Use struct identifiers in comments before the value. This has some advantages: - The struct identifiers didn't mix well with other code-comments, where other comments were wrapped onto the next line. - Minor changes could re-align all other comments in the struct. - PyVarObject_HEAD_INIT & tp_name are no longer placed on the same line. Remove overly verbose comments copied from PyTypeObject (Python v2.x), these aren't especially helpful and get outdated. Also corrected some outdated names: - PyTypeObject.tp_print -> tp_vectorcall_offset - PyTypeObject.tp_reserved -> tp_as_async
438 lines
13 KiB
C++
438 lines
13 KiB
C++
/* SPDX-License-Identifier: GPL-2.0-or-later */
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/** \file
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* \ingroup freestyle
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*/
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#include "BPy_FEdgeSharp.h"
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#include "../../BPy_Convert.h"
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#include "../../Interface0D/BPy_SVertex.h"
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#include "BLI_sys_types.h"
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#ifdef __cplusplus
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extern "C" {
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#endif
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using namespace Freestyle;
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///////////////////////////////////////////////////////////////////////////////////////////
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/*----------------------FEdgeSharp methods ----------------------------*/
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PyDoc_STRVAR(FEdgeSharp_doc,
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"Class hierarchy: :class:`Interface1D` > :class:`FEdge` > :class:`FEdgeSharp`\n"
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"\n"
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"Class defining a sharp FEdge. A Sharp FEdge corresponds to an initial\n"
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"edge of the input mesh. It can be a silhouette, a crease or a border.\n"
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"If it is a crease edge, then it is bordered by two faces of the mesh.\n"
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"Face a lies on its right whereas Face b lies on its left. If it is a\n"
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"border edge, then it doesn't have any face on its right, and thus Face\n"
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"a is None.\n"
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"\n"
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".. method:: __init__()\n"
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" __init__(brother)\n"
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" __init__(first_vertex, second_vertex)\n"
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"\n"
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" Builds an :class:`FEdgeSharp` using the default constructor,\n"
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" copy constructor, or between two :class:`SVertex` objects.\n"
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"\n"
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" :arg brother: An FEdgeSharp object.\n"
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" :type brother: :class:`FEdgeSharp`\n"
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" :arg first_vertex: The first SVertex object.\n"
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" :type first_vertex: :class:`SVertex`\n"
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" :arg second_vertex: The second SVertex object.\n"
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" :type second_vertex: :class:`SVertex`");
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static int FEdgeSharp_init(BPy_FEdgeSharp *self, PyObject *args, PyObject *kwds)
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{
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static const char *kwlist_1[] = {"brother", nullptr};
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static const char *kwlist_2[] = {"first_vertex", "second_vertex", nullptr};
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PyObject *obj1 = nullptr, *obj2 = nullptr;
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if (PyArg_ParseTupleAndKeywords(args, kwds, "|O!", (char **)kwlist_1, &FEdgeSharp_Type, &obj1)) {
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if (!obj1) {
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self->fes = new FEdgeSharp();
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}
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else {
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self->fes = new FEdgeSharp(*(((BPy_FEdgeSharp *)obj1)->fes));
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}
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}
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else if ((void)PyErr_Clear(),
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PyArg_ParseTupleAndKeywords(args,
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kwds,
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"O!O!",
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(char **)kwlist_2,
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&SVertex_Type,
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&obj1,
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&SVertex_Type,
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&obj2)) {
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self->fes = new FEdgeSharp(((BPy_SVertex *)obj1)->sv, ((BPy_SVertex *)obj2)->sv);
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}
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else {
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PyErr_SetString(PyExc_TypeError, "invalid argument(s)");
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return -1;
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}
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self->py_fe.fe = self->fes;
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self->py_fe.py_if1D.if1D = self->fes;
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self->py_fe.py_if1D.borrowed = false;
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return 0;
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}
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/*----------------------mathutils callbacks ----------------------------*/
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/* subtype */
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#define MATHUTILS_SUBTYPE_NORMAL_A 1
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#define MATHUTILS_SUBTYPE_NORMAL_B 2
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static int FEdgeSharp_mathutils_check(BaseMathObject *bmo)
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{
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if (!BPy_FEdgeSharp_Check(bmo->cb_user)) {
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return -1;
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}
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return 0;
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}
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static int FEdgeSharp_mathutils_get(BaseMathObject *bmo, int subtype)
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{
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BPy_FEdgeSharp *self = (BPy_FEdgeSharp *)bmo->cb_user;
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switch (subtype) {
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case MATHUTILS_SUBTYPE_NORMAL_A: {
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Vec3r p(self->fes->normalA());
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bmo->data[0] = p[0];
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bmo->data[1] = p[1];
