feat: referentiel projets dynamique + validation nommage by design
Durcit la convention de nommage des projets (dérive constatée : 'Sliding Automation', 'code_versioning'... au lieu des formes canoniques). - trilium_api.py : projets_canoniques() lit le référentiel = valeurs du label projet sur les notes de type=projet (source unique, pas de constante en dur). Note-projet CodeVersioning créée (manquait). - mcp_server.py : _valider_projet() branché dans les 6 tools de création (add_decision/history/backlog, new_conversation, create_entite, add_skill). Refuse un projet non canonique (suggestion si faute) ou inconnu (renvoi au processus de création de projet). Ne verrouille pas si référentiel illisible. - lint_audit.py : VAL-nommage aligné sur le référentiel (attrape casse, espace ET snake_case ; l'ancien 'contient un espace' ratait code_versioning). - Données : 79 notes ré-étiquetées vers les 3 formes canoniques. Quality by design : l'erreur de nommage devient impossible à l'écriture, le Lint n'est plus que le filet de sécurité.
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#!/usr/bin/env python
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# coding:utf-8
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# Author: mozman
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# Purpose: svg util functions and classes
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# Created: 08.09.2010
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# Copyright (C) 2010, Manfred Moitzi
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# License: MIT License
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"""
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.. autofunction:: rgb
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.. autofunction:: iterflatlist
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.. autofunction:: strlist
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.. autofunction:: get_unit
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.. autofunction:: split_coordinate
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.. autofunction:: split_angle
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.. autofunction:: rect_top_left_corner
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.. autofunction:: pretty_xml
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"""
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import base64
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from pathlib import Path
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from svgwrite.data import pattern
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def is_string(value):
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return isinstance(value, str)
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def rgb(r=0, g=0, b=0, mode='RGB'):
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"""
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Convert **r**, **g**, **b** values to a `string`.
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:param r: red part
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:param g: green part
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:param b: blue part
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:param string mode: ``'RGB | %'``
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:rtype: string
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========= =============================================================
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mode Description
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========= =============================================================
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``'RGB'`` returns a rgb-string format: ``'rgb(r, g, b)'``
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``'%'`` returns percent-values as rgb-string format: ``'rgb(r%, g%, b%)'``
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========= =============================================================
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"""
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def percent(value):
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value = float(value)
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if value < 0:
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value = 0
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if value > 100:
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value = 100
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return value
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if mode.upper() == 'RGB':
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return "rgb(%d,%d,%d)" % (int(r) & 255, int(g) & 255, int(b) & 255)
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elif mode == "%":
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# see http://www.w3.org/TR/SVG11/types.html#DataTypeColor
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# percentage is an 'number' value
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return "rgb(%d%%,%d%%,%d%%)" % (percent(r), percent(g), percent(b))
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else:
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raise ValueError("Invalid mode '%s'" % mode)
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def iterflatlist(values):
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"""
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Flatten nested *values*, returns an `iterator`.
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"""
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for element in values:
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if hasattr(element, "__iter__") and not is_string(element):
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for item in iterflatlist(element):
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yield item
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else:
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yield element
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def strlist(values, seperator=","):
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"""
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Concatenate **values** with **sepertator**, `None` values will be excluded.
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:param values: `iterable` object
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:returns: `string`
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"""
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if is_string(values):
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return values
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else:
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return seperator.join([str(value) for value in iterflatlist(values) if value is not None])
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def get_unit(coordinate):
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"""
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Get the `unit` identifier of **coordinate**, if **coordinate** has a valid
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`unit` identifier appended, else returns `None`.
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"""
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if isinstance(coordinate, (int, float)):
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return None
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result = pattern.coordinate.match(coordinate)
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if result:
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return result.group(3)
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else:
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raise ValueError("Invalid format: '%s'" % coordinate)
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def split_coordinate(coordinate):
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"""
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Split coordinate into `<number>` and 'unit` identifier.
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:returns: <2-tuple> (number, unit-identifier) or (number, None) if no unit-identifier
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is present or coordinate is an int or float.
