560 lines
19 KiB
Plaintext
560 lines
19 KiB
Plaintext
PEP: 355
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Title: Path - Object oriented filesystem paths
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Version: $Revision$
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Last-Modified: $Date$
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Author: Björn Lindqvist <bjourne@gmail.com>
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Status: Draft
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Type: Standards Track
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Created: 24-Jan-2006
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Content-Type: text/plain
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Python-Version: 2.5
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Abstract
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This PEP describes a new class, Path, to be added to the os
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module, for handling paths in an object oriented fashion. The
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"weak" deprecation of various related functions is also discussed
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and recommended.
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Background
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The ideas expressed in this PEP are not recent, but have been
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debated in the Python community for many years. Many have felt
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that the API for manipulating file paths as offered in the os.path
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module is inadequate. The first proposal for a Path object was
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raised by Just van Rossum on python-dev in 2001 [2]. In 2003,
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Jason Orendorff released version 1.0 of the "path module" which
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was the first public implementation that used objects to represent
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paths [3].
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The path module quickly became very popular and numerous attempts
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were made to get the path module included in the Python standard
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library; [4], [5], [6], [7].
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This PEP summarizes the ideas and suggestions people have
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expressed about the path module and proposes that a modified
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version should be included in the standard library.
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Motivation
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Dealing with filesystem paths is a common task in any programming
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language, and very common in a high-level language like Python.
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Good support for this task is needed, because:
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- Almost every program uses paths to access files. It makes sense
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that a task, that is so often performed, should be as intuitive
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and as easy to perform as possible.
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- It makes Python an even better replacement language for
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over-complicated shell scripts.
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Currently, Python has a large number of different functions
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scattered over half a dozen modules for handling paths. This
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makes it hard for newbies and experienced developers to to choose
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the right method.
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The Path class provides the following enhancements over the
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current common practice:
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- One "unified" object provides all functionality from previous
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functions.
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- Subclassability - the Path object can be extended to support
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paths other than filesystem paths. The programmer does not need
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to learn a new API, but can reuse his or her knowledge of Path
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to deal with the extended class.
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- With all related functionality in one place, the right approach
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is easier to learn as one does not have to hunt through many
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different modules for the right functions.
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- Python is an object oriented language. Just like files,
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datetimes and sockets are objects so are paths, they are not
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merely strings to be passed to functions. Path objects is
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inherently a pythonic idea.
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- Path takes advantage of properties. Properties make for more
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readable code.
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if imgpath.ext == 'jpg':
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jpegdecode(imgpath)
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Is better than:
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if os.path.splitexit(imgpath)[1] == 'jpg':
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jpegdecode(imgpath)
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Rationale
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The following points summarize the design:
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- Path extends from string, therefore all code which expects
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string pathnames need not be modified and no existing code will
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break.
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- A Path object can be created either by using the classmethod
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Path.cwd, by instantiating the class with a string representing
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a path or by using the default constructor which is equivalent
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to Path(".").
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- Path provides common pathname manipulation, pattern expansion,
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pattern matching and other high-level file operations including
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copying. Basically Path provides everything path-related except
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the manipulation of file contents, for which file objects are
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better suited.
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- Platform incompatibilities are dealt with by not instantiating
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system specific methods.
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Specification
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This class defines the following public interface (docstrings have
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been extracted from the reference implementation, and shortened
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for brevity; see the reference implementation for more detail):
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class Path(str):
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# Special Python methods:
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def __new__(cls, *args) => Path
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"""
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Creates a new path object concatenating the *args. *args
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may only contain Path objects or strings. If *args is
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empty, Path(os.curdir) is created.
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"""
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def __repr__(self): ...
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def __add__(self, more): ...
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def __radd__(self, other): ...
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# Alternative constructor.
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def cwd(cls): ...
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# Operations on path strings:
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def abspath(self) => Path
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"""Returns the absolute path of self as a new Path object."""
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def normcase(self): ...
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def normpath(self): ...
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def realpath(self): ...
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def expanduser(self): ...
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def expandvars(self): ...
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def basename(self): ...
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def expand(self): ...
