import os
import sys
import stat
import fnmatch
import collections
import errno
try:
import zlib
del zlib
_ZLIB_SUPPORTED = True
except ImportError:
_ZLIB_SUPPORTED = False
try:
import bz2
del bz2
_BZ2_SUPPORTED = True
except ImportError:
_BZ2_SUPPORTED = False
try:
import lzma
del lzma
_LZMA_SUPPORTED = True
except ImportError:
_LZMA_SUPPORTED = False
try:
from compression import zstd
del zstd
_ZSTD_SUPPORTED = True
except ImportError:
_ZSTD_SUPPORTED = False
_WINDOWS = os.name == 'nt'
posix = nt = None
if os.name == 'posix':
import posix
elif _WINDOWS:
import nt
if sys.platform == 'win32':
import _winapi
else:
_winapi = None
COPY_BUFSIZE = 1024 * 1024 if _WINDOWS else 256 * 1024
_USE_CP_SENDFILE = (hasattr(os, "sendfile")
and sys.platform.startswith(("linux", "android", "sunos")))
_USE_CP_COPY_FILE_RANGE = hasattr(os, "copy_file_range")
_HAS_FCOPYFILE = posix and hasattr(posix, "_fcopyfile")
_WIN_DEFAULT_PATHEXT = ".COM;.EXE;.BAT;.CMD;.VBS;.JS;.WS;.MSC"
__all__ = ["copyfileobj", "copyfile", "copymode", "copystat", "copy", "copy2",
"copytree", "move", "rmtree", "Error", "SpecialFileError",
"make_archive", "get_archive_formats",
"register_archive_format", "unregister_archive_format",
"get_unpack_formats", "register_unpack_format",
"unregister_unpack_format", "unpack_archive",
"ignore_patterns", "chown", "which", "get_terminal_size",
"SameFileError"]
class Error(OSError):
pass
class SameFileError(Error):
class SpecialFileError(OSError):
class ReadError(OSError):
class RegistryError(Exception):
class _GiveupOnFastCopy(Exception):
def _fastcopy_fcopyfile(fsrc, fdst, flags):
try:
infd = fsrc.fileno()
outfd = fdst.fileno()
except Exception as err:
raise _GiveupOnFastCopy(err)
try:
posix._fcopyfile(infd, outfd, flags)
except OSError as err:
err.filename = fsrc.name
err.filename2 = fdst.name
if err.errno in {errno.EINVAL, errno.ENOTSUP}:
raise _GiveupOnFastCopy(err)
else:
raise err from None
def _determine_linux_fastcopy_blocksize(infd):
try:
blocksize = max(os.fstat(infd).st_size, 2 ** 23) except OSError:
blocksize = 2 ** 27 if sys.maxsize < 2 ** 32:
blocksize = min(blocksize, 2 ** 30)
return blocksize
def _fastcopy_copy_file_range(fsrc, fdst):
try:
infd = fsrc.fileno()
outfd = fdst.fileno()
except Exception as err:
raise _GiveupOnFastCopy(err)
blocksize = _determine_linux_fastcopy_blocksize(infd)
offset = 0
while True:
try:
n_copied = os.copy_file_range(infd, outfd, blocksize, offset_dst=offset)
except OSError as err:
err.filename = fsrc.name
err.filename2 = fdst.name
if err.errno == errno.ENOSPC: raise err from None
if offset == 0 and os.lseek(outfd, 0, os.SEEK_CUR) == 0:
raise _GiveupOnFastCopy(err)
raise err
else:
if n_copied == 0:
if offset == 0:
raise _GiveupOnFastCopy()
break
offset += n_copied
def _fastcopy_sendfile(fsrc, fdst):
global _USE_CP_SENDFILE
try:
infd = fsrc.fileno()
outfd = fdst.fileno()
except Exception as err:
raise _GiveupOnFastCopy(err)
blocksize = _determine_linux_fastcopy_blocksize(infd)
offset = 0
while True:
try:
sent = os.sendfile(outfd, infd, offset, blocksize)
except OSError as err:
err.filename = fsrc.name
err.filename2 = fdst.name
if err.errno == errno.ENOTSOCK:
_USE_CP_SENDFILE = False
raise _GiveupOnFastCopy(err)
if err.errno == errno.ENOSPC: raise err from None
if offset == 0 and os.lseek(outfd, 0, os.SEEK_CUR) == 0:
raise _GiveupOnFastCopy(err)
raise err
else:
if sent == 0:
break offset += sent
def _copyfileobj_readinto(fsrc, fdst, length=COPY_BUFSIZE):
fsrc_readinto = fsrc.readinto
fdst_write = fdst.write
with memoryview(bytearray(length)) as mv:
while True:
n = fsrc_readinto(mv)
if not n:
break
elif n < length:
with mv[:n] as smv:
fdst_write(smv)
