mirror of
https://github.com/jtesta/ssh-audit.git
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465 lines
16 KiB
Python
Executable File
465 lines
16 KiB
Python
Executable File
#!/usr/bin/env python
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# -*- coding: utf-8 -*-
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"""
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The MIT License (MIT)
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Copyright (C) 2015 Andris Raugulis (moo@arthepsy.eu)
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Permission is hereby granted, free of charge, to any person obtaining a copy
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of this software and associated documentation files (the "Software"), to deal
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in the Software without restriction, including without limitation the rights
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to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
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copies of the Software, and to permit persons to whom the Software is
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furnished to do so, subject to the following conditions:
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The above copyright notice and this permission notice shall be included in
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all copies or substantial portions of the Software.
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THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
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IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
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FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
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AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
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LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
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OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
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THE SOFTWARE.
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"""
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from __future__ import print_function
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import os, io, sys, socket, struct
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SSH_BANNER = 'SSH-2.0-OpenSSH_7.2'
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def usage():
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p = os.path.basename(sys.argv[0])
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out.head('# {0} v1.0.20160207, moo@arthepsy.eu'.format(p))
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out.info('\nusage: {} [-nv] host[:port]\n'.format(p))
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out.info(' -v verbose')
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out.info(' -n disable colors' + os.linesep)
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sys.exit(1)
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class Output(object):
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colors = True
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verbose = False
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_colors = {
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'head': 36,
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'good': 32,
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'fail': 31,
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'warn': 33,
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}
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def sep(self):
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print()
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def _colorized(self, color):
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return lambda x: print(color + x + '\033[0m')
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def __getattr__(self, name):
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if self.colors and os.name == 'posix' and name in self._colors:
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color = '\033[0;{0}m'.format(self._colors[name])
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return self._colorized(color)
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else:
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return lambda x: print(x)
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class KexParty(object):
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encryption = []
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mac = []
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compression = []
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languages = []
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class Kex(object):
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cookie = None
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kex_algorithms = []
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key_algorithms = []
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server = KexParty()
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client = KexParty()
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follows = False
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unused = 0
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@classmethod
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def parse(cls, payload):
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kex = cls()
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buf = ReadBuf(payload)
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kex.cookie = buf.read(16)
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kex.kex_algorithms = buf.read_list()
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kex.key_algorithms = buf.read_list()
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kex.client.encryption = buf.read_list()
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kex.server.encryption = buf.read_list()
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kex.client.mac = buf.read_list()
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kex.server.mac = buf.read_list()
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kex.client.compression = buf.read_list()
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kex.server.compression = buf.read_list()
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kex.client.languages = buf.read_list()
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kex.server.languages = buf.read_list()
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kex.follows = buf.read_bool()
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kex.unused = buf.read_int()
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return kex
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class ReadBuf(object):
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def __init__(self, data = None):
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super(ReadBuf, self).__init__()
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self._buf = io.BytesIO(data) if data else io.BytesIO()
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self._len = len(data) if data else 0
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@property
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def unread_len(self):
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return self._len - self._buf.tell()
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def read(self, size):
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return self._buf.read(size)
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def read_line(self):
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return self._buf.readline().rstrip().decode('utf-8')
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def read_int(self):
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return struct.unpack('>I', self.read(4))[0]
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def read_bool(self):
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return struct.unpack('b', self.read(1))[0] != 0
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def read_list(self):
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list_size = self.read_int()
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return self.read(list_size).decode().split(',')
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class WriteBuf(object):
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def __init__(self, data = None):
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super(WriteBuf, self).__init__()
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self._wbuf = io.BytesIO(data) if data else io.BytesIO()
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def write(self, data):
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self._wbuf.write(data)
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def write_byte(self, v):
