and __call__ methods so that not only True and False but also various other boolean expressions (e.g., 0, 1, and None) are accepted.
		
			
				
	
	
		
			377 lines
		
	
	
		
			13 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
			
		
		
	
	
			377 lines
		
	
	
		
			13 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
| #include "BPy_FEdge.h"
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| 
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| #include "../BPy_Convert.h"
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| #include "../BPy_Id.h"
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| #include "../Interface0D/BPy_SVertex.h"
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| #include "../Interface1D/BPy_ViewEdge.h"
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| #include "../BPy_Nature.h"
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| 
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| #ifdef __cplusplus
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| extern "C" {
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| #endif
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| 
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| ///////////////////////////////////////////////////////////////////////////////////////////
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| 
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| /*---------------  Python API function prototypes for FEdge instance  -----------*/
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| static int FEdge___init__(BPy_FEdge *self, PyObject *args, PyObject *kwds);
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| static PyObject * FEdge___copy__( BPy_FEdge *self );
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| static PyObject * FEdge_vertexA( BPy_FEdge *self );
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| static PyObject * FEdge_vertexB( BPy_FEdge *self );
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| static PyObject * FEdge___getitem__( BPy_FEdge *self, PyObject *args );
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| static PyObject * FEdge_nextEdge( BPy_FEdge *self );
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| static PyObject * FEdge_previousEdge( BPy_FEdge *self );
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| static PyObject * FEdge_viewedge( BPy_FEdge *self );
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| static PyObject * FEdge_isSmooth( BPy_FEdge *self );
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| static PyObject * FEdge_setVertexA( BPy_FEdge *self , PyObject *args);
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| static PyObject * FEdge_setVertexB( BPy_FEdge *self , PyObject *args);
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| static PyObject * FEdge_setId( BPy_FEdge *self , PyObject *args);
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| static PyObject * FEdge_setNextEdge( BPy_FEdge *self , PyObject *args);
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| static PyObject * FEdge_setPreviousEdge( BPy_FEdge *self , PyObject *args);
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| static PyObject * FEdge_setSmooth( BPy_FEdge *self , PyObject *args); 
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| static PyObject * FEdge_setNature( BPy_FEdge *self, PyObject *args );
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| static PyObject * FEdge_setViewEdge( BPy_FEdge *self, PyObject *args );
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| static PyObject * FEdge_verticesBegin( BPy_FEdge *self );
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| static PyObject * FEdge_verticesEnd( BPy_FEdge *self );
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| static PyObject * FEdge_pointsBegin( BPy_FEdge *self, PyObject *args );
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| static PyObject * FEdge_pointsEnd( BPy_FEdge *self, PyObject *args );
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| 
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| /*----------------------FEdge instance definitions ----------------------------*/
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| static PyMethodDef BPy_FEdge_methods[] = {	
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| 	{"__copy__", ( PyCFunction ) FEdge___copy__, METH_NOARGS, "() Cloning method."},
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| 	{"vertexA", ( PyCFunction ) FEdge_vertexA, METH_NOARGS, "() Returns the first SVertex."},
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| 	{"vertexB", ( PyCFunction ) FEdge_vertexB, METH_NOARGS, "() Returns the second SVertex."},
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| 	{"__getitem__", ( PyCFunction ) FEdge___getitem__, METH_VARARGS, "(int i) Returns the first SVertex if i=0, the seccond SVertex if i=1."},
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| 	{"nextEdge", ( PyCFunction ) FEdge_nextEdge, METH_NOARGS, "() Returns the FEdge following this one in the ViewEdge. If this FEdge is the last of the ViewEdge, 0 is returned."},
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| 	{"previousEdge", ( PyCFunction ) FEdge_previousEdge, METH_NOARGS, "Returns the Edge preceding this one in the ViewEdge. If this FEdge is the first one of the ViewEdge, 0 is returned."},
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| 	{"viewedge", ( PyCFunction ) FEdge_viewedge, METH_NOARGS, "Returns a pointer to the ViewEdge to which this FEdge belongs to."},
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| 	{"isSmooth", ( PyCFunction ) FEdge_isSmooth, METH_NOARGS, "() Returns true if this FEdge is a smooth FEdge."},
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| 	{"setVertexA", ( PyCFunction ) FEdge_setVertexA, METH_VARARGS, "(SVertex v) Sets the first SVertex. ."},
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| 	{"setVertexB", ( PyCFunction ) FEdge_setVertexB, METH_VARARGS, "(SVertex v) Sets the second SVertex. "},
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| 	{"setId", ( PyCFunction ) FEdge_setId, METH_VARARGS, "(Id id) Sets the FEdge Id ."},
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| 	{"setNextEdge", ( PyCFunction ) FEdge_setNextEdge, METH_VARARGS, "(FEdge e) Sets the pointer to the next FEdge. "},
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| 	{"setPreviousEdge", ( PyCFunction ) FEdge_setPreviousEdge, METH_VARARGS, "(FEdge e) Sets the pointer to the previous FEdge. "},
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| 	{"setSmooth", ( PyCFunction ) FEdge_setSmooth, METH_VARARGS, "(bool b) Sets the flag telling whether this FEdge is smooth or sharp. true for Smooth, false for Sharp. "},