break
else:
fdst_write(mv)
def copyfileobj(fsrc, fdst, length=0):
if not length:
length = COPY_BUFSIZE
fsrc_read = fsrc.read
fdst_write = fdst.write
while buf := fsrc_read(length):
fdst_write(buf)
def _samefile(src, dst):
if isinstance(src, os.DirEntry) and hasattr(os.path, 'samestat'):
try:
return os.path.samestat(src.stat(), os.stat(dst))
except OSError:
return False
if hasattr(os.path, 'samefile'):
try:
return os.path.samefile(src, dst)
except OSError:
return False
return (os.path.normcase(os.path.abspath(src)) ==
os.path.normcase(os.path.abspath(dst)))
def _stat(fn):
return fn.stat() if isinstance(fn, os.DirEntry) else os.stat(fn)
def _islink(fn):
return fn.is_symlink() if isinstance(fn, os.DirEntry) else os.path.islink(fn)
def copyfile(src, dst, *, follow_symlinks=True):
sys.audit("shutil.copyfile", src, dst)
if _samefile(src, dst):
raise SameFileError("{!r} and {!r} are the same file".format(src, dst))
file_size = 0
for i, fn in enumerate([src, dst]):
try:
st = _stat(fn)
except OSError:
pass
else:
if stat.S_ISFIFO(st.st_mode):
fn = fn.path if isinstance(fn, os.DirEntry) else fn
raise SpecialFileError("`%s` is a named pipe" % fn)
if _WINDOWS and i == 0:
file_size = st.st_size
if not follow_symlinks and _islink(src):
os.symlink(os.readlink(src), dst)
else:
with open(src, 'rb') as fsrc:
try:
with open(dst, 'wb') as fdst:
if _HAS_FCOPYFILE:
try:
_fastcopy_fcopyfile(fsrc, fdst, posix._COPYFILE_DATA)
return dst
except _GiveupOnFastCopy:
pass
elif _USE_CP_SENDFILE or _USE_CP_COPY_FILE_RANGE:
if _USE_CP_COPY_FILE_RANGE:
try:
_fastcopy_copy_file_range(fsrc, fdst)
return dst
except _GiveupOnFastCopy:
pass
if _USE_CP_SENDFILE:
try:
_fastcopy_sendfile(fsrc, fdst)
return dst
except _GiveupOnFastCopy:
pass
elif _WINDOWS and file_size > 0:
_copyfileobj_readinto(fsrc, fdst, min(file_size, COPY_BUFSIZE))
return dst
copyfileobj(fsrc, fdst)
except IsADirectoryError as e:
if not os.path.exists(dst):
raise FileNotFoundError(f'Directory does not exist: {dst}') from e
else:
raise
return dst
def copymode(src, dst, *, follow_symlinks=True):
sys.audit("shutil.copymode", src, dst)
if not follow_symlinks and _islink(src) and os.path.islink(dst):
if hasattr(os, 'lchmod'):
stat_func, chmod_func = os.lstat, os.lchmod
else:
return
else:
stat_func = _stat
if os.name == 'nt' and os.path.islink(dst):
def chmod_func(*args):
os.chmod(*args, follow_symlinks=True)
else:
chmod_func = os.chmod
st = stat_func(src)
chmod_func(dst, stat.S_IMODE(st.st_mode))
if hasattr(os, 'listxattr'):
def _copyxattr(src, dst, *, follow_symlinks=True):
try:
names = os.listxattr(src, follow_symlinks=follow_symlinks)
except OSError as e:
if e.errno not in (errno.ENOTSUP, errno.ENODATA, errno.EINVAL):
raise
return
for name in names:
try:
value = os.getxattr(src, name, follow_symlinks=follow_symlinks)
os.setxattr(dst, name, value, follow_symlinks=follow_symlinks)
except OSError as e:
if e.errno not in (errno.EPERM, errno.ENOTSUP, errno.ENODATA,
errno.EINVAL, errno.EACCES):
raise
else:
def _copyxattr(*args, **kwargs):
pass
def copystat(src, dst, *, follow_symlinks=True):
sys.audit("shutil.copystat", src, dst)
def _nop(*args, ns=None, follow_symlinks=None):
pass
follow = follow_symlinks or not (_islink(src) and os.path.islink(dst))
if follow:
def lookup(name):
return getattr(os, name, _nop)
else:
def lookup(name):
fn = getattr(os, name, _nop)
if fn in os.supports_follow_symlinks:
return fn
return _nop
if isinstance(src, os.DirEntry):
st = src.stat(follow_symlinks=follow)
else:
st = lookup("stat")(src, follow_symlinks=follow)
mode = stat.S_IMODE(st.st_mode)
lookup("utime")(dst, ns=(st.st_atime_ns, st.st_mtime_ns),
follow_symlinks=follow)
