o
    AeS9                     @   sx  z	d dl Z e jZW n eefy   d dlm Z  dZY nw d dlmZmZm	Z	 d dl
mZmZ eeef Zeeef Zee Zee Ze	edf Zee Zee ZdZe je je je je je je je je je je jd	ded	ed
ededef
ddZdededefddZdedededefddZe je je je je je je je je jde edededededef
ddZe je je je je je je je jed	 d0dedededefddZ e je je je je je jee jde d dfdededed efd!d"Z!d#e"d$efd%d&Z#d'ed$ed(efd)d*Z$	+d1dedededefd,d-Z%	+d1dededededef
d.d/Z&dS )2    N)cythonF)SequenceTupleUnion)IntegralReal   )	jnx1x2d1d2scalexdcoordsrc1rd1rc2rd2c                 C   s   ddg}dD ]r}g  ||< }|| || || || f\}}	}
}||	kr>t | }|
|kr5||
g|  n|dg|  q||	krL|	|}}	||
}
}||
 |	|  }| D ]!}|| }||krc|
}n||	krj|}n|
|| |  }|| qVqt| S )zGiven two reference coordinates `rc1` & `rc2` and their respective
    delta vectors `rd1` & `rd2`, returns interpolated deltas for the set of
    coordinates `coords`.Nr      r   )lenextendappendzip)r   r   r   r   r   Z
out_arraysr	   outr   r   r   r   r
   r   pairr   r    r   U/home/www/facesmatcher.com/pyenv/lib/python3.10/site-packages/fontTools/varLib/iup.pyiup_segment   s0   $

r!   deltasreturnc              
   C   s  t | t |ks
J d| vr| S t | }dd t| D }|s$dg| S g }t|}t|}|dkrUd|||d f\}}}	}
|t||| ||	 | |	 ||
 | |
  || |  |D ]4}|| dkr|d |||f\}}}	}
|t||| ||	 | |	 ||
 | |
  || |  |}q^||d kr|d |||d f\}}}	}
|t||| ||	 | |	 ||
 | |
  t | t |ksJ t | t |f|S )zFor the contour given in `coords`, interpolate any missing
    delta values in delta vector `deltas`.

    Returns fully filled-out delta vector.Nc                 S   s   g | ]
\}}|d ur|qS Nr   ).0ivr   r   r    
<listcomp>c   s    ziup_contour.<locals>.<listcomp>)r   r   r   r   )r   	enumerateiternextr   r!   r   )r"   r   r
   indicesr   itstarti1i2Zri1Zri2endr   r   r    iup_contourW   sJ   
"""$r3   endsc                 C   s   t ||krt||r|d d ndd ksJ t|}||d |d |d |d g }g }d}|D ]}|d7 }t| || ||| }|| |}q2|S )zFor the outline given in `coords`, with contour endpoints given
    in sorted increasing order in `ends`, interpolate any missing
    delta values in delta vector `deltas`.

    Returns fully filled-out delta vector.r)   r   r            )sortedr   r3   r   )r"   r   r4   r
   r   r/   r2   contourr   r   r    	iup_delta   s   0	 
r:   )r&   r	   r   ypqr&   r	   	tolerancec                    sh   || dksJ t ||d | || | | || | | }| |d | } t fddt| |D S )zReturn true if the deltas for points at `i` and `j` (`i < j`) can be
    successfully used to interpolate deltas for points in between them within
    provided error tolerance.r7   r   c                 3   s6    | ]\\}}\}}t t|| ||  kV  qd S r$   abscomplex)r%   r   r;   r<   r=   r>   r   r    	<genexpr>   s
    
z%can_iup_in_between.<locals>.<genexpr>)r!   allr   )r"   r   r&   r	   r>   Zinterpr   rB   r    can_iup_in_between   s   ,rE   )cjdjlcjldjncjndjforceforcedc                 C   s  t | t |ks
J t | }t }tt | d ddD ]}| |d  ||d  }}| | || }}	| || d  ||| d  }
}dD ]}|	| }|| }|| }|| }|| }|
| }||kro||}}||}}n
||}}||}}d}||krt|| |krt||krd}na||  kr|krn nt||| |  krt||| ksn d}n=||kr||k rt||krt|| |kr|| |k ||k krd}nt||krt|| |kr||| k ||k krd}|r||  qqFq|S )a  The forced set is a conservative set of points on the contour that must be encoded
    explicitly (ie. cannot be interpolated).  Calculating this set allows for significantly
    speeding up the dynamic-programming, as well as resolve circularity in DP.

