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travel-assistant-bot
/
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Lib
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site-packages
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pip
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req
RSK World
travel-assistant-bot
Travel Assistant Bot - Python + Flask + OpenAI API + Travel Bot + Flight Search + Hotel Booking + Weather
req
  • __pycache__
  • __init__.py2.6 KB
  • constructors.py18 KB
  • req_file.py18.3 KB
  • req_install.py34.9 KB
  • req_set.py2.8 KB
  • req_uninstall.py23.3 KB
theme.pycerts.py__init__.py_win32_console.pyscreen.pyreq_uninstall.py
.venv/Lib/site-packages/pip/_vendor/rich/theme.py
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import configparser
from typing import Dict, List, IO, Mapping, Optional

from .default_styles import DEFAULT_STYLES
from .style import Style, StyleType


class Theme:
    """A container for style information, used by :class:`~rich.console.Console`.

    Args:
        styles (Dict[str, Style], optional): A mapping of style names on to styles. Defaults to None for a theme with no styles.
        inherit (bool, optional): Inherit default styles. Defaults to True.
    """

    styles: Dict[str, Style]

    def __init__(
        self, styles: Optional[Mapping[str, StyleType]] = None, inherit: bool = True
    ):
        self.styles = DEFAULT_STYLES.copy() if inherit else {}
        if styles is not None:
            self.styles.update(
                {
                    name: style if isinstance(style, Style) else Style.parse(style)
                    for name, style in styles.items()
                }
            )

    @property
    def config(self) -> str:
        """Get contents of a config file for this theme."""
        config = "[styles]\n" + "\n".join(
            f"{name} = {style}" for name, style in sorted(self.styles.items())
        )
        return config

    @classmethod
    def from_file(
        cls, config_file: IO[str], source: Optional[str] = None, inherit: bool = True
    ) -> "Theme":
        """Load a theme from a text mode file.

        Args:
            config_file (IO[str]): An open conf file.
            source (str, optional): The filename of the open file. Defaults to None.
            inherit (bool, optional): Inherit default styles. Defaults to True.

        Returns:
            Theme: A New theme instance.
        """
        config = configparser.ConfigParser()
        config.read_file(config_file, source=source)
        styles = {name: Style.parse(value) for name, value in config.items("styles")}
        theme = Theme(styles, inherit=inherit)
        return theme

    @classmethod
    def read(
        cls, path: str, inherit: bool = True, encoding: Optional[str] = None
    ) -> "Theme":
        """Read a theme from a path.

        Args:
            path (str): Path to a config file readable by Python configparser module.
            inherit (bool, optional): Inherit default styles. Defaults to True.
            encoding (str, optional): Encoding of the config file. Defaults to None.

        Returns:
            Theme: A new theme instance.
        """
        with open(path, "rt", encoding=encoding) as config_file:
            return cls.from_file(config_file, source=path, inherit=inherit)


class ThemeStackError(Exception):
    """Base exception for errors related to the theme stack."""


class ThemeStack:
    """A stack of themes.

    Args:
        theme (Theme): A theme instance
    """

    def __init__(self, theme: Theme) -> None:
        self._entries: List[Dict[str, Style]] = [theme.styles]
        self.get = self._entries[-1].get

    def push_theme(self, theme: Theme, inherit: bool = True) -> None:
        """Push a theme on the top of the stack.

        Args:
            theme (Theme): A Theme instance.
            inherit (boolean, optional): Inherit styles from current top of stack.
        """
        styles: Dict[str, Style]
        styles = (
            {**self._entries[-1], **theme.styles} if inherit else theme.styles.copy()
        )
        self._entries.append(styles)
        self.get = self._entries[-1].get

    def pop_theme(self) -> None:
        """Pop (and discard) the top-most theme."""
        if len(self._entries) == 1:
            raise ThemeStackError("Unable to pop base theme")
        self._entries.pop()
        self.get = self._entries[-1].get


if __name__ == "__main__":  # pragma: no cover
    theme = Theme()
    print(theme.config)
116 lines•3.7 KB
python
.venv/Lib/site-packages/pip/_vendor/requests/certs.py
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#!/usr/bin/env python

