Esempio n. 1
0
    def test_gen(self):
        message_gen = RawMessageGenerator(12, bytearray(b'\xff\x02'))

        message = message_gen.generate(None)

        self.assertIsNotNone(message)
        self.assertEqual(message.contentType, 12)
        self.assertEqual(message.write(), bytearray(b'\xff\x02'))
    def test_gen(self):
        message_gen = RawMessageGenerator(12, bytearray(b'\xff\x02'))

        message = message_gen.generate(None)

        self.assertIsNotNone(message)
        self.assertEqual(message.contentType, 12)
        self.assertEqual(message.write(), bytearray(b'\xff\x02'))
Esempio n. 3
0
    def test___repr___with_description(self):
        message_gen = RawMessageGenerator(12,
                                          bytearray(b'\xff'),
                                          description="a broken message")

        self.assertEqual(repr(message_gen),
                         "RawMessageGenerator(content_type=12, "\
                         "data=bytearray(b'\\xff'), description='a broken "\
                         "message')")
Esempio n. 4
0
    def test_split_of_zero_length(self):
        # 0 length messages are intentionally unhandled
        fragments = []
        msg_gen = split_message(RawMessageGenerator(20, bytearray(0)),
                                fragments, 30)

        state = ConnectionState()
        with self.assertRaises(IndexError):
            msg_gen.generate(state)
def main():

    #
    # Test if server aborts connection upon receiving a hello request
    #

    conversations = {}

    conversation = Connect("localhost", 4433)
    node = conversation
    # type - 0, and 3 bytes of length (0)
    node = node.add_child(
        RawMessageGenerator(22, bytearray(b'\x00\x00\x00\x00')))
    node = node.add_child(ExpectAlert())
    node.next_sibling = ExpectClose()
    node = node.add_child(ExpectClose())

    conversations["hello request to server"] = conversation

    # run the conversation
    good = 0
    bad = 0

    for conversation_name in conversations:
        conversation = conversations[conversation_name]

        runner = Runner(conversation)

        print(str(conversation_name) + "...\n")
        res = True
        try:
            runner.run()
        except:
            print("Error while processing")
            print(traceback.format_exc())
            res = False

        if res:
            good += 1
        else:
            bad += 1

    print("Test end")
    print("successful: {0}".format(good))
    print("failed: {0}".format(bad))

    if bad > 0:
        sys.exit(1)
Esempio n. 6
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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 = {}

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

    # check if server aborts with hello request
    conversation = Connect(host, port)
    node = conversation
    # type - 0, and 3 bytes of length (0)
    node = node.add_child(
        RawMessageGenerator(22, bytearray(b'\x00\x00\x00\x00')))
    node = node.add_child(ExpectAlert())
    node.next_sibling = ExpectClose()
    node = node.add_child(ExpectClose())

    conversations["hello request to server"] = 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 throughout
    sanity_tests = [('sanity', conversations['sanity'])]
    regular_tests = [(k, v) for k, v in conversations.items() if k != 'sanity']
    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
        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)
Esempio n. 7
0
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: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 = {}

    conversation = Connect(host, port)
    node = conversation
    ciphers = [
        CipherSuite.TLS_AES_128_GCM_SHA256,
        CipherSuite.TLS_EMPTY_RENEGOTIATION_INFO_SCSV
    ]
    ext = {}
    groups = [GroupName.secp256r1]
    key_shares = []
    for group in groups:
        key_shares.append(key_share_gen(group))
    ext[ExtensionType.key_share] = ClientKeyShareExtension().create(key_shares)
    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.ecdsa_secp256r1_sha256
    ]
    ext[ExtensionType.signature_algorithms] = SignatureAlgorithmsExtension()\
        .create(sig_algs)
    ext[ExtensionType.signature_algorithms_cert] = SignatureAlgorithmsCertExtension()\
        .create(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()
    node.add_child(ExpectClose())
    conversations["sanity"] = conversation

    # Record with zero content type after handshake.
    conversation = Connect(host, port)
    node = conversation
    ciphers = [
        CipherSuite.TLS_AES_128_GCM_SHA256,
        CipherSuite.TLS_EMPTY_RENEGOTIATION_INFO_SCSV
    ]
    ext = {}
    groups = [GroupName.secp256r1]
    key_shares = []
    for group in groups:
        key_shares.append(key_share_gen(group))
    ext[ExtensionType.key_share] = ClientKeyShareExtension().create(key_shares)
    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.ecdsa_secp256r1_sha256
    ]
    ext[ExtensionType.signature_algorithms] = SignatureAlgorithmsExtension()\
        .create(sig_algs)
    ext[ExtensionType.signature_algorithms_cert] = SignatureAlgorithmsCertExtension()\
        .create(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(
        RawMessageGenerator(content_type=0, data=bytearray(0)))

    # 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 = ExpectAlert(AlertLevel.fatal,
                                    AlertDescription.unexpected_message)
    node.next_sibling.add_child(ExpectClose())

    conversations["zero content type after handshake"] = conversation

    # Record with zero content type after handshake.
    conversation = Connect(host, port)
    node = conversation
    ciphers = [
        CipherSuite.TLS_AES_128_GCM_SHA256,
        CipherSuite.TLS_EMPTY_RENEGOTIATION_INFO_SCSV
    ]
    ext = {}
    groups = [GroupName.secp256r1]
    key_shares = []
    for group in groups:
        key_shares.append(key_share_gen(group))
    ext[ExtensionType.key_share] = ClientKeyShareExtension().create(key_shares)
    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.ecdsa_secp256r1_sha256
    ]
    ext[ExtensionType.signature_algorithms] = SignatureAlgorithmsExtension()\
        .create(sig_algs)
    ext[ExtensionType.signature_algorithms_cert] = SignatureAlgorithmsCertExtension()\
        .create(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(
        RawMessageGenerator(content_type=0, data=bytearray(42)))

