source: src/SynTree/Expression.h@ efe8172b

ADT aaron-thesis arm-eh ast-experimental cleanup-dtors deferred_resn demangler enum forall-pointer-decay jacob/cs343-translation jenkins-sandbox new-ast new-ast-unique-expr new-env no_list persistent-indexer pthread-emulation qualifiedEnum resolv-new with_gc
Last change on this file since efe8172b was df626eb, checked in by Rob Schluntz <rschlunt@…>, 8 years ago

Move inferred parameters to Exception base class

  • Property mode set to 100644
File size: 31.2 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//
[3be261a]7// Expression.h --
[0dd3a2f]8//
9// Author : Richard C. Bilson
10// Created On : Mon May 18 07:44:20 2015
[e612146c]11// Last Modified By : Peter A. Buhr
12// Last Modified On : Sun Sep 3 19:23:46 2017
13// Update Count : 48
[0dd3a2f]14//
[e612146c]15
[6b0b624]16#pragma once
[51b73452]17
[ea6332d]18#include <iosfwd> // for ostream
19#include <list> // for list, list<>::iterator
20#include <map> // for map, map<>::value_compare
21#include <memory> // for allocator, unique_ptr
22#include <string> // for string
23
24#include "BaseSyntaxNode.h" // for BaseSyntaxNode
25#include "Constant.h" // for Constant
26#include "Initializer.h" // for Designation (ptr only), Initializer
[5809461]27#include "Label.h" // for Label
[ea6332d]28#include "Mutator.h" // for Mutator
29#include "SynTree.h" // for UniqueId
30#include "Visitor.h" // for Visitor
[294647b]31
[51b73452]32
[df626eb]33struct ParamEntry;
34
35typedef std::map< UniqueId, ParamEntry > InferredParams;
36
37/// ParamEntry contains the i.d. of a declaration and a type that is derived from that declaration,
38/// but subject to decay-to-pointer and type parameter renaming
39struct ParamEntry {
40 ParamEntry(): decl( 0 ), actualType( 0 ), formalType( 0 ), expr( 0 ), inferParams( new InferredParams ) {}
41 ParamEntry( UniqueId decl, Type * actualType, Type * formalType, Expression* expr ): decl( decl ), actualType( actualType ), formalType( formalType ), expr( expr ), inferParams( new InferredParams ) {}
42 ParamEntry( const ParamEntry & other );
43 ~ParamEntry();
44 ParamEntry & operator=( const ParamEntry & other );
45
46 UniqueId decl;
47 Type * actualType;
48 Type * formalType;
49 Expression * expr;
50 std::unique_ptr< InferredParams > inferParams;
51};
52
[47534159]53/// Expression is the root type for all expressions
[df626eb]54class Expression : public BaseSyntaxNode {
[0dd3a2f]55 public:
[65cdc1e]56 Type * result;
57 TypeSubstitution * env;
58 bool extension = false;
[df626eb]59 InferredParams inferParams;
[65cdc1e]60
[bf4b4cf]61 Expression();
[5ded739]62 Expression( const Expression & other );
[0dd3a2f]63 virtual ~Expression();
64
[906e24d]65 Type *& get_result() { return result; }
[fbcde64]66 const Type * get_result() const { return result; }
[5ded739]67 void set_result( Type * newValue ) { result = newValue; }
[0dd3a2f]68
[5ded739]69 TypeSubstitution * get_env() const { return env; }
70 void set_env( TypeSubstitution * newValue ) { env = newValue; }
[e04ef3a]71 bool get_extension() const { return extension; }
[8e9cbb2]72 Expression * set_extension( bool exten ) { extension = exten; return this; }
[0dd3a2f]73
[df626eb]74 InferredParams & get_inferParams() { return inferParams; }
75
[fa16264]76 virtual Expression * clone() const override = 0;
77 virtual void accept( Visitor & v ) override = 0;
78 virtual Expression * acceptMutator( Mutator & m ) override = 0;
[50377a4]79 virtual void print( std::ostream & os, Indenter indent = {} ) const override;
[51b73452]80};
81
[9706554]82/// ApplicationExpr represents the application of a function to a set of parameters. This is the result of running an
83/// UntypedExpr through the expression analyzer.
[0dd3a2f]84class ApplicationExpr : public Expression {
85 public:
[65cdc1e]86 Expression * function;
[871cdb4]87 std::list<Expression *> args;
[65cdc1e]88
[a5f0529]89 ApplicationExpr( Expression * function, const std::list<Expression *> & args = std::list< Expression * >() );
[5ded739]90 ApplicationExpr( const ApplicationExpr & other );
[0dd3a2f]91 virtual ~ApplicationExpr();
92
[5ded739]93 Expression * get_function() const { return function; }
94 void set_function( Expression * newValue ) { function = newValue; }
[0dd3a2f]95 std::list<Expression *>& get_args() { return args; }
96
[5ded739]97 virtual ApplicationExpr * clone() const { return new ApplicationExpr( * this ); }
98 virtual void accept( Visitor & v ) { v.visit( this ); }
99 virtual Expression * acceptMutator( Mutator & m ) { return m.mutate( this ); }
[50377a4]100 virtual void print( std::ostream & os, Indenter indent = {} ) const;
[51b73452]101};
102
[9706554]103/// UntypedExpr represents the application of a function to a set of parameters, but where the particular overload for
104/// the function name has not yet been determined. Most operators are converted into functional form automatically, to
105/// permit operator overloading.
