Beispiel #1
0
    def test___init__(self):
        timeout = mock.Mock()
        exp = ExpectNoMessage(timeout)

        self.assertIsNotNone(exp)
        self.assertTrue(exp.is_expect())
        self.assertFalse(exp.is_command())
        self.assertFalse(exp.is_generator())
        self.assertIs(exp.timeout, timeout)
Beispiel #2
0
    def test_run_with_expect_and_no_message(self):
        node = ExpectNoMessage()

        runner = Runner(node)
        runner.state.msg_sock = mock.MagicMock()
        runner.state.msg_sock.recvMessageBlocking = \
                mock.MagicMock(side_effect=socket.timeout)

        runner.run()
Beispiel #3
0
    def test_run_with_expect_no_message_and_message_received(self):
        node = ExpectNoMessage()

        runner = Runner(node)
        runner.state.msg_sock = mock.MagicMock()
        runner.state.msg_sock.recvMessageBlocking = \
                mock.MagicMock(return_value=(mock.MagicMock(),
                                             mock.MagicMock()))

        with self.assertRaises(AssertionError):
            runner.run()
Beispiel #4
0
def main():
    host = "localhost"
    port = 4433
    num_limit = None
    run_exclude = set()

    argv = sys.argv[1:]
    opts, args = getopt.getopt(argv, "h:p:e:n:", ["help"])
    for opt, arg in opts:
        if opt == '-h':
            host = arg
        elif opt == '-p':
            port = int(arg)
        elif opt == '-e':
            run_exclude.add(arg)
        elif opt == '-n':
            num_limit = int(arg)
        elif opt == '--help':
            help_msg()
            sys.exit(0)
        else:
            raise ValueError("Unknown option: {0}".format(opt))

    if args:
        run_only = set(args)
    else:
        run_only = None

    conversations = {}

    # sanity conversation
    conversation = Connect(host, port)
    node = conversation
    ciphers = [
        CipherSuite.TLS_AES_128_GCM_SHA256,
        CipherSuite.TLS_EMPTY_RENEGOTIATION_INFO_SCSV
    ]
    ext = {}
    groups = [GroupName.secp256r1]
    ext[ExtensionType.key_share] = key_share_ext_gen(groups)
    ext[ExtensionType.supported_versions] = SupportedVersionsExtension()\
        .create([TLS_1_3_DRAFT, (3, 3)])
    ext[ExtensionType.supported_groups] = SupportedGroupsExtension()\
        .create(groups)
    sig_algs = [
        SignatureScheme.rsa_pss_rsae_sha256,
        SignatureScheme.rsa_pss_pss_sha256,
        SignatureScheme.rsa_pss_rsae_sha384, SignatureScheme.rsa_pss_pss_sha384
    ]
    ext[ExtensionType.signature_algorithms] = SignatureAlgorithmsExtension()\
        .create(sig_algs)
    ext[ExtensionType.signature_algorithms_cert] = SignatureAlgorithmsCertExtension()\
        .create(RSA_SIG_ALL)
    node = node.add_child(ClientHelloGenerator(ciphers, extensions=ext))
    node = node.add_child(ExpectServerHello())
    node = node.add_child(ExpectChangeCipherSpec())
    node = node.add_child(ExpectEncryptedExtensions())
    node = node.add_child(ExpectCertificate())
    node = node.add_child(ExpectCertificateVerify())
    node = node.add_child(ExpectFinished())
    node = node.add_child(FinishedGenerator())
    node = node.add_child(
        ApplicationDataGenerator(bytearray(b"GET / HTTP/1.0\r\n\r\n")))

    # This message is optional and may show up 0 to many times
    cycle = ExpectNewSessionTicket()
    node = node.add_child(cycle)
    node.add_child(cycle)

    node.next_sibling = ExpectApplicationData()
    node = node.next_sibling.add_child(
        AlertGenerator(AlertLevel.warning, AlertDescription.close_notify))
    node = node.add_child(ExpectAlert())
    node.next_sibling = ExpectClose()
    conversations["sanity"] = conversation

    # empty
    ciphers = [
        CipherSuite.TLS_AES_128_GCM_SHA256, CipherSuite.TLS_AES_256_GCM_SHA384
    ]
    for cipher in ciphers:
        conversation = Connect(host, port)
        node = conversation
        ciphers = [cipher, CipherSuite.TLS_EMPTY_RENEGOTIATION_INFO_SCSV]
        ext = {}
        groups = [GroupName.secp256r1]
        ext[ExtensionType.key_share] = key_share_ext_gen(groups)
        ext[ExtensionType.supported_versions] = SupportedVersionsExtension()\
            .create([TLS_1_3_DRAFT, (3, 3)])
        ext[ExtensionType.supported_groups] = SupportedGroupsExtension()\
            .create(groups)
        sig_algs = [
            SignatureScheme.rsa_pss_rsae_sha256,
            SignatureScheme.rsa_pss_pss_sha256,
            SignatureScheme.rsa_pss_rsae_sha384,
            SignatureScheme.rsa_pss_pss_sha384
        ]
        ext[ExtensionType.signature_algorithms] = SignatureAlgorithmsExtension()\
            .create(sig_algs)
        ext[ExtensionType.signature_algorithms_cert] = SignatureAlgorithmsCertExtension()\
            .create(RSA_SIG_ALL)
        node = node.add_child(ClientHelloGenerator(ciphers, extensions=ext))
        node = node.add_child(ExpectServerHello())
        node = node.add_child(ExpectChangeCipherSpec())
        node = node.add_child(ExpectEncryptedExtensions())
        node = node.add_child(ExpectCertificate())
        node = node.add_child(ExpectCertificateVerify())
        node = node.add_child(ExpectFinished())
        node = node.add_child(FinishedGenerator(trunc_start=0, trunc_end=0))

        # This message may be sent right after server finished
        cycle = ExpectNewSessionTicket()
        node = node.add_child(cycle)
        node.add_child(cycle)

        # we do not expect any application data back
        # after malforming the Finished message
        node.next_sibling = ExpectAlert(AlertLevel.fatal,
                                        AlertDescription.decode_error)
        node = node.next_sibling.add_child(ExpectClose())
        conversations["empty - cipher %s" \
                         % (CipherSuite.ietfNames[cipher])] = conversation

