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825 lines
31 KiB
Python
825 lines
31 KiB
Python
# Copyright (C) 2006-2007 Robey Pointer <robeypointer@gmail.com>
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#
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# This file is part of paramiko.
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#
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# Paramiko is free software; you can redistribute it and/or modify it under the
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# terms of the GNU Lesser General Public License as published by the Free
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# Software Foundation; either version 2.1 of the License, or (at your option)
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# any later version.
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#
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# Paramiko is distributed in the hope that it will be useful, but WITHOUT ANY
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# WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS FOR
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# A PARTICULAR PURPOSE. See the GNU Lesser General Public License for more
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# details.
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#
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# You should have received a copy of the GNU Lesser General Public License
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# along with Paramiko; if not, write to the Free Software Foundation, Inc.,
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# 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA.
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"""
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SSH client & key policies
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"""
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from binascii import hexlify
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import getpass
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import inspect
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import os
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import socket
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import warnings
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from errno import ECONNREFUSED, EHOSTUNREACH
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from paramiko.agent import Agent
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from paramiko.common import DEBUG
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from paramiko.config import SSH_PORT
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from paramiko.dsskey import DSSKey
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from paramiko.ecdsakey import ECDSAKey
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from paramiko.ed25519key import Ed25519Key
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from paramiko.hostkeys import HostKeys
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from paramiko.py3compat import string_types
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from paramiko.rsakey import RSAKey
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from paramiko.ssh_exception import (
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SSHException,
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BadHostKeyException,
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NoValidConnectionsError,
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)
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from paramiko.transport import Transport
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from paramiko.util import retry_on_signal, ClosingContextManager
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class SSHClient(ClosingContextManager):
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"""
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A high-level representation of a session with an SSH server. This class
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wraps `.Transport`, `.Channel`, and `.SFTPClient` to take care of most
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aspects of authenticating and opening channels. A typical use case is::
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client = SSHClient()
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client.load_system_host_keys()
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client.connect('ssh.example.com')
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stdin, stdout, stderr = client.exec_command('ls -l')
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You may pass in explicit overrides for authentication and server host key
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checking. The default mechanism is to try to use local key files or an
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SSH agent (if one is running).
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Instances of this class may be used as context managers.
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.. versionadded:: 1.6
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"""
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def __init__(self):
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"""
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Create a new SSHClient.
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"""
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self._system_host_keys = HostKeys()
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self._host_keys = HostKeys()
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self._host_keys_filename = None
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self._log_channel = None
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self._policy = RejectPolicy()
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self._transport = None
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self._agent = None
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def load_system_host_keys(self, filename=None):
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"""
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Load host keys from a system (read-only) file. Host keys read with
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this method will not be saved back by `save_host_keys`.
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This method can be called multiple times. Each new set of host keys
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will be merged with the existing set (new replacing old if there are
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conflicts).
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If ``filename`` is left as ``None``, an attempt will be made to read
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keys from the user's local "known hosts" file, as used by OpenSSH,
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and no exception will be raised if the file can't be read. This is
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probably only useful on posix.
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:param str filename: the filename to read, or ``None``
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:raises: ``IOError`` --
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if a filename was provided and the file could not be read
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"""
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if filename is None:
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# try the user's .ssh key file, and mask exceptions
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filename = os.path.expanduser("~/.ssh/known_hosts")
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try:
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self._system_host_keys.load(filename)
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except IOError:
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pass
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return
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self._system_host_keys.load(filename)
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def load_host_keys(self, filename):
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"""
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Load host keys from a local host-key file. Host keys read with this
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method will be checked after keys loaded via `load_system_host_keys`,
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but will be saved back by `save_host_keys` (so they can be modified).
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The missing host key policy `.AutoAddPolicy` adds keys to this set and
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saves them, when connecting to a previously-unknown server.
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This method can be called multiple times. Each new set of host keys
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will be merged with the existing set (new replacing old if there are
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conflicts). When automatically saving, the last hostname is used.
