source: src/AST/Expr.hpp@ 3f37f5b

Last change on this file since 3f37f5b was d1fbc56e, checked in by Andrew Beach <ajbeach@…>, 14 months ago

Removed two lingering set_extension functions from ast. There was one use each in the parser, which uses get/set functions still.

  • Property mode set to 100644
File size: 28.4 KB
Line 
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// Expr.hpp --
8//
9// Author : Aaron B. Moss
10// Created On : Fri May 10 10:30:00 2019
11// Last Modified By : Peter A. Buhr
12// Created On : Fri May 10 10:30:00 2019
13// Update Count : 8
14//
15
16#pragma once
17
18#include <cassert>
19#include <deque>
20#include <map>
21#include <string>
22#include <utility> // for move
23#include <vector>
24#include <optional>
25
26#include "Fwd.hpp" // for UniqueId
27#include "Label.hpp"
28#include "Decl.hpp"
29#include "ParseNode.hpp"
30#include "Visitor.hpp"
31
32// Must be included in *all* AST classes; should be #undef'd at the end of the file
33#define MUTATE_FRIEND \
34 template<typename node_t> friend node_t * mutate(const node_t * node); \
35 template<typename node_t> friend node_t * shallowCopy(const node_t * node);
36
37namespace ast {
38
39/// Contains the ID of a declaration and a type that is derived from that declaration,
40/// but subject to decay-to-pointer and type parameter renaming
41struct ParamEntry {
42 UniqueId decl;
43 readonly<Decl> declptr;
44 ptr<Type> actualType;
45 ptr<Type> formalType;
46 ptr<Expr> expr;
47
48 ParamEntry() : decl( 0 ), declptr( nullptr ), actualType( nullptr ), formalType( nullptr ), expr( nullptr ) {}
49 ParamEntry(
50 UniqueId id, const Decl * declptr, const Type * actual, const Type * formal,
51 const Expr * e )
52 : decl( id ), declptr( declptr ), actualType( actual ), formalType( formal ), expr( e ) {}
53
54 operator bool() {return declptr;}
55};
56
57/// Pre-resolution list of parameters to infer
58using ResnSlots = std::vector<UniqueId>;
59/// Post-resolution map of inferred parameters
60using InferredParams = std::map< UniqueId, ParamEntry >;
61
62/// Base node for expressions
63class Expr : public ParseNode {
64public:
65 /*
66 * NOTE: the union approach is incorrect until the case of
67 * partial resolution in InferMatcher is eliminated.
68 * it is reverted to allow unresolved and resolved parameters
69 * to coexist in an expression node.
70 */
71 struct InferUnion {
72 // mode is now unused
73 enum { Empty, Slots, Params } mode;
74 struct data_t {
75 // char def;
76 ResnSlots * resnSlots;
77 InferredParams * inferParams;
78
79 data_t(): resnSlots(nullptr), inferParams(nullptr) {}
80 data_t(const data_t &other) = delete;
81 ~data_t() {
82 delete resnSlots;
83 delete inferParams;
84 }
85 } data;
86
87 /// initializes from other InferUnion
88 void init_from( const InferUnion & o ) {
89 if (o.data.resnSlots) {
90 data.resnSlots = new ResnSlots(*o.data.resnSlots);
91 }
92 if (o.data.inferParams) {
93 data.inferParams = new InferredParams(*o.data.inferParams);
94 }
95 }
96
97 /// initializes from other InferUnion (move semantics)
98 void init_from( InferUnion && o ) {
99 data.resnSlots = o.data.resnSlots;
100 data.inferParams = o.data.inferParams;
101 o.data.resnSlots = nullptr;
102 o.data.inferParams = nullptr;
103 }
104
105 InferUnion() : mode(Empty), data() {}
106 InferUnion( const InferUnion & o ) : mode( o.mode ), data() { init_from( o ); }
107 InferUnion( InferUnion && o ) : mode( o.mode ), data() { init_from( std::move(o) ); }
108 InferUnion & operator= ( const InferUnion & ) = delete;
109 InferUnion & operator= ( InferUnion && ) = delete;
110
111 bool hasSlots() const { return data.resnSlots; }
112 bool hasParams() const { return data.inferParams; }
113
114 ResnSlots & resnSlots() {
115 if (!data.resnSlots) {
116 data.resnSlots = new ResnSlots();
117 }
118 return *data.resnSlots;
119 }
120
121 const ResnSlots & resnSlots() const {
122 if (data.resnSlots) {
123 return *data.resnSlots;
124 }
125 assertf(false, "Mode was not already resnSlots");
126 abort();
127 }
128
129 InferredParams & inferParams() {
130 if (!data.inferParams) {
131 data.inferParams = new InferredParams();
132 }
133 return *data.inferParams;
134 }
135
136 const InferredParams & inferParams() const {
137 if (data.inferParams) {
138 return *data.inferParams;
139 }
140 assertf(false, "Mode was not already Params");
141 abort();
142 }
143
144 void set_inferParams( InferredParams * ps ) {
145 delete data.resnSlots;
146 data.resnSlots = nullptr;
147 delete data.inferParams;
148 data.inferParams = ps;
149 }
150
151 /// splices other InferUnion into this one. Will fail if one union is in `Slots` mode
152 /// and the other is in `Params`.