"""
requests.certs
~~~~~~~~~~~~~~

This module returns the preferred default CA certificate bundle. There is
only one — the one from the certifi package.

If you are packaging Requests, e.g., for a Linux distribution or a managed
environment, you can change the definition of where() to return a separately
packaged CA bundle.
"""

import os

if "_PIP_STANDALONE_CERT" not in os.environ:
    from pip._vendor.certifi import where
else:
    def where():
        return os.environ["_PIP_STANDALONE_CERT"]

if __name__ == "__main__":
    print(where())
25 lines•575 B
python
.venv/Lib/site-packages/pip/_vendor/tomli/__init__.py
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# SPDX-License-Identifier: MIT
# SPDX-FileCopyrightText: 2021 Taneli Hukkinen
# Licensed to PSF under a Contributor Agreement.

__all__ = ("loads", "load", "TOMLDecodeError")
__version__ = "2.0.1"  # DO NOT EDIT THIS LINE MANUALLY. LET bump2version UTILITY DO IT

from ._parser import TOMLDecodeError, load, loads

# Pretend this exception was created here.
TOMLDecodeError.__module__ = __name__
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python
.venv/Lib/site-packages/pip/_vendor/rich/_win32_console.py
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"""Light wrapper around the Win32 Console API - this module should only be imported on Windows

The API that this module wraps is documented at https://docs.microsoft.com/en-us/windows/console/console-functions
"""
import ctypes
import sys
from typing import Any

windll: Any = None
if sys.platform == "win32":
    windll = ctypes.LibraryLoader(ctypes.WinDLL)
else:
    raise ImportError(f"{__name__} can only be imported on Windows")

import time
from ctypes import Structure, byref, wintypes
from typing import IO, NamedTuple, Type, cast

from pip._vendor.rich.color import ColorSystem
from pip._vendor.rich.style import Style

STDOUT = -11
ENABLE_VIRTUAL_TERMINAL_PROCESSING = 4

COORD = wintypes._COORD


class LegacyWindowsError(Exception):
    pass


class WindowsCoordinates(NamedTuple):
    """Coordinates in the Windows Console API are (y, x), not (x, y).
    This class is intended to prevent that confusion.
    Rows and columns are indexed from 0.
    This class can be used in place of wintypes._COORD in arguments and argtypes.
    """

    row: int
    col: int

    @classmethod
    def from_param(cls, value: "WindowsCoordinates") -> COORD:
        """Converts a WindowsCoordinates into a wintypes _COORD structure.
        This classmethod is internally called by ctypes to perform the conversion.

        Args:
            value (WindowsCoordinates): The input coordinates to convert.

        Returns:
            wintypes._COORD: The converted coordinates struct.
        """
        return COORD(value.col, value.row)


class CONSOLE_SCREEN_BUFFER_INFO(Structure):
    _fields_ = [
        ("dwSize", COORD),
        ("dwCursorPosition", COORD),
        ("wAttributes", wintypes.WORD),
        ("srWindow", wintypes.SMALL_RECT),
        ("dwMaximumWindowSize", COORD),
    ]


class CONSOLE_CURSOR_INFO(ctypes.Structure):
    _fields_ = [("dwSize", wintypes.DWORD), ("bVisible", wintypes.BOOL)]


_GetStdHandle = windll.kernel32.GetStdHandle
_GetStdHandle.argtypes = [
    wintypes.DWORD,
]
_GetStdHandle.restype = wintypes.HANDLE


def GetStdHandle(handle: int = STDOUT) -> wintypes.HANDLE:
    """Retrieves a handle to the specified standard device (standard input, standard output, or standard error).

    Args:
        handle (int): Integer identifier for the handle. Defaults to -11 (stdout).

    Returns:
        wintypes.HANDLE: The handle
    """
    return cast(wintypes.HANDLE, _GetStdHandle(handle))


_GetConsoleMode = windll.kernel32.GetConsoleMode
_GetConsoleMode.argtypes = [wintypes.HANDLE, wintypes.LPDWORD]
_GetConsoleMode.restype = wintypes.BOOL


def GetConsoleMode(std_handle: wintypes.HANDLE) -> int:
    """Retrieves the current input mode of a console's input buffer
    or the current output mode of a console screen buffer.

    Args:
        std_handle (wintypes.HANDLE): A handle to the console input buffer or the console screen buffer.

    Raises:
        LegacyWindowsError: If any error occurs while calling the Windows console API.

    Returns:
        int: Value representing the current console mode as documented at
            https://docs.microsoft.com/en-us/windows/console/getconsolemode#parameters
    """

    console_mode = wintypes.DWORD()
    success = bool(_GetConsoleMode(std_handle, console_mode))
    if not success:
        raise LegacyWindowsError("Unable to get legacy Windows Console Mode")
    return console_mode.value


_FillConsoleOutputCharacterW = windll.kernel32.FillConsoleOutputCharacterW
_FillConsoleOutputCharacterW.argtypes = [
    wintypes.HANDLE,
    ctypes.c_char,
    wintypes.DWORD,
    cast(Type[COORD], WindowsCoordinates),
    ctypes.POINTER(wintypes.DWORD),
]
_FillConsoleOutputCharacterW.restype = wintypes.BOOL


def FillConsoleOutputCharacter(
    std_handle: wintypes.HANDLE,
    char: str,
    length: int,
    start: WindowsCoordinates,
) -> int:
    """Writes a character to the console screen buffer a specified number of times, beginning at the specified coordinates.

    Args:
        std_handle (wintypes.HANDLE): A handle to the console input buffer or the console screen buffer.
        char (str): The character to write. Must be a string of length 1.
        length (int): The number of times to write the character.
        start (WindowsCoordinates): The coordinates to start writing at.

    Returns:
        int: The number of characters written.
    """
    character = ctypes.c_char(char.encode())
    num_characters = wintypes.DWORD(length)
    num_written = wintypes.DWORD(0)
    _FillConsoleOutputCharacterW(
        std_handle,
        character,
        num_characters,
        start,
        byref(num_written),
    )
    return num_written.value


_FillConsoleOutputAttribute = windll.kernel32.FillConsoleOutputAttribute
_FillConsoleOutputAttribute.argtypes = [
    wintypes.HANDLE,
    wintypes.WORD,
    wintypes.DWORD,
    cast(Type[COORD], WindowsCoordinates),
    ctypes.POINTER(wintypes.DWORD),
]
_FillConsoleOutputAttribute.restype = wintypes.BOOL


def FillConsoleOutputAttribute(
    std_handle: wintypes.HANDLE,
    attributes: int,
    length: int,
    start: WindowsCoordinates,
) -> int:
    """Sets the character attributes for a specified number of character cells,
    beginning at the specified coordinates in a screen buffer.

    Args:
        std_handle (wintypes.HANDLE): A handle to the console input buffer or the console screen buffer.
        attributes (int): Integer value representing the foreground and background colours of the cells.
        length (int): The number of cells to set the output attribute of.
        start (WindowsCoordinates): The coordinates of the first cell whose attributes are to be set.

    Returns:
        int: The number of cells whose attributes were actually set.
    """
    num_cells = wintypes.DWORD(length)
    style_attrs = wintypes.WORD(attributes)
    num_written = wintypes.DWORD(0)