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:param str filename: the filename to read
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:raises: ``IOError`` -- if the filename could not be read
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"""
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self._host_keys_filename = filename
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self._host_keys.load(filename)
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def save_host_keys(self, filename):
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"""
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Save the host keys back to a file. Only the host keys loaded with
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`load_host_keys` (plus any added directly) will be saved -- not any
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host keys loaded with `load_system_host_keys`.
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:param str filename: the filename to save to
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:raises: ``IOError`` -- if the file could not be written
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"""
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# update local host keys from file (in case other SSH clients
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# have written to the known_hosts file meanwhile.
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if self._host_keys_filename is not None:
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self.load_host_keys(self._host_keys_filename)
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with open(filename, "w") as f:
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for hostname, keys in self._host_keys.items():
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for keytype, key in keys.items():
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f.write(
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"{} {} {}\n".format(
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hostname, keytype, key.get_base64()
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)
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)
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def get_host_keys(self):
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"""
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Get the local `.HostKeys` object. This can be used to examine the
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local host keys or change them.
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:return: the local host keys as a `.HostKeys` object.
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"""
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return self._host_keys
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def set_log_channel(self, name):
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"""
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Set the channel for logging. The default is ``"paramiko.transport"``
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but it can be set to anything you want.
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:param str name: new channel name for logging
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"""
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self._log_channel = name
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def set_missing_host_key_policy(self, policy):
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"""
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Set policy to use when connecting to servers without a known host key.
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Specifically:
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* A **policy** is a "policy class" (or instance thereof), namely some
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subclass of `.MissingHostKeyPolicy` such as `.RejectPolicy` (the
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default), `.AutoAddPolicy`, `.WarningPolicy`, or a user-created
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subclass.
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* A host key is **known** when it appears in the client object's cached
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host keys structures (those manipulated by `load_system_host_keys`
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and/or `load_host_keys`).
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:param .MissingHostKeyPolicy policy:
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the policy to use when receiving a host key from a
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previously-unknown server
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"""
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if inspect.isclass(policy):
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policy = policy()
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self._policy = policy
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def _families_and_addresses(self, hostname, port):
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"""
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Yield pairs of address families and addresses to try for connecting.
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:param str hostname: the server to connect to
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:param int port: the server port to connect to
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:returns: Yields an iterable of ``(family, address)`` tuples
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"""
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guess = True
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addrinfos = socket.getaddrinfo(
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hostname, port, socket.AF_UNSPEC, socket.SOCK_STREAM
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)
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for (family, socktype, proto, canonname, sockaddr) in addrinfos:
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if socktype == socket.SOCK_STREAM:
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yield family, sockaddr
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guess = False
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# some OS like AIX don't indicate SOCK_STREAM support, so just
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# guess. :( We only do this if we did not get a single result marked
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# as socktype == SOCK_STREAM.
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if guess:
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for family, _, _, _, sockaddr in addrinfos:
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yield family, sockaddr
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def connect(
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self,
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hostname,
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port=SSH_PORT,
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username=None,
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password=None,
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pkey=None,
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key_filename=None,
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timeout=None,
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allow_agent=True,
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look_for_keys=True,
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compress=False,
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sock=None,
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gss_auth=False,
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gss_kex=False,
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gss_deleg_creds=True,
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gss_host=None,
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banner_timeout=None,
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auth_timeout=None,
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gss_trust_dns=True,
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passphrase=None,
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):
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"""
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Connect to an SSH server and authenticate to it. The server's host key
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is checked against the system host keys (see `load_system_host_keys`)
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and any local host keys (`load_host_keys`). If the server's hostname
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is not found in either set of host keys, the missing host key policy
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is used (see `set_missing_host_key_policy`). The default policy is
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to reject the key and raise an `.SSHException`.
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Authentication is attempted in the following order of priority:
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- The ``pkey`` or ``key_filename`` passed in (if any)
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- ``key_filename`` may contain OpenSSH public certificate paths
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as well as regular private-key paths; when files ending in
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``-cert.pub`` are found, they are assumed to match a private
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key, and both components will be loaded. (The private key
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itself does *not* need to be listed in ``key_filename`` for
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this to occur - *just* the certificate.)
