* src/tgba/bdddict.hh (bdd_dict_ptr): New type. (make_bdd_dict): New function. * iface/dve2/dve2.cc, iface/dve2/dve2.hh, iface/dve2/dve2check.cc, src/bin/dstar2tgba.cc, src/bin/ltlcross.cc, src/dstarparse/dstarparse.yy, src/dstarparse/public.hh, src/graphtest/tgbagraph.cc, src/kripke/kripkeexplicit.cc, src/kripke/kripkeexplicit.hh, src/kripke/kripkeprint.cc, src/kripkeparse/kripkeparse.yy, src/kripkeparse/public.hh, src/kripketest/parse_print_test.cc, src/ltlvisit/apcollect.cc, src/ltlvisit/contain.cc, src/ltlvisit/contain.hh, src/ltlvisit/simplify.cc, src/ltlvisit/simplify.hh, src/neverparse/neverclaimparse.yy, src/neverparse/public.hh, src/priv/accmap.hh, src/saba/saba.hh, src/saba/sabacomplementtgba.cc, src/saba/sabacomplementtgba.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/tgtaexplicit.cc, src/ta/tgtaexplicit.hh, src/taalgos/dotty.cc, src/tgba/bddprint.cc, src/tgba/bddprint.hh, src/tgba/formula2bdd.cc, src/tgba/formula2bdd.hh, src/tgba/taatgba.cc, src/tgba/taatgba.hh, src/tgba/tgba.hh, src/tgba/tgbagraph.hh, src/tgba/tgbakvcomplement.cc, src/tgba/tgbakvcomplement.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/tgbaunion.cc, src/tgba/tgbaunion.hh, src/tgba/wdbacomp.cc, src/tgbaalgos/compsusp.cc, src/tgbaalgos/compsusp.hh, src/tgbaalgos/degen.cc, src/tgbaalgos/dtbasat.cc, src/tgbaalgos/dtgbasat.cc, src/tgbaalgos/emptiness.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/randomgraph.cc, src/tgbaalgos/randomgraph.hh, src/tgbaalgos/save.cc, src/tgbaalgos/translate.cc, src/tgbaalgos/translate.hh, src/tgbaalgos/word.cc, src/tgbaalgos/word.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/tests/alarm.py, wrap/python/tests/ltl2tgba.py, wrap/python/tests/parsetgba.py: Update to use bdd_dict_ptr and make_bdd_dict().
261 lines
5.8 KiB
C++
261 lines
5.8 KiB
C++
// -*- coding: utf-8 -*-
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// Copyright (C) 2009, 2011, 2012, 2014 Laboratoire de Recherche et
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// 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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#include <cassert>
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#include "tgbasgba.hh"
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#include "bddprint.hh"
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#include "ltlast/constant.hh"
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#include "misc/hashfunc.hh"
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namespace spot
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{
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namespace
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{
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/// \brief A state for spot::tgba_sgba_proxy.
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class state_sgba_proxy: public state
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{
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public:
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state_sgba_proxy(state* s, bdd acc)
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: s_(s), acc_(acc)
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{
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}
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/// Copy constructor
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state_sgba_proxy(const state_sgba_proxy& o)
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: state(),
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s_(o.real_state()->clone()),
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acc_(o.acc_)
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{
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}
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virtual
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~state_sgba_proxy()
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{
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s_->destroy();
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}
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state*
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real_state() const
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{
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return s_;
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}
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bdd
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acceptance_cond() const
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{
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return acc_;
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}
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virtual int
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compare(const state* other) const
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{
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const state_sgba_proxy* o =
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down_cast<const state_sgba_proxy*>(other);
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assert(o);
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int res = s_->compare(o->real_state());
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if (res != 0)
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return res;
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return acc_.id() - o->acc_.id();
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}
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virtual size_t
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hash() const
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{
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return wang32_hash(s_->hash()) ^ wang32_hash(acc_.id());
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}
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virtual
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state_sgba_proxy* clone() const
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{
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return new state_sgba_proxy(*this);
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}
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private:
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state* s_;
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bdd acc_;
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};
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/// \brief Iterate over the successors of tgba_sgba_proxy computed
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/// on the fly.