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| 	{"setViewEdge", ( PyCFunction ) FEdge_setViewEdge, METH_VARARGS, "(ViewEdge ve) Sets the ViewEdge to which this FEdge belongs to."},
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| 	{"setNature", ( PyCFunction ) FEdge_setNature, METH_VARARGS, "(Nature n) Sets the nature of this FEdge. "},
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| 	{"verticesBegin", ( PyCFunction ) FEdge_verticesBegin, METH_NOARGS, "() Returns an iterator over the 2 (!) SVertex pointing to the first SVertex."},
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| 	{"verticesEnd", ( PyCFunction ) FEdge_verticesEnd, METH_NOARGS, "() Returns an iterator over the 2 (!) SVertex pointing after the last SVertex. "},
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| 	{"pointsBegin", ( PyCFunction ) FEdge_pointsBegin, METH_VARARGS, "(float t=0) Returns an iterator over the FEdge points, pointing to the first point. The difference with verticesBegin() is that here we can iterate over points of the FEdge at a any given sampling t. Indeed, for each iteration, a virtual point is created."},
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| 	{"pointsEnd", ( PyCFunction ) FEdge_pointsEnd, METH_VARARGS, "(float t=0) Returns an iterator over the FEdge points, pointing after the last point. The difference with verticesEnd() is that here we can iterate over points of the FEdge at a any given sampling t. Indeed, for each iteration, a virtual point is created."},
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| 	{NULL, NULL, 0, NULL}
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| };
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| 
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| /*-----------------------BPy_FEdge type definition ------------------------------*/
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| 
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| PyTypeObject FEdge_Type = {
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| 	PyObject_HEAD_INIT( NULL ) 
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| 	0,							/* ob_size */
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| 	"FEdge",				/* tp_name */
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| 	sizeof( BPy_FEdge ),	/* tp_basicsize */
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| 	0,							/* tp_itemsize */
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| 	
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| 	/* methods */
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| 	NULL,	/* tp_dealloc */
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| 	NULL,                       				/* printfunc tp_print; */
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| 	NULL,                       				/* getattrfunc tp_getattr; */
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| 	NULL,                       				/* setattrfunc tp_setattr; */
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| 	NULL,										/* tp_compare */
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| 	NULL,					/* tp_repr */
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| 
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| 	/* Method suites for standard classes */
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| 
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| 	NULL,                       /* PyNumberMethods *tp_as_number; */
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| 	NULL,                       /* PySequenceMethods *tp_as_sequence; */
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| 	NULL,                       /* PyMappingMethods *tp_as_mapping; */
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| 
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| 	/* More standard operations (here for binary compatibility) */
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| 
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| 	NULL,						/* hashfunc tp_hash; */
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| 	NULL,                       /* ternaryfunc tp_call; */
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| 	NULL,                       /* reprfunc tp_str; */
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| 	NULL,                       /* getattrofunc tp_getattro; */
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| 	NULL,                       /* setattrofunc tp_setattro; */
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| 
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| 	/* Functions to access object as input/output buffer */
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| 	NULL,                       /* PyBufferProcs *tp_as_buffer; */
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| 
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|   /*** Flags to define presence of optional/expanded features ***/
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| 	Py_TPFLAGS_DEFAULT | Py_TPFLAGS_BASETYPE, 		/* long tp_flags; */
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| 
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| 	NULL,                       /*  char *tp_doc;  Documentation string */
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|   /*** Assigned meaning in release 2.0 ***/
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| 	/* call function for all accessible objects */
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| 	NULL,                       /* traverseproc tp_traverse; */
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| 
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| 	/* delete references to contained objects */
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| 	NULL,                       /* inquiry tp_clear; */
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| 
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|   /***  Assigned meaning in release 2.1 ***/
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|   /*** rich comparisons ***/
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| 	NULL,                       /* richcmpfunc tp_richcompare; */
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| 
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|   /***  weak reference enabler ***/
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| 	0,                          /* long tp_weaklistoffset; */
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| 
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|   /*** Added in release 2.2 ***/
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| 	/*   Iterators */