[0dd3a2f]106class UntypedExpr : public Expression {
107 public:
[65cdc1e]108 Expression * function;
109 std::list<Expression*> args;
110
[bf4b4cf]111 UntypedExpr( Expression * function, const std::list<Expression *> & args = std::list< Expression * >() );
[5ded739]112 UntypedExpr( const UntypedExpr & other );
[0dd3a2f]113 virtual ~UntypedExpr();
114
[5ded739]115 Expression * get_function() const { return function; }
116 void set_function( Expression * newValue ) { function = newValue; }
[0dd3a2f]117
118 std::list<Expression*>::iterator begin_args() { return args.begin(); }
119 std::list<Expression*>::iterator end_args() { return args.end(); }
120 std::list<Expression*>& get_args() { return args; }
121
[b3b2077]122 static UntypedExpr * createDeref( Expression * arg );
123 static UntypedExpr * createAssign( Expression * arg1, Expression * arg2 );
124
[5ded739]125 virtual UntypedExpr * clone() const { return new UntypedExpr( * this ); }
126 virtual void accept( Visitor & v ) { v.visit( this ); }
127 virtual Expression * acceptMutator( Mutator & m ) { return m.mutate( this ); }
[50377a4]128 virtual void print( std::ostream & os, Indenter indent = {} ) const;
[51b73452]129};
130
[47534159]131/// NameExpr contains a name whose meaning is still not determined
[0dd3a2f]132class NameExpr : public Expression {
133 public:
[65cdc1e]134 std::string name;
135
[bf4b4cf]136 NameExpr( std::string name );
[5ded739]137 NameExpr( const NameExpr & other );
[0dd3a2f]138 virtual ~NameExpr();
139
[5ded739]140 const std::string & get_name() const { return name; }
[0dd3a2f]141 void set_name( std::string newValue ) { name = newValue; }
142
[5ded739]143 virtual NameExpr * clone() const { return new NameExpr( * this ); }
144 virtual void accept( Visitor & v ) { v.visit( this ); }
145 virtual Expression * acceptMutator( Mutator & m ) { return m.mutate( this ); }
[50377a4]146 virtual void print( std::ostream & os, Indenter indent = {} ) const;
[51b73452]147};
148
149// The following classes are used to represent expression types that cannot be converted into
150// function-call format.
151
[5ded739]152/// AddressExpr represents a address-of expression, e.g. & e
[0dd3a2f]153class AddressExpr : public Expression {
154 public:
[65cdc1e]155 Expression * arg;
156
[bf4b4cf]157 AddressExpr( Expression * arg );
[5ded739]158 AddressExpr( const AddressExpr & other );
[0dd3a2f]159 virtual ~AddressExpr();
160
[5ded739]161 Expression * get_arg() const { return arg; }
162 void set_arg(Expression * newValue ) { arg = newValue; }
[0dd3a2f]163
[5ded739]164 virtual AddressExpr * clone() const { return new AddressExpr( * this ); }
165 virtual void accept( Visitor & v ) { v.visit( this ); }
166 virtual Expression * acceptMutator( Mutator & m ) { return m.mutate( this ); }
[50377a4]167 virtual void print( std::ostream & os, Indenter indent = {} ) const;
[51b73452]168};
169
[5809461]170// GCC &&label
171// https://gcc.gnu.org/onlinedocs/gcc-3.4.2/gcc/Labels-as-Values.html
[0dd3a2f]172class LabelAddressExpr : public Expression {
173 public:
[5809461]174 Label arg;
[65cdc1e]175
[5809461]176 LabelAddressExpr( const Label &arg );
[5ded739]177 LabelAddressExpr( const LabelAddressExpr & other );
[0dd3a2f]178 virtual ~LabelAddressExpr();
179
[5ded739]180 virtual LabelAddressExpr * clone() const { return new LabelAddressExpr( * this ); }
181 virtual void accept( Visitor & v ) { v.visit( this ); }
182 virtual Expression * acceptMutator( Mutator & m ) { return m.mutate( this ); }
[50377a4]183 virtual void print( std::ostream & os, Indenter indent = {} ) const;
[51b73452]184};
185
[47534159]186/// CastExpr represents a type cast expression, e.g. (int)e
[0dd3a2f]187class CastExpr : public Expression {
188 public:
[65cdc1e]189 Expression * arg;
190
[bf4b4cf]191 CastExpr( Expression * arg );
192 CastExpr( Expression * arg, Type * toType );
[5ded739]193 CastExpr( const CastExpr & other );
[0dd3a2f]194 virtual ~CastExpr();
195
[5ded739]196 Expression * get_arg() const { return arg; }
[a5f0529]197 void set_arg( Expression * newValue ) { arg = newValue; }
[0dd3a2f]198
[5ded739]199 virtual CastExpr * clone() const { return new CastExpr( * this ); }
200 virtual void accept( Visitor & v ) { v.visit( this ); }
201 virtual Expression * acceptMutator( Mutator & m ) { return m.mutate( this ); }
[50377a4]202 virtual void print( std::ostream & os, Indenter indent = {} ) const;
[51b73452]203};
204
[a5f0529]205/// VirtualCastExpr repersents a virtual dynamic cast, e.g. (virtual exception)e
206class VirtualCastExpr : public Expression {
207 public:
[5ded739]208 Expression * arg;
[65cdc1e]209
[a5f0529]210 VirtualCastExpr( Expression * arg, Type * toType );
211 VirtualCastExpr( const VirtualCastExpr & other );