    _FillConsoleOutputAttribute(
        std_handle, style_attrs, num_cells, start, byref(num_written)
    )
    return num_written.value


_SetConsoleTextAttribute = windll.kernel32.SetConsoleTextAttribute
_SetConsoleTextAttribute.argtypes = [
    wintypes.HANDLE,
    wintypes.WORD,
]
_SetConsoleTextAttribute.restype = wintypes.BOOL


def SetConsoleTextAttribute(
    std_handle: wintypes.HANDLE, attributes: wintypes.WORD
) -> bool:
    """Set the colour attributes for all text written after this function is called.

    Args:
        std_handle (wintypes.HANDLE): A handle to the console input buffer or the console screen buffer.
        attributes (int): Integer value representing the foreground and background colours.


    Returns:
        bool: True if the attribute was set successfully, otherwise False.
    """
    return bool(_SetConsoleTextAttribute(std_handle, attributes))


_GetConsoleScreenBufferInfo = windll.kernel32.GetConsoleScreenBufferInfo
_GetConsoleScreenBufferInfo.argtypes = [
    wintypes.HANDLE,
    ctypes.POINTER(CONSOLE_SCREEN_BUFFER_INFO),
]
_GetConsoleScreenBufferInfo.restype = wintypes.BOOL


def GetConsoleScreenBufferInfo(
    std_handle: wintypes.HANDLE,
) -> CONSOLE_SCREEN_BUFFER_INFO:
    """Retrieves information about the specified console screen buffer.

    Args:
        std_handle (wintypes.HANDLE): A handle to the console input buffer or the console screen buffer.

    Returns:
        CONSOLE_SCREEN_BUFFER_INFO: A CONSOLE_SCREEN_BUFFER_INFO ctype struct contain information about
            screen size, cursor position, colour attributes, and more."""
    console_screen_buffer_info = CONSOLE_SCREEN_BUFFER_INFO()
    _GetConsoleScreenBufferInfo(std_handle, byref(console_screen_buffer_info))
    return console_screen_buffer_info


_SetConsoleCursorPosition = windll.kernel32.SetConsoleCursorPosition
_SetConsoleCursorPosition.argtypes = [
    wintypes.HANDLE,
    cast(Type[COORD], WindowsCoordinates),
]
_SetConsoleCursorPosition.restype = wintypes.BOOL


def SetConsoleCursorPosition(
    std_handle: wintypes.HANDLE, coords: WindowsCoordinates
) -> bool:
    """Set the position of the cursor in the console screen

    Args:
        std_handle (wintypes.HANDLE): A handle to the console input buffer or the console screen buffer.
        coords (WindowsCoordinates): The coordinates to move the cursor to.

    Returns:
        bool: True if the function succeeds, otherwise False.
    """
    return bool(_SetConsoleCursorPosition(std_handle, coords))


_GetConsoleCursorInfo = windll.kernel32.GetConsoleCursorInfo
_GetConsoleCursorInfo.argtypes = [
    wintypes.HANDLE,
    ctypes.POINTER(CONSOLE_CURSOR_INFO),
]
_GetConsoleCursorInfo.restype = wintypes.BOOL


def GetConsoleCursorInfo(
    std_handle: wintypes.HANDLE, cursor_info: CONSOLE_CURSOR_INFO
) -> bool:
    """Get the cursor info - used to get cursor visibility and width

    Args:
        std_handle (wintypes.HANDLE): A handle to the console input buffer or the console screen buffer.
        cursor_info (CONSOLE_CURSOR_INFO): CONSOLE_CURSOR_INFO ctype struct that receives information
            about the console's cursor.

    Returns:
          bool: True if the function succeeds, otherwise False.
    """
    return bool(_GetConsoleCursorInfo(std_handle, byref(cursor_info)))


_SetConsoleCursorInfo = windll.kernel32.SetConsoleCursorInfo
_SetConsoleCursorInfo.argtypes = [
    wintypes.HANDLE,
    ctypes.POINTER(CONSOLE_CURSOR_INFO),
]
_SetConsoleCursorInfo.restype = wintypes.BOOL


def SetConsoleCursorInfo(
    std_handle: wintypes.HANDLE, cursor_info: CONSOLE_CURSOR_INFO
) -> bool:
    """Set the cursor info - used for adjusting cursor visibility and width

    Args:
        std_handle (wintypes.HANDLE): A handle to the console input buffer or the console screen buffer.
        cursor_info (CONSOLE_CURSOR_INFO): CONSOLE_CURSOR_INFO ctype struct containing the new cursor info.

    Returns:
          bool: True if the function succeeds, otherwise False.
    """
    return bool(_SetConsoleCursorInfo(std_handle, byref(cursor_info)))


_SetConsoleTitle = windll.kernel32.SetConsoleTitleW
_SetConsoleTitle.argtypes = [wintypes.LPCWSTR]
_SetConsoleTitle.restype = wintypes.BOOL


def SetConsoleTitle(title: str) -> bool:
    """Sets the title of the current console window

    Args:
        title (str): The new title of the console window.

    Returns:
        bool: True if the function succeeds, otherwise False.
    """
    return bool(_SetConsoleTitle(title))


class LegacyWindowsTerm:
    """This class allows interaction with the legacy Windows Console API. It should only be used in the context
    of environments where virtual terminal processing is not available. However, if it is used in a Windows environment,
    the entire API should work.

    Args:
        file (IO[str]): The file which the Windows Console API HANDLE is retrieved from, defaults to sys.stdout.
    """

    BRIGHT_BIT = 8

    # Indices are ANSI color numbers, values are the corresponding Windows Console API color numbers
    ANSI_TO_WINDOWS = [
        0,  # black                      The Windows colours are defined in wincon.h as follows:
        4,  # red                         define FOREGROUND_BLUE            0x0001 -- 0000 0001
        2,  # green                       define FOREGROUND_GREEN           0x0002 -- 0000 0010
        6,  # yellow                      define FOREGROUND_RED             0x0004 -- 0000 0100
        1,  # blue                        define FOREGROUND_INTENSITY       0x0008 -- 0000 1000
        5,  # magenta                     define BACKGROUND_BLUE            0x0010 -- 0001 0000
        3,  # cyan                        define BACKGROUND_GREEN           0x0020 -- 0010 0000
        7,  # white                       define BACKGROUND_RED             0x0040 -- 0100 0000
        8,  # bright black (grey)         define BACKGROUND_INTENSITY       0x0080 -- 1000 0000
        12,  # bright red
        10,  # bright green
        14,  # bright yellow
        9,  # bright blue
        13,  # bright magenta
        11,  # bright cyan
        15,  # bright white
    ]

    def __init__(self, file: "IO[str]") -> None:
        handle = GetStdHandle(STDOUT)
        self._handle = handle
        default_text = GetConsoleScreenBufferInfo(handle).wAttributes
        self._default_text = default_text

        self._default_fore = default_text & 7
        self._default_back = (default_text >> 4) & 7
        self._default_attrs = self._default_fore | (self._default_back << 4)

        self._file = file
        self.write = file.write
        self.flush = file.flush

    @property
    def cursor_position(self) -> WindowsCoordinates:
        """Returns the current position of the cursor (0-based)

        Returns:
            WindowsCoordinates: The current cursor position.
        """
        coord: COORD = GetConsoleScreenBufferInfo(self._handle).dwCursorPosition
        return WindowsCoordinates(row=cast(int, coord.Y), col=cast(int, coord.X))

    @property
    def screen_size(self) -> WindowsCoordinates:
