mitmproxy/libmproxy/proxy/server.py

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from __future__ import absolute_import
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import socket
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from OpenSSL import SSL
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from netlib import tcp
from .primitives import ProxyServerError, Log, ProxyError, ConnectionTypeChange, \
AddressPriority
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from .connection import ClientConnection, ServerConnection
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from ..protocol.handle import handle_messages, handle_error
from .. import version
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class DummyServer:
bound = False
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def __init__(self, config):
self.config = config
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def start_slave(self, *args):
pass
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def shutdown(self):
pass
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class ProxyServer(tcp.TCPServer):
allow_reuse_address = True
bound = True
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def __init__(self, config, port, host='', server_version=version.NAMEVERSION):
"""
Raises ProxyServerError if there's a startup problem.
"""
self.config = config
self.server_version = server_version
try:
tcp.TCPServer.__init__(self, (host, port))
except socket.error, v:
raise ProxyServerError('Error starting proxy server: ' + v.strerror)
self.channel = None
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def start_slave(self, klass, channel):
slave = klass(channel, self)
slave.start()
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def set_channel(self, channel):
self.channel = channel
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def handle_client_connection(self, conn, client_address):
h = ConnectionHandler(self.config, conn, client_address, self, self.channel,
self.server_version)
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h.handle()
h.finish()
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class ConnectionHandler:
def __init__(self, config, client_connection, client_address, server, channel,
server_version):
self.config = config
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"""@type: libmproxy.proxy.config.ProxyConfig"""
self.client_conn = ClientConnection(client_connection, client_address, server)
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"""@type: libmproxy.proxy.connection.ClientConnection"""
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self.server_conn = None
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"""@type: libmproxy.proxy.connection.ServerConnection"""
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self.channel, self.server_version = channel, server_version
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self.close = False
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self.conntype = None
self.sni = None
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def handle(self):
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self.log("clientconnect", "info")
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self.channel.ask("clientconnect", self)
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self.determine_conntype()
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try:
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# Can we already identify the target server and connect to it?
if self.config.get_upstream_server:
upstream_info = self.config.get_upstream_server(
self.client_conn.connection)
self.set_server_address(upstream_info[2:], AddressPriority.FROM_SETTINGS)
client_ssl, server_ssl = upstream_info[:2]
if client_ssl or server_ssl:
self.establish_server_connection()
self.establish_ssl(client=client_ssl, server=server_ssl)
while not self.close:
try:
handle_messages(self.conntype, self)
except ConnectionTypeChange:
self.log("Connection Type Changed: %s" % self.conntype, "info")
continue
except (ProxyError, tcp.NetLibError), e:
handle_error(self.conntype, self, e)
except Exception, e:
import traceback, sys
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self.log(traceback.format_exc(), "error")
print >> sys.stderr, traceback.format_exc()
print >> sys.stderr, "mitmproxy has crashed!"
print >> sys.stderr, "Please lodge a bug report at: https://github.com/mitmproxy/mitmproxy"
raise e
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self.del_server_connection()
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self.log("clientdisconnect", "info")
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self.channel.tell("clientdisconnect", self)
def del_server_connection(self):
"""
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Deletes (and closes) an existing server connection.
"""
if self.server_conn and self.server_conn.connection:
self.server_conn.finish()
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self.log("serverdisconnect", "debug", ["%s:%s" % (self.server_conn.address.host,
self.server_conn.address.port)])
self.channel.tell("serverdisconnect", self)
self.server_conn = None
self.sni = None
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def determine_conntype(self):
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#TODO: Add ruleset to select correct protocol depending on mode/target port etc.
self.conntype = "http"
def set_server_address(self, address, priority):
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"""
Sets a new server address with the given priority.
Does not re-establish either connection or SSL handshake.
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"""
address = tcp.Address.wrap(address)
if self.server_conn:
if self.server_conn.priority > priority:
self.log("Attempt to change server address, "
"but priority is too low (is: %s, got: %s)" % (
self.server_conn.priority, priority), "info")
return
if self.server_conn.address == address:
self.server_conn.priority = priority # Possibly increase priority
return
self.del_server_connection()
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self.log("Set new server address: %s:%s" % (address.host, address.port), "debug")
self.server_conn = ServerConnection(address, priority)
def establish_server_connection(self):
"""
Establishes a new server connection.
