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######################## BEGIN LICENSE BLOCK ########################
#
# Contributor(s):
#   Jason Zavaglia
#
# This library is free software; you can redistribute it and/or
# modify it under the terms of the GNU Lesser General Public
# License as published by the Free Software Foundation; either
# version 2.1 of the License, or (at your option) any later version.
#
# This library is distributed in the hope that it will be useful,
# but WITHOUT ANY WARRANTY; without even the implied warranty of
# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
# Lesser General Public License for more details.
#
# You should have received a copy of the GNU Lesser General Public
# License along with this library; if not, write to the Free Software
# Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA
# 02110-1301  USA
######################### END LICENSE BLOCK #########################
from typing import List, Union

from .charsetprober import CharSetProber
from .enums import ProbingState


class UTF1632Prober(CharSetProber):
    """
    This class simply looks for occurrences of zero bytes, and infers
    whether the file is UTF16 or UTF32 (low-endian or big-endian)
    For instance, files looking like ( \0 \0 \0 [nonzero] )+
    have a good probability to be UTF32BE.  Files looking like ( \0 [nonzero] )+
    may be guessed to be UTF16BE, and inversely for little-endian varieties.
    """

    # how many logical characters to scan before feeling confident of prediction
    MIN_CHARS_FOR_DETECTION = 20
    # a fixed constant ratio of expected zeros or non-zeros in modulo-position.
    EXPECTED_RATIO = 0.94

    def __init__(self) -> None:
        super().__init__()
        self.position = 0
        self.zeros_at_mod = [0] * 4
        self.nonzeros_at_mod = [0] * 4
        self._state = ProbingState.DETECTING
        self.quad = [0, 0, 0, 0]
        self.invalid_utf16be = False
        self.invalid_utf16le = False
        self.invalid_utf32be = False
        self.invalid_utf32le = False
        self.first_half_surrogate_pair_detected_16be = False
        self.first_half_surrogate_pair_detected_16le = False
        self.reset()

    def reset(self) -> None:
        super().reset()
        self.position = 0
        self.zeros_at_mod = [0] * 4
        self.nonzeros_at_mod = [0] * 4
        self._state = ProbingState.DETECTING
        self.invalid_utf16be = False
        self.invalid_utf16le = False
        self.invalid_utf32be = False
        self.invalid_utf32le = False
        self.first_half_surrogate_pair_detected_16be = False
        self.first_half_surrogate_pair_detected_16le = False
        self.quad = [0, 0, 0, 0]

    @property
    def charset_name(self) -> str:
        if self.is_likely_utf32be():
            return "utf-32be"
        if self.is_likely_utf32le():
            return "utf-32le"
        if self.is_likely_utf16be():
            return "utf-16be"
        if self.is_likely_utf16le():
            return "utf-16le"
        # default to something valid
        return "utf-16"

    @property
    def language(self) -> str:
        return ""

    def approx_32bit_chars(self) -> float:
        return max(1.0, self.position / 4.0)

    def approx_16bit_chars(self) -> float:
        return max(1.0, self.position / 2.0)

    def is_likely_utf32be(self) -> bool:
        approx_chars = self.approx_32bit_chars()
        return approx_chars >= self.MIN_CHARS_FOR_DETECTION and (
            self.zeros_at_mod[0] / approx_chars > self.EXPECTED_RATIO
            and self.zeros_at_mod[1] / approx_chars > self.EXPECTED_RATIO
            and self.zeros_at_mod[2] / approx_chars > self.EXPECTED_RATIO
            and self.nonzeros_at_mod[3] / approx_chars > self.EXPECTED_RATIO
            and not self.invalid_utf32be
        )

    def is_likely_utf32le(self) -> bool:
        approx_chars = self.approx_32bit_chars()
        return approx_chars >= self.MIN_CHARS_FOR_DETECTION and (
            self.nonzeros_at_mod[0] / approx_chars > self.EXPECTED_RATIO
            and self.zeros_at_mod[1] / approx_chars > self.EXPECTED_RATIO
            and self.zeros_at_mod[2] / approx_chars > self.EXPECTED_RATIO
            and self.zeros_at_mod[3] / approx_chars > self.EXPECTED_RATIO
            and not self.invalid_utf32le
        )

    def is_likely_utf16be(self) -> bool:
        approx_chars = self.approx_16bit_chars()
        return approx_chars >= self.MIN_CHARS_FOR_DETECTION and (
            (self.nonzeros_at_mod[1] + self.nonzeros_at_mod[3]) / approx_chars
            > self.EXPECTED_RATIO
            and (self.zeros_at_mod[0] + self.zeros_at_mod[2]) / approx_chars
            > self.EXPECTED_RATIO
            and not self.invalid_utf16be
        )

    def is_likely_utf16le(self) -> bool:
        approx_chars = self.approx_16bit_chars()
        return approx_chars >= self.MIN_CHARS_FOR_DETECTION and (
            (self.nonzeros_at_mod[0] + self.nonzeros_at_mod[2]) / approx_chars
            > self.EXPECTED_RATIO
            and (self.zeros_at_mod[1] + self.zeros_at_mod[3]) / approx_chars
            > self.EXPECTED_RATIO
            and not self.invalid_utf16le
        )

    def validate_utf32_characters(self, quad: List[int]) -> None:
        """
        Validate if the quad of bytes is valid UTF-32.