        """Returns the current size of the console screen buffer, in character columns and rows

        Returns:
            WindowsCoordinates: The width and height of the screen as WindowsCoordinates.
        """
        screen_size: COORD = GetConsoleScreenBufferInfo(self._handle).dwSize
        return WindowsCoordinates(
            row=cast(int, screen_size.Y), col=cast(int, screen_size.X)
        )

    def write_text(self, text: str) -> None:
        """Write text directly to the terminal without any modification of styles

        Args:
            text (str): The text to write to the console
        """
        self.write(text)
        self.flush()

    def write_styled(self, text: str, style: Style) -> None:
        """Write styled text to the terminal.

        Args:
            text (str): The text to write
            style (Style): The style of the text
        """
        color = style.color
        bgcolor = style.bgcolor
        if style.reverse:
            color, bgcolor = bgcolor, color

        if color:
            fore = color.downgrade(ColorSystem.WINDOWS).number
            fore = fore if fore is not None else 7  # Default to ANSI 7: White
            if style.bold:
                fore = fore | self.BRIGHT_BIT
            if style.dim:
                fore = fore & ~self.BRIGHT_BIT
            fore = self.ANSI_TO_WINDOWS[fore]
        else:
            fore = self._default_fore

        if bgcolor:
            back = bgcolor.downgrade(ColorSystem.WINDOWS).number
            back = back if back is not None else 0  # Default to ANSI 0: Black
            back = self.ANSI_TO_WINDOWS[back]
        else:
            back = self._default_back

        assert fore is not None
        assert back is not None

        SetConsoleTextAttribute(
            self._handle, attributes=ctypes.c_ushort(fore | (back << 4))
        )
        self.write_text(text)
        SetConsoleTextAttribute(self._handle, attributes=self._default_text)

    def move_cursor_to(self, new_position: WindowsCoordinates) -> None:
        """Set the position of the cursor

        Args:
            new_position (WindowsCoordinates): The WindowsCoordinates representing the new position of the cursor.
        """
        if new_position.col < 0 or new_position.row < 0:
            return
        SetConsoleCursorPosition(self._handle, coords=new_position)

    def erase_line(self) -> None:
        """Erase all content on the line the cursor is currently located at"""
        screen_size = self.screen_size
        cursor_position = self.cursor_position
        cells_to_erase = screen_size.col
        start_coordinates = WindowsCoordinates(row=cursor_position.row, col=0)
        FillConsoleOutputCharacter(
            self._handle, " ", length=cells_to_erase, start=start_coordinates
        )
        FillConsoleOutputAttribute(
            self._handle,
            self._default_attrs,
            length=cells_to_erase,
            start=start_coordinates,
        )

    def erase_end_of_line(self) -> None:
        """Erase all content from the cursor position to the end of that line"""
        cursor_position = self.cursor_position
        cells_to_erase = self.screen_size.col - cursor_position.col
        FillConsoleOutputCharacter(
            self._handle, " ", length=cells_to_erase, start=cursor_position
        )
        FillConsoleOutputAttribute(
            self._handle,
            self._default_attrs,
            length=cells_to_erase,
            start=cursor_position,
        )

    def erase_start_of_line(self) -> None:
        """Erase all content from the cursor position to the start of that line"""
        row, col = self.cursor_position
        start = WindowsCoordinates(row, 0)
        FillConsoleOutputCharacter(self._handle, " ", length=col, start=start)
        FillConsoleOutputAttribute(
            self._handle, self._default_attrs, length=col, start=start
        )

    def move_cursor_up(self) -> None:
        """Move the cursor up a single cell"""
        cursor_position = self.cursor_position
        SetConsoleCursorPosition(
            self._handle,
            coords=WindowsCoordinates(
                row=cursor_position.row - 1, col=cursor_position.col
            ),
        )

    def move_cursor_down(self) -> None:
        """Move the cursor down a single cell"""
        cursor_position = self.cursor_position
        SetConsoleCursorPosition(
            self._handle,
            coords=WindowsCoordinates(
                row=cursor_position.row + 1,
                col=cursor_position.col,
            ),
        )

    def move_cursor_forward(self) -> None:
        """Move the cursor forward a single cell. Wrap to the next line if required."""
        row, col = self.cursor_position
        if col == self.screen_size.col - 1:
            row += 1
            col = 0
        else:
            col += 1
        SetConsoleCursorPosition(
            self._handle, coords=WindowsCoordinates(row=row, col=col)
        )

    def move_cursor_to_column(self, column: int) -> None:
        """Move cursor to the column specified by the zero-based column index, staying on the same row

        Args:
            column (int): The zero-based column index to move the cursor to.
        """
        row, _ = self.cursor_position
        SetConsoleCursorPosition(self._handle, coords=WindowsCoordinates(row, column))

    def move_cursor_backward(self) -> None:
        """Move the cursor backward a single cell. Wrap to the previous line if required."""
        row, col = self.cursor_position
        if col == 0:
            row -= 1
            col = self.screen_size.col - 1
        else:
            col -= 1
        SetConsoleCursorPosition(
            self._handle, coords=WindowsCoordinates(row=row, col=col)
        )

    def hide_cursor(self) -> None:
        """Hide the cursor"""
        current_cursor_size = self._get_cursor_size()
        invisible_cursor = CONSOLE_CURSOR_INFO(dwSize=current_cursor_size, bVisible=0)
        SetConsoleCursorInfo(self._handle, cursor_info=invisible_cursor)

    def show_cursor(self) -> None:
        """Show the cursor"""
        current_cursor_size = self._get_cursor_size()
        visible_cursor = CONSOLE_CURSOR_INFO(dwSize=current_cursor_size, bVisible=1)
        SetConsoleCursorInfo(self._handle, cursor_info=visible_cursor)

    def set_title(self, title: str) -> None:
        """Set the title of the terminal window

        Args:
            title (str): The new title of the console window
        """
        assert len(title) < 255, "Console title must be less than 255 characters"
        SetConsoleTitle(title)

    def _get_cursor_size(self) -> int:
        """Get the percentage of the character cell that is filled by the cursor"""
        cursor_info = CONSOLE_CURSOR_INFO()
        GetConsoleCursorInfo(self._handle, cursor_info=cursor_info)
        return int(cursor_info.dwSize)


if __name__ == "__main__":
    handle = GetStdHandle()

    from pip._vendor.rich.console import Console

    console = Console()

    term = LegacyWindowsTerm(sys.stdout)