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self.write(struct.pack('>B', v))
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def write_bool(self, v):
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self.write_byte(1 if v else 0)
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def write_int(self, v):
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self.write(struct.pack('>I', v))
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def write_string(self, v):
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if not isinstance(v, bytes):
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v = bytes(bytearray(v, 'utf-8'))
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n = len(v)
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self.write(struct.pack('>I', n))
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self.write(v)
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def write_list(self, v):
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self.write_string(','.join(v))
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def write_mpint(self, v):
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length = v.bit_length() // 8 + 1
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data = [(v >> i*8) & 0xff for i in reversed(range(length))]
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data = bytes(bytearray(data))
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self.write_string(data)
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class SSH(object):
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MSG_KEXINIT = 20
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MSG_NEWKEYS = 21
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MSG_KEXDH_INIT = 30
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MSG_KEXDH_REPLY = 32
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class Socket(ReadBuf, WriteBuf):
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SM_BANNER_SENT = 1
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def __init__(self, host, port, cto = 3.0, rto = 5.0):
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self.__block_size = 8
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self.__state = 0
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self.__banner = None
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super(SSH.Socket, self).__init__()
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try:
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self.__sock = socket.create_connection((host, port), cto)
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self.__sock.settimeout(rto)
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except Exception as e:
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out.fail('[fail] {}'.format(e))
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sys.exit(1)
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def __enter__(self):
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return self
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def get_banner(self):
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if self.__state < self.SM_BANNER_SENT:
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self.send_banner()
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if self.__banner is None:
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self.recv()
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self.__banner = self.read_line()
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return self.__banner
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def recv(self, size = 2048):
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data = self.__sock.recv(size)
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pos = self._buf.tell()
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self._buf.seek(0, 2)
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self._buf.write(data)
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self._len += len(data)
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self._buf.seek(pos, 0)
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def send(self, data):
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self.__sock.send(data)
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def send_banner(self, banner = SSH_BANNER):
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self.send(banner.encode() + b'\r\n')
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if self.__state < self.SM_BANNER_SENT:
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self.__state = self.SM_BANNER_SENT
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def read_packet(self):
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if self.unread_len < self.__block_size:
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self.recv()
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header = self.read(self.__block_size)
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packet_size = struct.unpack('>I', header[:4])[0]
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rest = header[4:]
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lrest = len(rest)
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padding = ord(rest[0:1])
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packet_type = ord(rest[1:2])
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if (packet_size - lrest) % self.__block_size != 0:
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out.fail('[exception] invalid ssh packet (block size)')
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sys.exit(1)
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rlen = packet_size - lrest
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if self.unread_len < rlen:
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self.recv()
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buf = self.read(rlen)
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packet = rest[2:] + buf[0:packet_size - lrest]
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payload = packet[0:packet_size - padding]
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return packet_type, payload
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def send_packet(self):
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payload = self._wbuf.getvalue()
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self._wbuf.truncate(0)
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self._wbuf.seek(0)
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padding = -(len(payload) + 5) % 8
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if padding < 4:
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padding += 8
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plen = len(payload) + padding + 1
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pad_bytes = '\x00' * padding
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data = struct.pack('>Ib', plen, padding) + payload + pad_bytes
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self.send(data)
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def __del__(self):
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self.__cleanup()
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def __exit__(self, ex_type, ex_value, tb):
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self.__cleanup()
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def __cleanup(self):
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try:
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self.__sock.shutdown(socket.SHUT_RDWR)
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self.__sock.close()
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except:
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pass
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def get_ssh_ver(versions):
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tv = []
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for v in versions.split(','):
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if v.startswith('d'):
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tv.append('Dropbear SSH {0}'.format(v[1:]))
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else:
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tv.append('OpenSSH {0}'.format(v))
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return 'available since ' + ', '.join(tv).rstrip(', ')
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WARN_OPENSSH72_LEGACY = 'disabled (in client) since OpenSSH 7.2, legacy algorithm'
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FAIL_OPENSSH70_LEGACY = 'removed since OpenSSH 7.0, legacy algorithm'
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FAIL_OPENSSH70_WEAK = 'removed (in server) and disabled (in client) since OpenSSH 7.0, weak algorithm'
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FAIL_OPENSSH70_LOGJAM = 'disabled (in client) since OpenSSH 7.0, logjam attack'
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INFO_OPENSSH69_CHACHA = 'default cipher since OpenSSH 6.9.'
