* 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.
205 lines
8 KiB
Python
205 lines
8 KiB
Python
# -*- mode: python; coding: utf-8 -*-
|
|
# Copyright (C) 2015 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 <http://www.gnu.org/licenses/>.
|
|
|
|
import spot
|
|
|
|
|
|
aut = spot.translate('GFa & GFb', 'BA')
|
|
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', dicho=True)
|
|
assert min1.num_sets() == 2
|
|
assert min1.num_states() == 2
|
|
min1 = spot.sat_minimize(aut, acc='Rabin 1', assume=True)
|
|
assert min1.num_sets() == 2
|
|
assert min1.num_states() == 2
|
|
min1 = spot.sat_minimize(aut, acc='Rabin 1', assume=True, param=0)
|
|
assert min1.num_sets() == 2
|
|
assert min1.num_states() == 2
|
|
min1 = spot.sat_minimize(aut, acc='Rabin 1', assume=True, param=1)
|
|
assert min1.num_sets() == 2
|
|
assert min1.num_states() == 2
|
|
min1 = spot.sat_minimize(aut, acc='Rabin 1', assume=True, param=2)
|
|
assert min1.num_sets() == 2
|
|
assert min1.num_states() == 2
|
|
min1 = spot.sat_minimize(aut, acc='Rabin 1', assume=True, param=50)
|
|
assert min1.num_sets() == 2
|
|
assert min1.num_states() == 2
|
|
min1 = spot.sat_minimize(aut, acc='Rabin 1', incr=True)
|
|
assert min1.num_sets() == 2
|
|
assert min1.num_states() == 2
|
|
min1 = spot.sat_minimize(aut, acc='Rabin 1', incr=True, param=-1)
|
|
assert min1.num_sets() == 2
|
|
assert min1.num_states() == 2
|
|
min1 = spot.sat_minimize(aut, acc='Rabin 1', incr=True, param=0)
|
|
assert min1.num_sets() == 2
|
|
assert min1.num_states() == 2
|
|
min1 = spot.sat_minimize(aut, acc='Rabin 1', incr=True, param=1)
|
|
assert min1.num_sets() == 2
|
|
assert min1.num_states() == 2
|
|
min1 = spot.sat_minimize(aut, acc='Rabin 1', incr=True, param=2)
|
|
assert min1.num_sets() == 2
|
|
assert min1.num_states() == 2
|
|
min1 = spot.sat_minimize(aut, acc='Rabin 1', incr=True, param=50)
|
|
assert min1.num_sets() == 2
|
|
assert min1.num_states() == 2
|
|
|
|
|
|
min2 = spot.sat_minimize(aut, acc='Streett 2', dicho=True)
|
|
assert min2.num_sets() == 4
|
|
assert min2.num_states() == 1
|
|
min2 = spot.sat_minimize(aut, acc='Streett 2', assume=True)
|
|
assert min2.num_sets() == 4
|
|
assert min2.num_states() == 1
|
|
min2 = spot.sat_minimize(aut, acc='Streett 2', assume=True, param=0)
|
|
assert min2.num_sets() == 4
|
|
assert min2.num_states() == 1
|
|
min2 = spot.sat_minimize(aut, acc='Streett 2', assume=True, param=1)
|
|
assert min2.num_sets() == 4
|
|
assert min2.num_states() == 1
|
|
min2 = spot.sat_minimize(aut, acc='Streett 2', assume=True, param=2)
|
|
assert min2.num_sets() == 4
|
|
assert min2.num_states() == 1
|
|
min2 = spot.sat_minimize(aut, acc='Streett 2', assume=True, param=50)
|
|
assert min2.num_sets() == 4
|
|
assert min2.num_states() == 1
|
|
min2 = spot.sat_minimize(aut, acc='Streett 2', incr=True)
|
|
assert min2.num_sets() == 4
|
|
assert min2.num_states() == 1
|
|
min2 = spot.sat_minimize(aut, acc='Streett 2', incr=True, param=-1)
|
|
assert min2.num_sets() == 4
|
|
assert min2.num_states() == 1
|
|
min2 = spot.sat_minimize(aut, acc='Streett 2', incr=True, param=0)
|
|
assert min2.num_sets() == 4
|
|
assert min2.num_states() == 1
|
|
min2 = spot.sat_minimize(aut, acc='Streett 2', incr=True, param=1)
