source: src/AST/Type.hpp@ 8fd1b7c

ADT ast-experimental
Last change on this file since 8fd1b7c was fac05b3, checked in by Andrew Beach <ajbeach@…>, 2 years ago

Removed members from TupleType. They were only used in one place, CurrentObject. That now has a patch to create its own imaginary members.

  • Property mode set to 100644
File size: 17.5 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// Type.hpp --
8//
9// Author : Aaron B. Moss
10// Created On : Thu May 9 10:00:00 2019
11// Last Modified By : Andrew Beach
12// Last Modified On : Thu Apr 6 15:58:00 2023
13// Update Count : 9
14//
15
16#pragma once
17
18#include <cassert>
19#include <cstddef> // for nullptr_t
20#include <cstdint> // for uintptr_t
21#include <utility> // for move
22#include <vector>
23
24#include "CVQualifiers.hpp"
25#include "Decl.hpp" // for AggregateDecl subclasses
26#include "Fwd.hpp"
27#include "Node.hpp" // for Node, ptr, ptr_base
28#include "Visitor.hpp"
29
30// Must be included in *all* AST classes; should be #undef'd at the end of the file
31#define MUTATE_FRIEND \
32 template<typename node_t> friend node_t * mutate(const node_t * node); \
33 template<typename node_t> friend node_t * shallowCopy(const node_t * node);
34
35namespace ast {
36
37template< typename T > class Pass;
38
39class Type : public Node {
40public:
41 CV::Qualifiers qualifiers;
42 std::vector<ptr<Attribute>> attributes;
43
44 Type( CV::Qualifiers q = {}, std::vector<ptr<Attribute>> && as = {} )
45 : qualifiers(q), attributes(std::move(as)) {}
46
47 bool is_const() const { return qualifiers.is_const; }
48 bool is_volatile() const { return qualifiers.is_volatile; }
49 bool is_restrict() const { return qualifiers.is_restrict; }
50 bool is_mutex() const { return qualifiers.is_mutex; }
51 bool is_atomic() const { return qualifiers.is_atomic; }
52
53 Type * set_const( bool v ) { qualifiers.is_const = v; return this; }
54 Type * set_volatile( bool v ) { qualifiers.is_volatile = v; return this; }
55 Type * set_restrict( bool v ) { qualifiers.is_restrict = v; return this; }
56 Type * set_mutex( bool v ) { qualifiers.is_mutex = v; return this; }
57 Type * set_atomic( bool v ) { qualifiers.is_atomic = v; return this; }
58
59 /// How many elemental types are represented by this type
60 virtual unsigned size() const { return 1; }
61 /// Is this a void type?
62 virtual bool isVoid() const { return size() == 0; }
63 /// Get the i'th component of this type
64 virtual const Type * getComponent( unsigned i ) const;
65
66 /// type without outer pointers and arrays
67 const Type * stripDeclarator() const;
68 /// type without outer references
69 const Type * stripReferences() const;
70 /// number of reference occuring consecutively on the outermost layer of this type
71 /// (i.e. do not count references nested within other types)
72 virtual unsigned referenceDepth() const { return 0; }
73 /// true iff type is complete type (i.e. compiler knows the size, alignment, and layout)
74 virtual bool isComplete() const { return true; }
75
76 virtual const Type * accept( Visitor & v ) const override = 0;
77private:
78 virtual Type * clone() const override = 0;
79 MUTATE_FRIEND
80};
81
82/// Clear/reset the qualifiers on this type, cloning only if necessary
83template< enum Node::ref_type ref_t >
84void reset_qualifiers( ptr_base< Type, ref_t > & p, CV::Qualifiers q = {} ) {
85 if ( p->qualifiers != q ) p.get_and_mutate()->qualifiers = q;
86}
87
88/// Add the specified qualifiers to this type, cloning only if necessary
89template< enum Node::ref_type ref_t >
90void add_qualifiers( ptr_base< Type, ref_t > & p, CV::Qualifiers q ) {
91 if ( ( p->qualifiers & q ) != q ) p.get_and_mutate()->qualifiers |= q;
92}
93
94/// Remove the specified qualifiers from this type, cloning only if necessary
95template< enum Node::ref_type ref_t >
