674 lines
		
	
	
		
			18 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
			
		
		
	
	
			674 lines
		
	
	
		
			18 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
/* 
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 * ***** BEGIN GPL LICENSE BLOCK *****
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 *
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 * This program is free software; you can redistribute it and/or
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 * modify it under the terms of the GNU General Public License
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 * as published by the Free Software Foundation; either version 2
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 * of the License, or (at your option) any later version.
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 *
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 * This program is distributed in the hope that it will be useful,
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 * but WITHOUT ANY WARRANTY; without even the implied warranty of
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 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
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 * GNU General Public License for more details.
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 *
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 * You should have received a copy of the GNU General Public License
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 * along with this program; if not, write to the Free Software Foundation,
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 * Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301, USA.
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 *
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 * Contributor(s): Joseph Gilbert, Campbell Barton
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 *
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 * ***** END GPL LICENSE BLOCK *****
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 */
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/** \file blender/python/mathutils/mathutils.c
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 *  \ingroup pymathutils
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 */
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#include <Python.h>
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#include "mathutils.h"
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#include "BLI_math.h"
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#include "BLI_utildefines.h"
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#include "../generic/python_utildefines.h"
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#ifndef MATH_STANDALONE
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#  include "BLI_dynstr.h"
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#endif
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PyDoc_STRVAR(M_Mathutils_doc,
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"This module provides access to the math classes:\n"
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"\n"
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"- :class:`Color`,\n"
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"- :class:`Euler`,\n"
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"- :class:`Matrix`,\n"
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"- :class:`Quaternion`,\n"
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"- :class:`Vector`,\n"
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"\n"
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".. note::\n"
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"\n"
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"   Classes, methods and attributes that accept vectors also accept other numeric sequences,\n"
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"   such as tuples, lists."
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);
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static int mathutils_array_parse_fast(float *array,
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                                      int size,
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                                      PyObject *value_fast,
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                                      const char *error_prefix)
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{
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	PyObject *item;
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	PyObject **value_fast_items = PySequence_Fast_ITEMS(value_fast);
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	int i;
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	i = size;
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	do {
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		i--;
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		if (((array[i] = PyFloat_AsDouble((item = value_fast_items[i]))) == -1.0f) &&
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		    PyErr_Occurred())
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		{
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			PyErr_Format(PyExc_TypeError,
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			             "%.200s: sequence index %d expected a number, "
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			             "found '%.200s' type, ",
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			             error_prefix, i, Py_TYPE(item)->tp_name);
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			size = -1;
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			break;
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		}
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	} while (i);
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	return size;
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}
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/**
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 * helper function that returns a Python ``__hash__``.
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 *
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 * \note consistent with the equivalent tuple of floats (CPython's 'tuplehash')
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 */
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Py_hash_t mathutils_array_hash(const float *array, size_t array_len)
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{
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	int i;
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	Py_uhash_t x;  /* Unsigned for defined overflow behavior. */
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	Py_hash_t y;
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	Py_uhash_t mult;
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	Py_ssize_t len;
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	mult = _PyHASH_MULTIPLIER;
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	len = array_len;
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	x = 0x345678UL;
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	i = 0;
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	while (--len >= 0) {
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		y = _Py_HashDouble((double)(array[i++]));
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		if (y == -1)
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			return -1;
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		x = (x ^ y) * mult;
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		/* the cast might truncate len; that doesn't change hash stability */
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		mult += (Py_hash_t)(82520UL + len + len);
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	}
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	x += 97531UL;
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	if (x == (Py_uhash_t)-1)
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		x = -2;
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	return x;
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}
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/* helper function returns length of the 'value', -1 on error */
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int mathutils_array_parse(float *array, int array_min, int array_max, PyObject *value, const char *error_prefix)