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- Any key we can find through an SSH agent
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- Any "id_rsa", "id_dsa" or "id_ecdsa" key discoverable in
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``~/.ssh/``
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- When OpenSSH-style public certificates exist that match an
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existing such private key (so e.g. one has ``id_rsa`` and
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``id_rsa-cert.pub``) the certificate will be loaded alongside
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the private key and used for authentication.
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- Plain username/password auth, if a password was given
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If a private key requires a password to unlock it, and a password is
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passed in, that password will be used to attempt to unlock the key.
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:param str hostname: the server to connect to
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:param int port: the server port to connect to
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:param str username:
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the username to authenticate as (defaults to the current local
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username)
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:param str password:
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Used for password authentication; is also used for private key
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decryption if ``passphrase`` is not given.
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:param str passphrase:
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Used for decrypting private keys.
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:param .PKey pkey: an optional private key to use for authentication
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:param str key_filename:
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the filename, or list of filenames, of optional private key(s)
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and/or certs to try for authentication
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:param float timeout:
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an optional timeout (in seconds) for the TCP connect
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:param bool allow_agent:
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set to False to disable connecting to the SSH agent
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:param bool look_for_keys:
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set to False to disable searching for discoverable private key
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files in ``~/.ssh/``
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:param bool compress: set to True to turn on compression
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:param socket sock:
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an open socket or socket-like object (such as a `.Channel`) to use
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for communication to the target host
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:param bool gss_auth:
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``True`` if you want to use GSS-API authentication
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:param bool gss_kex:
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Perform GSS-API Key Exchange and user authentication
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:param bool gss_deleg_creds: Delegate GSS-API client credentials or not
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:param str gss_host:
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The targets name in the kerberos database. default: hostname
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:param bool gss_trust_dns:
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Indicates whether or not the DNS is trusted to securely
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canonicalize the name of the host being connected to (default
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``True``).
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:param float banner_timeout: an optional timeout (in seconds) to wait
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for the SSH banner to be presented.
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:param float auth_timeout: an optional timeout (in seconds) to wait for
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an authentication response.
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:raises:
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`.BadHostKeyException` -- if the server's host key could not be
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verified
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:raises: `.AuthenticationException` -- if authentication failed
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:raises:
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`.SSHException` -- if there was any other error connecting or
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establishing an SSH session
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:raises socket.error: if a socket error occurred while connecting
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.. versionchanged:: 1.15
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Added the ``banner_timeout``, ``gss_auth``, ``gss_kex``,
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``gss_deleg_creds`` and ``gss_host`` arguments.
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.. versionchanged:: 2.3
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Added the ``gss_trust_dns`` argument.
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.. versionchanged:: 2.4
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Added the ``passphrase`` argument.
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"""
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if not sock:
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errors = {}
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# Try multiple possible address families (e.g. IPv4 vs IPv6)
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to_try = list(self._families_and_addresses(hostname, port))
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for af, addr in to_try:
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try:
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sock = socket.socket(af, socket.SOCK_STREAM)
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if timeout is not None:
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try:
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sock.settimeout(timeout)
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except:
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pass
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retry_on_signal(lambda: sock.connect(addr))
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# Break out of the loop on success
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break
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except socket.error as e:
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# Raise anything that isn't a straight up connection error
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# (such as a resolution error)
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if e.errno not in (ECONNREFUSED, EHOSTUNREACH):
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raise
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# Capture anything else so we know how the run looks once
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# iteration is complete. Retain info about which attempt
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# this was.
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errors[addr] = e
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# Make sure we explode usefully if no address family attempts
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# succeeded. We've no way of knowing which error is the "right"
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# one, so we construct a hybrid exception containing all the real
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# ones, of a subclass that client code should still be watching for
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# (socket.error)
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if len(errors) == len(to_try):
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raise NoValidConnectionsError(errors)
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t = self._transport = Transport(
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sock, gss_kex=gss_kex, gss_deleg_creds=gss_deleg_creds
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)
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t.use_compression(compress=compress)
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t.set_gss_host(
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# t.hostname may be None, but GSS-API requires a target name.
