spot 2.16
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bdddict.hh
1// -*- coding: utf-8 -*-
2// Copyright (C) by the Spot authors, see the AUTHORS file for details.
3//
4// This file is part of Spot, a model checking library.
5//
6// Spot is free software; you can redistribute it and/or modify it
7// under the terms of the GNU General Public License as published by
8// the Free Software Foundation; either version 3 of the License, or
9// (at your option) any later version.
10//
11// Spot is distributed in the hope that it will be useful, but WITHOUT
12// ANY WARRANTY; without even the implied warranty of MERCHANTABILITY
13// or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public
14// License for more details.
15//
16// You should have received a copy of the GNU General Public License
17// along with this program. If not, see <http://www.gnu.org/licenses/>.
18
19#pragma once
20
21#include <list>
22#include <set>
23#include <map>
24#include <iosfwd>
25#include <bddx.h>
26#include <vector>
27#include <memory>
28#include <spot/tl/formula.hh>
29
30namespace spot
31{
34 class bdd_dict_priv;
35
52 class SPOT_API bdd_dict
53 {
54 bdd_dict_priv* priv_;
55 public:
56
57 bdd_dict();
58
64
66 typedef std::map<formula, int> fv_map;
68 typedef std::map<int, formula> vf_map;
69
72
74 typedef std::set<const void*> ref_set;
75
81 {
82 anon = 0,
84 acc
85 };
86
91 struct bdd_info {
92 bdd_info() noexcept: type(anon) {}
96 };
98 typedef std::vector<bdd_info> bdd_info_map;
101
113 int register_proposition(formula f, const void* for_me);
114
115 template <typename T>
116 int register_proposition(formula f, std::shared_ptr<T> for_me)
117 {
118 return register_proposition(f, for_me.get());
119 }
121
128 int has_registered_proposition(formula f, const void* me);
129
130 template <typename T>
131 int has_registered_proposition(formula f, std::shared_ptr<T> for_me)
132 {
133 return has_registered_proposition(f, for_me.get());
134 }
136
137 // \brief Return the BDD variable number for a registered proposition.
138 //
139 // Throws std::out_of_range if \a f is not a known proposition.
145 {
146 return var_map.at(f);
147 }
148
155 formula ap_from_var(int var) const
156 {
157 if (unsigned(var) < bdd_map.size()
158 && bdd_map[var].type == bdd_dict::var)
159 return bdd_map[var].f;
160 return nullptr;
161 }
162
174 int register_acceptance_variable(formula f, const void* for_me);
175
176 template <typename T>
177 int register_acceptance_variable(formula f, std::shared_ptr<T> for_me)
178 {
179 return register_acceptance_variable(f, for_me.get());
180 }
182
191 int register_anonymous_variables(int n, const void* for_me);
192
193 template <typename T>
194 int register_anonymous_variables(int n, std::shared_ptr<T> for_me)
195 {
196 return register_anonymous_variables(n, for_me.get());
197 }
199
207 void register_all_variables_of(const void* from_other, const void* for_me);
208
209 template <typename T>
210 void register_all_variables_of(const void* from_other,
211 std::shared_ptr<T> for_me)
212 {
213 register_all_variables_of(from_other, for_me.get());
214 }
215
216 template <typename T>
217 void register_all_variables_of(std::shared_ptr<T> from_other,
218 const void* for_me)
219 {
220 register_all_variables_of(from_other.get(), for_me);
221 }
222
223 template <typename T, typename U>
224 void register_all_variables_of(std::shared_ptr<T> from_other,
225 std::shared_ptr<U> for_me)
226 {
227 register_all_variables_of(from_other.get(), for_me.get());
228 }
230
238 void register_all_propositions_of(const void* from_other,
239 const void* for_me);
240
241 template <typename T>
242 void register_all_propositions_of(const void* from_other,
243 std::shared_ptr<T> for_me)
244 {
245 register_all_propositions_of(from_other, for_me.get());
246 }
247
248 template <typename T>
249 void register_all_propositions_of(std::shared_ptr<T> from_other,
250 const void* for_me)
251 {
252 register_all_propotitions_of(from_other.get(), for_me);
253 }
254
255 template <typename T, typename U>
256 void register_all_propositions_of(std::shared_ptr<T> from_other,
257 std::shared_ptr<U> for_me)
258 {
259 register_all_propositions_of(from_other.get(), for_me.get());
260 }
262
266 void unregister_all_my_variables(const void* me);
267
270 void unregister_variable(int var, const void* me);
271
272 template <typename T>
273 void unregister_variable(int var, std::shared_ptr<T> me)
274 {
275 unregister_variable(var, me.get());
276 }
278
281 std::ostream& dump(std::ostream& os) const;
282
294 void assert_emptiness() const;
295
296 private:
297 // Disallow copy.
298 bdd_dict(const bdd_dict& other) = delete;
299 bdd_dict& operator=(const bdd_dict& other) = delete;
300 };
301
304 typedef std::shared_ptr<bdd_dict> bdd_dict_ptr;
305
309 {
310 return std::make_shared<bdd_dict>();
311 }
312
317 {
318 public:
319 bdd_dict_preorder() = default;
322 : dict_(dict)
323 {
324 }
325
327 operator bdd_dict_ptr() const
328 {
329 return dict_;
330 }
331
334 {
335 return dict_;
336 }
337
341 {
342 return dict_->register_proposition(f, this);
343 }
344
347 int register_proposition(const std::string& f)
348 {
350 }
351
353 {
354 dict_->unregister_all_my_variables(this);
355 }
356
357 private:
358 bdd_dict_ptr dict_ = make_bdd_dict();
359 };
360
361}
A BDD dictionary wrapper that pre-registers atomic propositions before use.
