cyphesis/tests/Py_Point3DTest.cpp
2018-12-16 23:20:33 +01:00

90 lines
3.4 KiB
C++

// Cyphesis Online RPG Server and AI Engine
// Copyright (C) 2009 Alistair Riddoch
//
// 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
#ifdef NDEBUG
#undef NDEBUG
#endif
#ifndef DEBUG
#define DEBUG
#endif
#include <Python.h>
#include "python_testers.h"
#include "rules/python/Python_API.h"
#include <cassert>
#include <rules/python/CyPy_Physics.h>
#include <rules/python/CyPy_Atlas.h>
int main()
{
init_python_api({&CyPy_Atlas::init, &CyPy_Physics::init});
run_python_string("from physics import Point3D");
run_python_string("Point3D([1, 0, 0])");
expect_python_error("Point3D(['1', 0, 0])",
PyExc_TypeError);
run_python_string("p=Point3D(1,0,0)");
run_python_string("p1=Point3D(0,1,0)");
run_python_string("p2=Point3D(0,1,0)");
run_python_string("print(Point3D())");
expect_python_error("print(Point3D('1'))", PyExc_ValueError);
expect_python_error("print(Point3D([1]))", PyExc_ValueError);
run_python_string("print(Point3D([1,0,0]))");
run_python_string("print(Point3D([1.1,0.0,0.0]))");
expect_python_error("print(Point3D(['1','1','1']))", PyExc_TypeError);
expect_python_error("print(Point3D(1.1))", PyExc_TypeError);
run_python_string("print(Point3D(1.1,0.0,0.0))");
expect_python_error("print(Point3D('1','1','1'))", PyExc_TypeError);
expect_python_error("print(Point3D(1.1,0.0,0.0,1.1))", PyExc_TypeError);
run_python_string("print(repr(p))");
run_python_string("print(p.mag())");
run_python_string("print(p.unit_vector_to(p1))");
expect_python_error("print(p.unit_vector_to(1.0))", PyExc_TypeError);
run_python_string("print(p.distance(p1))");
expect_python_error("print(p.distance(1.0))", PyExc_TypeError);
run_python_string("print(p.is_valid())");
run_python_string("print(p)");
run_python_string("print(p.x)");
run_python_string("print(p.y)");
run_python_string("print(p.z)");
run_python_string("print(p[0])");
run_python_string("print(p[1])");
run_python_string("print(p[2])");
run_python_string("print(p[-1])");
expect_python_error("print(p[3])", PyExc_IndexError);
run_python_string("p[0]=1.0");
run_python_string("p[1]=1.0");
run_python_string("p[2]=1.0");
expect_python_error("p[3]=1", PyExc_IndexError);
run_python_string("print(p == p1)");
run_python_string("print(p1 == p2)");
run_python_string("from physics import Vector3D");
run_python_string("v=Vector3D(1,0,0)");
run_python_string("print(p + v)");
expect_python_error("print(p + p1)", PyExc_TypeError);
run_python_string("print(p - v)");
run_python_string("print(p - p1)");
expect_python_error("print(p - 1.0)", PyExc_TypeError);
run_python_string("print(p == v)");
shutdown_python_api();
return 0;
}