Ë
    £ehÛ,  ã                   ó8  — d Z ddlmZ ddlmZ ddlZddlZd„ Zefd„Z	e
efd„Zd„ Zd	„ Zd
„ Zd„ Zd„ Zd„ Zd„ Zd„ Zd„ Zd„ Zd„ Zd„ Zd„ Zdd„Z G d„ de«      Zdd„Zd„ Zedk(  r4ddlZddlZ ej@                   ejB                  «       jD                  «       yy)zTRoutines for calculating bounding boxes, point in rectangle calculations and
so on.
é    )ÚotRound)ÚVectorNc                 óÄ   — | sy| D ��cg c]  \  }}|‘Œ	 }}}| D ��cg c]  \  }}|‘Œ	 }}}t        |«      t        |«      t        |«      t        |«      fS c c}}w c c}}w )zØCalculate the bounding rectangle of a 2D points array.

    Args:
        array: A sequence of 2D tuples.

    Returns:
        A four-item tuple representing the bounding rectangle ``(xMin, yMin, xMax, yMax)``.
    ©r   r   r   r   ©ÚminÚmax)ÚarrayÚxÚyÚxsÚyss        úW/var/www/skyplay_api_hub/venv/lib/python3.12/site-packages/fontTools/misc/arrayTools.pyÚ
calcBoundsr      s_   € ñ ØØ×	‘��1Š!Ð	€BÑ	Ø×	‘��1Š!Ð	€BÑ	Üˆr‹7”C˜“GœS ›W¤c¨"£gÐ-Ð-ùó 
ùÛ	s
   ‰A�Ac                 ó>   ‡— t        ˆfd„t        | «      D «       «      S )aû  Calculate the integer bounding rectangle of a 2D points array.

    Values are rounded to closest integer towards ``+Infinity`` using the
    :func:`fontTools.misc.fixedTools.otRound` function by default, unless
    an optional ``round`` function is passed.

    Args:
        array: A sequence of 2D tuples.
        round: A rounding function of type ``f(x: float) -> int``.

    Returns:
        A four-item tuple of integers representing the bounding rectangle:
        ``(xMin, yMin, xMax, yMax)``.
    c              3   ó.   •K  — | ]  } ‰|«      –— Œ y ­w)N© )Ú.0ÚvÚrounds     €r   ú	<genexpr>z calcIntBounds.<locals>.<genexpr>*   s   øè ø€ Ò5˜a‘�q—Ñ5ùs   ƒ)Útupler   )r
   r   s    `r   ÚcalcIntBoundsr      s   ø€ ô Ó5¤:¨eÓ#4Ô5Ó5Ð5ó    c                 ón   — |\  }}| €||||fS | \  }}}}	 |||«       |||«       |||«       ||	|«      fS )a_  Add a point to a bounding rectangle.

    Args:
        bounds: A bounding rectangle expressed as a tuple
            ``(xMin, yMin, xMax, yMax), or None``.
        p: A 2D tuple representing a point.
        min,max: functions to compute the minimum and maximum.

    Returns:
        The updated bounding rectangle ``(xMin, yMin, xMax, yMax)``.
    r   )
ÚboundsÚpr   r	   r   r   ÚxMinÚyMinÚxMaxÚyMaxs
             r   ÚupdateBoundsr"   -   sU   € ð �F€QˆØ€~Ø�!�Q˜ˆzÐØ#Ñ€Dˆ$��dÙˆt�Q‹<™˜T 1›¡s¨4°£|±S¸¸q³\ÐAÐAr   c                 ó^   — | \  }}|\  }}}}||cxk  xr |k  nc xr ||cxk  xr |k  S c S )a'  Test if a point is inside a bounding rectangle.

    Args:
        p: A 2D tuple representing a point.
        rect: A bounding rectangle expressed as a tuple
            ``(xMin, yMin, xMax, yMax)``.

    Returns:
        ``True`` if the point is inside the rectangle, ``False`` otherwise.
    r   )r   Úrectr   r   r   r   r    r!   s           r   ÚpointInRectr%   @   s@   € ð �F€QˆØ!Ñ€Dˆ$��dØ�AÖ˜ÔÒ6 D¨AÖ$5°Ñ$5Ð6Ñ$5Ð6r   c                 ó¦   — t        | «      dk  rg S |\  }}}}| D ��cg c]'  \  }}||cxk  xr |k  nc xr ||cxk  xr |k  nc ‘Œ) c}}S c c}}w )a  Determine which points are inside a bounding rectangle.

    Args:
        array: A sequence of 2D tuples.
        rect: A bounding rectangle expressed as a tuple
            ``(xMin, yMin, xMax, yMax)``.