    # single bit error
    scenarios = [(CipherSuite.TLS_AES_128_GCM_SHA256, 32),
                 (CipherSuite.TLS_AES_256_GCM_SHA384, 48)]
    for cipher, prf_bytes in scenarios:
        for mbit in range(8 * prf_bytes):
            mbyte = mbit // 8 + 1
            conversation = Connect(host, port)
            node = conversation
            ciphers = [cipher, CipherSuite.TLS_EMPTY_RENEGOTIATION_INFO_SCSV]
            ext = {}
            groups = [GroupName.secp256r1]
            ext[ExtensionType.key_share] = key_share_ext_gen(groups)
            ext[ExtensionType.supported_versions] = SupportedVersionsExtension()\
                .create([TLS_1_3_DRAFT, (3, 3)])
            ext[ExtensionType.supported_groups] = SupportedGroupsExtension()\
                .create(groups)
            sig_algs = [
                SignatureScheme.rsa_pss_rsae_sha256,
                SignatureScheme.rsa_pss_pss_sha256,
                SignatureScheme.rsa_pss_rsae_sha384,
                SignatureScheme.rsa_pss_pss_sha384
            ]
            ext[ExtensionType.signature_algorithms] = SignatureAlgorithmsExtension()\
                .create(sig_algs)
            ext[ExtensionType.signature_algorithms_cert] = SignatureAlgorithmsCertExtension()\
                .create(RSA_SIG_ALL)
            node = node.add_child(ClientHelloGenerator(ciphers,
                                                       extensions=ext))
            node = node.add_child(ExpectServerHello())
            node = node.add_child(ExpectChangeCipherSpec())
            node = node.add_child(ExpectEncryptedExtensions())
            node = node.add_child(ExpectCertificate())
            node = node.add_child(ExpectCertificateVerify())
            node = node.add_child(ExpectFinished())
            node = node.add_child(
                fuzz_message(FinishedGenerator(),
                             xors={-mbyte: 0x01 << mbit % 8}))
            # This message may be sent right after server finished
            cycle = ExpectNewSessionTicket()
            node = node.add_child(cycle)
            node.add_child(cycle)

            # we do not expect any application data back
            # after malforming the Finished message
            node.next_sibling = ExpectAlert(AlertLevel.fatal,
                                            AlertDescription.decrypt_error)
            node = node.next_sibling.add_child(ExpectClose())
            conversations["single bit error - cipher %s, bit %d" \
                          % (CipherSuite.ietfNames[cipher],
                             mbit)] = conversation

    # truncation
    # cipher, start, end
    scenarios = [
        (CipherSuite.TLS_AES_128_GCM_SHA256, 0, -1),
        (CipherSuite.TLS_AES_128_GCM_SHA256, 0, -2),
        (CipherSuite.TLS_AES_128_GCM_SHA256, 0, -4),
        (CipherSuite.TLS_AES_128_GCM_SHA256, 0, -8),
        (CipherSuite.TLS_AES_128_GCM_SHA256, 0, -16),
        (CipherSuite.TLS_AES_128_GCM_SHA256, 0, -32),
        (CipherSuite.TLS_AES_128_GCM_SHA256, 0, 12),  # TLS-1.2 size
        (CipherSuite.TLS_AES_128_GCM_SHA256, 1, None),
        (CipherSuite.TLS_AES_128_GCM_SHA256, 2, None),
        (CipherSuite.TLS_AES_128_GCM_SHA256, 4, None),
        (CipherSuite.TLS_AES_128_GCM_SHA256, 8, None),
        (CipherSuite.TLS_AES_128_GCM_SHA256, 16, None),
        (CipherSuite.TLS_AES_128_GCM_SHA256, 32, None),
        (CipherSuite.TLS_AES_256_GCM_SHA384, 0, -1),
        (CipherSuite.TLS_AES_256_GCM_SHA384, 0, -2),
        (CipherSuite.TLS_AES_256_GCM_SHA384, 0, -4),
        (CipherSuite.TLS_AES_256_GCM_SHA384, 0, -8),
        (CipherSuite.TLS_AES_256_GCM_SHA384, 0, -16),  # SHA-256 size
        (CipherSuite.TLS_AES_256_GCM_SHA384, 0, -32),
        (CipherSuite.TLS_AES_256_GCM_SHA384, 0, 12),  # TLS-1.2 size
        (CipherSuite.TLS_AES_256_GCM_SHA384, 1, None),
        (CipherSuite.TLS_AES_256_GCM_SHA384, 2, None),
        (CipherSuite.TLS_AES_256_GCM_SHA384, 4, None),
        (CipherSuite.TLS_AES_256_GCM_SHA384, 8, None),
        (CipherSuite.TLS_AES_256_GCM_SHA384, 16, None),  # SHA-256 size
        (CipherSuite.TLS_AES_256_GCM_SHA384, 32, None)
    ]
    for cipher, start, end in scenarios:
        conversation = Connect(host, port)
        node = conversation
        ciphers = [cipher, CipherSuite.TLS_EMPTY_RENEGOTIATION_INFO_SCSV]
        ext = {}
        groups = [GroupName.secp256r1]
        ext[ExtensionType.key_share] = key_share_ext_gen(groups)
        ext[ExtensionType.supported_versions] = SupportedVersionsExtension()\
            .create([TLS_1_3_DRAFT, (3, 3)])
        ext[ExtensionType.supported_groups] = SupportedGroupsExtension()\
            .create(groups)
        sig_algs = [
            SignatureScheme.rsa_pss_rsae_sha256,
            SignatureScheme.rsa_pss_pss_sha256,
            SignatureScheme.rsa_pss_rsae_sha384,
            SignatureScheme.rsa_pss_pss_sha384
        ]
        ext[ExtensionType.signature_algorithms] = SignatureAlgorithmsExtension()\
            .create(sig_algs)
        ext[ExtensionType.signature_algorithms_cert] = SignatureAlgorithmsCertExtension()\
            .create(RSA_SIG_ALL)
        node = node.add_child(ClientHelloGenerator(ciphers, extensions=ext))
        node = node.add_child(ExpectServerHello())
        node = node.add_child(ExpectChangeCipherSpec())
        node = node.add_child(ExpectEncryptedExtensions())
        node = node.add_child(ExpectCertificate())
        node = node.add_child(ExpectCertificateVerify())
        node = node.add_child(ExpectFinished())
        node = node.add_child(
            FinishedGenerator(trunc_start=start, trunc_end=end))

