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    D^(hÛ  ã                   ó„   — d Z ddlmZ ddlZddgZ ej                  ddid¬«      dd	„«       Zej                  dd
„«       Zy)aY  Routines to find the boundary of a set of nodes.

An edge boundary is a set of edges, each of which has exactly one
endpoint in a given set of nodes (or, in the case of directed graphs,
the set of edges whose source node is in the set).

A node boundary of a set *S* of nodes is the set of (out-)neighbors of
nodes in *S* that are outside *S*.

é    )ÚchainNÚedge_boundaryÚnode_boundaryÚdataÚdefault)Ú
edge_attrsÚpreserve_edge_attrsc                 óö   ‡‡	— |D �ch c]	  }|| v sŒ|’Œ c}Š| j                  «       r| j                  ‰|||¬«      }n| j                  ‰||¬«      }|€ˆfd„|D «       S t        |«      Š	ˆˆ	fd„|D «       S c c}w )a’  Returns the edge boundary of `nbunch1`.

    The *edge boundary* of a set *S* with respect to a set *T* is the
    set of edges (*u*, *v*) such that *u* is in *S* and *v* is in *T*.
    If *T* is not specified, it is assumed to be the set of all nodes
    not in *S*.

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

    nbunch1 : iterable
        Iterable of nodes in the graph representing the set of nodes
        whose edge boundary will be returned. (This is the set *S* from
        the definition above.)

    nbunch2 : iterable
        Iterable of nodes representing the target (or "exterior") set of
        nodes. (This is the set *T* from the definition above.) If not
        specified, this is assumed to be the set of all nodes in `G`
        not in `nbunch1`.

    keys : bool
        This parameter has the same meaning as in
        :meth:`MultiGraph.edges`.

    data : bool or object
        This parameter has the same meaning as in
        :meth:`MultiGraph.edges`.

    default : object
        This parameter has the same meaning as in
        :meth:`MultiGraph.edges`.

    Returns
    -------
    iterator
        An iterator over the edges in the boundary of `nbunch1` with
        respect to `nbunch2`. If `keys`, `data`, or `default`
        are specified and `G` is a multigraph, then edges are returned
        with keys and/or data, as in :meth:`MultiGraph.edges`.

    Examples
    --------
    >>> G = nx.wheel_graph(6)

    When nbunch2=None:

    >>> list(nx.edge_boundary(G, (1, 3)))
    [(1, 0), (1, 2), (1, 5), (3, 0), (3, 2), (3, 4)]

    When nbunch2 is given:

    >>> list(nx.edge_boundary(G, (1, 3), (2, 0)))
    [(1, 0), (1, 2), (3, 0), (3, 2)]

    Notes
    -----
    Any element of `nbunch` that is not in the graph `G` will be
    ignored.

    `nbunch1` and `nbunch2` are usually meant to be disjoint, but in
    the interest of speed and generality, that is not required here.

    )r   Úkeysr   )r   r   c              3   óB   •K  — | ]  }|d    ‰v |d   ‰v z  sŒ|–— Œ y­w©r   é   N© )Ú.0ÚeÚnset1s     €úZ/var/www/skyplay_api_hub/venv/lib/python3.12/site-packages/networkx/algorithms/boundary.pyú	<genexpr>z edge_boundary.<locals>.<genexpr>e   s(   øè ø€ ÒF�a Q q¡T¨U ]°q¸±t¸u°}Ó$E”ÑFùs   ƒ˜c              3   óZ   •K  — | ]"  }|d    ‰v r|d   ‰v s|d   ‰v r|d    ‰v r|–— Œ$ y­wr   r   )r   r   r   Únset2s     €€r   r   z edge_boundary.<locals>.<genexpr>g   sB   øè ø€ ò àØˆa‰D�E‰M˜a ™d e™m°°1±¸±À1ÀQÁ4È5Á=ô 	
ñùs   ƒ(+)Úis_multigraphÚedgesÚset)
ÚGÚnbunch1Únbunch2r   r   r   Únr   r   r   s
           @@r   r   r      s„   ù€ ðF  Ö*�1 1¨¢6ŠQÒ*€Eð 	‡�ÔØ—‘˜ D¨t¸W�ÓE‰à—‘˜ D°'�Ó:ˆð
 €ÛF˜5ÔFÐFÜ�‹L€Eôàôð ùò# +s
   ‡	A6‘A6c                 ó®   ‡ — |D �ch c]	  }|‰ v sŒ|’Œ }}t        t        j                  ˆ fd„|D «       «      «      |z
  }|�|t        |«      z  }|S c c}w )ac  Returns the node boundary of `nbunch1`.

    The *node boundary* of a set *S* with respect to a set *T* is the
    set of nodes *v* in *T* such that for some *u* in *S*, there is an
    edge joining *u* to *v*. If *T* is not specified, it is assumed to
    be the set of all nodes not in *S*.

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

    nbunch1 : iterable
        Iterable of nodes in the graph representing the set of nodes
        whose node boundary will be returned. (This is the set *S* from
        the definition above.)

    nbunch2 : iterable
        Iterable of nodes representing the target (or "exterior") set of
        nodes. (This is the set *T* from the definition above.) If not
        specified, this is assumed to be the set of all nodes in `G`
        not in `nbunch1`.

    Returns
    -------
    set
        The node boundary of `nbunch1` with respect to `nbunch2`.

    Examples
    --------
    >>> G = nx.wheel_graph(6)

    When nbunch2=None:

    >>> list(nx.node_boundary(G, (3, 4)))
    [0, 2, 5]

    When nbunch2 is given:

    >>> list(nx.node_boundary(G, (3, 4), (0, 1, 5)))
    [0, 5]

    Notes
    -----
    Any element of `nbunch` that is not in the graph `G` will be
    ignored.

    `nbunch1` and `nbunch2` are usually meant to be disjoint, but in
    the interest of speed and generality, that is not required here.

    c              3   ó(   •K  — | ]	  }‰|   –— Œ y ­w©Nr   )r   Úvr   s     €r   r   z node_boundary.<locals>.<genexpr>£   s   øè ø€ Ò!6¨1 ! A¥$Ñ!6ùs   ƒ)r   r   Úfrom_iterable)r   r   r   r   r   Úbdys   `     r   r   r   n   s_   ø€ ðh  Ö*�1 1¨¢6ŠQÐ*€EÐ*Ü
Œe×!Ñ!Ó!6°Ô!6Ó6Ó
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,€ð €×Ñ˜f iÐ0ÀfÔMòWó NðWðt ×Ñò9ó ñ9r*   