550 lines
22 KiB
Python
550 lines
22 KiB
Python
# Author: Hubert Kario, (c) 2018
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# Released under Gnu GPL v2.0, see LICENSE file for details
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from __future__ import print_function
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import traceback
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import sys
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import getopt
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from itertools import chain, islice
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from random import sample
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from tlsfuzzer.runner import Runner
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from tlsfuzzer.messages import Connect, ClientHelloGenerator, \
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ClientKeyExchangeGenerator, ChangeCipherSpecGenerator, \
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FinishedGenerator, ApplicationDataGenerator, AlertGenerator, \
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CertificateVerifyGenerator, CertificateGenerator, KeyUpdateGenerator, \
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ClearContext
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from tlsfuzzer.expect import ExpectServerHello, ExpectCertificate, \
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ExpectServerHelloDone, ExpectChangeCipherSpec, ExpectFinished, \
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ExpectAlert, ExpectApplicationData, ExpectClose, \
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ExpectEncryptedExtensions, ExpectCertificateVerify, \
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ExpectNewSessionTicket, ExpectCertificateRequest, ExpectKeyUpdate
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from tlslite.constants import CipherSuite, AlertLevel, AlertDescription, \
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TLS_1_3_DRAFT, GroupName, ExtensionType, SignatureScheme, \
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KeyUpdateMessageType
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from tlslite.keyexchange import ECDHKeyExchange
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from tlsfuzzer.utils.lists import natural_sort_keys
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from tlslite.extensions import KeyShareEntry, ClientKeyShareExtension, \
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SupportedVersionsExtension, SupportedGroupsExtension, \
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SignatureAlgorithmsExtension, SignatureAlgorithmsCertExtension
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from tlsfuzzer.helpers import key_share_gen, RSA_SIG_ALL, AutoEmptyExtension
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from tlslite.x509certchain import X509CertChain
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from tlslite.x509 import X509
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from tlslite.utils.keyfactory import parsePEMKey
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from tlslite.utils.compat import compatAscii2Bytes
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version = 4
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def help_msg():
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print("Usage: <script-name> [-h hostname] [-p port] [[probe-name] ...]")
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print(" -h hostname name of the host to run the test against")
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print(" localhost by default")
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print(" -p port port number to use for connection, 4433 by default")
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print(" probe-name if present, will run only the probes with given")
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print(" names and not all of them, e.g \"sanity\"")
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print(" -e probe-name exclude the probe from the list of the ones run")
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print(" may be specified multiple times")
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print(" -x probe-name expect the probe to fail. When such probe passes despite being marked like this")
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print(" it will be reported in the test summary and the whole script will fail.")
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print(" May be specified multiple times.")
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print(" -X message expect the `message` substring in exception raised during")
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print(" execution of preceding expected failure probe")
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print(" usage: [-x probe-name] [-X exception], order is compulsory!")
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print(" -n num run 'num' or all(if 0) tests instead of default(all)")
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print(" (\"sanity\" tests are always executed)")
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print(" -k keyfile file with private key")
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print(" -c certfile file with certificate of client")
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print(" --pha-as-reply expect post-handshake auth request as a reply to")
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print(" the HTTP GET instead of right after handshake")
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print(" --cert-required expect the server to require a client certificate")
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print(" and reply with certificate_required")
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print(" --min-tickets n Require the server to provide at least 'n' tickets")
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print(" before performing PHA. Defaults to 0.")
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print(" --query txt Message to send to server to cause it to request")
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print(" post-handshake authentication.")
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print(" \"GET /secret HTTP/1.0\\r\\n\\r\\n\" by default")
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print(" --pha-in-sanity Set when server requires the connections to always")
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print(" advertise support for PHA. This will cause")
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print(" \"sanity\" to be equal to \"post-handshake")
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print(" authentication\" test case.")
