cyphesis/rulesets/python/CyPy_Quaternion.cpp
2018-07-21 13:58:13 +02:00

187 lines
6.2 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.
*/
#include <physics/Quaternion.h>
#include "CyPy_Quaternion.h"
#include "CyPy_Vector3D.h"
#include "CoordHelper.h"
CyPy_Quaternion::CyPy_Quaternion(Py::PythonClassInstance* self, Py::Tuple& args, Py::Dict& kwds)
: WrapperBase(self, args, kwds)
{
switch (args.size()) {
case 0:
break;
case 1: {
auto arg = args.front();
if (!arg.isSequence()) {
throw Py::TypeError("Quaternion() from single value must a list");
}
Py::Sequence seq(arg);
if (seq.size() != 4) {
throw Py::ValueError("Quaternion() from a list must be 4 long");
}
{
float quaternion[4];
for (int i = 0; i < 4; i++) {
auto item = seq.getItem(i);
if (!item.isNumeric()) {
throw Py::TypeError("Quaternion() must take list of floats, or ints");
} else {
quaternion[i] = (WFMath::CoordType) Py::Float(item).as_double();
}
}
m_value = WFMath::Quaternion(quaternion[3], quaternion[0],
quaternion[1], quaternion[2]);
}
}
break;
case 2: {
if (!CyPy_Vector3D::check(args[0])) {
throw Py::TypeError("Quaternion(a,b) must take a vector as first argument");
}
if (Py::Object(args[1]).isFloat()) {
m_value.rotation(CyPy_Vector3D::value(args[0]), Py::Float(args[1]));
} else {
throw Py::TypeError("Quaternion(a,b) must take a float as second argument");
}
}
break;
case 3: {
if (!CyPy_Vector3D::check(args[0])) {
throw Py::TypeError("Quaternion(a,b,fallbackAxis) must take a vector as first argument");
}
if (CyPy_Vector3D::check(args[1])) {
if (!CyPy_Vector3D::check(args[2])) {
throw Py::TypeError("Quaternion(a,b,fallbackAxis) must take a vector as third argument");
}
m_value = ::quaternionFromTo(CyPy_Vector3D::value(args[0]), CyPy_Vector3D::value(args[1]), CyPy_Vector3D::value(args[2]));
} else {
throw Py::TypeError("Quaternion(a,b,fallbackAxis) must take a vector as second argument");
}
}
break;
case 4: {
float quaternion[4];
for (int i = 0; i < 4; i++) {
if (args[i].isNumeric()) {
quaternion[i] = static_cast<float>(Py::Float(args[i]));
} else {
throw Py::TypeError("Quaternion() must take list of floats, or ints");
}
}
m_value = WFMath::Quaternion(quaternion[3], quaternion[0],
quaternion[1], quaternion[2]);
}
break;
default:
throw Py::TypeError("Quaternion must take list of floats, or ints, 4 ints or 4 floats");
}
}
CyPy_Quaternion::CyPy_Quaternion(Py::PythonClassInstance* self, WFMath::Quaternion value)
: WrapperBase(self, std::move(value))
{
}
void CyPy_Quaternion::init_type()
{
behaviors().name("Quaternion");
behaviors().doc("");
behaviors().supportRepr();
behaviors().supportRichCompare();
behaviors().supportNumberType(Py::PythonType::support_number_multiply);
PYCXX_ADD_VARARGS_METHOD(rotation, rotation, "");
PYCXX_ADD_NOARGS_METHOD(as_list, as_list, "");
PYCXX_ADD_NOARGS_METHOD(is_valid, is_valid, "");
behaviors().readyType();
}
Py::Object CyPy_Quaternion::as_list()
{
Py::List list;
list.append(Py::Float(m_value.vector().x()));
list.append(Py::Float(m_value.vector().y()));
list.append(Py::Float(m_value.vector().z()));
list.append(Py::Float(m_value.scalar()));
return list;
}
Py::Object CyPy_Quaternion::is_valid()
{
return CoordHelper::is_valid(m_value);
}
Py::Object CyPy_Quaternion::rotation(const Py::Tuple& args)
{
args.verify_length(2, 2);
if (!CyPy_Vector3D::check(args[0])) {
throw Py::TypeError("First argument must be a Vector3D");
}
if (!args[1].isNumeric()) {
throw Py::TypeError("Second argument must be a number");
}
m_value.rotation(CyPy_Vector3D::value(args[0]), Py::Float(args[0]));
return self();
}
Py::Object CyPy_Quaternion::getattro(const Py::String& name)
{
auto nameStr = name.as_string();
if (nameStr == "x") { return Py::Float(m_value.vector().x()); }
if (nameStr == "y") { return Py::Float(m_value.vector().y()); }
if (nameStr == "z") { return Py::Float(m_value.vector().z()); }
if (nameStr == "w") { return Py::Float(m_value.scalar()); }
return PythonExtensionBase::getattro(name);
}
Py::Object CyPy_Quaternion::repr()
{
char buf[128];
::snprintf(buf, 128, "(%f, (%f, %f, %f))", m_value.scalar(),
m_value.vector().x(), m_value.vector().y(),
m_value.vector().z());
return Py::String(buf);
}
Py::Object CyPy_Quaternion::rich_compare(const Py::Object& other, int type)
{
return CoordHelper::rich_compare<decltype(m_value), CyPy_Quaternion>(m_value, other, type);
}
Py::Object CyPy_Quaternion::number_multiply(const Py::Object& other)
{
if (!CyPy_Quaternion::check(other)) {
throw Py::TypeError("Quaternion must be multiplied by Quaternion");
}
return CyPy_Quaternion::wrap(m_value * CyPy_Quaternion::value(other));
}