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def splitpath(self) => (Path, str)
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"""p.splitpath() -> Return (p.parent, p.name)."""
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def stripext(self) => Path
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"""p.stripext() -> Remove one file extension from the path."""
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def splitunc(self): ... [1]
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def splitall(self): ...
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def relpath(self): ...
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def relpathto(self, dest): ...
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# Properties about the path:
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parent => Path
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"""This Path's parent directory as a new path object."""
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name => str
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"""The name of this file or directory without the full path."""
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ext => str
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"""
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The file extension or an empty string if Path refers to a
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file without an extension or a directory.
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"""
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drive => str
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"""
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The drive specifier. Always empty on systems that don't
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use drive specifiers.
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"""
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namebase => str
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"""
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The same as path.name, but with one file extension
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stripped off.
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"""
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uncshare[1]
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# Operations that return lists of paths:
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def listdir(self, pattern = None): ...
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def dirs(self, pattern = None): ...
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def files(self, pattern = None): ...
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def walk(self, pattern = None): ...
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def walkdirs(self, pattern = None): ...
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def walkfiles(self, pattern = None): ...
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def match(self, pattern) => bool
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"""Returns True if self.name matches the given pattern."""
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def matchcase(self, pattern) => bool
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"""
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Like match() but is guaranteed to be case sensitive even
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on platforms with case insensitive filesystems.
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"""
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def glob(self, pattern):
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# Methods for retrieving information about the filesystem
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# path:
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def exists(self): ...
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def isabs(self): ...
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def isdir(self): ...
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def isfile(self): ...
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def islink(self): ...
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def ismount(self): ...
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def samefile(self, other): ... [1]
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def atime(self): ...
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"""Last access time of the file."""
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def mtime(self): ...
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"""Last-modified time of the file."""
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def ctime(self): ...
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"""
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Return the system's ctime which, on some systems (like
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Unix) is the time of the last change, and, on others (like
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Windows), is the creation time for path.
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"""
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def size(self): ...
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def access(self, mode): ... [1]
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def stat(self): ...
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def lstat(self): ...
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def statvfs(self): ... [1]
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def pathconf(self, name): ... [1]
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# Methods for manipulating information about the filesystem
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# path.
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def utime(self, times) => None
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def chmod(self, mode) => None
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def chown(self, uid, gid) => None [1]
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def rename(self, new) => None
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def renames(self, new) => None
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# Create/delete operations on directories
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def mkdir(self, mode = 0777): ...
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def makedirs(self, mode = 0777): ...
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def rmdir(self): ...
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def removedirs(self): ...
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# Modifying operations on files
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def touch(self): ...
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def remove(self): ...
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def unlink(self): ...
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# Modifying operations on links
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def link(self, newpath): ...
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def symlink(self, newlink): ...
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def readlink(self): ...
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def readlinkabs(self): ...
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# High-level functions from shutil
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def copyfile(self, dst): ...
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def copymode(self, dst): ...
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def copystat(self, dst): ...
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def copy(self, dst): ...
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def copy2(self, dst): ...
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def copytree(self, dst, symlinks = True): ...
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def move(self, dst): ...
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def rmtree(self, ignore_errors = False, onerror = None): ...
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# Special stuff from os
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def chroot(self): ... [1]
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def startfile(self): ... [1]
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Replacing older functions with the Path class
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In this section, "a ==> b" means that b can be used as a
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replacement for a.
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In the following examples, we assume that the Path class is
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imported with "from path import Path".
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1. Replacing os.path.join
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--------------------------
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os.path.join(os.getcwd(), "foobar")
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==>
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Path(Path.cwd(), "foobar")
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os.path.join("foo", "bar", "baz")
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==>
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Path("foo", "bar", "baz")
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2. Replacing os.path.splitext
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------------------------------
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fname = "Python2.4.tar.gz"
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os.path.splitext(fname)[1]
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==>
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fname = Path("Python2.4.tar.gz")
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fname.ext
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Or if you want both parts:
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fname = "Python2.4.tar.gz"
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base, ext = os.path.splitext(fname)
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==>
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fname = Path("Python2.4.tar.gz")
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base, ext = fname.namebase, fname.extx
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3. Replacing glob.glob
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-----------------------
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lib_dir = "/lib"
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libs = glob.glob(os.path.join(lib_dir, "*s.o"))
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==>
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lib_dir = Path("/lib")
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libs = lib_dir.files("*.so")
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Deprecations
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Introducing this module to the standard library introduces a need
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for the "weak" deprecation of a number of existing modules and
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functions. These modules and functions are so widely used that
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they cannot be truly deprecated, as in generating
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DeprecationWarning. Here "weak deprecation" means notes in the
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documentation only.
