Even moar info fields
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@ -45,8 +45,7 @@ class HostKeys (UserDict.DictMixin):
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Create a new HostKeys object, optionally loading keys from an OpenSSH
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style host-key file.
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:param filename: filename to load host keys from, or ``None``
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:type filename: str
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:param str filename: filename to load host keys from, or ``None``
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"""
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# emulate a dict of { hostname: { keytype: PKey } }
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self._entries = []
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@ -58,12 +57,9 @@ class HostKeys (UserDict.DictMixin):
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Add a host key entry to the table. Any existing entry for a
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``(hostname, keytype)`` pair will be replaced.
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:param hostname: the hostname (or IP) to add
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:type hostname: str
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:param keytype: key type (``"ssh-rsa"`` or ``"ssh-dss"``)
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:type keytype: str
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:param key: the key to add
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:type key: `.PKey`
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:param str hostname: the hostname (or IP) to add
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:param str keytype: key type (``"ssh-rsa"`` or ``"ssh-dss"``)
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:param .PKey key: the key to add
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"""
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for e in self._entries:
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if (hostname in e.hostnames) and (e.key.get_name() == keytype):
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@ -82,8 +78,7 @@ class HostKeys (UserDict.DictMixin):
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not cleared. So multiple calls to `load` will just call `add`,
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replacing any existing entries and adding new ones.
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:param filename: name of the file to read host keys from
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:type filename: str
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:param str filename: name of the file to read host keys from
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:raises IOError: if there was an error reading the file
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"""
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@ -109,8 +104,7 @@ class HostKeys (UserDict.DictMixin):
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loaded from a file originally). The single exception is that combined
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lines will be split into individual key lines, which is arguably a bug.
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:param filename: name of the file to write
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:type filename: str
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:param str filename: name of the file to write
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:raises IOError: if there was an error writing the file
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@ -129,10 +123,8 @@ class HostKeys (UserDict.DictMixin):
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``None`` is returned. Otherwise a dictionary of keytype to key is
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returned. The keytype will be either ``"ssh-rsa"`` or ``"ssh-dss"``.
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:param hostname: the hostname (or IP) to lookup
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:type hostname: str
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:return: keys associated with this host (or ``None``)
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:rtype: dict(str, `.PKey`)
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:param str hostname: the hostname (or IP) to lookup
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:return: dict of `str` -> `.PKey` keys associated with this host (or ``None``)
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"""
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class SubDict (UserDict.DictMixin):
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def __init__(self, hostname, entries, hostkeys):
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@ -177,13 +169,10 @@ class HostKeys (UserDict.DictMixin):
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Return True if the given key is associated with the given hostname
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in this dictionary.
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:param hostname: hostname (or IP) of the SSH server
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:type hostname: str
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:param key: the key to check
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:type key: `.PKey`
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:return: ``True`` if the key is associated with the hostname; ``False``
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if not
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:rtype: bool
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:param str hostname: hostname (or IP) of the SSH server
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:param .PKey key: the key to check
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:return:
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``True`` if the key is associated with the hostname; else ``False``
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"""
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k = self.lookup(hostname)
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if k is None:
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@ -240,12 +229,9 @@ class HostKeys (UserDict.DictMixin):
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Return a "hashed" form of the hostname, as used by OpenSSH when storing
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hashed hostnames in the known_hosts file.
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:param hostname: the hostname to hash
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:type hostname: str
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:param salt: optional salt to use when hashing (must be 20 bytes long)
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:type salt: str
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:return: the hashed hostname
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:rtype: str
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:param str hostname: the hostname to hash
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:param str salt: optional salt to use when hashing (must be 20 bytes long)
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:return: the hashed hostname as a `str`
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"""
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if salt is None:
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salt = rng.read(SHA.digest_size)
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@ -287,8 +273,7 @@ class HostKeyEntry:
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We don't bother to check for comments or empty lines. All of
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that should be taken care of before sending the line to us.
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:param line: a line from an OpenSSH known_hosts file
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:type line: str
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:param str line: a line from an OpenSSH known_hosts file
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"""
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log = get_logger('paramiko.hostkeys')
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fields = line.split(' ')
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@ -41,9 +41,9 @@ class Message (object):
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"""
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Create a new SSH2 message.
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:param content: the byte stream to use as the message content (passed
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in only when decomposing a message).
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:type content: string
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:param str content:
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the byte stream to use as the message content (passed in only when
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decomposing a message).
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"""
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if content != None:
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self.packet = cStringIO.StringIO(content)
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@ -53,17 +53,12 @@ class Message (object):
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def __str__(self):
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"""
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Return the byte stream content of this message, as a string.
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:return: the contents of this message.
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:rtype: string
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"""
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return self.packet.getvalue()
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def __repr__(self):
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"""
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Returns a string representation of this object, for debugging.
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:rtype: string
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"""
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return 'paramiko.Message(' + repr(self.packet.getvalue()) + ')'
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@ -76,11 +71,8 @@ class Message (object):
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def get_remainder(self):
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"""
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Return the bytes of this message that haven't already been parsed and
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returned.
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:return: a string of the bytes not parsed yet.
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:rtype: string
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Return the bytes (as a `str`) of this message that haven't already been
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parsed and returned.
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"""
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position = self.packet.tell()
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remainder = self.packet.read()
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@ -89,12 +81,9 @@ class Message (object):
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def get_so_far(self):
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"""
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Returns the bytes of this message that have been parsed and returned.
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The string passed into a message's constructor can be regenerated by
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concatenating ``get_so_far`` and `get_remainder`.