        # This message may be sent right after server finished
        cycle = ExpectNewSessionTicket()
        node = node.add_child(cycle)
        node.add_child(cycle)

        # we do not expect any application data back
        # after malforming the Finished message
        node.next_sibling = ExpectAlert(AlertLevel.fatal,
                                        AlertDescription.decode_error)
        node = node.next_sibling.add_child(ExpectClose())
        conversations["truncation - cipher %s, start %d, end %s" \
                      % (CipherSuite.ietfNames[cipher],
                         start, end)] = conversation

    # padding
    # cipher, padding byte, left padding, right padding
    scenarios = [
        (CipherSuite.TLS_AES_128_GCM_SHA256, 0, 0, 1),
        (CipherSuite.TLS_AES_128_GCM_SHA256, 0, 0, 2),
        (CipherSuite.TLS_AES_128_GCM_SHA256, 0, 0, 4),
        (CipherSuite.TLS_AES_128_GCM_SHA256, 0, 0, 8),
        (CipherSuite.TLS_AES_128_GCM_SHA256, 0, 0, 16),  # SHA-384 size
        (CipherSuite.TLS_AES_128_GCM_SHA256, 0, 0, 32),
        (CipherSuite.TLS_AES_128_GCM_SHA256, 0, 0, 48),
        (CipherSuite.TLS_AES_128_GCM_SHA256, 0, 0,
         2**14 - 4 - 32),  # max record
        (CipherSuite.TLS_AES_128_GCM_SHA256, 0, 0, 0x20000),  # intermediate
        (CipherSuite.TLS_AES_128_GCM_SHA256, 0, 0,
         0x30000),  # bigger than max ClientHello
        (CipherSuite.TLS_AES_128_GCM_SHA256, 0, 0,
         256**3 - 1 - 32),  # max handshake
        (CipherSuite.TLS_AES_128_GCM_SHA256, 0, 1, 0),
        (CipherSuite.TLS_AES_128_GCM_SHA256, 0, 2, 0),
        (CipherSuite.TLS_AES_128_GCM_SHA256, 0, 4, 0),
        (CipherSuite.TLS_AES_128_GCM_SHA256, 0, 8, 0),
        (CipherSuite.TLS_AES_128_GCM_SHA256, 0, 16, 0),  # SHA-384 size
        (CipherSuite.TLS_AES_128_GCM_SHA256, 0, 32, 0),
        (CipherSuite.TLS_AES_128_GCM_SHA256, 0, 48, 0),
        (CipherSuite.TLS_AES_128_GCM_SHA256, 0, 2**14 - 4 - 32,
         0),  # max record
        (CipherSuite.TLS_AES_128_GCM_SHA256, 0, 12, 0),
        (CipherSuite.TLS_AES_128_GCM_SHA256, 0, 1, 1),
        (CipherSuite.TLS_AES_128_GCM_SHA256, 0, 8, 8),  # SHA-384 size
        (CipherSuite.TLS_AES_256_GCM_SHA384, 0, 0, 1),
        (CipherSuite.TLS_AES_256_GCM_SHA384, 0, 0, 2),
        (CipherSuite.TLS_AES_256_GCM_SHA384, 0, 0, 4),
        (CipherSuite.TLS_AES_256_GCM_SHA384, 0, 0, 8),
        (CipherSuite.TLS_AES_256_GCM_SHA384, 0, 0, 16),  # SHA-512 size
        (CipherSuite.TLS_AES_256_GCM_SHA384, 0, 0, 32),
        (CipherSuite.TLS_AES_256_GCM_SHA384, 0, 0, 48),
        (CipherSuite.TLS_AES_256_GCM_SHA384, 0, 0,
         2**14 - 4 - 48),  # max record
        (CipherSuite.TLS_AES_256_GCM_SHA384, 0, 0, 0x20000),
        (CipherSuite.TLS_AES_256_GCM_SHA384, 0, 0,
         0x30000),  # bigger than max ClientHello
        (CipherSuite.TLS_AES_256_GCM_SHA384, 0, 0,
         256**3 - 1 - 48),  # max handshake
        (CipherSuite.TLS_AES_256_GCM_SHA384, 0, 0, 12),
        (CipherSuite.TLS_AES_256_GCM_SHA384, 0, 1, 0),
        (CipherSuite.TLS_AES_256_GCM_SHA384, 0, 2, 0),
        (CipherSuite.TLS_AES_256_GCM_SHA384, 0, 4, 0),
        (CipherSuite.TLS_AES_256_GCM_SHA384, 0, 8, 0),
        (CipherSuite.TLS_AES_256_GCM_SHA384, 0, 16, 0),  # SHA-512 size
        (CipherSuite.TLS_AES_256_GCM_SHA384, 0, 32, 0),
        (CipherSuite.TLS_AES_256_GCM_SHA384, 0, 48, 0),
        (CipherSuite.TLS_AES_256_GCM_SHA384, 0, 2**14 - 4 - 48,
         0),  # max record
        (CipherSuite.TLS_AES_256_GCM_SHA384, 0, 1, 1),
        (CipherSuite.TLS_AES_256_GCM_SHA384, 0, 8, 8)  # SHA-512 size
    ]
    for cipher, pad_byte, pad_left, pad_right in scenarios:
        # longer timeout for longer messages
        # Because the client is sending encrypted data without waiting
        # on any server response, it can actually produce data at a faster
        # rate than the server is able to process it, meaning that a server
        # that aborts only after decrypting a full handshake message may have
        # quite a few records in the queue after we, as a client have finished
        # sending them. Since tlslite-ng has the ciphers implemented in
        # pure python, they are very slow, speeds of just 71.5KiB/s for
        # AES-256-GCM are not atypical. which translates to about 4 minutes
        # to transfer this data. Set the timeout to 5 for a small margin of
        # error.
        # Note: because we still are waiting for the server to send us an alert
        # (all graph terminal nodes go through ExpectAlert), server that fails
        # to do that will still cause the whole test conversation to fail in
        # case it just closes the connection on us
        timeout = 5 if max(pad_left, pad_right) < 2**14 * 4 else 300
        conversation = Connect(host, port, timeout=timeout)
        node = conversation
        ciphers = [cipher, CipherSuite.TLS_EMPTY_RENEGOTIATION_INFO_SCSV]
        ext = {}
        groups = [GroupName.secp256r1]
        ext[ExtensionType.key_share] = key_share_ext_gen(groups)
        ext[ExtensionType.supported_versions] = SupportedVersionsExtension()\
            .create([TLS_1_3_DRAFT, (3, 3)])
        ext[ExtensionType.supported_groups] = SupportedGroupsExtension()\
            .create(groups)
        sig_algs = [
            SignatureScheme.rsa_pss_rsae_sha256,
            SignatureScheme.rsa_pss_pss_sha256,
            SignatureScheme.rsa_pss_rsae_sha384,
            SignatureScheme.rsa_pss_pss_sha384
        ]
        ext[ExtensionType.signature_algorithms] = SignatureAlgorithmsExtension()\
            .create(sig_algs)
        ext[ExtensionType.signature_algorithms_cert] = SignatureAlgorithmsCertExtension()\
            .create(RSA_SIG_ALL)
        node = node.add_child(ClientHelloGenerator(ciphers, extensions=ext))
        node = node.add_child(ExpectServerHello())
        node = node.add_child(ExpectChangeCipherSpec())
        node = node.add_child(ExpectEncryptedExtensions())
        node = node.add_child(ExpectCertificate())
        node = node.add_child(ExpectCertificateVerify())
        node = node.add_child(ExpectFinished())