    # 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 = ExpectAlert(AlertLevel.fatal,
                                    AlertDescription.unexpected_message)
    node.next_sibling.add_child(ExpectClose())

    conversations[
        "zero content type with padding after handshake"] = conversation

    # Record with zero content type during handshake.
    conversation = Connect(host, port)
    node = conversation
    ciphers = [
        CipherSuite.TLS_AES_128_GCM_SHA256,
        CipherSuite.TLS_EMPTY_RENEGOTIATION_INFO_SCSV
    ]
    ext = {}
    groups = [GroupName.secp256r1]
    key_shares = []
    for group in groups:
        key_shares.append(key_share_gen(group))
    ext[ExtensionType.key_share] = ClientKeyShareExtension().create(key_shares)
    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.ecdsa_secp256r1_sha256
    ]
    ext[ExtensionType.signature_algorithms] = SignatureAlgorithmsExtension()\
        .create(sig_algs)
    ext[ExtensionType.signature_algorithms_cert] = SignatureAlgorithmsCertExtension()\
        .create(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(
        RawMessageGenerator(content_type=0, data=bytearray(0)))

    # 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 = ExpectAlert(AlertLevel.fatal,
                                    AlertDescription.unexpected_message)
    node.next_sibling.add_child(ExpectClose())

    conversations["zero content type during handshake"] = conversation

    # Record with zero content type and padding during handshake.
    conversation = Connect(host, port)
    node = conversation
    ciphers = [
        CipherSuite.TLS_AES_128_GCM_SHA256,
        CipherSuite.TLS_EMPTY_RENEGOTIATION_INFO_SCSV
    ]
    ext = {}
    groups = [GroupName.secp256r1]
    key_shares = []
    for group in groups:
        key_shares.append(key_share_gen(group))
    ext[ExtensionType.key_share] = ClientKeyShareExtension().create(key_shares)
    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.ecdsa_secp256r1_sha256
    ]
    ext[ExtensionType.signature_algorithms] = SignatureAlgorithmsExtension()\
        .create(sig_algs)
    ext[ExtensionType.signature_algorithms_cert] = SignatureAlgorithmsCertExtension()\
        .create(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(
        RawMessageGenerator(content_type=0, data=bytearray(42)))

    # 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 = ExpectAlert(AlertLevel.fatal,
                                    AlertDescription.unexpected_message)
    node.next_sibling.add_child(ExpectClose())

    conversations[
        "zero content type with padding during handshake"] = conversation

    # Record with zero content type during application data.
    conversation = Connect(host, port)
    node = conversation
    ciphers = [
        CipherSuite.TLS_AES_128_GCM_SHA256,
        CipherSuite.TLS_EMPTY_RENEGOTIATION_INFO_SCSV
    ]
    ext = {}
    groups = [GroupName.secp256r1]
    key_shares = []
    for group in groups:
        key_shares.append(key_share_gen(group))
    ext[ExtensionType.key_share] = ClientKeyShareExtension().create(key_shares)
    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.ecdsa_secp256r1_sha256
    ]
    ext[ExtensionType.signature_algorithms] = SignatureAlgorithmsExtension()\
        .create(sig_algs)
    ext[ExtensionType.signature_algorithms_cert] = SignatureAlgorithmsCertExtension()\
        .create(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 /")))
    node = node.add_child(
        RawMessageGenerator(content_type=0, data=bytearray(0)))

    # 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 = ExpectAlert(AlertLevel.fatal,
                                    AlertDescription.unexpected_message)
    node.next_sibling.add_child(ExpectClose())

    conversations["zero content type during application data"] = conversation

    # Record with zero content type and padding during application data.
    conversation = Connect(host, port)
    node = conversation
    ciphers = [
        CipherSuite.TLS_AES_128_GCM_SHA256,
        CipherSuite.TLS_EMPTY_RENEGOTIATION_INFO_SCSV
    ]
    ext = {}
    groups = [GroupName.secp256r1]
    key_shares = []
    for group in groups:
        key_shares.append(key_share_gen(group))
    ext[ExtensionType.key_share] = ClientKeyShareExtension().create(key_shares)
    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.ecdsa_secp256r1_sha256
    ]
    ext[ExtensionType.signature_algorithms] = SignatureAlgorithmsExtension()\
        .create(sig_algs)
    ext[ExtensionType.signature_algorithms_cert] = SignatureAlgorithmsCertExtension()\
        .create(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 /")))
    node = node.add_child(
        RawMessageGenerator(content_type=0, data=bytearray(42)))

    # 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 = ExpectAlert(AlertLevel.fatal,
                                    AlertDescription.unexpected_message)
    node.next_sibling.add_child(ExpectClose())

    conversations[
        "zero content type and padding during application data"] = 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'])]
    regular_tests = [(k, v) for k, v in conversations.items() if k != 'sanity']
    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("TLS 1.3 zero-value content type")
    print(
        "Check if handling of records with an internal content type of zero is "
    )
    print("correct.\n")

    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)
Esempio n. 8
0
def main():
    """
    Test if server aborts connection upon receiving record layer with
    unexpected content type
    24 is hearbeat but it's not negotiated
    """
    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 = {}

