mirror of https://github.com/python/cpython
510 lines
17 KiB
Python
510 lines
17 KiB
Python
"""Object-oriented filesystem paths.
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This module provides classes to represent abstract paths and concrete
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paths with operations that have semantics appropriate for different
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operating systems.
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"""
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import io
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import ntpath
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import os
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import posixpath
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try:
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import pwd
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except ImportError:
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pwd = None
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try:
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import grp
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except ImportError:
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grp = None
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from . import _abc
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__all__ = [
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"UnsupportedOperation",
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"PurePath", "PurePosixPath", "PureWindowsPath",
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"Path", "PosixPath", "WindowsPath",
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]
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UnsupportedOperation = _abc.UnsupportedOperation
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class PurePath(_abc.PurePathBase):
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"""Base class for manipulating paths without I/O.
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PurePath represents a filesystem path and offers operations which
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don't imply any actual filesystem I/O. Depending on your system,
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instantiating a PurePath will return either a PurePosixPath or a
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PureWindowsPath object. You can also instantiate either of these classes
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directly, regardless of your system.
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"""
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__slots__ = (
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# The `_str_normcase_cached` slot stores the string path with
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# normalized case. It is set when the `_str_normcase` property is
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# accessed for the first time. It's used to implement `__eq__()`
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# `__hash__()`, and `_parts_normcase`
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'_str_normcase_cached',
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# The `_parts_normcase_cached` slot stores the case-normalized
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# string path after splitting on path separators. It's set when the
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# `_parts_normcase` property is accessed for the first time. It's used
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# to implement comparison methods like `__lt__()`.
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'_parts_normcase_cached',
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# The `_hash` slot stores the hash of the case-normalized string
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# path. It's set when `__hash__()` is called for the first time.
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'_hash',
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)
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def __new__(cls, *args, **kwargs):
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"""Construct a PurePath from one or several strings and or existing
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PurePath objects. The strings and path objects are combined so as
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to yield a canonicalized path, which is incorporated into the
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new PurePath object.
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"""
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if cls is PurePath:
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cls = PureWindowsPath if os.name == 'nt' else PurePosixPath
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return object.__new__(cls)
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def __init__(self, *args):
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paths = []
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for arg in args:
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if isinstance(arg, PurePath):
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if arg.pathmod is ntpath and self.pathmod is posixpath:
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# GH-103631: Convert separators for backwards compatibility.
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paths.extend(path.replace('\\', '/') for path in arg._raw_paths)
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else:
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paths.extend(arg._raw_paths)
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else:
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try:
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path = os.fspath(arg)
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except TypeError:
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path = arg
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if not isinstance(path, str):
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raise TypeError(
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"argument should be a str or an os.PathLike "
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"object where __fspath__ returns a str, "
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f"not {type(path).__name__!r}")
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paths.append(path)
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# Avoid calling super().__init__, as an optimisation
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self._raw_paths = paths
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self._resolving = False
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def __reduce__(self):
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# Using the parts tuple helps share interned path parts
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# when pickling related paths.
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return (self.__class__, self.parts)
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def __fspath__(self):
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return str(self)
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def __bytes__(self):
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"""Return the bytes representation of the path. This is only
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recommended to use under Unix."""
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return os.fsencode(self)
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@property
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def _str_normcase(self):
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# String with normalized case, for hashing and equality checks
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try:
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return self._str_normcase_cached
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except AttributeError:
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if _abc._is_case_sensitive(self.pathmod):
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self._str_normcase_cached = str(self)
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else:
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self._str_normcase_cached = str(self).lower()
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return self._str_normcase_cached
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def __hash__(self):
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try:
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return self._hash
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except AttributeError:
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self._hash = hash(self._str_normcase)
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return self._hash
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def __eq__(self, other):
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if not isinstance(other, PurePath):
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return NotImplemented
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return self._str_normcase == other._str_normcase and self.pathmod is other.pathmod
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@property
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def _parts_normcase(self):
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# Cached parts with normalized case, for comparisons.