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FAIL_OPENSSH67_UNSAFE = 'removed (in server) since OpenSSH 6.7, unsafe algorithm'
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FAIL_OPENSSH61_REMOVE = 'removed since OpenSSH 6.1, removed from specification'
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FAIL_OPENSSH31_REMOVE = 'removed since OpenSSH 3.1'
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FAIL_DBEAR67_DISABLED = 'disabled since Dropbear SSH 2015.67'
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FAIL_DBEAR53_DISABLED = 'disabled since Dropbear SSH 0.53'
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FAIL_PLAINTEXT = 'no encryption/integrity'
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TEXT_CURVES_WEAK = 'using weak elliptic curves'
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TEXT_RNDSIG_KEY = 'using weak random number generator could reveal the key'
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TEXT_MODULUS_SIZE = 'using small 1024-bit modulus'
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TEXT_MODULUS_CUSTOM = 'using custom size modulus (possibly weak)'
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TEXT_HASH_WEAK = 'using weak hashing algorithm'
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TEXT_CIPHER_MODE = 'using weak cipher mode'
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TEXT_BLOCK_SIZE = 'using small 64-bit block size'
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TEXT_CIPHER_WEAK = 'using weak cipher'
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TEXT_ENCRYPT_AND_MAC = 'using encrypt-and-MAC mode'
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TEXT_TAG_SIZE = 'using small 64-bit tag size'
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KEX_DB = {
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'kex': {
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'diffie-hellman-group1-sha1': ['2.3.0,d0.28', [FAIL_OPENSSH67_UNSAFE, FAIL_OPENSSH70_LOGJAM], [TEXT_MODULUS_SIZE, TEXT_HASH_WEAK]],
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'diffie-hellman-group14-sha1': ['3.9,d0.53', [], [TEXT_HASH_WEAK]],
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'diffie-hellman-group-exchange-sha1': ['2.3.0', [FAIL_OPENSSH67_UNSAFE], [TEXT_HASH_WEAK]],
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'diffie-hellman-group-exchange-sha256': ['4.4', [], [TEXT_MODULUS_CUSTOM]],
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'ecdh-sha2-nistp256': ['5.7,d2013.62', [TEXT_CURVES_WEAK]],
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'ecdh-sha2-nistp384': ['5.7,d2013.62', [TEXT_CURVES_WEAK]],
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'ecdh-sha2-nistp521': ['5.7,d2013.62', [TEXT_CURVES_WEAK]],
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'curve25519-sha256@libssh.org': ['6.5,d2013.62'],
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'kexguess2@matt.ucc.asn.au': ['d2013.57'],
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},
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'key': {
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'rsa-sha2-256': ['7.2'],
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'rsa-sha2-512': ['7.2'],
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'ssh-ed25519': ['6.5'],
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'ssh-ed25519-cert-v01@openssh.com': ['6.5'],
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'ssh-rsa': ['2.5.0,d0.28'],
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'ssh-dss': ['2.1.0,d0.28', [FAIL_OPENSSH70_WEAK], [TEXT_MODULUS_SIZE, TEXT_RNDSIG_KEY]],
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'ecdsa-sha2-nistp256': ['5.7,d2013.62', [TEXT_CURVES_WEAK], [TEXT_RNDSIG_KEY]],
