Merge the core and python tests in the tests/ directory
* tests/: Rename as... * tests/core/: ... this. * python/tests/: Rename as... * tests/python/: ... this. * python/tests/run.in: Move as... * tests/run.in: This, and adjust. * tests/Makefile.am: Adjust to run both core and python tests. * configure.ac, README, debian/python3-spot.examples, debian/rules, doc/org/tut.org, python/Makefile.am, spot/ltsmin/Makefile.am, spot/ltsmin/kripke.test, spot/sanity/ipynb.test: Adjust.
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197 changed files with 734 additions and 715 deletions
435
tests/core/ngraph.cc
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435
tests/core/ngraph.cc
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// -*- coding: utf-8 -*-
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// Copyright (C) 2014, 2015 Laboratoire de Recherche et Développement
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// de l'Epita.
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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 <iostream>
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#include <spot/graph/ngraph.hh>
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#include <spot/twa/twa.hh>
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template <typename SL, typename TL>
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void
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dot_state(std::ostream& out, const spot::digraph<SL, TL>& g, unsigned n)
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{
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out << " [label=\"" << g.state_data(n) << "\"]\n";
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}
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template <typename TL>
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void
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dot_state(std::ostream& out, const spot::digraph<void, TL>&, unsigned)
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{
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out << '\n';
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}
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template <typename SL, typename TL>
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void
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dot_state(std::ostream& out, const spot::digraph<SL, TL>& g, unsigned n,
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std::string name)
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{
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out << " [label=\"" << name << "\\n" << g.state_data(n) << "\"]\n";
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}
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template <typename TL>
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void
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dot_state(std::ostream& out, const spot::digraph<void, TL>&, unsigned,
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std::string name)
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{
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out << " [label=\"" << name << "\"]\n";
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}
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template <typename SL, typename TL, typename TR>
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void
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dot_trans(std::ostream& out, const spot::digraph<SL, TL>&, TR& tr)
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{
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out << " [label=\"" << tr.data() << "\"]\n";
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}
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template <typename SL, typename TR>
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void
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dot_trans(std::ostream& out, const spot::digraph<SL, void>&, TR&)
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{
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out << '\n';
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}
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template <typename SL, typename TL>
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void
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dot(std::ostream& out, const spot::digraph<SL, TL>& g)
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{
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out << "digraph {\n";
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unsigned c = g.num_states();
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for (unsigned s = 0; s < c; ++s)
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{
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out << ' ' << s;
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dot_state(out, g, s);
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for (auto& t: g.out(s))
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{
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out << ' ' << s << " -> " << t.dst;
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dot_trans(out, g, t);
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}
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}
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out << "}\n";
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}
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template <typename G1, typename G2, typename G3, typename G4>
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void
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dot(std::ostream& out, const spot::named_graph<G1, G2, G3, G4>& g)
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{
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out << "digraph {\n";
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auto& gg = g.graph();
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unsigned c = gg.num_states();
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for (unsigned s = 0; s < c; ++s)
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{
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out << ' ' << s;
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dot_state(out, gg, s, g.get_name(s));
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for (auto& t: gg.out(s))
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{
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out << ' ' << s << " -> " << t.dst;
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dot_trans(out, gg, t);
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}
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}
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out << "}\n";
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}
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static bool
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g1(const spot::digraph<void, void>& g, unsigned s, int e)
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{
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int f = 0;
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for (auto& t: g.out(s))
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{
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(void) t;
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++f;
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}
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return f == e;
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}
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static bool f1()
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{
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spot::digraph<void, void> g(3);
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spot::named_graph<spot::digraph<void, void>, std::string> gg(g);
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auto s1 = gg.new_state("s1");
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auto s2 = gg.new_state("s2");
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auto s3 = gg.new_state("s3");
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gg.new_edge("s1", "s2");
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gg.new_edge("s1", "s3");
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gg.new_edge("s2", "s3");
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gg.new_edge("s3", "s1");
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gg.new_edge("s3", "s2");
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gg.new_edge("s3", "s3");
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dot(std::cout, gg);
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int f = 0;
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for (auto& t: g.out(s1))
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{
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(void) t;
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++f;
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}
