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travel-assistant-bot
/
.venv
/
Lib
/
site-packages
/
pip
/
_vendor
/
distro
RSK World
travel-assistant-bot
Travel Assistant Bot - Python + Flask + OpenAI API + Travel Bot + Flight Search + Hotel Booking + Weather
distro
  • __pycache__
  • __init__.py981 B
  • __main__.py64 B
  • distro.py48.3 KB
  • py.typed0 B
_ssl_constants.pyfilesize.pyansi.py
.venv/Lib/site-packages/pip/_vendor/truststore/_ssl_constants.py
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import ssl
import sys
import typing

# Hold on to the original class so we can create it consistently
# even if we inject our own SSLContext into the ssl module.
_original_SSLContext = ssl.SSLContext
_original_super_SSLContext = super(_original_SSLContext, _original_SSLContext)

# CPython is known to be good, but non-CPython implementations
# may implement SSLContext differently so to be safe we don't
# subclass the SSLContext.

# This is returned by truststore.SSLContext.__class__()
_truststore_SSLContext_dunder_class: typing.Optional[type]

# This value is the superclass of truststore.SSLContext.
_truststore_SSLContext_super_class: type

if sys.implementation.name == "cpython":
    _truststore_SSLContext_super_class = _original_SSLContext
    _truststore_SSLContext_dunder_class = None
else:
    _truststore_SSLContext_super_class = object
    _truststore_SSLContext_dunder_class = _original_SSLContext


def _set_ssl_context_verify_mode(
    ssl_context: ssl.SSLContext, verify_mode: ssl.VerifyMode
) -> None:
    _original_super_SSLContext.verify_mode.__set__(ssl_context, verify_mode)  # type: ignore[attr-defined]
32 lines•1.1 KB
python
.venv/Lib/site-packages/pip/_vendor/rich/filesize.py
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# coding: utf-8
"""Functions for reporting filesizes. Borrowed from https://github.com/PyFilesystem/pyfilesystem2

The functions declared in this module should cover the different
use cases needed to generate a string representation of a file size
using several different units. Since there are many standards regarding
file size units, three different functions have been implemented.

See Also:
    * `Wikipedia: Binary prefix <https://en.wikipedia.org/wiki/Binary_prefix>`_

"""

__all__ = ["decimal"]

from typing import Iterable, List, Optional, Tuple


def _to_str(
    size: int,
    suffixes: Iterable[str],
    base: int,
    *,
    precision: Optional[int] = 1,
    separator: Optional[str] = " ",
) -> str:
    if size == 1:
        return "1 byte"
    elif size < base:
        return "{:,} bytes".format(size)

    for i, suffix in enumerate(suffixes, 2):  # noqa: B007
        unit = base**i
        if size < unit:
            break
    return "{:,.{precision}f}{separator}{}".format(
        (base * size / unit),
        suffix,
        precision=precision,
        separator=separator,
    )


def pick_unit_and_suffix(size: int, suffixes: List[str], base: int) -> Tuple[int, str]:
    """Pick a suffix and base for the given size."""
    for i, suffix in enumerate(suffixes):
        unit = base**i
        if size < unit * base:
            break
    return unit, suffix


def decimal(
    size: int,
    *,
    precision: Optional[int] = 1,
    separator: Optional[str] = " ",
) -> str:
    """Convert a filesize in to a string (powers of 1000, SI prefixes).

    In this convention, ``1000 B = 1 kB``.

    This is typically the format used to advertise the storage
    capacity of USB flash drives and the like (*256 MB* meaning
    actually a storage capacity of more than *256 000 000 B*),
    or used by **Mac OS X** since v10.6 to report file sizes.

    Arguments:
        int (size): A file size.
        int (precision): The number of decimal places to include (default = 1).
        str (separator): The string to separate the value from the units (default = " ").

    Returns:
        `str`: A string containing a abbreviated file size and units.

    Example:
        >>> filesize.decimal(30000)
        '30.0 kB'
        >>> filesize.decimal(30000, precision=2, separator="")
        '30.00kB'

    """
    return _to_str(
        size,
        ("kB", "MB", "GB", "TB", "PB", "EB", "ZB", "YB"),
        1000,
        precision=precision,
        separator=separator,
    )
90 lines•2.4 KB
python
.venv/Lib/site-packages/pip/_vendor/rich/ansi.py
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import re
import sys
from contextlib import suppress
from typing import Iterable, NamedTuple, Optional

from .color import Color
from .style import Style
from .text import Text

re_ansi = re.compile(
    r"""
(?:\x1b\](.*?)\x1b\\)|
(?:\x1b([(@-Z\\-_]|\[[0-?]*[ -/]*[@-~]))
""",
    re.VERBOSE,
)


class _AnsiToken(NamedTuple):
    """Result of ansi tokenized string."""

    plain: str = ""
    sgr: Optional[str] = ""
    osc: Optional[str] = ""


def _ansi_tokenize(ansi_text: str) -> Iterable[_AnsiToken]:
    """Tokenize a string in to plain text and ANSI codes.

    Args:
        ansi_text (str): A String containing ANSI codes.