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'ecdsa-sha2-nistp384': ['5.7,d2013.62', [TEXT_CURVES_WEAK], [TEXT_RNDSIG_KEY]],
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'ecdsa-sha2-nistp521': ['5.7,d2013.62', [TEXT_CURVES_WEAK], [TEXT_RNDSIG_KEY]],
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'ssh-rsa-cert-v00@openssh.com': ['5.4', [FAIL_OPENSSH70_LEGACY], []],
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'ssh-dss-cert-v00@openssh.com': ['5.4', [FAIL_OPENSSH70_LEGACY], [TEXT_MODULUS_SIZE, TEXT_RNDSIG_KEY]],
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'ssh-rsa-cert-v01@openssh.com': ['5.6'],
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'ssh-dss-cert-v01@openssh.com': ['5.6', [FAIL_OPENSSH70_WEAK], [TEXT_MODULUS_SIZE, TEXT_RNDSIG_KEY]],
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'ecdsa-sha2-nistp256-cert-v01@openssh.com': ['5.7', [TEXT_CURVES_WEAK], [TEXT_RNDSIG_KEY]],
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'ecdsa-sha2-nistp384-cert-v01@openssh.com': ['5.7', [TEXT_CURVES_WEAK], [TEXT_RNDSIG_KEY]],
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'ecdsa-sha2-nistp521-cert-v01@openssh.com': ['5.7', [TEXT_CURVES_WEAK], [TEXT_RNDSIG_KEY]],
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},
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'enc': {
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'none': ['1.2.2,d2013.56', [FAIL_PLAINTEXT]],
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'3des-cbc': ['1.2.2,d0.28', [FAIL_OPENSSH67_UNSAFE], [TEXT_CIPHER_WEAK, TEXT_CIPHER_MODE, TEXT_BLOCK_SIZE]],
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'3des-ctr': ['d0.52'],
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'blowfish-cbc': ['1.2.2,d0.28', [FAIL_OPENSSH67_UNSAFE, FAIL_DBEAR53_DISABLED], [WARN_OPENSSH72_LEGACY, TEXT_CIPHER_MODE, TEXT_BLOCK_SIZE]],
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'twofish-cbc': ['d0.28', [FAIL_DBEAR67_DISABLED], [TEXT_CIPHER_MODE]],
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'twofish128-cbc': ['d0.47', [FAIL_DBEAR67_DISABLED], [TEXT_CIPHER_MODE]],
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'twofish256-cbc': ['d0.47', [FAIL_DBEAR67_DISABLED], [TEXT_CIPHER_MODE]],
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'twofish128-ctr': ['d2015.68'],
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'twofish256-ctr': ['d2015.68'],
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'cast128-cbc': ['2.1.0', [FAIL_OPENSSH67_UNSAFE], [WARN_OPENSSH72_LEGACY, TEXT_CIPHER_MODE, TEXT_BLOCK_SIZE]],
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'arcfour': ['2.1.0', [FAIL_OPENSSH67_UNSAFE], [WARN_OPENSSH72_LEGACY, TEXT_CIPHER_WEAK]],
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'arcfour128': ['4.2', [FAIL_OPENSSH67_UNSAFE], [WARN_OPENSSH72_LEGACY, TEXT_CIPHER_WEAK]],
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'arcfour256': ['4.2', [FAIL_OPENSSH67_UNSAFE], [WARN_OPENSSH72_LEGACY, TEXT_CIPHER_WEAK]],
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'aes128-cbc': ['2.3.0,d0.28', [FAIL_OPENSSH67_UNSAFE], [TEXT_CIPHER_MODE]],
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'aes192-cbc': ['2.3.0', [FAIL_OPENSSH67_UNSAFE], [TEXT_CIPHER_MODE]],
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'aes256-cbc': ['2.3.0,d0.47', [FAIL_OPENSSH67_UNSAFE], [TEXT_CIPHER_MODE]],
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'rijndael128-cbc': ['2.3.0', [FAIL_OPENSSH31_REMOVE], [TEXT_CIPHER_MODE]],
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'rijndael192-cbc': ['2.3.0', [FAIL_OPENSSH31_REMOVE], [TEXT_CIPHER_MODE]],
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'rijndael256-cbc': ['2.3.0', [FAIL_OPENSSH31_REMOVE], [TEXT_CIPHER_MODE]],
