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Kodi/Lenovo/addons/script.module.chardet/lib/chardet/__init__.py
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115
Kodi/Lenovo/addons/script.module.chardet/lib/chardet/__init__.py
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######################## BEGIN LICENSE BLOCK ########################
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# This library is free software; you can redistribute it and/or
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# modify it under the terms of the GNU Lesser General Public
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# License as published by the Free Software Foundation; either
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# version 2.1 of the License, or (at your option) any later version.
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#
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# This library is distributed in the hope that it will be useful,
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# but WITHOUT ANY WARRANTY; without even the implied warranty of
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# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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# Lesser General Public License for more details.
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#
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# You should have received a copy of the GNU Lesser General Public
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# License along with this library; if not, write to the Free Software
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# Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA
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# 02110-1301 USA
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######################### END LICENSE BLOCK #########################
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from typing import List, Union
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from .charsetgroupprober import CharSetGroupProber
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from .charsetprober import CharSetProber
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from .enums import InputState
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from .resultdict import ResultDict
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from .universaldetector import UniversalDetector
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from .version import VERSION, __version__
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__all__ = ["UniversalDetector", "detect", "detect_all", "__version__", "VERSION"]
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def detect(
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byte_str: Union[bytes, bytearray], should_rename_legacy: bool = False
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) -> ResultDict:
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"""
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Detect the encoding of the given byte string.
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:param byte_str: The byte sequence to examine.
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:type byte_str: ``bytes`` or ``bytearray``
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:param should_rename_legacy: Should we rename legacy encodings
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to their more modern equivalents?
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:type should_rename_legacy: ``bool``
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"""
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if not isinstance(byte_str, bytearray):
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if not isinstance(byte_str, bytes):
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raise TypeError(
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f"Expected object of type bytes or bytearray, got: {type(byte_str)}"
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)
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byte_str = bytearray(byte_str)
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detector = UniversalDetector(should_rename_legacy=should_rename_legacy)
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detector.feed(byte_str)
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return detector.close()
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def detect_all(
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byte_str: Union[bytes, bytearray],
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ignore_threshold: bool = False,
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should_rename_legacy: bool = False,
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) -> List[ResultDict]:
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"""
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Detect all the possible encodings of the given byte string.
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:param byte_str: The byte sequence to examine.
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:type byte_str: ``bytes`` or ``bytearray``
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:param ignore_threshold: Include encodings that are below
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``UniversalDetector.MINIMUM_THRESHOLD``
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in results.
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:type ignore_threshold: ``bool``
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:param should_rename_legacy: Should we rename legacy encodings
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to their more modern equivalents?
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:type should_rename_legacy: ``bool``
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"""
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if not isinstance(byte_str, bytearray):
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if not isinstance(byte_str, bytes):
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raise TypeError(
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f"Expected object of type bytes or bytearray, got: {type(byte_str)}"
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)
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byte_str = bytearray(byte_str)
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detector = UniversalDetector(should_rename_legacy=should_rename_legacy)
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detector.feed(byte_str)
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detector.close()
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if detector.input_state == InputState.HIGH_BYTE:
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results: List[ResultDict] = []
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probers: List[CharSetProber] = []
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for prober in detector.charset_probers:
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if isinstance(prober, CharSetGroupProber):
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probers.extend(p for p in prober.probers)
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else:
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probers.append(prober)
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for prober in probers:
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if ignore_threshold or prober.get_confidence() > detector.MINIMUM_THRESHOLD:
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charset_name = prober.charset_name or ""
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lower_charset_name = charset_name.lower()
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# Use Windows encoding name instead of ISO-8859 if we saw any
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# extra Windows-specific bytes
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if lower_charset_name.startswith("iso-8859") and detector.has_win_bytes:
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charset_name = detector.ISO_WIN_MAP.get(
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lower_charset_name, charset_name
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)
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# Rename legacy encodings with superset encodings if asked
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if should_rename_legacy:
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charset_name = detector.LEGACY_MAP.get(
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charset_name.lower(), charset_name
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)
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results.append(
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{
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"encoding": charset_name,
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"confidence": prober.get_confidence(),
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"language": prober.language,
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}
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)
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if len(results) > 0:
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return sorted(results, key=lambda result: -result["confidence"])
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return [detector.result]
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