|
|
assert min2.num_sets() == 4
|
|
assert min2.num_states() == 1
|
|
min2 = spot.sat_minimize(aut, acc='Streett 2', incr=True, param=2)
|
|
assert min2.num_sets() == 4
|
|
assert min2.num_states() == 1
|
|
min2 = spot.sat_minimize(aut, acc='Streett 2', incr=True, param=50)
|
|
assert min2.num_sets() == 4
|
|
assert min2.num_states() == 1
|
|
|
|
|
|
min3 = spot.sat_minimize(aut, acc='Rabin 2',
|
|
state_based=True, max_states=5, dicho=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, assume=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, assume=True, param=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, assume=True, param=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, assume=True, param=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, assume=True, param=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, incr=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, incr=True, param=-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, incr=True, param=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, incr=True, param=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, incr=True, param=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, incr=True, param=50)
|
|
assert min3.num_sets() == 4
|
|
assert min3.num_states() == 3
|
|
|
|
|
|
min4 = spot.sat_minimize(aut, acc='parity max odd 3',
|
|
colored=True, dicho=True)
|
|
assert min4.num_sets() == 3
|
|
assert min4.num_states() == 2
|
|
min4 = spot.sat_minimize(aut, acc='parity max odd 3',
|
|
colored=True, assume=True)
|
|
assert min4.num_sets() == 3
|
|
assert min4.num_states() == 2
|
|
min4 = spot.sat_minimize(aut, acc='parity max odd 3',
|
|
colored=True, assume=True, param=0)
|
|
assert min4.num_sets() == 3
|
|
assert min4.num_states() == 2
|
|
min4 = spot.sat_minimize(aut, acc='parity max odd 3',
|
|
colored=True, assume=True, param=1)
|
|
assert min4.num_sets() == 3
|
|
assert min4.num_states() == 2
|
|
min4 = spot.sat_minimize(aut, acc='parity max odd 3',
|
|
colored=True, assume=True, param=2)
|
|
assert min4.num_sets() == 3
|
|
assert min4.num_states() == 2
|
|
min4 = spot.sat_minimize(aut, acc='parity max odd 3',
|
|
colored=True, assume=True, param=50)
|
|
assert min4.num_sets() == 3
|
|
assert min4.num_states() == 2
|
|
min4 = spot.sat_minimize(aut, acc='parity max odd 3',
|
|
colored=True, incr=True)
|
|
assert min4.num_sets() == 3
|
|
assert min4.num_states() == 2
|
|
min4 = spot.sat_minimize(aut, acc='parity max odd 3',
|
|
colored=True, incr=True, param=-1)
|
|
assert min4.num_sets() == 3
|
|
assert min4.num_states() == 2
|
|
min4 = spot.sat_minimize(aut, acc='parity max odd 3',
|
|
colored=True, incr=True, param=0)
|
|
assert min4.num_sets() == 3
|
|
assert min4.num_states() == 2
|
|
min4 = spot.sat_minimize(aut, acc='parity max odd 3',
|
|
colored=True, incr=True, param=1)
|
|
assert min4.num_sets() == 3
|
|
assert min4.num_states() == 2
|
|
min4 = spot.sat_minimize(aut, acc='parity max odd 3',
|
|
colored=True, incr=True, param=2)
|
|
assert min4.num_sets() == 3
|
|
assert min4.num_states() == 2
|
|
min4 = spot.sat_minimize(aut, acc='parity max odd 3',
|
|
colored=True, incr=True, param=50)
|
|
assert min4.num_sets() == 3
|
|
assert min4.num_states() == 2
|