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try:
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return self._parts_normcase_cached
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except AttributeError:
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self._parts_normcase_cached = self._str_normcase.split(self.pathmod.sep)
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return self._parts_normcase_cached
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def __lt__(self, other):
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if not isinstance(other, PurePath) or self.pathmod is not other.pathmod:
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return NotImplemented
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return self._parts_normcase < other._parts_normcase
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def __le__(self, other):
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if not isinstance(other, PurePath) or self.pathmod is not other.pathmod:
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return NotImplemented
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return self._parts_normcase <= other._parts_normcase
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def __gt__(self, other):
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if not isinstance(other, PurePath) or self.pathmod is not other.pathmod:
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return NotImplemented
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return self._parts_normcase > other._parts_normcase
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def __ge__(self, other):
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if not isinstance(other, PurePath) or self.pathmod is not other.pathmod:
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return NotImplemented
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return self._parts_normcase >= other._parts_normcase
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def as_uri(self):
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"""Return the path as a URI."""
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if not self.is_absolute():
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raise ValueError("relative path can't be expressed as a file URI")
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drive = self.drive
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if len(drive) == 2 and drive[1] == ':':
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# It's a path on a local drive => 'file:///c:/a/b'
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prefix = 'file:///' + drive
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path = self.as_posix()[2:]
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elif drive:
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# It's a path on a network drive => 'file://host/share/a/b'
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prefix = 'file:'
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path = self.as_posix()
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else:
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# It's a posix path => 'file:///etc/hosts'
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prefix = 'file://'
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path = str(self)
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from urllib.parse import quote_from_bytes
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return prefix + quote_from_bytes(os.fsencode(path))
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# Subclassing os.PathLike makes isinstance() checks slower,
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# which in turn makes Path construction slower. Register instead!
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os.PathLike.register(PurePath)
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class PurePosixPath(PurePath):
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"""PurePath subclass for non-Windows systems.
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On a POSIX system, instantiating a PurePath should return this object.
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However, you can also instantiate it directly on any system.
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"""
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pathmod = posixpath
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__slots__ = ()
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class PureWindowsPath(PurePath):
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"""PurePath subclass for Windows systems.
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On a Windows system, instantiating a PurePath should return this object.
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However, you can also instantiate it directly on any system.
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"""
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pathmod = ntpath
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__slots__ = ()
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class Path(_abc.PathBase, PurePath):
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"""PurePath subclass that can make system calls.
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Path represents a filesystem path but unlike PurePath, also offers
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methods to do system calls on path objects. Depending on your system,
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instantiating a Path will return either a PosixPath or a WindowsPath
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object. You can also instantiate a PosixPath or WindowsPath directly,
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but cannot instantiate a WindowsPath on a POSIX system or vice versa.
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"""
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__slots__ = ()
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as_uri = PurePath.as_uri
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@classmethod
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def _unsupported(cls, method_name):
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msg = f"{cls.__name__}.{method_name}() is unsupported on this system"
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raise UnsupportedOperation(msg)
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def __init__(self, *args, **kwargs):
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if kwargs:
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import warnings
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msg = ("support for supplying keyword arguments to pathlib.PurePath "
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"is deprecated and scheduled for removal in Python {remove}")
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warnings._deprecated("pathlib.PurePath(**kwargs)", msg, remove=(3, 14))
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super().__init__(*args)
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def __new__(cls, *args, **kwargs):
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if cls is Path:
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cls = WindowsPath if os.name == 'nt' else PosixPath
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return object.__new__(cls)
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def stat(self, *, follow_symlinks=True):
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"""
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Return the result of the stat() system call on this path, like
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os.stat() does.
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"""
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return os.stat(self, follow_symlinks=follow_symlinks)
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def is_mount(self):
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"""
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Check if this path is a mount point
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"""
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return os.path.ismount(self)
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def is_junction(self):
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"""
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Whether this path is a junction.