    The set is precise; that is, if an index is in the returned set, then there is no way
    that IUP can generate delta for that point, given `coords` and `deltas`.
    r   r)   r   FT)r   setranger@   minmaxadd)r"   r   r>   r
   rM   r&   ldlcr   cndncr	   rF   rG   rH   rI   rJ   rK   c1c2r   r   rL   r   r   r    _iup_contour_bound_forced_set   sf   "


*


rZ   )r&   r	   	best_costZbest_jcostrM   r>   lookbackc                 C   s   t | }|du r
|}t|t}ddi}ddi}td|D ]M}||d  d }	|	||< |d ||< |d |v r7qt|d t|| ddD ]$}
||
 d }||	k rbt| ||
||rb| ||< }	|
||< |
|v rh qiqDq||fS )a  Straightforward Dynamic-Programming.  For each index i, find least-costly encoding of
    points 0 to i where i is explicitly encoded.  We find this by considering all previous
    explicit points j and check whether interpolation can fill points between j and i.

    Note that solution always encodes last point explicitly.  Higher-level is responsible
    for removing that restriction.

    As major speedup, we stop looking further whenever we see a "forced" point.Nr)   r   r   r7   )r   rP   MAX_LOOKBACKrO   rQ   rE   )r"   r   rM   r>   r]   r
   costschainr&   r[   r	   r\   r   r   r    _iup_contour_optimize_dp!  s,   
rb   lkc                 C   s8   t | }||; }|s| S | || d | d||   S )z{Rotate list by k items forward.  Ie. item at position 0 will be
    at position k in returned list.  Negative k is allowed.N)r   )rc   rd   r
   r   r   r    	_rot_listV  s
    re   sr
   c                    s$    ;   s| S  fdd| D S )Nc                    s   h | ]}|   qS r   r   )r%   r'   rd   r
   r   r    	<setcomp>d  s    z_rot_set.<locals>.<setcomp>r   )rf   rd   r
   r   rg   r    _rot_set`  s   ri           c                    s  t }tfddD rdg| S |dkrS d tfddD r3gdg|d   S t|}|r|d t| }|dksIJ t|t||}t|||}t||\}}t |d }|durz| || }|dusm	d |ksJ |ffdd	t
|D t| S t || ||\}}d|d  }	t
|d t |d D ]7}
t |
}||
| krۈ||  || }||
| ks||
| kr||
 ||
|   }||	kr| }	q| ksJ | f fd
d	t
|D S )zFor contour with coordinates `coords`, optimize a set of delta
    values `deltas` within error `tolerance`.

    Returns delta vector that has most number of None items instead of
    the input delta.
    c                 3   s     | ]}t t|  kV  qd S r$   r?   )r%   r<   rB   r   r    rC   v  s    z'iup_contour_optimize.<locals>.<genexpr>Nr   r   c                 3   s    | ]} |kV  qd S r$   r   )r%   r   )d0r   r    rC     s    r)   c                    s    g | ]}|v r | nd qS r$   r   r%   r&   )r"   solutionr   r    r(          z(iup_contour_optimize.<locals>.<listcomp>c                    s    g | ]}| v r| nd qS r$   r   rl   )best_solr"   r   r    r(     rn   )r   rD   rZ   rQ   re   ri   rb   rN   rR   removerO   )r"   r   r>   r
   rM   rd   ra   r`   r&   r[   r/   r\   r   )ro   rk   r"   rm   r>   r    iup_contour_optimizeg  s\   

	




rq   c           	      C   s   t ||krt||r|d d ndd ksJ t|}||d |d |d |d g }g }d}|D ])}t| ||d  |||d  |}t||| d ksRJ || |d }q2|S )a  For the outline given in `coords`, with contour endpoints given
    in sorted increasing order in `ends`, optimize a set of delta
    values `deltas` within error `tolerance`.

    Returns delta vector that has most number of None items instead of
    the input delta.
    r)   r   r   r5   r6   r7   )r8   r   rq   r   )	r"   r   r4   r>   r
   r   r/   r2   r9   r   r   r    iup_delta_optimize  s   0 

rr   )r   )rj   )'r   compiledZCOMPILEDAttributeErrorImportErrorZfontTools.misctypingr   r   r   numbersr   r   Z_PointZ_DeltaZ_PointSegmentZ_DeltaSegmentZ_DeltaOrNoneZ_DeltaOrNoneSegmentZ
_Endpointsr_   Zcfunclocalsintdoubler!   r3   r:   inlinereturnsrE   rN   rZ   rb   listre   ri   rq   rr   r   r   r   r    <module>   s   
,4
	Q,

i