, Expression *_aname = 0 );
302 virtual ~AlignofExpr();
303
304 Expression *get_expr() const { return expr; }
305 void set_expr( Expression *newValue ) { expr = newValue; }
306 Type *get_type() const { return type; }
307 void set_type( Type *newValue ) { type = newValue; }
308 bool get_isType() const { return isType; }
309 void set_isType( bool newValue ) { isType = newValue; }
310
311 virtual AlignofExpr *clone() const { return new AlignofExpr( *this ); }
312 virtual void accept( Visitor &v ) { v.visit( this ); }
313 virtual Expression *acceptMutator( Mutator &m ) { return m.mutate( this ); }
314 virtual void print( std::ostream &os, int indent = 0 ) const;
315 private:
316 Expression *expr;
317 Type *type;
318 bool isType;
319};
320
[25a054f]321/// OffsetofExpr represents an offsetof expression
322class OffsetofExpr : public Expression {
323 public:
324 OffsetofExpr( Type *type, DeclarationWithType *member, Expression *_aname = 0 );
325 OffsetofExpr( const OffsetofExpr &other );
326 virtual ~OffsetofExpr();
327
328 Type *get_type() const { return type; }
329 void set_type( Type *newValue ) { type = newValue; }
330 DeclarationWithType *get_member() const { return member; }
331 void set_member( DeclarationWithType *newValue ) { member = newValue; }
332
333 virtual OffsetofExpr *clone() const { return new OffsetofExpr( *this ); }
334 virtual void accept( Visitor &v ) { v.visit( this ); }
335 virtual Expression *acceptMutator( Mutator &m ) { return m.mutate( this ); }
336 virtual void print( std::ostream &os, int indent = 0 ) const;
337 private:
338 Type *type;
339 DeclarationWithType *member;
340};
341
[47534159]342/// AttrExpr represents an @attribute expression (like sizeof, but user-defined)
[0dd3a2f]343class AttrExpr : public Expression {
344 public:
345 AttrExpr(Expression *attr, Expression *expr, Expression *_aname = 0 );
346 AttrExpr( const AttrExpr &other );
347 AttrExpr( Expression *attr, Type *type, Expression *_aname = 0 );
348 virtual ~AttrExpr();
349
350 Expression *get_attr() const { return attr; }
351 void set_attr( Expression *newValue ) { attr = newValue; }
352 Expression *get_expr() const { return expr; }
353 void set_expr( Expression *newValue ) { expr = newValue; }
354 Type *get_type() const { return type; }
355 void set_type( Type *newValue ) { type = newValue; }
356 bool get_isType() const { return isType; }
357 void set_isType( bool newValue ) { isType = newValue; }
358
359 virtual AttrExpr *clone() const { return new AttrExpr( *this ); }
360 virtual void accept( Visitor &v ) { v.visit( this ); }
361 virtual Expression *acceptMutator( Mutator &m ) { return m.mutate( this ); }
362 virtual void print( std::ostream &os, int indent = 0 ) const;
363 private:
364 Expression *attr;
365 Expression *expr;
366 Type *type;
367 bool isType;
[51b73452]368};
369
[47534159]370/// LogicalExpr represents a short-circuit boolean expression (&& or ||)
[0dd3a2f]371class LogicalExpr : public Expression {
372 public:
373 LogicalExpr( Expression *arg1, Expression *arg2, bool andp = true, Expression *_aname = 0 );
374 LogicalExpr( const LogicalExpr &other );
375 virtual ~LogicalExpr();
376
377 bool get_isAnd() const { return isAnd; }
378 Expression *get_arg1() { return arg1; }
379 void set_arg1( Expression *newValue ) { arg1 = newValue; }
380 Expression *get_arg2() const { return arg2; }
381 void set_arg2( Expression *newValue ) { arg2 = newValue; }
382
