ltl2tgba.cc 8.57 KB
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// -*- coding: utf-8 -*-
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// Copyright (C) 2012, 2013, 2014 Laboratoire de Recherche et
// Développement de l'Epita (LRDE).
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//
// 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
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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.
//
// 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
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// along with this program.  If not, see <http://www.gnu.org/licenses/>.
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#include "common_sys.hh"

#include <string>
#include <iostream>

#include <argp.h>
#include "error.h"
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#include "gethrxtime.h"
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#include "common_setup.hh"
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#include "common_r.hh"
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#include "common_cout.hh"
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#include "common_finput.hh"
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#include "common_output.hh"
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#include "common_post.hh"
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#include "ltlast/formula.hh"
#include "tgba/tgbaexplicit.hh"
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#include "tgbaalgos/dotty.hh"
#include "tgbaalgos/lbtt.hh"
#include "tgbaalgos/neverclaim.hh"
#include "tgbaalgos/save.hh"
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#include "tgbaalgos/stats.hh"
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#include "tgbaalgos/translate.hh"
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#include "tgba/bddprint.hh"
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#include "misc/optionmap.hh"
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const char argp_program_doc[] ="\
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Translate linear-time formulas (LTL/PSL) into Büchi automata.\n\n\
By default it will apply all available optimizations to output \
the smallest Transition-based Generalized Büchi Automata, \
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in GraphViz's format.\n\
If multiple formulas are supplied, several automata will be output.";

#define OPT_TGBA 1
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#define OPT_DOT 2
#define OPT_LBTT 3
#define OPT_SPOT 4
#define OPT_STATS 5
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#define OPT_CSV 6
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static const argp_option options[] =
  {
    /**************************************************/
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    { 0, 0, 0, 0, "Output automaton type:", 2 },
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    { "tgba", OPT_TGBA, 0, 0,
      "Transition-based Generalized Büchi Automaton (default)", 0 },
    { "ba", 'B', 0, 0, "Büchi Automaton", 0 },
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    { "monitor", 'M', 0, 0, "Monitor (accepts all finite prefixes "
      "of the given formula)", 0 },
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    /**************************************************/
    { 0, 0, 0, 0, "Output format:", 3 },
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    { "csv-escape", OPT_CSV, 0, 0, "quote formula output by %f in --format "
      "for use in CSV file", 0 },
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    { "dot", OPT_DOT, 0, 0, "GraphViz's format (default)", 0 },
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    { "lbtt", OPT_LBTT, "t", OPTION_ARG_OPTIONAL,
      "LBTT's format (add =t to force transition-based acceptance even"
      " on Büchi automata)", 0 },
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    { "spin", 's', 0, 0, "Spin neverclaim (implies --ba)", 0 },
    { "spot", OPT_SPOT, 0, 0, "SPOT's format", 0 },
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    { "utf8", '8', 0, 0, "enable UTF-8 characters in output "
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      "(ignored with --lbtt or --spin)", 0 },
    { "stats", OPT_STATS, "FORMAT", 0,
      "output statistics about the automaton", 0 },
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    /**************************************************/
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    { 0, 0, 0, 0, "The FORMAT string passed to --stats may use "\
      "the following interpreted sequences:", 4 },
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    { "%f", 0, 0, OPTION_DOC | OPTION_NO_USAGE,
      "the formula, in Spot's syntax", 0 },
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    { "%s", 0, 0, OPTION_DOC | OPTION_NO_USAGE, "number of states", 0 },
    { "%e", 0, 0, OPTION_DOC | OPTION_NO_USAGE,	"number of edges", 0 },
    { "%t", 0, 0, OPTION_DOC | OPTION_NO_USAGE,	"number of transitions", 0 },
    { "%a", 0, 0, OPTION_DOC | OPTION_NO_USAGE,
      "number of acceptance sets", 0 },
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    { "%c", 0, 0, OPTION_DOC | OPTION_NO_USAGE,	"number of SCCs", 0 },
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    { "%n", 0, 0, OPTION_DOC | OPTION_NO_USAGE,
      "number of nondeterministic states", 0 },
    { "%d", 0, 0, OPTION_DOC | OPTION_NO_USAGE,
      "1 if the automaton is deterministic, 0 otherwise", 0 },
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    { "%p", 0, 0, OPTION_DOC | OPTION_NO_USAGE,
      "1 if the automaton is complete, 0 otherwise", 0 },
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    { "%r", 0, 0, OPTION_DOC | OPTION_NO_USAGE,
      "translation time (including pre- and post-processings, but not parsing)"
      " in seconds", 0 },
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    { "%%", 0, 0, OPTION_DOC | OPTION_NO_USAGE,
      "a single %", 0 },
    /**************************************************/
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    { 0, 0, 0, 0, "Miscellaneous options:", -1 },
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    { "extra-options", 'x', "OPTS", 0,
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      "fine-tuning options (see spot-x (7))", 0 },
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    { 0, 0, 0, 0, 0, 0 }
  };

