ó
    …~i  ã                   ót   • S r SSKrSS/r\R                  " SS9S 5       r\R                  " SS9S	S j5       rg)
zUnary operations on graphsé    NÚ
complementÚreverseT)Úreturns_graphc                 óœ   ^ • T R                  5       nUR                  T 5        UR                  U 4S jT R                  5        5       5        U$ )a&  Returns the graph complement of G.

Parameters
----------
G : graph
   A NetworkX graph

Returns
-------
GC : A new graph.

Notes
-----
Note that `complement` does not create self-loops and also
does not produce parallel edges for MultiGraphs.

Graph, node, and edge data are not propagated to the new graph.

Examples
--------
>>> G = nx.Graph([(1, 2), (1, 3), (2, 3), (3, 4), (3, 5)])
>>> G_complement = nx.complement(G)
>>> G_complement.edges()  # This shows the edges of the complemented graph
EdgeView([(1, 4), (1, 5), (2, 4), (2, 5), (4, 5)])

c              3   ó^   >#   • U  H"  u  pT  H  o3U;  d  M
  X:w  d  M  X4v •  M     M$     g 7f)N© )Ú.0ÚnÚnbrsÚn2ÚGs       €Ú`/home/mande/repo/quber/.venv/lib/python3.13/site-packages/networkx/algorithms/operators/unary.pyÚ	<genexpr>Úcomplement.<locals>.<genexpr>'   s)   øé € ÐW¢‘W�Q¼°"Àt¹^‹ÈqÉw‹ˆ!�¹‰¢ùs   ƒ-˜-Ÿ-)Ú	__class__Úadd_nodes_fromÚadd_edges_fromÚ	adjacency)r   ÚRs   ` r   r   r      sA   ø€ ð8 	
�‰‹€AØ×Ñ�QÔØ×ÑÜW §¡¤ÓWôð €Hó    c                 óv   • U R                  5       (       d  [        R                  " S5      eU R                  US9$ )a	  Returns the reverse directed graph of G.

Parameters
----------
G : directed graph
    A NetworkX directed graph
copy : bool
    If True, then a new graph is returned. If False, then the graph is
    reversed in place.

Returns
-------
H : directed graph
    The reversed G.

Raises
------
NetworkXError
    If graph is undirected.

Examples
--------
>>> G = nx.DiGraph([(1, 2), (1, 3), (2, 3), (3, 4), (3, 5)])
>>> G_reversed = nx.reverse(G)
>>> G_reversed.edges()
OutEdgeView([(2, 1), (3, 1), (3, 2), (4, 3), (5, 3)])

z#Cannot reverse an undirected graph.)Úcopy)Úis_directedÚnxÚNetworkXErrorr   )r   r   s     r   r   r   ,   s2   € ð< �=‰=�?‰?Ü×ÒÐDÓEÐEà�y‰y˜dˆyÐ#Ð#r   )T)Ú__doc__Únetworkxr   Ú__all__Ú_dispatchabler   r   r   r   r   Ú<module>r       sT   ðÙ  ã à˜Ð
#€ð ×Ò Ñ%ñ ó &ð ðF ×Ò Ñ%ó $ó &ñ $r   