A type such as 'const tgba_digraph*' and 'tgba_digraph*' are replaced by 'const_tgba_digraph_ptr' and 'tgba_digraph_ptr'. Additionally 'new tgba_digraph(...)' is replaced by 'make_tgba_digraph(...)'. This convention is followed by all automata types. Those smart pointers should normally be passed by const reference as input of function to avoid the atomic increments/decrements, but I probably missed a few, as this huge patch took me nearly 12h. * src/kripke/fwd.hh, src/tgba/fwd.hh: New files. * src/kripke/Makefile.am, src/tgba/Makefile.am: Adjust. * iface/dve2/dve2.cc, iface/dve2/dve2.hh, iface/dve2/dve2check.cc, src/bin/common_output.hh, src/bin/dstar2tgba.cc, src/bin/ltl2tgba.cc, src/bin/ltl2tgta.cc, src/bin/ltlcross.cc, src/bin/ltlfilt.cc, src/dstarparse/dra2ba.cc, src/dstarparse/dstar2tgba.cc, src/dstarparse/dstarparse.yy, src/dstarparse/nra2nba.cc, src/dstarparse/nsa2tgba.cc, src/dstarparse/public.hh, src/graphtest/tgbagraph.cc, src/kripke/fairkripke.hh, src/kripke/kripke.hh, src/kripke/kripkeexplicit.cc, src/kripke/kripkeexplicit.hh, src/kripke/kripkeprint.cc, src/kripke/kripkeprint.hh, src/kripkeparse/kripkeparse.yy, src/kripkeparse/public.hh, src/kripketest/parse_print_test.cc, src/ltlvisit/apcollect.cc, src/ltlvisit/apcollect.hh, src/ltlvisit/contain.cc, src/ltlvisit/contain.hh, src/neverparse/neverclaimparse.yy, src/neverparse/public.hh, src/priv/accmap.hh, src/priv/countstates.cc, src/priv/countstates.hh, src/saba/saba.hh, src/saba/sabacomplementtgba.cc, src/saba/sabacomplementtgba.hh, src/sabaalgos/sabadotty.cc, src/sabaalgos/sabadotty.hh, src/sabaalgos/sabareachiter.cc, src/sabaalgos/sabareachiter.hh, src/sabatest/sabacomplementtgba.cc, src/ta/ta.hh, src/ta/taexplicit.cc, src/ta/taexplicit.hh, src/ta/taproduct.cc, src/ta/taproduct.hh, src/ta/tgta.hh, src/ta/tgtaexplicit.cc, src/ta/tgtaexplicit.hh, src/ta/tgtaproduct.cc, src/ta/tgtaproduct.hh, src/taalgos/dotty.cc, src/taalgos/dotty.hh, src/taalgos/emptinessta.cc, src/taalgos/emptinessta.hh, src/taalgos/minimize.cc, src/taalgos/minimize.hh, src/taalgos/reachiter.cc, src/taalgos/reachiter.hh, src/taalgos/statessetbuilder.cc, src/taalgos/statessetbuilder.hh, src/taalgos/stats.cc, src/taalgos/stats.hh, src/taalgos/tgba2ta.cc, src/taalgos/tgba2ta.hh, src/tgba/bdddict.cc, src/tgba/bdddict.hh, src/tgba/formula2bdd.hh, src/tgba/futurecondcol.cc, src/tgba/futurecondcol.hh, src/tgba/taatgba.hh, src/tgba/tgba.cc, src/tgba/tgba.hh, src/tgba/tgbagraph.hh, src/tgba/tgbakvcomplement.cc, src/tgba/tgbakvcomplement.hh, src/tgba/tgbamask.cc, src/tgba/tgbamask.hh, src/tgba/tgbaproduct.cc, src/tgba/tgbaproduct.hh, src/tgba/tgbaproxy.cc, src/tgba/tgbaproxy.hh, src/tgba/tgbasafracomplement.cc, src/tgba/tgbasafracomplement.hh, src/tgba/tgbascc.cc, src/tgba/tgbascc.hh, src/tgba/tgbasgba.cc, src/tgba/tgbasgba.hh, src/tgba/wdbacomp.cc, src/tgba/wdbacomp.hh, src/tgbaalgos/bfssteps.cc, src/tgbaalgos/bfssteps.hh, src/tgbaalgos/complete.cc, src/tgbaalgos/complete.hh, src/tgbaalgos/compsusp.cc, src/tgbaalgos/compsusp.hh, src/tgbaalgos/cycles.hh, src/tgbaalgos/degen.cc, src/tgbaalgos/degen.hh, src/tgbaalgos/dotty.cc, src/tgbaalgos/dotty.hh, src/tgbaalgos/dottydec.cc, src/tgbaalgos/dottydec.hh, src/tgbaalgos/dtbasat.cc, src/tgbaalgos/dtbasat.hh, src/tgbaalgos/dtgbacomp.cc, src/tgbaalgos/dtgbacomp.hh, src/tgbaalgos/dtgbasat.cc, src/tgbaalgos/dtgbasat.hh, src/tgbaalgos/dupexp.cc, src/tgbaalgos/dupexp.hh, src/tgbaalgos/emptiness.cc, src/tgbaalgos/emptiness.hh, src/tgbaalgos/gtec/gtec.cc, src/tgbaalgos/gtec/gtec.hh, src/tgbaalgos/gtec/status.cc, src/tgbaalgos/gtec/status.hh, src/tgbaalgos/gv04.cc, src/tgbaalgos/gv04.hh, src/tgbaalgos/isdet.cc, src/tgbaalgos/isdet.hh, src/tgbaalgos/isweakscc.cc, src/tgbaalgos/lbtt.cc, src/tgbaalgos/lbtt.hh, src/tgbaalgos/ltl2taa.cc, src/tgbaalgos/ltl2taa.hh, src/tgbaalgos/ltl2tgba_fm.cc, src/tgbaalgos/ltl2tgba_fm.hh, src/tgbaalgos/magic.cc, src/tgbaalgos/magic.hh, src/tgbaalgos/minimize.cc, src/tgbaalgos/minimize.hh, src/tgbaalgos/ndfs_result.hxx, src/tgbaalgos/neverclaim.cc, src/tgbaalgos/neverclaim.hh, src/tgbaalgos/postproc.cc, src/tgbaalgos/postproc.hh, src/tgbaalgos/powerset.cc, src/tgbaalgos/powerset.hh, src/tgbaalgos/projrun.cc, src/tgbaalgos/projrun.hh, src/tgbaalgos/randomgraph.cc, src/tgbaalgos/randomgraph.hh, src/tgbaalgos/reachiter.cc, src/tgbaalgos/reachiter.hh, src/tgbaalgos/reducerun.cc, src/tgbaalgos/reducerun.hh, src/tgbaalgos/replayrun.cc, src/tgbaalgos/replayrun.hh, src/tgbaalgos/rundotdec.cc, src/tgbaalgos/rundotdec.hh, src/tgbaalgos/safety.cc, src/tgbaalgos/safety.hh, src/tgbaalgos/save.cc, src/tgbaalgos/save.hh, src/tgbaalgos/scc.cc, src/tgbaalgos/scc.hh, src/tgbaalgos/sccfilter.cc, src/tgbaalgos/sccfilter.hh, src/tgbaalgos/sccinfo.cc, src/tgbaalgos/sccinfo.hh, src/tgbaalgos/se05.cc, src/tgbaalgos/se05.hh, src/tgbaalgos/simulation.cc, src/tgbaalgos/simulation.hh, src/tgbaalgos/stats.cc, src/tgbaalgos/stats.hh, src/tgbaalgos/stripacc.cc, src/tgbaalgos/stripacc.hh, src/tgbaalgos/tau03.cc, src/tgbaalgos/tau03.hh, src/tgbaalgos/tau03opt.cc, src/tgbaalgos/tau03opt.hh, src/tgbaalgos/translate.cc, src/tgbaalgos/translate.hh, src/tgbaparse/public.hh, src/tgbaparse/tgbaparse.yy, src/tgbatest/complementation.cc, src/tgbatest/explprod.cc, src/tgbatest/ltl2tgba.cc, src/tgbatest/ltlprod.cc, src/tgbatest/maskacc.cc, src/tgbatest/powerset.cc, src/tgbatest/randtgba.cc, src/tgbatest/taatgba.cc, src/tgbatest/tgbaread.cc, src/tgbatest/tripprod.cc, wrap/python/ajax/spot.in, wrap/python/spot.i, wrap/python/tests/interdep.py: Use shared pointers for automata.
162 lines
6.8 KiB
C++
162 lines
6.8 KiB
C++
// -*- coding: utf-8 -*-
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// Copyright (C) 2009, 2010, 2011, 2012, 2013, 2014 Laboratoire de
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// Recherche et Développement de l'Epita (LRDE).