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{
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	const unsigned int flag = array_max;
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	int size;
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	array_max &= ~MU_ARRAY_FLAGS;
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#if 1 /* approx 6x speedup for mathutils types */
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	if ((size = VectorObject_Check(value)     ? ((VectorObject *)value)->size : 0) ||
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	    (size = EulerObject_Check(value)      ? 3 : 0) ||
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	    (size = QuaternionObject_Check(value) ? 4 : 0) ||
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	    (size = ColorObject_Check(value)      ? 3 : 0))
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	{
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		if (BaseMath_ReadCallback((BaseMathObject *)value) == -1) {
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			return -1;
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		}
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		if (flag & MU_ARRAY_SPILL) {
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			CLAMP_MAX(size, array_max);
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		}
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		if (size > array_max || size < array_min) {
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			if (array_max == array_min) {
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				PyErr_Format(PyExc_ValueError,
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				             "%.200s: sequence size is %d, expected %d",
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				             error_prefix, size, array_max);
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			}
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			else {
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				PyErr_Format(PyExc_ValueError,
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				             "%.200s: sequence size is %d, expected [%d - %d]",
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				             error_prefix, size, array_min, array_max);
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			}
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			return -1;
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		}
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		memcpy(array, ((BaseMathObject *)value)->data, size * sizeof(float));
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	}
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	else
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#endif
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	{
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		PyObject *value_fast = NULL;
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		/* non list/tuple cases */
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		if (!(value_fast = PySequence_Fast(value, error_prefix))) {
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			/* PySequence_Fast sets the error */
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			return -1;
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		}
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		size = PySequence_Fast_GET_SIZE(value_fast);
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		if (flag & MU_ARRAY_SPILL) {
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			CLAMP_MAX(size, array_max);
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		}
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		if (size > array_max || size < array_min) {
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			if (array_max == array_min) {
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				PyErr_Format(PyExc_ValueError,
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				             "%.200s: sequence size is %d, expected %d",
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				             error_prefix, size, array_max);
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			}
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			else {
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				PyErr_Format(PyExc_ValueError,
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				             "%.200s: sequence size is %d, expected [%d - %d]",
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				             error_prefix, size, array_min, array_max);
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			}
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			Py_DECREF(value_fast);
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			return -1;
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		}
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		size = mathutils_array_parse_fast(array, size, value_fast, error_prefix);
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		Py_DECREF(value_fast);
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	}
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	if (size != -1) {
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		if (flag & MU_ARRAY_ZERO) {
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			int size_left = array_max - size;
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			if (size_left) {
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				memset(&array[size], 0, sizeof(float) * size_left);
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			}
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		}
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	}
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	return size;
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}
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/* on error, -1 is returned and no allocation is made */
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int mathutils_array_parse_alloc(float **array, int array_min, PyObject *value, const char *error_prefix)
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{
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	int size;
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#if 1 /* approx 6x speedup for mathutils types */
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	if ((size = VectorObject_Check(value)     ? ((VectorObject *)value)->size : 0) ||
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	    (size = EulerObject_Check(value)      ? 3 : 0) ||
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	    (size = QuaternionObject_Check(value) ? 4 : 0) ||
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	    (size = ColorObject_Check(value)      ? 3 : 0))
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	{
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		if (BaseMath_ReadCallback((BaseMathObject *)value) == -1) {
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			return -1;
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		}
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		if (size < array_min) {
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			PyErr_Format(PyExc_ValueError,
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			             "%.200s: sequence size is %d, expected > %d",
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			             error_prefix, size, array_min);
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			return -1;
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		}
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		*array = PyMem_Malloc(size * sizeof(float));
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		memcpy(*array, ((BaseMathObject *)value)->data, size * sizeof(float));
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		return size;
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	}
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	else
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#endif
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	{
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		PyObject *value_fast = NULL;
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		// *array = NULL;
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		int ret;
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		/* non list/tuple cases */
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		if (!(value_fast = PySequence_Fast(value, error_prefix))) {
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			/* PySequence_Fast sets the error */