212 virtual ~VirtualCastExpr();
213
214 Expression * get_arg() const { return arg; }
215 void set_arg( Expression * newValue ) { arg = newValue; }
216
217 virtual VirtualCastExpr * clone() const { return new VirtualCastExpr( * this ); }
218 virtual void accept( Visitor & v ) { v.visit( this ); }
219 virtual Expression * acceptMutator( Mutator & m ) { return m.mutate( this ); }
[50377a4]220 virtual void print( std::ostream & os, Indenter indent = {} ) const;
[51b73452]221};
222
[47534159]223/// UntypedMemberExpr represents a member selection operation, e.g. q.p before processing by the expression analyzer
[0dd3a2f]224class UntypedMemberExpr : public Expression {
225 public:
[65cdc1e]226 Expression * member;
227 Expression * aggregate;
228
[bf4b4cf]229 UntypedMemberExpr( Expression * member, Expression * aggregate );
[5ded739]230 UntypedMemberExpr( const UntypedMemberExpr & other );
[0dd3a2f]231 virtual ~UntypedMemberExpr();
232
[3b58d91]233 Expression * get_member() const { return member; }
234 void set_member( Expression * newValue ) { member = newValue; }
[5ded739]235 Expression * get_aggregate() const { return aggregate; }
236 void set_aggregate( Expression * newValue ) { aggregate = newValue; }
[0dd3a2f]237
[5ded739]238 virtual UntypedMemberExpr * clone() const { return new UntypedMemberExpr( * this ); }
239 virtual void accept( Visitor & v ) { v.visit( this ); }
240 virtual Expression * acceptMutator( Mutator & m ) { return m.mutate( this ); }
[50377a4]241 virtual void print( std::ostream & os, Indenter indent = {} ) const;
[51b73452]242};
243
[4551a6e]244/// MemberExpr represents a member selection operation, e.g. q.p after processing by the expression analyzer.
245/// Does not take ownership of member.
[0dd3a2f]246class MemberExpr : public Expression {
247 public:
[65cdc1e]248 DeclarationWithType * member;
249 Expression * aggregate;
250
[bf4b4cf]251 MemberExpr( DeclarationWithType * member, Expression * aggregate );
[5ded739]252 MemberExpr( const MemberExpr & other );
[0dd3a2f]253 virtual ~MemberExpr();
254
[5ded739]255 DeclarationWithType * get_member() const { return member; }
256 void set_member( DeclarationWithType * newValue ) { member = newValue; }
257 Expression * get_aggregate() const { return aggregate; }
258 void set_aggregate( Expression * newValue ) { aggregate = newValue; }
[0dd3a2f]259
[5ded739]260 virtual MemberExpr * clone() const { return new MemberExpr( * this ); }
261 virtual void accept( Visitor & v ) { v.visit( this ); }
262 virtual Expression * acceptMutator( Mutator & m ) { return m.mutate( this ); }
[50377a4]263 virtual void print( std::ostream & os, Indenter indent = {} ) const;
[51b73452]264};
265
[4551a6e]266/// VariableExpr represents an expression that simply refers to the value of a named variable.
267/// Does not take ownership of var.
[0dd3a2f]268class VariableExpr : public Expression {
269 public:
[65cdc1e]270 DeclarationWithType * var;
271
[bf4b4cf]272 VariableExpr( DeclarationWithType * var );
[5ded739]273 VariableExpr( const VariableExpr & other );
[0dd3a2f]274 virtual ~VariableExpr();
275
[5ded739]276 DeclarationWithType * get_var() const { return var; }
277 void set_var( DeclarationWithType * newValue ) { var = newValue; }
[0dd3a2f]278
[8a6cf7e]279 static VariableExpr * functionPointer( FunctionDecl * decl );
280
[5ded739]281 virtual VariableExpr * clone() const { return new VariableExpr( * this ); }
282 virtual void accept( Visitor & v ) { v.visit( this ); }
283 virtual Expression * acceptMutator( Mutator & m ) { return m.mutate( this ); }
[50377a4]284 virtual void print( std::ostream & os, Indenter indent = {} ) const;
[51b73452]285};
286
[3be261a]287/// ConstantExpr represents an expression that simply refers to the value of a constant
[0dd3a2f]288class ConstantExpr : public Expression {
289 public:
[65cdc1e]290 Constant constant;
291
[bf4b4cf]292 ConstantExpr( Constant constant );
[5ded739]293 ConstantExpr( const ConstantExpr & other );
[0dd3a2f]294 virtual ~ConstantExpr();
295
[5ded739]296 Constant * get_constant() { return & constant; }
297 void set_constant( const Constant & newValue ) { constant = newValue; }
[0dd3a2f]298
[5ded739]299 virtual ConstantExpr * clone() const { return new ConstantExpr( * this ); }
300 virtual void accept( Visitor & v ) { v.visit( this ); }
301 virtual Expression * acceptMutator( Mutator & m ) { return m.mutate( this ); }
[50377a4]302 virtual void print( std::ostream & os, Indenter indent = {} ) const;
[51b73452]303};
304
[47534159]305/// SizeofExpr represents a sizeof expression (could be sizeof(int) or sizeof 3+4)
[0dd3a2f]306class SizeofExpr : public Expression {
307 public:
[65cdc1e]308 Expression * expr;
309 Type * type;
310 bool isType;
311
