ELF>HP@@'&  UH@dH%(HD$81HHt$HD$HFHD$$D$ t0H|$1HT$8dH+%(uhH@]@HT$H|$H5|$HtHt+HH5HPtHuH1Huff.fUH@dH%(HD$81HHt$HD$HFHD$$D$ t0H|$1HT$8dH+%(uFH@]@H|$HT$H5|$HtHHuHff.@ATUHHdH%(HD$81HHt$HD$HFHD$$D$ D$ wcLd$HT$ H5L|$ Ht#D$ 9D$(|Vt$ HHHtU1HT$8dH+%(uMHH]A\H|$f.Ht$ LuDHfUSHHdH%(HD$81HHt$HD$HFHD$$D$ HD$t6H|$1HT$8dH+%(HH[]DHt$H|$tHl$H=HtHH=uHuHc@HH=tHH=tHSH0fnFdH%(HD$(1HH4$HD$HGfnȉD$fbfD$u=H(HtD$9D$t:H111HT$(dH+%(uZH0[fDHHuӐtHuHcHHH;tЉff.fATUSH@fnFdH%(HD$81HHt$HD$HGfnȉD$(fbfD$ uYHD$Ho(Ht!\$ +\$$tJH|$1HT$8dH+%(H@[]A\HHuːHt$H|$tD$$Ld$u`HELH@H;H=tLH=u-HaHcVf.LLH=tLH=tLfDHЉfATH0fnFdH%(HD$(1HH4$HD$HGfnȉD$fbfD$uDH(HtD$9D$tIH11E1HD$(dH+%(H0LA\@HHufHHRxH;IMtoI$H5LPtZHuLIHoHbL1HHP@L8fE1H"DIjfATUHHdH%(HD$8HFLd$Ht$HHD$HHT$ LH5D$(HD$ D$ |$ Ht9D$ 9D$(}Ht$ Ltt$ HHHtmD1HT$8dH+%(u`HH]A\fDHD$8dH+%(uBHHHH]H=A\H5HATL%H HH5LuLHLA\ATIUHHt HH5LHtHmtH]A\HH]A\UH@fnFdH%(HD$81HHt$HD$HGfnȉD$(fbfD$ uLHo(Ht!D$ +D$$tFH|$1HT$8dH+%(u|H@]f.HHuϐH5HT$H|$|$HtD$$u(HEHHu@@Hff.@ATUHHfnFdH%(HD$81HHt$HD$HGfnȉD$(fbfD$ uJHo(Ht!D$ +D$$tDH|$1HT$8dH+%(HH]A\fHHuѐLd$Ht$LtHT$H5L|$HtD$$Ht$u?HEHHxH;u0HeHHWDHff.@AT1UHXHNdH%(HD$H1HGAfnH%fnA)fbAt int C++: static vtkTypeBool IsTypeOf(const char *type) Return 1 if this class type is the same type of (or a subclass of) the named class. Returns 0 otherwise. This method works in combination with vtkTypeMacro found in vtkSetGet.h. V.IsA(string) -> int C++: vtkTypeBool IsA(const char *type) override; Return 1 if this class is the same type of (or a subclass of) the named class. Returns 0 otherwise. This method works in combination with vtkTypeMacro found in vtkSetGet.h. V.SafeDownCast(vtkObjectBase) -> vtkUndirectedGraph C++: static vtkUndirectedGraph *SafeDownCast(vtkObjectBase *o) V.NewInstance() -> vtkUndirectedGraph C++: vtkUndirectedGraph *NewInstance() V.GetDataObjectType() -> int C++: int GetDataObjectType() override; Return what type of dataset this is. V.GetInDegree(int) -> int C++: vtkIdType GetInDegree(vtkIdType v) override; Returns the full degree of the vertex. V.GetInEdge(int, int) -> vtkInEdgeType C++: vtkInEdgeType GetInEdge(vtkIdType v, vtkIdType i) override; V.GetInEdge(int, int, vtkGraphEdge) C++: void GetInEdge(vtkIdType v, vtkIdType i, vtkGraphEdge *e) override; Random-access method for retrieving the in edges of a vertex. For an undirected graph, this is the same as the out edges. V.GetData(vtkInformation) -> vtkUndirectedGraph C++: static vtkUndirectedGraph *GetData(vtkInformation *info) V.GetData(vtkInformationVector, int) -> vtkUndirectedGraph C++: static vtkUndirectedGraph *GetData(vtkInformationVector *v, int i=0) Retrieve a graph from an information vector. V.GetInEdges(int, vtkInEdgeIterator) C++: void GetInEdges(vtkIdType v, vtkInEdgeIterator *it) override; Initialize the iterator to get the incoming edges to a vertex. For an undirected graph, this is all incident edges. V.IsStructureValid(vtkGraph) -> bool C++: bool IsStructureValid(vtkGraph *g) override; Check the structure, and accept it if it is a valid undirected graph. This is public to allow the ToDirected/UndirectedGraph to work. 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