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			return -1;
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		}
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		size = PySequence_Fast_GET_SIZE(value_fast);
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		if (size < array_min) {
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			Py_DECREF(value_fast);
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			PyErr_Format(PyExc_ValueError,
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			             "%.200s: sequence size is %d, expected > %d",
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			             error_prefix, size, array_min);
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			return -1;
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		}
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		*array = PyMem_Malloc(size * sizeof(float));
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		ret = mathutils_array_parse_fast(*array, size, value_fast, error_prefix);
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		Py_DECREF(value_fast);
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		if (ret == -1) {
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			PyMem_Free(*array);
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		}
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		return ret;
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	}
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}
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/* parse an array of vectors */
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int mathutils_array_parse_alloc_v(float **array, int array_dim, PyObject *value, const char *error_prefix)
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{
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	PyObject *value_fast;
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	const int array_dim_flag = array_dim;
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	int i, size;
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	/* non list/tuple cases */
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	if (!(value_fast = PySequence_Fast(value, error_prefix))) {
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		/* PySequence_Fast sets the error */
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		return -1;
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	}
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	size = PySequence_Fast_GET_SIZE(value_fast);
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	if (size != 0) {
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		PyObject **value_fast_items = PySequence_Fast_ITEMS(value_fast);
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		float *fp;
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		array_dim &= ~MU_ARRAY_FLAGS;
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		fp = *array = PyMem_Malloc(size * array_dim * sizeof(float));
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		for (i = 0; i < size; i++, fp += array_dim) {
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			PyObject *item = value_fast_items[i];
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			if (mathutils_array_parse(fp, array_dim, array_dim_flag, item, error_prefix) == -1) {
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				PyMem_Free(*array);
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				*array = NULL;
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				size = -1;
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				break;
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			}
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		}
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	}
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	Py_DECREF(value_fast);
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	return size;
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}
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int mathutils_any_to_rotmat(float rmat[3][3], PyObject *value, const char *error_prefix)
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{
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	if (EulerObject_Check(value)) {
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		if (BaseMath_ReadCallback((BaseMathObject *)value) == -1) {
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			return -1;
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		}
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		else {
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			eulO_to_mat3(rmat, ((EulerObject *)value)->eul, ((EulerObject *)value)->order);
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			return 0;
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		}
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	}
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	else if (QuaternionObject_Check(value)) {
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		if (BaseMath_ReadCallback((BaseMathObject *)value) == -1) {
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			return -1;
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		}
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		else {
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			float tquat[4];
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			normalize_qt_qt(tquat, ((QuaternionObject *)value)->quat);
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			quat_to_mat3(rmat, tquat);
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			return 0;
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		}
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	}
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	else if (MatrixObject_Check(value)) {
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		if (BaseMath_ReadCallback((BaseMathObject *)value) == -1) {
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			return -1;
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		}
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		else if (((MatrixObject *)value)->num_row < 3 || ((MatrixObject *)value)->num_col < 3) {
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			PyErr_Format(PyExc_ValueError,
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			             "%.200s: matrix must have minimum 3x3 dimensions",
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			             error_prefix);
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			return -1;
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		}
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		else {
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			matrix_as_3x3(rmat, (MatrixObject *)value);
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			normalize_m3(rmat);
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			return 0;
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		}
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	}
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	else {
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		PyErr_Format(PyExc_TypeError,
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		             "%.200s: expected a Euler, Quaternion or Matrix type, "
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		             "found %.200s", error_prefix, Py_TYPE(value)->tp_name);
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		return -1;
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	}
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}
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/* ----------------------------------MATRIX FUNCTIONS-------------------- */
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/* Utility functions */
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/* LomontRRDCompare4, Ever Faster Float Comparisons by Randy Dillon */
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/* XXX We may want to use 'safer' BLI's compare_ff_relative ultimately?
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 *     LomontRRDCompare4() is an optimized version of Dawson's AlmostEqual2sComplement() (see [1] and [2]).
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 *     Dawson himself now claims this is not a 'safe' thing to do (pushing ULP method beyond its limits),
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 *     an recommends using work from [3] instead, which is done in BLI func...
