source: src/SynTree/TypeSubstitution.cc@ cdcddfe1

ADT aaron-thesis arm-eh ast-experimental cleanup-dtors enum forall-pointer-decay jacob/cs343-translation jenkins-sandbox new-ast new-ast-unique-expr persistent-indexer pthread-emulation qualifiedEnum
Last change on this file since cdcddfe1 was d0d5054, checked in by Rob Schluntz <rschlunt@…>, 7 years ago

Recursively substitute type variables when applying a substitution

  • Property mode set to 100644
File size: 7.5 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// TypeSubstitution.cc --
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 : Thu Mar 16 15:54:35 2017
13// Update Count : 4
14//
15
16#include <ostream> // for ostream, basic_ostream, operator<<, endl
17
18#include "Type.h" // for TypeInstType, Type, StructInstType, UnionInstType
19#include "TypeSubstitution.h"
20
21TypeSubstitution::TypeSubstitution() {
22}
23
24TypeSubstitution::TypeSubstitution( const TypeSubstitution &other ) {
25 initialize( other, *this );
26}
27
28TypeSubstitution::~TypeSubstitution() {
29 for ( TypeEnvType::iterator i = typeEnv.begin(); i != typeEnv.end(); ++i ) {
30 delete( i->second );
31 }
32 for ( VarEnvType::iterator i = varEnv.begin(); i != varEnv.end(); ++i ) {
33 delete( i->second );
34 }
35}
36
37TypeSubstitution &TypeSubstitution::operator=( const TypeSubstitution &other ) {
38 if ( this == &other ) return *this;
39 initialize( other, *this );
40 return *this;
41}
42
43void TypeSubstitution::initialize( const TypeSubstitution &src, TypeSubstitution &dest ) {
44 dest.typeEnv.clear();
45 dest.varEnv.clear();
46 dest.add( src );
47}
48
49void TypeSubstitution::add( const TypeSubstitution &other ) {
50 for ( TypeEnvType::const_iterator i = other.typeEnv.begin(); i != other.typeEnv.end(); ++i ) {
51 typeEnv[ i->first ] = i->second->clone();
52 } // for
53 for ( VarEnvType::const_iterator i = other.varEnv.begin(); i != other.varEnv.end(); ++i ) {
54 varEnv[ i->first ] = i->second->clone();
55 } // for
56}
57
58void TypeSubstitution::add( std::string formalType, Type *actualType ) {
59 TypeEnvType::iterator i = typeEnv.find( formalType );
60 if ( i != typeEnv.end() ) {
61 delete i->second;
62 } // if
63 typeEnv[ formalType ] = actualType->clone();
64}
65
66void TypeSubstitution::remove( std::string formalType ) {
67 TypeEnvType::iterator i = typeEnv.find( formalType );
68 if ( i != typeEnv.end() ) {
69 delete i->second;
70 typeEnv.erase( formalType );
71 } // if
72}
73
74Type *TypeSubstitution::lookup( std::string formalType ) const {
75 TypeEnvType::const_iterator i = typeEnv.find( formalType );
76
77 // break on not in substitution set
78 if ( i == typeEnv.end() ) return 0;
79
80 // attempt to transitively follow TypeInstType links.
81 while ( TypeInstType *actualType = dynamic_cast< TypeInstType* >( i->second ) ) {
82 const std::string& typeName = actualType->get_name();
83
84 // break cycles in the transitive follow
85 if ( formalType == typeName ) break;
86
87 // Look for the type this maps to, returning previous mapping if none-such
88 i = typeEnv.find( typeName );
89 if ( i == typeEnv.end() ) return actualType;
90 }
91
92 // return type from substitution set
93 return i->second;
94
95#if 0
96 if ( i == typeEnv.end() ) {
97 return 0;
98 } else {
99 return i->second;
100 } // if
101#endif
102}
103
104bool TypeSubstitution::empty() const {
105 return typeEnv.empty() && varEnv.empty();
106}
107
108namespace {
109 struct EnvTrimmer {
110 TypeSubstitution * env, * newEnv;
111 EnvTrimmer( TypeSubstitution * env, TypeSubstitution * newEnv ) : env( env ), newEnv( newEnv ){}
112 void previsit( TypeDecl * tyDecl ) {
113 // transfer known bindings for seen type variables
114 if ( Type * t = env->lookup( tyDecl->name ) ) {
115 newEnv->add( tyDecl->name, t );
116 }
117 }
118 };
119} // namespace
120
121/// reduce environment to just the parts that are referenced in a given expression
122TypeSubstitution * TypeSubstitution::newFromExpr( Expression * expr, TypeSubstitution * env ) {
123 if ( env ) {
124 TypeSubstitution * newEnv = new TypeSubstitution();
125 PassVisitor<EnvTrimmer> trimmer( env, newEnv );
126 expr->accept( trimmer );
127 return newEnv;
128 }
129 return nullptr;
130}
131