    Yields:
        AnsiToken: A named tuple of (plain, sgr, osc)
    """

    position = 0
    sgr: Optional[str]
    osc: Optional[str]
    for match in re_ansi.finditer(ansi_text):
        start, end = match.span(0)
        osc, sgr = match.groups()
        if start > position:
            yield _AnsiToken(ansi_text[position:start])
        if sgr:
            if sgr == "(":
                position = end + 1
                continue
            if sgr.endswith("m"):
                yield _AnsiToken("", sgr[1:-1], osc)
        else:
            yield _AnsiToken("", sgr, osc)
        position = end
    if position < len(ansi_text):
        yield _AnsiToken(ansi_text[position:])


SGR_STYLE_MAP = {
    1: "bold",
    2: "dim",
    3: "italic",
    4: "underline",
    5: "blink",
    6: "blink2",
    7: "reverse",
    8: "conceal",
    9: "strike",
    21: "underline2",
    22: "not dim not bold",
    23: "not italic",
    24: "not underline",
    25: "not blink",
    26: "not blink2",
    27: "not reverse",
    28: "not conceal",
    29: "not strike",
    30: "color(0)",
    31: "color(1)",
    32: "color(2)",
    33: "color(3)",
    34: "color(4)",
    35: "color(5)",
    36: "color(6)",
    37: "color(7)",
    39: "default",
    40: "on color(0)",
    41: "on color(1)",
    42: "on color(2)",
    43: "on color(3)",
    44: "on color(4)",
    45: "on color(5)",
    46: "on color(6)",
    47: "on color(7)",
    49: "on default",
    51: "frame",
    52: "encircle",
    53: "overline",
    54: "not frame not encircle",
    55: "not overline",
    90: "color(8)",
    91: "color(9)",
    92: "color(10)",
    93: "color(11)",
    94: "color(12)",
    95: "color(13)",
    96: "color(14)",
    97: "color(15)",
    100: "on color(8)",
    101: "on color(9)",
    102: "on color(10)",
    103: "on color(11)",
    104: "on color(12)",
    105: "on color(13)",
    106: "on color(14)",
    107: "on color(15)",
}


class AnsiDecoder:
    """Translate ANSI code in to styled Text."""

    def __init__(self) -> None:
        self.style = Style.null()

    def decode(self, terminal_text: str) -> Iterable[Text]:
        """Decode ANSI codes in an iterable of lines.

        Args:
            lines (Iterable[str]): An iterable of lines of terminal output.

        Yields:
            Text: Marked up Text.
        """
        for line in terminal_text.splitlines():
            yield self.decode_line(line)

    def decode_line(self, line: str) -> Text:
        """Decode a line containing ansi codes.

        Args:
            line (str): A line of terminal output.

        Returns:
            Text: A Text instance marked up according to ansi codes.
        """
        from_ansi = Color.from_ansi
        from_rgb = Color.from_rgb
        _Style = Style
        text = Text()
        append = text.append
        line = line.rsplit("\r", 1)[-1]
        for plain_text, sgr, osc in _ansi_tokenize(line):
            if plain_text:
                append(plain_text, self.style or None)
            elif osc is not None:
                if osc.startswith("8;"):
                    _params, semicolon, link = osc[2:].partition(";")
                    if semicolon:
                        self.style = self.style.update_link(link or None)
            elif sgr is not None:
                # Translate in to semi-colon separated codes
                # Ignore invalid codes, because we want to be lenient
                codes = [
                    min(255, int(_code) if _code else 0)
                    for _code in sgr.split(";")
                    if _code.isdigit() or _code == ""
                ]
                iter_codes = iter(codes)
                for code in iter_codes:
                    if code == 0:
                        # reset
                        self.style = _Style.null()
                    elif code in SGR_STYLE_MAP:
                        # styles
                        self.style += _Style.parse(SGR_STYLE_MAP[code])
                    elif code == 38:
                        #  Foreground
                        with suppress(StopIteration):
                            color_type = next(iter_codes)
                            if color_type == 5:
                                self.style += _Style.from_color(
                                    from_ansi(next(iter_codes))
                                )
                            elif color_type == 2:
                                self.style += _Style.from_color(
                                    from_rgb(
                                        next(iter_codes),
                                        next(iter_codes),
                                        next(iter_codes),
                                    )
                                )
                    elif code == 48:
                        # Background
                        with suppress(StopIteration):
                            color_type = next(iter_codes)
                            if color_type == 5:
                                self.style += _Style.from_color(
                                    None, from_ansi(next(iter_codes))
                                )
                            elif color_type == 2:
                                self.style += _Style.from_color(
                                    None,
                                    from_rgb(
                                        next(iter_codes),
                                        next(iter_codes),
                                        next(iter_codes),
                                    ),
                                )

        return text


if sys.platform != "win32" and __name__ == "__main__":  # pragma: no cover
    import io
    import os
    import pty
    import sys

    decoder = AnsiDecoder()

    stdout = io.BytesIO()

    def read(fd: int) -> bytes:
        data = os.read(fd, 1024)
        stdout.write(data)
        return data

    pty.spawn(sys.argv[1:], read)

    from .console import Console

    console = Console(record=True)

    stdout_result = stdout.getvalue().decode("utf-8")
    print(stdout_result)

    for line in decoder.decode(stdout_result):
        console.print(line)

    console.save_html("stdout.html")
241 lines•6.7 KB
python
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Founder: Molla Samser
Designer & Tester: Rima Khatun

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