_copyxattr(src, dst, follow_symlinks=follow)
try:
lookup("chmod")(dst, mode, follow_symlinks=follow)
except NotImplementedError:
pass
if hasattr(st, 'st_flags'):
try:
lookup("chflags")(dst, st.st_flags, follow_symlinks=follow)
except OSError as why:
for err in 'EOPNOTSUPP', 'ENOTSUP':
if hasattr(errno, err) and why.errno == getattr(errno, err):
break
else:
raise
def copy(src, dst, *, follow_symlinks=True):
if os.path.isdir(dst):
dst = os.path.join(dst, os.path.basename(src))
copyfile(src, dst, follow_symlinks=follow_symlinks)
copymode(src, dst, follow_symlinks=follow_symlinks)
return dst
def copy2(src, dst, *, follow_symlinks=True):
if os.path.isdir(dst):
dst = os.path.join(dst, os.path.basename(src))
if hasattr(_winapi, "CopyFile2"):
src_ = os.fsdecode(src)
dst_ = os.fsdecode(dst)
flags = _winapi.COPY_FILE_ALLOW_DECRYPTED_DESTINATION if not follow_symlinks:
flags |= _winapi.COPY_FILE_COPY_SYMLINK
try:
_winapi.CopyFile2(src_, dst_, flags)
return dst
except OSError as exc:
if (exc.winerror == _winapi.ERROR_PRIVILEGE_NOT_HELD
and not follow_symlinks):
pass
elif exc.winerror == _winapi.ERROR_ACCESS_DENIED:
pass
else:
raise
copyfile(src, dst, follow_symlinks=follow_symlinks)
copystat(src, dst, follow_symlinks=follow_symlinks)
return dst
def ignore_patterns(*patterns):
def _ignore_patterns(path, names):
ignored_names = []
for pattern in patterns:
ignored_names.extend(fnmatch.filter(names, pattern))
return set(ignored_names)
return _ignore_patterns
def _copytree(entries, src, dst, symlinks, ignore, copy_function,
ignore_dangling_symlinks, dirs_exist_ok=False):
if ignore is not None:
ignored_names = ignore(os.fspath(src), [x.name for x in entries])
else:
ignored_names = ()
os.makedirs(dst, exist_ok=dirs_exist_ok)
errors = []
use_srcentry = copy_function is copy2 or copy_function is copy
for srcentry in entries:
if srcentry.name in ignored_names:
continue
srcname = os.path.join(src, srcentry.name)
dstname = os.path.join(dst, srcentry.name)
srcobj = srcentry if use_srcentry else srcname
try:
is_symlink = srcentry.is_symlink()
if is_symlink and os.name == 'nt':
lstat = srcentry.stat(follow_symlinks=False)
if lstat.st_reparse_tag == stat.IO_REPARSE_TAG_MOUNT_POINT:
is_symlink = False
if is_symlink:
linkto = os.readlink(srcname)
if symlinks:
os.symlink(linkto, dstname)
copystat(srcobj, dstname, follow_symlinks=not symlinks)
else:
if not os.path.exists(linkto) and ignore_dangling_symlinks:
continue
if srcentry.is_dir():
copytree(srcobj, dstname, symlinks, ignore,
copy_function, ignore_dangling_symlinks,
dirs_exist_ok)
else:
copy_function(srcobj, dstname)
elif srcentry.is_dir():
copytree(srcobj, dstname, symlinks, ignore, copy_function,
ignore_dangling_symlinks, dirs_exist_ok)
else:
copy_function(srcobj, dstname)
except Error as err:
errors.extend(err.args[0])
except OSError as why:
errors.append((srcname, dstname, str(why)))
try:
copystat(src, dst)
except OSError as why:
if getattr(why, 'winerror', None) is None:
errors.append((src, dst, str(why)))
if errors:
raise Error(errors)
return dst
def copytree(src, dst, symlinks=False, ignore=None, copy_function=copy2,
ignore_dangling_symlinks=False, dirs_exist_ok=False):
sys.audit("shutil.copytree", src, dst)
with os.scandir(src) as itr:
entries = list(itr)
return _copytree(entries=entries, src=src, dst=dst, symlinks=symlinks,
ignore=ignore, copy_function=copy_function,
ignore_dangling_symlinks=ignore_dangling_symlinks,
dirs_exist_ok=dirs_exist_ok)
if hasattr(os.stat_result, 'st_file_attributes'):
def _rmtree_islink(st):
return (stat.S_ISLNK(st.st_mode) or
(st.st_file_attributes & stat.FILE_ATTRIBUTE_REPARSE_POINT