    term.set_title("Win32 Console Examples")

    style = Style(color="black", bgcolor="red")

    heading = Style.parse("black on green")

    # Check colour output
    console.rule("Checking colour output")
    console.print("[on red]on red!")
    console.print("[blue]blue!")
    console.print("[yellow]yellow!")
    console.print("[bold yellow]bold yellow!")
    console.print("[bright_yellow]bright_yellow!")
    console.print("[dim bright_yellow]dim bright_yellow!")
    console.print("[italic cyan]italic cyan!")
    console.print("[bold white on blue]bold white on blue!")
    console.print("[reverse bold white on blue]reverse bold white on blue!")
    console.print("[bold black on cyan]bold black on cyan!")
    console.print("[black on green]black on green!")
    console.print("[blue on green]blue on green!")
    console.print("[white on black]white on black!")
    console.print("[black on white]black on white!")
    console.print("[#1BB152 on #DA812D]#1BB152 on #DA812D!")

    # Check cursor movement
    console.rule("Checking cursor movement")
    console.print()
    term.move_cursor_backward()
    term.move_cursor_backward()
    term.write_text("went back and wrapped to prev line")
    time.sleep(1)
    term.move_cursor_up()
    term.write_text("we go up")
    time.sleep(1)
    term.move_cursor_down()
    term.write_text("and down")
    time.sleep(1)
    term.move_cursor_up()
    term.move_cursor_backward()
    term.move_cursor_backward()
    term.write_text("we went up and back 2")
    time.sleep(1)
    term.move_cursor_down()
    term.move_cursor_backward()
    term.move_cursor_backward()
    term.write_text("we went down and back 2")
    time.sleep(1)

    # Check erasing of lines
    term.hide_cursor()
    console.print()
    console.rule("Checking line erasing")
    console.print("\n...Deleting to the start of the line...")
    term.write_text("The red arrow shows the cursor location, and direction of erase")
    time.sleep(1)
    term.move_cursor_to_column(16)
    term.write_styled("<", Style.parse("black on red"))
    term.move_cursor_backward()
    time.sleep(1)
    term.erase_start_of_line()
    time.sleep(1)

    console.print("\n\n...And to the end of the line...")
    term.write_text("The red arrow shows the cursor location, and direction of erase")
    time.sleep(1)

    term.move_cursor_to_column(16)
    term.write_styled(">", Style.parse("black on red"))
    time.sleep(1)
    term.erase_end_of_line()
    time.sleep(1)

    console.print("\n\n...Now the whole line will be erased...")
    term.write_styled("I'm going to disappear!", style=Style.parse("black on cyan"))
    time.sleep(1)
    term.erase_line()

    term.show_cursor()
    print("\n")
663 lines•22.3 KB
python
.venv/Lib/site-packages/pip/_vendor/rich/screen.py
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Find: Go to:
from typing import Optional, TYPE_CHECKING

from .segment import Segment
from .style import StyleType
from ._loop import loop_last


if TYPE_CHECKING:
    from .console import (
        Console,
        ConsoleOptions,
        RenderResult,
        RenderableType,
        Group,
    )


class Screen:
    """A renderable that fills the terminal screen and crops excess.

    Args:
        renderable (RenderableType): Child renderable.
        style (StyleType, optional): Optional background style. Defaults to None.
    """

    renderable: "RenderableType"

    def __init__(
        self,
        *renderables: "RenderableType",
        style: Optional[StyleType] = None,
        application_mode: bool = False,
    ) -> None:
        from pip._vendor.rich.console import Group

        self.renderable = Group(*renderables)
        self.style = style
        self.application_mode = application_mode

    def __rich_console__(
        self, console: "Console", options: "ConsoleOptions"
    ) -> "RenderResult":
        width, height = options.size
        style = console.get_style(self.style) if self.style else None
        render_options = options.update(width=width, height=height)
        lines = console.render_lines(
            self.renderable or "", render_options, style=style, pad=True
        )
        lines = Segment.set_shape(lines, width, height, style=style)
        new_line = Segment("\n\r") if self.application_mode else Segment.line()
        for last, line in loop_last(lines):
            yield from line
            if not last:
                yield new_line
55 lines•1.6 KB
python
.venv/Lib/site-packages/pip/_internal/req/req_uninstall.py
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import functools
import os
import sys
import sysconfig
from importlib.util import cache_from_source
from typing import Any, Callable, Dict, Generator, Iterable, List, Optional, Set, Tuple

from pip._internal.exceptions import LegacyDistutilsInstall, UninstallMissingRecord
from pip._internal.locations import get_bin_prefix, get_bin_user
from pip._internal.metadata import BaseDistribution
from pip._internal.utils.compat import WINDOWS
from pip._internal.utils.egg_link import egg_link_path_from_location
from pip._internal.utils.logging import getLogger, indent_log
from pip._internal.utils.misc import ask, normalize_path, renames, rmtree
from pip._internal.utils.temp_dir import AdjacentTempDirectory, TempDirectory
from pip._internal.utils.virtualenv import running_under_virtualenv

logger = getLogger(__name__)


def _script_names(
    bin_dir: str, script_name: str, is_gui: bool
) -> Generator[str, None, None]:
    """Create the fully qualified name of the files created by
    {console,gui}_scripts for the given ``dist``.
    Returns the list of file names
    """
    exe_name = os.path.join(bin_dir, script_name)
    yield exe_name
    if not WINDOWS:
        return
    yield f"{exe_name}.exe"
    yield f"{exe_name}.exe.manifest"
    if is_gui:
        yield f"{exe_name}-script.pyw"
    else:
        yield f"{exe_name}-script.py"


def _unique(
    fn: Callable[..., Generator[Any, None, None]]
) -> Callable[..., Generator[Any, None, None]]:
    @functools.wraps(fn)
    def unique(*args: Any, **kw: Any) -> Generator[Any, None, None]:
        seen: Set[Any] = set()
        for item in fn(*args, **kw):
            if item not in seen:
                seen.add(item)
                yield item

    return unique


@_unique
def uninstallation_paths(dist: BaseDistribution) -> Generator[str, None, None]:
    """
    Yield all the uninstallation paths for dist based on RECORD-without-.py[co]

    Yield paths to all the files in RECORD. For each .py file in RECORD, add
    the .pyc and .pyo in the same directory.

    UninstallPathSet.add() takes care of the __pycache__ .py[co].

    If RECORD is not found, raises an error,
    with possible information from the INSTALLER file.

    https://packaging.python.org/specifications/recording-installed-packages/
    """
    location = dist.location
    assert location is not None, "not installed"

    entries = dist.iter_declared_entries()
    if entries is None:
        raise UninstallMissingRecord(distribution=dist)

    for entry in entries:
        path = os.path.join(location, entry)