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print(" --help this message")
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def main():
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host = "localhost"
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port = 4433
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num_limit = None
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run_exclude = set()
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expected_failures = {}
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last_exp_tmp = None
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pha_as_reply = False
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cert_required = False
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pha_in_sanity = False
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min_tickets = 0
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pha_query = b'GET /secret HTTP/1.0\r\n\r\n'
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argv = sys.argv[1:]
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opts, args = getopt.getopt(
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argv, "h:p:e:x:X:n:k:c:",
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["help", "pha-as-reply", "cert-required", "min-tickets=", "query=",
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"pha-in-sanity"])
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for opt, arg in opts:
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if opt == '-h':
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host = arg
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elif opt == '-p':
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port = int(arg)
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elif opt == '-e':
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run_exclude.add(arg)
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elif opt == '-x':
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expected_failures[arg] = None
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last_exp_tmp = str(arg)
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elif opt == '-X':
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if not last_exp_tmp:
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raise ValueError("-x has to be specified before -X")
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expected_failures[last_exp_tmp] = str(arg)
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elif opt == '-n':
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num_limit = int(arg)
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elif opt == '--help':
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help_msg()
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sys.exit(0)
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elif opt == '--pha-as-reply':
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pha_as_reply = True
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elif opt == '--pha-in-sanity':
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pha_in_sanity = True
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elif opt == '--cert-required':
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cert_required = True
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elif opt == '--query':
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pha_query = compatAscii2Bytes(arg)
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elif opt == '--min-tickets':
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min_tickets = int(arg)
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elif opt == '-k':
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text_key = open(arg, 'rb').read()
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if sys.version_info[0] >= 3:
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text_key = str(text_key, 'utf-8')
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private_key = parsePEMKey(text_key, private=True)
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elif opt == '-c':
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text_cert = open(arg, 'rb').read()
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if sys.version_info[0] >= 3:
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text_cert = str(text_cert, 'utf-8')
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cert = X509()
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cert.parse(text_cert)
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else:
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raise ValueError("Unknown option: {0}".format(opt))
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if args:
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run_only = set(args)
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else:
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run_only = None
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conversations = {}
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conversation = Connect(host, port)
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node = conversation
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ciphers = [CipherSuite.TLS_AES_128_GCM_SHA256,
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CipherSuite.TLS_EMPTY_RENEGOTIATION_INFO_SCSV]
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ext = {}
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groups = [GroupName.secp256r1]
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key_shares = []
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for group in groups:
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key_shares.append(key_share_gen(group))
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ext[ExtensionType.key_share] = ClientKeyShareExtension().create(key_shares)
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ext[ExtensionType.supported_versions] = SupportedVersionsExtension()\
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.create([TLS_1_3_DRAFT, (3, 3)])
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ext[ExtensionType.supported_groups] = SupportedGroupsExtension()\
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.create(groups)
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sig_algs = [SignatureScheme.rsa_pss_rsae_sha256,
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SignatureScheme.rsa_pss_pss_sha256]
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ext[ExtensionType.signature_algorithms] = SignatureAlgorithmsExtension()\
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.create(sig_algs)
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ext[ExtensionType.signature_algorithms_cert] = SignatureAlgorithmsCertExtension()\
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.create(RSA_SIG_ALL)
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node = node.add_child(ClientHelloGenerator(ciphers, extensions=ext))
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node = node.add_child(ExpectServerHello())
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node = node.add_child(ExpectChangeCipherSpec())
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node = node.add_child(ExpectEncryptedExtensions())
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node = node.add_child(ExpectCertificate())
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node = node.add_child(ExpectCertificateVerify())
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node = node.add_child(ExpectFinished())
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node = node.add_child(FinishedGenerator())