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"""
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return os.path.isjunction(self)
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def open(self, mode='r', buffering=-1, encoding=None,
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errors=None, newline=None):
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"""
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Open the file pointed by this path and return a file object, as
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the built-in open() function does.
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"""
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if "b" not in mode:
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encoding = io.text_encoding(encoding)
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return io.open(self, mode, buffering, encoding, errors, newline)
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def iterdir(self):
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"""Yield path objects of the directory contents.
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The children are yielded in arbitrary order, and the
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special entries '.' and '..' are not included.
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"""
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return (self._make_child_relpath(name) for name in os.listdir(self))
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def _scandir(self):
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return os.scandir(self)
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def absolute(self):
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"""Return an absolute version of this path
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No normalization or symlink resolution is performed.
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Use resolve() to resolve symlinks and remove '..' segments.
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"""
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if self.is_absolute():
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return self
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if self.root:
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drive = os.path.splitroot(os.getcwd())[0]
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return self._from_parsed_parts(drive, self.root, self._tail)
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if self.drive:
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# There is a CWD on each drive-letter drive.
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cwd = os.path.abspath(self.drive)
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else:
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cwd = os.getcwd()
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if not self._tail:
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# Fast path for "empty" paths, e.g. Path("."), Path("") or Path().
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# We pass only one argument to with_segments() to avoid the cost
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# of joining, and we exploit the fact that getcwd() returns a
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# fully-normalized string by storing it in _str. This is used to
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# implement Path.cwd().
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result = self.with_segments(cwd)
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result._str = cwd
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return result
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drive, root, rel = os.path.splitroot(cwd)
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if not rel:
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return self._from_parsed_parts(drive, root, self._tail)
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tail = rel.split(self.pathmod.sep)
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tail.extend(self._tail)
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return self._from_parsed_parts(drive, root, tail)
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def resolve(self, strict=False):
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"""
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Make the path absolute, resolving all symlinks on the way and also
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normalizing it.
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"""
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return self.with_segments(os.path.realpath(self, strict=strict))
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if pwd:
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def owner(self, *, follow_symlinks=True):
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"""
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Return the login name of the file owner.
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"""
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uid = self.stat(follow_symlinks=follow_symlinks).st_uid
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return pwd.getpwuid(uid).pw_name
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if grp:
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def group(self, *, follow_symlinks=True):
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"""
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Return the group name of the file gid.
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"""
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gid = self.stat(follow_symlinks=follow_symlinks).st_gid
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return grp.getgrgid(gid).gr_name
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if hasattr(os, "readlink"):
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def readlink(self):
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"""
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Return the path to which the symbolic link points.
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"""
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return self.with_segments(os.readlink(self))
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def touch(self, mode=0o666, exist_ok=True):
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"""
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Create this file with the given access mode, if it doesn't exist.
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"""
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if exist_ok:
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# First try to bump modification time
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# Implementation note: GNU touch uses the UTIME_NOW option of
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# the utimensat() / futimens() functions.
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try:
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os.utime(self, None)
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except OSError:
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# Avoid exception chaining
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pass
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else:
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return
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flags = os.O_CREAT | os.O_WRONLY
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if not exist_ok:
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flags |= os.O_EXCL
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fd = os.open(self, flags, mode)
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os.close(fd)
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def mkdir(self, mode=0o777, parents=False, exist_ok=False):
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"""
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Create a new directory at this given path.
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"""
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try:
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os.mkdir(self, mode)
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except FileNotFoundError:
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if not parents or self.parent == self:
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raise
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self.parent.mkdir(parents=True, exist_ok=True)
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self.mkdir(mode, parents=False, exist_ok=exist_ok)
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except OSError:
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# Cannot rely on checking for EEXIST, since the operating system
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# could give priority to other errors like EACCES or EROFS
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if not exist_ok or not self.is_dir():
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raise
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def chmod(self, mode, *, follow_symlinks=True):
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"""
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Change the permissions of the path, like os.chmod().
