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Issue #8633: Support for POSIX.1-2008 binary pax headers.
tarfile is now able to read and write pax headers with a "hdrcharset=BINARY" record. This record was introduced in POSIX.1-2008 as a method to store unencoded binary strings that cannot be translated to UTF-8. In practice, this is just a workaround that allows a tar implementation to store filenames that do not comply with the current filesystem encoding and thus cannot be decoded correctly. Additionally, tarfile works around a bug in current versions of GNU tar: undecodable filenames are stored as-is in a pax header without a "hdrcharset" record being added. Technically, these headers are invalid, but tarfile manages to read them correctly anyway.
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@ -711,6 +711,8 @@ converted. Possible values are listed in section :ref:`codec-base-classes`.
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The default scheme is ``'surrogateescape'`` which Python also uses for its
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file system calls, see :ref:`os-filenames`.
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In case of writing :const:`PAX_FORMAT` archives, *encoding* is ignored because
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non-ASCII metadata is stored using *UTF-8*. Storing surrogate characters is not
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possible and will raise a :exc:`UnicodeEncodeError`.
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In case of :const:`PAX_FORMAT` archives, *encoding* is generally not needed
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because all the metadata is stored using *UTF-8*. *encoding* is only used in
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the rare cases when binary pax headers are decoded or when strings with
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surrogate characters are stored.
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@ -118,6 +118,9 @@ GNU_TYPES = (GNUTYPE_LONGNAME, GNUTYPE_LONGLINK,
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PAX_FIELDS = ("path", "linkpath", "size", "mtime",
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"uid", "gid", "uname", "gname")
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# Fields from a pax header that are affected by hdrcharset.
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PAX_NAME_FIELDS = {"path", "linkpath", "uname", "gname"}
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# Fields in a pax header that are numbers, all other fields
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# are treated as strings.
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PAX_NUMBER_FIELDS = {
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@ -988,7 +991,7 @@ class TarInfo(object):
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elif format == GNU_FORMAT:
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return self.create_gnu_header(info, encoding, errors)
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elif format == PAX_FORMAT:
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return self.create_pax_header(info)
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return self.create_pax_header(info, encoding)
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else:
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raise ValueError("invalid format")
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@ -1019,7 +1022,7 @@ class TarInfo(object):
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return buf + self._create_header(info, GNU_FORMAT, encoding, errors)
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def create_pax_header(self, info):
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def create_pax_header(self, info, encoding):
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"""Return the object as a ustar header block. If it cannot be
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represented this way, prepend a pax extended header sequence
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with supplement information.
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@ -1062,7 +1065,7 @@ class TarInfo(object):
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# Create a pax extended header if necessary.
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if pax_headers:
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buf = self._create_pax_generic_header(pax_headers, XHDTYPE)
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buf = self._create_pax_generic_header(pax_headers, XHDTYPE, encoding)
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else:
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buf = b""
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@ -1072,7 +1075,7 @@ class TarInfo(object):
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def create_pax_global_header(cls, pax_headers):
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"""Return the object as a pax global header block sequence.
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"""
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return cls._create_pax_generic_header(pax_headers, XGLTYPE)
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return cls._create_pax_generic_header(pax_headers, XGLTYPE, "utf8")
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def _posix_split_name(self, name):
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"""Split a name longer than 100 chars into a prefix
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@ -1145,15 +1148,35 @@ class TarInfo(object):
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cls._create_payload(name)
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@classmethod
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def _create_pax_generic_header(cls, pax_headers, type):
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"""Return a POSIX.1-2001 extended or global header sequence
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def _create_pax_generic_header(cls, pax_headers, type, encoding):
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"""Return a POSIX.1-2008 extended or global header sequence
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that contains a list of keyword, value pairs. The values
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must be strings.
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"""
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# Check if one of the fields contains surrogate characters and thereby
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# forces hdrcharset=BINARY, see _proc_pax() for more information.
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binary = False
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for keyword, value in pax_headers.items():
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try:
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value.encode("utf8", "strict")
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except UnicodeEncodeError:
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binary = True
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break
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records = b""
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if binary:
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# Put the hdrcharset field at the beginning of the header.
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records += b"21 hdrcharset=BINARY\n"
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for keyword, value in pax_headers.items():
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keyword = keyword.encode("utf8")
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value = value.encode("utf8")
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if binary:
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# Try to restore the original byte representation of `value'.
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# Needless to say, that the encoding must match the string.