[bf4b4cf]312 SizeofExpr( Expression * expr );
[5ded739]313 SizeofExpr( const SizeofExpr & other );
[bf4b4cf]314 SizeofExpr( Type * type );
[0dd3a2f]315 virtual ~SizeofExpr();
316
[5ded739]317 Expression * get_expr() const { return expr; }
318 void set_expr( Expression * newValue ) { expr = newValue; }
319 Type * get_type() const { return type; }
320 void set_type( Type * newValue ) { type = newValue; }
[0dd3a2f]321 bool get_isType() const { return isType; }
322 void set_isType( bool newValue ) { isType = newValue; }
323
[5ded739]324 virtual SizeofExpr * clone() const { return new SizeofExpr( * this ); }
325 virtual void accept( Visitor & v ) { v.visit( this ); }
326 virtual Expression * acceptMutator( Mutator & m ) { return m.mutate( this ); }
[50377a4]327 virtual void print( std::ostream & os, Indenter indent = {} ) const;
[51b73452]328};
329
[47534159]330/// AlignofExpr represents an alignof expression
331class AlignofExpr : public Expression {
332 public:
[65cdc1e]333 Expression * expr;
334 Type * type;
335 bool isType;
336
[bf4b4cf]337 AlignofExpr( Expression * expr );
[5ded739]338 AlignofExpr( const AlignofExpr & other );
[bf4b4cf]339 AlignofExpr( Type * type );
[47534159]340 virtual ~AlignofExpr();
341
[5ded739]342 Expression * get_expr() const { return expr; }
343 void set_expr( Expression * newValue ) { expr = newValue; }
344 Type * get_type() const { return type; }
345 void set_type( Type * newValue ) { type = newValue; }
[47534159]346 bool get_isType() const { return isType; }
347 void set_isType( bool newValue ) { isType = newValue; }
348
[5ded739]349 virtual AlignofExpr * clone() const { return new AlignofExpr( * this ); }
350 virtual void accept( Visitor & v ) { v.visit( this ); }
351 virtual Expression * acceptMutator( Mutator & m ) { return m.mutate( this ); }
[50377a4]352 virtual void print( std::ostream & os, Indenter indent = {} ) const;
[47534159]353};
354
[2a4b088]355/// UntypedOffsetofExpr represents an offsetof expression before resolution
356class UntypedOffsetofExpr : public Expression {
357 public:
[65cdc1e]358 Type * type;
359 std::string member;
360
[bf4b4cf]361 UntypedOffsetofExpr( Type * type, const std::string & member );
[5ded739]362 UntypedOffsetofExpr( const UntypedOffsetofExpr & other );
[2a4b088]363 virtual ~UntypedOffsetofExpr();
364
365 std::string get_member() const { return member; }
[5ded739]366 void set_member( const std::string & newValue ) { member = newValue; }
367 Type * get_type() const { return type; }
368 void set_type( Type * newValue ) { type = newValue; }
369
370 virtual UntypedOffsetofExpr * clone() const { return new UntypedOffsetofExpr( * this ); }
371 virtual void accept( Visitor & v ) { v.visit( this ); }
372 virtual Expression * acceptMutator( Mutator & m ) { return m.mutate( this ); }
[50377a4]373 virtual void print( std::ostream & os, Indenter indent = {} ) const;
[2a4b088]374};
375
[25a054f]376/// OffsetofExpr represents an offsetof expression
377class OffsetofExpr : public Expression {
378 public:
[65cdc1e]379 Type * type;
380 DeclarationWithType * member;
381
[bf4b4cf]382 OffsetofExpr( Type * type, DeclarationWithType * member );
[5ded739]383 OffsetofExpr( const OffsetofExpr & other );
[25a054f]384 virtual ~OffsetofExpr();
385
[5ded739]386 Type * get_type() const { return type; }
387 void set_type( Type * newValue ) { type = newValue; }
388 DeclarationWithType * get_member() const { return member; }
389 void set_member( DeclarationWithType * newValue ) { member = newValue; }
390
391 virtual OffsetofExpr * clone() const { return new OffsetofExpr( * this ); }
392 virtual void accept( Visitor & v ) { v.visit( this ); }
393 virtual Expression * acceptMutator( Mutator & m ) { return m.mutate( this ); }
[50377a4]394 virtual void print( std::ostream & os, Indenter indent = {} ) const;
[25a054f]395};
396
[afc1045]397/// Expression representing a pack of field-offsets for a generic type
398class OffsetPackExpr : public Expression {
399public:
[65cdc1e]400 StructInstType * type;
401
[bf4b4cf]402 OffsetPackExpr( StructInstType * type );
[5ded739]403 OffsetPackExpr( const OffsetPackExpr & other );
[afc1045]404 virtual ~OffsetPackExpr();
405
[5ded739]406 StructInstType * get_type() const { return type; }
407 void set_type( StructInstType * newValue ) { type = newValue; }
[afc1045]408
[5ded739]409 virtual OffsetPackExpr * clone() const { return new OffsetPackExpr( * this ); }
410 virtual void accept( Visitor & v ) { v.visit( this ); }
411 virtual Expression * acceptMutator( Mutator & m ) { return m.mutate( this ); }
[50377a4]412 virtual void print( std::ostream & os, Indenter indent = {} ) const;
[afc1045]413};
414
[47534159]415/// AttrExpr represents an @attribute expression (like sizeof, but user-defined)