96void remove_qualifiers( ptr_base< Type, ref_t > & p, CV::Qualifiers q ) {
97 if ( ( p->qualifiers & q ) != 0 ) p.get_and_mutate()->qualifiers -= q;
98}
99
100/// `void`
101class VoidType final : public Type {
102public:
103 VoidType( CV::Qualifiers q = {} ) : Type( q ) {}
104
105 unsigned size() const override { return 0; }
106 bool isVoid() const override { return true; }
107 bool isComplete() const override { return false; }
108
109 const Type * accept( Visitor & v ) const override { return v.visit( this ); }
110private:
111 VoidType * clone() const override { return new VoidType{ *this }; }
112 MUTATE_FRIEND
113};
114
115/// Built-in arithmetic type
116class BasicType final : public Type {
117public:
118 // GENERATED START, DO NOT EDIT
119 // GENERATED BY BasicTypes-gen.cc
120 enum Kind {
121 Bool,
122 Char,
123 SignedChar,
124 UnsignedChar,
125 ShortSignedInt,
126 ShortUnsignedInt,
127 SignedInt,
128 UnsignedInt,
129 LongSignedInt,
130 LongUnsignedInt,
131 LongLongSignedInt,
132 LongLongUnsignedInt,
133 SignedInt128,
134 UnsignedInt128,
135 uFloat16,
136 uFloat16Complex,
137 uFloat32,
138 uFloat32Complex,
139 Float,
140 FloatComplex,
141 uFloat32x,
142 uFloat32xComplex,
143 uFloat64,
144 uFloat64Complex,
145 Double,
146 DoubleComplex,
147 uFloat64x,
148 uFloat64xComplex,
149 uuFloat80,
150 uFloat128,
151 uFloat128Complex,
152 uuFloat128,
153 LongDouble,
154 LongDoubleComplex,
155 uFloat128x,
156 uFloat128xComplex,
157 NUMBER_OF_BASIC_TYPES
158 } kind;
159 // GENERATED END
160
161 /// xxx -- MAX_INTEGER_TYPE should probably be in BasicTypes-gen.cc, rather than hardcoded here
162 enum { MAX_INTEGER_TYPE = UnsignedInt128 };
163
164 /// string names of basic types; generated to match with Kind
165 static const char *typeNames[];
166
167 BasicType( Kind k, CV::Qualifiers q = {}, std::vector<ptr<Attribute>> && as = {} )
168 : Type(q, std::move(as)), kind(k) {}
169
170 /// Check if this type represents an integer type
171 bool isInteger() const { return (unsigned)kind <= (unsigned)MAX_INTEGER_TYPE; }
172
173 const Type * accept( Visitor & v ) const override { return v.visit( this ); }
174private:
175 BasicType * clone() const override { return new BasicType{ *this }; }
176 MUTATE_FRIEND
177};
178
179/// Pointer/array variable length?
180enum LengthFlag { FixedLen, VariableLen };
181
182/// Pointer/array static dimension?
183enum DimensionFlag { DynamicDim, StaticDim };
184
185/// Pointer type `T*`
186class PointerType final : public Type {
187public:
188 ptr<Type> base;
189
190 // In C99, pointer types can be qualified in many ways, e.g. `int a[ static 3 ]`
191 ptr<Expr> dimension;
192 LengthFlag isVarLen = FixedLen;
193 DimensionFlag isStatic = DynamicDim;
194
195 PointerType( const Type * b, CV::Qualifiers q = {} ) : Type(q), base(b), dimension() {}
196 PointerType( const Type * b, const Expr * d, LengthFlag vl, DimensionFlag s,
197 CV::Qualifiers q = {} ) : Type(q), base(b), dimension(d), isVarLen(vl), isStatic(s) {}
198
199 // true if this pointer is actually an array
200 bool isArray() const { return isVarLen || isStatic || dimension; }
201
202 bool isComplete() const override { return ! isVarLen; }
203
204 const Type * accept( Visitor & v ) const override { return v.visit( this ); }
205private:
206 PointerType * clone() const override { return new PointerType{ *this }; }
207 MUTATE_FRIEND
208};
209
210/// Array type `T[]`
211class ArrayType final : public Type {
212public:
213 ptr<Type> base;
214 ptr<Expr> dimension;
215 LengthFlag isVarLen;
216 DimensionFlag isStatic;
217
218 ArrayType( const Type * b, const Expr * d, LengthFlag vl, DimensionFlag s,
219 CV::Qualifiers q = {} ) : Type(q), base(b), dimension(d), isVarLen(vl), isStatic(s) {}
220
221 // array types are complete if they have a dimension expression or are
222 // VLAs ('*' in parameter declaration), and incomplete otherwise.