153 void splice( InferUnion && o ) {
154 if (o.data.resnSlots) {
155 if (data.resnSlots) {
156 data.resnSlots->insert(
157 data.resnSlots->end(), o.data.resnSlots->begin(), o.data.resnSlots->end() );
158 delete o.data.resnSlots;
159 }
160 else {
161 data.resnSlots = o.data.resnSlots;
162 }
163 o.data.resnSlots = nullptr;
164 }
165
166 if (o.data.inferParams) {
167 if (data.inferParams) {
168 for ( const auto & p : *o.data.inferParams ) {
169 (*data.inferParams)[p.first] = std::move(p.second);
170 }
171 delete o.data.inferParams;
172 }
173 else {
174 data.inferParams = o.data.inferParams;
175 }
176 o.data.inferParams = nullptr;
177 }
178 }
179 };
180
181 ptr<Type> result;
182 ptr<TypeSubstitution> env;
183 InferUnion inferred;
184 bool extension = false;
185
186 Expr( const CodeLocation & loc, const Type * res = nullptr )
187 : ParseNode( loc ), result( res ), env(), inferred() {}
188
189 virtual bool get_lvalue() const;
190
191 virtual const Expr * accept( Visitor & v ) const override = 0;
192private:
193 Expr * clone() const override = 0;
194 MUTATE_FRIEND
195};
196
197/// The application of a function to a set of parameters.
198/// Post-resolver form of `UntypedExpr`
199class ApplicationExpr final : public Expr {
200public:
201 ptr<Expr> func;
202 std::vector<ptr<Expr>> args;
203
204 ApplicationExpr( const CodeLocation & loc, const Expr * f, std::vector<ptr<Expr>> && as = {} );
205
206 bool get_lvalue() const final;
207
208 const Expr * accept( Visitor & v ) const override { return v.visit( this ); }
209private:
210 ApplicationExpr * clone() const override { return new ApplicationExpr{ *this }; }
211 MUTATE_FRIEND
212};
213
214/// The application of a function to a set of parameters, pre-overload resolution.
215class UntypedExpr final : public Expr {
216public:
217 ptr<Expr> func;
218 std::vector<ptr<Expr>> args;
219
220 UntypedExpr( const CodeLocation & loc, const Expr * f, std::vector<ptr<Expr>> && as = {} )
221 : Expr( loc ), func( f ), args( std::move(as) ) {}
222
223 bool get_lvalue() const final;
224
225 /// Creates a new dereference expression
226 static UntypedExpr * createDeref( const CodeLocation & loc, const Expr * arg );
227 /// Creates a new assignment expression
228 static UntypedExpr * createAssign( const CodeLocation & loc, const Expr * lhs, const Expr * rhs );
229 /// Creates a new call of a variable.
230 static UntypedExpr * createCall( const CodeLocation & loc,
231 const std::string & name, std::vector<ptr<Expr>> && args );
232
233 const Expr * accept( Visitor & v ) const override { return v.visit( this ); }
234private:
235 UntypedExpr * clone() const override { return new UntypedExpr{ *this }; }
236 MUTATE_FRIEND
237};
238
239/// A name whose name is as-yet undetermined.
240/// May also be used to avoid name mangling in codegen phase.
241class NameExpr final : public Expr {
242public:
243 std::string name;
244
245 NameExpr( const CodeLocation & loc, const std::string & n ) : Expr( loc ), name( n ) {}
246
247 const Expr * accept( Visitor & v ) const override { return v.visit( this ); }
248private:
249 NameExpr * clone() const override { return new NameExpr{ *this }; }
250 MUTATE_FRIEND
251};
252
253/// A name qualified by a namespace or type.
