source: src/GenPoly/InstantiateGeneric.cc@ b3b2077

ADT aaron-thesis arm-eh ast-experimental cleanup-dtors deferred_resn demangler enum forall-pointer-decay jacob/cs343-translation jenkins-sandbox 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 b3b2077 was e491159, checked in by Thierry Delisle <tdelisle@…>, 9 years ago

Moved ScopedMap to Common folder

  • Property mode set to 100644
File size: 13.5 KB
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1//
2// Cforall Version 1.0.0 Copyright (C) 2016 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// InstantiateGeneric.cc --
8//
9// Author : Aaron B. Moss
10// Created On : Thu Aug 04 18:33:00 2016
11// Last Modified By : Aaron B. Moss
12// Last Modified On : Thu Aug 04 18:33:00 2016
13// Update Count : 1
14//
15
16#include <cassert>
17#include <list>
18#include <utility>
19#include <vector>
20
21#include "InstantiateGeneric.h"
22
23#include "DeclMutator.h"
24#include "GenPoly.h"
25#include "ScopedSet.h"
26
27#include "ResolvExpr/typeops.h"
28
29#include "SynTree/Declaration.h"
30#include "SynTree/Expression.h"
31#include "SynTree/Type.h"
32
33#include "Common/ScopedMap.h"
34#include "Common/UniqueName.h"
35#include "Common/utility.h"
36
37namespace GenPoly {
38
39 /// Abstracts type equality for a list of parameter types
40 struct TypeList {
41 TypeList() : params() {}
42 TypeList( const std::list< Type* > &_params ) : params() { cloneAll(_params, params); }
43 TypeList( std::list< Type* > &&_params ) : params( _params ) {}
44
45 TypeList( const TypeList &that ) : params() { cloneAll(that.params, params); }
46 TypeList( TypeList &&that ) : params( std::move( that.params ) ) {}
47
48 /// Extracts types from a list of TypeExpr*
49 TypeList( const std::list< TypeExpr* >& _params ) : params() {
50 for ( std::list< TypeExpr* >::const_iterator param = _params.begin(); param != _params.end(); ++param ) {
51 params.push_back( (*param)->get_type()->clone() );
52 }
53 }
54
55 TypeList& operator= ( const TypeList &that ) {
56 deleteAll( params );
57
58 params.clear();
59 cloneAll( that.params, params );
60
61 return *this;
62 }
63
64 TypeList& operator= ( TypeList &&that ) {
65 deleteAll( params );
66
67 params = std::move( that.params );
68
69 return *this;
70 }
71
72 ~TypeList() { deleteAll( params ); }
73
74 bool operator== ( const TypeList& that ) const {
75 if ( params.size() != that.params.size() ) return false;
76
77 SymTab::Indexer dummy;
78 for ( std::list< Type* >::const_iterator it = params.begin(), jt = that.params.begin(); it != params.end(); ++it, ++jt ) {
79 if ( ! ResolvExpr::typesCompatible( *it, *jt, dummy ) ) return false;
80 }
81 return true;
82 }
83
84 std::list< Type* > params; ///< Instantiation parameters
85 };
86
87 /// Maps a key and a TypeList to the some value, accounting for scope
88 template< typename Key, typename Value >
89 class InstantiationMap {
90 /// Wraps value for a specific (Key, TypeList) combination
91 typedef std::pair< TypeList, Value* > Instantiation;
92 /// List of TypeLists paired with their appropriate values
93 typedef std::vector< Instantiation > ValueList;
94 /// Underlying map type; maps keys to a linear list of corresponding TypeLists and values
95 typedef ScopedMap< Key*, ValueList > InnerMap;
96
97 InnerMap instantiations; ///< instantiations
98
99 public:
100 /// Starts a new scope
101 void beginScope() { instantiations.beginScope(); }
102
103 /// Ends a scope
104 void endScope() { instantiations.endScope(); }
105
106 /// Gets the value for the (key, typeList) pair, returns NULL on none such.