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

    conversation = Connect(host, port)
    node = conversation
    ciphers = [CipherSuite.TLS_RSA_WITH_AES_128_CBC_SHA]
    node = node.add_child(
        ClientHelloGenerator(
            ciphers, extensions={ExtensionType.renegotiation_info: None}))
    node = node.add_child(
        ExpectServerHello(extensions={ExtensionType.renegotiation_info: None}))
    node = node.add_child(ExpectCertificate())
    node = node.add_child(ExpectServerHelloDone())
    node = node.add_child(
        RawMessageGenerator(24, bytearray(b"hello server!\n")))
    node = node.add_child(ExpectAlert())
    node.next_sibling = ExpectClose()
    node = node.add_child(ExpectClose())

    conversations["before Client Key Exchange"] = conversation

    conversation = Connect(host, port)
    node = conversation
    ciphers = [CipherSuite.TLS_RSA_WITH_AES_128_CBC_SHA]
    node = node.add_child(
        ClientHelloGenerator(
            ciphers, extensions={ExtensionType.renegotiation_info: None}))
    node = node.add_child(
        ExpectServerHello(extensions={ExtensionType.renegotiation_info: None}))
    node = node.add_child(ExpectCertificate())
    node = node.add_child(ExpectServerHelloDone())
    node = node.add_child(ClientKeyExchangeGenerator())
    node = node.add_child(
        RawMessageGenerator(24, bytearray(b"hello server!\n")))
    node = node.add_child(ExpectAlert())
    node.next_sibling = ExpectClose()
    node = node.add_child(ExpectClose())

    conversations["before Change Cipher Spec"] = conversation

    conversation = Connect(host, port)
    node = conversation
    ciphers = [CipherSuite.TLS_RSA_WITH_AES_128_CBC_SHA]
    node = node.add_child(
        ClientHelloGenerator(
            ciphers, extensions={ExtensionType.renegotiation_info: None}))
    node = node.add_child(
        ExpectServerHello(extensions={ExtensionType.renegotiation_info: None}))
    node = node.add_child(ExpectCertificate())
    node = node.add_child(ExpectServerHelloDone())
    node = node.add_child(ClientKeyExchangeGenerator())
    node = node.add_child(ChangeCipherSpecGenerator())
    node = node.add_child(
        RawMessageGenerator(24, bytearray(b"hello server!\n")))
    node = node.add_child(ExpectAlert())
    node.next_sibling = ExpectClose()
    node = node.add_child(ExpectClose())

    conversations["before Finished"] = conversation

    conversation = Connect(host, port)
    node = conversation
    ciphers = [CipherSuite.TLS_RSA_WITH_AES_128_CBC_SHA]
    node = node.add_child(
        ClientHelloGenerator(
            ciphers, extensions={ExtensionType.renegotiation_info: None}))
    node = node.add_child(
        ExpectServerHello(extensions={ExtensionType.renegotiation_info: None}))
    node = node.add_child(ExpectCertificate())
    node = node.add_child(ExpectServerHelloDone())
    node = node.add_child(ClientKeyExchangeGenerator())
    node = node.add_child(ChangeCipherSpecGenerator())
    node = node.add_child(
        RawMessageGenerator(24, bytearray(b"hello server!\n")))
    node = node.add_child(ExpectAlert())
    node.next_sibling = ExpectClose()
    node = node.add_child(ExpectClose())

    conversations["before Finished"] = 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 or xpass:
        sys.exit(1)
def main():
    """
    Check SSLv2Hello support

    Test if the server supports SSLv2-style Client Hello messages for
    negotiating TLS connections
    """
    host = "localhost"
    port = 4433
    num_limit = None
    run_exclude = set()
    no_ssl2 = False

    argv = sys.argv[1:]
    opts, args = getopt.getopt(argv, "h:p:e:n:", ["help", "no-ssl2"])
    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 == '--no-ssl2':
            no_ssl2 = True
        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,
        CipherSuite.TLS_EMPTY_RENEGOTIATION_INFO_SCSV
    ]
    if no_ssl2:
        # any unassigned ciphers are ok, they just work as padding
        ciphers += [0x0a00 + i for i in range(1, 1 + 256 - len(ciphers))]
    node = node.add_child(ClientHelloGenerator(ciphers))
    ext = {ExtensionType.renegotiation_info: None}
    node = node.add_child(ExpectServerHello(extensions=ext))
    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.child = ExpectClose()
    # if we're doing TLSv1.0 the server should be doing 1/n-1 splitting
    node.next_sibling = ExpectApplicationData()
    node = node.next_sibling
    node.next_sibling = ExpectClose()

    conversations["sanity"] = conversation

    # instruct RecordLayer to use SSLv2 record layer protocol (0, 2)
    conversation = Connect(host, port, version=(0, 2))
    node = conversation
    ciphers = [
        CipherSuite.TLS_RSA_WITH_AES_128_CBC_SHA,
        CipherSuite.TLS_EMPTY_RENEGOTIATION_INFO_SCSV
    ]
    if no_ssl2:
        # to create a SSLv2 CH that is clearly broken SSLv3 CH we need
        # SSLv2 CH with a list of ciphers that has length divisible by 256
        # (as cipher IDs in SSLv2 are 3 byte long, 256*3 is the smallest common
        # multiple of 3 and 256)
        ciphers += [0x0a00 + i for i in range(1, 1 + 256 - len(ciphers))]
    node = node.add_child(ClientHelloGenerator(ciphers, ssl2=True))
    if no_ssl2:
        node = node.add_child(ExpectAlert())
        node.add_child(ExpectClose())
    else:
        ext = {ExtensionType.renegotiation_info: None}
        node = node.add_child(ExpectServerHello(extensions=ext))
        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.child = ExpectClose()
        # if we're doing TLSv1.0 the server should be doing 1/n-1 splitting
        node.next_sibling = ExpectApplicationData()
        node = node.next_sibling
        node.next_sibling = ExpectClose()