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| 	NULL,                       /* getiterfunc tp_iter; */
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| 	NULL,                       /* iternextfunc tp_iternext; */
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| 
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|   /*** Attribute descriptor and subclassing stuff ***/
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| 	BPy_FEdge_methods,	/* struct PyMethodDef *tp_methods; */
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| 	NULL,                       	/* struct PyMemberDef *tp_members; */
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| 	NULL,         					/* struct PyGetSetDef *tp_getset; */
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| 	&Interface1D_Type,				/* struct _typeobject *tp_base; */
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| 	NULL,							/* PyObject *tp_dict; */
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| 	NULL,							/* descrgetfunc tp_descr_get; */
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| 	NULL,							/* descrsetfunc tp_descr_set; */
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| 	0,                          	/* long tp_dictoffset; */
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| 	(initproc)FEdge___init__,                       	/* initproc tp_init; */
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| 	NULL,							/* allocfunc tp_alloc; */
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| 	NULL,		/* newfunc tp_new; */
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| 	
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| 	/*  Low-level free-memory routine */
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| 	NULL,                       /* freefunc tp_free;  */
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| 	
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| 	/* For PyObject_IS_GC */
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| 	NULL,                       /* inquiry tp_is_gc;  */
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| 	NULL,                       /* PyObject *tp_bases; */
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| 	
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| 	/* method resolution order */
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| 	NULL,                       /* PyObject *tp_mro;  */
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| 	NULL,                       /* PyObject *tp_cache; */
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| 	NULL,                       /* PyObject *tp_subclasses; */
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| 	NULL,                       /* PyObject *tp_weaklist; */
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| 	NULL
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| };
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| 
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| //-------------------MODULE INITIALIZATION--------------------------------
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| 
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| 
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| //------------------------INSTANCE METHODS ----------------------------------
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| 	
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| int FEdge___init__(BPy_FEdge *self, PyObject *args, PyObject *kwds)
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| {
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| 
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| 	PyObject *obj1 = 0, *obj2 = 0;
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| 
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|     if (! PyArg_ParseTuple(args, "|OO", &obj1, &obj2) )
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|         return -1;
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| 
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| 	if( !obj1 && !obj2 ){
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| 		self->fe = new FEdge();
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| 	} else if( BPy_SVertex_Check(obj1) && BPy_SVertex_Check(obj2) ) {
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| 		self->fe = new FEdge( ((BPy_SVertex *) obj1)->sv, ((BPy_SVertex *) obj2)->sv );
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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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| 
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| 	self->py_if1D.if1D = self->fe;
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| 
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| 	return 0;
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| }
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| 
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| 
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| PyObject * FEdge___copy__( BPy_FEdge *self ) {
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| 	BPy_FEdge *py_fe;
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| 	
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| 	py_fe = (BPy_FEdge *) FEdge_Type.tp_new( &FEdge_Type, 0, 0 );
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| 	
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| 	py_fe->fe = new FEdge( *(self->fe) );
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| 	py_fe->py_if1D.if1D = py_fe->fe;
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| 
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| 	return (PyObject *) py_fe;
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| }
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| 
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| PyObject * FEdge_vertexA( BPy_FEdge *self ) {	
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| 	if( self->fe->vertexA() ){
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| 		return BPy_SVertex_from_SVertex_ptr( self->fe->vertexA() );
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| 	}
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| 		
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| 	Py_RETURN_NONE;
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| }
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| 
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| PyObject * FEdge_vertexB( BPy_FEdge *self ) {
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| 	if( self->fe->vertexB() ){
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| 		return BPy_SVertex_from_SVertex_ptr( self->fe->vertexB() );
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| 	}