254class QualifiedNameExpr final : public Expr {
255public:
256 ptr<Decl> type_decl;
257 const std::string type_name;
258 const std::string name;
259
260 QualifiedNameExpr( const CodeLocation & loc, const Decl * d, const std::string & n )
261 : Expr( loc ), type_decl( d ), type_name(""), name( n ) {}
262
263 QualifiedNameExpr( const CodeLocation & loc, const std::string & type_name, const std::string & name)
264 : Expr( loc ), type_name( type_name ), name( name ) {}
265
266 const Expr * accept( Visitor & v ) const override { return v.visit( this ); }
267private:
268 QualifiedNameExpr * clone() const override { return new QualifiedNameExpr{ *this }; }
269 MUTATE_FRIEND
270};
271
272/// A reference to a named variable.
273class VariableExpr final : public Expr {
274public:
275 readonly<DeclWithType> var;
276
277 VariableExpr( const CodeLocation & loc );
278 VariableExpr( const CodeLocation & loc, const DeclWithType * v );
279
280 bool get_lvalue() const final;
281
282 /// generates a function pointer for a given function
283 static VariableExpr * functionPointer( const CodeLocation & loc, const FunctionDecl * decl );
284
285 const Expr * accept( Visitor & v ) const override { return v.visit( this ); }
286private:
287 VariableExpr * clone() const override { return new VariableExpr{ *this }; }
288 MUTATE_FRIEND
289};
290
291/// Address-of expression `&e`
292class AddressExpr final : public Expr {
293public:
294 ptr<Expr> arg;
295
296 AddressExpr( const CodeLocation & loc, const Expr * a );
297
298 /// Generate AddressExpr wrapping given expression at same location
299 AddressExpr( const Expr * a ) : AddressExpr( a->location, a ) {}
300
301 const Expr * accept( Visitor & v ) const override { return v.visit( this ); }
302private:
303 AddressExpr * clone() const override { return new AddressExpr{ *this }; }
304 MUTATE_FRIEND
305};
306
307/// GCC &&label
308/// https://gcc.gnu.org/onlinedocs/gcc-3.4.2/gcc/Labels-as-Values.html
309class LabelAddressExpr final : public Expr {
310public:
311 Label arg;
312
313 LabelAddressExpr( const CodeLocation & loc, Label && a );
314
315 const Expr * accept( Visitor & v ) const override { return v.visit( this ); }
316private:
317 LabelAddressExpr * clone() const override { return new LabelAddressExpr{ *this }; }
318 MUTATE_FRIEND
319};
320
321/// Inidicates whether the cast is introduced by the CFA type system.
322/// GeneratedCast for casts that the resolver introduces to force a return type
323/// ExplicitCast for casts from user code
324/// ExplicitCast for casts from desugaring advanced CFA features into simpler CFA
325/// example
326/// int * p; // declaration
327/// (float *) p; // use, with subject cast
328/// subject cast being GeneratedCast means we are considering an interpretation with a type mismatch
329/// subject cast being ExplicitCast means someone in charge wants it that way
330enum GeneratedFlag { ExplicitCast, GeneratedCast };
331
332/// A type cast, e.g. `(int)e`
333class CastExpr final : public Expr {
334public:
335 ptr<Expr> arg;
336 GeneratedFlag isGenerated;
337
338 enum CastKind {
339 Default, // C
340 Coerce, // reinterpret cast
341 Return // overload selection
342 };
343
344 CastKind kind = Default;
345
346 CastExpr( const CodeLocation & loc, const Expr * a, const Type * to,
347 GeneratedFlag g = GeneratedCast, CastKind kind = Default ) : Expr( loc, to ), arg( a ), isGenerated( g ), kind( kind ) {}
348 /// Cast-to-void
349 CastExpr( const CodeLocation & loc, const Expr * a, GeneratedFlag g = GeneratedCast, CastKind kind = Default );
350
351 /// Wrap a cast expression around an existing expression (always generated)
352 CastExpr( const Expr * a, const Type * to ) : CastExpr( a->location, a, to, GeneratedCast ) {}
353
354 /// Wrap a cast-to-void expression around an existing expression (always generated)
355 CastExpr( const Expr * a ) : CastExpr( a->location, a, GeneratedCast ) {}
356
357 bool get_lvalue() const final;
358
359 const Expr * accept( Visitor & v ) const override { return v.visit( this ); }
360private:
361 CastExpr * clone() const override { return new CastExpr{ *this }; }