Definition bdddict.hh:317
int register_proposition(const std::string &f)
Register atomic proposition f (by name) and return its BDD variable number.
Definition bdddict.hh:347
int register_proposition(formula f)
Register atomic proposition f and return its BDD variable number.
Definition bdddict.hh:340
bdd_dict_preorder(bdd_dict_ptr dict)
Construct from an existing bdd_dict.
Definition bdddict.hh:321
bdd_dict_ptr get_dict() const
Return the underlying bdd_dict shared pointer.
Definition bdddict.hh:333
Map BDD variables to formulas.
Definition bdddict.hh:53
std::set< const void * > ref_set
BDD-variable reference counts.
Definition bdddict.hh:74
void register_all_propositions_of(std::shared_ptr< T > from_other, std::shared_ptr< U > for_me)
Duplicate the proposition usage of another object.
Definition bdddict.hh:256
void register_all_propositions_of(const void *from_other, std::shared_ptr< T > for_me)
Duplicate the proposition usage of another object.
Definition bdddict.hh:242
std::ostream & dump(std::ostream &os) const
Dump all variables for debugging.
int register_acceptance_variable(formula f, const void *for_me)
Register an acceptance variable.
void assert_emptiness() const
Make sure the dictionary is empty.
void register_all_propositions_of(std::shared_ptr< T > from_other, const void *for_me)
Duplicate the proposition usage of another object.
Definition bdddict.hh:249
void register_all_variables_of(std::shared_ptr< T > from_other, const void *for_me)
Duplicate the variable usage of another object.
Definition bdddict.hh:217
std::map< int, formula > vf_map
BDD-variable-to-formula maps.
Definition bdddict.hh:68
std::map< formula, int > fv_map
Formula-to-BDD-variable maps.
Definition bdddict.hh:66
void unregister_variable(int var, std::shared_ptr< T > me)
Release a variable used by me.
Definition bdddict.hh:273
int register_proposition(formula f, const void *for_me)
Register an atomic proposition.
void unregister_all_my_variables(const void *me)
Release all variables used by an object.
int register_proposition(formula f, std::shared_ptr< T > for_me)
Register an atomic proposition.
Definition bdddict.hh:116
int register_anonymous_variables(int n, const void *for_me)
Register anonymous BDD variables.
int has_registered_proposition(formula f, std::shared_ptr< T > for_me)
Whether a proposition has already been registered.
Definition bdddict.hh:131
void register_all_variables_of(const void *from_other, std::shared_ptr< T > for_me)
Duplicate the variable usage of another object.
Definition bdddict.hh:210
bdd_info_map bdd_map
Table mapping BDD variable numbers to their meaning.
Definition bdddict.hh:100
int has_registered_proposition(formula f, const void *me)
Whether a proposition has already been registered.
void register_all_propositions_of(const void *from_other, const void *for_me)
Duplicate the proposition usage of another object.
fv_map var_map
Maps atomic propositions to BDD variables.
Definition bdddict.hh:70
void unregister_variable(int var, const void *me)
Release a variable used by me.
std::vector< bdd_info > bdd_info_map
Type of the per-variable information table.
Definition bdddict.hh:98
int register_anonymous_variables(int n, std::shared_ptr< T > for_me)
Register anonymous BDD variables.
Definition bdddict.hh:194
void register_all_variables_of(std::shared_ptr< T > from_other, std::shared_ptr< U > for_me)
Duplicate the variable usage of another object.
Definition bdddict.hh:224
fv_map acc_map
Maps acceptance conditions to BDD variables.
Definition bdddict.hh:71
formula ap_from_var(int var) const
Return the atomic proposition associated to a BDD variable.
Definition bdddict.hh:155
int register_acceptance_variable(formula f, std::shared_ptr< T > for_me)
Register an acceptance variable.
Definition bdddict.hh:177
int varnum(formula f)
Return the BDD variable number for a registered proposition.
Definition bdddict.hh:144
~bdd_dict()
Destroy the BDD dict.
void register_all_variables_of(const void *from_other, const void *for_me)
Duplicate the variable usage of another object.
var_type
Type of a BDD variable in the dictionary.
Definition bdddict.hh:81
@ var
Atomic-proposition variable.
Definition bdddict.hh:83
Main class for temporal logic formula.
Definition formula.hh:847
static formula ap(const std::string &name)
Build an atomic proposition.
Definition formula.hh:1049
LTL/PSL formula interface.
bdd_dict_ptr make_bdd_dict()
Create a new, empty bdd_dict wrapped in a shared pointer.
Definition bdddict.hh:308
std::shared_ptr< bdd_dict > bdd_dict_ptr
Shared pointer to a bdd_dict.
Definition bdddict.hh:304
Definition automata.hh:26
Information stored for one BDD variable.
Definition bdddict.hh:91
ref_set refs
Set of objects referencing this variable.
Definition bdddict.hh:95
formula f
Formula encoded (unused when type==anon).
Definition bdddict.hh:94
var_type type
Type of this BDD variable.
Definition bdddict.hh:93

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