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# Therefore use hostname as fallback.
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gss_host=gss_host or hostname,
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trust_dns=gss_trust_dns,
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gssapi_requested=gss_auth or gss_kex,
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)
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if self._log_channel is not None:
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t.set_log_channel(self._log_channel)
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if banner_timeout is not None:
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t.banner_timeout = banner_timeout
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if auth_timeout is not None:
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t.auth_timeout = auth_timeout
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if port == SSH_PORT:
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server_hostkey_name = hostname
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else:
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server_hostkey_name = "[{}]:{}".format(hostname, port)
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our_server_keys = None
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our_server_keys = self._system_host_keys.get(server_hostkey_name)
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if our_server_keys is None:
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our_server_keys = self._host_keys.get(server_hostkey_name)
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if our_server_keys is not None:
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keytype = our_server_keys.keys()[0]
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sec_opts = t.get_security_options()
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other_types = [x for x in sec_opts.key_types if x != keytype]
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sec_opts.key_types = [keytype] + other_types
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t.start_client(timeout=timeout)
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# If GSS-API Key Exchange is performed we are not required to check the
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# host key, because the host is authenticated via GSS-API / SSPI as
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# well as our client.
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if not self._transport.gss_kex_used:
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server_key = t.get_remote_server_key()
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if our_server_keys is None:
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# will raise exception if the key is rejected
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self._policy.missing_host_key(
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self, server_hostkey_name, server_key
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)
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else:
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our_key = our_server_keys.get(server_key.get_name())
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if our_key != server_key:
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if our_key is None:
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our_key = list(our_server_keys.values())[0]
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raise BadHostKeyException(hostname, server_key, our_key)
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if username is None:
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username = getpass.getuser()
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if key_filename is None:
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key_filenames = []
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elif isinstance(key_filename, string_types):
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key_filenames = [key_filename]
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else:
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key_filenames = key_filename
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self._auth(
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username,
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password,
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pkey,
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key_filenames,
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allow_agent,
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look_for_keys,
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gss_auth,
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gss_kex,
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gss_deleg_creds,
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t.gss_host,
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passphrase,
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)
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def close(self):
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"""
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Close this SSHClient and its underlying `.Transport`.
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.. warning::
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Failure to do this may, in some situations, cause your Python
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interpreter to hang at shutdown (often due to race conditions).
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It's good practice to `close` your client objects anytime you're
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done using them, instead of relying on garbage collection.
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"""
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if self._transport is None:
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return
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self._transport.close()
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self._transport = None
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if self._agent is not None:
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self._agent.close()
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self._agent = None
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def exec_command(
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self,
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command,
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bufsize=-1,
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timeout=None,
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get_pty=False,
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environment=None,
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):
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"""
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Execute a command on the SSH server. A new `.Channel` is opened and
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the requested command is executed. The command's input and output
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streams are returned as Python ``file``-like objects representing
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stdin, stdout, and stderr.
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:param str command: the command to execute
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:param int bufsize:
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interpreted the same way as by the built-in ``file()`` function in
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Python
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:param int timeout:
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set command's channel timeout. See `.Channel.settimeout`
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:param dict environment:
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a dict of shell environment variables, to be merged into the
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default environment that the remote command executes within.
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.. warning::
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Servers may silently reject some environment variables; see the
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warning in `.Channel.set_environment_variable` for details.