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 *
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 *     [1] http://www.randydillon.org/Papers/2007/everfast.htm
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 *     [2] http://www.cygnus-software.com/papers/comparingfloats/comparingfloats.htm
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 *     [3] https://randomascii.wordpress.com/2012/02/25/comparing-floating-point-numbers-2012-edition/ instead
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 */
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#define SIGNMASK(i) (-(int)(((unsigned int)(i)) >> 31))
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int EXPP_FloatsAreEqual(float af, float bf, int maxDiff)
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{
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	/* solid, fast routine across all platforms
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	 * with constant time behavior */
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	int ai = *(int *)(&af);
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	int bi = *(int *)(&bf);
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	int test = SIGNMASK(ai ^ bi);
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	int diff, v1, v2;
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	assert((0 == test) || (0xFFFFFFFF == test));
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	diff = (ai ^ (test & 0x7fffffff)) - bi;
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	v1 = maxDiff + diff;
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	v2 = maxDiff - diff;
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	return (v1 | v2) >= 0;
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}
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/*---------------------- EXPP_VectorsAreEqual -------------------------
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 * Builds on EXPP_FloatsAreEqual to test vectors */
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int EXPP_VectorsAreEqual(const float *vecA, const float *vecB, int size, int floatSteps)
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{
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	int x;
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	for (x = 0; x < size; x++) {
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		if (EXPP_FloatsAreEqual(vecA[x], vecB[x], floatSteps) == 0)
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			return 0;
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	}
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	return 1;
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}
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#ifndef MATH_STANDALONE
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/* dynstr as python string utility funcions, frees 'ds'! */
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PyObject *mathutils_dynstr_to_py(struct DynStr *ds)
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{
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	const int ds_len = BLI_dynstr_get_len(ds); /* space for \0 */
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	char *ds_buf     = PyMem_Malloc(ds_len + 1);
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	PyObject *ret;
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	BLI_dynstr_get_cstring_ex(ds, ds_buf);
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	BLI_dynstr_free(ds);
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	ret = PyUnicode_FromStringAndSize(ds_buf, ds_len);
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						|
	PyMem_Free(ds_buf);
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	return ret;
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}
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#endif