    conversations["SSLv2 Client Hello"] = conversation

    conversation = Connect(host, port, version=(0, 2))
    node = conversation
    node = node.add_child(
        RawMessageGenerator(ContentType.handshake, bytearray()))
    ciphers = [
        CipherSuite.TLS_RSA_WITH_AES_128_CBC_SHA,
        CipherSuite.TLS_EMPTY_RENEGOTIATION_INFO_SCSV
    ]
    if no_ssl2:
        ciphers += [0x0a00 + i for i in range(1, 1 + 256 - len(ciphers))]
        # we depend on alignment of the SSLv2 CH ciphers length and session id
        # length with the SSLv3 CH handshake protocol length value
        # so for the same kind of test, we need to send 0 bytes as the 7th to
        # 9th byte
        # the first message is two bytes so it will be interpreted as
        # protocol \x80 and first byte of version \x00
        # then this header will be interpreted as second byte of version \x80
        # and first byte of length - we thus need to send something that is
        # multiple of 256
        data = bytearray(b'\x04' +  # will be interpreted as second byte of
                         # SSLv3 RecordLayer header
                         b'\x01' +  # will be interpreted as handshake protocol
                         # message type - client_hello
                         b'\x00' * 3 +  # length of handshake message - 0 bytes
                         # (invalid)
                         b'\xff' * (256 - 5)  # padding needed to bring SSLv2
                         # record length to be multiple of 256
                         )
        assert len(data) % 256 == 0
        node = node.add_child(RawMessageGenerator(0, data))
    else:
        node = node.add_child(ClientHelloGenerator(ciphers, ssl2=True))
    # SSLv2 does not have well defined error handling, so usually errors
    # just cause connection close. But sending TLS alert is correct too.
    node = node.add_child(ExpectAlert())
    if not no_ssl2:
        # but be strict with Alerts when SSLv2 is not supported
        node.next_sibling = ExpectClose()
    node.add_child(ExpectClose())

    conversations["Empty SSLv2 record"] = conversation

    conversation = Connect(host, port, version=(0, 2))
    node = conversation
    node = node.add_child(
        RawMessageGenerator(ContentType.handshake, bytearray(1)))
    ciphers = [
        CipherSuite.TLS_RSA_WITH_AES_128_CBC_SHA,
        CipherSuite.TLS_EMPTY_RENEGOTIATION_INFO_SCSV
    ]
    if no_ssl2:
        ciphers += [0x0a00 + i for i in range(1, 1 + 256 - len(ciphers))]
    node = node.add_child(ClientHelloGenerator(ciphers, ssl2=True))
    node = node.add_child(ExpectAlert())
    if not no_ssl2:
        node.next_sibling = ExpectClose()
    node.add_child(ExpectClose())

    conversations["Empty SSLv2 record - type 0"] = conversation

    conversation = Connect(host, port, version=(0, 2))
    node = conversation
    node = node.add_child(
        RawMessageGenerator(ContentType.handshake, bytearray([1])))
    ciphers = [
        CipherSuite.TLS_RSA_WITH_AES_128_CBC_SHA,
        CipherSuite.TLS_EMPTY_RENEGOTIATION_INFO_SCSV
    ]
    if no_ssl2:
        ciphers += [0x0a00 + i for i in range(1, 1 + 256 - len(ciphers))]
    node = node.add_child(ClientHelloGenerator(ciphers, ssl2=True))
    node = node.add_child(ExpectAlert())
    if not no_ssl2:
        node.next_sibling = ExpectClose()
    node.add_child(ExpectClose())

    conversations["Empty SSLv2 record - type 1"] = conversation

    conversation = Connect(host, port, version=(0, 2))
    node = conversation
    node = node.add_child(
        RawMessageGenerator(ContentType.handshake, bytearray(b'\x01\x03\x03')))
    ciphers = [
        CipherSuite.TLS_RSA_WITH_AES_128_CBC_SHA,
        CipherSuite.TLS_EMPTY_RENEGOTIATION_INFO_SCSV
    ]
    if no_ssl2:
        ciphers += [0x0a00 + i for i in range(1, 1 + 256 - len(ciphers))]
    node = node.add_child(ClientHelloGenerator(ciphers, ssl2=True))
    node = node.add_child(ExpectAlert())
    if not no_ssl2:
        node.next_sibling = ExpectClose()
    node = node.add_child(ExpectClose())

    conversations["Just version in SSLv2 hello"] = conversation

    # run the conversations
    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("Basic test for SSLv2 Hello protocol for TLS 1.0 to TLS 1.2 "
          "negotiation")
    print("Checks if the server can negotiate TLS when client initiated the")
    print("connection using a SSLv2 compatible ClientHello but included TLS")
    print("compatible ciphersuites")
    print("Alternatively, verifies that SSLv2 records are rejected when run")
    print("with --no-ssl2 option")
    print("version: {0}".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)
Esempio n. 10
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 = {}

    conversation = Connect(host, port)
    node = conversation
    ciphers = [CipherSuite.TLS_AES_128_GCM_SHA256,
               CipherSuite.TLS_EMPTY_RENEGOTIATION_INFO_SCSV]
    ext = {}
    groups = [GroupName.secp256r1]
    key_shares = []
    for group in groups:
        key_shares.append(key_share_gen(group))
    ext[ExtensionType.key_share] = ClientKeyShareExtension().create(key_shares)
    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]
    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

    for enc in ('handshake', 'application'):
        for padsize in [0, 2, 5, 30]:
            conversation = Connect(host, port)
            node = conversation
            ciphers = [CipherSuite.TLS_AES_128_GCM_SHA256,
                       CipherSuite.TLS_EMPTY_RENEGOTIATION_INFO_SCSV]
            ext = {}
            groups = [GroupName.secp256r1]
            key_shares = []
            for group in groups:
                key_shares.append(key_share_gen(group))
            ext[ExtensionType.key_share] = ClientKeyShareExtension().create(key_shares)
            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]
            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())
            if enc == "application":
                node = node.add_child(FinishedGenerator())
            if padsize:
                node = node.add_child(SetPaddingCallback(
                                      SetPaddingCallback.fixed_length_cb(padsize)))
            node = node.add_child(RawMessageGenerator(ContentType.alert, bytearray(0)))