[0dd3a2f]416class AttrExpr : public Expression {
417 public:
[65cdc1e]418 Expression * attr;
419 Expression * expr;
420 Type * type;
421 bool isType;
422
[bf4b4cf]423 AttrExpr(Expression * attr, Expression * expr );
[5ded739]424 AttrExpr( const AttrExpr & other );
[bf4b4cf]425 AttrExpr( Expression * attr, Type * type );
[0dd3a2f]426 virtual ~AttrExpr();
427
[5ded739]428 Expression * get_attr() const { return attr; }
429 void set_attr( Expression * newValue ) { attr = newValue; }
430 Expression * get_expr() const { return expr; }
431 void set_expr( Expression * newValue ) { expr = newValue; }
432 Type * get_type() const { return type; }
433 void set_type( Type * newValue ) { type = newValue; }
[0dd3a2f]434 bool get_isType() const { return isType; }
435 void set_isType( bool newValue ) { isType = newValue; }
436
[5ded739]437 virtual AttrExpr * clone() const { return new AttrExpr( * this ); }
438 virtual void accept( Visitor & v ) { v.visit( this ); }
439 virtual Expression * acceptMutator( Mutator & m ) { return m.mutate( this ); }
[50377a4]440 virtual void print( std::ostream & os, Indenter indent = {} ) const;
[51b73452]441};
442
[47534159]443/// LogicalExpr represents a short-circuit boolean expression (&& or ||)
[0dd3a2f]444class LogicalExpr : public Expression {
445 public:
[65cdc1e]446 Expression * arg1;
447 Expression * arg2;
448
[bf4b4cf]449 LogicalExpr( Expression * arg1, Expression * arg2, bool andp = true );
[5ded739]450 LogicalExpr( const LogicalExpr & other );
[0dd3a2f]451 virtual ~LogicalExpr();
452
453 bool get_isAnd() const { return isAnd; }
[5ded739]454 Expression * get_arg1() { return arg1; }
455 void set_arg1( Expression * newValue ) { arg1 = newValue; }
456 Expression * get_arg2() const { return arg2; }
457 void set_arg2( Expression * newValue ) { arg2 = newValue; }
458
459 virtual LogicalExpr * clone() const { return new LogicalExpr( * this ); }
460 virtual void accept( Visitor & v ) { v.visit( this ); }
461 virtual Expression * acceptMutator( Mutator & m ) { return m.mutate( this ); }
[50377a4]462 virtual void print( std::ostream & os, Indenter indent = {} ) const;
[65cdc1e]463
[0dd3a2f]464 private:
465 bool isAnd;
[51b73452]466};
467
[47534159]468/// ConditionalExpr represents the three-argument conditional ( p ? a : b )
[0dd3a2f]469class ConditionalExpr : public Expression {
470 public:
[65cdc1e]471 Expression * arg1;
472 Expression * arg2;
473 Expression * arg3;
474
[bf4b4cf]475 ConditionalExpr( Expression * arg1, Expression * arg2, Expression * arg3 );
[5ded739]476 ConditionalExpr( const ConditionalExpr & other );
[0dd3a2f]477 virtual ~ConditionalExpr();
478
[5ded739]479 Expression * get_arg1() const { return arg1; }
480 void set_arg1( Expression * newValue ) { arg1 = newValue; }
481 Expression * get_arg2() const { return arg2; }
482 void set_arg2( Expression * newValue ) { arg2 = newValue; }
483 Expression * get_arg3() const { return arg3; }
484 void set_arg3( Expression * newValue ) { arg3 = newValue; }
485
486 virtual ConditionalExpr * clone() const { return new ConditionalExpr( * this ); }
487 virtual void accept( Visitor & v ) { v.visit( this ); }
488 virtual Expression * acceptMutator( Mutator & m ) { return m.mutate( this ); }
[50377a4]489 virtual void print( std::ostream & os, Indenter indent = {} ) const;
[51b73452]490};
491
[47534159]492/// CommaExpr represents the sequence operator ( a, b )
[0dd3a2f]493class CommaExpr : public Expression {
494 public:
[65cdc1e]495 Expression * arg1;
496 Expression * arg2;
497
[bf4b4cf]498 CommaExpr( Expression * arg1, Expression * arg2 );
[5ded739]499 CommaExpr( const CommaExpr & other );
[0dd3a2f]500 virtual ~CommaExpr();
501
[5ded739]502 Expression * get_arg1() const { return arg1; }
503 void set_arg1( Expression * newValue ) { arg1 = newValue; }
504 Expression * get_arg2() const { return arg2; }
505 void set_arg2( Expression * newValue ) { arg2 = newValue; }
[0dd3a2f]506
[5ded739]507 virtual CommaExpr * clone() const { return new CommaExpr( * this ); }
508 virtual void accept( Visitor & v ) { v.visit( this ); }
509 virtual Expression * acceptMutator( Mutator & m ) { return m.mutate( this ); }
[50377a4]510 virtual void print( std::ostream & os, Indenter indent = {} ) const;
[51b73452]511};
512
[47534159]513/// TypeExpr represents a type used in an expression (e.g. as a type generator parameter)
[0dd3a2f]514class TypeExpr : public Expression {
515 public:
[65cdc1e]516 Type * type;
517
[5ded739]518 TypeExpr( Type * type );
519 TypeExpr( const TypeExpr & other );
[0dd3a2f]520 virtual ~TypeExpr();
521
[5ded739]522 Type * get_type() const { return type; }
523 void set_type( Type * newValue ) { type = newValue; }
[0dd3a2f]524
