
    ^j                      ^    d Z dZg dZddlZddlmZ ddlmZmZ ddl	m
Z
mZ d	 Zdd
ZddZy)z.Functions to extract parts of sparse matrices
zrestructuredtext en)findtriltriu    N)warn   )	coo_array
coo_matrix)sparrayspmatrixc                     t        | d      } | j                          | j                  dk7  }| j                  |   | j                  |   | j                  |   fS )aU  Return the indices and values of the nonzero elements of a matrix.

    Parameters
    ----------
    A : dense or sparse array or matrix
        Matrix whose nonzero elements are desired.

    Returns
    -------
    (I,J,V) : tuple of arrays
        I,J, and V contain the row indices, column indices, and values
        of the nonzero entries.


    Examples
    --------
    >>> from scipy.sparse import csr_array, find
    >>> A = csr_array([[7.0, 8.0, 0],[0, 0, 9.0]])
    >>> find(A)
    (array([0, 0, 1], dtype=int32),
     array([0, 1, 2], dtype=int32),
     array([ 7.,  8.,  9.]))

    Tcopyr   )r   sum_duplicatesdatarowcol)Anz_masks     N/opt/ringagent/.cad-venv/lib/python3.12/site-packages/scipy/sparse/_extract.pyr   r      sN    4 	!$AffkG55>155>166'?::    c                    t        | t              rt        }nUt        | t              rt        }n>d}t
        j                  j                  t              f}t        |t        |       t        } || d      } | j                  |z   | j                  k\  }| j                  |   }| j                  |   }| j                  |   }	 ||	||ff| j                  | j                        }
|
j!                  |      S )a  Return the lower triangular portion of a sparse array or matrix.

    Returns the elements on or below the k-th diagonal of A.
        - k = 0 corresponds to the main diagonal
        - k > 0 is above the main diagonal
        - k < 0 is below the main diagonal

    .. warning::

        `tril` is switching to the sparse array interface.

        For the case where no input arrays are sparse, this function is
        switching to returning a sparse array instead of sparse matrix.
        Control the sparse return class by making at least one input sparse,
        e.g., ``tril(coo_matrix(A))``, or ``tril(coo_array(A))``.
        That removes any deprecation warnings as well.
        For more general information about sparrays, see
        :ref:`Migration from spmatrix to sparray <migration_to_sparray>`.
        Handling of this no sparse input case will change no earlier than v1.20.

    Parameters
    ----------
    A : dense or sparse array or matrix
        Matrix whose lower trianglar portion is desired.
    k : int : optional
        The top-most diagonal of the lower triangle.
    format : str
        Sparse format of the result, e.g. format="csr", etc.

    Returns
    -------
    L : sparse matrix
        Lower triangular portion of A in sparse format.

    See Also
    --------
    triu : upper triangle in sparse format

    Examples
    --------
    >>> from scipy.sparse import csr_array, tril
    >>> A = csr_array([[1, 2, 0, 0, 3], [4, 5, 0, 6, 7], [0, 0, 8, 9, 0]],
    ...               dtype='int32')
    >>> A.toarray()
    array([[1, 2, 0, 0, 3],
           [4, 5, 0, 6, 7],
           [0, 0, 8, 9, 0]], dtype=int32)
    >>> tril(A).toarray()
    array([[1, 0, 0, 0, 0],
           [4, 5, 0, 0, 0],
           [0, 0, 8, 0, 0]], dtype=int32)
    >>> tril(A).nnz
    4
    >>> tril(A, k=1).toarray()
    array([[1, 2, 0, 0, 0],
           [4, 5, 0, 0, 0],
           [0, 0, 8, 9, 0]], dtype=int32)
    >>> tril(A, k=-1).toarray()
    array([[0, 0, 0, 0, 0],
           [4, 0, 0, 0, 0],
           [0, 0, 0, 0, 0]], dtype=int32)
    >>> tril(A, format='csc')
    <Compressed Sparse Column sparse array of dtype 'int32'
        with 4 stored elements and shape (3, 5)>

    ay  `tril` is switching to the sparse array interface.