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bmo->data[2] = p[2];
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} break;
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case MATHUTILS_SUBTYPE_NORMAL_B: {
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Vec3r p(self->fes->normalB());
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bmo->data[0] = p[0];
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bmo->data[1] = p[1];
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bmo->data[2] = p[2];
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} break;
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default:
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return -1;
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}
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return 0;
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}
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static int FEdgeSharp_mathutils_set(BaseMathObject *bmo, int subtype)
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{
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BPy_FEdgeSharp *self = (BPy_FEdgeSharp *)bmo->cb_user;
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switch (subtype) {
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case MATHUTILS_SUBTYPE_NORMAL_A: {
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Vec3r p(bmo->data[0], bmo->data[1], bmo->data[2]);
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self->fes->setNormalA(p);
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} break;
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case MATHUTILS_SUBTYPE_NORMAL_B: {
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Vec3r p(bmo->data[0], bmo->data[1], bmo->data[2]);
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self->fes->setNormalB(p);
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} break;
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default:
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return -1;
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}
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return 0;
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}
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static int FEdgeSharp_mathutils_get_index(BaseMathObject *bmo, int subtype, int index)
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{
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BPy_FEdgeSharp *self = (BPy_FEdgeSharp *)bmo->cb_user;
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switch (subtype) {
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case MATHUTILS_SUBTYPE_NORMAL_A: {
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Vec3r p(self->fes->normalA());
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bmo->data[index] = p[index];
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} break;
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case MATHUTILS_SUBTYPE_NORMAL_B: {
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Vec3r p(self->fes->normalB());
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bmo->data[index] = p[index];
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} break;
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default:
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return -1;
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}
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return 0;
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}
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static int FEdgeSharp_mathutils_set_index(BaseMathObject *bmo, int subtype, int index)
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{
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BPy_FEdgeSharp *self = (BPy_FEdgeSharp *)bmo->cb_user;
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switch (subtype) {
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case MATHUTILS_SUBTYPE_NORMAL_A: {
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Vec3r p(self->fes->normalA());
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p[index] = bmo->data[index];
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self->fes->setNormalA(p);
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} break;
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case MATHUTILS_SUBTYPE_NORMAL_B: {
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Vec3r p(self->fes->normalB());
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p[index] = bmo->data[index];
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self->fes->setNormalB(p);
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} break;
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default:
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return -1;
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}
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return 0;
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}
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static Mathutils_Callback FEdgeSharp_mathutils_cb = {
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FEdgeSharp_mathutils_check,
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FEdgeSharp_mathutils_get,
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FEdgeSharp_mathutils_set,
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FEdgeSharp_mathutils_get_index,
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FEdgeSharp_mathutils_set_index,
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};
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static uchar FEdgeSharp_mathutils_cb_index = -1;
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void FEdgeSharp_mathutils_register_callback()
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{
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FEdgeSharp_mathutils_cb_index = Mathutils_RegisterCallback(&FEdgeSharp_mathutils_cb);
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}
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/*----------------------FEdgeSharp get/setters ----------------------------*/
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PyDoc_STRVAR(FEdgeSharp_normal_right_doc,
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"The normal to the face lying on the right of the FEdge. If this FEdge\n"
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"is a border, it has no Face on its right and therefore no normal.\n"
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"\n"
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":type: :class:`mathutils.Vector`");
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static PyObject *FEdgeSharp_normal_right_get(BPy_FEdgeSharp *self, void * /*closure*/)
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{
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return Vector_CreatePyObject_cb(
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(PyObject *)self, 3, FEdgeSharp_mathutils_cb_index, MATHUTILS_SUBTYPE_NORMAL_A);
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}
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static int FEdgeSharp_normal_right_set(BPy_FEdgeSharp *self, PyObject *value, void * /*closure*/)
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{
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float v[3];
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if (mathutils_array_parse(v, 3, 3, value, "value must be a 3-dimensional vector") == -1) {
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return -1;
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}
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Vec3r p(v[0], v[1], v[2]);
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self->fes->setNormalA(p);
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return 0;
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}
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PyDoc_STRVAR(FEdgeSharp_normal_left_doc,
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"The normal to the face lying on the left of the FEdge.\n"
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"\n"
