# -*- mode: python; coding: utf-8 -*- # Copyright (C) 2015, 2020 Laboratoire de Recherche et Développement # de l'Epita # # This file is part of Spot, a model checking library. # # Spot is free software; you can redistribute it and/or modify it # under the terms of the GNU General Public License as published by # the Free Software Foundation; either version 3 of the License, or # (at your option) any later version. # # Spot is distributed in the hope that it will be useful, but WITHOUT # ANY WARRANTY; without even the implied warranty of MERCHANTABILITY # or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public # License for more details. # # You should have received a copy of the GNU General Public License # along with this program. If not, see . import spot aut = spot.translate('GFa & GFb', 'Buchi', 'SBAcc') assert aut.num_sets() == 1 assert aut.num_states() == 3 assert aut.is_deterministic() min1 = spot.sat_minimize(aut, acc='Rabin 1') assert min1.num_sets() == 2 assert min1.num_states() == 2 min1 = spot.sat_minimize(aut, acc='Rabin 1', sat_langmap=True) assert min1.num_sets() == 2 assert min1.num_states() == 2 min1 = spot.sat_minimize(aut, acc='Rabin 1', sat_incr=1) assert min1.num_sets() == 2 assert min1.num_states() == 2 min1 = spot.sat_minimize(aut, acc='Rabin 1', sat_incr=1, sat_incr_steps=0) assert min1.num_sets() == 2 assert min1.num_states() == 2 min1 = spot.sat_minimize(aut, acc='Rabin 1', sat_incr=1, sat_incr_steps=1) assert min1.num_sets() == 2 assert min1.num_states() == 2 min1 = spot.sat_minimize(aut, acc='Rabin 1', sat_incr=1, sat_incr_steps=2) assert min1.num_sets() == 2 assert min1.num_states() == 2 min1 = spot.sat_minimize(aut, acc='Rabin 1', sat_incr=1, sat_incr_steps=50) assert min1.num_sets() == 2 assert min1.num_states() == 2 min1 = spot.sat_minimize(aut, acc='Rabin 1', sat_incr=2) assert min1.num_sets() == 2 assert min1.num_states() == 2 min1 = spot.sat_minimize(aut, acc='Rabin 1', sat_incr=2, sat_incr_steps=-1) assert min1.num_sets() == 2 assert min1.num_states() == 2 min1 = spot.sat_minimize(aut, acc='Rabin 1', sat_incr=2, sat_incr_steps=0) assert min1.num_sets() == 2 assert min1.num_states() == 2 min1 = spot.sat_minimize(aut, acc='Rabin 1', sat_incr=2, sat_incr_steps=1) assert min1.num_sets() == 2 assert min1.num_states() == 2 min1 = spot.sat_minimize(aut, acc='Rabin 1', sat_incr=2, sat_incr_steps=2) assert min1.num_sets() == 2 assert min1.num_states() == 2 min1 = spot.sat_minimize(aut, acc='Rabin 1', sat_incr=2, sat_incr_steps=50) assert min1.num_sets() == 2 assert min1.num_states() == 2 min1 = spot.sat_minimize(aut, acc='Rabin 1', sat_naive=True) assert min1.num_sets() == 2 assert min1.num_states() == 2 min2 = spot.sat_minimize(aut, acc='Streett 2') assert min2.num_sets() == 4 assert min2.num_states() == 1 min2 = spot.sat_minimize(aut, acc='Streett 2', sat_langmap=True) assert min2.num_sets() == 4 assert min2.num_states() == 1 min2 = spot.sat_minimize(aut, acc='Streett 2', sat_incr=1) assert min2.num_sets() == 4 assert min2.num_states() == 1 min2 = spot.sat_minimize(aut, acc='Streett 2', sat_incr=1, sat_incr_steps=0) assert min2.num_sets() == 4 assert min2.num_states() == 1 min2 = spot.sat_minimize(aut, acc='Streett 2', sat_incr=1, sat_incr_steps=1) assert min2.num_sets() == 4 assert min2.num_states() == 1 min2 = spot.sat_minimize(aut, acc='Streett 2', sat_incr=1, sat_incr_steps=2) assert min2.num_sets() == 4 assert min2.num_states() == 1 min2 = spot.sat_minimize(aut, acc='Streett 2', sat_incr=1, sat_incr_steps=50) assert min2.num_sets() == 4 assert min2.num_states() == 1 min2 = spot.sat_minimize(aut, acc='Streett 2', sat_incr=2) assert min2.num_sets() == 4 assert min2.num_states() == 1 min2 = spot.sat_minimize(aut, acc='Streett 2', sat_incr=2, sat_incr_steps=-1) assert min2.num_sets() == 4 assert min2.num_states() == 1 min2 = spot.sat_minimize(aut, acc='Streett 2', sat_incr=2, sat_incr_steps=0) assert min2.num_sets() == 4 assert min2.num_states() == 1 min2 = spot.sat_minimize(aut, acc='Streett 2', sat_incr=2, sat_incr_steps=1) assert min2.num_sets() == 4 assert min2.num_states() == 1 min2 = spot.sat_minimize(aut, acc='Streett 2', sat_incr=2, sat_incr_steps=2) assert min2.num_sets() == 4 assert min2.num_states() == 1 min2 = spot.sat_minimize(aut, acc='Streett 2', sat_incr=2, sat_incr_steps=50) assert min2.num_sets() == 4 assert min2.num_states() == 1 min2 = spot.sat_minimize(aut, acc='Streett 