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| 		
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| 	Py_RETURN_NONE;
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| }
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| 
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| 
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| PyObject * FEdge___getitem__( BPy_FEdge *self, PyObject *args ) {
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| 	int i;
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| 
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| 	if(!( PyArg_ParseTuple(args, "i", &i) ))
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| 		return NULL;
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| 	if(!(i == 0 || i == 1)) {
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| 		PyErr_SetString(PyExc_IndexError, "index must be either 0 or 1");
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| 		return NULL;
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| 	}
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| 	
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| 	if( SVertex *v = self->fe->operator[](i) )
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| 		return BPy_SVertex_from_SVertex_ptr( v );
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| 
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| 	Py_RETURN_NONE;
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| }
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| 
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| PyObject * FEdge_nextEdge( BPy_FEdge *self ) {
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| 	if( FEdge *fe = self->fe->nextEdge() )
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| 		return BPy_FEdge_from_FEdge( *fe );
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| 
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| 	Py_RETURN_NONE;
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| }
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| 
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| PyObject * FEdge_previousEdge( BPy_FEdge *self ) {
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| 	if( FEdge *fe = self->fe->previousEdge() )
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| 		return BPy_FEdge_from_FEdge( *fe );
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| 
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| 	Py_RETURN_NONE;
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| }
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| 
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| PyObject * FEdge_viewedge( BPy_FEdge *self ) {
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| 	if( ViewEdge *ve = self->fe->viewedge() )
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| 		return BPy_ViewEdge_from_ViewEdge_ptr( ve );
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| 
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| 	Py_RETURN_NONE;
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| }
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| 
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| PyObject * FEdge_isSmooth( BPy_FEdge *self ) {
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| 	return PyBool_from_bool( self->fe->isSmooth() );
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| }
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| 	
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| PyObject *FEdge_setVertexA( BPy_FEdge *self , PyObject *args) {
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| 	PyObject *py_sv;
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| 
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| 	if(!( PyArg_ParseTuple(args, "O!", &SVertex_Type, &py_sv) ))
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| 		return NULL;
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| 
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| 	self->fe->setVertexA( ((BPy_SVertex *) py_sv)->sv );
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| 
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| 	Py_RETURN_NONE;
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| }
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| 
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| PyObject *FEdge_setVertexB( BPy_FEdge *self , PyObject *args) {
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| 	PyObject *py_sv;
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| 
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| 	if(!( PyArg_ParseTuple(args, "O", &py_sv) && BPy_SVertex_Check(py_sv) )) {
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| 		cout << "ERROR: FEdge_setVertexB" << endl;
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| 		Py_RETURN_NONE;
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| 	}
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| 
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| 	self->fe->setVertexB( ((BPy_SVertex *) py_sv)->sv );
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| 
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| 	Py_RETURN_NONE;
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| }
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| 
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| PyObject *FEdge_setId( BPy_FEdge *self , PyObject *args) {
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| 	PyObject *py_id;
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| 
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| 	if(!( PyArg_ParseTuple(args, "O!", &Id_Type, &py_id) ))
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| 		return NULL;
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| 
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| 	self->fe->setId(*( ((BPy_Id *) py_id)->id ));
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| 
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| 	Py_RETURN_NONE;
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| }
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| 
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| 
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| PyObject *FEdge_setNextEdge( BPy_FEdge *self , PyObject *args) {
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| 	PyObject *py_fe;
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| 
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| 	if(!( PyArg_ParseTuple(args, "O!", &FEdge_Type, &py_fe) ))
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| 		return NULL;
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| 
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| 	self->fe->setNextEdge( ((BPy_FEdge *) py_fe)->fe );