    Returns:
        A list containing the points inside the rectangle.
    é   )Úlen)r
   r$   r   r   r    r!   r   r   s           r   ÚpointsInRectr)   P   sV   € ô ˆ5ƒz�A‚~Øˆ	Ø!Ñ€Dˆ$��dØDI×J¹D¸A¸qˆT�QÖ˜$ÔÒ7 T¨QÖ%6°$Ô%6Ñ7ÓJÐJùÓJs   �,Ac                 óH   — | \  }}t        j                  |dz  |dz  z   «      S )z�Calculate the length of the given vector.

    Args:
        vector: A 2D tuple.

    Returns:
        The Euclidean length of the vector.
    é   )ÚmathÚsqrt)Úvectorr   r   s      r   ÚvectorLengthr/   a   s(   € ð �D€A€qÜ�9‰9�Q˜‘T˜A˜q™D‘[Ó!Ð!r   c           	      ój   — | D �cg c]#  }t        t        j                  |dz   «      «      ‘Œ% c}S c c}w )z˜Round a list of floats to 16-bit signed integers.

    Args:
        array: List of float values.

    Returns:
        A list of rounded integers.
    g      à?)Úintr,   Úfloor)r
   Úis     r   ÚasInt16r4   n   s*   € ð /4Ö4¨ŒC”—
‘
˜1˜s™7Ó#Õ$Ò4Ð4ùÒ4s   …(0c                 ól   — | \  }}}}t        ||«      t        ||«      t        ||«      t        ||«      fS )aP  Normalize a bounding box rectangle.

    This function "turns the rectangle the right way up", so that the following
    holds::

        xMin <= xMax and yMin <= yMax

    Args:
        rect: A bounding rectangle expressed as a tuple
            ``(xMin, yMin, xMax, yMax)``.

    Returns:
        A normalized bounding rectangle.
    r   ©r$   r   r   r    r!   s        r   ÚnormRectr7   z   s9   € ð  $Ñ€Tˆ4��tÜˆt�T‹?œC  d›O¬S°°t«_¼cÀ$È»oÐMÐMr   c                 ó4   — | \  }}}}||z  ||z  ||z  ||z  fS )a:  Scale a bounding box rectangle.

    Args:
        rect: A bounding rectangle expressed as a tuple
            ``(xMin, yMin, xMax, yMax)``.
        x: Factor to scale the rectangle along the X axis.
        Y: Factor to scale the rectangle along the Y axis.

    Returns:
        A scaled bounding rectangle.
    r   )r$   r   r   r   r   r    r!   s          r   Ú	scaleRectr9   �   s1   € ð  $Ñ€Tˆ4��tØ�!‰8�T˜A‘X˜t a™x¨°©Ð1Ð1r   c                 ó4   — | \  }}}}||z   ||z   ||z   ||z   fS )a@  Offset a bounding box rectangle.

    Args:
        rect: A bounding rectangle expressed as a tuple
            ``(xMin, yMin, xMax, yMax)``.
        dx: Amount to offset the rectangle along the X axis.
        dY: Amount to offset the rectangle along the Y axis.

    Returns:
        An offset bounding rectangle.
    r   ©r$   ÚdxÚdyr   r   r    r!   s          r   Ú
offsetRectr>   �   ó1   € ð  $Ñ€Tˆ4��tØ�"‰9�d˜R‘i ¨¡¨D°2©IÐ5Ð5r   c                 ó4   — | \  }}}}||z   ||z   ||z
  ||z
  fS )aI  Inset a bounding box rectangle on all sides.

    Args:
        rect: A bounding rectangle expressed as a tuple
            ``(xMin, yMin, xMax, yMax)``.
        dx: Amount to inset the rectangle along the X axis.
        dY: Amount to inset the rectangle along the Y axis.

    Returns:
        An inset bounding rectangle.
    r   r;   s          r   Ú	insetRectrA   ­   r?   r   c                 óª   — | \  }}}}|\  }}}}	t        ||«      t        ||«      t        ||«      t        ||	«      f\  }
}}}|
|k\  s||k\  ryd|
|||ffS )a¸  Test for rectangle-rectangle intersection.

    Args:
        rect1: First bounding rectangle, expressed as tuples
            ``(xMin, yMin, xMax, yMax)``.
        rect2: Second bounding rectangle.

    Returns:
        A boolean and a rectangle.
        If the input rectangles intersect, returns ``True`` and the intersecting
        rectangle. Returns ``False`` and ``(0, 0, 0, 0)`` if the input
        rectangles don't intersect.
    )Fr   T)r	   r   ©Úrect1Úrect2ÚxMin1ÚyMin1ÚxMax1ÚyMax1ÚxMin2ÚyMin2ÚxMax2ÚyMax2r   r   r    r!   s                 r   ÚsectRectrN   ½   s~   € ð $)Ñ €UˆE�5˜%Ø#(Ñ €UˆE�5˜%äˆE�5ÓÜˆE�5ÓÜˆE�5ÓÜˆE�5Óð	Ñ€Dˆ$��dð ˆt‚|�t˜t’|Ø"Ø�$˜˜d DÐ)Ð)Ð)r   c                 ó�   — | \  }}}}|\  }}}}	t        ||«      t        ||«      t        ||«      t        ||	«      f\  }
}}}|
|||fS )a0  Determine union of bounding rectangles.