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":type: :class:`mathutils.Vector`");
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static PyObject *FEdgeSharp_normal_left_get(BPy_FEdgeSharp *self, void * /*closure*/)
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{
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return Vector_CreatePyObject_cb(
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(PyObject *)self, 3, FEdgeSharp_mathutils_cb_index, MATHUTILS_SUBTYPE_NORMAL_B);
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}
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static int FEdgeSharp_normal_left_set(BPy_FEdgeSharp *self, PyObject *value, void * /*closure*/)
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{
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float v[3];
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if (mathutils_array_parse(v, 3, 3, value, "value must be a 3-dimensional vector") == -1) {
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return -1;
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}
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Vec3r p(v[0], v[1], v[2]);
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self->fes->setNormalB(p);
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return 0;
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}
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PyDoc_STRVAR(FEdgeSharp_material_index_right_doc,
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"The index of the material of the face lying on the right of the FEdge.\n"
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"If this FEdge is a border, it has no Face on its right and therefore\n"
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"no material.\n"
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"\n"
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":type: int");
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static PyObject *FEdgeSharp_material_index_right_get(BPy_FEdgeSharp *self, void * /*closure*/)
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{
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return PyLong_FromLong(self->fes->aFrsMaterialIndex());
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}
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static int FEdgeSharp_material_index_right_set(BPy_FEdgeSharp *self,
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PyObject *value,
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void * /*closure*/)
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{
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uint i = PyLong_AsUnsignedLong(value);
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if (PyErr_Occurred()) {
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return -1;
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}
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self->fes->setaFrsMaterialIndex(i);
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return 0;
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}
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PyDoc_STRVAR(FEdgeSharp_material_index_left_doc,
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"The index of the material of the face lying on the left of the FEdge.\n"
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"\n"
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":type: int");
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static PyObject *FEdgeSharp_material_index_left_get(BPy_FEdgeSharp *self, void * /*closure*/)
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{
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return PyLong_FromLong(self->fes->bFrsMaterialIndex());
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}
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static int FEdgeSharp_material_index_left_set(BPy_FEdgeSharp *self,
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PyObject *value,
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void * /*closure*/)
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{
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uint i = PyLong_AsUnsignedLong(value);
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if (PyErr_Occurred()) {
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return -1;
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}
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self->fes->setbFrsMaterialIndex(i);
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return 0;
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}
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PyDoc_STRVAR(FEdgeSharp_material_right_doc,
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"The material of the face lying on the right of the FEdge. If this FEdge\n"
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"is a border, it has no Face on its right and therefore no material.\n"
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"\n"
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":type: :class:`Material`");
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static PyObject *FEdgeSharp_material_right_get(BPy_FEdgeSharp *self, void * /*closure*/)
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{
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return BPy_FrsMaterial_from_FrsMaterial(self->fes->aFrsMaterial());
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}
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PyDoc_STRVAR(FEdgeSharp_material_left_doc,
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"The material of the face lying on the left of the FEdge.\n"
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"\n"
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":type: :class:`Material`");
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static PyObject *FEdgeSharp_material_left_get(BPy_FEdgeSharp *self, void * /*closure*/)
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{
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return BPy_FrsMaterial_from_FrsMaterial(self->fes->bFrsMaterial());
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}
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PyDoc_STRVAR(FEdgeSharp_face_mark_right_doc,
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"The face mark of the face lying on the right of the FEdge. If this FEdge\n"
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"is a border, it has no face on the right and thus this property is set to\n"
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"false.\n"
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"\n"
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":type: bool");
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static PyObject *FEdgeSharp_face_mark_right_get(BPy_FEdgeSharp *self, void * /*closure*/)
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{
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return PyBool_from_bool(self->fes->aFaceMark());
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}
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static int FEdgeSharp_face_mark_right_set(BPy_FEdgeSharp *self,
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PyObject *value,
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void * /*closure*/)
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{
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if (!PyBool_Check(value)) {
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return -1;
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}
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self->fes->setaFaceMark(bool_from_PyBool(value));
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return 0;
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}
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PyDoc_STRVAR(FEdgeSharp_face_mark_left_doc,
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"The face mark of the face lying on the left of the FEdge.\n"
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"\n"
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":type: bool");