132void TypeSubstitution::normalize() {
133 PassVisitor<Substituter> sub( *this, true );
134 do {
135 sub.pass.subCount = 0;
136 sub.pass.freeOnly = true;
137 for ( TypeEnvType::iterator i = typeEnv.begin(); i != typeEnv.end(); ++i ) {
138 i->second = i->second->acceptMutator( sub );
139 }
140 } while ( sub.pass.subCount );
141}
142
143Type * TypeSubstitution::Substituter::postmutate( TypeInstType *inst ) {
144 BoundVarsType::const_iterator bound = boundVars.find( inst->name );
145 if ( bound != boundVars.end() ) return inst;
146
147 TypeEnvType::const_iterator i = sub.typeEnv.find( inst->get_name() );
148 if ( i == sub.typeEnv.end() ) {
149 return inst;
150 } else {
151 // cut off infinite loop for the case where a type is bound to itself.
152 // Note: this does not prevent cycles in the general case, so it may be necessary to do something more sophisticated here.
153 // TODO: investigate preventing type variables from being bound to themselves in the first place.
154 if ( TypeInstType * replacement = dynamic_cast< TypeInstType * >( i->second ) ) {
155 if ( inst->name == replacement->name ) {
156 return inst;
157 }
158 }
159 // std::cerr << "found " << inst->name << ", replacing with " << i->second << std::endl;
160 subCount++;
161 Type * newtype = i->second->clone();
162 newtype->get_qualifiers() |= inst->get_qualifiers();
163 delete inst;
164 // Note: need to recursively apply substitution to the new type because normalize does not substitute bound vars, but bound vars must be substituted when not in freeOnly mode.
165 return newtype->acceptMutator( *visitor );
166 } // if
167}
168
169Expression * TypeSubstitution::Substituter::postmutate( NameExpr * nameExpr ) {
170 VarEnvType::const_iterator i = sub.varEnv.find( nameExpr->name );
171 if ( i == sub.varEnv.end() ) {
172 return nameExpr;
173 } else {
174 subCount++;
175 delete nameExpr;
176 return i->second->clone();
177 } // if
178}
179
180void TypeSubstitution::Substituter::premutate( Type * type ) {
181 GuardValue( boundVars );
182 // bind type variables from forall-qualifiers
183 if ( freeOnly ) {
184 for ( Type::ForallList::const_iterator tyvar = type->forall.begin(); tyvar != type->forall.end(); ++tyvar ) {
185 boundVars.insert( (*tyvar)->name );
186 } // for
187 } // if
188}
189
190template< typename TypeClass >
191void TypeSubstitution::Substituter::handleAggregateType( TypeClass * type ) {
192 GuardValue( boundVars );
193 // bind type variables from forall-qualifiers
194 if ( freeOnly ) {
195 for ( Type::ForallList::const_iterator tyvar = type->forall.begin(); tyvar != type->forall.end(); ++tyvar ) {
196 boundVars.insert( (*tyvar)->name );
197 } // for
198 // bind type variables from generic type instantiations
199 std::list< TypeDecl* > *baseParameters = type->get_baseParameters();
200 if ( baseParameters && ! type->parameters.empty() ) {
201 for ( std::list< TypeDecl* >::const_iterator tyvar = baseParameters->begin(); tyvar != baseParameters->end(); ++tyvar ) {
202 boundVars.insert( (*tyvar)->name );
203 } // for
204 } // if
205 } // if
206}
207
208void TypeSubstitution::Substituter::premutate( StructInstType * aggregateUseType ) {
209 handleAggregateType( aggregateUseType );
210}
211
212void TypeSubstitution::Substituter::premutate( UnionInstType *aggregateUseType ) {
213 handleAggregateType( aggregateUseType );
214}
215
216void TypeSubstitution::print( std::ostream &os, Indenter indent ) const {
217 os << indent << "Types:" << std::endl;
218 for ( TypeEnvType::const_iterator i = typeEnv.begin(); i != typeEnv.end(); ++i ) {
219 os << indent+1 << i->first << " -> ";
220 i->second->print( os, indent+2 );
221 os << std::endl;
222 } // for
223 os << indent << "Non-types:" << std::endl;
224 for ( VarEnvType::const_iterator i = varEnv.begin(); i != varEnv.end(); ++i ) {
225 os << indent+1 << i->first << " -> ";
226 i->second->print( os, indent+2 );
227 os << std::endl;
228 } // for
229}
230
231std::ostream & operator<<( std::ostream & out, const TypeSubstitution & sub ) {
232 sub.print( out );
233 return out;
234}
235
236
237// Local Variables: //
238// tab-width: 4 //
239// mode: c++ //
240// compile-command: "make install" //
241// End: //
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