and st.st_reparse_tag == stat.IO_REPARSE_TAG_MOUNT_POINT))
else:
def _rmtree_islink(st):
return stat.S_ISLNK(st.st_mode)
def _rmtree_unsafe(path, dir_fd, onexc):
if dir_fd is not None:
raise NotImplementedError("dir_fd unavailable on this platform")
try:
st = os.lstat(path)
except OSError as err:
onexc(os.lstat, path, err)
return
try:
if _rmtree_islink(st):
raise OSError("Cannot call rmtree on a symbolic link")
except OSError as err:
onexc(os.path.islink, path, err)
return
def onerror(err):
if not isinstance(err, FileNotFoundError):
onexc(os.scandir, err.filename, err)
results = os.walk(path, topdown=False, onerror=onerror, followlinks=os._walk_symlinks_as_files)
for dirpath, dirnames, filenames in results:
for name in dirnames:
fullname = os.path.join(dirpath, name)
try:
os.rmdir(fullname)
except FileNotFoundError:
continue
except OSError as err:
onexc(os.rmdir, fullname, err)
for name in filenames:
fullname = os.path.join(dirpath, name)
try:
os.unlink(fullname)
except FileNotFoundError:
continue
except OSError as err:
onexc(os.unlink, fullname, err)
try:
os.rmdir(path)
except FileNotFoundError:
pass
except OSError as err:
onexc(os.rmdir, path, err)
def _rmtree_safe_fd(path, dir_fd, onexc):
if isinstance(path, bytes):
path = os.fsdecode(path)
stack = [(os.lstat, dir_fd, path, None)]
try:
while stack:
_rmtree_safe_fd_step(stack, onexc)
finally:
while stack:
func, fd, path, entry = stack.pop()
if func is not os.close:
continue
try:
os.close(fd)
except OSError as err:
onexc(os.close, path, err)
def _rmtree_safe_fd_step(stack, onexc):
func, dirfd, path, orig_entry = stack.pop()
name = path if orig_entry is None else orig_entry.name
try:
if func is os.close:
os.close(dirfd)
return
if func is os.rmdir:
os.rmdir(name, dir_fd=dirfd)
return
assert func is os.lstat
if orig_entry is None:
orig_st = os.lstat(name, dir_fd=dirfd)
else:
orig_st = orig_entry.stat(follow_symlinks=False)
func = os.open topfd = os.open(name, os.O_RDONLY | os.O_NONBLOCK, dir_fd=dirfd)
func = os.path.islink try:
if not os.path.samestat(orig_st, os.fstat(topfd)):
raise OSError("Cannot call rmtree on a symbolic link")
stack.append((os.rmdir, dirfd, path, orig_entry))
finally:
stack.append((os.close, topfd, path, orig_entry))
func = os.scandir with os.scandir(topfd) as scandir_it:
entries = list(scandir_it)
for entry in entries:
fullname = os.path.join(path, entry.name)
try:
if entry.is_dir(follow_symlinks=False):
stack.append((os.lstat, topfd, fullname, entry))
continue
except FileNotFoundError:
continue
except OSError:
pass
try:
os.unlink(entry.name, dir_fd=topfd)
except FileNotFoundError:
continue
except OSError as err:
onexc(os.unlink, fullname, err)
except FileNotFoundError as err:
if orig_entry is None or func is os.close:
err.filename = path
onexc(func, path, err)
except OSError as err:
err.filename = path
onexc(func, path, err)
_use_fd_functions = ({os.open, os.stat, os.unlink, os.rmdir} <=
os.supports_dir_fd and
os.scandir in os.supports_fd and
os.stat in os.supports_follow_symlinks)
_rmtree_impl = _rmtree_safe_fd if _use_fd_functions else _rmtree_unsafe
def rmtree(path, ignore_errors=False, onerror=None, *, onexc=None, dir_fd=None):
sys.audit("shutil.rmtree", path, dir_fd)
if ignore_errors:
def onexc(*args):
pass
elif onerror is None and onexc is None:
def onexc(*args):
raise
elif onexc is None:
if onerror is None:
def onexc(*args):
raise
else:
def onexc(*args):
func, path, exc = args
if exc is None:
exc_info = None, None, None
else:
exc_info = type(exc), exc, exc.__traceback__
return onerror(func, path, exc_info)
_rmtree_impl(path, dir_fd, onexc)
rmtree.avoids_symlink_attacks = _use_fd_functions
def _basename(path):
path = os.fspath(path)