107 Value *lookup( Key *key, const std::list< TypeExpr* >& params ) const {
108 TypeList typeList( params );
109
110 // scan scopes for matches to the key
111 for ( typename InnerMap::const_iterator insts = instantiations.find( key ); insts != instantiations.end(); insts = instantiations.findNext( insts, key ) ) {
112 for ( typename ValueList::const_reverse_iterator inst = insts->second.rbegin(); inst != insts->second.rend(); ++inst ) {
113 if ( inst->first == typeList ) return inst->second;
114 }
115 }
116 // no matching instantiations found
117 return 0;
118 }
119
120 /// Adds a value for a (key, typeList) pair to the current scope
121 void insert( Key *key, const std::list< TypeExpr* > &params, Value *value ) {
122 instantiations[ key ].push_back( Instantiation( TypeList( params ), value ) );
123 }
124 };
125
126 /// Possible options for a given specialization of a generic type
127 enum class genericType {
128 dtypeStatic, ///< Concrete instantiation based solely on {d,f}type-to-void conversions
129 concrete, ///< Concrete instantiation requiring at least one parameter type
130 dynamic ///< No concrete instantiation
131 };
132
133 genericType& operator |= ( genericType& gt, const genericType& ht ) {
134 switch ( gt ) {
135 case genericType::dtypeStatic:
136 gt = ht;
137 break;
138 case genericType::concrete:
139 if ( ht == genericType::dynamic ) { gt = genericType::dynamic; }
140 break;
141 case genericType::dynamic:
142 // nothing possible
143 break;
144 }
145 return gt;
146 }
147
148 /// Mutator pass that replaces concrete instantiations of generic types with actual struct declarations, scoped appropriately
149 class GenericInstantiator : public DeclMutator {
150 /// Map of (generic type, parameter list) pairs to concrete type instantiations
151 InstantiationMap< AggregateDecl, AggregateDecl > instantiations;
152 /// Set of types which are dtype-only generic (and therefore have static layout)
153 ScopedSet< AggregateDecl* > dtypeStatics;
154 /// Namer for concrete types
155 UniqueName typeNamer;
156
157 public:
158 GenericInstantiator() : DeclMutator(), instantiations(), dtypeStatics(), typeNamer("_conc_") {}
159
160 virtual Type* mutate( StructInstType *inst );
161 virtual Type* mutate( UnionInstType *inst );
162
163 virtual void doBeginScope();
164 virtual void doEndScope();
165 private:
166 /// Wrap instantiation lookup for structs
167 StructDecl* lookup( StructInstType *inst, const std::list< TypeExpr* > &typeSubs ) { return (StructDecl*)instantiations.lookup( inst->get_baseStruct(), typeSubs ); }
168 /// Wrap instantiation lookup for unions
169 UnionDecl* lookup( UnionInstType *inst, const std::list< TypeExpr* > &typeSubs ) { return (UnionDecl*)instantiations.lookup( inst->get_baseUnion(), typeSubs ); }
170 /// Wrap instantiation insertion for structs
171 void insert( StructInstType *inst, const std::list< TypeExpr* > &typeSubs, StructDecl *decl ) { instantiations.insert( inst->get_baseStruct(), typeSubs, decl ); }
172 /// Wrap instantiation insertion for unions
173 void insert( UnionInstType *inst, const std::list< TypeExpr* > &typeSubs, UnionDecl *decl ) { instantiations.insert( inst->get_baseUnion(), typeSubs, decl ); }
174
175 /// Strips a dtype-static aggregate decl of its type parameters, marks it as stripped
176 void stripDtypeParams( AggregateDecl *base, std::list< TypeDecl* >& baseParams, const std::list< TypeExpr* >& typeSubs );
177 };
178
179 void instantiateGeneric( std::list< Declaration* > &translationUnit ) {
180 GenericInstantiator instantiator;
181 instantiator.mutateDeclarationList( translationUnit );
182 }
183
184 /// Makes substitutions of params into baseParams; returns dtypeStatic if there is a concrete instantiation based only on {d,f}type-to-void conversions,