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const struct argp_child children[] =
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  {
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    { &finput_argp, 0, 0, 1 },
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    { &post_argp, 0, 0, 20 },
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    { &misc_argp, 0, 0, -1 },
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    { 0, 0, 0, 0 }
  };
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enum output_format { Dot, Lbtt, Lbtt_t, Spin, Spot, Stats } format = Dot;
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bool utf8 = false;
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const char* stats = "";
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spot::option_map extra_options;
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static int
parse_opt(int key, char* arg, struct argp_state*)
{
  // This switch is alphabetically-ordered.
  switch (key)
    {
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    case '8':
      spot::enable_utf8();
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      output_format = utf8_output;
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      break;
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    case 'B':
      type = spot::postprocessor::BA;
      break;
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    case 'M':
      type = spot::postprocessor::Monitor;
      break;
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    case 's':
      format = Spin;
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      if (type != spot::postprocessor::Monitor)
	type = spot::postprocessor::BA;
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      break;
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    case 'x':
      {
	const char* opt = extra_options.parse_options(arg);
	if (opt)
	  error(2, 0, "failed to parse --options near '%s'", opt);
      }
      break;
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    case OPT_CSV:
      escape_csv = true;
      break;
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    case OPT_DOT:
      format = Dot;
      break;
    case OPT_LBTT:
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      if (arg)
	{
	  if (arg[0] == 't' && arg[1] == 0)
	    format = Lbtt_t;
	  else
	    error(2, 0, "unknown argument for --lbtt: '%s'", arg);
	}
      else
	{
	  format = Lbtt;
	}
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      break;
    case OPT_SPOT:
      format = Spot;
      break;
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    case OPT_STATS:
      if (!*arg)
	error(2, 0, "empty format string for --stats");
      stats = arg;
      format = Stats;
      break;
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    case OPT_TGBA:
      if (format == Spin)
	error(2, 0, "--spin and --tgba are incompatible");
      type = spot::postprocessor::TGBA;
      break;
    case ARGP_KEY_ARG:
      // FIXME: use stat() to distinguish filename from string?
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      jobs.emplace_back(arg, false);
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      break;

    default:
      return ARGP_ERR_UNKNOWN;
    }
  return 0;
}


namespace
{
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  class trans_processor: public job_processor
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  {
  public:
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    spot::translator& trans;
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    aut_stat_printer statistics;
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    trans_processor(spot::translator& trans)
      : trans(trans), statistics(std::cout, stats)
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    {
    }

    int
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    process_formula(const spot::ltl::formula* f,
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		    const char* filename = 0, int linenum = 0)
    {
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      const xtime_t before = gethrxtime();
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      const spot::tgba* aut = trans.run(&f);
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      const xtime_t after = gethrxtime();
      const double prec = XTIME_PRECISION;
      const double translation_time = (after - before) / prec;
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      // This should not happen, because the parser we use can only
      // read PSL/LTL formula, but since our ltl::formula* type can
      // represent more than PSL formula, let's make this
      // future-proof.
      if (!f->is_psl_formula())
	{
	  std::string s = spot::ltl::to_string(f);
	  error_at_line(2, 0, filename, linenum,
			"formula '%s' is not an LTL or PSL formula",
			s.c_str());
	}

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      if (utf8)
	{
	  spot::tgba* a = const_cast<spot::tgba*>(aut);
	  if (spot::tgba_explicit_formula* tef =
	      dynamic_cast<spot::tgba_explicit_formula*>(a))
	    tef->enable_utf8();
	  else if (spot::sba_explicit_formula* sef =
		   dynamic_cast<spot::sba_explicit_formula*>(a))
	    sef->enable_utf8();
	}

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      switch (format)
	{
	case Dot:
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	  spot::dotty_reachable(std::cout, aut,
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				(type == spot::postprocessor::BA)
				|| (type == spot::postprocessor::Monitor));
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	  break;
	case Lbtt:
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	  spot::lbtt_reachable(std::cout, aut, type == spot::postprocessor::BA);
	  break;
	case Lbtt_t:
	  spot::lbtt_reachable(std::cout, aut, false);
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	  break;
	case Spot:
	  spot::tgba_save_reachable(std::cout, aut);
	  break;
	case Spin:
	  spot::never_claim_reachable(std::cout, aut, f);
	  break;
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	case Stats:
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	  statistics.print(aut, f, translation_time) << '\n';
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	  break;
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	}
      delete aut;
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      f->destroy();
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      flush_cout();
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      return 0;
    }
  };
}

int
main(int argc, char** argv)
{
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  setup(argv);
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  const argp ap = { options, parse_opt, "[FORMULA...]",
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		    argp_program_doc, children, 0, 0 };
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  simplification_level = 3;

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  if (int err = argp_parse(&ap, argc, argv, ARGP_NO_HELP, 0, 0))
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    exit(err);

  if (jobs.empty())
    error(2, 0, "No formula to translate?  Run '%s --help' for usage.",
	  program_name);

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  spot::translator trans(&extra_options);
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  trans.set_pref(pref | comp);
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  trans.set_type(type);
  trans.set_level(level);
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  trans_processor processor(trans);
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  if (processor.run())
    return 2;
  return 0;
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}