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node = node.add_child(ApplicationDataGenerator(
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bytearray(b"GET / HTTP/1.0\r\n\r\n")))
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for _ in range(min_tickets):
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node = node.add_child(ExpectNewSessionTicket(description="counted"))
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# This message is optional and may show up 0 to many times
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cycle = ExpectNewSessionTicket()
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node = node.add_child(cycle)
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node.add_child(cycle)
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node.next_sibling = ExpectApplicationData()
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node = node.next_sibling.add_child(AlertGenerator(AlertLevel.warning,
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AlertDescription.close_notify))
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node = node.add_child(ExpectAlert())
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node.next_sibling = ExpectClose()
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conversations["sanity"] = conversation
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# test post-handshake authentication
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conversation = Connect(host, port)
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node = conversation
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ciphers = [CipherSuite.TLS_AES_128_GCM_SHA256,
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CipherSuite.TLS_EMPTY_RENEGOTIATION_INFO_SCSV]
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ext = {}
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groups = [GroupName.secp256r1]
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key_shares = []
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for group in groups:
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key_shares.append(key_share_gen(group))
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ext[ExtensionType.key_share] = ClientKeyShareExtension().create(key_shares)
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ext[ExtensionType.supported_versions] = SupportedVersionsExtension()\
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.create([TLS_1_3_DRAFT, (3, 3)])
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ext[ExtensionType.supported_groups] = SupportedGroupsExtension()\
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.create(groups)
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sig_algs = [SignatureScheme.rsa_pss_rsae_sha256,
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SignatureScheme.rsa_pss_pss_sha256]
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ext[ExtensionType.signature_algorithms] = SignatureAlgorithmsExtension()\
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.create(sig_algs)
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ext[ExtensionType.signature_algorithms_cert] = SignatureAlgorithmsCertExtension()\
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.create(RSA_SIG_ALL)
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ext[ExtensionType.post_handshake_auth] = AutoEmptyExtension()
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node = node.add_child(ClientHelloGenerator(ciphers, extensions=ext))
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node = node.add_child(ExpectServerHello())
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node = node.add_child(ExpectChangeCipherSpec())
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node = node.add_child(ExpectEncryptedExtensions())
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node = node.add_child(ExpectCertificate())
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node = node.add_child(ExpectCertificateVerify())
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node = node.add_child(ExpectFinished())
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node = node.add_child(FinishedGenerator())
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if pha_as_reply:
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node = node.add_child(ApplicationDataGenerator(
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bytearray(pha_query)))
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for _ in range(min_tickets):
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node = node.add_child(ExpectNewSessionTicket(description="counted"))
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# This message is optional and may show up 0 to many times
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cycle = ExpectNewSessionTicket(description="first set")
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node = node.add_child(cycle)
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node.add_child(cycle)
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context = []
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node.next_sibling = ExpectCertificateRequest(context=context)
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node = node.next_sibling.add_child(CertificateGenerator(X509CertChain([cert]), context=context))
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node = node.add_child(CertificateVerifyGenerator(private_key, context=context))
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node = node.add_child(FinishedGenerator(context=context))
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node = node.add_child(ClearContext(context))
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if not pha_as_reply:
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node = node.add_child(ApplicationDataGenerator(
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bytearray(pha_query)))
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# just like after the first handshake, after PHA, the NST can be sent
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# multiple times
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cycle = ExpectNewSessionTicket(description="second set")
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node = node.add_child(cycle)
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node.add_child(cycle)
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node.next_sibling = ExpectApplicationData()
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node = node.next_sibling.add_child(AlertGenerator(AlertLevel.warning,
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AlertDescription.close_notify))
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node = node.add_child(ExpectAlert())
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node.next_sibling = ExpectClose()
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conversations["post-handshake authentication"] = conversation
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if pha_in_sanity:
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conversations["sanity"] = conversation
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# test post-handshake authentication with KeyUpdate
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conversation = Connect(host, port)
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node = conversation
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ciphers = [CipherSuite.TLS_AES_128_GCM_SHA256,
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CipherSuite.TLS_EMPTY_RENEGOTIATION_INFO_SCSV]
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ext = {}