        # (the crazy handling of the messages below is because we are
        # sending one message (Finished) in multiple records, and server
        # can abort the connection after processing any number of records)

        # conditionally wait for NewSessionTicket messages
        # this will help in case the server does send early NST (without
        # waiting for client Finished) but will abort reading of the
        # Finished after one record
        no_message = node.add_child(ExpectNoMessage(0.001))
        nst = ExpectNewSessionTicket(note='first')
        no_message.next_sibling = nst
        nst.add_child(no_message)
        node = no_message

        # alert+close can happen during sending large Finished message,
        # therefore we are specifying it as its sibling
        close_node = ExpectAlert(AlertLevel.fatal,
                                 AlertDescription.decode_error)
        close_node.add_child(ExpectClose())
        node = node.add_child(
            FinishedGenerator(pad_byte=pad_byte,
                              pad_left=pad_left,
                              pad_right=pad_right))
        node.next_sibling = close_node

        # This message may be sent right after server finished
        cycle = ExpectNewSessionTicket(note='second')
        node = node.add_child(cycle)
        node.add_child(cycle)

        # we do not expect any application data back
        # after malforming the Finished message
        node.next_sibling = close_node

        conversations["padding - cipher %s, "
                      "pad_byte %d, "
                      "pad_left %d, "
                      "pad_right %d" \
                      % (CipherSuite.ietfNames[cipher],
                         pad_byte, pad_left, pad_right)] = conversation

    # run the conversation
    good = 0
    bad = 0
    failed = []
    if not num_limit:
        num_limit = len(conversations)

    # make sure that sanity test is run first and last
    # to verify that server was running and kept running throught
    sanity_test = ('sanity', conversations['sanity'])
    ordered_tests = chain([sanity_test],
                          islice(
                              filter(lambda x: x[0] != 'sanity',
                                     conversations.items()), num_limit),
                          [sanity_test])

    for c_name, c_test in ordered_tests:
        if run_only and c_name not in run_only or c_name in run_exclude:
            continue
        print("{0} ...".format(c_name))

        runner = Runner(c_test)

        res = True
        try:
            runner.run()
        except Exception:
            print("Error while processing")
            print(traceback.format_exc())
            res = False

        if res:
            good += 1
            print("OK\n")
        else:
            bad += 1
            failed.append(c_name)

    print("Fuzzing TLS 1.3 Finished messages")
    print("version: {0}\n".format(version))

    print("Test end")
    print("successful: {0}".format(good))
    print("failed: {0}".format(bad))
    failed_sorted = sorted(failed, key=natural_sort_keys)
    print("  {0}".format('\n  '.join(repr(i) for i in failed_sorted)))

    if bad > 0:
        sys.exit(1)
def main():

    host = "localhost"
    port = 4433
    num_limit = None
    run_exclude = set()
    expected_failures = {}
    last_exp_tmp = None

    argv = sys.argv[1:]
    opts, args = getopt.getopt(argv, "h:p:e:n:x:X:", ["help"])
    for opt, arg in opts:
        if opt == '-h':
            host = arg
        elif opt == '-p':
            port = int(arg)
        elif opt == '-e':
            run_exclude.add(arg)
        elif opt == '-n':
            num_limit = int(arg)
        elif opt == '-x':
            expected_failures[arg] = None
            last_exp_tmp = str(arg)
        elif opt == '-X':
            if not last_exp_tmp:
                raise ValueError("-x has to be specified before -X")
            expected_failures[last_exp_tmp] = str(arg)
        elif opt == '--help':
            help_msg()
            sys.exit(0)
        else:
            raise ValueError("Unknown option: {0}".format(opt))

    if args:
        run_only = set(args)
    else:
        run_only = None

    conversations = {}

    conversation = Connect(host, port)
    node = conversation
    ciphers = [CipherSuite.TLS_RSA_WITH_AES_128_CBC_SHA]
    ext = {ExtensionType.client_hello_padding: PaddingExtension().create(10)}
    node = node.add_child(ClientHelloGenerator(ciphers, extensions=ext))
    node = node.add_child(ExpectServerHello())
    node = node.add_child(ExpectCertificate())
    node = node.add_child(ExpectServerHelloDone())
    node = node.add_child(ClientKeyExchangeGenerator())
    node = node.add_child(ChangeCipherSpecGenerator())
    node = node.add_child(FinishedGenerator())
    node = node.add_child(ExpectChangeCipherSpec())
    node = node.add_child(ExpectFinished())
    node = node.add_child(
        ApplicationDataGenerator(bytearray(b"GET / HTTP/1.0\r\n\r\n")))
    node = node.add_child(ExpectApplicationData())
    node = node.add_child(
        AlertGenerator(AlertLevel.warning, AlertDescription.close_notify))
    node = node.add_child(ExpectAlert())
    node.next_sibling = ExpectClose()