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return f == 2
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&& g1(g, s3, 3)
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&& g1(g, s2, 1)
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&& g1(g, s1, 2);
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}
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static bool f2()
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{
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spot::digraph<int, void> g(3);
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spot::named_graph<spot::digraph<int, void>, std::string> gg(g);
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auto s1 = gg.new_state("s1", 1);
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gg.new_state("s2", 2);
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gg.new_state("s3", 3);
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gg.new_edge("s1", "s2");
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gg.new_edge("s1", "s3");
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gg.new_edge("s2", "s3");
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gg.new_edge("s3", "s2");
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dot(std::cout, gg);
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int f = 0;
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for (auto& t: g.out(s1))
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{
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f += g.state_data(t.dst);
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}
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return f == 5;
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}
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static bool f3()
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{
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spot::digraph<void, int> g(3);
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spot::named_graph<spot::digraph<void, int>, std::string> gg(g);
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auto s1 = gg.new_state("s1");
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gg.new_state("s2");
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gg.new_state("s3");
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gg.new_edge("s1", "s2", 1);
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gg.new_edge("s1", "s3", 2);
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gg.new_edge("s2", "s3", 3);
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gg.new_edge("s3", "s2", 4);
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dot(std::cout, gg);
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int f = 0;
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for (auto& t: g.out(s1))
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{
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f += t.label;
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}
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return f == 3 && g.states().size() == 3;
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}
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static bool f4()
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{
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spot::digraph<int, int> g(3);
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spot::named_graph<spot::digraph<int, int>, std::string> gg(g);
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auto s1 = gg.new_state("s1", 2);
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gg.new_state("s2", 3);
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gg.new_state("s3", 4);
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gg.new_edge("s1", "s2", 1);
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gg.new_edge("s1", "s3", 2);
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gg.new_edge("s2", "s3", 3);
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gg.new_edge("s3", "s2", 4);
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dot(std::cout, gg);
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int f = 0;
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for (auto& t: g.out(s1))
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{
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f += t.label * g.state_data(t.dst);
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}
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return f == 11;
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}
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static bool f5()
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{
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typedef spot::digraph<void, std::pair<int, float>> graph_t;
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graph_t g(3);
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spot::named_graph<graph_t, std::string> gg(g);
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auto s1 = gg.new_state("s1");
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gg.new_state("s2");
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gg.new_state("s3");
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gg.new_edge("s1", "s2", std::make_pair(1, 1.2f));
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gg.new_edge("s1", "s3", std::make_pair(2, 1.3f));
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gg.new_edge("s2", "s3", std::make_pair(3, 1.4f));
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gg.new_edge("s3", "s2", std::make_pair(4, 1.5f));
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int f = 0;
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float h = 0;
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for (auto& t: g.out(s1))
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{
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f += std::get<0>(t);
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h += std::get<1>(t);
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}
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return f == 3 && (h > 2.49 && h < 2.51);
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}
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static bool f6()
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{
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typedef spot::digraph<void, std::pair<int, float>> graph_t;
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graph_t g(3);
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spot::named_graph<graph_t, std::string> gg(g);
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auto s1 = gg.new_state("s1");
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gg.new_state("s2");
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gg.new_state("s3");
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gg.new_edge("s1", "s2", 1, 1.2f);
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gg.new_edge("s1", "s3", 2, 1.3f);
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gg.new_edge("s2", "s3", 3, 1.4f);
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gg.new_edge("s3", "s2", 4, 1.5f);
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int f = 0;
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float h = 0;
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for (auto& t: g.out(s1))
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{
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f += t.first;
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h += t.second;
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}
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return f == 3 && (h > 2.49 && h < 2.51);
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}
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static bool f7()
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{
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typedef spot::digraph<int, int, true> graph_t;
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graph_t g(3);
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spot::named_graph<graph_t, std::string> gg(g);
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auto s1 = gg.new_state("s1", 2);
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gg.new_state("s2", 3);
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gg.new_state("s3", 4);
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gg.new_edge("s1", {"s2", "s3"}, 1);
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gg.new_edge("s1", {"s3"}, 2);
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gg.new_edge("s2", {"s3"}, 3);
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gg.new_edge("s3", {"s2"}, 4);
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int f = 0;
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for (auto& t: g.out(s1))
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{
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for (auto& tt: t.dst)