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:return:
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the stdin, stdout, and stderr of the executing command, as a
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3-tuple
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:raises: `.SSHException` -- if the server fails to execute the command
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"""
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chan = self._transport.open_session(timeout=timeout)
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if get_pty:
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chan.get_pty()
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chan.settimeout(timeout)
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if environment:
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chan.update_environment(environment)
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chan.exec_command(command)
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stdin = chan.makefile("wb", bufsize)
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stdout = chan.makefile("r", bufsize)
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stderr = chan.makefile_stderr("r", bufsize)
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return stdin, stdout, stderr
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def invoke_shell(
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self,
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term="vt100",
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width=80,
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height=24,
|
|
width_pixels=0,
|
|
height_pixels=0,
|
|
environment=None,
|
|
):
|
|
"""
|
|
Start an interactive shell session on the SSH server. A new `.Channel`
|
|
is opened and connected to a pseudo-terminal using the requested
|
|
terminal type and size.
|
|
|
|
:param str term:
|
|
the terminal type to emulate (for example, ``"vt100"``)
|
|
:param int width: the width (in characters) of the terminal window
|
|
:param int height: the height (in characters) of the terminal window
|
|
:param int width_pixels: the width (in pixels) of the terminal window
|
|
:param int height_pixels: the height (in pixels) of the terminal window
|
|
:param dict environment: the command's environment
|
|
:return: a new `.Channel` connected to the remote shell
|
|
|
|
:raises: `.SSHException` -- if the server fails to invoke a shell
|
|
"""
|
|
chan = self._transport.open_session()
|
|
chan.get_pty(term, width, height, width_pixels, height_pixels)
|
|
chan.invoke_shell()
|
|
return chan
|
|
|
|
def open_sftp(self):
|
|
"""
|
|
Open an SFTP session on the SSH server.
|
|
|
|
:return: a new `.SFTPClient` session object
|
|
"""
|
|
return self._transport.open_sftp_client()
|
|
|
|
def get_transport(self):
|
|
"""
|
|
Return the underlying `.Transport` object for this SSH connection.
|
|
This can be used to perform lower-level tasks, like opening specific
|
|
kinds of channels.
|
|
|
|
:return: the `.Transport` for this connection
|
|
"""
|
|
return self._transport
|
|
|
|
def _key_from_filepath(self, filename, klass, password):
|
|
"""
|
|
Attempt to derive a `.PKey` from given string path ``filename``:
|
|
|
|
- If ``filename`` appears to be a cert, the matching private key is
|
|
loaded.
|
|
- Otherwise, the filename is assumed to be a private key, and the
|
|
matching public cert will be loaded if it exists.
|
|
"""
|
|
cert_suffix = "-cert.pub"
|
|
# Assume privkey, not cert, by default
|
|
if filename.endswith(cert_suffix):
|
|
key_path = filename[: -len(cert_suffix)]
|
|
cert_path = filename
|
|
else:
|
|
key_path = filename
|
|
cert_path = filename + cert_suffix
|
|
# Blindly try the key path; if no private key, nothing will work.
|
|
key = klass.from_private_key_file(key_path, password)
|
|
# TODO: change this to 'Loading' instead of 'Trying' sometime; probably
|
|
# when #387 is released, since this is a critical log message users are
|
|
# likely testing/filtering for (bah.)
|
|
msg = "Trying discovered key {} in {}".format(
|
|
hexlify(key.get_fingerprint()), key_path
|
|
)
|
|
self._log(DEBUG, msg)
|
|
# Attempt to load cert if it exists.
|
|
if os.path.isfile(cert_path):
|
|
key.load_certificate(cert_path)
|
|
self._log(DEBUG, "Adding public certificate {}".format(cert_path))
|
|
return key
|
|
|
|
def _auth(
|
|
self,
|
|
username,
|
|
password,
|
|
pkey,
|
|
key_filenames,
|
|
allow_agent,
|
|
look_for_keys,
|
|
gss_auth,
|
|
gss_kex,
|
|
gss_deleg_creds,
|
|
gss_host,
|
|
passphrase,
|
|
):
|
|
"""
|
|
Try, in order:
|
|
|
|
- The key(s) passed in, if one was passed in.
|
|
- Any key we can find through an SSH agent (if allowed).
|
|
- Any "id_rsa", "id_dsa" or "id_ecdsa" key discoverable in ~/.ssh/
|
|
(if allowed).
|
|
- Plain username/password auth, if a password was given.