    conversations["sanity"] = conversation

    # try large padding extension for ClientHello
    conversation = Connect(host, port)
    node = conversation
    ciphers = [CipherSuite.TLS_RSA_WITH_AES_128_CBC_SHA]
    # lowest size, that causes OpenSSL 1.1.0 and 1.1.0a to crash (SIGSEGV)
    padding_len = 21798
    ext = {
        ExtensionType.client_hello_padding:
        PaddingExtension().create(padding_len)
    }
    node = node.add_child(ClientHelloGenerator(ciphers, extensions=ext))
    node = node.add_child(ExpectServerHello())
    node = node.add_child(ExpectCertificate())
    node = node.add_child(ExpectServerHelloDone())
    node = node.add_child(ClientKeyExchangeGenerator())
    node = node.add_child(ChangeCipherSpecGenerator())
    node = node.add_child(FinishedGenerator())
    node = node.add_child(ExpectChangeCipherSpec())
    node = node.add_child(ExpectFinished())
    node = node.add_child(
        AlertGenerator(AlertLevel.warning, AlertDescription.close_notify))
    node = node.add_child(ExpectAlert())
    node.next_sibling = ExpectClose()

    conversations["Large ClientHello padding"] = conversation

    # change ClientHello length to incorrect large length
    conversation = Connect(host, port, timeout=5)
    node = conversation
    ciphers = [CipherSuite.TLS_RSA_WITH_AES_128_CBC_SHA]
    # lowest size substitution, that causes OpenSSL 1.1.0 and 1.1.0a
    # to crash (SIGABRT)
    node = node.add_child(
        fuzz_message(ClientHelloGenerator(ciphers),
                     substitutions={
                         2: 0x55,
                         3: 0x55
                     }))
    # wait for the timeout set in Connect to occur
    node = node.add_child(ExpectNoMessage(timeout=6))
    node.add_child(Close())

    conversations["Large incorrect ClientHello length"] = conversation

    # run the conversation
    good = 0
    bad = 0
    xfail = 0
    xpass = 0
    failed = []
    xpassed = []
    if not num_limit:
        num_limit = len(conversations)
    # make sure that sanity test is run first and last
    # to verify that server was running and kept running throughout
    sanity_tests = [('sanity', conversations['sanity'])]
    if run_only:
        if num_limit > len(run_only):
            num_limit = len(run_only)
        regular_tests = [(k, v) for k, v in conversations.items()
                         if k in run_only]
    else:
        regular_tests = [(k, v) for k, v in conversations.items()
                         if (k != 'sanity') and k not in run_exclude]
    sampled_tests = sample(regular_tests, min(num_limit, len(regular_tests)))
    ordered_tests = chain(sanity_tests, sampled_tests, sanity_tests)

    for c_name, c_test in ordered_tests:
        if run_only and c_name not in run_only or c_name in run_exclude:
            continue
        print("{0} ...".format(c_name))

        runner = Runner(c_test)

        res = True
        exception = None
        try:
            runner.run()
        except Exception as exp:
            exception = exp
            print("Error while processing")
            print(traceback.format_exc())
            res = False

        if c_name in expected_failures:
            if res:
                xpass += 1
                xpassed.append(c_name)
                print("XPASS-expected failure but test passed\n")
            else:
                if expected_failures[c_name] is not None and  \
                    expected_failures[c_name] not in str(exception):
                    bad += 1
                    failed.append(c_name)
                    print("Expected error message: {0}\n".format(
                        expected_failures[c_name]))
                else:
                    xfail += 1
                    print("OK-expected failure\n")
        else:
            if res:
                good += 1
                print("OK\n")
            else:
                bad += 1
                failed.append(c_name)

    print("Test end")
    print(20 * '=')
    print("version: {0}".format(version))
    print(20 * '=')
    print("TOTAL: {0}".format(len(sampled_tests) + 2 * len(sanity_tests)))
    print("SKIP: {0}".format(
        len(run_exclude.intersection(conversations.keys()))))
    print("PASS: {0}".format(good))
    print("XFAIL: {0}".format(xfail))
    print("FAIL: {0}".format(bad))
    print("XPASS: {0}".format(xpass))
    print(20 * '=')
    sort = sorted(xpassed, key=natural_sort_keys)
    if len(sort):
        print("XPASSED:\n\t{0}".format('\n\t'.join(repr(i) for i in sort)))
    sort = sorted(failed, key=natural_sort_keys)
    if len(sort):
        print("FAILED:\n\t{0}".format('\n\t'.join(repr(i) for i in sort)))

    if bad > 0:
        sys.exit(1)
def main():

    #
    # Test if client hello with garbage at the end gets rejected
    #

    host = "localhost"
    port = 4433
    num_limit = None
    run_exclude = set()
    expected_failures = {}
    last_exp_tmp = None

    argv = sys.argv[1:]
    opts, args = getopt.getopt(argv, "h:p:e:x:X:n:", ["help"])
    for opt, arg in opts:
        if opt == '-h':
            host = arg
        elif opt == '-p':
            port = int(arg)
        elif opt == '-e':
            run_exclude.add(arg)
        elif opt == '-x':
            expected_failures[arg] = None
            last_exp_tmp = str(arg)
        elif opt == '-X':
            if not last_exp_tmp:
                raise ValueError("-x has to be specified before -X")
            expected_failures[last_exp_tmp] = str(arg)
        elif opt == '-n':
            num_limit = int(arg)
        elif opt == '--help':
            help_msg()
            sys.exit(0)
        else:
            raise ValueError("Unknown option: {0}".format(opt))