185 /// concrete if there is a concrete instantiation requiring at least one parameter type, and dynamic if there is no concrete instantiation
186 genericType makeSubstitutions( const std::list< TypeDecl* >& baseParams, const std::list< Expression* >& params, std::list< TypeExpr* >& out ) {
187 genericType gt = genericType::dtypeStatic;
188
189 // substitute concrete types for given parameters, and incomplete types for placeholders
190 std::list< TypeDecl* >::const_iterator baseParam = baseParams.begin();
191 std::list< Expression* >::const_iterator param = params.begin();
192 for ( ; baseParam != baseParams.end() && param != params.end(); ++baseParam, ++param ) {
193 TypeExpr *paramType = dynamic_cast< TypeExpr* >( *param );
194 assert(paramType && "Aggregate parameters should be type expressions");
195
196 switch ( (*baseParam)->get_kind() ) {
197 case TypeDecl::Any: {
198 // substitute parameter for otype; makes the type concrete or dynamic depending on the parameter
199 out.push_back( paramType->clone() );
200 gt |= isPolyType( paramType->get_type() ) ? genericType::dynamic : genericType::concrete;
201 break;
202 }
203 case TypeDecl::Dtype:
204 // can pretend that any dtype is `void`
205 out.push_back( new TypeExpr( new VoidType( Type::Qualifiers() ) ) );
206 break;
207 case TypeDecl::Ftype:
208 // can pretend that any ftype is `void (*)(void)`
209 out.push_back( new TypeExpr( new FunctionType( Type::Qualifiers(), false ) ) );
210 break;
211 }
212 }
213
214 assert( baseParam == baseParams.end() && param == params.end() && "Type parameters should match type variables" );
215 return gt;
216 }
217
218 /// Substitutes types of members of in according to baseParams => typeSubs, appending the result to out
219 void substituteMembers( const std::list< Declaration* >& in, const std::list< TypeDecl* >& baseParams, const std::list< TypeExpr* >& typeSubs,
220 std::list< Declaration* >& out ) {
221 // substitute types into new members
222 TypeSubstitution subs( baseParams.begin(), baseParams.end(), typeSubs.begin() );
223 for ( std::list< Declaration* >::const_iterator member = in.begin(); member != in.end(); ++member ) {
224 Declaration *newMember = (*member)->clone();
225 subs.apply(newMember);
226 out.push_back( newMember );
227 }
228 }
229
230 /// Substitutes types of members according to baseParams => typeSubs, working in-place
231 void substituteMembers( std::list< Declaration* >& members, const std::list< TypeDecl* >& baseParams, const std::list< TypeExpr* >& typeSubs ) {
232 // substitute types into new members
233 TypeSubstitution subs( baseParams.begin(), baseParams.end(), typeSubs.begin() );
234 for ( std::list< Declaration* >::iterator member = members.begin(); member != members.end(); ++member ) {
235 subs.apply(*member);
236 }
237 }
238
239 /// Strips the instances's type parameters
240 void stripInstParams( ReferenceToType *inst ) {
241 deleteAll( inst->get_parameters() );
242 inst->get_parameters().clear();
243 }
244
245 void GenericInstantiator::stripDtypeParams( AggregateDecl *base, std::list< TypeDecl* >& baseParams, const std::list< TypeExpr* >& typeSubs ) {
246 substituteMembers( base->get_members(), baseParams, typeSubs );
247
248 deleteAll( baseParams );
249 baseParams.clear();
250
251 dtypeStatics.insert( base );
252 }
253
254 Type* GenericInstantiator::mutate( StructInstType *inst ) {
255 // mutate subtypes
256 Type *mutated = Mutator::mutate( inst );
257 inst = dynamic_cast< StructInstType* >( mutated );
258 if ( ! inst ) return mutated;
259
260 // exit early if no need for further mutation
261 if ( inst->get_parameters().empty() ) return inst;
262
263 // check for an already-instantiatiated dtype-static type
264 if ( dtypeStatics.find( inst->get_baseStruct() ) != dtypeStatics.end() ) {
