This helps issue #26 considerably, but I'm not closing it because there are a few places here and there that can be cleaned up. For instance build_state_set in minimize.cc should be rewritten. * src/misc/bitvect.hh (bitvector_array::clear_all): New method. * src/tgbaalgos/powerset.cc (tgba_powerset): Rewrite it. * src/tgbaalgos/powerset.hh (power_map): Simplify.
142 lines
5.1 KiB
C++
142 lines
5.1 KiB
C++
// -*- coding: utf-8 -*-
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// Copyright (C) 2011, 2013, 2014, 2015 Laboratoire de Recherche et
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// Développement de l'Epita.
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// Copyright (C) 2004 Laboratoire d'Informatique de Paris 6 (LIP6),
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// département Systèmes Répartis Coopératifs (SRC), Université Pierre
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// et Marie Curie.
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//
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// This file is part of Spot, a model checking library.
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//
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// Spot is free software; you can redistribute it and/or modify it
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// under the terms of the GNU General Public License as published by
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// the Free Software Foundation; either version 3 of the License, or
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// (at your option) any later version.
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//
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// Spot is distributed in the hope that it will be useful, but WITHOUT
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// ANY WARRANTY; without even the implied warranty of MERCHANTABILITY
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// or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public
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// License for more details.
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//
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// You should have received a copy of the GNU General Public License
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// along with this program. If not, see <http://www.gnu.org/licenses/>.
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#ifndef SPOT_TGBAALGOS_POWERSET_HH
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# define SPOT_TGBAALGOS_POWERSET_HH
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# include <set>
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# include <vector>
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# include "tgba/tgbagraph.hh"
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namespace spot
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{
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struct SPOT_API power_map
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{
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typedef std::set<unsigned> power_state;
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std::vector<power_state> map_;
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const power_state&
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states_of(unsigned s) const
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{
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return map_.at(s);
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}
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};
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/// \ingroup tgba_misc
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/// \brief Build a deterministic automaton, ignoring acceptance conditions.
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///
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/// This create a deterministic automaton that recognizes the
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/// same language as \a aut would if its acceptance conditions
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/// were ignored. This is the classical powerset algorithm.
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///
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/// If \a pm is supplied it will be filled with the set of original states
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/// associated to each state of the deterministic automaton.
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/// The \a merge argument can be set to false to prevent merging of
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/// transitions.
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//@{
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SPOT_API tgba_digraph_ptr
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tgba_powerset(const const_tgba_digraph_ptr& aut,
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power_map& pm, bool merge = true);
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SPOT_API tgba_digraph_ptr
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tgba_powerset(const const_tgba_digraph_ptr& aut);
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//@}
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/// \brief Determinize a TBA using the powerset construction.
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///
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/// The input automaton should have at most one acceptance
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/// condition. Beware that not all Büchi automata can be
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/// determinized, and this procedure does not ensure that the
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/// produced automaton is equivalent to \a aut.
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///
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/// The construction is adapted from Section 3.2 of:
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/// \verbatim
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/// @InProceedings{ dax.07.atva,
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/// author = {Christian Dax and Jochen Eisinger and Felix Klaedtke},
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/// title = {Mechanizing the Powerset Construction for Restricted
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/// Classes of {$\omega$}-Automata},
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/// year = 2007,
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/// series = {Lecture Notes in Computer Science},
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/// publisher = {Springer-Verlag},
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/// volume = 4762,
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/// booktitle = {Proceedings of the 5th International Symposium on
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/// Automated Technology for Verification and Analysis
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/// (ATVA'07)},
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/// editor = {Kedar S. Namjoshi and Tomohiro Yoneda and Teruo Higashino
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/// and Yoshio Okamura},
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/// month = oct
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/// }
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/// \endverbatim
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/// only adapted to work on TBA rather than BA.
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///
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/// If \a threshold_states is non null, abort the construction
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/// whenever it would build an automaton that is more than \a
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/// threshold_states time bigger (in term of states) than the
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/// original automaton.
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///
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/// If \a threshold_cycles is non null, abort the construction
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/// whenever an SCC of the constructed automaton has more than \a
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/// threshold_cycles cycles.
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SPOT_API tgba_digraph_ptr
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tba_determinize(const const_tgba_digraph_ptr& aut,
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unsigned threshold_states = 0,
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unsigned threshold_cycles = 0);
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/// \brief Determinize a TBA and make sure it is correct.
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///
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/// Apply tba_determinize(), then check that the result is
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/// equivalent. If it isn't, return the original automaton.
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///
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/// Only one of \a f or \a neg_aut needs to be supplied. If
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/// \a neg_aut is not given, it will be built from \a f.
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///
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/// \param aut the automaton to minimize
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///
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/// \param threshold_states if non null, abort the construction
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/// whenever it would build an automaton that is more than \a
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/// threshold time bigger (in term of states) than the original
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/// automaton.
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///
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/// \param threshold_cycles can be used to abort the construction
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/// if the number of cycles in a SCC of the constructed automaton
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/// is bigger than the supplied value.
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///
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/// \param f the formula represented by the original automaton
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///
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/// \param neg_aut an automaton representing the negation of \a aut
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///
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/// \return a new tgba if the automaton could be determinized, \a aut if
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/// the automaton cannot be determinized, 0 if we do not know if the
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/// determinization is correct because neither \a f nor \a neg_aut
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/// were supplied.
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SPOT_API tgba_digraph_ptr
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tba_determinize_check(const tgba_digraph_ptr& aut,
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unsigned threshold_states = 0,
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unsigned threshold_cycles = 0,
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const ltl::formula* f = 0,
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const_tgba_digraph_ptr neg_aut = 0);
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}
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#endif // SPOT_TGBAALGOS_POWERSET_HH
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