* python/spot/__init__.py: Handle 'dicho' option in 'sat_minimize'. * spot/priv/satcommon.cc: Implement get_number_of_distinct_vals. * spot/priv/satcommon.hh: Declare get_number_of_distinct_vals. * spot/twaalgos/dtbasat.cc: Use get_number_of_distinct_vals. * spot/twaalgos/dtbasat.hh: Change dichotomy function's prototype. * spot/twaalgos/dtwasat.cc: Use get_number_of_distinct_vals. * spot/twaalgos/dtwasat.hh: Change dichotomy function's prototype. Handle options. * spot/twaalgos/postproc.cc: Handle options. * spot/twaalgos/postproc.hh: Add dicho_langmap_ var for options. * tests/core/satmin2.test: Add tests for dichotomy. * tests/core/satmin.test: Add tests for dichotomy. * tests/python/satmin.py: Replace 'dichotomy' with 'dicho' option.
146 lines
6.2 KiB
C++
146 lines
6.2 KiB
C++
// -*- coding: utf-8 -*-
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// Copyright (C) 2013, 2014, 2015 Laboratoire de Recherche et
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// Développement de l'Epita.
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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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#pragma once
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#include <spot/twa/twagraph.hh>
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namespace spot
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{
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/// \brief Attempt to synthetize an equivalent deterministic TωA
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/// with a SAT solver.
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///
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/// \param a the input TωA. It should be a deterministic TωA.
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///
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/// \param target_acc_number is the number of acceptance sets wanted
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/// in the result.
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///
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/// \param target_acc the target acceptance condition
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///
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/// \param target_state_number is the desired number of states in
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/// the result. The output may have less than \a
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/// target_state_number reachable states.
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///
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/// \param state_based set to true to force all outgoing transitions
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/// of a state to share the same acceptance conditions.
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///
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/// \param colored if true, force all transitions to belong to
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/// exactly one acceptance set.
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///
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/// This functions attempts to find a TωA with \a target_acc_number
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/// acceptance sets and target_state_number states that is
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/// equivalent to \a a. If no such TωA is found, a null pointer is
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/// returned.
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SPOT_API twa_graph_ptr
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dtwa_sat_synthetize(const const_twa_graph_ptr& a,
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unsigned target_acc_number,
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const acc_cond::acc_code& target_acc,
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int target_state_number,
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bool state_based = false,
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bool colored = false);
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/// \brief Attempt to minimize a deterministic TωA with a SAT solver.
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///
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/// This calls dtwa_sat_synthetize() in a loop, with a decreasing
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/// number of states, and returns the last successfully built TGBA.
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///
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/// If no smaller TGBA exists, this returns a null pointer.
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SPOT_API twa_graph_ptr
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dtwa_sat_minimize(const const_twa_graph_ptr& a,
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unsigned target_acc_number,
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const acc_cond::acc_code& target_acc,
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bool state_based = false,
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int max_states = -1,
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bool colored = false);
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/// \brief Attempt to minimize a deterministic TωA with a SAT solver.
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///
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/// This calls dtwa_sat_synthetize() in a loop, but attempting to
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/// find the minimum number of states using a binary search.
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//
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/// If no smaller TBA exist, this returns a null pointer.
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SPOT_API twa_graph_ptr
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dtwa_sat_minimize_dichotomy(const const_twa_graph_ptr& a,
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unsigned target_acc_number,
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const acc_cond::acc_code& target_acc,
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bool state_based = false,
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bool langmap = false,
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int max_states = -1,
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bool colored = false);
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/// \brief Attempt to minimize a deterministic TωA with a SAT solver.
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///
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/// It acts like dtwa_sat_synthetisze() and obtains a first minimized
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/// automaton. Then, incrementally, it encodes and solves the deletion of one
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/// state as many time as param value.
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/// If param >= 0, this process is fully repeated until the minimal automaton
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/// is found. Otherwise, it continues to delete states one by one
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/// incrementally until the minimal automaton is found.
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///
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/// If no smaller TGBA exists, this returns a null pointer.
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SPOT_API twa_graph_ptr
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dtwa_sat_minimize_incr(const const_twa_graph_ptr& a,
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unsigned target_acc_number,
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const acc_cond::acc_code& target_acc,
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bool state_based = false,
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int max_states = -1,
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bool colored = false,
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int param = 2);
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/// \brief Attempt to minimize a deterministic TωA with a SAT solver.
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///
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/// This acts like dtba_sat_synthetize() and obtains a first minimized
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/// automaton. Then, it adds <param> assumptions, such that each assumption
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/// removes a new state and implies the previous assumptions. A first
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/// resolution is attempted assuming the last assumption (thus involving all
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/// the previous ones). If the problem is SAT several stages have just been
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/// won and all this process is restarted. Otherwise, it is known that the
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/// minimal automaton can be obtained with fewer assumption. This
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/// automaton is found dichotomously.
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///
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/// If no smaller TGBA exists, this returns a null pointer.
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SPOT_API twa_graph_ptr
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dtwa_sat_minimize_assume(const const_twa_graph_ptr& a,
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unsigned target_acc_number,
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const acc_cond::acc_code& target_acc,
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bool state_based = false,
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int max_states = -1,
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bool colored = false,
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int param = 6);
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/// \brief High-level interface to SAT-based minimization
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///
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/// Minimize the automaton \a aut, using options \a opt.
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/// These options are given as a comma-separated list of
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/// assignments of the form:
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///
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/// states = 10 // synthetize automaton with fixed number of states
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/// max-states = 20 // minimize starting from this upper bound
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/// acc = "generalized-Buchi 2"
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/// acc = "Rabin 3"
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/// acc = "same" /* default */
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/// dichotomy = 1 // use dichotomy
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/// incr = 1 // use satsolver incrementally to attempt to delete a
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/// fixed number of states before starting from scratch
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/// incr < 0 // use satsolver incrementally, never restart
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/// colored = 1 // build a colored TωA
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///
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SPOT_API twa_graph_ptr
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sat_minimize(twa_graph_ptr aut, const char* opt, bool state_based = false);
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}
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