source: src/ResolvExpr/typeops.h@ 38cc59f

ADT ast-experimental
Last change on this file since 38cc59f was ef1da0e2, checked in by Fangren Yu <f37yu@…>, 3 years ago

try to make parameter qualifier conversion work for assertions

  • Property mode set to 100644
File size: 8.3 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// typeops.h --
8//
9// Author : Richard C. Bilson
10// Created On : Sun May 17 07:28:22 2015
11// Last Modified By : Andrew Beach
12// Last Modified On : Tue Oct 1 09:45:00 2019
13// Update Count : 6
14//
15
16#pragma once
17
18#include <vector>
19
20#include "Cost.h"
21#include "TypeEnvironment.h"
22#include "WidenMode.h"
23#include "AST/Fwd.hpp"
24#include "AST/Node.hpp"
25#include "AST/SymbolTable.hpp"
26#include "AST/Type.hpp"
27#include "AST/TypeEnvironment.hpp"
28#include "SynTree/SynTree.h"
29#include "SynTree/Type.h"
30
31namespace SymTab {
32 class Indexer;
33}
34
35namespace ResolvExpr {
36 // combos: takes a list of sets and returns a set of lists representing every possible way of forming a list by
37 // picking one element out of each set
38 template< typename InputIterator, typename OutputIterator >
39 void combos( InputIterator begin, InputIterator end, OutputIterator out ) {
40 typedef typename InputIterator::value_type SetType;
41 typedef typename std::vector< typename SetType::value_type > ListType;
42
43 if ( begin == end ) {
44 *out++ = ListType();
45 return;
46 } // if
47
48 InputIterator current = begin;
49 begin++;
50
51 std::vector< ListType > recursiveResult;
52 combos( begin, end, back_inserter( recursiveResult ) );
53
54 for ( const auto& i : recursiveResult ) for ( const auto& j : *current ) {
55 ListType result;
56 std::back_insert_iterator< ListType > inserter = back_inserter( result );
57 *inserter++ = j;
58 std::copy( i.begin(), i.end(), inserter );
59 *out++ = result;
60 }
61 }
62
63 // in AdjustExprType.cc
64 /// Replaces array types with the equivalent pointer, and function types with a pointer-to-function
65 void adjustExprType( Type *& type, const TypeEnvironment & env, const SymTab::Indexer & indexer );
66
67 /// Replaces array types with the equivalent pointer, and function types with a pointer-to-function using empty TypeEnvironment and Indexer
68 void adjustExprType( Type *& type );
69
70 template< typename ForwardIterator >
71 void adjustExprTypeList( ForwardIterator begin, ForwardIterator end, const TypeEnvironment & env, const SymTab::Indexer & indexer ) {
72 while ( begin != end ) {
73 adjustExprType( *begin++, env, indexer );
74 } // while
75 }
76
77 /// Replaces array types with equivalent pointer, and function types with a pointer-to-function
78 const ast::Type * adjustExprType(
79 const ast::Type * type, const ast::TypeEnvironment & env, const ast::SymbolTable & symtab );
80
81 // in CastCost.cc
82 Cost castCost( const Type * src, const Type * dest, bool srcIsLvalue,
83 const SymTab::Indexer & indexer, const TypeEnvironment & env );
84 Cost castCost(
85 const ast::Type * src, const ast::Type * dst, bool srcIsLvalue,
86 const ast::SymbolTable & symtab, const ast::TypeEnvironment & env );
87
88 // in ConversionCost.cc
89 Cost conversionCost( const Type * src, const Type * dest, bool srcIsLvalue,
90 const SymTab::Indexer & indexer, const TypeEnvironment & env );
91 Cost conversionCost(
92 const ast::Type * src, const ast::Type * dst, bool srcIsLvalue,
93 const ast::SymbolTable & symtab, const ast::TypeEnvironment & env );
94
95 // in AlternativeFinder.cc
96 Cost computeConversionCost( Type * actualType, Type * formalType, bool actualIsLvalue,
97 const SymTab::Indexer & indexer, const TypeEnvironment & env );
98
99 // in PtrsAssignable.cc
100 int ptrsAssignable( const Type * src, const Type * dest, const TypeEnvironment & env );
101 int ptrsAssignable( const ast::Type * src, const ast::Type * dst,
102 const ast::TypeEnvironment & env );
103
104 // in PtrsCastable.cc
105 int ptrsCastable( const Type * src, const Type * dest, const TypeEnvironment & env, const SymTab::Indexer & indexer );
106 int ptrsCastable(
107 const ast::Type * src, const ast::Type * dst, const ast::SymbolTable & symtab,
108 const ast::TypeEnvironment & env );
109
110 // in Unify.cc
111 bool typesCompatible( const Type *, const Type *, const SymTab::Indexer & indexer, const TypeEnvironment & env );
112 bool typesCompatibleIgnoreQualifiers( const Type *, const Type *, const SymTab::Indexer & indexer, const TypeEnvironment & env );
113
114 inline bool typesCompatible( const Type * t1, const Type * t2, const SymTab::Indexer & indexer ) {
115 TypeEnvironment env;