|
|
|
|
(The password might be needed to unlock a private key [if 'passphrase'
|
|
isn't also given], or for two-factor authentication [for which it is
|
|
required].)
|
|
"""
|
|
saved_exception = None
|
|
two_factor = False
|
|
allowed_types = set()
|
|
two_factor_types = {"keyboard-interactive", "password"}
|
|
if passphrase is None and password is not None:
|
|
passphrase = password
|
|
|
|
# If GSS-API support and GSS-PI Key Exchange was performed, we attempt
|
|
# authentication with gssapi-keyex.
|
|
if gss_kex and self._transport.gss_kex_used:
|
|
try:
|
|
self._transport.auth_gssapi_keyex(username)
|
|
return
|
|
except Exception as e:
|
|
saved_exception = e
|
|
|
|
# Try GSS-API authentication (gssapi-with-mic) only if GSS-API Key
|
|
# Exchange is not performed, because if we use GSS-API for the key
|
|
# exchange, there is already a fully established GSS-API context, so
|
|
# why should we do that again?
|
|
if gss_auth:
|
|
try:
|
|
return self._transport.auth_gssapi_with_mic(
|
|
username, gss_host, gss_deleg_creds
|
|
)
|
|
except Exception as e:
|
|
saved_exception = e
|
|
|
|
if pkey is not None:
|
|
try:
|
|
self._log(
|
|
DEBUG,
|
|
"Trying SSH key {}".format(
|
|
hexlify(pkey.get_fingerprint())
|
|
),
|
|
)
|
|
allowed_types = set(
|
|
self._transport.auth_publickey(username, pkey)
|
|
)
|
|
two_factor = allowed_types & two_factor_types
|
|
if not two_factor:
|
|
return
|
|
except SSHException as e:
|
|
saved_exception = e
|
|
|
|
if not two_factor:
|
|
for key_filename in key_filenames:
|
|
for pkey_class in (RSAKey, DSSKey, ECDSAKey, Ed25519Key):
|
|
try:
|
|
key = self._key_from_filepath(
|
|
key_filename, pkey_class, passphrase
|
|
)
|
|
allowed_types = set(
|
|
self._transport.auth_publickey(username, key)
|
|
)
|
|
two_factor = allowed_types & two_factor_types
|
|
if not two_factor:
|
|
return
|
|
break
|
|
except SSHException as e:
|
|
saved_exception = e
|
|
|
|
if not two_factor and allow_agent:
|
|
if self._agent is None:
|
|
self._agent = Agent()
|
|
|
|
for key in self._agent.get_keys():
|
|
try:
|
|
id_ = hexlify(key.get_fingerprint())
|
|
self._log(DEBUG, "Trying SSH agent key {}".format(id_))
|
|
# for 2-factor auth a successfully auth'd key password
|
|
# will return an allowed 2fac auth method
|
|
allowed_types = set(
|
|
self._transport.auth_publickey(username, key)
|
|
)
|
|
two_factor = allowed_types & two_factor_types
|
|
if not two_factor:
|
|
return
|
|
break
|
|
except SSHException as e:
|
|
saved_exception = e
|
|
|
|
if not two_factor:
|
|
keyfiles = []
|
|
|
|
for keytype, name in [
|
|
(RSAKey, "rsa"),
|
|
(DSSKey, "dsa"),
|
|
(ECDSAKey, "ecdsa"),
|
|
(Ed25519Key, "ed25519"),
|
|
]:
|
|
# ~/ssh/ is for windows
|
|
for directory in [".ssh", "ssh"]:
|
|
full_path = os.path.expanduser(
|
|
"~/{}/id_{}".format(directory, name)
|
|
)
|
|
if os.path.isfile(full_path):
|
|
# TODO: only do this append if below did not run
|
|
keyfiles.append((keytype, full_path))
|
|
if os.path.isfile(full_path + "-cert.pub"):
|
|
keyfiles.append((keytype, full_path + "-cert.pub"))
|
|
|
|
if not look_for_keys:
|
|
keyfiles = []
|
|
|
|
for pkey_class, filename in keyfiles:
|
|
try:
|
|
key = self._key_from_filepath(
|
|