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'rijndael-cbc@lysator.liu.se': ['2.3.0', [FAIL_OPENSSH67_UNSAFE], [WARN_OPENSSH72_LEGACY, TEXT_CIPHER_MODE]],
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'aes128-ctr': ['3.7,d0.52'],
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'aes192-ctr': ['3.7'],
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'aes256-ctr': ['3.7,d0.52'],
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'aes128-gcm@openssh.com': ['6.2'],
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'aes256-gcm@openssh.com': ['6.2'],
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'chacha20-poly1305@openssh.com': ['6.5', [], [], [INFO_OPENSSH69_CHACHA]],
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},
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'mac': {
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'none': ['d2013.56', [FAIL_PLAINTEXT]],
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'hmac-sha1': ['2.1.0,d0.28', [], [TEXT_ENCRYPT_AND_MAC, TEXT_HASH_WEAK]],
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'hmac-sha1-96': ['2.5.0,d0.47', [FAIL_OPENSSH67_UNSAFE], [WARN_OPENSSH72_LEGACY, TEXT_ENCRYPT_AND_MAC, TEXT_HASH_WEAK]],
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'hmac-sha2-256': ['5.9,d2013.56', [], [TEXT_ENCRYPT_AND_MAC]],
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'hmac-sha2-256-96': ['5.9', [FAIL_OPENSSH61_REMOVE], [TEXT_ENCRYPT_AND_MAC]],
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'hmac-sha2-512': ['5.9,d2013.56', [], [TEXT_ENCRYPT_AND_MAC]],
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'hmac-sha2-512-96': ['5.9', [FAIL_OPENSSH61_REMOVE], [TEXT_ENCRYPT_AND_MAC]],
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'hmac-md5': ['2.1.0,d0.28', [FAIL_OPENSSH67_UNSAFE], [WARN_OPENSSH72_LEGACY, TEXT_ENCRYPT_AND_MAC, TEXT_HASH_WEAK]],
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'hmac-md5-96': ['2.5.0', [FAIL_OPENSSH67_UNSAFE], [WARN_OPENSSH72_LEGACY, TEXT_ENCRYPT_AND_MAC, TEXT_HASH_WEAK]],
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'hmac-ripemd160': ['2.5.0', [FAIL_OPENSSH67_UNSAFE], [WARN_OPENSSH72_LEGACY, TEXT_ENCRYPT_AND_MAC]],
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'hmac-ripemd160@openssh.com': ['2.1.0', [FAIL_OPENSSH67_UNSAFE], [WARN_OPENSSH72_LEGACY, TEXT_ENCRYPT_AND_MAC]],
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'umac-64@openssh.com': ['4.7', [], [TEXT_ENCRYPT_AND_MAC, TEXT_TAG_SIZE]],
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'umac-128@openssh.com': ['6.2', [], [TEXT_ENCRYPT_AND_MAC]],
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'hmac-sha1-etm@openssh.com': ['6.2', [], [WARN_OPENSSH72_LEGACY, TEXT_HASH_WEAK]],
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'hmac-sha1-96-etm@openssh.com': ['6.2', [FAIL_OPENSSH67_UNSAFE], [TEXT_HASH_WEAK]],
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'hmac-sha2-256-etm@openssh.com': ['6.2'],
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'hmac-sha2-512-etm@openssh.com': ['6.2'],
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'hmac-md5-etm@openssh.com': ['6.2', [FAIL_OPENSSH67_UNSAFE], [WARN_OPENSSH72_LEGACY, TEXT_HASH_WEAK]],
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'hmac-md5-96-etm@openssh.com': ['6.2', [FAIL_OPENSSH67_UNSAFE], [WARN_OPENSSH72_LEGACY, TEXT_HASH_WEAK]],
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'hmac-ripemd160-etm@openssh.com': ['6.2', [FAIL_OPENSSH67_UNSAFE], [WARN_OPENSSH72_LEGACY]],
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'umac-64-etm@openssh.com': ['6.2', [], [TEXT_TAG_SIZE]],
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'umac-128-etm@openssh.com': ['6.2'],