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groups = [GroupName.secp256r1]
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key_shares = []
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for group in groups:
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key_shares.append(key_share_gen(group))
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ext[ExtensionType.key_share] = ClientKeyShareExtension().create(key_shares)
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ext[ExtensionType.supported_versions] = SupportedVersionsExtension()\
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.create([TLS_1_3_DRAFT, (3, 3)])
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ext[ExtensionType.supported_groups] = SupportedGroupsExtension()\
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.create(groups)
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sig_algs = [SignatureScheme.rsa_pss_rsae_sha256,
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SignatureScheme.rsa_pss_pss_sha256]
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ext[ExtensionType.signature_algorithms] = SignatureAlgorithmsExtension()\
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.create(sig_algs)
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ext[ExtensionType.signature_algorithms_cert] = SignatureAlgorithmsCertExtension()\
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.create(RSA_SIG_ALL)
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ext[ExtensionType.post_handshake_auth] = AutoEmptyExtension()
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node = node.add_child(ClientHelloGenerator(ciphers, extensions=ext))
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node = node.add_child(ExpectServerHello())
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node = node.add_child(ExpectChangeCipherSpec())
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node = node.add_child(ExpectEncryptedExtensions())
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node = node.add_child(ExpectCertificate())
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node = node.add_child(ExpectCertificateVerify())
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node = node.add_child(ExpectFinished())
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node = node.add_child(FinishedGenerator())
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if pha_as_reply:
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node = node.add_child(ApplicationDataGenerator(
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bytearray(pha_query)))
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for _ in range(min_tickets):
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node = node.add_child(ExpectNewSessionTicket(description="counted"))
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# This message is optional and may show up 0 to many times
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cycle = ExpectNewSessionTicket(description="first set")
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node = node.add_child(cycle)
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node.add_child(cycle)
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context = []
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node.next_sibling = ExpectCertificateRequest(context=context)
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node = node.next_sibling.add_child(KeyUpdateGenerator(
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KeyUpdateMessageType.update_requested))
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node = node.add_child(CertificateGenerator(X509CertChain([cert]), context=context))
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node = node.add_child(CertificateVerifyGenerator(private_key, context=context))
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node = node.add_child(FinishedGenerator(context=context))
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if not pha_as_reply:
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node = node.add_child(ApplicationDataGenerator(
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bytearray(pha_query)))
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# just like after the first handshake, after PHA, the NST can be sent
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# multiple times
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cycle = ExpectNewSessionTicket(description="second set")
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node = node.add_child(cycle)
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node.add_child(cycle)
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node.next_sibling = ExpectKeyUpdate(
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KeyUpdateMessageType.update_not_requested)
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# but KeyUpdate can be sent asynchonously, then NST will be received
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# after KeyUpdate
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cycle = ExpectNewSessionTicket(description="third set")
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node = node.next_sibling.add_child(cycle)
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node.add_child(cycle)
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node.next_sibling = ExpectApplicationData()
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node = node.next_sibling.add_child(
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AlertGenerator(AlertLevel.warning,
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AlertDescription.close_notify))
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node = node.add_child(ExpectAlert())
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node.next_sibling = ExpectClose()
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conversations["post-handshake authentication with KeyUpdate"] = conversation
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# test post-handshake with client not providing a certificate
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conversation = Connect(host, port)
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node = conversation
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ciphers = [CipherSuite.TLS_AES_128_GCM_SHA256,
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CipherSuite.TLS_EMPTY_RENEGOTIATION_INFO_SCSV]
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ext = {}
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groups = [GroupName.secp256r1]
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key_shares = []
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for group in groups:
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key_shares.append(key_share_gen(group))
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ext[ExtensionType.key_share] = ClientKeyShareExtension().create(key_shares)
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ext[ExtensionType.supported_versions] = SupportedVersionsExtension()\
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.create([TLS_1_3_DRAFT, (3, 3)])
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ext[ExtensionType.supported_groups] = SupportedGroupsExtension()\
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.create(groups)
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sig_algs = [SignatureScheme.rsa_pss_rsae_sha256,
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SignatureScheme.rsa_pss_pss_sha256]
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ext[ExtensionType.signature_algorithms] = SignatureAlgorithmsExtension()\