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"""
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os.chmod(self, mode, follow_symlinks=follow_symlinks)
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def unlink(self, missing_ok=False):
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"""
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Remove this file or link.
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If the path is a directory, use rmdir() instead.
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"""
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try:
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os.unlink(self)
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except FileNotFoundError:
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if not missing_ok:
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raise
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def rmdir(self):
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"""
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Remove this directory. The directory must be empty.
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"""
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os.rmdir(self)
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def rename(self, target):
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"""
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Rename this path to the target path.
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The target path may be absolute or relative. Relative paths are
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interpreted relative to the current working directory, *not* the
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directory of the Path object.
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Returns the new Path instance pointing to the target path.
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"""
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os.rename(self, target)
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return self.with_segments(target)
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def replace(self, target):
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"""
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Rename this path to the target path, overwriting if that path exists.
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The target path may be absolute or relative. Relative paths are
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interpreted relative to the current working directory, *not* the
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directory of the Path object.
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Returns the new Path instance pointing to the target path.
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"""
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os.replace(self, target)
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return self.with_segments(target)
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if hasattr(os, "symlink"):
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def symlink_to(self, target, target_is_directory=False):
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"""
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Make this path a symlink pointing to the target path.
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Note the order of arguments (link, target) is the reverse of os.symlink.
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"""
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os.symlink(target, self, target_is_directory)
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if hasattr(os, "link"):
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def hardlink_to(self, target):
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"""
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Make this path a hard link pointing to the same file as *target*.
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Note the order of arguments (self, target) is the reverse of os.link's.
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"""
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os.link(target, self)
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def expanduser(self):
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""" Return a new path with expanded ~ and ~user constructs
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(as returned by os.path.expanduser)
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"""
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if (not (self.drive or self.root) and
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self._tail and self._tail[0][:1] == '~'):
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homedir = os.path.expanduser(self._tail[0])
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if homedir[:1] == "~":
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raise RuntimeError("Could not determine home directory.")
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drv, root, tail = self._parse_path(homedir)
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return self._from_parsed_parts(drv, root, tail + self._tail[1:])
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return self
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@classmethod
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def from_uri(cls, uri):
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"""Return a new path from the given 'file' URI."""
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if not uri.startswith('file:'):
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raise ValueError(f"URI does not start with 'file:': {uri!r}")
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path = uri[5:]
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if path[:3] == '///':
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# Remove empty authority
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path = path[2:]
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elif path[:12] == '//localhost/':
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# Remove 'localhost' authority
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path = path[11:]
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if path[:3] == '///' or (path[:1] == '/' and path[2:3] in ':|'):
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# Remove slash before DOS device/UNC path
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path = path[1:]
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if path[1:2] == '|':
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# Replace bar with colon in DOS drive
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path = path[:1] + ':' + path[2:]
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from urllib.parse import unquote_to_bytes
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path = cls(os.fsdecode(unquote_to_bytes(path)))
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if not path.is_absolute():
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raise ValueError(f"URI is not absolute: {uri!r}")
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return path
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class PosixPath(Path, PurePosixPath):
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"""Path subclass for non-Windows systems.
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On a POSIX system, instantiating a Path should return this object.
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"""
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__slots__ = ()
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if os.name == 'nt':
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def __new__(cls, *args, **kwargs):
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raise UnsupportedOperation(
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f"cannot instantiate {cls.__name__!r} on your system")
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class WindowsPath(Path, PureWindowsPath):
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"""Path subclass for Windows systems.
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On a Windows system, instantiating a Path should return this object.
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"""
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__slots__ = ()
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if os.name != 'nt':
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def __new__(cls, *args, **kwargs):
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raise UnsupportedOperation(
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f"cannot instantiate {cls.__name__!r} on your system")
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