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}
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}
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def process_algorithms(alg_type, algorithms, maxlen=0):
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for algorithm in algorithms:
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process_algorithm(alg_type, algorithm, maxlen)
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def process_algorithm(alg_type, alg_name, alg_max_len=0):
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prefix = '(' + alg_type + ') '
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if alg_max_len == 0:
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alg_max_len = len(alg_name)
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padding = ' ' * (alg_max_len - len(alg_name))
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texts = []
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if alg_name in KEX_DB[alg_type]:
|
|
alg_desc = KEX_DB[alg_type][alg_name]
|
|
ldesc = len(alg_desc)
|
|
for idx, level in enumerate(['fail', 'warn', 'info']):
|
|
if level == 'info':
|
|
texts.append((level, get_ssh_ver(alg_desc[0])))
|
|
idx = idx + 1
|
|
if ldesc > idx:
|
|
for t in alg_desc[idx]:
|
|
texts.append((level, t))
|
|
if len(texts) == 0:
|
|
texts.append(('info', ''))
|
|
else:
|
|
texts.append(('warn', 'unknown algorithm'))
|
|
first = True
|
|
for (level, text) in texts:
|
|
f = getattr(out, level)
|
|
text = '[' + level + '] ' + text
|
|
if first:
|
|
if first and level == 'info':
|
|
f = out.good
|
|
f(prefix + alg_name + padding + ' -- ' + text)
|
|
first = False
|
|
else:
|
|
if out.verbose:
|
|
f(prefix + alg_name + padding + ' -- ' + text)
|
|
else:
|
|
f(' ' * len(prefix + alg_name) + padding + ' `- ' + text)
|
|
|
|
def process_kex(kex):
|
|
compressions = [x for x in kex.server.compression if x != 'none']
|
|
if len(compressions) > 0:
|
|
cmptxt = 'enabled ({0})'.format(', '.join(compressions))
|
|
else:
|
|
cmptxt = 'disabled'
|
|
out.good('[info] compression is ' + cmptxt)
|
|
ml = lambda l: max(len(i) for i in l)
|
|
maxlen = max(ml(kex.kex_algorithms),
|
|
ml(kex.key_algorithms),
|
|
ml(kex.server.encryption),
|
|
ml(kex.server.mac))
|
|
out.head('\n# key exchange algorithms')
|
|
process_algorithms('kex', kex.kex_algorithms, maxlen)
|
|
out.head('\n# host-key algorithms')
|
|
process_algorithms('key', kex.key_algorithms, maxlen)
|
|
out.head('\n# encryption algorithms (ciphers)')
|
|
process_algorithms('enc', kex.server.encryption, maxlen)
|
|
out.head('\n# message authentication code algorithms')
|
|
process_algorithms('mac', kex.server.mac, maxlen)
|
|
out.sep()
|
|
|
|
|
|
def parse_int(v):
|
|
try:
|
|
return int(v)
|
|
except:
|
|
return 0
|
|
|
|
def parse_args():
|
|
host = None
|
|
port = 22
|
|
for arg in sys.argv[1:]:
|
|
if arg.startswith('-'):
|
|
arg = arg.lstrip('-')
|
|
if arg == 'n': out.colors = False
|
|
elif arg == 'v': out.verbose = True
|
|
continue
|
|
s = arg.split(':')
|
|
host = s[0].strip()
|
|
if len(s) > 1:
|
|
port = parse_int(s[1])
|
|
if not host or port <= 0:
|
|
usage()
|
|
return host, port
|
|
|
|
def main():
|
|
host, port = parse_args()
|
|
s = SSH.Socket(host, port)
|
|
banner = s.get_banner()
|
|
out.head('# general')
|
|
out.good('[info] banner: ' + banner)
|
|
if banner.startswith('SSH-1.99-'):
|
|
out.fail('[fail] protocol SSH1 enabled')
|
|
packet_type, payload = s.read_packet()
|
|
if packet_type != SSH.MSG_KEXINIT:
|
|
out.fail('[exception] did not receive MSG_KEXINIT (20), instead received unknown message ({0})'.format(packet_type))
|
|
sys.exit(1)
|
|
kex = Kex.parse(payload)
|
|
process_kex(kex)
|
|
|
|
if __name__ == '__main__':
|
|
out = Output()
|
|
main()
|