source: src/AST/TypeSubstitution.hpp@ 98168b9

ADT arm-eh ast-experimental enum forall-pointer-decay jacob/cs343-translation new-ast-unique-expr pthread-emulation qualifiedEnum
Last change on this file since 98168b9 was 98e8b3b, checked in by Andrew Beach <ajbeach@…>, 5 years ago

ast::ReferenceToType is now ast::BaseInstType.

  • Property mode set to 100644
File size: 7.2 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// TypeSubstitution.h --
8//
9// Author : Richard C. Bilson
10// Created On : Mon May 18 07:44:20 2015
11// Last Modified By : Peter A. Buhr
12// Last Modified On : Tue Apr 30 22:52:47 2019
13// Update Count : 9
14//
15
16#pragma once
17
18#include <cassert> // for assert
19#include <list> // for list<>::iterator, _List_iterator
20#include <unordered_map>
21#include <unordered_set>
22#include <string> // for string, operator!=
23#include <utility> // for pair
24
25#include "Fwd.hpp" // for UniqueId
26#include "ParseNode.hpp"
27#include "Type.hpp"
28#include "Common/SemanticError.h" // for SemanticError
29#include "Visitor.hpp"
30#include "Decl.hpp"
31#include "Expr.hpp"
32#include "Node.hpp"
33
34namespace ast {
35
36class TypeSubstitution : public Node {
37 public:
38 TypeSubstitution();
39 template< typename FormalIterator, typename ActualIterator >
40 TypeSubstitution( FormalIterator formalBegin, FormalIterator formalEnd, ActualIterator actualBegin );
41 TypeSubstitution( const TypeSubstitution &other );
42 virtual ~TypeSubstitution();
43
44 TypeSubstitution &operator=( const TypeSubstitution &other );
45
46 template< typename SynTreeClass >
47 struct ApplyResult {
48 ast::ptr<SynTreeClass> node;
49 int count;
50 };
51
52 template< typename SynTreeClass > ApplyResult<SynTreeClass> apply( const SynTreeClass * input ) const;
53 template< typename SynTreeClass > ApplyResult<SynTreeClass> applyFree( const SynTreeClass * input ) const;
54
55 template< typename node_t, enum Node::ref_type ref_t >
56 int apply( ptr_base< node_t, ref_t > & input ) const {
57 const node_t * p = input.get();
58 auto ret = apply(p);
59 input = ret.node;
60 return ret.count;
61 }
62
63 template< typename node_t, enum Node::ref_type ref_t >
64 int applyFree( ptr_base< node_t, ref_t > & input ) const {
65 const node_t * p = input.get();
66 auto ret = applyFree(p);
67 input = ret.node;
68 return ret.count;
69 }
70
71 void add( std::string formalType, const Type *actualType );
72 void add( const TypeSubstitution &other );
73 void remove( std::string formalType );
74 const Type *lookup( std::string formalType ) const;
75 bool empty() const;
76
77 void addVar( std::string formalExpr, const Expr *actualExpr );
78
79 template< typename FormalIterator, typename ActualIterator >
80 void add( FormalIterator formalBegin, FormalIterator formalEnd, ActualIterator actualBegin );
81
82 /// create a new TypeSubstitution using bindings from env containing all of the type variables in expr
83 static TypeSubstitution * newFromExpr( const Expr * expr, const TypeSubstitution * env );
84
85 void normalize();
86
87 const TypeSubstitution * accept( Visitor & v ) const override { return v.visit( this ); }
88
89 TypeSubstitution * clone() const override { return new TypeSubstitution( *this ); }
90
91 private:
92
93 // Mutator that performs the substitution
94 struct Substituter;
95
96 // TODO: worry about traversing into a forall-qualified function type or type decl with assertions
97
98 void initialize( const TypeSubstitution &src, TypeSubstitution &dest );
99
100 template<typename core_t>
101 friend class Pass;
102
103 typedef std::unordered_map< std::string, ptr<Type> > TypeEnvType;
104 typedef std::unordered_map< std::string, ptr<Expr> > VarEnvType;
105 TypeEnvType typeEnv;
106 VarEnvType varEnv;
107
108 public:
109 // has to come after declaration of typeEnv
110 auto begin() -> decltype( typeEnv.begin() ) { return typeEnv.begin(); }
111 auto end() -> decltype( typeEnv. end() ) { return typeEnv. end(); }