223 // See 6.7.6.2
224 bool isComplete() const override { return dimension || isVarLen; }
225
226 const Type * accept( Visitor & v ) const override { return v.visit( this ); }
227private:
228 ArrayType * clone() const override { return new ArrayType{ *this }; }
229 MUTATE_FRIEND
230};
231
232/// Reference type `T&`
233class ReferenceType final : public Type {
234public:
235 ptr<Type> base;
236
237 ReferenceType( const Type * b, CV::Qualifiers q = {} ) : Type(q), base(b) {}
238
239 unsigned referenceDepth() const override { return base->referenceDepth() + 1; }
240
241 // Since reference types act like value types, their size is the size of the base.
242 // This makes it simple to cast the empty tuple to a reference type, since casts that increase
243 // the number of values are disallowed.
244 unsigned size() const override { return base->size(); }
245
246 const Type * accept( Visitor & v ) const override { return v.visit( this ); }
247private:
248 ReferenceType * clone() const override { return new ReferenceType{ *this }; }
249 MUTATE_FRIEND
250};
251
252/// Qualified type `P.C`
253class QualifiedType final : public Type {
254public:
255 ptr<Type> parent;
256 ptr<Type> child;
257
258 QualifiedType( const Type * p, const Type * c, CV::Qualifiers q = {} )
259 : Type(q), parent(p), child(c) {}
260
261 const Type * accept( Visitor & v ) const override { return v.visit( this ); }
262private:
263 QualifiedType * clone() const override { return new QualifiedType{ *this }; }
264 MUTATE_FRIEND
265};
266
267/// Type of a function `[R1, R2](*)(P1, P2, P3)`
268class FunctionType final : public Type {
269public:
270 using ForallList = std::vector<ptr<TypeInstType>>;
271 using AssertionList = std::vector<ptr<VariableExpr>>;
272 ForallList forall;
273 AssertionList assertions;
274
275 std::vector<ptr<Type>> returns;
276 std::vector<ptr<Type>> params;
277
278 /// Does the function accept a variable number of arguments following the arguments specified
279 /// in the parameters list.
280 /// This could be because of
281 /// - an ellipsis in a prototype declaration
282 /// - an unprototyped declaration
283 ArgumentFlag isVarArgs;
284
285 FunctionType( ArgumentFlag va = FixedArgs, CV::Qualifiers q = {} )
286 : Type(q), returns(), params(), isVarArgs(va) {}
287
288 FunctionType( const FunctionType & o ) = default;
289
290 /// true if either the parameters or return values contain a tttype
291 bool isTtype() const;
292 /// true if function parameters are unconstrained by prototype
293 bool isUnprototyped() const { return isVarArgs && params.size() == 0; }
294
295 const Type * accept( Visitor & v ) const override { return v.visit( this ); }
296private:
297 FunctionType * clone() const override { return new FunctionType{ *this }; }
298 MUTATE_FRIEND
299};
300
301/// base class for types that refer to types declared elsewhere (aggregates and typedefs)
302class BaseInstType : public Type {
303public:
304 std::vector<ptr<Expr>> params;
305 std::string name;
306 bool hoistType = false;
307
308 BaseInstType(
309 const std::string& n, CV::Qualifiers q = {}, std::vector<ptr<Attribute>> && as = {} )
310 : Type(q, std::move(as)), params(), name(n) {}
311
312 BaseInstType(
313 const std::string& n, std::vector<ptr<Expr>> && params,
314 CV::Qualifiers q = {}, std::vector<ptr<Attribute>> && as = {} )
315 : Type(q, std::move(as)), params(std::move(params)), name(n) {}
316
317 BaseInstType( const BaseInstType & o ) = default;
318
319 /// Gets aggregate declaration this type refers to
320 virtual const AggregateDecl * aggr() const = 0;
321 /// Looks up member declarations with given name
322 std::vector<readonly<Decl>> lookup( const std::string & name ) const;
323
324private:
325 virtual BaseInstType * clone() const override = 0;
326 MUTATE_FRIEND
327};
328
329// Common implementation for the SUE instance types. Not to be used directly.