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value = value.encode(encoding, "surrogateescape")
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else:
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value = value.encode("utf8")
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l = len(keyword) + len(value) + 3 # ' ' + '=' + '\n'
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n = p = 0
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while True:
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@ -1354,7 +1377,7 @@ class TarInfo(object):
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def _proc_pax(self, tarfile):
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"""Process an extended or global header as described in
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POSIX.1-2001.
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POSIX.1-2008.
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"""
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# Read the header information.
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buf = tarfile.fileobj.read(self._block(self.size))
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@ -1367,6 +1390,24 @@ class TarInfo(object):
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else:
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pax_headers = tarfile.pax_headers.copy()
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# Check if the pax header contains a hdrcharset field. This tells us
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# the encoding of the path, linkpath, uname and gname fields. Normally,
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# these fields are UTF-8 encoded but since POSIX.1-2008 tar
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# implementations are allowed to store them as raw binary strings if
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# the translation to UTF-8 fails.
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match = re.search(br"\d+ hdrcharset=([^\n]+)\n", buf)
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if match is not None:
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pax_headers["hdrcharset"] = match.group(1).decode("utf8")
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# For the time being, we don't care about anything other than "BINARY".
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# The only other value that is currently allowed by the standard is
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# "ISO-IR 10646 2000 UTF-8" in other words UTF-8.
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hdrcharset = pax_headers.get("hdrcharset")
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if hdrcharset == "BINARY":
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encoding = tarfile.encoding
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else:
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encoding = "utf8"
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# Parse pax header information. A record looks like that:
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# "%d %s=%s\n" % (length, keyword, value). length is the size
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# of the complete record including the length field itself and
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@ -1382,8 +1423,21 @@ class TarInfo(object):
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length = int(length)
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value = buf[match.end(2) + 1:match.start(1) + length - 1]
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keyword = keyword.decode("utf8")
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value = value.decode("utf8")
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# Normally, we could just use "utf8" as the encoding and "strict"
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# as the error handler, but we better not take the risk. For
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# example, GNU tar <= 1.23 is known to store filenames it cannot
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# translate to UTF-8 as raw strings (unfortunately without a
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# hdrcharset=BINARY header).
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# We first try the strict standard encoding, and if that fails we
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# fall back on the user's encoding and error handler.
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keyword = self._decode_pax_field(keyword, "utf8", "utf8",
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tarfile.errors)
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if keyword in PAX_NAME_FIELDS:
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value = self._decode_pax_field(value, encoding, tarfile.encoding,
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tarfile.errors)
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else:
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value = self._decode_pax_field(value, "utf8", "utf8",
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tarfile.errors)
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pax_headers[keyword] = value
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pos += length
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@ -1431,6 +1485,14 @@ class TarInfo(object):
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self.pax_headers = pax_headers.copy()
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def _decode_pax_field(self, value, encoding, fallback_encoding, fallback_errors):
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"""Decode a single field from a pax record.
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"""
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try:
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return value.decode(encoding, "strict")
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except UnicodeDecodeError:
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return value.decode(fallback_encoding, fallback_errors)
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def _block(self, count):
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"""Round up a byte count by BLOCKSIZE and return it,
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e.g. _block(834) => 1024.
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@ -1126,11 +1126,32 @@ class GNUUnicodeTest(UstarUnicodeTest):
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format = tarfile.GNU_FORMAT
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def test_bad_pax_header(self):
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# Test for issue #8633. GNU tar <= 1.23 creates raw binary fields
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# without a hdrcharset=BINARY header.
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for encoding, name in (("utf8", "pax/bad-pax-\udce4\udcf6\udcfc"),
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("iso8859-1", "pax/bad-pax-\xe4\xf6\xfc"),):
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with tarfile.open(tarname, encoding=encoding, errors="surrogateescape") as tar:
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try:
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t = tar.getmember(name)
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except KeyError:
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self.fail("unable to read bad GNU tar pax header")
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class PAXUnicodeTest(UstarUnicodeTest):
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format = tarfile.PAX_FORMAT
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def test_binary_header(self):
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# Test a POSIX.1-2008 compatible header with a hdrcharset=BINARY field.
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for encoding, name in (("utf8", "pax/hdrcharset-\udce4\udcf6\udcfc"),
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("iso8859-1", "pax/hdrcharset-\xe4\xf6\xfc"),):
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with tarfile.open(tarname, encoding=encoding, errors="surrogateescape") as tar:
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try:
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t = tar.getmember(name)
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except KeyError:
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self.fail("unable to read POSIX.1-2008 binary header")
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class AppendTest(unittest.TestCase):
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# Test append mode (cp. patch #1652681).
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