362 MUTATE_FRIEND
363};
364
365/// A cast to "keyword types", e.g. `(thread &)t`
366class KeywordCastExpr final : public Expr {
367public:
368 ptr<Expr> arg;
369 struct Concrete {
370 std::string field;
371 std::string getter;
372
373 Concrete() = default;
374 Concrete(const Concrete &) = default;
375 };
376 ast::AggregateDecl::Aggregate target;
377 Concrete concrete_target;
378
379
380 KeywordCastExpr( const CodeLocation & loc, const Expr * a, ast::AggregateDecl::Aggregate t )
381 : Expr( loc ), arg( a ), target( t ) {}
382
383 KeywordCastExpr( const CodeLocation & loc, const Expr * a, ast::AggregateDecl::Aggregate t, const Concrete & ct )
384 : Expr( loc ), arg( a ), target( t ), concrete_target( ct ) {}
385
386 /// Get a name for the target type
387 const char * targetString() const;
388
389 const Expr * accept( Visitor & v ) const override { return v.visit( this ); }
390private:
391 KeywordCastExpr * clone() const override { return new KeywordCastExpr{ *this }; }
392 MUTATE_FRIEND
393};
394
395/// A virtual dynamic cast, e.g. `(virtual exception)e`
396class VirtualCastExpr final : public Expr {
397public:
398 ptr<Expr> arg;
399
400 VirtualCastExpr( const CodeLocation & loc, const Expr * a, const Type * to )
401 : Expr( loc, to ), arg( a ) {}
402
403 const Expr * accept( Visitor & v ) const override { return v.visit( this ); }
404private:
405 VirtualCastExpr * clone() const override { return new VirtualCastExpr{ *this }; }
406 MUTATE_FRIEND
407};
408
409/// A member selection operation before expression resolution, e.g. `q.p`
410class UntypedMemberExpr final : public Expr {
411public:
412 ptr<Expr> member;
413 ptr<Expr> aggregate;
414
415 UntypedMemberExpr( const CodeLocation & loc, const Expr * mem, const Expr * agg )
416 : Expr( loc ), member( mem ), aggregate( agg ) { assert( aggregate ); }
417
418 bool get_lvalue() const final;
419
420 const Expr * accept( Visitor & v ) const override { return v.visit( this ); }
421private:
422 UntypedMemberExpr * clone() const override { return new UntypedMemberExpr{ *this }; }
423 MUTATE_FRIEND
424};
425
426/// A member selection operation after expression resolution, e.g. `q.p`
427class MemberExpr final : public Expr {
428public:
429 readonly<DeclWithType> member;
430 ptr<Expr> aggregate;
431
432 MemberExpr( const CodeLocation & loc, const DeclWithType * mem, const Expr * agg );
433
434 bool get_lvalue() const final;
435
436 const Expr * accept( Visitor & v ) const override { return v.visit( this ); }
437private:
438 MemberExpr * clone() const override { return new MemberExpr{ *this }; }
439 MUTATE_FRIEND
440};
441
442/// A compile-time constant.
443/// Mostly carries C-source text from parse to code-gen, without interpretation. E.g. strings keep their outer quotes and never have backslashes interpreted.
444/// Integer constants get special treatment, e.g. for verifying array operations, when an integer constant occurs as the length of an array.
445class ConstantExpr final : public Expr {
446public:
447 // Representation of this constant, as it occurs in .cfa source and .cfa.cc result.
448 std::string rep;
449
450 ConstantExpr(
451 const CodeLocation & loc, const Type * ty, const std::string & r,
452 const std::optional<unsigned long long> & i )
453 : Expr( loc, ty ), rep( r ), ival( i ) {}
454
455 /// Gets the integer value of this constant, if one is appropriate to its type.
456 /// Throws a SemanticError if the type is not appropriate for value-as-integer.
457 /// Suffers an assertion failure the type is appropriate but no integer value was supplied to the constructor.
458 long long int intValue() const;
459
460 /// Generates a boolean constant of the given bool.
461 static ConstantExpr * from_bool( const CodeLocation & loc, bool b );
462 /// Generates an integer constant of the given int.
463 static ConstantExpr * from_int( const CodeLocation & loc, int i );
464 /// Generates an integer constant of the given unsigned long int.
465 static ConstantExpr * from_ulong( const CodeLocation & loc, unsigned long i );
466 /// Generates a string constant from the given string (char type, unquoted string).