116 return typesCompatible( t1, t2, indexer, env );
117 }
118
119 inline bool typesCompatibleIgnoreQualifiers( const Type * t1, const Type * t2, const SymTab::Indexer & indexer ) {
120 TypeEnvironment env;
121 return typesCompatibleIgnoreQualifiers( t1, t2, indexer, env );
122 }
123
124 bool typesCompatible(
125 const ast::Type *, const ast::Type *, const ast::SymbolTable & symtab = {},
126 const ast::TypeEnvironment & env = {} );
127
128 bool typesCompatibleIgnoreQualifiers(
129 const ast::Type *, const ast::Type *, const ast::SymbolTable &,
130 const ast::TypeEnvironment & env = {} );
131
132 /// creates the type represented by the list of returnVals in a FunctionType. The caller owns the return value.
133 Type * extractResultType( FunctionType * functionType );
134 /// Creates or extracts the type represented by the list of returns in a `FunctionType`.
135 ast::ptr<ast::Type> extractResultType( const ast::FunctionType * func );
136
137 // in CommonType.cc
138 Type * commonType( Type * type1, Type * type2, bool widenFirst, bool widenSecond, const SymTab::Indexer & indexer, TypeEnvironment & env, const OpenVarSet & openVars );
139 ast::ptr< ast::Type > commonType(
140 const ast::ptr< ast::Type > & type1, const ast::ptr< ast::Type > & type2,
141 ast::TypeEnvironment & env, ast::AssertionSet & need, ast::AssertionSet & have,
142 const ast::OpenVarSet & open, WidenMode widen, const ast::SymbolTable & symtab
143 );
144 // in Unify.cc
145 std::vector< ast::ptr< ast::Type > > flattenList(
146 const std::vector< ast::ptr< ast::Type > > & src, ast::TypeEnvironment & env
147 );
148
149 // in PolyCost.cc
150 int polyCost( Type * type, const TypeEnvironment & env, const SymTab::Indexer & indexer );
151 int polyCost(
152 const ast::Type * type, const ast::SymbolTable & symtab, const ast::TypeEnvironment & env );
153
154 // in SpecCost.cc
155 int specCost( Type * type );
156 int specCost( const ast::Type * type );
157
158 // in Occurs.cc
159 bool occurs( const Type * type, const std::string & varName, const TypeEnvironment & env );
160 // new AST version in TypeEnvironment.cpp (only place it was used in old AST)
161
162 template<typename Iter>
163 bool occursIn( Type* ty, Iter begin, Iter end, const TypeEnvironment & env ) {
164 while ( begin != end ) {
165 if ( occurs( ty, *begin, env ) ) return true;
166 ++begin;
167 }
168 return false;
169 }
170
171 // in AlternativeFinder.cc
172 void referenceToRvalueConversion( Expression *& expr, Cost & cost );
173 // in CandidateFinder.cpp
174 const ast::Expr * referenceToRvalueConversion( const ast::Expr * expr, Cost & cost );
175
176 /// flatten tuple type into list of types
177 template< typename OutputIterator >
178 void flatten( Type * type, OutputIterator out ) {
179 if ( TupleType * tupleType = dynamic_cast< TupleType * >( type ) ) {
180 for ( Type * t : tupleType->get_types() ) {
181 flatten( t, out );
182 }
183 } else {
184 *out++ = type->clone();
185 }
186 }
187
188 /// flatten tuple type into existing list of types
189 inline void flatten(
190 const ast::Type * type, std::vector< ast::ptr< ast::Type > > & out
191 ) {
192 if ( auto tupleType = dynamic_cast< const ast::TupleType * >( type ) ) {
193 for ( const ast::Type * t : tupleType->types ) {
194 flatten( t, out );
195 }
196 } else {
197 out.emplace_back( type );
198 }
199 }
200
201 /// flatten tuple type into list of types
202 inline std::vector< ast::ptr< ast::Type > > flatten( const ast::Type * type ) {
203 std::vector< ast::ptr< ast::Type > > out;
204 out.reserve( type->size() );
205 flatten( type, out );
206 return out;
207 }
208
209 template< typename Iter >
210 const ast::Type * tupleFromTypes( Iter crnt, Iter end ) {
211 std::vector< ast::ptr< ast::Type > > types;
212 while ( crnt != end ) {
213 // it is guaranteed that a ttype variable will be bound to a flat tuple, so ensure
214 // that this results in a flat tuple
215 flatten( *crnt, types );
216
217 ++crnt;
218 }
219
220
221 return new ast::TupleType{ std::move(types) };
222 }
223
224 inline const ast::Type * tupleFromTypes(
225 const std::vector< ast::ptr< ast::Type > > & tys
226 ) {
227 return tupleFromTypes( tys.begin(), tys.end() );
228 }
229
230
231
232 // in TypeEnvironment.cc
233 bool isFtype( const Type * type );
234} // namespace ResolvExpr
235
236namespace ast {
237 // in TypeEnvironment.cpp
238 bool isFtype( const ast::Type * type );
239} // namespace ast
240
241// Local Variables: //
242// tab-width: 4 //
243// mode: c++ //
244// compile-command: "make install" //
245// End: //
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