265 stripInstParams( inst );
266 return inst;
267 }
268
269 // check if type can be concretely instantiated; put substitutions into typeSubs
270 assert( inst->get_baseParameters() && "Base struct has parameters" );
271 std::list< TypeExpr* > typeSubs;
272 genericType gt = makeSubstitutions( *inst->get_baseParameters(), inst->get_parameters(), typeSubs );
273 switch ( gt ) {
274 case genericType::dtypeStatic:
275 stripDtypeParams( inst->get_baseStruct(), *inst->get_baseParameters(), typeSubs );
276 stripInstParams( inst );
277 break;
278
279 case genericType::concrete: {
280 // make concrete instantiation of generic type
281 StructDecl *concDecl = lookup( inst, typeSubs );
282 if ( ! concDecl ) {
283 // set concDecl to new type, insert type declaration into statements to add
284 concDecl = new StructDecl( typeNamer.newName( inst->get_name() ) );
285 substituteMembers( inst->get_baseStruct()->get_members(), *inst->get_baseParameters(), typeSubs, concDecl->get_members() );
286 DeclMutator::addDeclaration( concDecl );
287 insert( inst, typeSubs, concDecl );
288 }
289 StructInstType *newInst = new StructInstType( inst->get_qualifiers(), concDecl->get_name() );
290 newInst->set_baseStruct( concDecl );
291
292 delete inst;
293 inst = newInst;
294 break;
295 }
296
297 case genericType::dynamic:
298 // do nothing
299 break;
300 }
301
302 deleteAll( typeSubs );
303 return inst;
304 }
305
306 Type* GenericInstantiator::mutate( UnionInstType *inst ) {
307 // mutate subtypes
308 Type *mutated = Mutator::mutate( inst );
309 inst = dynamic_cast< UnionInstType* >( mutated );
310 if ( ! inst ) return mutated;
311
312 // exit early if no need for further mutation
313 if ( inst->get_parameters().empty() ) return inst;
314
315 // check for an already-instantiatiated dtype-static type
316 if ( dtypeStatics.find( inst->get_baseUnion() ) != dtypeStatics.end() ) {
317 stripInstParams( inst );
318 return inst;
319 }
320
321 // check if type can be concretely instantiated; put substitutions into typeSubs
322 assert( inst->get_baseParameters() && "Base union has parameters" );
323 std::list< TypeExpr* > typeSubs;
324 genericType gt = makeSubstitutions( *inst->get_baseParameters(), inst->get_parameters(), typeSubs );
325 switch ( gt ) {
326 case genericType::dtypeStatic:
327 stripDtypeParams( inst->get_baseUnion(), *inst->get_baseParameters(), typeSubs );
328 stripInstParams( inst );
329 break;
330
331 case genericType::concrete:
332 {
333 // make concrete instantiation of generic type
334 UnionDecl *concDecl = lookup( inst, typeSubs );
335 if ( ! concDecl ) {
336 // set concDecl to new type, insert type declaration into statements to add
337 concDecl = new UnionDecl( typeNamer.newName( inst->get_name() ) );
338 substituteMembers( inst->get_baseUnion()->get_members(), *inst->get_baseParameters(), typeSubs, concDecl->get_members() );
339 DeclMutator::addDeclaration( concDecl );
340 insert( inst, typeSubs, concDecl );
341 }
342 UnionInstType *newInst = new UnionInstType( inst->get_qualifiers(), concDecl->get_name() );
343 newInst->set_baseUnion( concDecl );
344
345 delete inst;
346 inst = newInst;
347 break;
348 }
349 case genericType::dynamic:
350 // do nothing
351 break;
352 }
353
354 deleteAll( typeSubs );
355 return inst;
356 }
357
358 void GenericInstantiator::doBeginScope() {
359 DeclMutator::doBeginScope();
360 instantiations.beginScope();
361 dtypeStatics.beginScope();
362 }
363
364 void GenericInstantiator::doEndScope() {
365 DeclMutator::doEndScope();
366 instantiations.endScope();
367 dtypeStatics.endScope();
368 }
369
370} // namespace GenPoly
371
372// Local Variables: //
373// tab-width: 4 //
374// mode: c++ //
375// compile-command: "make install" //
376// End: //
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