467 static ConstantExpr * from_string( const CodeLocation & loc, const std::string & string );
468 /// Generates a null pointer value for the given type. void * if omitted.
469 static ConstantExpr * null( const CodeLocation & loc, const Type * ptrType = nullptr );
470
471 const Expr * accept( Visitor & v ) const override { return v.visit( this ); }
472private:
473 ConstantExpr * clone() const override { return new ConstantExpr{ *this }; }
474 MUTATE_FRIEND
475
476 std::optional<unsigned long long> ival;
477};
478
479/// sizeof expression, e.g. `sizeof(int)`, `sizeof 3+4`
480class SizeofExpr final : public Expr {
481public:
482 ptr<Expr> expr;
483 ptr<Type> type;
484
485 SizeofExpr( const CodeLocation & loc, const Expr * e );
486 SizeofExpr( const CodeLocation & loc, const Type * t );
487 // deliberately no disambiguating overload for nullptr_t
488
489 const Expr * accept( Visitor & v ) const override { return v.visit( this ); }
490private:
491 SizeofExpr * clone() const override { return new SizeofExpr{ *this }; }
492 MUTATE_FRIEND
493};
494
495class CountExpr final : public Expr {
496public:
497 ptr<Expr> expr;
498 ptr<Type> type;
499
500 CountExpr( const CodeLocation & loc, const Expr * t );
501 CountExpr( const CodeLocation & loc, const Type * t );
502
503 const Expr * accept( Visitor & v )const override { return v.visit( this ); }
504private:
505 CountExpr * clone() const override { return new CountExpr( *this ); }
506 MUTATE_FRIEND
507};
508
509/// alignof expression, e.g. `alignof(int)`, `alignof 3+4`
510class AlignofExpr final : public Expr {
511public:
512 ptr<Expr> expr;
513 ptr<Type> type;
514
515 AlignofExpr( const CodeLocation & loc, const Expr * e );
516 AlignofExpr( const CodeLocation & loc, const Type * t );
517 // deliberately no disambiguating overload for nullptr_t
518
519 const Expr * accept( Visitor & v ) const override { return v.visit( this ); }
520private:
521 AlignofExpr * clone() const override { return new AlignofExpr{ *this }; }
522 MUTATE_FRIEND
523};
524
525/// offsetof expression before resolver determines field, e.g. `offsetof(MyStruct, myfield)`
526class UntypedOffsetofExpr final : public Expr {
527public:
528 ptr<Type> type;
529 std::string member;
530
531 UntypedOffsetofExpr( const CodeLocation & loc, const Type * ty, const std::string & mem )
532 : Expr( loc ), type( ty ), member( mem ) {}
533
534 const Expr * accept( Visitor & v ) const override { return v.visit( this ); }
535private:
536 UntypedOffsetofExpr * clone() const override { return new UntypedOffsetofExpr{ *this }; }
537 MUTATE_FRIEND
538};
539
540/// offsetof expression after resolver determines field, e.g. `offsetof(MyStruct, myfield)`
541class OffsetofExpr final : public Expr {
542public:
543 ptr<Type> type;
544 readonly<DeclWithType> member;
545
546 OffsetofExpr( const CodeLocation & loc, const Type * ty, const DeclWithType * mem );
547
548 const Expr * accept( Visitor & v ) const override { return v.visit( this ); }
549private:
550 OffsetofExpr * clone() const override { return new OffsetofExpr{ *this }; }
551 MUTATE_FRIEND
552};
553
554/// a pack of field-offsets for a generic type
555class OffsetPackExpr final : public Expr {
556public:
557 ptr<StructInstType> type;
558
559 OffsetPackExpr( const CodeLocation & loc, const StructInstType * ty );
560
561 const Expr * accept( Visitor & v ) const override { return v.visit( this ); }
562private:
563 OffsetPackExpr * clone() const override { return new OffsetPackExpr{ *this }; }
564 MUTATE_FRIEND
565};
566
567/// Variants of short-circuiting logical expression
568enum LogicalFlag { OrExpr, AndExpr };
569
570/// Short-circuiting boolean expression (`&&` or `||`)
571class LogicalExpr final : public Expr {
572public:
573 ptr<Expr> arg1;
574 ptr<Expr> arg2;
575 LogicalFlag isAnd;
576
577 LogicalExpr( const CodeLocation & loc, const Expr * a1, const Expr * a2, LogicalFlag ia );
578