330template<typename decl_t>
331class SueInstType final : public BaseInstType {
332public:
333 using base_type = decl_t;
334 readonly<decl_t> base;
335
336 SueInstType(
337 const std::string& n, CV::Qualifiers q = {}, std::vector<ptr<Attribute>> && as = {} )
338 : BaseInstType( n, q, std::move(as) ), base() {}
339
340 SueInstType(
341 const base_type * b, CV::Qualifiers q = {}, std::vector<ptr<Attribute>> && as = {} );
342
343 SueInstType(
344 const base_type * b, std::vector<ptr<Expr>> && params,
345 CV::Qualifiers q = {}, std::vector<ptr<Attribute>> && as = {} );
346
347 bool isComplete() const override;
348
349 const decl_t * aggr() const override { return base; }
350
351 const Type * accept( Visitor & v ) const override { return v.visit( this ); }
352private:
353 SueInstType<decl_t> * clone() const override { return new SueInstType<decl_t>{ *this }; }
354 MUTATE_FRIEND
355};
356
357/// An instance of a struct type.
358using StructInstType = SueInstType<StructDecl>;
359
360/// An instance of a union type.
361using UnionInstType = SueInstType<UnionDecl>;
362
363/// An instance of an enum type.
364using EnumInstType = SueInstType<EnumDecl>;
365
366/// An instance of a trait type.
367class TraitInstType final : public BaseInstType {
368public:
369 readonly<TraitDecl> base;
370
371 TraitInstType(
372 const std::string& n, CV::Qualifiers q = {}, std::vector<ptr<Attribute>> && as = {} )
373 : BaseInstType( n, q, std::move(as) ), base() {}
374
375 TraitInstType(
376 const TraitDecl * b, CV::Qualifiers q = {}, std::vector<ptr<Attribute>> && as = {} );
377
378 // not meaningful for TraitInstType
379 bool isComplete() const override { assert(false); }
380
381 const TraitDecl * aggr() const override { return base; }
382
383 const Type * accept( Visitor & v ) const override { return v.visit( this ); }
384private:
385 TraitInstType * clone() const override { return new TraitInstType{ *this }; }
386 MUTATE_FRIEND
387};
388
389struct TypeEnvKey;
390
391/// instance of named type alias (typedef or variable)
392class TypeInstType final : public BaseInstType {
393public:
394 readonly<TypeDecl> base;
395 // previously from renameTyVars; now directly use integer fields instead of synthesized strings
396 // a nonzero value of formal_usage indicates a formal type (only used in function type)
397 // a zero value of formal_usage indicates an actual type (referenced inside body of parametric structs and functions)
398 TypeDecl::Kind kind;
399 int formal_usage = 0;
400 int expr_id = 0;
401
402 bool operator==(const TypeInstType & other) const;
403
404 TypeInstType(
405 const std::string& n, const TypeDecl * b, CV::Qualifiers q = {},
406 std::vector<ptr<Attribute>> && as = {} )
407 : BaseInstType( n, q, std::move(as) ), base( b ), kind( b->kind ) {}
408
409 TypeInstType( const TypeDecl * b,
410 CV::Qualifiers q = {}, std::vector<ptr<Attribute>> && as = {} );
411
412 TypeInstType( const std::string& n, TypeDecl::Kind k, CV::Qualifiers q = {},
413 std::vector<ptr<Attribute>> && as = {} )
414 : BaseInstType( n, q, std::move(as) ), base(), kind( k ) {}
415
416 TypeInstType( const TypeInstType & o ) = default;
417
418 TypeInstType( const TypeEnvKey & key );
419
420 /// sets `base`, updating `kind` correctly
421 void set_base( const TypeDecl * );
422
423 bool isComplete() const override;
424
425 // not meaningful for TypeInstType
426 const AggregateDecl * aggr() const override { assert(false); }
427
428 const Type * accept( Visitor & v ) const override { return v.visit( this ); }
429
430 std::string typeString() const {
431 if (formal_usage > 0) return std::string("_") + std::to_string(formal_usage) + "_" + std::to_string(expr_id) + "_" + name;
432 else return name;
433 }
434private:
435 TypeInstType * clone() const override { return new TypeInstType{ *this }; }
436 MUTATE_FRIEND
437};
438
439/// Compact representation of TypeInstType used for map lookups.