383 virtual LogicalExpr *clone() const { return new LogicalExpr( *this ); }
384 virtual void accept( Visitor &v ) { v.visit( this ); }
385 virtual Expression *acceptMutator( Mutator &m ) { return m.mutate( this ); }
386 virtual void print( std::ostream &os, int indent = 0 ) const;
387 private:
388 Expression *arg1;
389 Expression *arg2;
390 bool isAnd;
[51b73452]391};
392
[47534159]393/// ConditionalExpr represents the three-argument conditional ( p ? a : b )
[0dd3a2f]394class ConditionalExpr : public Expression {
395 public:
396 ConditionalExpr( Expression *arg1, Expression *arg2, Expression *arg3, Expression *_aname = 0 );
397 ConditionalExpr( const ConditionalExpr &other );
398 virtual ~ConditionalExpr();
399
400 Expression *get_arg1() const { return arg1; }
401 void set_arg1( Expression *newValue ) { arg1 = newValue; }
402 Expression *get_arg2() const { return arg2; }
403 void set_arg2( Expression *newValue ) { arg2 = newValue; }
404 Expression *get_arg3() const { return arg3; }
405 void set_arg3( Expression *newValue ) { arg3 = newValue; }
406
407 virtual ConditionalExpr *clone() const { return new ConditionalExpr( *this ); }
408 virtual void accept( Visitor &v ) { v.visit( this ); }
409 virtual Expression *acceptMutator( Mutator &m ) { return m.mutate( this ); }
410 virtual void print( std::ostream &os, int indent = 0 ) const;
411 private:
412 Expression *arg1;
413 Expression *arg2;
414 Expression *arg3;
[51b73452]415};
416
[47534159]417/// CommaExpr represents the sequence operator ( a, b )
[0dd3a2f]418class CommaExpr : public Expression {
419 public:
420 CommaExpr( Expression *arg1, Expression *arg2, Expression *_aname = 0 );
421 CommaExpr( const CommaExpr &other );
422 virtual ~CommaExpr();
423
424 Expression *get_arg1() const { return arg1; }
425 void set_arg1( Expression *newValue ) { arg1 = newValue; }
426 Expression *get_arg2() const { return arg2; }
427 void set_arg2( Expression *newValue ) { arg2 = newValue; }
428
429 virtual CommaExpr *clone() const { return new CommaExpr( *this ); }
430 virtual void accept( Visitor &v ) { v.visit( this ); }
431 virtual Expression *acceptMutator( Mutator &m ) { return m.mutate( this ); }
432 virtual void print( std::ostream &os, int indent = 0 ) const;
433 private:
434 Expression *arg1;
435 Expression *arg2;
[51b73452]436};
437
[47534159]438/// TupleExpr represents a tuple expression ( [a, b, c] )
[0dd3a2f]439class TupleExpr : public Expression {
440 public:
441 TupleExpr( Expression *_aname = 0 );
442 TupleExpr( const TupleExpr &other );
443 virtual ~TupleExpr();
444
445 void set_exprs( std::list<Expression*> newValue ) { exprs = newValue; }
446 std::list<Expression*>& get_exprs() { return exprs; }
447
448 virtual TupleExpr *clone() const { return new TupleExpr( *this ); }
449 virtual void accept( Visitor &v ) { v.visit( this ); }
450 virtual Expression *acceptMutator( Mutator &m ) { return m.mutate( this ); }
451 virtual void print( std::ostream &os, int indent = 0 ) const;
452 private:
453 std::list<Expression*> exprs;
[51b73452]454};
455
[47534159]456/// SolvedTupleExpr represents a TupleExpr whose components have been type-resolved. It is effectively a shell for the code generator to work on
[0dd3a2f]457class SolvedTupleExpr : public Expression {
458 public:
459 SolvedTupleExpr( Expression *_aname = 0 ) : Expression( _aname ) {}
460 SolvedTupleExpr( std::list<Expression *> &, Expression *_aname = 0 );
461 SolvedTupleExpr( const SolvedTupleExpr &other );