579 const Expr * accept( Visitor & v ) const override { return v.visit( this ); }
580private:
581 LogicalExpr * clone() const override { return new LogicalExpr{ *this }; }
582 MUTATE_FRIEND
583};
584
585/// Three-argument conditional e.g. `p ? a : b`
586class ConditionalExpr final : public Expr {
587public:
588 ptr<Expr> arg1;
589 ptr<Expr> arg2;
590 ptr<Expr> arg3;
591
592 ConditionalExpr( const CodeLocation & loc, const Expr * a1, const Expr * a2, const Expr * a3 )
593 : Expr( loc ), arg1( a1 ), arg2( a2 ), arg3( a3 ) {}
594
595 const Expr * accept( Visitor & v ) const override { return v.visit( this ); }
596private:
597 ConditionalExpr * clone() const override { return new ConditionalExpr{ *this }; }
598 MUTATE_FRIEND
599};
600
601/// Comma expression e.g. `( a , b )`
602class CommaExpr final : public Expr {
603public:
604 ptr<Expr> arg1;
605 ptr<Expr> arg2;
606
607 CommaExpr( const CodeLocation & loc, const Expr * a1, const Expr * a2 )
608 : Expr( loc ), arg1( a1 ), arg2( a2 ) {
609 this->result = a2->result;
610 }
611
612 bool get_lvalue() const final;
613
614 const Expr * accept( Visitor & v ) const override { return v.visit( this ); }
615private:
616 CommaExpr * clone() const override { return new CommaExpr{ *this }; }
617 MUTATE_FRIEND
618};
619
620/// A type used as an expression (e.g. a type generator parameter)
621class TypeExpr final : public Expr {
622public:
623 ptr<Type> type;
624
625 TypeExpr( const CodeLocation & loc, const Type * t ) : Expr(loc), type(t) {}
626
627 const Expr * accept( Visitor & v ) const override { return v.visit( this ); }
628private:
629 TypeExpr * clone() const override { return new TypeExpr{ *this }; }
630 MUTATE_FRIEND
631};
632
633/// A name that refers to a generic dimension parameter.
634class DimensionExpr final : public Expr {
635public:
636 std::string name;
637
638 DimensionExpr( const CodeLocation & loc, std::string name )
639 : Expr( loc ), name( name ) {}
640
641 const Expr * accept( Visitor & v ) const override { return v.visit( this ); }
642private:
643 DimensionExpr * clone() const override { return new DimensionExpr{ *this }; }
644 MUTATE_FRIEND
645};
646
647/// A GCC "asm constraint operand" used in an asm statement, e.g. `[output] "=f" (result)`.
648/// https://gcc.gnu.org/onlinedocs/gcc-4.7.1/gcc/Machine-Constraints.html#Machine-Constraints
649class AsmExpr final : public Expr {
650public:
651 std::string inout;
652 ptr<Expr> constraint;
653 ptr<Expr> operand;
654
655 AsmExpr( const CodeLocation & loc, const std::string & io, const Expr * con, const Expr * op )
656 : Expr( loc ), inout( io ), constraint( con ), operand( op ) {}
657
658 const Expr * accept( Visitor & v ) const override { return v.visit( this ); }
659private:
660 AsmExpr * clone() const override { return new AsmExpr{ *this }; }
661 MUTATE_FRIEND
662};
663
664/// The application of a function to a set of parameters, along with a set of copy constructor
665/// calls, one for each argument
666class ImplicitCopyCtorExpr final : public Expr {
667public:
668 ptr<ApplicationExpr> callExpr;
669
670 ImplicitCopyCtorExpr( const CodeLocation & loc, const ApplicationExpr * call )
671 : Expr( loc, call->result ), callExpr(call) { assert( call ); assert(call->result); }
672
673 const Expr * accept( Visitor & v ) const override { return v.visit( this ); }
674private:
675 ImplicitCopyCtorExpr * clone() const override { return new ImplicitCopyCtorExpr{ *this }; }
676 MUTATE_FRIEND
677};
678
679/// Constructor in expression context, e.g. `int * x = alloc() { 42 };`
680class ConstructorExpr final : public Expr {
681public:
682 ptr<Expr> callExpr;
683
684 ConstructorExpr( const CodeLocation & loc, const Expr * call );
685
686 const Expr * accept( Visitor & v ) const override { return v.visit( this ); }
687private:
688 ConstructorExpr * clone() const override { return new ConstructorExpr{ *this }; }
689 MUTATE_FRIEND
690};
691