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class tgba_sgba_proxy_succ_iterator: public tgba_succ_iterator
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{
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public:
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tgba_sgba_proxy_succ_iterator(tgba_succ_iterator* it)
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: it_(it), emulate_acc_cond_(false)
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{
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}
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tgba_sgba_proxy_succ_iterator(tgba_succ_iterator* it, bdd acc)
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: it_(it), emulate_acc_cond_(true), acceptance_condition_(acc)
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{
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}
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virtual
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~tgba_sgba_proxy_succ_iterator()
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{
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delete it_;
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}
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// iteration
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bool
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first()
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{
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return it_->first();
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}
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bool
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next()
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{
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return it_->next();
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}
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bool
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done() const
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{
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return it_->done();
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}
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// inspection
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state_sgba_proxy*
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current_state() const
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{
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return new state_sgba_proxy(it_->current_state(),
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it_->current_acceptance_conditions());
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}
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bdd
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current_condition() const
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{
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return it_->current_condition();
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}
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bdd
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current_acceptance_conditions() const
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{
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if (emulate_acc_cond_)
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return acceptance_condition_;
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return it_->current_acceptance_conditions();
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}
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protected:
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tgba_succ_iterator* it_;
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// If the automaton has no acceptance condition,
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// every state is accepting.
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bool emulate_acc_cond_;
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bdd acceptance_condition_;
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};
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} // anonymous
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tgba_sgba_proxy::tgba_sgba_proxy(const tgba* a, bool no_zero_acc)
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: a_(a), emulate_acc_cond_(false)
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{
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if (no_zero_acc && a_->number_of_acceptance_conditions() == 0)
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{
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emulate_acc_cond_ = true;
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int v = get_dict()
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->register_acceptance_variable(ltl::constant::true_instance(), this);
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acceptance_condition_ = bdd_ithvar(v);
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}
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get_dict()->register_all_variables_of(a, this);
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}
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tgba_sgba_proxy::~tgba_sgba_proxy()
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{
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get_dict()->unregister_all_my_variables(this);
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}
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state*
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tgba_sgba_proxy::get_init_state() const
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{
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return new state_sgba_proxy(a_->get_init_state(), bddfalse);
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}
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tgba_succ_iterator*
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tgba_sgba_proxy::succ_iter(const state* state) const
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{
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const state_sgba_proxy* s = down_cast<const state_sgba_proxy*>(state);
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assert(s);
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tgba_succ_iterator* it = a_->succ_iter(s->real_state());
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return new tgba_sgba_proxy_succ_iterator(it);
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}
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bdd_dict_ptr
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tgba_sgba_proxy::get_dict() const
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{
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return a_->get_dict();
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}
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std::string
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tgba_sgba_proxy::format_state(const state* state) const
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{
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const state_sgba_proxy* s = down_cast<const state_sgba_proxy*>(state);
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assert(s);
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std::string a;
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if (!emulate_acc_cond_)
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a = bdd_format_accset(get_dict(), s->acceptance_cond());
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else
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a = bdd_format_accset(get_dict(), acceptance_condition_);
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if (a != "")
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a = " " + a;
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return a_->format_state(s->real_state()) + a;
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}
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bdd
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tgba_sgba_proxy::all_acceptance_conditions() const
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{
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if (emulate_acc_cond_)
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return acceptance_condition_;
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return a_->all_acceptance_conditions();
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}
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bdd
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tgba_sgba_proxy::neg_acceptance_conditions() const
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{
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if (emulate_acc_cond_)
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return bdd_nithvar(bdd_var(acceptance_condition_));
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return a_->neg_acceptance_conditions();
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}
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bdd
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tgba_sgba_proxy::state_acceptance_conditions(const state* state) const
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{
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const state_sgba_proxy* s =
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down_cast<const state_sgba_proxy*>(state);
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assert(s);
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if (emulate_acc_cond_)
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return acceptance_condition_;
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return s->acceptance_cond();
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}
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bdd
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tgba_sgba_proxy::compute_support_conditions(const state* state) const
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{
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const state_sgba_proxy* s =
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down_cast<const state_sgba_proxy*>(state);
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assert(s);
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if (emulate_acc_cond_)
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return acceptance_condition_;
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return a_->support_conditions(s->real_state());
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}
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}
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