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from typing import Any, Dict, Optional, Union |
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from warnings import warn |
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from .api import from_bytes |
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from .constant import CHARDET_CORRESPONDENCE |
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def detect( |
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byte_str: bytes, should_rename_legacy: bool = False, **kwargs: Any |
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) -> Dict[str, Optional[Union[str, float]]]: |
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""" |
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chardet legacy method |
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Detect the encoding of the given byte string. It should be mostly backward-compatible. |
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Encoding name will match Chardet own writing whenever possible. (Not on encoding name unsupported by it) |
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This function is deprecated and should be used to migrate your project easily, consult the documentation for |
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further information. Not planned for removal. |
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:param byte_str: The byte sequence to examine. |
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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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""" |
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if len(kwargs): |
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warn( |
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f"charset-normalizer disregard arguments '{','.join(list(kwargs.keys()))}' in legacy function detect()" |
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) |
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if not isinstance(byte_str, (bytearray, bytes)): |
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raise TypeError( |
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"Expected object of type bytes or bytearray, got: " |
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"{0}".format(type(byte_str)) |
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) |
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if isinstance(byte_str, bytearray): |
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byte_str = bytes(byte_str) |
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r = from_bytes(byte_str).best() |
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encoding = r.encoding if r is not None else None |
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language = r.language if r is not None and r.language != "Unknown" else "" |
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confidence = 1.0 - r.chaos if r is not None else None |
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if r is not None and encoding == "utf_8" and r.bom: |
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encoding += "_sig" |
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if should_rename_legacy is False and encoding in CHARDET_CORRESPONDENCE: |
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encoding = CHARDET_CORRESPONDENCE[encoding] |
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return { |
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"encoding": encoding, |
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"language": language, |
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"confidence": confidence, |
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} |
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