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.
393 lines
9.4 KiB
C++
393 lines
9.4 KiB
C++
// -*- coding: utf-8 -*-
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// Copyright (C) 2011, 2012, 2013, 2014 Laboratoire de Recherche et
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// Developpement 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 "dve2.hh"
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#include "tgbaalgos/dotty.hh"
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#include "ltlenv/defaultenv.hh"
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#include "ltlast/allnodes.hh"
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#include "ltlparse/public.hh"
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#include "tgbaalgos/translate.hh"
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#include "tgbaalgos/emptiness.hh"
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#include "tgbaalgos/reducerun.hh"
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#include "tgbaalgos/postproc.hh"
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#include "tgba/tgbaproduct.hh"
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#include "misc/timer.hh"
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#include "misc/memusage.hh"
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#include <cstring>
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#include "kripke/kripkeexplicit.hh"
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#include "kripke/kripkeprint.hh"
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static void
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syntax(char* prog)
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{
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// Display the supplied name unless it appears to be a libtool wrapper.
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char* slash = strrchr(prog, '/');
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if (slash && (strncmp(slash + 1, "lt-", 3) == 0))
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prog = slash + 4;
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std::cerr << "usage: " << prog << " [options] model formula\n\
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\n\
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Options:\n\
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-dDEAD use DEAD as property for marking DEAD states\n\
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(by default DEAD = true)\n\
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-e[ALGO] run emptiness check, expect an accepting run\n\
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-E[ALGO] run emptiness check, expect no accepting run\n\
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-C compute an accepting run (Counterexample) if it exists\n\
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-D favor a deterministic translation over a small transition\n\
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-gf output the automaton of the formula in dot format\n\
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-gm output the model state-space in dot format\n\
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-gK output the model state-space in Kripke format\n\
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-gp output the product state-space in dot format\n\
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-T time the different phases of the execution\n\
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-z compress states to handle larger models\n\
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-Z compress states (faster) assuming all values in [0 .. 2^28-1]\n\
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";
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exit(1);
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}
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int
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checked_main(int argc, char **argv)
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{
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spot::timer_map tm;
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bool use_timer = false;
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enum { DotFormula, DotModel, DotProduct, EmptinessCheck, Kripke }
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output = EmptinessCheck;
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bool accepting_run = false;
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bool expect_counter_example = false;
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bool deterministic = false;
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char *dead = 0;
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int compress_states = 0;
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const char* echeck_algo = "Cou99";
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int dest = 1;
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int n = argc;
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for (int i = 1; i < n; ++i)
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{
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char* opt = argv[i];
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if (*opt == '-')
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{
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switch (*++opt)
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{
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case 'C':
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accepting_run = true;
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break;
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case 'd':
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dead = opt + 1;
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break;
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case 'D':
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deterministic = true;
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break;
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case 'e':
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case 'E':
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{
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echeck_algo = opt + 1;
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if (!*echeck_algo)
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echeck_algo = "Cou99";
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expect_counter_example = (*opt == 'e');
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output = EmptinessCheck;
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break;
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}
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case 'g':
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switch (opt[1])
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{
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case 'm':
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output = DotModel;
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break;
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case 'p':
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output = DotProduct;
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break;
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case 'f':
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output = DotFormula;
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break;
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case 'K':
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output = Kripke;
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break;
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default:
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goto error;
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}
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break;
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case 'T':
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use_timer = true;
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break;
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case 'z':
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compress_states = 1;
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break;
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case 'Z':
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compress_states = 2;
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break;
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default:
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error:
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std::cerr << "Unknown option `" << argv[i] << "'." << std::endl;
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exit(1);
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}
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--argc;
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}
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else
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{
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argv[dest++] = argv[i];
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}
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}
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if (argc != 3)
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syntax(argv[0]);
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spot::ltl::default_environment& env =
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spot::ltl::default_environment::instance();
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spot::ltl::atomic_prop_set ap;
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auto dict = spot::make_bdd_dict();
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spot::const_kripke_ptr model = 0;
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spot::const_tgba_ptr prop = 0;
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spot::const_tgba_ptr product = 0;
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spot::emptiness_check_instantiator* echeck_inst = 0;
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int exit_code = 0;
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spot::postprocessor post;
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const spot::ltl::formula* deadf = 0;
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const spot::ltl::formula* f = 0;
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if (dead == 0 || !strcasecmp(dead, "true"))
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{
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deadf = spot::ltl::constant::true_instance();
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}
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else if (!strcasecmp(dead, "false"))
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{
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deadf = spot::ltl::constant::false_instance();
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}
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else
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{
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deadf = env.require(dead);
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}
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if (output == EmptinessCheck)
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{
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const char* err;
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echeck_inst =
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spot::emptiness_check_instantiator::construct(echeck_algo, &err);
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if (!echeck_inst)
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{
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std::cerr << "Failed to parse argument of -e/-E near `"
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<< err << "'\n";
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exit_code = 1;
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goto safe_exit;
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}
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}
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tm.start("parsing formula");
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{
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spot::ltl::parse_error_list pel;
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f = spot::ltl::parse(argv[2], pel, env, false);