sep = os.path.sep + (os.path.altsep or '')
return os.path.basename(path.rstrip(sep))
def move(src, dst, copy_function=copy2):
sys.audit("shutil.move", src, dst)
real_dst = dst
if os.path.isdir(dst):
if _samefile(src, dst) and not os.path.islink(src):
os.rename(src, dst)
return
real_dst = os.path.join(dst, _basename(src))
if os.path.exists(real_dst):
raise Error("Destination path '%s' already exists" % real_dst)
try:
os.rename(src, real_dst)
except OSError:
if os.path.islink(src):
linkto = os.readlink(src)
os.symlink(linkto, real_dst)
os.unlink(src)
elif os.path.isdir(src):
if _destinsrc(src, dst):
raise Error("Cannot move a directory '%s' into itself"
" '%s'." % (src, dst))
if (_is_immutable(src)
or (not os.access(src, os.W_OK) and os.listdir(src)
and sys.platform == 'darwin')):
raise PermissionError("Cannot move the non-empty directory "
"'%s': Lacking write permission to '%s'."
% (src, src))
copytree(src, real_dst, copy_function=copy_function,
symlinks=True)
rmtree(src)
else:
copy_function(src, real_dst)
os.unlink(src)
return real_dst
def _destinsrc(src, dst):
src = os.path.abspath(src)
dst = os.path.abspath(dst)
if not src.endswith(os.path.sep):
src += os.path.sep
if not dst.endswith(os.path.sep):
dst += os.path.sep
return dst.startswith(src)
def _is_immutable(src):
st = _stat(src)
immutable_states = [stat.UF_IMMUTABLE, stat.SF_IMMUTABLE]
return hasattr(st, 'st_flags') and st.st_flags in immutable_states
def _get_gid(name):
if name is None:
return None
try:
from grp import getgrnam
except ImportError:
return None
try:
result = getgrnam(name)
except KeyError:
result = None
if result is not None:
return result[2]
return None
def _get_uid(name):
if name is None:
return None
try:
from pwd import getpwnam
except ImportError:
return None
try:
result = getpwnam(name)
except KeyError:
result = None
if result is not None:
return result[2]
return None
def _make_tarball(base_name, base_dir, compress="gzip", verbose=0, dry_run=0,
owner=None, group=None, logger=None, root_dir=None):
if compress is None:
tar_compression = ''
elif _ZLIB_SUPPORTED and compress == 'gzip':
tar_compression = 'gz'
elif _BZ2_SUPPORTED and compress == 'bzip2':
tar_compression = 'bz2'
elif _LZMA_SUPPORTED and compress == 'xz':
tar_compression = 'xz'
elif _ZSTD_SUPPORTED and compress == 'zst':
tar_compression = 'zst'
else:
raise ValueError("bad value for 'compress', or compression format not "
"supported : {0}".format(compress))
import tarfile
compress_ext = '.' + tar_compression if compress else ''
archive_name = base_name + '.tar' + compress_ext
archive_dir = os.path.dirname(archive_name)
if archive_dir and not os.path.exists(archive_dir):
if logger is not None:
logger.info("creating %s", archive_dir)
if not dry_run:
os.makedirs(archive_dir)
if logger is not None:
logger.info('Creating tar archive')
uid = _get_uid(owner)
gid = _get_gid(group)
def _set_uid_gid(tarinfo):
if gid is not None:
tarinfo.gid = gid
tarinfo.gname = group
if uid is not None:
tarinfo.uid = uid
tarinfo.uname = owner
return tarinfo
if not dry_run:
tar = tarfile.open(archive_name, 'w|%s' % tar_compression)
arcname = base_dir
if root_dir is not None:
base_dir = os.path.join(root_dir, base_dir)
try:
tar.add(base_dir, arcname, filter=_set_uid_gid)
finally:
tar.close()
if root_dir is not None:
archive_name = os.path.abspath(archive_name)
return archive_name
def _make_zipfile(base_name, base_dir, verbose=0, dry_run=0,
logger=None, owner=None, group=None, root_dir=None):
import zipfile
zip_filename = base_name + ".zip"
archive_dir = os.path.dirname(base_name)
if archive_dir and not os.path.exists(archive_dir):
if logger is not None:
