mc: bloemen emptiness check
* spot/mc/bloemen_ec.hh, spot/mc/mc.hh, tests/ltsmin/check.test, tests/ltsmin/modelcheck.cc: here.
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4 changed files with 884 additions and 4 deletions
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@ -1,6 +1,6 @@
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#!/bin/sh
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# -*- coding: utf-8 -*-
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# Copyright (C) 2011, 2012, 2014, 2015, 2016, 2017 Laboratoire de Recherche
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# Copyright (C) 2011, 2012, 2014, 2015, 2016, 2017, 2019 Laboratoire de Recherche
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# 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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@ -91,3 +91,5 @@ run 0 ../modelcheck --model beem-peterson.4.dve2C \
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--csv --bloemen -p 3 >stdout
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test `grep "#" stdout | awk -F',' '{print $7}'` -eq 29115
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run 0 ../modelcheck --model beem-peterson.4.dve2C \
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--formula '!GF(P_0.CS|P_1.CS|P_2.CS|P_3.CS)' --csv --bloemen-ec -p 3 >stdout
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@ -74,6 +74,7 @@ struct mc_options_
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bool csv = false;
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bool has_deadlock = false;
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bool bloemen = false;
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bool bloemen_ec = false;
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} mc_options;
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@ -86,6 +87,9 @@ parse_opt_finput(int key, char* arg, struct argp_state*)
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case CSV:
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mc_options.csv = true;
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break;
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case 'B':
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mc_options.bloemen_ec = true;
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break;
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case 'b':
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mc_options.bloemen = true;
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break;
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@ -150,6 +154,8 @@ static const argp_option options[] =
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{ "model", 'm', "STRING", 0, "use the model stored in file STRING", 0 },
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// ------------------------------------------------------------
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{ nullptr, 0, nullptr, 0, "Process options:", 2 },
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{ "bloemen-ec", 'B', nullptr, 0,
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"run the SCC computation of Bloemen et al. (PPOPP'16) with EC", 0},
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{ "bloemen", 'b', nullptr, 0,
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"run the SCC computation of Bloemen et al. (PPOPP'16)", 0 },
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{ "counterexample", 'c', nullptr, 0,
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@ -297,7 +303,8 @@ static int checked_main()
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if (mc_options.nb_threads == 1 &&
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mc_options.formula != nullptr &&
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mc_options.model != nullptr)
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mc_options.model != nullptr &&
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!mc_options.bloemen_ec)
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{
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product = spot::otf_product(model, prop);
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@ -409,7 +416,8 @@ static int checked_main()
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if (mc_options.nb_threads != 1 &&
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mc_options.formula != nullptr &&
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mc_options.model != nullptr)
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mc_options.model != nullptr &&
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!mc_options.bloemen_ec)
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{
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unsigned int hc = std::thread::hardware_concurrency();
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if (mc_options.nb_threads > hc)
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@ -711,6 +719,126 @@ static int checked_main()
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}
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}
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if (mc_options.bloemen_ec
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&& mc_options.model != nullptr && mc_options.formula != nullptr)
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{
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unsigned int hc = std::thread::hardware_concurrency();
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if (mc_options.nb_threads > hc)
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std::cerr << "Warning: you require " << mc_options.nb_threads
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<< " threads, but your computer only support " << hc
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<< ". This could slow down parallel algorithms.\n";
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tm.start("twa to twacube");
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auto propcube = spot::twa_to_twacube(prop);
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tm.stop("twa to twacube");
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tm.start("load kripkecube");
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spot::ltsmin_kripkecube_ptr modelcube = nullptr;
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try
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{
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modelcube = spot::ltsmin_model::load(mc_options.model)
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.kripkecube(propcube->get_ap(), deadf, mc_options.compress,
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mc_options.nb_threads);
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}
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catch (const std::runtime_error& e)
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{
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std::cerr << e.what() << '\n';
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}
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tm.stop("load kripkecube");
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int memused = spot::memusage();
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tm.start("bloemen emptiness check");
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auto res = spot::bloemen_ec<spot::ltsmin_kripkecube_ptr,
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spot::cspins_state,
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spot::cspins_iterator,
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spot::cspins_state_hash,
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spot::cspins_state_equal>
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(modelcube, propcube);
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tm.stop("bloemen emptiness check");
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memused = spot::memusage() - memused;
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if (!modelcube)
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{
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exit_code = 2;
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goto safe_exit;
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}
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// Display statistics
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unsigned sccs = 0;
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unsigned st = 0;
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unsigned tr = 0;
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unsigned inserted = 0;
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for (unsigned i = 0; i < std::get<2>(res).size(); ++i)
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{
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std::cout << "\n---- Thread number : " << i << '\n';
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std::cout << std::get<2>(res)[i].states
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<< " unique states visited\n";
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std::cout << std::get<2>(res)[i].inserted
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<< " unique states inserted\n";
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std::cout << std::get<2>(res)[i].transitions
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<< " transitions explored\n";
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std::cout << std::get<2>(res)[i].sccs << " sccs found\n";
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std::cout << std::get<2>(res)[i].walltime
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<< " milliseconds\n";
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sccs += std::get<2>(res)[i].sccs;
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st += std::get<2>(res)[i].states;
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tr += std::get<2>(res)[i].transitions;
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inserted += std::get<2>(res)[i].inserted;
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if (mc_options.csv)
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{
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std::cout << "Find following the csv: "
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<< "thread_id,walltimems,type,"
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<< "states,transitions,sccs\n";
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std::cout << "@th_" << i << ','
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<< std::get<2>(res)[i].walltime << ','
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<< (std::get<2>(res)[i].is_empty ?
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"EMPTY," : "NONEMPTY,")
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<< std::get<2>(res)[i].states << ','
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<< std::get<2>(res)[i].inserted << ','
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<< std::get<2>(res)[i].transitions << ','
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<< std::get<2>(res)[i].sccs
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<< std::endl;
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}
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}
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if (mc_options.csv)
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{
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std::cout << "\nSummary :\n";
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if (std::get<0>(res))
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std::cout << "no accepting run found\n";
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else if (!mc_options.compute_counterexample)
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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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exit_code = 1;
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}
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else
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std::cout << "an accepting run exists\n"
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<< std::get<1>(res) << '\n';
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std::cout << "Find following the csv: "
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<< "model,walltimems,memused,"
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<< "type,inserted_states,"
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<< "cumulated_states,cumulated_transitions,"
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<< "cumulated_sccs\n";
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std::cout << '#'
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<< split_filename(mc_options.model)
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<< ','
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<< tm.timer("bloemen emptiness check").walltime() << ','
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<< memused << ','
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<< (std::get<0>(res) ? "EMPTY," : "NONEMPTY,")
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<< inserted << ','
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<< st << ','
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<< tr << ','
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<< sccs
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<< '\n';
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}
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}
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safe_exit:
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if (mc_options.use_timer)
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tm.print(std::cout);
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