* src/dstarparse/dstarparse.yy, src/dstarparse/public.hh: Adjust the parser to build a tgba_digraph. * src/dstarparse/dra2ba.cc, src/dstarparse/nra2nba.cc, src/dstarparse/nsa2tgba.cc: Temporarily adjust these functions to the new type until they are rewritten.
153 lines
5.3 KiB
C++
153 lines
5.3 KiB
C++
// -*- coding: utf-8 -*-
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// Copyright (C) 2013, 2014 Laboratoire de Recherche et Développement
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// 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_DSTARPARSE_PUBLIC_HH
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# define SPOT_DSTARPARSE_PUBLIC_HH
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# include "tgba/tgbagraph.hh"
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# include "misc/location.hh"
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# include "ltlenv/defaultenv.hh"
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# include <string>
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# include <list>
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# include <utility>
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# include <iosfwd>
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# include <misc/bitvect.hh>
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namespace spot
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{
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/// \addtogroup tgba_io
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/// @{
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/// \brief A parse diagnostic with its location.
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typedef std::pair<spot::location, std::string> dstar_parse_error;
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/// \brief A list of parser diagnostics, as filled by parse.
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typedef std::list<dstar_parse_error> dstar_parse_error_list;
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enum dstar_type { Rabin, Streett };
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/// \brief Temporary encoding of an omega automaton produced by
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/// ltl2dstar.
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struct SPOT_API dstar_aut
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{
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// Transition structure of the automaton.
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// This is encoded as a TGBA without acceptance condition.
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tgba_digraph* aut;
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/// Type of the acceptance.
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dstar_type type;
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/// Number of acceptance pairs.
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size_t accpair_count;
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/// \brief acceptance sets encoded as 2*num_state bit-vectors of
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/// num_pairs bits
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///
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/// Assuming F={(L₀,U₀),…,(Lᵢ,Uᵢ),…},
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/// s∈Lᵢ iff <code>accsets->at(s * 2).get(i)</code>,
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/// s∈Uᵢ iff <code>accsets->at(s * 2 + 1).get(i)</code>.
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bitvect_array* accsets;
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~dstar_aut()
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{
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delete aut;
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delete accsets;
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}
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};
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/// \brief Build a spot::tgba_digraph from ltl2dstar's output.
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/// \param filename The name of the file to parse.
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/// \param error_list A list that will be filled with
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/// parse errors that occured during parsing.
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/// \param dict The BDD dictionary where to use.
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/// \param env The environment of atomic proposition into which parsing
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/// should take place.
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/// \param debug When true, causes the parser to trace its execution.
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/// \return A pointer to the tgba built from \a filename, or
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/// 0 if the file could not be opened.
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///
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/// Note that the parser usually tries to recover from errors. It can
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/// return an non zero value even if it encountered error during the
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/// parsing of \a filename. If you want to make sure \a filename
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/// was parsed succesfully, check \a error_list for emptiness.
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///
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/// \warning This function is not reentrant.
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SPOT_API dstar_aut*
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dstar_parse(const std::string& filename,
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dstar_parse_error_list& error_list,
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bdd_dict* dict,
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ltl::environment& env = ltl::default_environment::instance(),
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bool debug = false);
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/// \brief Format diagnostics produced by spot::dstar_parse.
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/// \param os Where diagnostics should be output.
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/// \param filename The filename that should appear in the diagnostics.
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/// \param error_list The error list filled by spot::ltl::parse while
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/// parsing \a ltl_string.
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/// \return \c true iff any diagnostic was output.
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SPOT_API bool
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format_dstar_parse_errors(std::ostream& os,
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const std::string& filename,
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dstar_parse_error_list& error_list);
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/// \brief Convert a non-deterministic Rabin automaton into a
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/// non-deterministic Büchi automaton.
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SPOT_API tgba*
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nra_to_nba(const dstar_aut* nra);
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/// \brief Convert a non-deterministic Rabin automaton into a
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/// non-deterministic Büchi automaton.
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///
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/// This version simply ignores all states in \a ignore.
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SPOT_API tgba*
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nra_to_nba(const dstar_aut* nra, const state_set* ignore);
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/// \brief Convert a deterministic Rabin automaton into a
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/// Büchi automaton, deterministic when possible.
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///
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/// See "Deterministic ω-automata vis-a-vis Deterministic Büchi
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/// Automata", S. Krishnan, A. Puri, and R. Brayton (ISAAC'94) for
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/// more details about a DRA->DBA construction.
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///
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/// We essentially apply this method SCC-wise. If an SCC is
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/// DBA-realizable, we duplicate it in the output, fixing just
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/// the acceptance states. If an SCC is not DBA-realizable,
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/// then we apply the more usual conversion from Rabin to NBA
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/// for this part.
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///
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/// If the optional \a dba_output argument is non-null, the
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/// pointed Boolean will be updated to indicate whether the
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/// returned Büchi automaton is deterministic.
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SPOT_API tgba*
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dra_to_ba(const dstar_aut* dra, bool* dba_output = 0);
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/// \brief Convert a non-deterministic Streett automaton into a
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/// non-deterministic tgba.
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SPOT_API tgba*
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nsa_to_tgba(const dstar_aut* nra);
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/// \brief Convert a Rabin or Streett automaton into a TGBA.
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///
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/// This function calls dra_to_ba() or nsa_to_tgba().
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SPOT_API tgba*
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dstar_to_tgba(const dstar_aut* dstar);
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/// @}
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}
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#endif // SPOT_DSTARPARSE_PUBLIC_HH
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