    Args:
        rect1: First bounding rectangle, expressed as tuples
            ``(xMin, yMin, xMax, yMax)``.
        rect2: Second bounding rectangle.

    Returns:
        The smallest rectangle in which both input rectangles are fully
        enclosed.
    r   rC   s                 r   Ú	unionRectrP   Ø   si   € ð $)Ñ €UˆE�5˜%Ø#(Ñ €UˆE�5˜%äˆE�5ÓÜˆE�5ÓÜˆE�5ÓÜˆE�5Óð	Ñ€Dˆ$��dð �$˜˜dÐ#Ð#r   c                 ó0   — | \  }}}}||z   dz  ||z   dz  fS )zãDetermine rectangle center.

    Args:
        rect: Bounding rectangle, expressed as tuples
            ``(xMin, yMin, xMax, yMax)``.

    Returns:
        A 2D tuple representing the point at the center of the rectangle.
    r+   r   r6   s        r   Ú
rectCenterrR   ï   s/   € ð  $Ñ€Tˆ4��tØ�4‰K˜1Ñ˜t d™{¨aÑ/Ð/Ð/r   c                 ó&   — | \  }}}}||z
  ||z
  z  S )zºDetermine rectangle area.

    Args:
        rect: Bounding rectangle, expressed as tuples
            ``(xMin, yMin, xMax, yMax)``.

    Returns:
        The area of the rectangle.
    r   r6   s        r   ÚrectArearT   ý   s%   € ð  $Ñ€Tˆ4��tØ�4‰K˜D 4™KÑ(Ð(r   c                 ó  — | \  }}}}t        t        j                  |«      «      }t        t        j                  |«      «      }t        t        j                  |«      «      }t        t        j                  |«      «      }||||fS )a  Round a rectangle to integer values.

    Guarantees that the resulting rectangle is NOT smaller than the original.

    Args:
        rect: Bounding rectangle, expressed as tuples
            ``(xMin, yMin, xMax, yMax)``.

    Returns:
        A rounded bounding rectangle.
    )r1   r,   r2   Úceilr6   s        r   ÚintRectrW     sk   € ð  $Ñ€Tˆ4��tÜŒt�z‰z˜$ÓÓ €DÜŒt�z‰z˜$ÓÓ €DÜŒt�y‰y˜‹Ó€DÜŒt�y‰y˜‹Ó€DØ�$˜˜dÐ#Ð#r   c           	      ód  — |dk  rt        d|›�«      ‚t        | «      \  }}}}t        t        j                  ||z  «      |z  «      t        t        j                  ||z  «      |z  «      t        t        j
                  ||z  «      |z  «      t        t        j
                  ||z  «      |z  «      fS )zð
    >>> bounds = (72.3, -218.4, 1201.3, 919.1)
    >>> quantizeRect(bounds)
    (72, -219, 1202, 920)
    >>> quantizeRect(bounds, factor=10)
    (70, -220, 1210, 920)
    >>> quantizeRect(bounds, factor=100)
    (0, -300, 1300, 1000)
    r'   z*Expected quantization factor >= 1, found: )Ú
ValueErrorr7   r1   r,   r2   rV   )r$   Úfactorr   r   r    r!   s         r   ÚquantizeRectr[     s¢   € ð �‚zÜÐEÀfÀZÐPÓQÐQÜ% d›^Ñ€Dˆ$��däŒD�J‰J�t˜f‘}Ó%¨Ñ.Ó/ÜŒD�J‰J�t˜f‘}Ó%¨Ñ.Ó/ÜŒD�I‰I�d˜V‘mÓ$ vÑ-Ó.ÜŒD�I‰I�d˜V‘mÓ$ vÑ-Ó.ð	ð r   c                   ó   — e Zd Zd„ Zy)r   c                 ó8   — t        j                  dt        «       y )NzffontTools.misc.arrayTools.Vector has been deprecated, please use fontTools.misc.vector.Vector instead.)ÚwarningsÚwarnÚDeprecationWarning)ÚselfÚargsÚkwargss      r   Ú__init__zVector.__init__5  s   € Ü�‰ð4äõ	
r   N)Ú__name__Ú
__module__Ú__qualname__rd   r   r   r   r   r   4  s   „ ó
r   r   c              #   óŠ   K  — | sy|rt        | «      }nt        | «      }t        |d«      }|}|D ]
  }||f–— |}Œ ||f–— y­w)aÉ  Iterate over current and next items in iterable.