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/* silly function, we dont use arg. just check its compatible with __deepcopy__ */
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int mathutils_deepcopy_args_check(PyObject *args)
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{
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	PyObject *dummy_pydict;
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	return PyArg_ParseTuple(args, "|O!:__deepcopy__", &PyDict_Type, &dummy_pydict) != 0;
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}
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/* Mathutils Callbacks */
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/* for mathutils internal use only, eventually should re-alloc but to start with we only have a few users */
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#define MATHUTILS_TOT_CB 17
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static Mathutils_Callback *mathutils_callbacks[MATHUTILS_TOT_CB] = {NULL};
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unsigned char Mathutils_RegisterCallback(Mathutils_Callback *cb)
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						|
{
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	unsigned char i;
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						|
	
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	/* find the first free slot */
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						|
	for (i = 0; mathutils_callbacks[i]; i++) {
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						|
		if (mathutils_callbacks[i] == cb) /* already registered? */
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			return i;
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	}
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	BLI_assert(i + 1 < MATHUTILS_TOT_CB);
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	mathutils_callbacks[i] = cb;
 | 
						|
	return i;
 | 
						|
}
 | 
						|
 | 
						|
/* use macros to check for NULL */
 | 
						|
int _BaseMathObject_ReadCallback(BaseMathObject *self)
 | 
						|
{
 | 
						|
	Mathutils_Callback *cb = mathutils_callbacks[self->cb_type];
 | 
						|
	if (LIKELY(cb->get(self, self->cb_subtype) != -1)) {
 | 
						|
		return 0;
 | 
						|
	}
 | 
						|
 | 
						|
	if (!PyErr_Occurred()) {
 | 
						|
		PyErr_Format(PyExc_RuntimeError,
 | 
						|
		             "%s read, user has become invalid",
 | 
						|
		             Py_TYPE(self)->tp_name);
 | 
						|
	}
 | 
						|
	return -1;
 | 
						|
}
 | 
						|
 | 
						|
int _BaseMathObject_WriteCallback(BaseMathObject *self)
 | 
						|
{
 | 
						|
	Mathutils_Callback *cb = mathutils_callbacks[self->cb_type];
 | 
						|
	if (LIKELY(cb->set(self, self->cb_subtype) != -1)) {
 | 
						|
		return 0;
 | 
						|
	}
 | 
						|
 | 
						|
	if (!PyErr_Occurred()) {
 | 
						|
		PyErr_Format(PyExc_RuntimeError,
 | 
						|
		             "%s write, user has become invalid",
 | 
						|
		             Py_TYPE(self)->tp_name);
 | 
						|
	}
 | 
						|
	return -1;
 | 
						|
}
 | 
						|
 | 
						|
int _BaseMathObject_ReadIndexCallback(BaseMathObject *self, int index)
 | 
						|
{
 | 
						|
	Mathutils_Callback *cb = mathutils_callbacks[self->cb_type];
 | 
						|
	if (LIKELY(cb->get_index(self, self->cb_subtype, index) != -1)) {
 | 
						|
		return 0;
 | 
						|
	}
 | 
						|
 | 
						|
	if (!PyErr_Occurred()) {
 | 
						|
		PyErr_Format(PyExc_RuntimeError,
 | 
						|
		             "%s read index, user has become invalid",
 | 
						|
		             Py_TYPE(self)->tp_name);
 | 
						|
	}
 | 
						|
	return -1;
 | 
						|
}
 | 
						|
 | 
						|
int _BaseMathObject_WriteIndexCallback(BaseMathObject *self, int index)
 | 
						|
{
 | 
						|
	Mathutils_Callback *cb = mathutils_callbacks[self->cb_type];
 | 
						|
	if (LIKELY(cb->set_index(self, self->cb_subtype, index) != -1)) {
 | 
						|
		return 0;
 | 