            # 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 = ExpectAlert(AlertLevel.fatal, AlertDescription.unexpected_message)
            node.next_sibling.add_child(ExpectClose())
            if padsize:
                conversations["empty alert with {0} bytes of padding using {1} keys"
                              .format(padsize, enc)] = conversation
            else:
                conversations["empty alert with no padding using {0} keys"
                              .format(enc)] = 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 throughout
    sanity_tests = [('sanity', conversations['sanity'])]
    regular_tests = [(k, v) for k, v in conversations.items() if k != 'sanity']
    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
        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 the tolerance of empty non-application-data messages. These should be")
    print("rejected with unexpected message alert (see Record Padding section of TLS1.3)")
    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)
Esempio n. 11
0
def main():
    """
    Check SSLv2Hello support

    Test if the server supports SSLv2-style Client Hello messages for
    negotiating TLS connections
    """
    conversations = {}
    host = "localhost"
    port = 4433

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

    # instruct RecordLayer to use SSLv2 record layer protocol (0, 2)
    conversation = Connect(host, port, version=(0, 2))
    node = conversation
    ciphers = [
        CipherSuite.TLS_RSA_WITH_AES_128_CBC_SHA,
        CipherSuite.TLS_EMPTY_RENEGOTIATION_INFO_SCSV
    ]
    node = node.add_child(ClientHelloGenerator(ciphers, ssl2=True))
    ext = {ExtensionType.renegotiation_info: None}
    node = node.add_child(ExpectServerHello(extensions=ext))
    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.child = ExpectClose()
    # if we're doing TLSv1.0 the server should be doing 1/n-1 splitting
    node.next_sibling = ExpectApplicationData()
    node = node.next_sibling
    node.next_sibling = ExpectClose()

    conversations["SSLv2 Client Hello"] = conversation

    conversation = Connect(host, port, version=(0, 2))
    node = conversation
    node = node.add_child(
        RawMessageGenerator(ContentType.handshake, bytearray()))
    ciphers = [
        CipherSuite.TLS_RSA_WITH_AES_128_CBC_SHA,
        CipherSuite.TLS_EMPTY_RENEGOTIATION_INFO_SCSV
    ]
    node = node.add_child(ClientHelloGenerator(ciphers, ssl2=True))
    # SSLv2 does not have well defined error handling, so usually errors
    # just cause connection close. But sending TLS alert is correct too.
    node = node.add_child(ExpectAlert())
    node.next_sibling = ExpectClose()
    node = node.add_child(ExpectClose())

    conversations["Empty SSLv2 record"] = conversation

    conversation = Connect(host, port, version=(0, 2))
    node = conversation
    node = node.add_child(
        RawMessageGenerator(ContentType.handshake, bytearray(1)))
    ciphers = [
        CipherSuite.TLS_RSA_WITH_AES_128_CBC_SHA,
        CipherSuite.TLS_EMPTY_RENEGOTIATION_INFO_SCSV
    ]
    node = node.add_child(ClientHelloGenerator(ciphers, ssl2=True))
    node = node.add_child(ExpectAlert())
    node.next_sibling = ExpectClose()
    node = node.add_child(ExpectClose())

    conversations["Empty SSLv2 record - type 0"] = conversation

    conversation = Connect(host, port, version=(0, 2))
    node = conversation
    node = node.add_child(
        RawMessageGenerator(ContentType.handshake, bytearray([1])))
    ciphers = [
        CipherSuite.TLS_RSA_WITH_AES_128_CBC_SHA,
        CipherSuite.TLS_EMPTY_RENEGOTIATION_INFO_SCSV
    ]
    node = node.add_child(ClientHelloGenerator(ciphers, ssl2=True))
    node = node.add_child(ExpectAlert())
    node.next_sibling = ExpectClose()
    node = node.add_child(ExpectClose())

    conversations["Empty SSLv2 record - type 1"] = conversation

    conversation = Connect(host, port, version=(0, 2))
    node = conversation
    node = node.add_child(
        RawMessageGenerator(ContentType.handshake, bytearray(b'\x01\x03\x03')))
    ciphers = [
        CipherSuite.TLS_RSA_WITH_AES_128_CBC_SHA,
        CipherSuite.TLS_EMPTY_RENEGOTIATION_INFO_SCSV
    ]
    node = node.add_child(ClientHelloGenerator(ciphers, ssl2=True))
    node = node.add_child(ExpectAlert())
    node.next_sibling = ExpectClose()
    node = node.add_child(ExpectClose())

    conversations["Just version in SSLv2 hello"] = conversation

    good = 0
    bad = 0

    for conversation_name, conversation in conversations.items():
        print("{0} ...".format(conversation_name))

        runner = Runner(conversation)

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

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

    print("Test end")
    print("successful: {0}".format(good))
    print("failed: {0}".format(bad))

    if bad > 0:
        sys.exit(1)
Esempio n. 12
0
def main():

    #
    # Test if server aborts connection upon receiving record layer with
    # unexpected content type
    # 24 is hearbeat but it's not negotiated
    #

    conversations = {}

    conversation = Connect("localhost", 4433)
    node = conversation
    ciphers = [CipherSuite.TLS_RSA_WITH_AES_128_CBC_SHA]
    node = node.add_child(ClientHelloGenerator(ciphers,
                                               extensions={ExtensionType.renegotiation_info:None}))
    node = node.add_child(ExpectServerHello(extensions={ExtensionType.renegotiation_info:None}))
    node = node.add_child(ExpectCertificate())
    node = node.add_child(ExpectServerHelloDone())
    node = node.add_child(RawMessageGenerator(24, bytearray(b"hello server!\n")))
    node = node.add_child(ExpectAlert())
    node.next_sibling = ExpectClose()
    node = node.add_child(ExpectClose())

