source: src/GenPoly/GenPoly.cc@ e64365c

ADT aaron-thesis arm-eh ast-experimental cleanup-dtors ctor deferred_resn demangler enum forall-pointer-decay gc_noraii jacob/cs343-translation jenkins-sandbox memory new-ast new-ast-unique-expr new-env no_list persistent-indexer pthread-emulation qualifiedEnum resolv-new with_gc
Last change on this file since e64365c was c2ad3c9, checked in by Aaron Moss <a3moss@…>, 9 years ago

fix explicit cast error for returning polymorphic types, also potential infinite loop in findGeneric

  • 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// GenPoly.cc --
8//
9// Author : Richard C. Bilson
10// Created On : Mon May 18 07:44:20 2015
11// Last Modified By : Rob Schluntz
12// Last Modified On : Wed May 25 13:39:21 2016
13// Update Count : 13
14//
15
16#include "GenPoly.h"
17
18#include "SynTree/Expression.h"
19#include "SynTree/Type.h"
20
21#include <iostream>
22using namespace std;
23
24namespace GenPoly {
25 bool needsAdapter( FunctionType *adaptee, const TyVarMap &tyVars ) {
26 if ( ! adaptee->get_returnVals().empty() && isPolyType( adaptee->get_returnVals().front()->get_type(), tyVars ) ) {
27 return true;
28 } // if
29 for ( std::list< DeclarationWithType* >::const_iterator innerArg = adaptee->get_parameters().begin(); innerArg != adaptee->get_parameters().end(); ++innerArg ) {
30 if ( isPolyType( (*innerArg)->get_type(), tyVars ) ) {
31 return true;
32 } // if
33 } // for
34 return false;
35 }
36
37 ReferenceToType *isPolyRet( FunctionType *function ) {
38 if ( ! function->get_returnVals().empty() ) {
39 TyVarMap forallTypes( (TypeDecl::Kind)-1 );
40 makeTyVarMap( function, forallTypes );
41 return (ReferenceToType*)isPolyType( function->get_returnVals().front()->get_type(), forallTypes );
42 } // if
43 return 0;
44 }
45
46 namespace {
47 /// Checks a parameter list for polymorphic parameters; will substitute according to env if present
48 bool hasPolyParams( std::list< Expression* >& params, const TypeSubstitution *env ) {
49 for ( std::list< Expression* >::iterator param = params.begin(); param != params.end(); ++param ) {
50 TypeExpr *paramType = dynamic_cast< TypeExpr* >( *param );
51 assert(paramType && "Aggregate parameters should be type expressions");
52 if ( isPolyType( paramType->get_type(), env ) ) return true;
53 }
54 return false;
55 }
56
57 /// Checks a parameter list for polymorphic parameters from tyVars; will substitute according to env if present
58 bool hasPolyParams( std::list< Expression* >& params, const TyVarMap &tyVars, const TypeSubstitution *env ) {
59 for ( std::list< Expression* >::iterator param = params.begin(); param != params.end(); ++param ) {
60 TypeExpr *paramType = dynamic_cast< TypeExpr* >( *param );
61 assert(paramType && "Aggregate parameters should be type expressions");
62 if ( isPolyType( paramType->get_type(), tyVars, env ) ) return true;
63 }
64 return false;
65 }
66 }
67
68 Type* replaceTypeInst( Type* type, const TypeSubstitution* env ) {
69 if ( ! env ) return type;
70 if ( TypeInstType *typeInst = dynamic_cast< TypeInstType* >( type ) ) {
71 Type *newType = env->lookup( typeInst->get_name() );
72 if ( newType ) return newType;
73 }
74 return type;
75 }
76
77 Type *isPolyType( Type *type, const TypeSubstitution *env ) {
78 type = replaceTypeInst( type, env );
79
80 if ( TypeInstType *typeInst = dynamic_cast< TypeInstType * >( type ) ) {
81 return type;
82 } else if ( StructInstType *structType = dynamic_cast< StructInstType* >( type ) ) {
83 if ( hasPolyParams( structType->get_parameters(), env ) ) return type;
84 } else if ( UnionInstType *unionType = dynamic_cast< UnionInstType* >( type ) ) {
85 if ( hasPolyParams( unionType->get_parameters(), env ) ) return type;
86 }
87 return 0;
88 }
89
90 Type *isPolyType( Type *type, const TyVarMap &tyVars, const TypeSubstitution *env ) {
91 type = replaceTypeInst( type, env );
92
93 if ( TypeInstType *typeInst = dynamic_cast< TypeInstType * >( type ) ) {
94 if ( tyVars.find( typeInst->get_name() ) != tyVars.end() ) {
95 return type;
96 }