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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_MINIMIZE_HH
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# define SPOT_TGBAALGOS_MINIMIZE_HH
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# include "tgba/tgbagraph.hh"
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# include "ltlast/formula.hh"
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namespace spot
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{
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/// \addtogroup tgba_reduction
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/// @{
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/// \brief Construct a minimal deterministic monitor.
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///
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/// The automaton will be converted into minimal deterministic
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/// monitor. All useless SCCs should have been previously removed
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/// (using scc_filter() for instance). Then the automaton will be
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/// determinized and minimized using the standard DFA construction
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/// as if all states were accepting states.
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///
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/// For more detail about monitors, see the following paper:
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/** \verbatim
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@InProceedings{ tabakov.10.rv,
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author = {Deian Tabakov and Moshe Y. Vardi},
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title = {Optimized Temporal Monitors for SystemC{$^*$}},
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booktitle = {Proceedings of the 10th International Conferance
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on Runtime Verification},
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pages = {436--451},
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year = 2010,
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volume = {6418},
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series = {Lecture Notes in Computer Science},
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month = nov,
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publisher = {Spring-Verlag}
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}
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\endverbatim */
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/// (Note: although the above paper uses Spot, this function did not
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/// exist in Spot at that time.)
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///
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/// \param a the automaton to convert into a minimal deterministic monitor
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/// \pre Dead SCCs should have been removed from \a a before
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/// calling this function.
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SPOT_API tgba_digraph_ptr minimize_monitor(const const_tgba_ptr& a);
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/// \brief Minimize a Büchi automaton in the WDBA class.
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///
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/// This takes a TGBA whose language is representable by a Weak
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/// Deterministic Büchi Automaton, and construct a minimal WDBA for
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/// this language. This essentially chains three algorithms:
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/// determinization, acceptance adjustment (Löding's coloring
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/// algorithm), and minimization (using a Moore-like approache).
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///
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/// If the input automaton does not represent a WDBA language,
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/// the resulting automaton is still a WDBA, but it will not
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/// be equivalent to the original automaton. Use the
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/// minimize_obligation() function if you are not sure whether
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/// it is safe to call this function.
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///
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/// Please see the following paper for a discussion of this
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/// technique.
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///
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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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SPOT_API tgba_digraph_ptr minimize_wdba(const const_tgba_ptr& a);
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/// \brief Minimize an automaton if it represents an obligation property.
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///
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/// This function attempts to minimize the automaton \a aut_f using the
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/// algorithm implemented in the minimize_wdba() function, and presented
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/// by the following paper:
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///
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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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///
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/// Because it is hard to determine if an automaton corresponds
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/// to an obligation property, you should supply either the formula
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/// \a f expressed by the automaton \a aut_f, or \a aut_neg_f the negation
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/// of the automaton \a aut_neg_f.
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///
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/// \param aut_f the automaton to minimize
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/// \param f the LTL formula represented by the automaton \a aut_f
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/// \param aut_neg_f an automaton representing the negation of \a aut_f
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/// \param reject_bigger Whether the minimal WDBA should be discarded if
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/// it has more states than the input.
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/// \return a new tgba if the automaton could be minimized, \a aut_f if
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/// the automaton cannot be minimized, 0 if we do not know if the
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/// minimization is correct because neither \a f nor \a aut_neg_f
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/// were supplied.
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///
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/// The function proceeds as follows. If the formula \a f or the
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/// automaton \a aut can easily be proved to represent an obligation
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/// formula, then the result of <code>minimize(aut)</code> is
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/// returned. Otherwise, if \a aut_neg_f was not supplied but \a f
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/// was, \a aut_neg_f is built from the negation of \a f. Then we
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/// check that <code>product(aut,!minimize(aut_f))</code> and <code>
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/// product(aut_neg_f,minize(aut))</code> are both empty. If they
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/// are, the the minimization was sound. (See the paper for full
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/// details.)
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///
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/// If \a reject_bigger is set, this function will return the input
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/// automaton \a aut_f when the minimized WDBA has more states than
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/// the input automaton. (More states are possible because of
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/// determinization step during minimize_wdba().) Note that
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/// checking the size of the minimized WDBA occurs before ensuring
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/// that the minimized WDBA is correct.
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SPOT_API tgba_digraph_ptr
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minimize_obligation(const const_tgba_digraph_ptr& aut_f,
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const ltl::formula* f = 0,
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const_tgba_digraph_ptr aut_neg_f = nullptr,
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bool reject_bigger = false);
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/// @}
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}
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#endif /* !SPOT_TGBAALGOS_MINIMIZE_HH */
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