logger.info("creating %s", archive_dir)
if not dry_run:
os.makedirs(archive_dir)
if logger is not None:
logger.info("creating '%s' and adding '%s' to it",
zip_filename, base_dir)
if not dry_run:
with zipfile.ZipFile(zip_filename, "w",
compression=zipfile.ZIP_DEFLATED) as zf:
arcname = os.path.normpath(base_dir)
if root_dir is not None:
base_dir = os.path.join(root_dir, base_dir)
base_dir = os.path.normpath(base_dir)
if arcname != os.curdir:
zf.write(base_dir, arcname)
if logger is not None:
logger.info("adding '%s'", base_dir)
for dirpath, dirnames, filenames in os.walk(base_dir):
arcdirpath = dirpath
if root_dir is not None:
arcdirpath = os.path.relpath(arcdirpath, root_dir)
arcdirpath = os.path.normpath(arcdirpath)
for name in sorted(dirnames):
path = os.path.join(dirpath, name)
arcname = os.path.join(arcdirpath, name)
zf.write(path, arcname)
if logger is not None:
logger.info("adding '%s'", path)
for name in filenames:
path = os.path.join(dirpath, name)
path = os.path.normpath(path)
if os.path.isfile(path):
arcname = os.path.join(arcdirpath, name)
zf.write(path, arcname)
if logger is not None:
logger.info("adding '%s'", path)
if root_dir is not None:
zip_filename = os.path.abspath(zip_filename)
return zip_filename
_make_tarball.supports_root_dir = True
_make_zipfile.supports_root_dir = True
_ARCHIVE_FORMATS = {
'tar': (_make_tarball, [('compress', None)],
"uncompressed tar file"),
}
if _ZLIB_SUPPORTED:
_ARCHIVE_FORMATS['gztar'] = (_make_tarball, [('compress', 'gzip')],
"gzip'ed tar-file")
_ARCHIVE_FORMATS['zip'] = (_make_zipfile, [], "ZIP file")
if _BZ2_SUPPORTED:
_ARCHIVE_FORMATS['bztar'] = (_make_tarball, [('compress', 'bzip2')],
"bzip2'ed tar-file")
if _LZMA_SUPPORTED:
_ARCHIVE_FORMATS['xztar'] = (_make_tarball, [('compress', 'xz')],
"xz'ed tar-file")
if _ZSTD_SUPPORTED:
_ARCHIVE_FORMATS['zstdtar'] = (_make_tarball, [('compress', 'zst')],
"zstd'ed tar-file")
def get_archive_formats():
formats = [(name, registry[2]) for name, registry in
_ARCHIVE_FORMATS.items()]
formats.sort()
return formats
def register_archive_format(name, function, extra_args=None, description=''):
if extra_args is None:
extra_args = []
if not callable(function):
raise TypeError('The %s object is not callable' % function)
if not isinstance(extra_args, (tuple, list)):
raise TypeError('extra_args needs to be a sequence')
for element in extra_args:
if not isinstance(element, (tuple, list)) or len(element) !=2:
raise TypeError('extra_args elements are : (arg_name, value)')
_ARCHIVE_FORMATS[name] = (function, extra_args, description)
def unregister_archive_format(name):
del _ARCHIVE_FORMATS[name]
def make_archive(base_name, format, root_dir=None, base_dir=None, verbose=0,
dry_run=0, owner=None, group=None, logger=None):
sys.audit("shutil.make_archive", base_name, format, root_dir, base_dir)
try:
format_info = _ARCHIVE_FORMATS[format]
except KeyError:
raise ValueError("unknown archive format '%s'" % format) from None
kwargs = {'dry_run': dry_run, 'logger': logger,
'owner': owner, 'group': group}
func = format_info[0]
for arg, val in format_info[1]:
kwargs[arg] = val
if base_dir is None:
base_dir = os.curdir
supports_root_dir = getattr(func, 'supports_root_dir', False)
save_cwd = None
if root_dir is not None:
stmd = os.stat(root_dir).st_mode
if not stat.S_ISDIR(stmd):
raise NotADirectoryError(errno.ENOTDIR, 'Not a directory', root_dir)
if supports_root_dir:
base_name = os.fspath(base_name)
kwargs['root_dir'] = root_dir
else:
save_cwd = os.getcwd()
if logger is not None:
logger.debug("changing into '%s'", root_dir)
base_name = os.path.abspath(base_name)
if not dry_run:
os.chdir(root_dir)
try:
filename = func(base_name, base_dir, **kwargs)