        UTF-32 is valid in the range 0x00000000 - 0x0010FFFF
        excluding 0x0000D800 - 0x0000DFFF

        https://en.wikipedia.org/wiki/UTF-32
        """
        if (
            quad[0] != 0
            or quad[1] > 0x10
            or (quad[0] == 0 and quad[1] == 0 and 0xD8 <= quad[2] <= 0xDF)
        ):
            self.invalid_utf32be = True
        if (
            quad[3] != 0
            or quad[2] > 0x10
            or (quad[3] == 0 and quad[2] == 0 and 0xD8 <= quad[1] <= 0xDF)
        ):
            self.invalid_utf32le = True

    def validate_utf16_characters(self, pair: List[int]) -> None:
        """
        Validate if the pair of bytes is  valid UTF-16.

        UTF-16 is valid in the range 0x0000 - 0xFFFF excluding 0xD800 - 0xFFFF
        with an exception for surrogate pairs, which must be in the range
        0xD800-0xDBFF followed by 0xDC00-0xDFFF

        https://en.wikipedia.org/wiki/UTF-16
        """
        if not self.first_half_surrogate_pair_detected_16be:
            if 0xD8 <= pair[0] <= 0xDB:
                self.first_half_surrogate_pair_detected_16be = True
            elif 0xDC <= pair[0] <= 0xDF:
                self.invalid_utf16be = True
        else:
            if 0xDC <= pair[0] <= 0xDF:
                self.first_half_surrogate_pair_detected_16be = False
            else:
                self.invalid_utf16be = True

        if not self.first_half_surrogate_pair_detected_16le:
            if 0xD8 <= pair[1] <= 0xDB:
                self.first_half_surrogate_pair_detected_16le = True
            elif 0xDC <= pair[1] <= 0xDF:
                self.invalid_utf16le = True
        else:
            if 0xDC <= pair[1] <= 0xDF:
                self.first_half_surrogate_pair_detected_16le = False
            else:
                self.invalid_utf16le = True

    def feed(self, byte_str: Union[bytes, bytearray]) -> ProbingState:
        for c in byte_str:
            mod4 = self.position % 4
            self.quad[mod4] = c
            if mod4 == 3:
                self.validate_utf32_characters(self.quad)
                self.validate_utf16_characters(self.quad[0:2])
                self.validate_utf16_characters(self.quad[2:4])
            if c == 0:
                self.zeros_at_mod[mod4] += 1
            else:
                self.nonzeros_at_mod[mod4] += 1
            self.position += 1
        return self.state

    @property
    def state(self) -> ProbingState:
        if self._state in {ProbingState.NOT_ME, ProbingState.FOUND_IT}:
            # terminal, decided states
            return self._state
        if self.get_confidence() > 0.80:
            self._state = ProbingState.FOUND_IT
        elif self.position > 4 * 1024:
            # if we get to 4kb into the file, and we can't conclude it's UTF,
            # let's give up
            self._state = ProbingState.NOT_ME
        return self._state

    def get_confidence(self) -> float:
        return (
            0.85
            if (
                self.is_likely_utf16le()
                or self.is_likely_utf16be()
                or self.is_likely_utf32le()
                or self.is_likely_utf32be()
            )
            else 0.00
        )

Filemanager

Name Type Size Permission Actions
__pycache__ Folder 0755
cli Folder 0755
metadata Folder 0755
__init__.py File 4.68 KB 0644
__main__.py File 123 B 0644
big5freq.py File 30.54 KB 0644
big5prober.py File 1.72 KB 0644
chardistribution.py File 9.8 KB 0644
charsetgroupprober.py File 3.82 KB 0644
charsetprober.py File 5.29 KB 0644
codingstatemachine.py File 3.64 KB 0644
codingstatemachinedict.py File 542 B 0644
cp949prober.py File 1.82 KB 0644
enums.py File 1.64 KB 0644
escprober.py File 3.91 KB 0644
escsm.py File 11.89 KB 0644
eucjpprober.py File 3.84 KB 0644
euckrfreq.py File 13.25 KB 0644
euckrprober.py File 1.71 KB 0644
euctwfreq.py File 36.05 KB 0644
euctwprober.py File 1.71 KB 0644
gb2312freq.py File 20.25 KB 0644
gb2312prober.py File 1.72 KB 0644
hebrewprober.py File 14.2 KB 0644
jisfreq.py File 25.19 KB 0644
johabfreq.py File 41.5 KB 0644
johabprober.py File 1.71 KB 0644
jpcntx.py File 26.42 KB 0644
langbulgarianmodel.py File 102.1 KB 0644
langgreekmodel.py File 96.16 KB 0644
langhebrewmodel.py File 95.88 KB 0644
langhungarianmodel.py File 98.98 KB 0644
langrussianmodel.py File 125.02 KB 0644
langthaimodel.py File 100.35 KB 0644
langturkishmodel.py File 93.13 KB 0644
latin1prober.py File 5.25 KB 0644
macromanprober.py File 5.93 KB 0644
mbcharsetprober.py File 3.63 KB 0644
mbcsgroupprober.py File 2.08 KB 0644
mbcssm.py File 29.68 KB 0644
py.typed File 0 B 0644
resultdict.py File 402 B 0644
sbcharsetprober.py File 6.25 KB 0644
sbcsgroupprober.py File 4.04 KB 0644
sjisprober.py File 3.91 KB 0644
universaldetector.py File 14.5 KB 0644
utf1632prober.py File 8.31 KB 0644
utf8prober.py File 2.75 KB 0644
version.py File 244 B 0644
Filemanager