mirror of
https://github.com/Grasscutters/mitmproxy.git
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139 lines
4.4 KiB
Python
139 lines
4.4 KiB
Python
"""
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This inline script allows conditional TLS Interception based
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on a user-defined strategy.
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Example:
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> mitmdump -s tls_passthrough.py
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1. curl --proxy http://localhost:8080 https://example.com --insecure
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// works - we'll also see the contents in mitmproxy
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2. curl --proxy http://localhost:8080 https://example.com --insecure
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// still works - we'll also see the contents in mitmproxy
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3. curl --proxy http://localhost:8080 https://example.com
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// fails with a certificate error, which we will also see in mitmproxy
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4. curl --proxy http://localhost:8080 https://example.com
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// works again, but mitmproxy does not intercept and we do *not* see the contents
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Authors: Maximilian Hils, Matthew Tuusberg
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"""
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from __future__ import (absolute_import, print_function, division)
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import collections
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import random
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from enum import Enum
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from mitmproxy.exceptions import TlsProtocolException
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from mitmproxy.protocol import TlsLayer, RawTCPLayer
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class InterceptionResult(Enum):
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success = True
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failure = False
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skipped = None
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class _TlsStrategy(object):
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"""
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Abstract base class for interception strategies.
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"""
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def __init__(self):
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# A server_address -> interception results mapping
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self.history = collections.defaultdict(lambda: collections.deque(maxlen=200))
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def should_intercept(self, server_address):
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"""
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Returns:
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True, if we should attempt to intercept the connection.
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False, if we want to employ pass-through instead.
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"""
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raise NotImplementedError()
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def record_success(self, server_address):
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self.history[server_address].append(InterceptionResult.success)
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def record_failure(self, server_address):
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self.history[server_address].append(InterceptionResult.failure)
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def record_skipped(self, server_address):
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self.history[server_address].append(InterceptionResult.skipped)
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class ConservativeStrategy(_TlsStrategy):
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"""
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Conservative Interception Strategy - only intercept if there haven't been any failed attempts
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in the history.
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"""
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def should_intercept(self, server_address):
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if InterceptionResult.failure in self.history[server_address]:
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return False
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return True
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class ProbabilisticStrategy(_TlsStrategy):
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"""
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Fixed probability that we intercept a given connection.
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"""
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def __init__(self, p):
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self.p = p
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super(ProbabilisticStrategy, self).__init__()
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def should_intercept(self, server_address):
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return random.uniform(0, 1) < self.p
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class TlsFeedback(TlsLayer):
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"""
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Monkey-patch _establish_tls_with_client to get feedback if TLS could be established
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successfully on the client connection (which may fail due to cert pinning).
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"""
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def _establish_tls_with_client(self):
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server_address = self.server_conn.address
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tls_strategy = self.script_context.tls_strategy
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try:
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super(TlsFeedback, self)._establish_tls_with_client()
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except TlsProtocolException as e:
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tls_strategy.record_failure(server_address)
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raise e
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else:
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tls_strategy.record_success(server_address)
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# inline script hooks below.
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def start(context, argv):
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if len(argv) == 2:
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context.tls_strategy = ProbabilisticStrategy(float(argv[1]))
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else:
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context.tls_strategy = ConservativeStrategy()
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def next_layer(context, next_layer):
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"""
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This hook does the actual magic - if the next layer is planned to be a TLS layer,
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we check if we want to enter pass-through mode instead.
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"""
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if isinstance(next_layer, TlsLayer) and next_layer._client_tls:
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server_address = next_layer.server_conn.address
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if context.tls_strategy.should_intercept(server_address):
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# We try to intercept.
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# Monkey-Patch the layer to get feedback from the TLSLayer if interception worked.
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next_layer.__class__ = TlsFeedback
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next_layer.script_context = context
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else:
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# We don't intercept - reply with a pass-through layer and add a "skipped" entry.
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context.log("TLS passthrough for %s" % repr(next_layer.server_conn.address), "info")
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next_layer_replacement = RawTCPLayer(next_layer.ctx, logging=False)
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next_layer.reply(next_layer_replacement)
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context.tls_strategy.record_skipped(server_address)
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