    conversations["before Client Key Exchange"] = conversation

    conversation = Connect("localhost", 4433)
    node = conversation
    ciphers = [CipherSuite.TLS_RSA_WITH_AES_128_CBC_SHA]
    node = node.add_child(ClientHelloGenerator(ciphers,
                                               extensions={ExtensionType.renegotiation_info:None}))
    node = node.add_child(ExpectServerHello(extensions={ExtensionType.renegotiation_info:None}))
    node = node.add_child(ExpectCertificate())
    node = node.add_child(ExpectServerHelloDone())
    node = node.add_child(ClientKeyExchangeGenerator())
    node = node.add_child(RawMessageGenerator(24, bytearray(b"hello server!\n")))
    node = node.add_child(ExpectAlert())
    node.next_sibling = ExpectClose()
    node = node.add_child(ExpectClose())

    conversations["before Change Cipher Spec"] = conversation

    conversation = Connect("localhost", 4433)
    node = conversation
    ciphers = [CipherSuite.TLS_RSA_WITH_AES_128_CBC_SHA]
    node = node.add_child(ClientHelloGenerator(ciphers,
                                               extensions={ExtensionType.renegotiation_info:None}))
    node = node.add_child(ExpectServerHello(extensions={ExtensionType.renegotiation_info:None}))
    node = node.add_child(ExpectCertificate())
    node = node.add_child(ExpectServerHelloDone())
    node = node.add_child(ClientKeyExchangeGenerator())
    node = node.add_child(ChangeCipherSpecGenerator())
    node = node.add_child(RawMessageGenerator(24, bytearray(b"hello server!\n")))
    node = node.add_child(ExpectAlert())
    node.next_sibling = ExpectClose()
    node = node.add_child(ExpectClose())

    conversations["before Finished"] = conversation

    conversation = Connect("localhost", 4433)
    node = conversation
    ciphers = [CipherSuite.TLS_RSA_WITH_AES_128_CBC_SHA]
    node = node.add_child(ClientHelloGenerator(ciphers,
                                               extensions={ExtensionType.renegotiation_info:None}))
    node = node.add_child(ExpectServerHello(extensions={ExtensionType.renegotiation_info:None}))
    node = node.add_child(ExpectCertificate())
    node = node.add_child(ExpectServerHelloDone())
    node = node.add_child(ClientKeyExchangeGenerator())
    node = node.add_child(ChangeCipherSpecGenerator())
    node = node.add_child(RawMessageGenerator(24, bytearray(b"hello server!\n")))
    node = node.add_child(ExpectAlert())
    node.next_sibling = ExpectClose()
    node = node.add_child(ExpectClose())

    conversations["before Finished"] = conversation

    # run the conversation
    good = 0
    bad = 0

    for conversation_name in conversations:
        conversation = conversations[conversation_name]

        runner = Runner(conversation)

        print(str(conversation_name) + "...\n")
        res = True
        try:
            runner.run()
        except:
            print("Error while processing")
            print(traceback.format_exc())
            res = False

        if res:
            good+=1
        else:
            bad+=1

    print("Test end")
    print("successful: {0}".format(good))
    print("failed: {0}".format(bad))

    if bad > 0:
        sys.exit(1)
Esempio n. 13
0
def main():
    """
    Check SSLv2Hello support

    Test if the server supports SSLv2-style Client Hello messages for
    negotiating TLS connections
    """
    host = "localhost"
    port = 4433
    num_limit = None
    run_exclude = set()
    expected_failures = {}
    last_exp_tmp = None
    dhe = False
    no_ssl2 = False

    argv = sys.argv[1:]
    opts, args = getopt.getopt(argv, "h:p:e:x:X:n:d", ["help", "no-ssl2"])
    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 == '-d':
            dhe = True
        elif opt == '--no-ssl2':
            no_ssl2 = True
        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
    if dhe:
        ext = {}
        groups = [GroupName.secp256r1, GroupName.ffdhe2048]
        ext[ExtensionType.supported_groups] = SupportedGroupsExtension()\
            .create(groups)
        ext[ExtensionType.signature_algorithms] = \
            SignatureAlgorithmsExtension().create(RSA_SIG_ALL)
        ext[ExtensionType.signature_algorithms_cert] = \
            SignatureAlgorithmsCertExtension().create(RSA_SIG_ALL)
        ciphers = [
            CipherSuite.TLS_ECDHE_RSA_WITH_AES_128_CBC_SHA,
            CipherSuite.TLS_DHE_RSA_WITH_AES_128_CBC_SHA,
            CipherSuite.TLS_EMPTY_RENEGOTIATION_INFO_SCSV
        ]
    else:
        ext = None
        ciphers = [
            CipherSuite.TLS_RSA_WITH_AES_128_CBC_SHA,
            CipherSuite.TLS_EMPTY_RENEGOTIATION_INFO_SCSV
        ]
    if no_ssl2:
        # any unassigned ciphers are ok, they just work as padding
        # we use them to set the length byte of the cipher list in SSLv2 to
        # value that will cause the packet to be rejected when parsed as SSLv3
        ciphers += [0x0a00 + i for i in range(1, 1 + 256 - len(ciphers))]
        # here we are verifying just that the server will not fall over when it
        # receives them
    node = node.add_child(ClientHelloGenerator(ciphers, extensions=ext))
    ext = {ExtensionType.renegotiation_info: None}
    node = node.add_child(ExpectServerHello(extensions=ext))
    node = node.add_child(ExpectCertificate())
    if dhe:
        node = node.add_child(ExpectServerKeyExchange())
    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.child = ExpectClose()
    # if we're doing TLSv1.0 the server should be doing 1/n-1 splitting
    node.next_sibling = ExpectApplicationData()
    node = node.next_sibling
    node.next_sibling = ExpectClose()