        yield path
        if path.endswith(".py"):
            dn, fn = os.path.split(path)
            base = fn[:-3]
            path = os.path.join(dn, base + ".pyc")
            yield path
            path = os.path.join(dn, base + ".pyo")
            yield path


def compact(paths: Iterable[str]) -> Set[str]:
    """Compact a path set to contain the minimal number of paths
    necessary to contain all paths in the set. If /a/path/ and
    /a/path/to/a/file.txt are both in the set, leave only the
    shorter path."""

    sep = os.path.sep
    short_paths: Set[str] = set()
    for path in sorted(paths, key=len):
        should_skip = any(
            path.startswith(shortpath.rstrip("*"))
            and path[len(shortpath.rstrip("*").rstrip(sep))] == sep
            for shortpath in short_paths
        )
        if not should_skip:
            short_paths.add(path)
    return short_paths


def compress_for_rename(paths: Iterable[str]) -> Set[str]:
    """Returns a set containing the paths that need to be renamed.

    This set may include directories when the original sequence of paths
    included every file on disk.
    """
    case_map = {os.path.normcase(p): p for p in paths}
    remaining = set(case_map)
    unchecked = sorted({os.path.split(p)[0] for p in case_map.values()}, key=len)
    wildcards: Set[str] = set()

    def norm_join(*a: str) -> str:
        return os.path.normcase(os.path.join(*a))

    for root in unchecked:
        if any(os.path.normcase(root).startswith(w) for w in wildcards):
            # This directory has already been handled.
            continue

        all_files: Set[str] = set()
        all_subdirs: Set[str] = set()
        for dirname, subdirs, files in os.walk(root):
            all_subdirs.update(norm_join(root, dirname, d) for d in subdirs)
            all_files.update(norm_join(root, dirname, f) for f in files)
        # If all the files we found are in our remaining set of files to
        # remove, then remove them from the latter set and add a wildcard
        # for the directory.
        if not (all_files - remaining):
            remaining.difference_update(all_files)
            wildcards.add(root + os.sep)

    return set(map(case_map.__getitem__, remaining)) | wildcards


def compress_for_output_listing(paths: Iterable[str]) -> Tuple[Set[str], Set[str]]:
    """Returns a tuple of 2 sets of which paths to display to user

    The first set contains paths that would be deleted. Files of a package
    are not added and the top-level directory of the package has a '*' added
    at the end - to signify that all it's contents are removed.

    The second set contains files that would have been skipped in the above
    folders.
    """

    will_remove = set(paths)
    will_skip = set()

    # Determine folders and files
    folders = set()
    files = set()
    for path in will_remove:
        if path.endswith(".pyc"):
            continue
        if path.endswith("__init__.py") or ".dist-info" in path:
            folders.add(os.path.dirname(path))
        files.add(path)

    _normcased_files = set(map(os.path.normcase, files))

    folders = compact(folders)

    # This walks the tree using os.walk to not miss extra folders
    # that might get added.
    for folder in folders:
        for dirpath, _, dirfiles in os.walk(folder):
            for fname in dirfiles:
                if fname.endswith(".pyc"):
                    continue

                file_ = os.path.join(dirpath, fname)
                if (
                    os.path.isfile(file_)
                    and os.path.normcase(file_) not in _normcased_files
                ):
                    # We are skipping this file. Add it to the set.
                    will_skip.add(file_)

    will_remove = files | {os.path.join(folder, "*") for folder in folders}

    return will_remove, will_skip


class StashedUninstallPathSet:
    """A set of file rename operations to stash files while
    tentatively uninstalling them."""

    def __init__(self) -> None:
        # Mapping from source file root to [Adjacent]TempDirectory
        # for files under that directory.
        self._save_dirs: Dict[str, TempDirectory] = {}
        # (old path, new path) tuples for each move that may need
        # to be undone.
        self._moves: List[Tuple[str, str]] = []

    def _get_directory_stash(self, path: str) -> str:
        """Stashes a directory.

        Directories are stashed adjacent to their original location if
        possible, or else moved/copied into the user's temp dir."""

        try:
            save_dir: TempDirectory = AdjacentTempDirectory(path)
        except OSError:
            save_dir = TempDirectory(kind="uninstall")
        self._save_dirs[os.path.normcase(path)] = save_dir

        return save_dir.path

    def _get_file_stash(self, path: str) -> str:
        """Stashes a file.

        If no root has been provided, one will be created for the directory
        in the user's temp directory."""
        path = os.path.normcase(path)
        head, old_head = os.path.dirname(path), None
        save_dir = None

        while head != old_head:
            try:
                save_dir = self._save_dirs[head]
                break
            except KeyError:
                pass
            head, old_head = os.path.dirname(head), head
        else:
            # Did not find any suitable root
            head = os.path.dirname(path)
            save_dir = TempDirectory(kind="uninstall")
            self._save_dirs[head] = save_dir

        relpath = os.path.relpath(path, head)
        if relpath and relpath != os.path.curdir:
            return os.path.join(save_dir.path, relpath)
        return save_dir.path

    def stash(self, path: str) -> str:
        """Stashes the directory or file and returns its new location.
        Handle symlinks as files to avoid modifying the symlink targets.
        """
        path_is_dir = os.path.isdir(path) and not os.path.islink(path)
        if path_is_dir:
            new_path = self._get_directory_stash(path)
        else:
            new_path = self._get_file_stash(path)

        self._moves.append((path, new_path))
        if path_is_dir and os.path.isdir(new_path):
            # If we're moving a directory, we need to
            # remove the destination first or else it will be
            # moved to inside the existing directory.
            # We just created new_path ourselves, so it will
            # be removable.
            os.rmdir(new_path)
        renames(path, new_path)
        return new_path

    def commit(self) -> None:
        """Commits the uninstall by removing stashed files."""
        for save_dir in self._save_dirs.values():
            save_dir.cleanup()
        self._moves = []
        self._save_dirs = {}

    def rollback(self) -> None:
        """Undoes the uninstall by moving stashed files back."""
        for p in self._moves:
            logger.info("Moving to %s\n from %s", *p)

        for new_path, path in self._moves:
            try:
                logger.debug("Replacing %s from %s", new_path, path)