[5ded739]525 virtual TypeExpr * clone() const { return new TypeExpr( * this ); }
526 virtual void accept( Visitor & v ) { v.visit( this ); }
527 virtual Expression * acceptMutator( Mutator & m ) { return m.mutate( this ); }
[50377a4]528 virtual void print( std::ostream & os, Indenter indent = {} ) const;
[51b73452]529};
530
[47534159]531/// AsmExpr represents a GCC 'asm constraint operand' used in an asm statement: [output] "=f" (result)
[7f5566b]532class AsmExpr : public Expression {
533 public:
[65cdc1e]534 Expression * inout;
[e612146c]535 Expression * constraint;
[65cdc1e]536 Expression * operand;
537
[e612146c]538 AsmExpr( Expression * inout, Expression * constraint, Expression * operand ) : inout( inout ), constraint( constraint ), operand( operand ) {}
[3be261a]539 AsmExpr( const AsmExpr & other );
[7f5566b]540 virtual ~AsmExpr() { delete inout; delete constraint; delete operand; };
541
[5ded739]542 Expression * get_inout() const { return inout; }
543 void set_inout( Expression * newValue ) { inout = newValue; }
[7f5566b]544
[e612146c]545 Expression * get_constraint() const { return constraint; }
546 void set_constraint( Expression * newValue ) { constraint = newValue; }
[7f5566b]547
[5ded739]548 Expression * get_operand() const { return operand; }
549 void set_operand( Expression * newValue ) { operand = newValue; }
[7f5566b]550
[5ded739]551 virtual AsmExpr * clone() const { return new AsmExpr( * this ); }
552 virtual void accept( Visitor & v ) { v.visit( this ); }
553 virtual Expression * acceptMutator( Mutator & m ) { return m.mutate( this ); }
[50377a4]554 virtual void print( std::ostream & os, Indenter indent = {} ) const;
[65cdc1e]555
[7f5566b]556 // https://gcc.gnu.org/onlinedocs/gcc-4.7.1/gcc/Machine-Constraints.html#Machine-Constraints
557};
558
[db4ecc5]559/// ImplicitCopyCtorExpr represents the application of a function to a set of parameters,
560/// along with a set of copy constructor calls, one for each argument.
561class ImplicitCopyCtorExpr : public Expression {
562public:
[65cdc1e]563 ApplicationExpr * callExpr;
564 std::list< ObjectDecl * > tempDecls;
565 std::list< ObjectDecl * > returnDecls;
566 std::list< Expression * > dtors;
567
[db4ecc5]568 ImplicitCopyCtorExpr( ApplicationExpr * callExpr );
569 ImplicitCopyCtorExpr( const ImplicitCopyCtorExpr & other );
570 virtual ~ImplicitCopyCtorExpr();
571
[5ded739]572 ApplicationExpr * get_callExpr() const { return callExpr; }
573 void set_callExpr( ApplicationExpr * newValue ) { callExpr = newValue; }
[db4ecc5]574
575 std::list< ObjectDecl * > & get_tempDecls() { return tempDecls; }
576 std::list< ObjectDecl * > & get_returnDecls() { return returnDecls; }
577 std::list< Expression * > & get_dtors() { return dtors; }
578
[5ded739]579 virtual ImplicitCopyCtorExpr * clone() const { return new ImplicitCopyCtorExpr( * this ); }
580 virtual void accept( Visitor & v ) { v.visit( this ); }
581 virtual Expression * acceptMutator( Mutator & m ) { return m.mutate( this ); }
[50377a4]582 virtual void print( std::ostream & os, Indenter indent = {} ) const;
[db4ecc5]583};
584
[b6fe7e6]585/// ConstructorExpr represents the use of a constructor in an expression context, e.g. int * x = malloc() { 5 };
586class ConstructorExpr : public Expression {
587public:
[65cdc1e]588 Expression * callExpr;
589
[b6fe7e6]590 ConstructorExpr( Expression * callExpr );
591 ConstructorExpr( const ConstructorExpr & other );
592 ~ConstructorExpr();
[0dd3a2f]593
[5ded739]594 Expression * get_callExpr() const { return callExpr; }
595 void set_callExpr( Expression * newValue ) { callExpr = newValue; }
[0dd3a2f]596
[5ded739]597 virtual ConstructorExpr * clone() const { return new ConstructorExpr( * this ); }
598 virtual void accept( Visitor & v ) { v.visit( this ); }
599 virtual Expression * acceptMutator( Mutator & m ) { return m.mutate( this ); }
[50377a4]600 virtual void print( std::ostream & os, Indenter indent = {} ) const;
[51b73452]601};
602
[630a82a]603/// CompoundLiteralExpr represents a C99 'compound literal'
604class CompoundLiteralExpr : public Expression {
605 public:
[65cdc1e]606 Initializer * initializer;
607
[630a82a]608 CompoundLiteralExpr( Type * type, Initializer * initializer );
[5ded739]609 CompoundLiteralExpr( const CompoundLiteralExpr & other );
[3b58d91]610 virtual ~CompoundLiteralExpr();
[630a82a]611
612 Initializer * get_initializer() const { return initializer; }
613 void set_initializer( Initializer * i ) { initializer = i; }
614
[5ded739]615 virtual CompoundLiteralExpr * clone() const { return new CompoundLiteralExpr( * this ); }
616 virtual void accept( Visitor & v ) { v.visit( this ); }
617 virtual Expression * acceptMutator( Mutator & m ) { return m.mutate( this ); }
[50377a4]618 virtual void print( std::ostream & os, Indenter indent = {} ) const;