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"""
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if isinstance(coordinate, (int, float)):
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return (float(coordinate), None)
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result = pattern.coordinate.match(coordinate)
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if result:
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return (float(result.group(1)), result.group(3))
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else:
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raise ValueError("Invalid format: '%s'" % coordinate)
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def split_angle(angle):
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"""
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Split angle into `<number>` and `<angle>` identifier.
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:returns: <2-tuple> (number, angle-identifier) or (number, None) if no angle-identifier
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is present or angle is an int or float.
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"""
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if isinstance(angle, (int, float)):
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return (float(angle), None)
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result = pattern.angle.match(angle)
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if result:
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return (float(result.group(1)), result.group(3))
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else:
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raise ValueError("Invalid format: '%s'" % angle)
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def rect_top_left_corner(insert, size, pos='top-left'):
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"""
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Calculate top-left corner of a rectangle.
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**insert** and **size** must have the same units.
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:param 2-tuple insert: insert point
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:param 2-tuple size: (width, height)
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:param string pos: insert position ``'vert-horiz'``
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:return: ``'top-left'`` corner of the rect
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:rtype: 2-tuple
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========== ==============================
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pos valid values
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========== ==============================
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**vert** ``'top | middle | bottom'``
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**horiz** ``'left'|'center'|'right'``
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========== ==============================
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"""
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vert, horiz = pos.lower().split('-')
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x, xunit = split_coordinate(insert[0])
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y, yunit = split_coordinate(insert[1])
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width, wunit = split_coordinate(size[0])
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height, hunit = split_coordinate(size[1])
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if xunit != wunit:
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raise ValueError("x-coordinate and width has to have the same unit")
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if yunit != hunit:
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raise ValueError("y-coordinate and height has to have the same unit")
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if horiz == 'center':
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x = x - width / 2.
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elif horiz == 'right':
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x = x - width
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elif horiz != 'left':
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raise ValueError("Invalid horizontal position: '%s'" % horiz)
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if vert == 'middle':
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y = y - height / 2.
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elif vert == 'bottom':
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y = y - height
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elif vert != 'top':
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raise ValueError("Invalid vertical position: '%s'" % vert)
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if xunit:
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x = "%s%s" % (x, xunit)
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if yunit:
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y = "%s%s" % (y, yunit)
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return x, y
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class AutoID(object):
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_nextid = 1
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def __init__(self, value=None):
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self._set_value(value)
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@classmethod
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def _set_value(cls, value=None):
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if value is not None:
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cls._nextid = value
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@classmethod
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def next_id(cls, value=None):
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cls._set_value(value)
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retval = "id%d" % cls._nextid
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cls._nextid += 1
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return retval
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def pretty_xml(xml_string, indent=2):
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"""
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Create human readable XML string.
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:param xml_string: input xml string without line breaks and indentation
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:indent int: how much to indent, by default 2 spaces
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:return: xml_string with linebreaks and indentation
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"""
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import xml.dom.minidom as minidom
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# check for empty string, len check avoids unnecessary string manipulation with large XML strings
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if len(xml_string) < 20 and xml_string.strip() == "":
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return ""
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xml_tree = minidom.parseString(xml_string)
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lines = xml_tree.toprettyxml(indent=' ' * indent).split('\n')
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# remove 1. line = xml declaration
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return '\n'.join(lines[1:])
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FONT_MIMETYPES = {
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'ttf': "application/x-font-ttf",
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'otf': "application/x-font-opentype",
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'woff': "application/font-woff",
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'woff2': "application/font-woff2",
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'eot': "application/vnd.ms-fontobject",
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'sfnt': "application/font-sfnt",
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}
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def font_mimetype(name):
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return FONT_MIMETYPES[Path(name.lower()).suffix[1:]]
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def base64_data(data, mimetype):
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data = base64.b64encode(data).decode()
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return "data:{mimetype};charset=utf-8;base64,{data}".format(mimetype=mimetype, data=data)
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def find_first_url(text):
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import re
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result = re.findall(r"url\((.*?)\)", text)
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if result:
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return result[0]
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else:
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return None
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