                if os.path.isfile(new_path) or os.path.islink(new_path):
                    os.unlink(new_path)
                elif os.path.isdir(new_path):
                    rmtree(new_path)
                renames(path, new_path)
            except OSError as ex:
                logger.error("Failed to restore %s", new_path)
                logger.debug("Exception: %s", ex)

        self.commit()

    @property
    def can_rollback(self) -> bool:
        return bool(self._moves)


class UninstallPathSet:
    """A set of file paths to be removed in the uninstallation of a
    requirement."""

    def __init__(self, dist: BaseDistribution) -> None:
        self._paths: Set[str] = set()
        self._refuse: Set[str] = set()
        self._pth: Dict[str, UninstallPthEntries] = {}
        self._dist = dist
        self._moved_paths = StashedUninstallPathSet()
        # Create local cache of normalize_path results. Creating an UninstallPathSet
        # can result in hundreds/thousands of redundant calls to normalize_path with
        # the same args, which hurts performance.
        self._normalize_path_cached = functools.lru_cache(normalize_path)

    def _permitted(self, path: str) -> bool:
        """
        Return True if the given path is one we are permitted to
        remove/modify, False otherwise.

        """
        # aka is_local, but caching normalized sys.prefix
        if not running_under_virtualenv():
            return True
        return path.startswith(self._normalize_path_cached(sys.prefix))

    def add(self, path: str) -> None:
        head, tail = os.path.split(path)

        # we normalize the head to resolve parent directory symlinks, but not
        # the tail, since we only want to uninstall symlinks, not their targets
        path = os.path.join(self._normalize_path_cached(head), os.path.normcase(tail))

        if not os.path.exists(path):
            return
        if self._permitted(path):
            self._paths.add(path)
        else:
            self._refuse.add(path)

        # __pycache__ files can show up after 'installed-files.txt' is created,
        # due to imports
        if os.path.splitext(path)[1] == ".py":
            self.add(cache_from_source(path))

    def add_pth(self, pth_file: str, entry: str) -> None:
        pth_file = self._normalize_path_cached(pth_file)
        if self._permitted(pth_file):
            if pth_file not in self._pth:
                self._pth[pth_file] = UninstallPthEntries(pth_file)
            self._pth[pth_file].add(entry)
        else:
            self._refuse.add(pth_file)

    def remove(self, auto_confirm: bool = False, verbose: bool = False) -> None:
        """Remove paths in ``self._paths`` with confirmation (unless
        ``auto_confirm`` is True)."""

        if not self._paths:
            logger.info(
                "Can't uninstall '%s'. No files were found to uninstall.",
                self._dist.raw_name,
            )
            return

        dist_name_version = f"{self._dist.raw_name}-{self._dist.raw_version}"
        logger.info("Uninstalling %s:", dist_name_version)

        with indent_log():
            if auto_confirm or self._allowed_to_proceed(verbose):
                moved = self._moved_paths

                for_rename = compress_for_rename(self._paths)

                for path in sorted(compact(for_rename)):
                    moved.stash(path)
                    logger.verbose("Removing file or directory %s", path)

                for pth in self._pth.values():
                    pth.remove()

                logger.info("Successfully uninstalled %s", dist_name_version)

    def _allowed_to_proceed(self, verbose: bool) -> bool:
        """Display which files would be deleted and prompt for confirmation"""

        def _display(msg: str, paths: Iterable[str]) -> None:
            if not paths:
                return

            logger.info(msg)
            with indent_log():
                for path in sorted(compact(paths)):
                    logger.info(path)

        if not verbose:
            will_remove, will_skip = compress_for_output_listing(self._paths)
        else:
            # In verbose mode, display all the files that are going to be
            # deleted.
            will_remove = set(self._paths)
            will_skip = set()

        _display("Would remove:", will_remove)
        _display("Would not remove (might be manually added):", will_skip)
        _display("Would not remove (outside of prefix):", self._refuse)
        if verbose:
            _display("Will actually move:", compress_for_rename(self._paths))

        return ask("Proceed (Y/n)? ", ("y", "n", "")) != "n"

    def rollback(self) -> None:
        """Rollback the changes previously made by remove()."""
        if not self._moved_paths.can_rollback:
            logger.error(
                "Can't roll back %s; was not uninstalled",
                self._dist.raw_name,
            )
            return
        logger.info("Rolling back uninstall of %s", self._dist.raw_name)
        self._moved_paths.rollback()
        for pth in self._pth.values():
            pth.rollback()

    def commit(self) -> None:
        """Remove temporary save dir: rollback will no longer be possible."""
        self._moved_paths.commit()

    @classmethod
    def from_dist(cls, dist: BaseDistribution) -> "UninstallPathSet":
        dist_location = dist.location
        info_location = dist.info_location
        if dist_location is None:
            logger.info(
                "Not uninstalling %s since it is not installed",
                dist.canonical_name,
            )
            return cls(dist)

        normalized_dist_location = normalize_path(dist_location)
        if not dist.local:
            logger.info(
                "Not uninstalling %s at %s, outside environment %s",
                dist.canonical_name,
                normalized_dist_location,
                sys.prefix,
            )
            return cls(dist)

        if normalized_dist_location in {
            p
            for p in {sysconfig.get_path("stdlib"), sysconfig.get_path("platstdlib")}
            if p
        }:
            logger.info(
                "Not uninstalling %s at %s, as it is in the standard library.",
                dist.canonical_name,
                normalized_dist_location,
            )
            return cls(dist)

        paths_to_remove = cls(dist)
        develop_egg_link = egg_link_path_from_location(dist.raw_name)

        # Distribution is installed with metadata in a "flat" .egg-info
        # directory. This means it is not a modern .dist-info installation, an
        # egg, or legacy editable.
        setuptools_flat_installation = (
            dist.installed_with_setuptools_egg_info
            and info_location is not None
            and os.path.exists(info_location)
            # If dist is editable and the location points to a ``.egg-info``,
            # we are in fact in the legacy editable case.
            and not info_location.endswith(f"{dist.setuptools_filename}.egg-info")