						|
	}
 | 
						|
 | 
						|
	if (!PyErr_Occurred()) {
 | 
						|
		PyErr_Format(PyExc_RuntimeError,
 | 
						|
		             "%s write index, user has become invalid",
 | 
						|
		             Py_TYPE(self)->tp_name);
 | 
						|
	}
 | 
						|
	return -1;
 | 
						|
}
 | 
						|
 | 
						|
void _BaseMathObject_RaiseFrozenExc(const BaseMathObject *self)
 | 
						|
{
 | 
						|
	PyErr_Format(PyExc_TypeError,
 | 
						|
	             "%s is frozen (immutable)",
 | 
						|
	             Py_TYPE(self)->tp_name);
 | 
						|
}
 | 
						|
 | 
						|
void _BaseMathObject_RaiseNotFrozenExc(const BaseMathObject *self)
 | 
						|
{
 | 
						|
	PyErr_Format(PyExc_TypeError,
 | 
						|
	             "%s is not frozen (mutable), call freeze first",
 | 
						|
	             Py_TYPE(self)->tp_name);
 | 
						|
}
 | 
						|
 | 
						|
/* BaseMathObject generic functions for all mathutils types */
 | 
						|
char BaseMathObject_owner_doc[] = "The item this is wrapping or None  (read-only).";
 | 
						|
PyObject *BaseMathObject_owner_get(BaseMathObject *self, void *UNUSED(closure))
 | 
						|
{
 | 
						|
	PyObject *ret = self->cb_user ? self->cb_user : Py_None;
 | 
						|
	return Py_INCREF_RET(ret);
 | 
						|
}
 | 
						|
 | 
						|
char BaseMathObject_is_wrapped_doc[] = "True when this object wraps external data (read-only).\n\n:type: boolean";
 | 
						|
PyObject *BaseMathObject_is_wrapped_get(BaseMathObject *self, void *UNUSED(closure))
 | 
						|
{
 | 
						|
	return PyBool_FromLong((self->flag & BASE_MATH_FLAG_IS_WRAP) != 0);
 | 
						|
}
 | 
						|
 | 
						|
char BaseMathObject_is_frozen_doc[] = "True when this object has been frozen (read-only).\n\n:type: boolean";
 | 
						|
PyObject *BaseMathObject_is_frozen_get(BaseMathObject *self, void *UNUSED(closure))
 | 
						|
{
 | 
						|
	return PyBool_FromLong((self->flag & BASE_MATH_FLAG_IS_FROZEN) != 0);
 | 
						|
}
 | 
						|
 | 
						|
char BaseMathObject_freeze_doc[] =
 | 
						|
".. function:: freeze()\n"
 | 
						|
"\n"
 | 
						|
"   Make this object immutable.\n"
 | 
						|
"\n"
 | 
						|
"   After this the object can be hashed, used in dictionaries & sets.\n"
 | 
						|
"\n"
 | 
						|
"   :return: An instance of this object.\n"
 | 
						|
;
 | 
						|
PyObject *BaseMathObject_freeze(BaseMathObject *self)
 | 
						|
{
 | 
						|
	if (self->flag & BASE_MATH_FLAG_IS_WRAP) {
 | 
						|
		PyErr_SetString(PyExc_TypeError, "Cannot freeze wrapped data");
 | 
						|
		return NULL;
 | 
						|
	}
 | 
						|
 | 
						|
	self->flag |= BASE_MATH_FLAG_IS_FROZEN;
 | 
						|
 | 
						|
	return Py_INCREF_RET((PyObject *)self);
 | 
						|
}
 | 
						|
 | 
						|
int BaseMathObject_traverse(BaseMathObject *self, visitproc visit, void *arg)
 | 
						|
{
 | 
						|
	Py_VISIT(self->cb_user);
 | 
						|
	return 0;
 | 
						|
}
 | 
						|
 | 
						|
int BaseMathObject_clear(BaseMathObject *self)
 | 
						|
{
 | 
						|
	Py_CLEAR(self->cb_user);
 | 
						|
	return 0;
 | 
						|
}
 | 
						|
 | 
						|
void BaseMathObject_dealloc(BaseMathObject *self)
 | 
						|
{
 | 
						|
	/* only free non wrapped */
 | 
						|
	if ((self->flag & BASE_MATH_FLAG_IS_WRAP) == 0) {
 | 
						|
		PyMem_Free(self->data);
 | 
						|
	}
 | 
						|
 | 
						|
	if (self->cb_user) {
 | 
						|
		PyObject_GC_UnTrack(self);
 | 
						|
		BaseMathObject_clear(self);
 | 
						|
	}
 | 
						|
 | 
						|
	Py_TYPE(self)->tp_free(self); // PyObject_DEL(self); // breaks subtypes
 | 
						|
}
 | 
						|
 | 
						|
/*----------------------------MODULE INIT-------------------------*/
 | 
						|
static struct PyMethodDef M_Mathutils_methods[] = {
 | 
						|
	{NULL, NULL, 0, NULL}
 | 
						|
};
 | 
						|
 | 
						|
static struct PyModuleDef M_Mathutils_module_def = {
 | 
						|
	PyModuleDef_HEAD_INIT,
 | 
						|
	"mathutils",  /* m_name */
 | 
						|