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The table below lists the existing functionality that should be
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deprecated.
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Path method/property Deprecates function
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-------------------- -------------------
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normcase() os.path.normcase()
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normpath() os.path.normpath()
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realpath() os.path.realpath()
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expanduser() os.path.expanduser()
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expandvars() os.path.expandvars()
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parent os.path.dirname()
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name os.path.basename()
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splitpath() os.path.split()
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drive os.path.splitdrive()
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ext os.path.splitext()
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splitunc() os.path.splitunc()
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__new__() os.path.join(), os.curdir
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listdir() os.listdir() [fnmatch.filter()]
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match() fnmatch.fnmatch()
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matchcase() fnmatch.fnmatchcase()
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glob() glob.glob()
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exists() os.path.exists()
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isabs() os.path.isabs()
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isdir() os.path.isdir()
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isfile() os.path.isfile()
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islink() os.path.islink()
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ismount() os.path.ismount()
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samefile() os.path.samefile()
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atime() os.path.getatime()
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ctime() os.path.getctime()
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mtime() os.path.getmtime()
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size() os.path.getsize()
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cwd() os.getcwd()
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access() os.access()
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stat() os.stat()
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lstat() os.lstat()
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statvfs() os.statvfs()
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pathconf() os.pathconf()
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utime() os.utime()
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chmod() os.chmod()
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chown() os.chown()
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rename() os.rename()
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renames() os.renames()
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mkdir() os.mkdir()
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makedirs() os.makedirs()
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rmdir() os.rmdir()
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removedirs() os.removedirs()
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remove() os.remove()
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unlink() os.unlink()
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link() os.link()
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symlink() os.symlink()
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readlink() os.readlink()
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chroot() os.chroot()
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startfile() os.startfile()
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copyfile() shutil.copyfile()
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copymode() shutil.copymode()
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copystat() shutil.copystat()
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copy() shutil.copy()
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copy2() shutil.copy2()
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copytree() shutil.copytree()
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move() shutil.move()
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rmtree() shutil.rmtree()
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The Path class deprecates the whole of os.path, shutil, fnmatch
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and glob. A big chunk of os is also deprecated.
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Closed Issues
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A number contentious issues have been resolved since this PEP
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first appeared on python-dev:
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* The __div__() method was removed. Overloading the / (division)
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operator may be "too much magic" and make path concatenation
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appear to be division. The method can always be re-added later
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if the BDFL so desires. In its place, __new__() got an *args
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argument that accepts both Path and string objects. The *args
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are concatenated with os.path.join() which is used to construct
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the Path object. These changes obsoleted the problematic
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joinpath() method which was removed.
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* The methods and the properties getatime()/atime,
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getctime()/ctime, getmtime()/mtime and getsize()/size duplicated
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each other. These methods and properties have been merged to
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atime(), ctime(), mtime() and size(). The reason they are not
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properties instead, is because there is a possibility that they
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may change unexpectedly. The following example is not
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guaranteed to always pass the assertion:
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p = Path("foobar")
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s = p.size()
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assert p.size() == s
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Open Issues
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Some functionality of Jason Orendorff's path module have been
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omitted:
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* Function for opening a path - better handled by the builtin
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open().
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* Functions for reading and writing whole files - better handled
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by file objects' own read() and write() methods.
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* A chdir() function may be a worthy inclusion.
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* A deprecation schedule needs to be set up. How much
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functionality should Path implement? How much of existing
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functionality should it deprecate and when?
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* The name obviously has to be either "path" or "Path," but where
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should it live? In its own module or in os?