    if args:
        run_only = set(args)
    else:
        run_only = None

    conversations = {}

    # sanity check
    conversation = Connect(host, port)
    node = conversation
    ext = {ExtensionType.renegotiation_info: None}
    ciphers = [CipherSuite.TLS_RSA_WITH_AES_128_CBC_SHA]
    node = node.add_child(ClientHelloGenerator(ciphers, extensions=ext))
    node = node.add_child(ExpectServerHello())
    node = node.add_child(ExpectCertificate())
    node = node.add_child(ExpectServerHelloDone())
    node = node.add_child(ClientKeyExchangeGenerator())
    node = node.add_child(ChangeCipherSpecGenerator())
    node = node.add_child(FinishedGenerator())
    node = node.add_child(ExpectChangeCipherSpec())
    node = node.add_child(ExpectFinished())
    node = node.add_child(ApplicationDataGenerator(
        bytearray(b"GET / HTTP/1.0\n\n")))
    node = node.add_child(ExpectApplicationData())
    node = node.add_child(AlertGenerator(AlertLevel.warning,
                                         AlertDescription.close_notify))
    node = node.add_child(ExpectAlert())
    node.next_sibling = ExpectClose()
    conversations["sanity"] = conversation

    # test if server doesn't interpret extensions past extensions length
    conversation = Connect(host, port)
    node = conversation
    ciphers = [CipherSuite.TLS_RSA_WITH_AES_128_CBC_SHA]
    node = node.add_child(pad_handshake(ClientHelloGenerator(ciphers,
                                               extensions={}),
                                        # empty renegotiation info
                                        pad=bytearray(b'\xff\x01\x00\x01\x00')))
    # responding to a malformed client hello is not correct, but tested below
    node = node.add_child(ExpectServerHello(extensions={}))
    node.next_sibling = ExpectAlert(AlertLevel.fatal,
                                    AlertDescription.decode_error)
    node.next_sibling.add_child(ExpectClose())

    conversations["extension past extensions"] = conversation


    for name, pad_len, pad_byte in [
                                ("small pad", 1, 0),
                                ("small pad", 2, 0),
                                ("small pad", 3, 0),
                                ("small pad", 1, 0xff),
                                ("small pad", 2, 0xff),
                                ("small pad", 3, 0xff),
                                ("medium pad", 256, 0),
                                ("large pad", 4096, 0),
                                ("big pad", 2**16, 0),
                                ("huge pad", 2**17+512, 0),
                                ("max pad", 2**24-1-48, 0),
                                ("small truncate", -1, 0),
                                ("small truncate", -2, 0),
                                ("small truncate", -3, 0),
                                ("small truncate", -4, 0),
                                ("small truncate", -5, 0),
                                ("small truncate", -6, 0),
                                # 7 bytes truncates whole 'extensions' creating
                                # a valid message
                                #("small truncate", -7, 0),
                                ("hello truncate", -8, 0),
                                ("hello truncate", -9, 0),
                                ("hello truncate", -10, 0),
                                ("hello truncate", -11, 0),
                                ("hello truncate", -12, 0),
                                ("hello truncate", -13, 0),
                                ("hello truncate", -32, 0),
                                ("hello truncate", -39, 0),
                                # truncate so that only one byte...
                                ("hello truncate", -47, 0),
                                # ...or no message remains
                                ("full message truncate", -48, 0)
                                ]:

        conversation = Connect(host, port)
        node = conversation
        ciphers = [CipherSuite.TLS_RSA_WITH_AES_128_CBC_SHA]

        msg = pad_handshake(ClientHelloGenerator(ciphers,
                                                 extensions={ExtensionType.renegotiation_info: None}),
                            pad_len, pad_byte)
        fragments = []
        node = node.add_child(split_message(msg, fragments, 2**14))
        node = node.add_child(ExpectNoMessage())
        node.next_sibling = ExpectAlert(AlertLevel.fatal,
                                         AlertDescription.decode_error)
        node.next_sibling.add_child(ExpectClose())
        node = node.add_child(TCPBufferingEnable())
        node = node.add_child(FlushMessageList(fragments))
        node = node.add_child(TCPBufferingDisable())
        node = node.add_child(TCPBufferingFlush())
        node = node.add_child(ExpectAlert(AlertLevel.fatal,
                                          AlertDescription.decode_error))
        node.add_child(ExpectClose())

        if "pad" in name:
            conversations[name + ": " + str(pad_len) + " of \"" + str(pad_byte) +
                          "\" byte padding"] = conversation
        else:
            conversations[name + ": " + str(-pad_len) +
                          " of bytes truncated"] = conversation

    # run the conversation
    good = 0
    bad = 0
    xfail = 0
    xpass = 0
    failed = []
    xpassed = []
    if not num_limit:
        num_limit = len(conversations)

    # make sure that sanity test is run first and last
    # to verify that server was running and kept running throughout
    sanity_tests = [('sanity', conversations['sanity'])]
    if run_only:
        if num_limit > len(run_only):
            num_limit = len(run_only)
        regular_tests = [(k, v) for k, v in conversations.items() if
                          k in run_only]
    else:
        regular_tests = [(k, v) for k, v in conversations.items() if
                         (k != 'sanity') and k not in run_exclude]
    sampled_tests = sample(regular_tests, min(num_limit, len(regular_tests)))
    ordered_tests = chain(sanity_tests, sampled_tests, sanity_tests)

    for c_name, c_test in ordered_tests:
        if run_only and c_name not in run_only or c_name in run_exclude:
            continue
        print("{0} ...".format(c_name))

        runner = Runner(c_test)

        res = True
        exception = None
        try:
            runner.run()
        except Exception as exp:
            exception = exp
            print("Error while processing")
            print(traceback.format_exc())
            res = False

        if c_name in expected_failures:
            if res:
                xpass += 1
                xpassed.append(c_name)
                print("XPASS-expected failure but test passed\n")
            else:
                if expected_failures[c_name] is not None and  \
                    expected_failures[c_name] not in str(exception):
                        bad += 1
                        failed.append(c_name)
                        print("Expected error message: {0}\n"
                            .format(expected_failures[c_name]))
                else:
                    xfail += 1
                    print("OK-expected failure\n")
        else:
            if res:
                good += 1
                print("OK\n")
            else:
                bad += 1
                failed.append(c_name)