finally:
if save_cwd is not None:
if logger is not None:
logger.debug("changing back to '%s'", save_cwd)
os.chdir(save_cwd)
return filename
def get_unpack_formats():
formats = [(name, info[0], info[3]) for name, info in
_UNPACK_FORMATS.items()]
formats.sort()
return formats
def _check_unpack_options(extensions, function, extra_args):
existing_extensions = {}
for name, info in _UNPACK_FORMATS.items():
for ext in info[0]:
existing_extensions[ext] = name
for extension in extensions:
if extension in existing_extensions:
msg = '%s is already registered for "%s"'
raise RegistryError(msg % (extension,
existing_extensions[extension]))
if not callable(function):
raise TypeError('The registered function must be a callable')
def register_unpack_format(name, extensions, function, extra_args=None,
description=''):
if extra_args is None:
extra_args = []
_check_unpack_options(extensions, function, extra_args)
_UNPACK_FORMATS[name] = extensions, function, extra_args, description
def unregister_unpack_format(name):
del _UNPACK_FORMATS[name]
def _ensure_directory(path):
dirname = os.path.dirname(path)
if not os.path.isdir(dirname):
os.makedirs(dirname)
def _unpack_zipfile(filename, extract_dir):
import zipfile
if not zipfile.is_zipfile(filename):
raise ReadError("%s is not a zip file" % filename)
zip = zipfile.ZipFile(filename)
try:
for info in zip.infolist():
name = info.filename
if name.startswith('/') or '..' in name:
continue
targetpath = os.path.join(extract_dir, *name.split('/'))
if not targetpath:
continue
_ensure_directory(targetpath)
if not name.endswith('/'):
with zip.open(name, 'r') as source, \
open(targetpath, 'wb') as target:
copyfileobj(source, target)
finally:
zip.close()
def _unpack_tarfile(filename, extract_dir, *, filter=None):
import tarfile try:
tarobj = tarfile.open(filename)
except tarfile.TarError:
raise ReadError(
"%s is not a compressed or uncompressed tar file" % filename)
try:
tarobj.extractall(extract_dir, filter=filter)
finally:
tarobj.close()
_UNPACK_FORMATS = {
'tar': (['.tar'], _unpack_tarfile, [], "uncompressed tar file"),
'zip': (['.zip'], _unpack_zipfile, [], "ZIP file"),
}
if _ZLIB_SUPPORTED:
_UNPACK_FORMATS['gztar'] = (['.tar.gz', '.tgz'], _unpack_tarfile, [],
"gzip'ed tar-file")
if _BZ2_SUPPORTED:
_UNPACK_FORMATS['bztar'] = (['.tar.bz2', '.tbz2'], _unpack_tarfile, [],
"bzip2'ed tar-file")
if _LZMA_SUPPORTED:
_UNPACK_FORMATS['xztar'] = (['.tar.xz', '.txz'], _unpack_tarfile, [],
"xz'ed tar-file")
if _ZSTD_SUPPORTED:
_UNPACK_FORMATS['zstdtar'] = (['.tar.zst', '.tzst'], _unpack_tarfile, [],
"zstd'ed tar-file")
def _find_unpack_format(filename):
for name, info in _UNPACK_FORMATS.items():
for extension in info[0]:
if filename.endswith(extension):
return name
return None
def unpack_archive(filename, extract_dir=None, format=None, *, filter=None):
sys.audit("shutil.unpack_archive", filename, extract_dir, format)
if extract_dir is None:
extract_dir = os.getcwd()
extract_dir = os.fspath(extract_dir)
filename = os.fspath(filename)
if filter is None:
filter_kwargs = {}
else:
filter_kwargs = {'filter': filter}
if format is not None:
try:
format_info = _UNPACK_FORMATS[format]
except KeyError:
raise ValueError("Unknown unpack format '{0}'".format(format)) from None
func = format_info[1]
func(filename, extract_dir, **dict(format_info[2]), **filter_kwargs)
else:
format = _find_unpack_format(filename)
if format is None:
raise ReadError("Unknown archive format '{0}'".format(filename))
func = _UNPACK_FORMATS[format][1]
kwargs = dict(_UNPACK_FORMATS[format][2]) | filter_kwargs
func(filename, extract_dir, **kwargs)
if hasattr(os, 'statvfs'):