692/// A C99 compound literal, e.g. `(MyType){ a, b, c }`
693class CompoundLiteralExpr final : public Expr {
694public:
695 ptr<Init> init;
696
697 CompoundLiteralExpr( const CodeLocation & loc, const Type * t, const Init * i );
698
699 bool get_lvalue() const final;
700
701 const Expr * accept( Visitor & v ) const override { return v.visit( this ); }
702private:
703 CompoundLiteralExpr * clone() const override { return new CompoundLiteralExpr{ *this }; }
704 MUTATE_FRIEND
705};
706
707/// A range, e.g. `3 ... 5` or `1~10`
708class RangeExpr final : public Expr {
709public:
710 ptr<Expr> low;
711 ptr<Expr> high;
712
713 RangeExpr( const CodeLocation & loc, const Expr * l, const Expr * h )
714 : Expr( loc ), low( l ), high( h ) {}
715
716 const Expr * accept( Visitor & v ) const override { return v.visit( this ); }
717private:
718 RangeExpr * clone() const override { return new RangeExpr{ *this }; }
719 MUTATE_FRIEND
720};
721
722/// A tuple expression before resolution, e.g. `[a, b, c]`
723class UntypedTupleExpr final : public Expr {
724public:
725 std::vector<ptr<Expr>> exprs;
726
727 UntypedTupleExpr( const CodeLocation & loc, std::vector<ptr<Expr>> && xs )
728 : Expr( loc ), exprs( std::move(xs) ) {}
729
730 const Expr * accept( Visitor & v ) const override { return v.visit( this ); }
731private:
732 UntypedTupleExpr * clone() const override { return new UntypedTupleExpr{ *this }; }
733 MUTATE_FRIEND
734};
735
736/// A tuple expression after resolution, e.g. `[a, b, c]`
737class TupleExpr final : public Expr {
738public:
739 std::vector<ptr<Expr>> exprs;
740
741 TupleExpr( const CodeLocation & loc, std::vector<ptr<Expr>> && xs );
742
743 const Expr * accept( Visitor & v ) const override { return v.visit( this ); }
744private:
745 TupleExpr * clone() const override { return new TupleExpr{ *this }; }
746 MUTATE_FRIEND
747};
748
749/// An element selection operation on a tuple value, e.g. `t.3` after analysis
750class TupleIndexExpr final : public Expr {
751public:
752 ptr<Expr> tuple;
753 unsigned index;
754
755 TupleIndexExpr( const CodeLocation & loc, const Expr * t, unsigned i );
756
757 bool get_lvalue() const final;
758
759 const Expr * accept( Visitor & v ) const override { return v.visit( this ); }
760private:
761 TupleIndexExpr * clone() const override { return new TupleIndexExpr{ *this }; }
762 MUTATE_FRIEND
763};
764
765/// A multiple- or mass-assignment operation, or a tuple ctor/dtor expression.
766/// multiple-assignment: both sides of the assignment have tuple type,
767/// e.g. `[a, b, c] = [d, e, f];`
768/// mass-assignment: left-hand side has tuple type and right-hand side does not:
769/// e.g. `[a, b, c] = 42;`
770class TupleAssignExpr final : public Expr {
771public:
772 ptr<StmtExpr> stmtExpr;
773
774 TupleAssignExpr(
775 const CodeLocation & loc, std::vector<ptr<Expr>> && assigns,
776 std::vector<ptr<ObjectDecl>> && tempDecls );
777
778 const Expr * accept( Visitor & v ) const override { return v.visit( this ); }
779
780private:
781 TupleAssignExpr * clone() const override { return new TupleAssignExpr{ *this }; }
782 MUTATE_FRIEND
783};
784
785/// A GCC "statement expression", e.g. `({ int x = 5; x })`
786class StmtExpr final : public Expr {
787public:
788 ptr<CompoundStmt> stmts;
789 std::vector<ptr<ObjectDecl>> returnDecls; ///< return variable(s) for statement expression
790 std::vector<ptr<Expr>> dtors; ///< destructor(s) for return variable(s)
791
792 readonly<ExprStmt> resultExpr;
793
794 StmtExpr( const CodeLocation & loc, const CompoundStmt * ss );
795
796 /// Set the result type of this StmtExpr based on its body
797 void computeResult();
798
799 const Expr * accept( Visitor & v ) const override { return v.visit( this ); }
800private:
801 StmtExpr * clone() const override { return new StmtExpr{ *this }; }
802 MUTATE_FRIEND
803};
804
805/// An expression which must only be evaluated once