    print("Check if ClientHello length checking is correct in server")

    print("Test end")
    print(20 * '=')
    print("version: {0}".format(version))
    print(20 * '=')
    print("TOTAL: {0}".format(len(sampled_tests) + 2*len(sanity_tests)))
    print("SKIP: {0}".format(len(run_exclude.intersection(conversations.keys()))))
    print("PASS: {0}".format(good))
    print("XFAIL: {0}".format(xfail))
    print("FAIL: {0}".format(bad))
    print("XPASS: {0}".format(xpass))
    print(20 * '=')
    sort = sorted(xpassed ,key=natural_sort_keys)
    if len(sort):
        print("XPASSED:\n\t{0}".format('\n\t'.join(repr(i) for i in sort)))
    sort = sorted(failed, key=natural_sort_keys)
    if len(sort):
        print("FAILED:\n\t{0}".format('\n\t'.join(repr(i) for i in sort)))

    if bad or xpass:
        sys.exit(1)
Beispiel #7
0
def main():

    host = "localhost"
    port = 4433
    run_exclude = set()

    argv = sys.argv[1:]
    opts, args = getopt.getopt(argv, "h:p:e:", ["help"])
    for opt, arg in opts:
        if opt == '-h':
            host = arg
        elif opt == '-p':
            port = int(arg)
        elif opt == '-e':
            run_exclude.add(arg)
        elif opt == '--help':
            help_msg()
            sys.exit(0)
        else:
            raise ValueError("Unknown option: {0}".format(opt))

    if args:
        run_only = set(args)
    else:
        run_only = None

    conversations = {}

    conversation = Connect(host, port)
    node = conversation
    ciphers = [CipherSuite.TLS_RSA_WITH_AES_128_CBC_SHA]
    ext = {ExtensionType.client_hello_padding: PaddingExtension().create(10)}
    node = node.add_child(ClientHelloGenerator(ciphers, extensions=ext))
    node = node.add_child(ExpectServerHello())
    node = node.add_child(ExpectCertificate())
    node = node.add_child(ExpectServerHelloDone())
    node = node.add_child(ClientKeyExchangeGenerator())
    node = node.add_child(ChangeCipherSpecGenerator())
    node = node.add_child(FinishedGenerator())
    node = node.add_child(ExpectChangeCipherSpec())
    node = node.add_child(ExpectFinished())
    node = node.add_child(
        ApplicationDataGenerator(bytearray(b"GET / HTTP/1.0\r\n\r\n")))
    node = node.add_child(ExpectApplicationData())
    node = node.add_child(
        AlertGenerator(AlertLevel.warning, AlertDescription.close_notify))
    node = node.add_child(ExpectAlert())
    node.next_sibling = ExpectClose()

    conversations["sanity"] = conversation

    # try large padding extension for ClientHello
    conversation = Connect(host, port)
    node = conversation
    ciphers = [CipherSuite.TLS_RSA_WITH_AES_128_CBC_SHA]
    # lowest size, that causes OpenSSL 1.1.0 and 1.1.0a to crash (SIGSEGV)
    padding_len = 21798
    ext = {
        ExtensionType.client_hello_padding:
        PaddingExtension().create(padding_len)
    }
    node = node.add_child(ClientHelloGenerator(ciphers, extensions=ext))
    node = node.add_child(ExpectServerHello())
    node = node.add_child(ExpectCertificate())
    node = node.add_child(ExpectServerHelloDone())
    node = node.add_child(ClientKeyExchangeGenerator())
    node = node.add_child(ChangeCipherSpecGenerator())
    node = node.add_child(FinishedGenerator())
    node = node.add_child(ExpectChangeCipherSpec())
    node = node.add_child(ExpectFinished())
    node = node.add_child(
        AlertGenerator(AlertLevel.warning, AlertDescription.close_notify))
    node = node.add_child(ExpectAlert())
    node.next_sibling = ExpectClose()

    conversations["Large ClientHello padding"] = conversation

    # change ClientHello length to incorrect large length
    conversation = Connect(host, port, timeout=5)
    node = conversation
    ciphers = [CipherSuite.TLS_RSA_WITH_AES_128_CBC_SHA]
    # lowest size substitution, that causes OpenSSL 1.1.0 and 1.1.0a
    # to crash (SIGABRT)
    node = node.add_child(
        fuzz_message(ClientHelloGenerator(ciphers),
                     substitutions={
                         2: 0x55,
                         3: 0x55
                     }))
    # wait for the timeout set in Connect to occur
    node = node.add_child(ExpectNoMessage(timeout=6))
    node.add_child(Close())

    conversations["Large incorrect ClientHello length"] = conversation

    # run the conversation
    good = 0
    bad = 0
    failed = []

    # make sure that sanity test is run first and last
    # to verify that server was running and kept running throughout
    sanity_tests = [('sanity', conversations['sanity'])]
    regular_tests = [(k, v) for k, v in conversations.items() if k != 'sanity']
    shuffled_tests = sample(regular_tests, len(regular_tests))
    ordered_tests = chain(sanity_tests, shuffled_tests, sanity_tests)

    for c_name, c_test in ordered_tests:
        if run_only and c_name not in run_only or c_name in run_exclude:
            continue
        print("{0} ...".format(c_name))

        runner = Runner(c_test)

        res = True
        try:
            runner.run()
        except:
            print("Error while processing")
            print(traceback.format_exc())
            res = False

        if res:
            good += 1
            print("OK\n")
        else:
            bad += 1
            failed.append(c_name)

    print("Test end")
    print("successful: {0}".format(good))
    print("failed: {0}".format(bad))
    failed_sorted = sorted(failed, key=natural_sort_keys)
    print("  {0}".format('\n  '.join(repr(i) for i in failed_sorted)))

    if bad > 0:
        sys.exit(1)
Beispiel #8
0
    def test_process(self):
        exp = ExpectNoMessage()

        exp.process(None, None)
Beispiel #9
0
def main():