        )

        # Uninstall cases order do matter as in the case of 2 installs of the
        # same package, pip needs to uninstall the currently detected version
        if setuptools_flat_installation:
            if info_location is not None:
                paths_to_remove.add(info_location)
            installed_files = dist.iter_declared_entries()
            if installed_files is not None:
                for installed_file in installed_files:
                    paths_to_remove.add(os.path.join(dist_location, installed_file))
            # FIXME: need a test for this elif block
            # occurs with --single-version-externally-managed/--record outside
            # of pip
            elif dist.is_file("top_level.txt"):
                try:
                    namespace_packages = dist.read_text("namespace_packages.txt")
                except FileNotFoundError:
                    namespaces = []
                else:
                    namespaces = namespace_packages.splitlines(keepends=False)
                for top_level_pkg in [
                    p
                    for p in dist.read_text("top_level.txt").splitlines()
                    if p and p not in namespaces
                ]:
                    path = os.path.join(dist_location, top_level_pkg)
                    paths_to_remove.add(path)
                    paths_to_remove.add(f"{path}.py")
                    paths_to_remove.add(f"{path}.pyc")
                    paths_to_remove.add(f"{path}.pyo")

        elif dist.installed_by_distutils:
            raise LegacyDistutilsInstall(distribution=dist)

        elif dist.installed_as_egg:
            # package installed by easy_install
            # We cannot match on dist.egg_name because it can slightly vary
            # i.e. setuptools-0.6c11-py2.6.egg vs setuptools-0.6rc11-py2.6.egg
            paths_to_remove.add(dist_location)
            easy_install_egg = os.path.split(dist_location)[1]
            easy_install_pth = os.path.join(
                os.path.dirname(dist_location),
                "easy-install.pth",
            )
            paths_to_remove.add_pth(easy_install_pth, "./" + easy_install_egg)

        elif dist.installed_with_dist_info:
            for path in uninstallation_paths(dist):
                paths_to_remove.add(path)

        elif develop_egg_link:
            # PEP 660 modern editable is handled in the ``.dist-info`` case
            # above, so this only covers the setuptools-style editable.
            with open(develop_egg_link) as fh:
                link_pointer = os.path.normcase(fh.readline().strip())
                normalized_link_pointer = paths_to_remove._normalize_path_cached(
                    link_pointer
                )
            assert os.path.samefile(
                normalized_link_pointer, normalized_dist_location
            ), (
                f"Egg-link {develop_egg_link} (to {link_pointer}) does not match "
                f"installed location of {dist.raw_name} (at {dist_location})"
            )
            paths_to_remove.add(develop_egg_link)
            easy_install_pth = os.path.join(
                os.path.dirname(develop_egg_link), "easy-install.pth"
            )
            paths_to_remove.add_pth(easy_install_pth, dist_location)

        else:
            logger.debug(
                "Not sure how to uninstall: %s - Check: %s",
                dist,
                dist_location,
            )

        if dist.in_usersite:
            bin_dir = get_bin_user()
        else:
            bin_dir = get_bin_prefix()

        # find distutils scripts= scripts
        try:
            for script in dist.iter_distutils_script_names():
                paths_to_remove.add(os.path.join(bin_dir, script))
                if WINDOWS:
                    paths_to_remove.add(os.path.join(bin_dir, f"{script}.bat"))
        except (FileNotFoundError, NotADirectoryError):
            pass

        # find console_scripts and gui_scripts
        def iter_scripts_to_remove(
            dist: BaseDistribution,
            bin_dir: str,
        ) -> Generator[str, None, None]:
            for entry_point in dist.iter_entry_points():
                if entry_point.group == "console_scripts":
                    yield from _script_names(bin_dir, entry_point.name, False)
                elif entry_point.group == "gui_scripts":
                    yield from _script_names(bin_dir, entry_point.name, True)

        for s in iter_scripts_to_remove(dist, bin_dir):
            paths_to_remove.add(s)

        return paths_to_remove


class UninstallPthEntries:
    def __init__(self, pth_file: str) -> None:
        self.file = pth_file
        self.entries: Set[str] = set()
        self._saved_lines: Optional[List[bytes]] = None

    def add(self, entry: str) -> None:
        entry = os.path.normcase(entry)
        # On Windows, os.path.normcase converts the entry to use
        # backslashes.  This is correct for entries that describe absolute
        # paths outside of site-packages, but all the others use forward
        # slashes.
        # os.path.splitdrive is used instead of os.path.isabs because isabs
        # treats non-absolute paths with drive letter markings like c:foo\bar
        # as absolute paths. It also does not recognize UNC paths if they don't
        # have more than "\\sever\share". Valid examples: "\\server\share\" or
        # "\\server\share\folder".
        if WINDOWS and not os.path.splitdrive(entry)[0]:
            entry = entry.replace("\\", "/")
        self.entries.add(entry)

    def remove(self) -> None:
        logger.verbose("Removing pth entries from %s:", self.file)

        # If the file doesn't exist, log a warning and return
        if not os.path.isfile(self.file):
            logger.warning("Cannot remove entries from nonexistent file %s", self.file)
            return
        with open(self.file, "rb") as fh:
            # windows uses '\r\n' with py3k, but uses '\n' with py2.x
            lines = fh.readlines()
            self._saved_lines = lines
        if any(b"\r\n" in line for line in lines):
            endline = "\r\n"
        else:
            endline = "\n"
        # handle missing trailing newline
        if lines and not lines[-1].endswith(endline.encode("utf-8")):
            lines[-1] = lines[-1] + endline.encode("utf-8")
        for entry in self.entries:
            try:
                logger.verbose("Removing entry: %s", entry)
                lines.remove((entry + endline).encode("utf-8"))
            except ValueError:
                pass
        with open(self.file, "wb") as fh:
            fh.writelines(lines)

    def rollback(self) -> bool:
        if self._saved_lines is None:
            logger.error("Cannot roll back changes to %s, none were made", self.file)
            return False
        logger.debug("Rolling %s back to previous state", self.file)
        with open(self.file, "wb") as fh:
            fh.writelines(self._saved_lines)
        return True
634 lines•23.3 KB
python
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