If there is already an existing server connection, the function returns immediately.
"""
if self.server_conn.connection:
return
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self.log("serverconnect", "debug", ["%s:%s" % self.server_conn.address()[:2]])
self.channel.tell("serverconnect", self)
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try:
self.server_conn.connect()
except tcp.NetLibError, v:
raise ProxyError(502, v)
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def establish_ssl(self, client=False, server=False):
"""
Establishes SSL on the existing connection(s) to the server or the client,
as specified by the parameters. If the target server is on the pass-through list,
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the conntype attribute will be changed and a ConnTypeChanged exception will be raised.
"""
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# TODO: Implement SSL pass-through handling and change conntype
passthrough = [
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# "echo.websocket.org",
# "174.129.224.73" # echo.websocket.org, transparent mode
]
if self.server_conn.address.host in passthrough or self.sni in passthrough:
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self.conntype = "tcp"
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raise ConnectionTypeChange
# Logging
if client or server:
subs = []
if client:
subs.append("with client")
if server:
subs.append("with server (sni: %s)" % self.sni)
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self.log("Establish SSL", "debug", subs)
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if server:
if self.server_conn.ssl_established:
raise ProxyError(502, "SSL to Server already established.")
self.establish_server_connection() # make sure there is a server connection.
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self.server_conn.establish_ssl(self.config.clientcerts, self.sni)
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if client:
if self.client_conn.ssl_established:
raise ProxyError(502, "SSL to Client already established.")
cert, key = self.find_cert()
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self.client_conn.convert_to_ssl(
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cert, key,
handle_sni=self.handle_sni,
cipher_list=self.config.ciphers,
dhparams=self.config.certstore.dhparams
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)
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def server_reconnect(self, no_ssl=False):
address = self.server_conn.address
had_ssl = self.server_conn.ssl_established
priority = self.server_conn.priority
sni = self.sni
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self.log("(server reconnect follows)", "debug")
self.del_server_connection()
self.set_server_address(address, priority)
self.establish_server_connection()
if had_ssl and not no_ssl:
self.sni = sni
self.establish_ssl(server=True)
def finish(self):
self.client_conn.finish()
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def log(self, msg, level, subs=()):
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msg = [
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"%s:%s: %s" % (self.client_conn.address.host, self.client_conn.address.port, msg)
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]
for i in subs:
msg.append(" -> " + i)
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msg = "\n".join(msg)
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self.channel.tell("log", Log(msg, level))
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def find_cert(self):
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if self.config.certforward and self.server_conn.ssl_established:
return self.server_conn.cert, self.config.certstore.gen_pkey(self.server_conn.cert)
else:
host = self.server_conn.address.host
sans = []
if not self.config.no_upstream_cert and self.server_conn.ssl_established:
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upstream_cert = self.server_conn.cert
if upstream_cert.cn:
host = upstream_cert.cn.decode("utf8").encode("idna")
sans = upstream_cert.altnames
ret = self.config.certstore.get_cert(host, sans)
if not ret:
raise ProxyError(502, "Unable to generate dummy cert.")
return ret
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def handle_sni(self, connection):
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"""
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This callback gets called during the SSL handshake with the client.
The client has just sent the Sever Name Indication (SNI). We now connect upstream to
figure out which certificate needs to be served.
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"""
try:
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sn = connection.get_servername()
if sn and sn != self.sni:
self.sni = sn.decode("utf8").encode("idna")
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self.log("SNI received: %s" % self.sni, "debug")
self.server_reconnect() # reconnect to upstream server with SNI
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# Now, change client context to reflect changed certificate:
cert, key = self.find_cert()
new_context = self.client_conn._create_ssl_context(
cert, key,
method=SSL.TLSv1_METHOD,
cipher_list=self.config.ciphers,
dhparams=self.config.certstore.dhparams
)
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connection.set_context(new_context)
# An unhandled exception in this method will core dump PyOpenSSL, so
# make dang sure it doesn't happen.
except Exception, e: # pragma: no cover
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import traceback
self.log("Error in handle_sni:\r\n" + traceback.format_exc(), "error")