/* Test BD_Shape::affine_preimage(). Copyright (C) 2001-2010 Roberto Bagnara Copyright (C) 2010-2011 BUGSENG srl (http://bugseng.com) 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 3 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., 51 Franklin Street, Fifth Floor, 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" namespace { bool test01() { Variable x(0); Variable y(1); TBD_Shape bds(3); bds.add_constraint(x <= 2); bds.add_constraint(x - y <= 3); bds.add_constraint(y <= 2); print_constraints(bds, "*** bds ***"); bds.affine_preimage(x, y); BD_Shape known_result(3); known_result.add_constraint(y <= 2); bool ok = check_result(bds, known_result); print_constraints(bds, "*** bds.affine_preimage(x, y) ***"); return ok; } bool test02() { Variable A(0); Variable B(1); TBD_Shape bds(2); bds.add_constraint(A >= 0); bds.add_constraint(B >= 0); bds.add_constraint(A - B - 3 >= 0); print_constraints(bds, "*** bds ***"); bds.affine_preimage(A, B-1); BD_Shape known_result(2); known_result.add_constraint(B >= 0); bool ok = check_result(bds, known_result); print_constraints(bds, "*** bds.affine_preimage(A, B-1) ***"); return ok; } bool test03() { Variable A(0); Variable B(1); TBD_Shape bds(2); bds.add_constraint(A >= 2); bds.add_constraint(B >= 0); print_constraints(bds, "*** bds ***"); bds.affine_preimage(A, 2*A + 2, 2); BD_Shape known_result(2); known_result.add_constraint(A >= 1); known_result.add_constraint(B >= 0); bool ok = check_result(bds, known_result); print_constraints(bds, "*** bds.affine_preimage(A, 2*A + 2, 2) ***"); return ok; } bool test04() { Variable A(0); Variable B(1); TBD_Shape bds(2); bds.add_constraint(A >= 2); bds.add_constraint(B >= 0); print_constraints(bds, "*** bds ***"); bds.affine_preimage(B, Linear_Expression(3)); BD_Shape known_result(2); known_result.add_constraint(A >= 2); bool ok = check_result(bds, known_result); print_constraints(bds, "*** bds.affine_preimage(B, 3) ***"); return ok; } bool test05() { Variable x(0); Variable y(1); TBD_Shape bds(2); bds.add_constraint(x >= y); try { // This is an incorrect use of the method // BD_Shape::affine_preimage(v, expr, d): it is illegal // to apply it to a expression with the denominator // equal to zero. Coefficient d = 0; bds.affine_preimage(x, x + 1, d); } catch (std::invalid_argument& e) { nout << "std::invalid_argument: " << endl; return true; } catch (...) { } return false; } bool test06() { Variable x(0); Variable y(1); Variable z(2); TBD_Shape bds(2); bds.add_constraint(x >= y); try { // This is an incorrect use of the method // BD_Shape::affine_preimage(v, expr, d): it is illegal // to apply it to an expression whose space dimension is // greater than the space dimension of the BDS. bds.affine_preimage(y, z); } catch (std::invalid_argument& e) { nout << "std::invalid_argument: " << endl; return true; } catch (...) { } return false; } bool test07() { Variable A(0); Variable B(1); Variable C(2); TBD_Shape bds(3); bds.add_constraint(A <= -1); bds.add_constraint(B <= 0); bds.add_constraint(C >= 0); print_constraints(bds, "*** bds ***"); bds.affine_preimage(A, 4*B + 6*C + 2, -2); BD_Shape known_result(3); known_result.add_constraint(B <= 0); known_result.add_constraint(C >= 0); bool ok = check_result(bds, known_result); print_constraints(bds, "*** bds.affine_preimage(A, 4*B + 6*C + 2, -2) ***"); return ok; } bool test08() { Variable A(0); Variable B(1); Variable C(2); TBD_Shape bds(3); bds.add_constraint(A <= -1); bds.add_constraint(B <= 0); bds.add_constraint(C >= 0); print_constraints(bds, "*** bds ***"); bds.affine_preimage(A, 2*A + 3*C + 2, 2); BD_Shape known_result(3); known_result.add_constraint(A <= -2); known_result.add_constraint(B <= 0); known_result.add_constraint(C >= 0); bool ok = check_result(bds, known_result); print_constraints(bds, "*** bds.affine_preimage(A, 2*A + 3*C + 2, 2) ***"); return ok; } bool test09() { Variable A(0); Variable B(1); Variable C(2); TBD_Shape bds(3); bds.add_constraint(A <= -1); bds.add_constraint(B <= 0); bds.add_constraint(C >= 0); print_constraints(bds, "*** bds ***"); bds.affine_preimage(A, 2*A + 3*C + 2, 2); BD_Shape known_result(3); known_result.add_constraint(A <= -2); known_result.add_constraint(B <= 0); known_result.add_constraint(C >= 0); bool ok = check_result(bds, known_result); print_constraints(bds, "*** bds.affine_preimage(A, -3*A + C - 1, 2) ***"); return ok; } bool test10() { Variable A(0); Variable B(1); Variable C(2); TBD_Shape bds(3); bds.add_constraint(A <= -1); bds.add_constraint(B <= 0); bds.add_constraint(C >= 0); print_constraints(bds, "*** bds ***"); bds.affine_preimage(A, 3*A + C - 1, -2); BD_Shape known_result(3); known_result.add_constraint(B <= 0); known_result.add_constraint(C >= 0); bool ok = check_result(bds, known_result); print_constraints(bds, "*** bds.affine_preimage(A, 3*A + C - 1, -2) ***"); return ok; } bool test11() { Variable A(0); Variable B(1); Variable C(2); TBD_Shape bds(3); bds.add_constraint(A <= -1); bds.add_constraint(B <= 0); bds.add_constraint(C >= 0); print_constraints(bds, "*** bds ***"); bds.affine_preimage(A, -3*A + C - 1, -2); BD_Shape known_result(3); known_result.add_constraint(B <= 0); known_result.add_constraint(C >= 0); bool ok = check_result(bds, known_result); print_constraints(bds, "*** bds.affine_preimage(A, -3*A + C - 1, -2) ***"); return ok; } bool test12() { Variable A(0); Variable B(1); Variable C(2); Variable D(3); TBD_Shape bds(4); bds.add_constraint(A == 2); bds.add_constraint(B == 0); bds.add_constraint(C >= -3); bds.add_constraint(D <= 5); print_constraints(bds, "*** bds ***"); bds.affine_preimage(D, 4*A - B + 2*C + 5*D - 1, 3); BD_Shape known_result(4); known_result.add_constraint(A == 2); known_result.add_constraint(B == 0); known_result.add_constraint(C >= -3); known_result.add_constraint(5*D <= 14); bool ok = check_result(bds, known_result, "7.63e-7", "3.82e-7", "1.91e-7"); print_constraints(bds, "*** bds.affine_preimage" "(D, 4*A - B + 2*C + 5*D - 1, 3) ***"); return ok; } bool test13() { Variable A(0); Variable B(1); Variable C(2); TBD_Shape bds(3); bds.add_constraint(A <= -1); bds.add_constraint(B <= 0); bds.add_constraint(C >= 0); print_constraints(bds, "*** bds ***"); bds.affine_preimage(B, -B); BD_Shape known_result(3); known_result.add_constraint(A <= -1); known_result.add_constraint(B >= 0); known_result.add_constraint(C >= 0); bool ok = check_result(bds, known_result); print_constraints(bds, "*** bds.affine_preimage(B, -B) ***"); return ok; } bool test14() { Variable A(0); Variable B(1); Variable C(2); TBD_Shape bds(3); bds.add_constraint(A <= -1); bds.add_constraint(B <= 0); bds.add_constraint(C >= 0); print_constraints(bds, "*** bds ***"); BD_Shape known_result(bds); bds.affine_preimage(B, -B, -1); bool ok = check_result(bds, known_result); print_constraints(bds, "*** bds.affine_preimage(B, -B, -1) ***"); return ok; } bool test15() { Variable A(0); Variable B(1); Variable C(2); TBD_Shape bds(3); bds.add_constraint(A <= -1); bds.add_constraint(B <= 0); bds.add_constraint(C >= 0); print_constraints(bds, "*** bds ***"); BD_Shape known_result(3); known_result.add_constraint(A <= -1); known_result.add_constraint(B >= 2); known_result.add_constraint(C >= 0); bds.affine_preimage(B, -3*B + 6, 3); bool ok = check_result(bds, known_result); print_constraints(bds, "*** bds.affine_preimage(B, -3*B + 6, 3) ***"); return ok; } bool test16() { Variable A(0); TBD_Shape bds(1); bds.add_constraint(A <= -1); print_constraints(bds, "*** bds ***"); bds.affine_image(A, 2*A, 3); BD_Shape mpq_known_result(1); mpq_known_result.add_constraint(3*A <= -2); bool ok = check_result(bds, mpq_known_result, "9.54e-8", "9.54e-8", "9.54e-8"); print_constraints(bds, "*** bds.affine_image(A, 2*A, 3) ***"); return ok; } } // namespace BEGIN_MAIN DO_TEST(test01); DO_TEST(test02); DO_TEST(test03); DO_TEST(test04); DO_TEST(test05); DO_TEST(test06); DO_TEST(test07); DO_TEST(test08); DO_TEST(test09); DO_TEST(test10); DO_TEST(test11); DO_TEST(test12); DO_TEST(test13); DO_TEST(test14); DO_TEST(test15); DO_TEST(test16); END_MAIN