    Args:
        iterable: An iterable
        reverse: If true, iterate in reverse order.

    Returns:
        A iterable yielding two elements per iteration.

    Example:

        >>> tuple(pairwise([]))
        ()
        >>> tuple(pairwise([], reverse=True))
        ()
        >>> tuple(pairwise([0]))
        ((0, 0),)
        >>> tuple(pairwise([0], reverse=True))
        ((0, 0),)
        >>> tuple(pairwise([0, 1]))
        ((0, 1), (1, 0))
        >>> tuple(pairwise([0, 1], reverse=True))
        ((1, 0), (0, 1))
        >>> tuple(pairwise([0, 1, 2]))
        ((0, 1), (1, 2), (2, 0))
        >>> tuple(pairwise([0, 1, 2], reverse=True))
        ((2, 1), (1, 0), (0, 2))
        >>> tuple(pairwise(['a', 'b', 'c', 'd']))
        (('a', 'b'), ('b', 'c'), ('c', 'd'), ('d', 'a'))
        >>> tuple(pairwise(['a', 'b', 'c', 'd'], reverse=True))
        (('d', 'c'), ('c', 'b'), ('b', 'a'), ('a', 'd'))
    N)ÚreversedÚiterÚnext)ÚiterableÚreverseÚitÚfirstÚaÚbs         r   Úpairwiserr   =  s^   è ø€ ñB ØÙÜ�hÓ‰ä�(‹^ˆÜ��T‹N€EØ€AØò ˆØ�!ˆfŠØ‰ðð ˆeˆ*Óùs   ‚AAc                   ó   — y)a  
    >>> import math
    >>> calcBounds([])
    (0, 0, 0, 0)
    >>> calcBounds([(0, 40), (0, 100), (50, 50), (80, 10)])
    (0, 10, 80, 100)
    >>> updateBounds((0, 0, 0, 0), (100, 100))
    (0, 0, 100, 100)
    >>> pointInRect((50, 50), (0, 0, 100, 100))
    True
    >>> pointInRect((0, 0), (0, 0, 100, 100))
    True
    >>> pointInRect((100, 100), (0, 0, 100, 100))
    True
    >>> not pointInRect((101, 100), (0, 0, 100, 100))
    True
    >>> list(pointsInRect([(50, 50), (0, 0), (100, 100), (101, 100)], (0, 0, 100, 100)))
    [True, True, True, False]
    >>> vectorLength((3, 4))
    5.0
    >>> vectorLength((1, 1)) == math.sqrt(2)
    True
    >>> list(asInt16([0, 0.1, 0.5, 0.9]))
    [0, 0, 1, 1]
    >>> normRect((0, 10, 100, 200))
    (0, 10, 100, 200)
    >>> normRect((100, 200, 0, 10))
    (0, 10, 100, 200)
    >>> scaleRect((10, 20, 50, 150), 1.5, 2)
    (15.0, 40, 75.0, 300)
    >>> offsetRect((10, 20, 30, 40), 5, 6)
    (15, 26, 35, 46)
    >>> insetRect((10, 20, 50, 60), 5, 10)
    (15, 30, 45, 50)
    >>> insetRect((10, 20, 50, 60), -5, -10)
    (5, 10, 55, 70)
    >>> intersects, rect = sectRect((0, 10, 20, 30), (0, 40, 20, 50))
    >>> not intersects
    True
    >>> intersects, rect = sectRect((0, 10, 20, 30), (5, 20, 35, 50))
    >>> intersects
    1
    >>> rect
    (5, 20, 20, 30)
    >>> unionRect((0, 10, 20, 30), (0, 40, 20, 50))
    (0, 10, 20, 50)
    >>> rectCenter((0, 0, 100, 200))
    (50.0, 100.0)
    >>> rectCenter((0, 0, 100, 199.0))
    (50.0, 99.5)
    >>> intRect((0.9, 2.9, 3.1, 4.1))
    (0, 2, 4, 5)
    Nr   r   r   r   Ú_testrt   l  s   � r   Ú__main__)r'   )F)#Ú__doc__ÚfontTools.misc.roundToolsr   ÚfontTools.misc.vectorr   Ú_Vectorr,   r^   r   r   r   r	   r"   r%   r)   r/   r4   r7   r9   r>   rA   rN   rP   rR   rT   rW   r[   rr   rt   re   ÚsysÚdoctestÚexitÚtestmodÚfailedr   r   r   ú<module>r      sÆ   ðñõ .Ý 3Û Û ò.ð   'ó 6ð$ !$¨ó Bò&7ò Kò"
"ò	5òNò&2ò 6ò 6ò *ò6$ò.0ò)ò$ó(ô*
ˆWô 
ó,ò^5ðp ˆzÒÛÛà€C‡H�Hˆ_ˆW�_‰_Ó×%Ñ%Õ&ð	 r   