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{
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f += t.label * g.state_data(tt);
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}
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}
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return f == 15;
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}
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struct int_pair
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{
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int one;
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int two;
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friend std::ostream& operator<<(std::ostream& os, int_pair p)
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{
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os << '(' << p.one << ',' << p.two << ')';
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return os;
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}
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#if __GNUC__ <= 4 && __GNUC_MINOR__ <= 6
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int_pair(int one, int two)
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: one(one), two(two)
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{
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}
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int_pair()
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{
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}
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#endif
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};
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static bool f8()
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{
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typedef spot::digraph<int_pair, int_pair> graph_t;
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graph_t g(3);
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spot::named_graph<graph_t, std::string> gg(g);
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auto s1 = gg.new_state("s1", 2, 4);
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gg.new_state("s2", 3, 6);
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gg.new_state("s3", 4, 8);
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gg.new_edge("s1", "s2", 1, 3);
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gg.new_edge("s1", "s3", 2, 5);
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gg.new_edge("s2", "s3", 3, 7);
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gg.new_edge("s3", "s2", 4, 9);
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dot(std::cout, gg);
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int f = 0;
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for (auto& t: g.out(s1))
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{
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f += t.one * g.state_data(t.dst).one;
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f += t.two * g.state_data(t.dst).two;
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}
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return f == 69;
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}
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struct my_state: public spot::state
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{
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public:
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virtual ~my_state() noexcept
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{
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}
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virtual int compare(const spot::state* other) const
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{
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auto o = down_cast<const my_state*>(other);
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assert(o);
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// Do not simply return "other - this", it might not fit in an int.
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if (o < this)
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return -1;
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if (o > this)
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return 1;
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return 0;
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}
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virtual size_t hash() const
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{
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return
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reinterpret_cast<const char*>(this) - static_cast<const char*>(nullptr);
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}
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virtual my_state*
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clone() const
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{
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return const_cast<my_state*>(this);
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}
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virtual void destroy() const
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{
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}
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friend std::ostream& operator<<(std::ostream& os, const my_state&)
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{
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return os;
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}
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};
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static bool f9()
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{
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typedef spot::digraph<my_state, int_pair> graph_t;
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graph_t g(3);
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spot::named_graph<graph_t, std::string> gg(g);
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auto s1 = gg.new_state("s1");
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gg.new_state("s2");
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auto s3 = gg.new_state("s3");
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gg.alias_state(s3, "s3b");
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gg.new_edge("s1", "s2", 1, 3);
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gg.new_edge("s1", "s3", 2, 5);
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gg.new_edge("s2", "s3b", 3, 7);
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gg.new_edge("s3", "s2", 4, 9);
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dot(std::cout, gg);
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int f = 0;
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for (auto& t: g.out(s1))
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{
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f += t.one + t.two;
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}
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return (f == 11) &&
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g.state_data(s1).compare(&g.state_data(gg.get_state("s1"))) == 0 &&
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g.state_data(s1).compare(&g.state_data(gg.get_state("s2"))) != 0;
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}
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int main()
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{
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bool a1 = f1();
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bool a2 = f2();
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bool a3 = f3();
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bool a4 = f4();
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bool a5 = f5();
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bool a6 = f6();
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bool a7 = f7();
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bool a8 = f8();
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bool a9 = f9();
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std::cout << a1 << ' '
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<< a2 << ' '
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<< a3 << ' '
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<< a4 << ' '
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<< a5 << ' '
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<< a6 << ' '
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<< a7 << ' '
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<< a8 << ' '
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<< a9 << '\n';
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return !(a1 && a2 && a3 && a4 && a5 && a6 && a7 && a8 && a9);
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}
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