806class UniqueExpr final : public Expr {
807 static unsigned long long nextId;
808public:
809 ptr<Expr> expr;
810 readonly<ObjectDecl> object;
811 ptr<VariableExpr> var;
812 unsigned long long id;
813
814 UniqueExpr( const CodeLocation & loc, const Expr * e, unsigned long long i = -1ull );
815
816 const Expr * accept( Visitor & v ) const override { return v.visit( this ); }
817private:
818 UniqueExpr * clone() const override { return new UniqueExpr{ *this }; }
819 MUTATE_FRIEND
820};
821
822/// One option for resolving an initializer expression
823struct InitAlternative {
824 ptr<Type> type;
825 ptr<Designation> designation;
826
827 InitAlternative() = default;
828 InitAlternative( const Type * ty, const Designation * des ) : type( ty ), designation( des ) {}
829};
830
831/// Pre-resolution initializer expression
832class UntypedInitExpr final : public Expr {
833public:
834 ptr<Expr> expr;
835 std::deque<InitAlternative> initAlts;
836
837 UntypedInitExpr( const CodeLocation & loc, const Expr * e, std::deque<InitAlternative> && as )
838 : Expr( loc ), expr( e ), initAlts( std::move(as) ) {}
839
840 const Expr * accept( Visitor & v ) const override { return v.visit( this ); }
841private:
842 UntypedInitExpr * clone() const override { return new UntypedInitExpr{ *this }; }
843 MUTATE_FRIEND
844};
845
846/// Post-resolution initializer expression
847class InitExpr final : public Expr {
848public:
849 ptr<Expr> expr;
850 ptr<Designation> designation;
851
852 InitExpr( const CodeLocation & loc, const Expr * e, const Designation * des )
853 : Expr( loc, e->result ), expr( e ), designation( des ) {}
854
855 const Expr * accept( Visitor & v ) const override { return v.visit( this ); }
856private:
857 InitExpr * clone() const override { return new InitExpr{ *this }; }
858 MUTATE_FRIEND
859};
860
861/// Expression containing a deleted identifier.
862/// Internal to resolver.
863class DeletedExpr final : public Expr {
864public:
865 ptr<Expr> expr;
866 readonly<Decl> deleteStmt;
867
868 DeletedExpr( const CodeLocation & loc, const Expr * e, const Decl * del )
869 : Expr( loc, e->result ), expr( e ), deleteStmt( del ) { assert( expr->result ); }
870
871 const Expr * accept( Visitor & v ) const override { return v.visit( this ); }
872private:
873 DeletedExpr * clone() const override { return new DeletedExpr{ *this }; }
874 MUTATE_FRIEND
875};
876
877/// Use of a default argument.
878/// Internal to resolver.
879class DefaultArgExpr final : public Expr {
880public:
881 ptr<Expr> expr;
882
883 DefaultArgExpr( const CodeLocation & loc, const Expr * e )
884 : Expr( loc, e->result ), expr( e ) { assert( e->result ); }
885
886 const Expr * accept( Visitor & v ) const override { return v.visit( this ); }
887private:
888 DefaultArgExpr * clone() const override { return new DefaultArgExpr{ *this }; }
889 MUTATE_FRIEND
890};
891
892/// C11 _Generic expression
893class GenericExpr final : public Expr {
894public:
895 /// One arm of the _Generic expr
896 struct Association {
897 ptr<Type> type;
898 ptr<Expr> expr;
899
900 Association() = default;
901 // default case
902 Association( const Expr * e ) : type(), expr( e ) {}
903 // non-default case
904 Association( const Type * t, const Expr * e ) : type( t ), expr( e ) {}
905 };
906
907 ptr<Expr> control;
908 std::vector<Association> associations;
909
910 GenericExpr( const CodeLocation & loc, const Expr * ctrl, std::vector<Association> && assns )
911 : Expr( loc ), control( ctrl ), associations( std::move(assns) ) {}
912
913 const Expr * accept( Visitor & v ) const override { return v.visit( this ); }
914private:
915 GenericExpr * clone() const override { return new GenericExpr{ *this }; }
916 MUTATE_FRIEND
917};
918
919}
920
921#undef MUTATE_FRIEND
922
923// Local Variables: //
924// tab-width: 4 //
925// mode: c++ //
926// compile-command: "make install" //
927// End: //
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