* spot/twa/twagraph.hh, spot/twa/twagraph.cc: here * NEWS: document it * tests/core/twagraph.cc, tests/core/tgbagraph.test: test it
188 lines
4.8 KiB
C++
188 lines
4.8 KiB
C++
// -*- coding: utf-8 -*-
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// Copyright (C) 2014-2018 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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#include "config.h"
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#include <iostream>
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#include <spot/twa/twagraph.hh>
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#include <spot/twaalgos/dot.hh>
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#include <spot/twaalgos/hoa.hh>
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#include <spot/tl/defaultenv.hh>
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static void f1()
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{
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auto d = spot::make_bdd_dict();
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auto tg = make_twa_graph(d);
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bdd p1 = bdd_ithvar(tg->register_ap("p1"));
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bdd p2 = bdd_ithvar(tg->register_ap("p2"));
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tg->acc().add_sets(2);
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for (auto f: tg->ap())
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std::cout << f.ap_name() << '\n';
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auto s1 = tg->new_state();
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auto s2 = tg->new_state();
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auto s3 = tg->new_state();
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tg->new_edge(s1, s1, bddfalse, {});
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tg->new_edge(s1, s2, p1, {});
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tg->new_edge(s1, s3, p2, tg->acc().mark(1));
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tg->new_edge(s2, s3, p1 & p2, tg->acc().mark(0));
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tg->new_edge(s3, s1, p1 | p2, spot::acc_cond::mark_t({0, 1}));
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tg->new_edge(s3, s2, p1 >> p2, {});
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tg->new_edge(s3, s3, bddtrue, spot::acc_cond::mark_t({0, 1}));
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spot::print_dot(std::cout, tg);
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{
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auto i = tg->get_graph().out_iteraser(s3);
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++i;
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i.erase();
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i.erase();
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assert(!i);
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spot::print_dot(std::cout, tg);
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}
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{
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auto i = tg->get_graph().out_iteraser(s3);
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i.erase();
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assert(!i);
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spot::print_dot(std::cout, tg);
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}
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spot::acc_cond::mark_t all({0, 1});
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tg->new_edge(s3, s1, p1 | p2, all);
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tg->new_edge(s3, s2, p1 >> p2, {});
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tg->new_edge(s3, s1, bddtrue, all);
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std::cerr << tg->num_edges() << '\n';
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assert(tg->num_edges() == 7);
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spot::print_dot(std::cout, tg);
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tg->merge_edges();
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spot::print_dot(std::cout, tg);
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std::cerr << tg->num_edges() << '\n';
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assert(tg->num_edges() == 5);
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// Add enough states so that the state vector is reallocated.
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for (unsigned i = 0; i < 100; ++i)
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tg->new_state();
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spot::print_dot(std::cout, tg);
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}
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// Test purge with named and highlighted states.
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static void f2()
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{
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auto d = spot::make_bdd_dict();
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auto tg = make_twa_graph(d);
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auto s1 = tg->new_state();
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auto s2 = tg->new_state();
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auto s3 = tg->new_state();
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(void) s2;
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tg->set_named_prop("state-names",
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new std::vector<std::string>({"s1", "s2", "s3"}));
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{
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auto hs = new std::map<unsigned, unsigned>;
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hs->emplace(s1, 5);
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hs->emplace(s3, 7);
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tg->set_named_prop("highlight-states", hs);
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}
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tg->set_init_state(s3);
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spot::print_dot(std::cout, tg);
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void (*action)(const std::vector<unsigned>&, void*) =
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[](const std::vector<unsigned>& newst, void*)
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{
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for (unsigned i = 0; i != newst.size(); ++i)
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{
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std::cout << i << " -> ";
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if (newst[i] == -1U)
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std::cout << "deleted" << std::endl;
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else
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std::cout << newst[i] << std::endl;
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}
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};
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tg->purge_unreachable_states(&action);
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spot::print_dot(std::cout, tg);
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}
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// Make sure the HOA printer adjusts the highlighted edges numbers
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static void f3()
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{
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auto d = spot::make_bdd_dict();
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auto tg = make_twa_graph(d);
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auto hs = new std::map<unsigned, unsigned>;
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tg->set_named_prop("highlight-edges", hs);
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auto s1 = tg->new_state();
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auto s2 = tg->new_state();
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auto s3 = tg->new_state();
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tg->set_init_state(s3);
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hs->emplace(tg->new_edge(s3, s2, bddtrue), 1);
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hs->emplace(tg->new_edge(s2, s1, bddtrue), 2);
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hs->emplace(tg->new_edge(s1, s1, bddtrue), 3);
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spot::print_hoa(std::cout, tg, "1.1") << '\n';
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}
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// Test creation of universal edges via initializer-list
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static void f4()
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{
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auto d = spot::make_bdd_dict();
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auto tg = make_twa_graph(d);
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auto s1 = tg->new_state();
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auto s2 = tg->new_state();
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auto s3 = tg->new_state();
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tg->set_univ_init_state({s3, s1});
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tg->new_univ_edge(s3, {s1, s2}, bddtrue);
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tg->new_univ_edge(s2, {s1}, bddtrue);
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tg->new_edge(s1, s1, bddtrue);
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spot::print_hoa(std::cout, tg, "1.1") << '\n';
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}
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// Test merge_states()
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static void f5()
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{
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auto d = spot::make_bdd_dict();
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auto tg = make_twa_graph(d);
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auto s1 = tg->new_state();
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auto s2 = tg->new_state();
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auto s3 = tg->new_state();
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tg->set_init_state(s3);
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tg->new_edge(s1, s2, bddtrue);
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tg->new_edge(s2, s2, bddtrue);
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tg->new_edge(s3, s2, bddtrue);
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tg->merge_states();
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spot::print_hoa(std::cout, tg) << '\n';
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}
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int main()
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{
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f1();
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f2();
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f3();
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f4();
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f5();
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}
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