mirror of
https://github.com/Grasscutters/mitmproxy.git
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221 lines
7.1 KiB
Python
221 lines
7.1 KiB
Python
from __future__ import absolute_import
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import copy
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import netlib.tcp
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from .. import stateobject, utils, version
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from ..proxy.connection import ClientConnection, ServerConnection
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KILL = 0 # const for killed requests
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class Error(stateobject.SimpleStateObject):
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"""
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An Error.
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This is distinct from an protocol error response (say, a HTTP code 500), which
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is represented by a normal HTTPResponse object. This class is responsible
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for indicating errors that fall outside of normal protocol communications,
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like interrupted connections, timeouts, protocol errors.
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Exposes the following attributes:
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flow: Flow object
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msg: Message describing the error
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timestamp: Seconds since the epoch
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"""
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def __init__(self, msg, timestamp=None):
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"""
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@type msg: str
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@type timestamp: float
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"""
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self.flow = None # will usually be set by the flow backref mixin
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self.msg = msg
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self.timestamp = timestamp or utils.timestamp()
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_stateobject_attributes = dict(
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msg=str,
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timestamp=float
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)
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def __str__(self):
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return self.msg
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@classmethod
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def _from_state(cls, state):
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f = cls(None) # the default implementation assumes an empty constructor. Override accordingly.
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f._load_state(state)
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return f
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def copy(self):
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c = copy.copy(self)
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return c
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class Flow(stateobject.SimpleStateObject):
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"""
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A Flow is a collection of objects representing a single transaction.
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This class is usually subclassed for each protocol, e.g. HTTPFlow.
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"""
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def __init__(self, conntype, client_conn, server_conn, live=None):
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self.conntype = conntype
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self.client_conn = client_conn
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"""@type: ClientConnection"""
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self.server_conn = server_conn
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"""@type: ServerConnection"""
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self.live = live
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"""@type: LiveConnection"""
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self.error = None
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"""@type: Error"""
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self._backup = None
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_stateobject_attributes = dict(
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error=Error,
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client_conn=ClientConnection,
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server_conn=ServerConnection,
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conntype=str
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)
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def _get_state(self):
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d = super(Flow, self)._get_state()
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d.update(version=version.IVERSION)
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return d
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def __eq__(self, other):
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return self is other
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def copy(self):
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f = copy.copy(self)
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f.client_conn = self.client_conn.copy()
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f.server_conn = self.server_conn.copy()
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if self.error:
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f.error = self.error.copy()
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return f
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def modified(self):
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"""
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Has this Flow been modified?
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"""
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if self._backup:
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return self._backup != self._get_state()
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else:
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return False
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def backup(self, force=False):
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"""
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Save a backup of this Flow, which can be reverted to using a
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call to .revert().
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"""
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if not self._backup:
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self._backup = self._get_state()
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def revert(self):
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"""
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Revert to the last backed up state.
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"""
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if self._backup:
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self._load_state(self._backup)
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self._backup = None
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class ProtocolHandler(object):
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"""
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A ProtocolHandler implements an application-layer protocol, e.g. HTTP.
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See: libmproxy.protocol.http.HTTPHandler
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"""
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def __init__(self, c):
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self.c = c
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"""@type: libmproxy.proxy.server.ConnectionHandler"""
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self.live = LiveConnection(c)
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"""@type: LiveConnection"""
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def handle_messages(self):
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"""
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This method gets called if a client connection has been made. Depending on the proxy settings,
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a server connection might already exist as well.
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"""
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raise NotImplementedError # pragma: nocover
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def handle_server_reconnect(self, state):
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"""
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This method gets called if a server connection needs to reconnect and there's a state associated
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with the server connection (e.g. a previously-sent CONNECT request or a SOCKS proxy request).
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This method gets called after the connection has been restablished but before SSL is established.
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"""
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raise NotImplementedError # pragma: nocover
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def handle_error(self, error):
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"""
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This method gets called should there be an uncaught exception during the connection.
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This might happen outside of handle_messages, e.g. if the initial SSL handshake fails in transparent mode.
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"""
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raise error # pragma: nocover
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class LiveConnection(object):
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"""
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This facade allows interested parties (FlowMaster, inline scripts) to interface with a live connection,
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without requiring to expose the internals of the ConnectionHandler.
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"""
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def __init__(self, c):
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self.c = c
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"""@type: libmproxy.proxy.server.ConnectionHandler"""
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self._backup_server_conn = None
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"""@type: libmproxy.proxy.connection.ServerConnection"""
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def change_server(self, address, ssl=None, force=False, persistent_change=False):
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"""
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Change the server connection to the specified address.
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@returns:
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True, if a new connection has been established,
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False, if an existing connection has been used
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"""
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address = netlib.tcp.Address.wrap(address)
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ssl_mismatch = (ssl is not None and ssl != self.c.server_conn.ssl_established)
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address_mismatch = (address != self.c.server_conn.address)
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if persistent_change:
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self._backup_server_conn = None
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if ssl_mismatch or address_mismatch or force:
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self.c.log("Change server connection: %s:%s -> %s:%s [persistent: %s]" % (
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self.c.server_conn.address.host,
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self.c.server_conn.address.port,
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address.host,
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address.port,
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persistent_change
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), "debug")
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if not self._backup_server_conn and not persistent_change:
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self._backup_server_conn = self.c.server_conn
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self.c.server_conn = None
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else: # This is at least the second temporary change. We can kill the current connection.
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self.c.del_server_connection()
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self.c.set_server_address(address)
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self.c.establish_server_connection(ask=False)
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if ssl:
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self.c.establish_ssl(server=True)
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return True
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return False
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def restore_server(self):
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# TODO: Similar to _backup_server_conn, introduce _cache_server_conn, which keeps the changed connection open
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# This may be beneficial if a user is rewriting all requests from http to https or similar.
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if not self._backup_server_conn:
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return
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self.c.log("Restore original server connection: %s:%s -> %s:%s" % (
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self.c.server_conn.address.host,
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self.c.server_conn.address.port,
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self._backup_server_conn.address.host,
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self._backup_server_conn.address.port
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), "debug")
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self.c.del_server_connection()
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self.c.server_conn = self._backup_server_conn
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self._backup_server_conn = None |