filename, pkey_class, passphrase
|
|
)
|
|
# for 2-factor auth a successfully auth'd key will result
|
|
# in ['password']
|
|
allowed_types = set(
|
|
self._transport.auth_publickey(username, key)
|
|
)
|
|
two_factor = allowed_types & two_factor_types
|
|
if not two_factor:
|
|
return
|
|
break
|
|
except (SSHException, IOError) as e:
|
|
saved_exception = e
|
|
|
|
if password is not None:
|
|
try:
|
|
self._transport.auth_password(username, password)
|
|
return
|
|
except SSHException as e:
|
|
saved_exception = e
|
|
elif two_factor:
|
|
try:
|
|
self._transport.auth_interactive_dumb(username)
|
|
return
|
|
except SSHException as e:
|
|
saved_exception = e
|
|
|
|
# if we got an auth-failed exception earlier, re-raise it
|
|
if saved_exception is not None:
|
|
raise saved_exception
|
|
raise SSHException("No authentication methods available")
|
|
|
|
def _log(self, level, msg):
|
|
self._transport._log(level, msg)
|
|
|
|
|
|
class MissingHostKeyPolicy(object):
|
|
"""
|
|
Interface for defining the policy that `.SSHClient` should use when the
|
|
SSH server's hostname is not in either the system host keys or the
|
|
application's keys. Pre-made classes implement policies for automatically
|
|
adding the key to the application's `.HostKeys` object (`.AutoAddPolicy`),
|
|
and for automatically rejecting the key (`.RejectPolicy`).
|
|
|
|
This function may be used to ask the user to verify the key, for example.
|
|
"""
|
|
|
|
def missing_host_key(self, client, hostname, key):
|
|
"""
|
|
Called when an `.SSHClient` receives a server key for a server that
|
|
isn't in either the system or local `.HostKeys` object. To accept
|
|
the key, simply return. To reject, raised an exception (which will
|
|
be passed to the calling application).
|
|
"""
|
|
pass
|
|
|
|
|
|
class AutoAddPolicy(MissingHostKeyPolicy):
|
|
"""
|
|
Policy for automatically adding the hostname and new host key to the
|
|
local `.HostKeys` object, and saving it. This is used by `.SSHClient`.
|
|
"""
|
|
|
|
def missing_host_key(self, client, hostname, key):
|
|
client._host_keys.add(hostname, key.get_name(), key)
|
|
if client._host_keys_filename is not None:
|
|
client.save_host_keys(client._host_keys_filename)
|
|
client._log(
|
|
DEBUG,
|
|
"Adding {} host key for {}: {}".format(
|
|
key.get_name(), hostname, hexlify(key.get_fingerprint())
|
|
),
|
|
)
|
|
|
|
|
|
class RejectPolicy(MissingHostKeyPolicy):
|
|
"""
|
|
Policy for automatically rejecting the unknown hostname & key. This is
|
|
used by `.SSHClient`.
|
|
"""
|
|
|
|
def missing_host_key(self, client, hostname, key):
|
|
client._log(
|
|
DEBUG,
|
|
"Rejecting {} host key for {}: {}".format(
|
|
key.get_name(), hostname, hexlify(key.get_fingerprint())
|
|
),
|
|
)
|
|
raise SSHException(
|
|
"Server {!r} not found in known_hosts".format(hostname)
|
|
)
|
|
|
|
|
|
class WarningPolicy(MissingHostKeyPolicy):
|
|
"""
|
|
Policy for logging a Python-style warning for an unknown host key, but
|
|
accepting it. This is used by `.SSHClient`.
|
|
"""
|
|
|
|
def missing_host_key(self, client, hostname, key):
|
|
warnings.warn(
|
|
"Unknown {} host key for {}: {}".format(
|
|
key.get_name(), hostname, hexlify(key.get_fingerprint())
|
|
)
|
|
)
|