440struct TypeEnvKey {
441 const TypeDecl * base = nullptr;
442 int formal_usage = 0;
443 int expr_id = 0;
444
445 TypeEnvKey() = default;
446 TypeEnvKey(const TypeDecl * base, int formal_usage = 0, int expr_id = 0)
447 : base(base), formal_usage(formal_usage), expr_id(expr_id) {}
448 TypeEnvKey(const TypeInstType & inst)
449 : base(inst.base), formal_usage(inst.formal_usage), expr_id(inst.expr_id) {}
450 std::string typeString() const;
451 bool operator==(const TypeEnvKey & other) const;
452 bool operator<(const TypeEnvKey & other) const;
453};
454
455/// tuple type e.g. `[int, char]`
456class TupleType final : public Type {
457public:
458 std::vector<ptr<Type>> types;
459
460 TupleType( std::vector<ptr<Type>> && ts, CV::Qualifiers q = {} );
461
462 // collection simulation
463 using iterator = std::vector<ptr<Type>>::const_iterator;
464 iterator begin() const { return types.begin(); }
465 iterator end() const { return types.end(); }
466
467 unsigned size() const override { return types.size(); }
468
469 const Type * getComponent( unsigned i ) const override {
470 assertf( i < size(), "TupleType::getComponent: index %d must be less than size %d",
471 i, size() );
472 return *(begin()+i);
473 }
474
475 const Type * accept( Visitor & v ) const override { return v.visit( this ); }
476private:
477 TupleType * clone() const override { return new TupleType{ *this }; }
478 MUTATE_FRIEND
479};
480
481/// Type of unresolved `typeof()` expression
482class TypeofType : public Type {
483public:
484 ptr<Expr> expr;
485 enum Kind { Typeof, Basetypeof } kind;
486
487 TypeofType( const Expr * e, Kind k = Typeof, CV::Qualifiers q = {} )
488 : Type(q), expr(e), kind(k) {}
489
490 const Type * accept( Visitor & v ) const override { return v.visit( this ); }
491private:
492 TypeofType * clone() const override { return new TypeofType{ *this }; }
493 MUTATE_FRIEND
494};
495
496/// Virtual Table Type `vtable(T)`
497class VTableType final : public Type {
498public:
499 ptr<Type> base;
500
501 VTableType( const Type * b, CV::Qualifiers q = {} ) : Type(q), base(b) {}
502
503 const Type * accept( Visitor & v ) const override { return v.visit( this ); }
504private:
505 VTableType * clone() const override { return new VTableType{ *this }; }
506 MUTATE_FRIEND
507};
508
509/// GCC built-in varargs type
510class VarArgsType final : public Type {
511public:
512 VarArgsType( CV::Qualifiers q = {} ) : Type( q ) {}
513
514 const Type * accept( Visitor & v ) const override { return v.visit( this ); }
515private:
516 VarArgsType * clone() const override { return new VarArgsType{ *this }; }
517 MUTATE_FRIEND
518};
519
520/// Type of zero constant `0`
521class ZeroType final : public Type {
522public:
523 ZeroType( CV::Qualifiers q = {} ) : Type( q ) {}
524
525 const Type * accept( Visitor & v ) const override { return v.visit( this ); }
526private:
527 ZeroType * clone() const override { return new ZeroType{ *this }; }
528 MUTATE_FRIEND
529};
530
531/// Type of one constant `1`
532class OneType final : public Type {
533public:
534 OneType( CV::Qualifiers q = {} ) : Type( q ) {}
535
536 const Type * accept( Visitor & v ) const override { return v.visit( this ); }
537private:
538 OneType * clone() const override { return new OneType{ *this }; }
539 MUTATE_FRIEND
540};
541
542/// Parent type for scope-qualified types at global scope
543class GlobalScopeType final : public Type {
544public:
545 GlobalScopeType() : Type() {}
546
547 const Type * accept( Visitor & v ) const override { return v.visit( this ); }
548private:
549 GlobalScopeType * clone() const override { return new GlobalScopeType{ *this }; }
550 MUTATE_FRIEND
551};
552
553bool isUnboundType(const Type * type);
554
555}
556
557namespace std {
558 template<>
559 struct hash<typename ast::TypeEnvKey> {
560 size_t operator() (const ast::TypeEnvKey & x) const {
561 const size_t p = 1000007;
562 size_t res = reinterpret_cast<size_t>(x.base);
563 res = p * res + x.formal_usage;
564 res = p * res + x.expr_id;
565 return res;
566 }
567 };
568}
569
570#undef MUTATE_FRIEND
571
572// Local Variables: //
573// tab-width: 4 //
574// mode: c++ //
575// compile-command: "make install" //
576// End: //
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