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| 
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| 	Py_RETURN_NONE;
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| }
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| 
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| PyObject *FEdge_setPreviousEdge( BPy_FEdge *self , PyObject *args) {
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| 	PyObject *py_fe;
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| 
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| 	if(!( PyArg_ParseTuple(args, "O!", &FEdge_Type, &py_fe) ))
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| 		return NULL;
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| 
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| 	self->fe->setPreviousEdge( ((BPy_FEdge *) py_fe)->fe );
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| 
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| 	Py_RETURN_NONE;
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| }
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| 
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| PyObject * FEdge_setNature( BPy_FEdge *self, PyObject *args ) {
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| 	PyObject *py_n;
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| 
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| 	if(!( PyArg_ParseTuple(args, "O!", &Nature_Type, &py_n) ))
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| 		return NULL;
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| 	
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| 	PyObject *i = (PyObject *) &( ((BPy_Nature *) py_n)->i );
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| 	self->fe->setNature( PyInt_AsLong(i) );
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| 
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| 	Py_RETURN_NONE;
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| }
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| 
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| 
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| PyObject * FEdge_setViewEdge( BPy_FEdge *self, PyObject *args ) {
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| 	PyObject *py_ve;
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| 
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| 	if(!( PyArg_ParseTuple(args, "O!", &ViewEdge_Type, &py_ve) ))
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| 		return NULL;
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| 
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| 	ViewEdge *ve = ((BPy_ViewEdge *) py_ve)->ve;
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| 	self->fe->setViewEdge( ve );
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| 
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| 	Py_RETURN_NONE;
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| }
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| 
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| 
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| 
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| PyObject *FEdge_setSmooth( BPy_FEdge *self , PyObject *args) {
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| 	PyObject *py_b;
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| 
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| 	if(!( PyArg_ParseTuple(args, "O", &py_b) ))
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| 		return NULL;
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| 
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| 	self->fe->setSmooth( bool_from_PyBool(py_b) );
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| 
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| 	Py_RETURN_NONE;
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| }
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| 
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| 
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| PyObject * FEdge_verticesBegin( BPy_FEdge *self ) {
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| 	Interface0DIterator if0D_it( self->fe->verticesBegin() );
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| 	return BPy_Interface0DIterator_from_Interface0DIterator( if0D_it );
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| }
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| 
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| PyObject * FEdge_verticesEnd( BPy_FEdge *self ) {
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| 	Interface0DIterator if0D_it( self->fe->verticesEnd() );
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| 	return BPy_Interface0DIterator_from_Interface0DIterator( if0D_it );
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| }
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| 
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| 
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| PyObject * FEdge_pointsBegin( BPy_FEdge *self, PyObject *args ) {
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| 	float f = 0;
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| 
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| 	if(!( PyArg_ParseTuple(args, "|f", &f)  ))
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| 		return NULL;
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| 	
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| 	Interface0DIterator if0D_it( self->fe->pointsBegin(f) );
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| 	return BPy_Interface0DIterator_from_Interface0DIterator( if0D_it );
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| }
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| 
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| PyObject * FEdge_pointsEnd( BPy_FEdge *self, PyObject *args ) {
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| 	float f = 0;
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| 
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| 	if(!( PyArg_ParseTuple(args, "|f", &f)  ))
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| 		return NULL;
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| 	
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| 	Interface0DIterator if0D_it( self->fe->pointsEnd(f) );
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| 	return BPy_Interface0DIterator_from_Interface0DIterator( if0D_it );
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| }
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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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