// point_test.cpp (Point<> test functions) // // The WorldForge Project // Copyright (C) 2001 The WorldForge Project // // This program 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. // // This program 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 02110-1301 USA. // // For information about WorldForge and its authors, please contact // the Worldforge Web Site at http://www.worldforge.org. // Author: Ron Steinke // Created: 2001-12-12 #ifdef NDEBUG #undef NDEBUG #endif #ifndef DEBUG #define DEBUG #endif #include "wfmath/const.h" #include "wfmath/vector.h" #include "wfmath/point.h" #include "wfmath/axisbox.h" #include "wfmath/ball.h" #include "wfmath/stream.h" #include "general_test.h" #include "shape_test.h" #include #include using namespace WFMath; template void test_point(const Point& p) { std::cout << "Testing point: " << p << std::endl; test_general(p); test_shape(p); std::vector > pvec; std::list clist; assert(!Barycenter(pvec).isValid()); assert(!Barycenter(pvec, clist).isValid()); pvec.push_back(p); assert(p == Barycenter(pvec)); clist.push_back(5); assert(p == Barycenter(pvec, clist)); // Barycenter fails if sum of weights is 0 pvec.push_back(p); assert(Barycenter(pvec).isValid()); clist.push_back(-5); assert(!Barycenter(pvec, clist).isValid()); assert(p == p + (p - p)); //Check that an invalid point isn't equal to a valid point, even if the values are equal Point invalid_point_1; Point invalid_point_2; for (size_t i = 0; i < dim; ++i) { invalid_point_1[i] = 0.0; invalid_point_2[i] = 0.0; } assert(invalid_point_1 != Point::ZERO()); //Two invalid points are never equal assert(invalid_point_1 != invalid_point_2); // FIXME more tests } int main() { Point<2> p{}; assert(!p.isValid()); test_point(Point<2>(1, -1)); test_point(Point<3>(1, -1, numeric_constants::sqrt2())); Point<2> zero2 = Point<2>::ZERO(); assert(zero2.x() == 0 && zero2.y() == 0); Point<3> zero3 = Point<3>::ZERO(); assert(zero3.x() == 0 && zero3.y() == 0 && zero3.z() == 0); assert(Point<3>(1,2,3).isEqualTo(Point<3>(1,2,3))); assert(!Point<3>(1,2,3).isEqualTo(Point<3>(3,2,1))); assert(!Point<3>(1,2,3).isEqualTo(Point<3>())); assert(!Point<3>().isEqualTo(Point<3>(3,2,1))); assert(!Point<3>().isEqualTo(Point<3>())); //invalid points are never equal return 0; }