cyphesis/rulesets/python/CyPy_Vector3D.h
2018-07-24 21:16:50 +02:00

117 lines
3.3 KiB
C++

/*
Copyright (C) 2018 Erik Ogenvik
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., 675 Mass Ave, Cambridge, MA 02139, USA.
*/
#ifndef CYPHESIS_CYPY_VECTOR3D_H
#define CYPHESIS_CYPY_VECTOR3D_H
#include "external/pycxx/CXX/Extensions.hxx"
#include "WrapperBase.h"
#include <wfmath/vector.h>
class CyPy_Vector3D : public WrapperBase<WFMath::Vector<3>, CyPy_Vector3D>
{
public:
CyPy_Vector3D(Py::PythonClassInstance* self, Py::Tuple& args, Py::Dict& kwds);
CyPy_Vector3D(Py::PythonClassInstance* self, WFMath::Vector<3> value);
static WFMath::Vector<3> parse(const Py::Object& object);
static void init_type();
Py::Object getattro(const Py::String& name) override;
int setattro(const Py::String& name, const Py::Object& attr) override;
Py::Object repr() override;
Py::Object rich_compare(const Py::Object&, int) override;
PyCxx_ssize_t sequence_length() override;
Py::Object sequence_item(Py_ssize_t) override;
int sequence_ass_item(Py_ssize_t, const Py::Object&) override;
Py::Object number_add(const Py::Object& other) override;
Py::Object number_subtract(const Py::Object& other) override;
Py::Object number_multiply(const Py::Object& other) override;
Py::Object number_floor_divide(const Py::Object& other) override;
Py::Object number_true_divide(const Py::Object& other) override;
Py::Object number_negative() override;
protected:
Py::Object dot(const Py::Tuple& args);
PYCXX_VARARGS_METHOD_DECL(CyPy_Vector3D, dot);
Py::Object cross(const Py::Tuple& args);
PYCXX_VARARGS_METHOD_DECL(CyPy_Vector3D, cross);
Py::Object rotatex(const Py::Tuple& args);
PYCXX_VARARGS_METHOD_DECL(CyPy_Vector3D, rotatex);
Py::Object rotatey(const Py::Tuple& args);
PYCXX_VARARGS_METHOD_DECL(CyPy_Vector3D, rotatey);
Py::Object rotatez(const Py::Tuple& args);
PYCXX_VARARGS_METHOD_DECL(CyPy_Vector3D, rotatez);
Py::Object rotate(const Py::Tuple& args);
PYCXX_VARARGS_METHOD_DECL(CyPy_Vector3D, rotate);
Py::Object angle(const Py::Tuple& args);
PYCXX_VARARGS_METHOD_DECL(CyPy_Vector3D, angle);
Py::Object sqr_mag();
PYCXX_NOARGS_METHOD_DECL(CyPy_Vector3D, sqr_mag);
Py::Object mag();
PYCXX_NOARGS_METHOD_DECL(CyPy_Vector3D, mag);
Py::Object is_valid();
PYCXX_NOARGS_METHOD_DECL(CyPy_Vector3D, is_valid);
Py::Object unit_vector();
PYCXX_NOARGS_METHOD_DECL(CyPy_Vector3D, unit_vector);
Py::Object unit_vector_to(const Py::Tuple& args);
PYCXX_VARARGS_METHOD_DECL(CyPy_Vector3D, unit_vector_to);
};
#endif //CYPHESIS_CYPY_VECTOR3D_H