97 } else if ( StructInstType *structType = dynamic_cast< StructInstType* >( type ) ) {
98 if ( hasPolyParams( structType->get_parameters(), tyVars, env ) ) return type;
99 } else if ( UnionInstType *unionType = dynamic_cast< UnionInstType* >( type ) ) {
100 if ( hasPolyParams( unionType->get_parameters(), tyVars, env ) ) return type;
101 }
102 return 0;
103 }
104
105 Type *isPolyPtr( Type *type, const TypeSubstitution *env ) {
106 type = replaceTypeInst( type, env );
107
108 if ( PointerType *ptr = dynamic_cast< PointerType *>( type ) ) {
109 return isPolyType( ptr->get_base(), env );
110 }
111 return 0;
112 }
113
114 Type *isPolyPtr( Type *type, const TyVarMap &tyVars, const TypeSubstitution *env ) {
115 type = replaceTypeInst( type, env );
116
117 if ( PointerType *ptr = dynamic_cast< PointerType *>( type ) ) {
118 return isPolyType( ptr->get_base(), tyVars, env );
119 }
120 return 0;
121 }
122
123 Type * hasPolyBase( Type *type, int *levels, const TypeSubstitution *env ) {
124 int dummy;
125 if ( ! levels ) { levels = &dummy; }
126 *levels = 0;
127
128 while ( true ) {
129 type = replaceTypeInst( type, env );
130
131 if ( PointerType *ptr = dynamic_cast< PointerType *>( type ) ) {
132 type = ptr->get_base();
133 ++(*levels);
134 } else break;
135 }
136
137 return isPolyType( type, env );
138 }
139
140 Type * hasPolyBase( Type *type, const TyVarMap &tyVars, int *levels, const TypeSubstitution *env ) {
141 int dummy;
142 if ( ! levels ) { levels = &dummy; }
143 *levels = 0;
144
145 while ( true ) {
146 type = replaceTypeInst( type, env );
147
148 if ( PointerType *ptr = dynamic_cast< PointerType *>( type ) ) {
149 type = ptr->get_base();
150 ++(*levels);
151 } else break;
152 }
153
154 return isPolyType( type, tyVars, env );
155 }
156
157 FunctionType * getFunctionType( Type *ty ) {
158 PointerType *ptrType;
159 if ( ( ptrType = dynamic_cast< PointerType* >( ty ) ) ) {
160 return dynamic_cast< FunctionType* >( ptrType->get_base() ); // pointer if FunctionType, NULL otherwise
161 } else {
162 return dynamic_cast< FunctionType* >( ty ); // pointer if FunctionType, NULL otherwise
163 }
164 }
165
166 VariableExpr * getBaseVar( Expression *expr, int *levels ) {
167 int dummy;
168 if ( ! levels ) { levels = &dummy; }
169 *levels = 0;
170
171 while ( true ) {
172 if ( VariableExpr *varExpr = dynamic_cast< VariableExpr* >( expr ) ) {
173 return varExpr;
174 } else if ( MemberExpr *memberExpr = dynamic_cast< MemberExpr* >( expr ) ) {
175 expr = memberExpr->get_aggregate();
176 } else if ( AddressExpr *addressExpr = dynamic_cast< AddressExpr* >( expr ) ) {
177 expr = addressExpr->get_arg();
178 } else if ( UntypedExpr *untypedExpr = dynamic_cast< UntypedExpr* >( expr ) ) {
179 // look for compiler-inserted dereference operator
180 NameExpr *fn = dynamic_cast< NameExpr* >( untypedExpr->get_function() );
181 if ( ! fn || fn->get_name() != std::string("*?") ) return 0;
182 expr = *untypedExpr->begin_args();
183 } else if ( CommaExpr *commaExpr = dynamic_cast< CommaExpr* >( expr ) ) {
184 // copy constructors insert comma exprs, look at second argument which contains the variable
185 expr = commaExpr->get_arg2();
186 continue;
187 } else break;
188
189 ++(*levels);
190 }
191
192 return 0;
193 }
194
195 void makeTyVarMap( Type *type, TyVarMap &tyVarMap ) {
196 for ( std::list< TypeDecl* >::const_iterator tyVar = type->get_forall().begin(); tyVar != type->get_forall().end(); ++tyVar ) {
197 assert( *tyVar );
198 tyVarMap[ (*tyVar)->get_name() ] = (*tyVar)->get_kind();
199 }
200 if ( PointerType *pointer = dynamic_cast< PointerType* >( type ) ) {
201 makeTyVarMap( pointer->get_base(), tyVarMap );
202 }
203 }
204
205 void printTyVarMap( std::ostream &os, const TyVarMap &tyVarMap ) {
206 for ( TyVarMap::const_iterator i = tyVarMap.begin(); i != tyVarMap.end(); ++i ) {
207 os << i->first << " (" << i->second << ") ";
208 } // for
209 os << std::endl;
210 }
211
212} // namespace GenPoly
213
214// Local Variables: //
215// tab-width: 4 //
216// mode: c++ //
217// compile-command: "make install" //
218// End: //
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