[630a82a]619};
620
[b6fe7e6]621/// RangeExpr represents a range e.g. '3 ... 5' or '1~10'
[8688ce1]622class RangeExpr : public Expression {
623 public:
[65cdc1e]624 Expression * low, * high;
625
[5ded739]626 RangeExpr( Expression * low, Expression * high );
627 RangeExpr( const RangeExpr & other );
[8688ce1]628
[d9e2280]629 Expression * get_low() const { return low; }
630 Expression * get_high() const { return high; }
[5ded739]631 RangeExpr * set_low( Expression * low ) { RangeExpr::low = low; return this; }
632 RangeExpr * set_high( Expression * high ) { RangeExpr::high = high; return this; }
[8688ce1]633
[5ded739]634 virtual RangeExpr * clone() const { return new RangeExpr( * this ); }
635 virtual void accept( Visitor & v ) { v.visit( this ); }
636 virtual Expression * acceptMutator( Mutator & m ) { return m.mutate( this ); }
[50377a4]637 virtual void print( std::ostream & os, Indenter indent = {} ) const;
[8688ce1]638};
639
[907eccb]640/// UntypedTupleExpr represents a tuple expression ( [a, b, c] ) before resolution
641class UntypedTupleExpr : public Expression {
642 public:
[65cdc1e]643 std::list<Expression*> exprs;
644
[bf4b4cf]645 UntypedTupleExpr( const std::list< Expression * > & exprs );
[5ded739]646 UntypedTupleExpr( const UntypedTupleExpr & other );
[907eccb]647 virtual ~UntypedTupleExpr();
648
649 std::list<Expression*>& get_exprs() { return exprs; }
650
[5ded739]651 virtual UntypedTupleExpr * clone() const { return new UntypedTupleExpr( * this ); }
652 virtual void accept( Visitor & v ) { v.visit( this ); }
653 virtual Expression * acceptMutator( Mutator & m ) { return m.mutate( this ); }
[50377a4]654 virtual void print( std::ostream & os, Indenter indent = {} ) const;
[907eccb]655};
656
[6eb8948]657/// TupleExpr represents a tuple expression ( [a, b, c] )
658class TupleExpr : public Expression {
659 public:
[65cdc1e]660 std::list<Expression*> exprs;
661
[bf4b4cf]662 TupleExpr( const std::list< Expression * > & exprs );
[5ded739]663 TupleExpr( const TupleExpr & other );
[6eb8948]664 virtual ~TupleExpr();
665
666 std::list<Expression*>& get_exprs() { return exprs; }
667
[5ded739]668 virtual TupleExpr * clone() const { return new TupleExpr( * this ); }
669 virtual void accept( Visitor & v ) { v.visit( this ); }
670 virtual Expression * acceptMutator( Mutator & m ) { return m.mutate( this ); }
[50377a4]671 virtual void print( std::ostream & os, Indenter indent = {} ) const;
[6eb8948]672};
673
[3b58d91]674/// TupleIndexExpr represents an element selection operation on a tuple value, e.g. t.3 after processing by the expression analyzer
675class TupleIndexExpr : public Expression {
676 public:
[65cdc1e]677 Expression * tuple;
678 unsigned int index;
679
[3b58d91]680 TupleIndexExpr( Expression * tuple, unsigned int index );
[5ded739]681 TupleIndexExpr( const TupleIndexExpr & other );
[3b58d91]682 virtual ~TupleIndexExpr();
683
684 Expression * get_tuple() const { return tuple; }
685 int get_index() const { return index; }
[5ded739]686 TupleIndexExpr * set_tuple( Expression * newValue ) { tuple = newValue; return this; }
[3b58d91]687 TupleIndexExpr * set_index( unsigned int newValue ) { index = newValue; return this; }
688
[5ded739]689 virtual TupleIndexExpr * clone() const { return new TupleIndexExpr( * this ); }
690 virtual void accept( Visitor & v ) { v.visit( this ); }
691 virtual Expression * acceptMutator( Mutator & m ) { return m.mutate( this ); }
[50377a4]692 virtual void print( std::ostream & os, Indenter indent = {} ) const;
[3b58d91]693};
694
[65660bd]695/// TupleAssignExpr represents a multiple assignment operation, where both sides of the assignment have tuple type, e.g. [a, b, c] = [d, e, f];, a mass assignment operation, where the left hand side has tuple type and the right hand side does not, e.g. [a, b, c] = 5.0;, or a tuple ctor/dtor expression
[6eb8948]696class TupleAssignExpr : public Expression {
[3b58d91]697 public:
[65cdc1e]698 StmtExpr * stmtExpr = nullptr;
699
[bf4b4cf]700 TupleAssignExpr( const std::list< Expression * > & assigns, const std::list< ObjectDecl * > & tempDecls );
[5ded739]701 TupleAssignExpr( const TupleAssignExpr & other );
[6eb8948]702 virtual ~TupleAssignExpr();
[3b58d91]703
[d5556a3]704 TupleAssignExpr * set_stmtExpr( StmtExpr * newValue ) { stmtExpr = newValue; return this; }
705 StmtExpr * get_stmtExpr() const { return stmtExpr; }
[3b58d91]706
[5ded739]707 virtual TupleAssignExpr * clone() const { return new TupleAssignExpr( * this ); }
708 virtual void accept( Visitor & v ) { v.visit( this ); }
709 virtual Expression * acceptMutator( Mutator & m ) { return m.mutate( this ); }
[50377a4]710 virtual void print( std::ostream & os, Indenter indent = {} ) const;