2', sat_naive=True) assert min2.num_sets() == 4 assert min2.num_states() == 1 min3 = spot.sat_minimize(aut, acc='Rabin 2', state_based=True, max_states=5) assert min3.num_sets() == 4 assert min3.num_states() == 3 min3 = spot.sat_minimize(aut, acc='Rabin 2', state_based=True, max_states=5, sat_langmap=True) assert min3.num_sets() == 4 assert min3.num_states() == 3 min3 = spot.sat_minimize(aut, acc='Rabin 2', state_based=True, max_states=5, sat_incr=1) assert min3.num_sets() == 4 assert min3.num_states() == 3 min3 = spot.sat_minimize(aut, acc='Rabin 2', state_based=True, max_states=5, sat_incr=1, sat_incr_steps=0) assert min3.num_sets() == 4 assert min3.num_states() == 3 min3 = spot.sat_minimize(aut, acc='Rabin 2', state_based=True, max_states=5, sat_incr=1, sat_incr_steps=1) assert min3.num_sets() == 4 assert min3.num_states() == 3 min3 = spot.sat_minimize(aut, acc='Rabin 2', state_based=True, max_states=5, sat_incr=1, sat_incr_steps=2) assert min3.num_sets() == 4 assert min3.num_states() == 3 min3 = spot.sat_minimize(aut, acc='Rabin 2', state_based=True, max_states=5, sat_incr=1, sat_incr_steps=50) assert min3.num_sets() == 4 assert min3.num_states() == 3 min3 = spot.sat_minimize(aut, acc='Rabin 2', state_based=True, max_states=5, sat_incr=2) assert min3.num_sets() == 4 assert min3.num_states() == 3 min3 = spot.sat_minimize(aut, acc='Rabin 2', state_based=True, max_states=5, sat_incr=2, sat_incr_steps=-1) assert min3.num_sets() == 4 assert min3.num_states() == 3 min3 = spot.sat_minimize(aut, acc='Rabin 2', state_based=True, max_states=5, sat_incr=2, sat_incr_steps=0) assert min3.num_sets() == 4 assert min3.num_states() == 3 min3 = spot.sat_minimize(aut, acc='Rabin 2', state_based=True, max_states=5, sat_incr=2, sat_incr_steps=1) assert min3.num_sets() == 4 assert min3.num_states() == 3 min3 = spot.sat_minimize(aut, acc='Rabin 2', state_based=True, max_states=5, sat_incr=2, sat_incr_steps=2) assert min3.num_sets() == 4 assert min3.num_states() == 3 min3 = spot.sat_minimize(aut, acc='Rabin 2', state_based=True, max_states=5, sat_incr=2, sat_incr_steps=50) assert min3.num_sets() == 4 assert min3.num_states() == 3 min3 = spot.sat_minimize(aut, acc='Rabin 2', state_based=True, max_states=5, sat_naive=True) assert min3.num_sets() == 4 assert min3.num_states() == 3 min4 = spot.sat_minimize(aut, acc='parity max odd 3', colored=True) assert min4.num_sets() == 3 assert min4.num_states() == 2 min4 = spot.sat_minimize(aut, acc='parity max odd 3', colored=True, sat_langmap=True) assert min4.num_sets() == 3 assert min4.num_states() == 2 min4 = spot.sat_minimize(aut, acc='parity max odd 3', colored=True, sat_incr=1) assert min4.num_sets() == 3 assert min4.num_states() == 2 min4 = spot.sat_minimize(aut, acc='parity max odd 3', colored=True, sat_incr=1, sat_incr_steps=0) assert min4.num_sets() == 3 assert min4.num_states() == 2 min4 = spot.sat_minimize(aut, acc='parity max odd 3', colored=True, sat_incr=1, sat_incr_steps=1) assert min4.num_sets() == 3 assert min4.num_states() == 2 min4 = spot.sat_minimize(aut, acc='parity max odd 3', colored=True, sat_incr=1, sat_incr_steps=2) assert min4.num_sets() == 3 assert min4.num_states() == 2 min4 = spot.sat_minimize(aut, acc='parity max odd 3', colored=True, sat_incr=1, sat_incr_steps=50) assert min4.num_sets() == 3 assert min4.num_states() == 2 min4 = spot.sat_minimize(aut, acc='parity max odd 3', colored=True, sat_incr=2) assert min4.num_sets() == 3 assert min4.num_states() == 2 min4 = spot.sat_minimize(aut, acc='parity max odd 3', colored=True, sat_incr=2, sat_incr_steps=-1) assert min4.num_sets() == 3 assert min4.num_states() == 2 min4 = spot.sat_minimize(aut, acc='parity max odd 3', colored=True, sat_incr=2, sat_incr_steps=0) assert min4.num_sets() == 3 assert min4.num_states() == 2 min4 = spot.sat_minimize(aut, acc='parity max odd 3', colored=True, sat_incr=2, sat_incr_steps=1) assert min4.num_sets() == 3 assert min4.num_states() == 2 min4 = spot.sat_minimize(aut, acc='parity max odd 3', colored=True, sat_incr=2, sat_incr_steps=2) assert min4.num_sets() == 3 assert min4.num_states() == 2 min4 = spot.sat_minimize(aut, acc='parity max odd 3', colored=True, sat_incr=2, sat_incr_steps=50) assert min4.num_sets() == 3 assert min4.num_states() == 2 min4 = spot.sat_minimize(aut, acc='parity max odd 3', colored=True, sat_naive=True) assert min4.num_sets() == 3 assert min4.num_states() == 2