    #
    # Test if client hello with garbage at the end gets rejected
    #

    host = "localhost"
    port = 4433
    num_limit = None
    run_exclude = set()

    argv = sys.argv[1:]
    opts, args = getopt.getopt(argv, "h:p:e:n:", ["help"])
    for opt, arg in opts:
        if opt == '-h':
            host = arg
        elif opt == '-p':
            port = int(arg)
        elif opt == '-e':
            run_exclude.add(arg)
        elif opt == '-n':
            num_limit = int(arg)
        elif opt == '--help':
            help_msg()
            sys.exit(0)
        else:
            raise ValueError("Unknown option: {0}".format(opt))

    if args:
        run_only = set(args)
    else:
        run_only = None

    conversations = {}

    # sanity check
    conversation = Connect(host, port)
    node = conversation
    ext = {ExtensionType.renegotiation_info: None}
    ciphers = [CipherSuite.TLS_RSA_WITH_AES_128_CBC_SHA]
    node = node.add_child(ClientHelloGenerator(ciphers, extensions=ext))
    node = node.add_child(ExpectServerHello())
    node = node.add_child(ExpectCertificate())
    node = node.add_child(ExpectServerHelloDone())
    node = node.add_child(ClientKeyExchangeGenerator())
    node = node.add_child(ChangeCipherSpecGenerator())
    node = node.add_child(FinishedGenerator())
    node = node.add_child(ExpectChangeCipherSpec())
    node = node.add_child(ExpectFinished())
    node = node.add_child(
        ApplicationDataGenerator(bytearray(b"GET / HTTP/1.0\n\n")))
    node = node.add_child(ExpectApplicationData())
    node = node.add_child(
        AlertGenerator(AlertLevel.warning, AlertDescription.close_notify))
    node = node.add_child(ExpectAlert())
    node.next_sibling = ExpectClose()
    conversations["sanity"] = conversation

    # test if server doesn't interpret extensions past extensions length
    conversation = Connect(host, port)
    node = conversation
    ciphers = [CipherSuite.TLS_RSA_WITH_AES_128_CBC_SHA]
    node = node.add_child(
        pad_handshake(
            ClientHelloGenerator(ciphers, extensions={}),
            # empty renegotiation info
            pad=bytearray(b'\xff\x01\x00\x01\x00')))
    # responding to a malformed client hello is not correct, but tested below
    node = node.add_child(ExpectServerHello(extensions={}))
    node.next_sibling = ExpectAlert(AlertLevel.fatal,
                                    AlertDescription.decode_error)
    node.next_sibling.add_child(ExpectClose())

    conversations["extension past extensions"] = conversation

    for name, pad_len, pad_byte in [
        ("small pad", 1, 0),
        ("small pad", 2, 0),
        ("small pad", 3, 0),
        ("small pad", 1, 0xff),
        ("small pad", 2, 0xff),
        ("small pad", 3, 0xff),
        ("medium pad", 256, 0),
        ("large pad", 4096, 0),
        ("big pad", 2**16, 0),
        ("huge pad", 2**17 + 512, 0),
        ("max pad", 2**24 - 1 - 48, 0),
        ("small truncate", -1, 0),
        ("small truncate", -2, 0),
        ("small truncate", -3, 0),
        ("small truncate", -4, 0),
        ("small truncate", -5, 0),
        ("small truncate", -6, 0),
            # 7 bytes truncates whole 'extensions' creating
            # a valid message
            #("small truncate", -7, 0),
        ("hello truncate", -8, 0),
        ("hello truncate", -9, 0),
        ("hello truncate", -10, 0),
        ("hello truncate", -11, 0),
        ("hello truncate", -12, 0),
        ("hello truncate", -13, 0),
        ("hello truncate", -32, 0),
        ("hello truncate", -39, 0),
            # truncate so that only one byte...
        ("hello truncate", -47, 0),
            # ...or no message remains
        ("full message truncate", -48, 0)
    ]:

        conversation = Connect(host, port)
        node = conversation
        ciphers = [CipherSuite.TLS_RSA_WITH_AES_128_CBC_SHA]

        msg = pad_handshake(
            ClientHelloGenerator(
                ciphers, extensions={ExtensionType.renegotiation_info: None}),
            pad_len, pad_byte)
        fragments = []
        node = node.add_child(split_message(msg, fragments, 2**14))
        node = node.add_child(ExpectNoMessage())
        node.next_sibling = ExpectAlert(AlertLevel.fatal,
                                        AlertDescription.decode_error)
        node.next_sibling.add_child(ExpectClose())
        node = node.add_child(TCPBufferingEnable())
        node = node.add_child(FlushMessageList(fragments))
        node = node.add_child(TCPBufferingDisable())
        node = node.add_child(TCPBufferingFlush())
        node = node.add_child(
            ExpectAlert(AlertLevel.fatal, AlertDescription.decode_error))
        node.add_child(ExpectClose())

        if "pad" in name:
            conversations[name + ": " + str(pad_len) + " of \"" +
                          str(pad_byte) + "\" byte padding"] = conversation
        else:
            conversations[name + ": " + str(-pad_len) +
                          " of bytes truncated"] = conversation

    # run the conversation
    good = 0
    bad = 0
    failed = []
    if not num_limit:
        num_limit = len(conversations)

    # make sure that sanity test is run first and last
    # to verify that server was running and kept running throught
    sanity_test = ('sanity', conversations['sanity'])
    ordered_tests = chain([sanity_test],
                          islice(
                              filter(lambda x: x[0] != 'sanity',
                                     conversations.items()), num_limit),
                          [sanity_test])

    for c_name, c_test in ordered_tests:
        if run_only and c_name not in run_only or c_name in run_exclude:
            continue
        print("{0} ...".format(c_name))

        runner = Runner(c_test)

        res = True
        try:
            runner.run()
        except Exception:
            print("Error while processing")
            print(traceback.format_exc())
            res = False

        if res:
            good += 1
            print("OK\n")
        else:
            bad += 1
            failed.append(c_name)

    print("Check if ClientHello length checking is correct in server")
    print("version: {0}\n".format(version))

    print("Test end")
    print("successful: {0}".format(good))
    print("failed: {0}".format(bad))
    failed_sorted = sorted(failed, key=natural_sort_keys)
    print("  {0}".format('\n  '.join(repr(i) for i in failed_sorted)))

    if bad > 0:
        sys.exit(1)