[3b58d91]711};
712
[6eb8948]713/// StmtExpr represents a GCC 'statement expression', e.g. ({ int x = 5; x; })
714class StmtExpr : public Expression {
715public:
[65cdc1e]716 CompoundStmt * statements;
717 std::list< ObjectDecl * > returnDecls; // return variable(s) for stmt expression
718 std::list< Expression * > dtors; // destructor(s) for return variable(s)
719
[5ded739]720 StmtExpr( CompoundStmt * statements );
[6eb8948]721 StmtExpr( const StmtExpr & other );
722 virtual ~StmtExpr();
[3b58d91]723
[6eb8948]724 CompoundStmt * get_statements() const { return statements; }
725 StmtExpr * set_statements( CompoundStmt * newValue ) { statements = newValue; return this; }
[3b58d91]726
[d5556a3]727 std::list< ObjectDecl * > & get_returnDecls() { return returnDecls; }
728 std::list< Expression * > & get_dtors() { return dtors; }
729
[5ded739]730 virtual StmtExpr * clone() const { return new StmtExpr( * this ); }
731 virtual void accept( Visitor & v ) { v.visit( this ); }
732 virtual Expression * acceptMutator( Mutator & m ) { return m.mutate( this ); }
[50377a4]733 virtual void print( std::ostream & os, Indenter indent = {} ) const;
[3b58d91]734};
735
[3c13c03]736class UniqueExpr : public Expression {
737public:
[65cdc1e]738 Expression * expr;
739 ObjectDecl * object;
740 VariableExpr * var;
741
[bf32bb8]742 UniqueExpr( Expression * expr, long long idVal = -1 );
[3c13c03]743 UniqueExpr( const UniqueExpr & other );
744 ~UniqueExpr();
745
[141b786]746 Expression * get_expr() const { return expr; }
747 UniqueExpr * set_expr( Expression * newValue ) { expr = newValue; return this; }
[3c13c03]748
[141b786]749 ObjectDecl * get_object() const { return object; }
750 UniqueExpr * set_object( ObjectDecl * newValue ) { object = newValue; return this; }
751
752 VariableExpr * get_var() const { return var; }
753 UniqueExpr * set_var( VariableExpr * newValue ) { var = newValue; return this; }
[77971f6]754
[bf32bb8]755 int get_id() const { return id; }
756
[5ded739]757 virtual UniqueExpr * clone() const { return new UniqueExpr( * this ); }
758 virtual void accept( Visitor & v ) { v.visit( this ); }
759 virtual Expression * acceptMutator( Mutator & m ) { return m.mutate( this ); }
[50377a4]760 virtual void print( std::ostream & os, Indenter indent = {} ) const;
[65cdc1e]761
[3c13c03]762private:
[bf32bb8]763 int id;
764 static long long count;
[3c13c03]765};
766
[e4d829b]767struct InitAlternative {
768public:
769 Type * type = nullptr;
770 Designation * designation = nullptr;
771 InitAlternative( Type * type, Designation * designation );
772 InitAlternative( const InitAlternative & other );
773 InitAlternative & operator=( const Initializer & other ) = delete; // at the moment this isn't used, and I don't want to implement it
774 ~InitAlternative();
775};
776
777class UntypedInitExpr : public Expression {
778public:
[65cdc1e]779 Expression * expr;
780 std::list<InitAlternative> initAlts;
781
[e4d829b]782 UntypedInitExpr( Expression * expr, const std::list<InitAlternative> & initAlts );
783 UntypedInitExpr( const UntypedInitExpr & other );
784 ~UntypedInitExpr();
785
786 Expression * get_expr() const { return expr; }
787 UntypedInitExpr * set_expr( Expression * newValue ) { expr = newValue; return this; }
788
789 std::list<InitAlternative> & get_initAlts() { return initAlts; }
790
791 virtual UntypedInitExpr * clone() const { return new UntypedInitExpr( * this ); }
792 virtual void accept( Visitor & v ) { v.visit( this ); }
793 virtual Expression * acceptMutator( Mutator & m ) { return m.mutate( this ); }
[50377a4]794 virtual void print( std::ostream & os, Indenter indent = {} ) const;
[e4d829b]795};
796
797class InitExpr : public Expression {
798public:
[65cdc1e]799 Expression * expr;
800 Designation * designation;
801
[62423350]802 InitExpr( Expression * expr, Designation * designation );
[e4d829b]803 InitExpr( const InitExpr & other );
804 ~InitExpr();
805
806 Expression * get_expr() const { return expr; }
807 InitExpr * set_expr( Expression * newValue ) { expr = newValue; return this; }
808
809 Designation * get_designation() const { return designation; }
810 InitExpr * set_designation( Designation * newValue ) { designation = newValue; return this; }
811
812 virtual InitExpr * clone() const { return new InitExpr( * this ); }
813 virtual void accept( Visitor & v ) { v.visit( this ); }
814 virtual Expression * acceptMutator( Mutator & m ) { return m.mutate( this ); }
[50377a4]815 virtual void print( std::ostream & os, Indenter indent = {} ) const;
[e4d829b]816};
817
[0dd3a2f]818// Local Variables: //
819// tab-width: 4 //
820// mode: c++ //
821// compile-command: "make install" //
822// End: //
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