462 virtual ~SolvedTupleExpr() {}
463
464 std::list<Expression*> &get_exprs() { return exprs; }
465
466 virtual SolvedTupleExpr *clone() const { return new SolvedTupleExpr( *this ); }
467 virtual void accept( Visitor &v ) { v.visit( this ); }
468 virtual Expression *acceptMutator( Mutator &m ) { return m.mutate( this ); }
469 virtual void print( std::ostream &os, int indent = 0 ) const;
470 private:
471 std::list<Expression*> exprs;
[51b73452]472};
473
[47534159]474/// TypeExpr represents a type used in an expression (e.g. as a type generator parameter)
[0dd3a2f]475class TypeExpr : public Expression {
476 public:
477 TypeExpr( Type *type );
478 TypeExpr( const TypeExpr &other );
479 virtual ~TypeExpr();
480
481 Type *get_type() const { return type; }
482 void set_type( Type *newValue ) { type = newValue; }
483
484 virtual TypeExpr *clone() const { return new TypeExpr( *this ); }
485 virtual void accept( Visitor &v ) { v.visit( this ); }
486 virtual Expression *acceptMutator( Mutator &m ) { return m.mutate( this ); }
487 virtual void print( std::ostream &os, int indent = 0 ) const;
488 private:
489 Type *type;
[51b73452]490};
491
[47534159]492/// AsmExpr represents a GCC 'asm constraint operand' used in an asm statement: [output] "=f" (result)
[7f5566b]493class AsmExpr : public Expression {
494 public:
495 AsmExpr( Expression *inout, ConstantExpr *constraint, Expression *operand ) : inout( inout ), constraint( constraint ), operand( operand ) {}
496 virtual ~AsmExpr() { delete inout; delete constraint; delete operand; };
497
498 Expression *get_inout() const { return inout; }
499 void set_inout( Expression *newValue ) { inout = newValue; }
500
501 ConstantExpr *get_constraint() const { return constraint; }
502 void set_constraint( ConstantExpr *newValue ) { constraint = newValue; }
503
504 Expression *get_operand() const { return operand; }
505 void set_operand( Expression *newValue ) { operand = newValue; }
506
507 virtual AsmExpr *clone() const { return new AsmExpr( *this ); }
508 virtual void accept( Visitor &v ) { v.visit( this ); }
509 virtual Expression *acceptMutator( Mutator &m ) { return m.mutate( this ); }
510 virtual void print( std::ostream &os, int indent = 0 ) const;
511 private:
512 // https://gcc.gnu.org/onlinedocs/gcc-4.7.1/gcc/Machine-Constraints.html#Machine-Constraints
513 Expression *inout;
514 ConstantExpr *constraint;
515 Expression *operand;
516};
517
[47534159]518/// ValofExpr represents a GCC 'lambda expression'
[0dd3a2f]519class UntypedValofExpr : public Expression {
520 public:
521 UntypedValofExpr( Statement *_body, Expression *_aname = 0 ) : Expression( _aname ), body ( _body ) {}
522 virtual ~UntypedValofExpr() {}
523
524 Expression *get_value();
525 Statement *get_body() const { return body; }
526
527 virtual UntypedValofExpr *clone() const { return new UntypedValofExpr( *this ); }
528 virtual void accept( Visitor &v ) { v.visit( this ); }
529 virtual Expression *acceptMutator( Mutator &m ) { return m.mutate( this ); }
530 virtual void print( std::ostream &os, int indent = 0 ) const;
531 private:
532 Statement *body;
[51b73452]533};
534
[baf7fee]535std::ostream & operator<<( std::ostream & out, Expression * expr );
536
[0dd3a2f]537#endif // EXPRESSION_H
[51b73452]538
[0dd3a2f]539// Local Variables: //
540// tab-width: 4 //
541// mode: c++ //
542// compile-command: "make install" //
543// End: //
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