	M_Mathutils_doc,  /* m_doc */
 | 
						|
	0,  /* m_size */
 | 
						|
	M_Mathutils_methods,  /* m_methods */
 | 
						|
	NULL,  /* m_reload */
 | 
						|
	NULL,  /* m_traverse */
 | 
						|
	NULL,  /* m_clear */
 | 
						|
	NULL,  /* m_free */
 | 
						|
};
 | 
						|
 | 
						|
 | 
						|
/* submodules only */
 | 
						|
#include "mathutils_geometry.h"
 | 
						|
#include "mathutils_interpolate.h"
 | 
						|
#ifndef MATH_STANDALONE
 | 
						|
#  include "mathutils_bvhtree.h"
 | 
						|
#  include "mathutils_kdtree.h"
 | 
						|
#  include "mathutils_noise.h"
 | 
						|
#endif
 | 
						|
 | 
						|
PyMODINIT_FUNC PyInit_mathutils(void)
 | 
						|
{
 | 
						|
	PyObject *mod;
 | 
						|
	PyObject *submodule;
 | 
						|
	PyObject *sys_modules = PyThreadState_GET()->interp->modules;
 | 
						|
 | 
						|
	if (PyType_Ready(&vector_Type) < 0)
 | 
						|
		return NULL;
 | 
						|
	if (PyType_Ready(&matrix_Type) < 0)
 | 
						|
		return NULL;
 | 
						|
	if (PyType_Ready(&matrix_access_Type) < 0)
 | 
						|
		return NULL;
 | 
						|
	if (PyType_Ready(&euler_Type) < 0)
 | 
						|
		return NULL;
 | 
						|
	if (PyType_Ready(&quaternion_Type) < 0)
 | 
						|
		return NULL;
 | 
						|
	if (PyType_Ready(&color_Type) < 0)
 | 
						|
		return NULL;
 | 
						|
 | 
						|
	mod = PyModule_Create(&M_Mathutils_module_def);
 | 
						|
	
 | 
						|
	/* each type has its own new() function */
 | 
						|
	PyModule_AddObject(mod, vector_Type.tp_name,     (PyObject *)&vector_Type);
 | 
						|
	PyModule_AddObject(mod, matrix_Type.tp_name,     (PyObject *)&matrix_Type);
 | 
						|
	PyModule_AddObject(mod, euler_Type.tp_name,      (PyObject *)&euler_Type);
 | 
						|
	PyModule_AddObject(mod, quaternion_Type.tp_name, (PyObject *)&quaternion_Type);
 | 
						|
	PyModule_AddObject(mod, color_Type.tp_name,      (PyObject *)&color_Type);
 | 
						|
	
 | 
						|
	/* submodule */
 | 
						|
	PyModule_AddObject(mod, "geometry",       (submodule = PyInit_mathutils_geometry()));
 | 
						|
	/* XXX, python doesnt do imports with this usefully yet
 | 
						|
	 * 'from mathutils.geometry import PolyFill'
 | 
						|
	 * ...fails without this. */
 | 
						|
	PyDict_SetItemString(sys_modules, PyModule_GetName(submodule), submodule);
 | 
						|
	Py_INCREF(submodule);
 | 
						|
 | 
						|
	PyModule_AddObject(mod, "interpolate",    (submodule = PyInit_mathutils_interpolate()));
 | 
						|
	/* XXX, python doesnt do imports with this usefully yet
 | 
						|
	 * 'from mathutils.geometry import PolyFill'
 | 
						|
	 * ...fails without this. */
 | 
						|
	PyDict_SetItemString(sys_modules, PyModule_GetName(submodule), submodule);
 | 
						|
	Py_INCREF(submodule);
 | 
						|
 | 
						|
#ifndef MATH_STANDALONE
 | 
						|
	/* Noise submodule */
 | 
						|
	PyModule_AddObject(mod, "noise", (submodule = PyInit_mathutils_noise()));
 | 
						|
	PyDict_SetItemString(sys_modules, PyModule_GetName(submodule), submodule);
 | 
						|
	Py_INCREF(submodule);
 | 
						|
 | 
						|
	/* BVHTree submodule */
 | 
						|
	PyModule_AddObject(mod, "bvhtree", (submodule = PyInit_mathutils_bvhtree()));
 | 
						|
	PyDict_SetItemString(sys_modules, PyModule_GetName(submodule), submodule);
 | 
						|
	Py_INCREF(submodule);
 | 
						|
 | 
						|
	/* KDTree submodule */
 | 
						|
	PyModule_AddObject(mod, "kdtree", (submodule = PyInit_mathutils_kdtree()));
 | 
						|
	PyDict_SetItemString(sys_modules, PyModule_GetName(submodule), submodule);
 | 
						|
	Py_INCREF(submodule);
 | 
						|
#endif
 | 
						|
 | 
						|
	mathutils_matrix_row_cb_index = Mathutils_RegisterCallback(&mathutils_matrix_row_cb);
 | 
						|
	mathutils_matrix_col_cb_index = Mathutils_RegisterCallback(&mathutils_matrix_col_cb);
 | 
						|
	mathutils_matrix_translation_cb_index = Mathutils_RegisterCallback(&mathutils_matrix_translation_cb);
 | 
						|
 | 
						|
	return mod;
 | 
						|
}
 |