    conversations["sanity"] = conversation

    # instruct RecordLayer to use SSLv2 record layer protocol (0, 2)
    conversation = Connect(host, port, version=(0, 2))
    node = conversation
    if dhe:
        ciphers = [
            CipherSuite.TLS_ECDHE_RSA_WITH_AES_128_CBC_SHA,
            CipherSuite.TLS_DHE_RSA_WITH_AES_128_CBC_SHA,
            CipherSuite.TLS_EMPTY_RENEGOTIATION_INFO_SCSV
        ]
    else:
        ciphers = [
            CipherSuite.TLS_RSA_WITH_AES_128_CBC_SHA,
            CipherSuite.TLS_EMPTY_RENEGOTIATION_INFO_SCSV
        ]
    if no_ssl2:
        # to create a SSLv2 CH that is clearly broken SSLv3 CH we need
        # SSLv2 CH with a list of ciphers that has length divisible by 256
        # (as cipher IDs in SSLv2 are 3 byte long, 256*3 is the smallest common
        # multiple of 3 and 256)
        ciphers += [0x0a00 + i for i in range(1, 1 + 256 - len(ciphers))]
    node = node.add_child(ClientHelloGenerator(ciphers, ssl2=True))
    if no_ssl2:
        node = node.add_child(ExpectAlert())
        node.add_child(ExpectClose())
    else:
        ext = {ExtensionType.renegotiation_info: None}
        node = node.add_child(ExpectServerHello(extensions=ext))
        node = node.add_child(ExpectCertificate())
        if dhe:
            node = node.add_child(ExpectServerKeyExchange())
        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.child = ExpectClose()
        # if we're doing TLSv1.0 the server should be doing 1/n-1 splitting
        node.next_sibling = ExpectApplicationData()
        node = node.next_sibling
        node.next_sibling = ExpectClose()

    conversations["SSLv2 Client Hello"] = conversation

    conversation = Connect(host, port, version=(0, 2))
    node = conversation
    node = node.add_child(
        RawMessageGenerator(ContentType.handshake, bytearray()))
    if dhe:
        ciphers = [
            CipherSuite.TLS_ECDHE_RSA_WITH_AES_128_CBC_SHA,
            CipherSuite.TLS_DHE_RSA_WITH_AES_128_CBC_SHA,
            CipherSuite.TLS_EMPTY_RENEGOTIATION_INFO_SCSV
        ]
    else:
        ciphers = [
            CipherSuite.TLS_RSA_WITH_AES_128_CBC_SHA,
            CipherSuite.TLS_EMPTY_RENEGOTIATION_INFO_SCSV
        ]
    if no_ssl2:
        ciphers += [0x0a00 + i for i in range(1, 1 + 256 - len(ciphers))]
        # we depend on alignment of the SSLv2 CH ciphers length and session id
        # length with the SSLv3 CH handshake protocol length value
        # so for the same kind of test, we need to send 0 bytes as the 7th to
        # 9th byte
        # the first message is two bytes so it will be interpreted as
        # protocol \x80 and first byte of version \x00
        # then this header will be interpreted as second byte of version \x80
        # and first byte of length - we thus need to send something that is
        # multiple of 256
        data = bytearray(b'\x04' +  # will be interpreted as second byte of
                         # SSLv3 RecordLayer header
                         b'\x01' +  # will be interpreted as handshake protocol
                         # message type - client_hello
                         b'\x00' * 3 +  # length of handshake message - 0 bytes
                         # (invalid)
                         b'\xff' * (256 - 5)  # padding needed to bring SSLv2
                         # record length to be multiple of 256
                         )
        assert len(data) % 256 == 0
        node = node.add_child(RawMessageGenerator(0, data))
    else:
        node = node.add_child(ClientHelloGenerator(ciphers, ssl2=True))
    # SSLv2 does not have well defined error handling, so usually errors
    # just cause connection close. But sending TLS alert is correct too.
    node = node.add_child(ExpectAlert())
    if not no_ssl2:
        # but be strict with Alerts when SSLv2 is not supported
        node.next_sibling = ExpectClose()
    node.add_child(ExpectClose())

    conversations["Empty SSLv2 record"] = conversation

    conversation = Connect(host, port, version=(0, 2))
    node = conversation
    node = node.add_child(
        RawMessageGenerator(ContentType.handshake, bytearray(1)))
    if dhe:
        ciphers = [
            CipherSuite.TLS_ECDHE_RSA_WITH_AES_128_CBC_SHA,
            CipherSuite.TLS_DHE_RSA_WITH_AES_128_CBC_SHA,
            CipherSuite.TLS_EMPTY_RENEGOTIATION_INFO_SCSV
        ]
    else:
        ciphers = [
            CipherSuite.TLS_RSA_WITH_AES_128_CBC_SHA,
            CipherSuite.TLS_EMPTY_RENEGOTIATION_INFO_SCSV
        ]
    if no_ssl2:
        ciphers += [0x0a00 + i for i in range(1, 1 + 256 - len(ciphers))]
    node = node.add_child(ClientHelloGenerator(ciphers, ssl2=True))
    node = node.add_child(ExpectAlert())
    if not no_ssl2:
        node.next_sibling = ExpectClose()
    node.add_child(ExpectClose())

    conversations["Empty SSLv2 record - type 0"] = conversation

    conversation = Connect(host, port, version=(0, 2))
    node = conversation
    node = node.add_child(
        RawMessageGenerator(ContentType.handshake, bytearray([1])))
    if dhe:
        ciphers = [
            CipherSuite.TLS_ECDHE_RSA_WITH_AES_128_CBC_SHA,
            CipherSuite.TLS_DHE_RSA_WITH_AES_128_CBC_SHA,
            CipherSuite.TLS_EMPTY_RENEGOTIATION_INFO_SCSV
        ]
    else:
        ciphers = [
            CipherSuite.TLS_RSA_WITH_AES_128_CBC_SHA,
            CipherSuite.TLS_EMPTY_RENEGOTIATION_INFO_SCSV
        ]
    if no_ssl2:
        ciphers += [0x0a00 + i for i in range(1, 1 + 256 - len(ciphers))]
    node = node.add_child(ClientHelloGenerator(ciphers, ssl2=True))
    node = node.add_child(ExpectAlert())
    if not no_ssl2:
        node.next_sibling = ExpectClose()
    node.add_child(ExpectClose())

