/* Test Polyhedron::relation_with(c): we apply this function to
a zero-dimensional, universal polyhedron.
Copyright (C) 2001-2004 Roberto Bagnara <bagnara@cs.unipr.it>
This file is part of the Parma Polyhedra Library (PPL).
The PPL is free software; you can redistribute it and/or modify it
under the terms of the GNU General Public License as published by the
Free Software Foundation; either version 2 of the License, or (at your
option) any later version.
The PPL 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
along with this program; if not, write to the Free Software
Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307,
USA.
For the most up-to-date information see the Parma Polyhedra Library
site: http://www.cs.unipr.it/ppl/ . */
#include "ppl_test.hh"
using namespace std;
using namespace Parma_Polyhedra_Library;
using namespace Parma_Polyhedra_Library::IO_Operators;
#ifndef NOISY
#define NOISY 0
#endif
int
main() TRY {
set_handlers();
Poly_Con_Relation rel = Poly_Con_Relation::nothing();
Poly_Con_Relation known_result = Poly_Con_Relation::nothing();
C_Polyhedron ph;
#if NOISY
print_generators(ph, "--- ph ---");
#endif
// A false inequality constraint.
Constraint c_false1(LinExpression(-1) >= 0);
#if NOISY
print_constraint(c_false1, "--- c_false1 ---");
#endif
rel = ph.relation_with(c_false1);
#if NOISY
cout << "ph.relation_with(c_false1) == " << rel << endl;
#endif
known_result = Poly_Con_Relation::is_disjoint();
if (rel != known_result)
return 1;
// A false equality constraint.
Constraint c_false2(LinExpression(5) == -2);
#if NOISY
print_constraint(c_false2, "--- c_false2 ---");
#endif
rel = ph.relation_with(c_false2);
#if NOISY
cout << "ph.relation_with(c_false2) == " << rel << endl;
#endif
known_result = Poly_Con_Relation::is_disjoint();
if (rel != known_result)
return 1;
// A saturated inequality.
Constraint c_saturated1(LinExpression(3) >= 3);
#if NOISY
print_constraint(c_saturated1, "--- c_saturated1 ---");
#endif
rel = ph.relation_with(c_saturated1);
#if NOISY
cout << "ph.relation_with(c_saturated1) == " << rel << endl;
#endif
known_result = Poly_Con_Relation::saturates()
&& Poly_Con_Relation::is_included();
if (rel != known_result)
return 1;
// A saturated equality.
Constraint c_saturated2(LinExpression(1) == 1);
#if NOISY
print_constraint(c_saturated2, "--- c_saturated2 ---");
#endif
rel = ph.relation_with(c_saturated2);
#if NOISY
cout << "ph.relation_with(c_saturated2) == " << rel << endl;
#endif
known_result = Poly_Con_Relation::saturates()
&& Poly_Con_Relation::is_included();
if (rel != known_result)
return 1;
// A satisfied inequality which is not saturated.
Constraint c_satisfied(LinExpression(7) >= 5);
#if NOISY
print_constraint(c_satisfied, "--- c_satisfied ---");
#endif
rel = ph.relation_with(c_satisfied);
#if NOISY
cout << "ph.relation_with(c_satisfied) == " << rel << endl;
#endif
known_result = Poly_Con_Relation::is_included();
if (rel != known_result)
return 1;
// All tests passed.
return 0;
}
CATCH
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