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exit_code = spot::ltl::format_parse_errors(std::cerr, argv[2], pel);
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}
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tm.stop("parsing formula");
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if (exit_code)
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goto safe_exit;
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tm.start("translating formula");
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{
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spot::translator trans(dict);
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if (deterministic)
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trans.set_pref(spot::postprocessor::Deterministic);
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prop = trans.run(&f);
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}
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tm.stop("translating formula");
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atomic_prop_collect(f, &ap);
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if (output != DotFormula)
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{
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tm.start("loading dve2");
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model = spot::load_dve2(argv[1], dict, &ap, deadf, compress_states, true);
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tm.stop("loading dve2");
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if (!model)
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{
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exit_code = 1;
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goto safe_exit;
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}
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if (output == DotModel)
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{
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tm.start("dotty output");
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spot::dotty_reachable(std::cout, model);
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tm.stop("dotty output");
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goto safe_exit;
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}
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if (output == Kripke)
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{
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tm.start("kripke output");
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spot::kripke_save_reachable_renumbered(std::cout, model);
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tm.stop("kripke output");
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goto safe_exit;
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}
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}
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if (output == DotFormula)
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{
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tm.start("dotty output");
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spot::dotty_reachable(std::cout, prop);
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tm.stop("dotty output");
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goto safe_exit;
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}
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product = spot::product(model, prop);
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if (output == DotProduct)
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{
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tm.start("dotty output");
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spot::dotty_reachable(std::cout, product);
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tm.stop("dotty output");
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goto safe_exit;
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}
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assert(echeck_inst);
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{
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spot::emptiness_check* ec = echeck_inst->instantiate(product);
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bool search_many = echeck_inst->options().get("repeated");
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assert(ec);
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do
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{
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int memused = spot::memusage();
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tm.start("running emptiness check");
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spot::emptiness_check_result* res;
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try
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{
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res = ec->check();
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}
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catch (std::bad_alloc)
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{
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std::cerr << "Out of memory during emptiness check."
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<< std::endl;
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if (!compress_states)
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std::cerr << "Try option -z for state compression." << std::endl;
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exit_code = 2;
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exit(exit_code);
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}
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tm.stop("running emptiness check");
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memused = spot::memusage() - memused;
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ec->print_stats(std::cout);
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std::cout << memused << " pages allocated for emptiness check"
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<< std::endl;
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if (expect_counter_example == !res &&
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(!expect_counter_example || ec->safe()))
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exit_code = 1;
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if (!res)
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{
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std::cout << "no accepting run found";
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if (!ec->safe() && expect_counter_example)
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{
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std::cout << " even if expected" << std::endl;
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std::cout << "this may be due to the use of the bit"
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<< " state hashing technique" << std::endl;
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std::cout << "you can try to increase the heap size "
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<< "or use an explicit storage"
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<< std::endl;
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}
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std::cout << std::endl;
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break;
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}
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else if (accepting_run)
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{
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spot::tgba_run* run;
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tm.start("computing accepting run");
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try
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{
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run = res->accepting_run();
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}
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catch (std::bad_alloc)
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{
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std::cerr << "Out of memory while looking for counterexample."
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<< std::endl;
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exit_code = 2;
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exit(exit_code);
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}
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tm.stop("computing accepting run");
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if (!run)
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{
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std::cout << "an accepting run exists" << std::endl;
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}
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else
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{
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tm.start("reducing accepting run");
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spot::tgba_run* redrun =
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spot::reduce_run(res->automaton(), run);
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tm.stop("reducing accepting run");
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delete run;
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run = redrun;
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tm.start("printing accepting run");
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spot::print_tgba_run(std::cout, product, run);
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tm.stop("printing accepting run");
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}
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delete run;
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}
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else
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{
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std::cout << "an accepting run exists "
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<< "(use -C to print it)" << std::endl;
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}
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delete res;
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}
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while (search_many);
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delete ec;
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}
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safe_exit:
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delete echeck_inst;
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if (f)
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f->destroy();
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deadf->destroy();
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if (use_timer)
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tm.print(std::cout);
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tm.reset_all(); // This helps valgrind.
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return exit_code;
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}
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int
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main(int argc, char **argv)
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{
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auto exit_code = checked_main(argc, argv);
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// Additional checks to debug reference counts in formulas.
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spot::ltl::atomic_prop::dump_instances(std::cerr);
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spot::ltl::unop::dump_instances(std::cerr);
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spot::ltl::binop::dump_instances(std::cerr);
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spot::ltl::multop::dump_instances(std::cerr);
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spot::ltl::bunop::dump_instances(std::cerr);
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assert(spot::ltl::atomic_prop::instance_count() == 0);
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assert(spot::ltl::unop::instance_count() == 0);
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assert(spot::ltl::binop::instance_count() == 0);
|
|
assert(spot::ltl::multop::instance_count() == 0);
|
|
assert(spot::ltl::bunop::instance_count() == 0);
|
|
exit(exit_code);
|
|
}
|