112 auto begin() const -> decltype( typeEnv.begin() ) { return typeEnv.begin(); }
113 auto end() const -> decltype( typeEnv. end() ) { return typeEnv. end(); }
114
115 auto beginVar() -> decltype( varEnv.begin() ) { return varEnv.begin(); }
116 auto endVar() -> decltype( varEnv. end() ) { return varEnv. end(); }
117 auto beginVar() const -> decltype( varEnv.begin() ) { return varEnv.begin(); }
118 auto endVar() const -> decltype( varEnv. end() ) { return varEnv. end(); }
119};
120
121template< typename FormalIterator, typename ActualIterator >
122void TypeSubstitution::add( FormalIterator formalBegin, FormalIterator formalEnd, ActualIterator actualBegin ) {
123 // FormalIterator points to a TypeDecl
124 // ActualIterator points to a Type
125 FormalIterator formalIt = formalBegin;
126 ActualIterator actualIt = actualBegin;
127 for ( ; formalIt != formalEnd; ++formalIt, ++actualIt ) {
128 if ( const TypeDecl *formal = formalIt->template as<TypeDecl>() ) {
129 if ( const TypeExpr *actual = actualIt->template as<TypeExpr>() ) {
130 if ( formal->name != "" ) {
131 typeEnv[ formal->name ] = actual->type;
132 } // if
133 } else {
134 SemanticError( formal, toString( "Attempt to provide non-type parameter: ", toString( *actualIt ).c_str(), " for type parameter " ) );
135 } // if
136 } else {
137 // TODO: type check the formal and actual parameters
138 if ( (*formalIt)->name != "" ) {
139 varEnv[ (*formalIt)->name ] = *actualIt;
140 } // if
141 } // if
142 } // for
143}
144
145template< typename FormalIterator, typename ActualIterator >
146TypeSubstitution::TypeSubstitution( FormalIterator formalBegin, FormalIterator formalEnd, ActualIterator actualBegin ) {
147 add( formalBegin, formalEnd, actualBegin );
148}
149
150} // namespace ast
151
152// include needs to happen after TypeSubstitution is defined so that both TypeSubstitution and
153// PassVisitor are defined before PassVisitor implementation accesses TypeSubstitution internals.
154#include "Pass.hpp"
155#include "Copy.hpp"
156
157namespace ast {
158
159// definitition must happen after PassVisitor is included so that WithGuards can be used
160struct TypeSubstitution::Substituter : public WithGuards, public WithVisitorRef<Substituter>, public PureVisitor {
161 static size_t traceId;
162
163 Substituter( const TypeSubstitution & sub, bool freeOnly ) : sub( sub ), freeOnly( freeOnly ) {}
164
165 const Type * postvisit( const TypeInstType * aggregateUseType );
166 const Expr * postvisit( const NameExpr * nameExpr );
167
168 /// Records type variable bindings from forall-statements
169 void previsit( const ParameterizedType * type );
170 /// Records type variable bindings from forall-statements and instantiations of generic types
171 void handleAggregateType( const BaseInstType * type );
172
173 void previsit( const StructInstType * aggregateUseType );
174 void previsit( const UnionInstType * aggregateUseType );
175
176 const TypeSubstitution & sub;
177 int subCount = 0;
178 bool freeOnly;
179 typedef std::unordered_set< std::string > BoundVarsType;
180 BoundVarsType boundVars;
181
182};
183
184template< typename SynTreeClass >
185TypeSubstitution::ApplyResult<SynTreeClass> TypeSubstitution::apply( const SynTreeClass * input ) const {
186 assert( input );
187 Pass<Substituter> sub( *this, false );
188 input = strict_dynamic_cast< const SynTreeClass * >( input->accept( sub ) );
189 return { input, sub.core.subCount };
190}
191
192template< typename SynTreeClass >
193TypeSubstitution::ApplyResult<SynTreeClass> TypeSubstitution::applyFree( const SynTreeClass * input ) const {
194 assert( input );
195 Pass<Substituter> sub( *this, true );
196 input = strict_dynamic_cast< const SynTreeClass * >( input->accept( sub ) );
197 return { input, sub.core.subCount };
198}
199
200} // namespace ast
201
202// Local Variables: //
203// tab-width: 4 //
204// mode: c++ //
205// compile-command: "make install" //
206// End: //
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