        For the case where input arrays are numpy arrays, this function is
        switching to returning a sparse array instead of sparse matrix.
        Recover the sparse matrix return value by making one input a sparse matrix.
        For example, tril(coo_matrix(A)).
        Avoid this message for sparse array output by using tril(coo_array(A)).
        For more information, see the spmatrix to sparray migration guide
        https://docs.scipy.org/doc/scipy/reference/sparse.migration_to_sparray.html

        This function will be changed no earlier than v1.20.
        categoryskip_file_prefixesFr   shapedtype
isinstancer
   r   r   r	   ospathdirname__file__r   DeprecationWarningr   r   r   r   r   asformatr   kformat
coo_sparsemsgprefixesmaskr   r   r   new_coos              r   r   r   0   s    F !W
	Ax	 
 GGOOH-/S-(K
 	15!A5519D
%%+C
%%+C66$<D$c
+177!''JGF##r   c                    t        | t              rt        }nUt        | t              rt        }n>d}t
        j                  j                  t              f}t        |t        |       t        } || d      } | j                  |z   | j                  k  }| j                  |   }| j                  |   }| j                  |   }	 ||	||ff| j                  | j                        }
|
j!                  |      S )a  Return the upper triangular portion of a sparse array or matrix.

    Returns the elements on or above the k-th diagonal of A.
        - k = 0 corresponds to the main diagonal
        - k > 0 is above the main diagonal
        - k < 0 is below the main diagonal

    .. warning::

        `triu` is switching to the sparse array interface.

        For the case where no input arrays are sparse, this function is
        switching to returning a sparse array instead of sparse matrix.
        Control the sparse return class by making at least one input sparse,
        e.g., ``triu(coo_matrix(A))``, or ``triu(coo_array(A))``.
        That removes any deprecation warnings as well.
        For more general information about sparrays, see
        :ref:`Migration from spmatrix to sparray <migration_to_sparray>`.
        Handling of this no sparse input case will change no earlier than v1.20.

    Parameters
    ----------
    A : dense or sparse array or matrix
        Matrix whose upper trianglar portion is desired.
    k : int : optional
        The bottom-most diagonal of the upper triangle.
    format : str
        Sparse format of the result, e.g. format="csr", etc.

    Returns
    -------
    L : sparse array or matrix
        Upper triangular portion of A in sparse format.
        Sparse array if A is a sparse array, otherwise matrix.

    See Also
    --------
    tril : lower triangle in sparse format

    Examples
    --------
    >>> from scipy.sparse import csr_array, triu
    >>> A = csr_array([[1, 2, 0, 0, 3], [4, 5, 0, 6, 7], [0, 0, 8, 9, 0]],
    ...                dtype='int32')
    >>> A.toarray()
    array([[1, 2, 0, 0, 3],
           [4, 5, 0, 6, 7],
           [0, 0, 8, 9, 0]], dtype=int32)
    >>> triu(A).toarray()
    array([[1, 2, 0, 0, 3],
           [0, 5, 0, 6, 7],
           [0, 0, 8, 9, 0]], dtype=int32)
    >>> triu(A).nnz
    8
    >>> triu(A, k=1).toarray()
    array([[0, 2, 0, 0, 3],
           [0, 0, 0, 6, 7],
           [0, 0, 0, 9, 0]], dtype=int32)
    >>> triu(A, k=-1).toarray()
    array([[1, 2, 0, 0, 3],
           [4, 5, 0, 6, 7],
           [0, 0, 8, 9, 0]], dtype=int32)
    >>> triu(A, format='csc')
    <Compressed Sparse Column sparse array of dtype 'int32'
        with 8 stored elements and shape (3, 5)>

    ay  `triu` is switching to the sparse array interface.

        For the case where input arrays are numpy arrays, this function is
        switching to returning a sparse array instead of sparse matrix.
        Recover the sparse matrix return value by making one input a sparse matrix.
        For example, triu(coo_matrix(A)).
        Avoid this message for sparse array output by using triu(coo_array(A)).
        For more information, see the spmatrix to sparray migration guide
        https://docs.scipy.org/doc/scipy/reference/sparse.migration_to_sparray.html

        This function will be changed no earlier than v1.20.
        r   Fr   r   r   r&   s              r   r   r      s    H !W
	Ax	 
 GGOOH-/S-(K
 	15!A5519D
%%+C
%%+C66$<D$c
+177!''JGF##r   )r   N)__doc____docformat____all__r    warningsr   _coor   r	   _baser
   r   r   r   r    r   r   <module>r6      s5    &
" 	  ' $;Ba$Hb$r   