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static PyObject *FEdgeSharp_face_mark_left_get(BPy_FEdgeSharp *self, void * /*closure*/)
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{
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return PyBool_from_bool(self->fes->bFaceMark());
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}
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static int FEdgeSharp_face_mark_left_set(BPy_FEdgeSharp *self, PyObject *value, void * /*closure*/)
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{
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if (!PyBool_Check(value)) {
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return -1;
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}
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self->fes->setbFaceMark(bool_from_PyBool(value));
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return 0;
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}
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static PyGetSetDef BPy_FEdgeSharp_getseters[] = {
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{"normal_right",
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(getter)FEdgeSharp_normal_right_get,
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(setter)FEdgeSharp_normal_right_set,
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FEdgeSharp_normal_right_doc,
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nullptr},
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{"normal_left",
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(getter)FEdgeSharp_normal_left_get,
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(setter)FEdgeSharp_normal_left_set,
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FEdgeSharp_normal_left_doc,
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nullptr},
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{"material_index_right",
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(getter)FEdgeSharp_material_index_right_get,
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(setter)FEdgeSharp_material_index_right_set,
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FEdgeSharp_material_index_right_doc,
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nullptr},
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{"material_index_left",
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(getter)FEdgeSharp_material_index_left_get,
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(setter)FEdgeSharp_material_index_left_set,
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FEdgeSharp_material_index_left_doc,
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nullptr},
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{"material_right",
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(getter)FEdgeSharp_material_right_get,
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(setter) nullptr,
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FEdgeSharp_material_right_doc,
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nullptr},
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{"material_left",
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(getter)FEdgeSharp_material_left_get,
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(setter) nullptr,
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FEdgeSharp_material_left_doc,
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nullptr},
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{"face_mark_right",
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(getter)FEdgeSharp_face_mark_right_get,
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(setter)FEdgeSharp_face_mark_right_set,
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FEdgeSharp_face_mark_right_doc,
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nullptr},
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{"face_mark_left",
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(getter)FEdgeSharp_face_mark_left_get,
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(setter)FEdgeSharp_face_mark_left_set,
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FEdgeSharp_face_mark_left_doc,
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nullptr},
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{nullptr, nullptr, nullptr, nullptr, nullptr} /* Sentinel */
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};
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/*-----------------------BPy_FEdgeSharp type definition ------------------------------*/
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PyTypeObject FEdgeSharp_Type = {
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PyVarObject_HEAD_INIT(nullptr, 0)
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/*tp_name*/ "FEdgeSharp",
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/*tp_basicsize*/ sizeof(BPy_FEdgeSharp),
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/*tp_itemsize*/ 0,
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/*tp_dealloc*/ nullptr,
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/*tp_vectorcall_offset*/ 0,
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/*tp_getattr*/ nullptr,
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/*tp_setattr*/ nullptr,
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/*tp_as_async*/ nullptr,
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/*tp_repr*/ nullptr,
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/*tp_as_number*/ nullptr,
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/*tp_as_sequence*/ nullptr,
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/*tp_as_mapping*/ nullptr,
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/*tp_hash*/ nullptr,
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/*tp_call*/ nullptr,
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/*tp_str*/ nullptr,
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/*tp_getattro*/ nullptr,
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/*tp_setattro*/ nullptr,
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/*tp_as_buffer*/ nullptr,
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/*tp_flags*/ Py_TPFLAGS_DEFAULT | Py_TPFLAGS_BASETYPE,
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/*tp_doc*/ FEdgeSharp_doc,
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/*tp_traverse*/ nullptr,
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/*tp_clear*/ nullptr,
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/*tp_richcompare*/ nullptr,
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/*tp_weaklistoffset*/ 0,
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/*tp_iter*/ nullptr,
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/*tp_iternext*/ nullptr,
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/*tp_methods*/ nullptr,
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/*tp_members*/ nullptr,
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/*tp_getset*/ BPy_FEdgeSharp_getseters,
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/*tp_base*/ &FEdge_Type,
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/*tp_dict*/ nullptr,
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/*tp_descr_get*/ nullptr,
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/*tp_descr_set*/ nullptr,
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/*tp_dictoffset*/ 0,
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/*tp_init*/ (initproc)FEdgeSharp_init,
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/*tp_alloc*/ nullptr,
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/*tp_new*/ nullptr,
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};
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///////////////////////////////////////////////////////////////////////////////////////////
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#ifdef __cplusplus
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}
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#endif
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