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* Due to Path subclassing either str or unicode, the following
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non-magic, public methods are available on Path objects:
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capitalize(), center(), count(), decode(), encode(),
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endswith(), expandtabs(), find(), index(), isalnum(),
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isalpha(), isdigit(), islower(), isspace(), istitle(),
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isupper(), join(), ljust(), lower(), lstrip(), replace(),
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rfind(), rindex(), rjust(), rsplit(), rstrip(), split(),
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splitlines(), startswith(), strip(), swapcase(), title(),
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translate(), upper(), zfill()
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On python-dev it has been argued whether this inheritance is
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sane or not. Most persons debating said that most string
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methods doesn't make sense in the context of filesystem paths --
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they are just dead weight. The other position, also argued on
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python-dev, is that inheriting from string is very convenient
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because it allows code to "just work" with Path objects without
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having to be adapted for them.
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One of the problems is that at the Python level, there is no way
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to make an object "string-like enough," so that it can be passed
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to the builtin function open() (and other builtins expecting a
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string or buffer), unless the object inherits from either str or
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unicode. Therefore, to not inherit from string requires changes
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in CPython's core.
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The functions and modules that this new module is trying to
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replace (os.path, shutil, fnmatch, glob and parts of os) are
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expected to be available in future Python versions for a long
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time, to preserve backwards compatibility.
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Reference Implementation
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Currently, the Path class is implemented as a thin wrapper around
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the standard library modules fnmatch, glob, os, os.path and
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shutil. The intention of this PEP is to move functionality from
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the aforementioned modules to Path while they are being
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deprecated.
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For more detail and an implementation see:
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http://wiki.python.org/moin/PathModule
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Examples
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In this section, "a ==> b" means that b can be used as a
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replacement for a.
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1. Make all python files in the a directory executable
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------------------------------------------------------
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DIR = '/usr/home/guido/bin'
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for f in os.listdir(DIR):
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if f.endswith('.py'):
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path = os.path.join(DIR, f)
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os.chmod(path, 0755)
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==>
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for f in Path('/usr/home/guido/bin').files("*.py"):
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f.chmod(0755)
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2. Delete emacs backup files
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----------------------------
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def delete_backups(arg, dirname, names):
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for name in names:
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if name.endswith('~'):
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os.remove(os.path.join(dirname, name))
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os.path.walk(os.environ['HOME'], delete_backups, None)
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==>
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d = Path(os.environ['HOME'])
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for f in d.walkfiles('*~'):
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f.remove()
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3. Finding the relative path to a file
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--------------------------------------
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b = Path('/users/peter/')
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a = Path('/users/peter/synergy/tiki.txt')
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a.relpathto(b)
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4. Splitting a path into directory and filename
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-----------------------------------------------
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os.path.split("/path/to/foo/bar.txt")
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==>
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Path("/path/to/foo/bar.txt").splitpath()
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5. List all Python scripts in the current directory tree
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--------------------------------------------------------
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list(Path().walkfiles("*.py"))
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References and Footnotes
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[1] Method is not guaranteed to be available on all platforms.
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[2] "(idea) subclassable string: path object?", van Rossum, 2001
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http://mail.python.org/pipermail/python-dev/2001-August/016663.html
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[3] "path module v1.0 released", Orendorff, 2003
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http://mail.python.org/pipermail/python-announce-list/2003-January/001984.html
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[4] "Some RFE for review", Birkenfeld, 2005
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http://mail.python.org/pipermail/python-dev/2005-June/054438.html
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[5] "path module", Orendorff, 2003
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http://mail.python.org/pipermail/python-list/2003-July/174289.html
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[6] "PRE-PEP: new Path class", Roth, 2004
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http://mail.python.org/pipermail/python-list/2004-January/201672.html
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[7] http://wiki.python.org/moin/PathClass
|
||
|
||
|
||
Copyright
|
||
|
||
This document has been placed in the public domain.
|
||
|
||
|
||
Local Variables:
|
||
mode: indented-text
|
||
indent-tabs-mode: nil
|
||
sentence-end-double-space: t
|
||
fill-column: 70
|
||
coding: utf-8
|
||
End:
|