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:return: a string of the bytes parsed so far.
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:rtype: string
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Returns the `str` bytes of this message that have been parsed and
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returned. The string passed into a message's constructor can be
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regenerated by concatenating ``get_so_far`` and `get_remainder`.
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"""
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position = self.packet.tell()
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self.rewind()
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@ -102,12 +91,10 @@ class Message (object):
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def get_bytes(self, n):
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"""
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Return the next ``n`` bytes of the message, without decomposing into
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an int, string, etc. Just the raw bytes are returned.
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:return: a string of the next ``n`` bytes of the message, or a string
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of ``n`` zero bytes, if there aren't ``n`` bytes remaining.
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:rtype: string
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Return the next ``n`` bytes of the message (as a `str`), without
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decomposing into an int, decoded string, etc. Just the raw bytes are
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returned. Returns a string of ``n`` zero bytes if there weren't ``n``
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bytes remaining in the message.
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"""
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b = self.packet.read(n)
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max_pad_size = 1<<20 # Limit padding to 1 MB
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@ -120,18 +107,15 @@ class Message (object):
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Return the next byte of the message, without decomposing it. This
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is equivalent to `get_bytes(1) <get_bytes>`.
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:return: the next byte of the message, or ``'\000'`` if there aren't
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:return:
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the next (`str`) byte of the message, or ``'\000'`` if there aren't
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any bytes remaining.
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:rtype: string
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"""
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return self.get_bytes(1)
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def get_boolean(self):
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"""
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Fetch a boolean from the stream.
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:return: ``True`` or ``False`` (from the message).
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:rtype: bool
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"""
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b = self.get_bytes(1)
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return b != '\x00'
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@ -140,8 +124,7 @@ class Message (object):
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"""
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Fetch an int from the stream.
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:return: a 32-bit unsigned integer.
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:rtype: int
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:return: a 32-bit unsigned `int`.
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"""
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return struct.unpack('>I', self.get_bytes(4))[0]
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@ -149,8 +132,7 @@ class Message (object):
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"""
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Fetch a 64-bit int from the stream.
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:return: a 64-bit unsigned integer.
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:rtype: long
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:return: a 64-bit unsigned integer (`long`).
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"""
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return struct.unpack('>Q', self.get_bytes(8))[0]
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@ -158,29 +140,23 @@ class Message (object):
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"""
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Fetch a long int (mpint) from the stream.
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:return: an arbitrary-length integer.
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:rtype: long
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:return: an arbitrary-length integer (`long`).
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"""
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return util.inflate_long(self.get_string())
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def get_string(self):
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"""
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Fetch a string from the stream. This could be a byte string and may
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Fetch a `str` from the stream. This could be a byte string and may
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contain unprintable characters. (It's not unheard of for a string to
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contain another byte-stream message.)
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:return: a string.
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:rtype: string
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"""
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return self.get_bytes(self.get_int())
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def get_list(self):
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"""
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Fetch a list of strings from the stream. These are trivially encoded
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as comma-separated values in a string.
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Fetch a `list` of `strings <str>` from the stream.
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:return: a list of strings.
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:rtype: list of strings
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These are trivially encoded as comma-separated values in a string.
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"""
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return self.get_string().split(',')
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"""
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Write bytes to the stream, without any formatting.
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:param b: bytes to add
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:type b: str
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:param str b: bytes to add
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"""
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self.packet.write(b)
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return self
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@ -198,8 +173,7 @@ class Message (object):
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"""
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Write a single byte to the stream, without any formatting.
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:param b: byte to add
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:type b: str
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:param str b: byte to add
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"""
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self.packet.write(b)
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return self
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@ -208,8 +182,7 @@ class Message (object):
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"""
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Add a boolean value to the stream.
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:param b: boolean value to add
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:type b: bool
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:param bool b: boolean value to add
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"""
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if b:
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self.add_byte('\x01')
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@ -221,8 +194,7 @@ class Message (object):
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"""
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Add an integer to the stream.
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:param n: integer to add
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:type n: int
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:param int n: integer to add
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"""
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self.packet.write(struct.pack('>I', n))
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return self
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"""
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Add a 64-bit int to the stream.
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:param n: long int to add
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:type n: long
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:param long n: long int to add
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"""
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self.packet.write(struct.pack('>Q', n))
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return self
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@ -242,8 +213,7 @@ class Message (object):
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Add a long int to the stream, encoded as an infinite-precision
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integer. This method only works on positive numbers.
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:param z: long int to add
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:type z: long
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:param long z: long int to add
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"""
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self.add_string(util.deflate_long(z))
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return self
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@ -252,8 +222,7 @@ class Message (object):
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"""
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Add a string to the stream.
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:param s: string to add
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:type s: str
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:param str s: string to add
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"""
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self.add_int(len(s))
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self.packet.write(s)
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@ -265,8 +234,7 @@ class Message (object):
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a single string of values separated by commas. (Yes, really, that's
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how SSH2 does it.)
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:param l: list of strings to add
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:type l: list(str)
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:param list l: list of strings to add
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"""
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self.add_string(','.join(l))
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return self
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Add a sequence of items to the stream. The values are encoded based
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on their type: str, int, bool, list, or long.
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:param seq: the sequence of items
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:type seq: sequence
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.. warning::
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Longs are encoded non-deterministically. Don't use this method.
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@bug: longs are encoded non-deterministically. Don't use this method.
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:param seq: the sequence of items
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"""
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for item in seq:
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self._add(item)
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