__all__.append('disk_usage')
_ntuple_diskusage = collections.namedtuple('usage', 'total used free')
_ntuple_diskusage.total.__doc__ = 'Total space in bytes'
_ntuple_diskusage.used.__doc__ = 'Used space in bytes'
_ntuple_diskusage.free.__doc__ = 'Free space in bytes'
def disk_usage(path):
st = os.statvfs(path)
free = st.f_bavail * st.f_frsize
total = st.f_blocks * st.f_frsize
used = (st.f_blocks - st.f_bfree) * st.f_frsize
return _ntuple_diskusage(total, used, free)
elif _WINDOWS:
__all__.append('disk_usage')
_ntuple_diskusage = collections.namedtuple('usage', 'total used free')
def disk_usage(path):
total, free = nt._getdiskusage(path)
used = total - free
return _ntuple_diskusage(total, used, free)
def chown(path, user=None, group=None, *, dir_fd=None, follow_symlinks=True):
sys.audit('shutil.chown', path, user, group)
if user is None and group is None:
raise ValueError("user and/or group must be set")
_user = user
_group = group
if user is None:
_user = -1
elif isinstance(user, str):
_user = _get_uid(user)
if _user is None:
raise LookupError("no such user: {!r}".format(user))
if group is None:
_group = -1
elif not isinstance(group, int):
_group = _get_gid(group)
if _group is None:
raise LookupError("no such group: {!r}".format(group))
os.chown(path, _user, _group, dir_fd=dir_fd,
follow_symlinks=follow_symlinks)
def get_terminal_size(fallback=(80, 24)):
try:
columns = int(os.environ['COLUMNS'])
except (KeyError, ValueError):
columns = 0
try:
lines = int(os.environ['LINES'])
except (KeyError, ValueError):
lines = 0
if columns <= 0 or lines <= 0:
try:
size = os.get_terminal_size(sys.__stdout__.fileno())
except (AttributeError, ValueError, OSError):
size = os.terminal_size(fallback)
if columns <= 0:
columns = size.columns or fallback[0]
if lines <= 0:
lines = size.lines or fallback[1]
return os.terminal_size((columns, lines))
def _access_check(fn, mode):
return (os.path.exists(fn) and os.access(fn, mode)
and not os.path.isdir(fn))
def _win_path_needs_curdir(cmd, mode):
return (not (mode & os.X_OK)) or _winapi.NeedCurrentDirectoryForExePath(
os.fsdecode(cmd))
def which(cmd, mode=os.F_OK | os.X_OK, path=None):
use_bytes = isinstance(cmd, bytes)
dirname, cmd = os.path.split(cmd)
if dirname:
path = [dirname]
else:
if path is None:
path = os.environ.get("PATH", None)
if path is None:
try:
path = os.confstr("CS_PATH")
except (AttributeError, ValueError):
path = os.defpath
if not path:
return None
if use_bytes:
path = os.fsencode(path)
path = path.split(os.fsencode(os.pathsep))
else:
path = os.fsdecode(path)
path = path.split(os.pathsep)
if sys.platform == "win32" and _win_path_needs_curdir(cmd, mode):
curdir = os.curdir
if use_bytes:
curdir = os.fsencode(curdir)
path.insert(0, curdir)
if sys.platform == "win32":
pathext_source = os.getenv("PATHEXT") or _WIN_DEFAULT_PATHEXT
pathext = pathext_source.split(os.pathsep)
pathext = [ext.rstrip('.') for ext in pathext if ext]
if use_bytes:
pathext = [os.fsencode(ext) for ext in pathext]
files = [cmd + ext for ext in pathext]
normcmd = cmd.upper()
if not (mode & os.X_OK) or any(normcmd.endswith(ext.upper()) for ext in pathext):
files.insert(0, cmd)
else:
files = [cmd]
seen = set()
for dir in path:
normdir = os.path.normcase(dir)
if normdir not in seen:
seen.add(normdir)
for thefile in files:
name = os.path.join(dir, thefile)
if _access_check(name, mode):
return name
return None
def __getattr__(name):
if name == "ExecError":
import warnings
warnings._deprecated(
"shutil.ExecError",
f"{warnings._DEPRECATED_MSG}; it "
"isn't raised by any shutil function.",
remove=(3, 16)
)
return RuntimeError
raise AttributeError(f"module {__name__!r} has no attribute {name!r}")