    conversations["Empty SSLv2 record - type 1"] = conversation

    conversation = Connect(host, port, version=(0, 2))
    node = conversation
    node = node.add_child(
        RawMessageGenerator(ContentType.handshake, bytearray(b'\x01\x03\x03')))
    if dhe:
        ciphers = [
            CipherSuite.TLS_ECDHE_RSA_WITH_AES_128_CBC_SHA,
            CipherSuite.TLS_DHE_RSA_WITH_AES_128_CBC_SHA,
            CipherSuite.TLS_EMPTY_RENEGOTIATION_INFO_SCSV
        ]
    else:
        ciphers = [
            CipherSuite.TLS_RSA_WITH_AES_128_CBC_SHA,
            CipherSuite.TLS_EMPTY_RENEGOTIATION_INFO_SCSV
        ]
    if no_ssl2:
        ciphers += [0x0a00 + i for i in range(1, 1 + 256 - len(ciphers))]
    node = node.add_child(ClientHelloGenerator(ciphers, ssl2=True))
    node = node.add_child(ExpectAlert())
    if not no_ssl2:
        node.next_sibling = ExpectClose()
    node = node.add_child(ExpectClose())

    conversations["Just version in SSLv2 hello"] = conversation

    # run the conversations
    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("Basic test for SSLv2 Hello protocol for TLS 1.0 to TLS 1.2 "
          "negotiation")
    print("Checks if the server can negotiate TLS when client initiated the")
    print("connection using a SSLv2 compatible ClientHello but included TLS")
    print("compatible ciphersuites")
    print("Alternatively, verifies that SSLv2 records are rejected when run")
    print("with --no-ssl2 option\n")
    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)
Esempio n. 14
0
def main():
    """
    Test if server aborts connection upon receiving record layer with
    unexpected content type
    24 is hearbeat but it's not negotiated
    """
    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 = {}

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

    conversation = Connect(host, port)
    node = conversation
    ciphers = [CipherSuite.TLS_RSA_WITH_AES_128_CBC_SHA]
    node = node.add_child(
        ClientHelloGenerator(
            ciphers, extensions={ExtensionType.renegotiation_info: None}))
    node = node.add_child(
        ExpectServerHello(extensions={ExtensionType.renegotiation_info: None}))
    node = node.add_child(ExpectCertificate())
    node = node.add_child(ExpectServerHelloDone())
    node = node.add_child(
        RawMessageGenerator(24, bytearray(b"hello server!\n")))
    node = node.add_child(ExpectAlert())
    node.next_sibling = ExpectClose()
    node = node.add_child(ExpectClose())

    conversations["before Client Key Exchange"] = conversation

    conversation = Connect(host, port)
    node = conversation
    ciphers = [CipherSuite.TLS_RSA_WITH_AES_128_CBC_SHA]
    node = node.add_child(
        ClientHelloGenerator(
            ciphers, extensions={ExtensionType.renegotiation_info: None}))
    node = node.add_child(
        ExpectServerHello(extensions={ExtensionType.renegotiation_info: None}))
    node = node.add_child(ExpectCertificate())
    node = node.add_child(ExpectServerHelloDone())
    node = node.add_child(ClientKeyExchangeGenerator())
    node = node.add_child(
        RawMessageGenerator(24, bytearray(b"hello server!\n")))
    node = node.add_child(ExpectAlert())
    node.next_sibling = ExpectClose()
    node = node.add_child(ExpectClose())

    conversations["before Change Cipher Spec"] = conversation

    conversation = Connect(host, port)
    node = conversation
    ciphers = [CipherSuite.TLS_RSA_WITH_AES_128_CBC_SHA]
    node = node.add_child(
        ClientHelloGenerator(
            ciphers, extensions={ExtensionType.renegotiation_info: None}))
    node = node.add_child(
        ExpectServerHello(extensions={ExtensionType.renegotiation_info: None}))
    node = node.add_child(ExpectCertificate())
    node = node.add_child(ExpectServerHelloDone())
    node = node.add_child(ClientKeyExchangeGenerator())
    node = node.add_child(ChangeCipherSpecGenerator())
    node = node.add_child(
        RawMessageGenerator(24, bytearray(b"hello server!\n")))
    node = node.add_child(ExpectAlert())
    node.next_sibling = ExpectClose()
    node = node.add_child(ExpectClose())

    conversations["before Finished"] = conversation

    conversation = Connect(host, port)
    node = conversation
    ciphers = [CipherSuite.TLS_RSA_WITH_AES_128_CBC_SHA]
    node = node.add_child(
        ClientHelloGenerator(
            ciphers, extensions={ExtensionType.renegotiation_info: None}))
    node = node.add_child(
        ExpectServerHello(extensions={ExtensionType.renegotiation_info: None}))
    node = node.add_child(ExpectCertificate())
    node = node.add_child(ExpectServerHelloDone())
    node = node.add_child(ClientKeyExchangeGenerator())
    node = node.add_child(ChangeCipherSpecGenerator())
    node = node.add_child(
        RawMessageGenerator(24, bytearray(b"hello server!\n")))
    node = node.add_child(ExpectAlert())
    node.next_sibling = ExpectClose()
    node = node.add_child(ExpectClose())

    conversations["before Finished"] = 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:
            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)
Esempio n. 15
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    def test___repr__(self):
        message_gen = RawMessageGenerator(12, bytearray(b'\xff\x02'))

        self.assertEqual(repr(message_gen),
                         "RawMessageGenerator(content_type=12, "\
                         "data=bytearray(b'\\xff\\x02'))")
Esempio n. 16
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    def test___init__(self):
        message_gen = RawMessageGenerator(12, bytearray(b'\xff\x02'))

        self.assertIsNotNone(message_gen)
        self.assertEqual(message_gen.content_type, 12)
        self.assertEqual(message_gen.data, bytearray(b'\xff\x02'))