mirror of
https://github.com/morpheus65535/bazarr
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162 lines
5.8 KiB
Python
162 lines
5.8 KiB
Python
# -*- coding: utf-8 -*-
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"""
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Heuristics to determine whether re-encoding text is actually making it
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more reasonable.
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"""
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from __future__ import unicode_literals
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import re
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import unicodedata
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from ftfy.chardata import chars_to_classes
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# The following regex uses the mapping of character classes to ASCII
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# characters defined in chardata.py and build_data.py:
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#
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# L = Latin capital letter
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# l = Latin lowercase letter
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# A = Non-latin capital or title-case letter
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# a = Non-latin lowercase letter
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# C = Non-cased letter (Lo)
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# X = Control character (Cc)
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# m = Letter modifier (Lm)
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# M = Mark (Mc, Me, Mn)
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# N = Miscellaneous numbers (No)
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# 1 = Math symbol (Sm) or currency symbol (Sc)
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# 2 = Symbol modifier (Sk)
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# 3 = Other symbol (So)
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# S = UTF-16 surrogate
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# _ = Unassigned character
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# = Whitespace
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# o = Other
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def _make_weirdness_regex():
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"""
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Creates a list of regexes that match 'weird' character sequences.
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The more matches there are, the weirder the text is.
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"""
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groups = []
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# Match lowercase letters that are followed by non-ASCII uppercase letters
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groups.append('lA')
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# Match diacritical marks, except when they modify a non-cased letter or
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# another mark.
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#
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# You wouldn't put a diacritical mark on a digit or a space, for example.
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# You might put it on a Latin letter, but in that case there will almost
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# always be a pre-composed version, and we normalize to pre-composed
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# versions first. The cases that can't be pre-composed tend to be in
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# large scripts without case, which are in class C.
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groups.append('[^CM]M')
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# Match non-Latin characters adjacent to Latin characters.
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#
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# This is a simplification from ftfy version 2, which compared all
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# adjacent scripts. However, the ambiguities we need to resolve come from
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# encodings designed to represent Latin characters.
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groups.append('[Ll][AaC]')
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groups.append('[AaC][Ll]')
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# Match IPA letters next to capital letters.
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#
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# IPA uses lowercase letters only. Some accented capital letters next to
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# punctuation can accidentally decode as IPA letters, and an IPA letter
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# appearing next to a capital letter is a good sign that this happened.
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groups.append('[LA]i')
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groups.append('i[LA]')
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# Match non-combining diacritics. We've already set aside the common ones
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# like ^ (the CIRCUMFLEX ACCENT, repurposed as a caret, exponent sign,
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# or happy eye) and assigned them to category 'o'. The remaining ones,
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# like the diaeresis (¨), are pretty weird to see on their own instead
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# of combined with a letter.
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groups.append('2')
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# Match C1 control characters, which are almost always the result of
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# decoding Latin-1 that was meant to be Windows-1252.
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groups.append('X')
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# Match private use and unassigned characters.
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groups.append('P')
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groups.append('_')
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# Match adjacent characters from any different pair of these categories:
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# - Modifier marks (M)
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# - Letter modifiers (m)
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# - Miscellaneous numbers (N)
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# - Symbols (1 or 3, because 2 is already weird on its own)
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exclusive_categories = 'MmN13'
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for cat1 in exclusive_categories:
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others_range = ''.join(c for c in exclusive_categories if c != cat1)
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groups.append('{cat1}[{others_range}]'.format(
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cat1=cat1, others_range=others_range
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))
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regex = '|'.join('({0})'.format(group) for group in groups)
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return re.compile(regex)
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WEIRDNESS_RE = _make_weirdness_regex()
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# These characters appear in mojibake but also appear commonly on their own.
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# We have a slight preference to leave them alone.
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COMMON_SYMBOL_RE = re.compile(
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'['
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'\N{HORIZONTAL ELLIPSIS}\N{EM DASH}\N{EN DASH}'
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'\N{LEFT SINGLE QUOTATION MARK}\N{LEFT DOUBLE QUOTATION MARK}'
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'\N{RIGHT SINGLE QUOTATION MARK}\N{RIGHT DOUBLE QUOTATION MARK}'
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'\N{INVERTED EXCLAMATION MARK}\N{INVERTED QUESTION MARK}\N{DEGREE SIGN}'
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'\N{TRADE MARK SIGN}'
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'\N{REGISTERED SIGN}'
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'\N{SINGLE LEFT-POINTING ANGLE QUOTATION MARK}'
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'\N{SINGLE RIGHT-POINTING ANGLE QUOTATION MARK}'
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'\N{LEFT-POINTING DOUBLE ANGLE QUOTATION MARK}'
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'\N{RIGHT-POINTING DOUBLE ANGLE QUOTATION MARK}'
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'\N{NO-BREAK SPACE}'
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'\N{ACUTE ACCENT}\N{MULTIPLICATION SIGN}\N{LATIN SMALL LETTER SHARP S}'
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'\ufeff' # The byte-order mark, whose encoding '' looks common
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']'
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)
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def sequence_weirdness(text):
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"""
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Determine how often a text has unexpected characters or sequences of
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characters. This metric is used to disambiguate when text should be
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re-decoded or left as is.
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We start by normalizing text in NFC form, so that penalties for
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diacritical marks don't apply to characters that know what to do with
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them.
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The following things are deemed weird:
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- Lowercase letters followed by non-ASCII uppercase letters
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- Non-Latin characters next to Latin characters
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- Un-combined diacritical marks, unless they're stacking on non-alphabetic
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characters (in languages that do that kind of thing a lot) or other
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marks
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- C1 control characters
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- Adjacent symbols from any different pair of these categories:
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- Modifier marks
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- Letter modifiers
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- Non-digit numbers
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- Symbols (including math and currency)
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The return value is the number of instances of weirdness.
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"""
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text2 = unicodedata.normalize('NFC', text)
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weirdness = len(WEIRDNESS_RE.findall(chars_to_classes(text2)))
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punct_discount = len(COMMON_SYMBOL_RE.findall(text2))
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return weirdness * 2 - punct_discount
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def text_cost(text):
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"""
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An overall cost function for text. Weirder is worse, but all else being
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equal, shorter strings are better.
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The overall cost is measured as the "weirdness" (see
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:func:`sequence_weirdness`) plus the length.
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"""
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return sequence_weirdness(text) + len(text)
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