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.create(sig_algs)
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ext[ExtensionType.signature_algorithms_cert] = SignatureAlgorithmsCertExtension()\
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.create(RSA_SIG_ALL)
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ext[ExtensionType.post_handshake_auth] = AutoEmptyExtension()
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node = node.add_child(ClientHelloGenerator(ciphers, extensions=ext))
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node = node.add_child(ExpectServerHello())
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node = node.add_child(ExpectChangeCipherSpec())
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node = node.add_child(ExpectEncryptedExtensions())
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node = node.add_child(ExpectCertificate())
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node = node.add_child(ExpectCertificateVerify())
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node = node.add_child(ExpectFinished())
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node = node.add_child(FinishedGenerator())
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if pha_as_reply:
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node = node.add_child(ApplicationDataGenerator(
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bytearray(pha_query)))
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for _ in range(min_tickets):
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node = node.add_child(ExpectNewSessionTicket(description="counted"))
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# This message is optional and may show up 0 to many times
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cycle = ExpectNewSessionTicket(description="first set")
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node = node.add_child(cycle)
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node.add_child(cycle)
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context = []
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node.next_sibling = ExpectCertificateRequest(context=context)
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node = node.next_sibling.add_child(CertificateGenerator(X509CertChain([]), context=context))
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node = node.add_child(FinishedGenerator(context=context))
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if not pha_as_reply:
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node = node.add_child(ApplicationDataGenerator(
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bytearray(pha_query)))
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if cert_required:
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node = node.add_child(ExpectAlert(
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AlertLevel.fatal,
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AlertDescription.certificate_required))
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node.add_child(ExpectClose())
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else:
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# just like after the first handshake, after PHA, the NST can be sent
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# multiple times
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cycle = ExpectNewSessionTicket(description="second set")
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node = node.add_child(cycle)
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node.add_child(cycle)
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node.next_sibling = ExpectApplicationData()
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node = node.next_sibling.add_child(AlertGenerator(AlertLevel.warning,
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AlertDescription.close_notify))
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node = node.add_child(ExpectAlert())
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node.next_sibling = ExpectClose()
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conversations["post-handshake authentication with no client cert"] = conversation
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# malformed signatures in post-handshake authentication
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conversation = Connect(host, port)
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node = conversation
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ciphers = [CipherSuite.TLS_AES_128_GCM_SHA256,
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CipherSuite.TLS_EMPTY_RENEGOTIATION_INFO_SCSV]
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ext = {}
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groups = [GroupName.secp256r1]
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key_shares = []
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for group in groups:
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key_shares.append(key_share_gen(group))
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ext[ExtensionType.key_share] = ClientKeyShareExtension().create(key_shares)
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ext[ExtensionType.supported_versions] = SupportedVersionsExtension()\
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.create([TLS_1_3_DRAFT, (3, 3)])
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ext[ExtensionType.supported_groups] = SupportedGroupsExtension()\
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.create(groups)
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sig_algs = [SignatureScheme.rsa_pss_rsae_sha256,
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SignatureScheme.rsa_pss_pss_sha256]
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ext[ExtensionType.signature_algorithms] = SignatureAlgorithmsExtension()\
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.create(sig_algs)
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ext[ExtensionType.signature_algorithms_cert] = SignatureAlgorithmsCertExtension()\
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.create(RSA_SIG_ALL)
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ext[ExtensionType.post_handshake_auth] = AutoEmptyExtension()
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node = node.add_child(ClientHelloGenerator(ciphers, extensions=ext))
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node = node.add_child(ExpectServerHello())
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node = node.add_child(ExpectChangeCipherSpec())
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node = node.add_child(ExpectEncryptedExtensions())
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node = node.add_child(ExpectCertificate())
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node = node.add_child(ExpectCertificateVerify())
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node = node.add_child(ExpectFinished())
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node = node.add_child(FinishedGenerator())
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if pha_as_reply:
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node = node.add_child(ApplicationDataGenerator(
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bytearray(pha_query)))
|
|
|
|
for _ in range(min_tickets):
|
|
node = node.add_child(ExpectNewSessionTicket(description="counted"))
|
|
|
|
# This message is optional and may show up 0 to many times
|
|
cycle = ExpectNewSessionTicket()
|
|
node = node.add_child(cycle)
|
|
node.add_child(cycle)
|
|
|
|
context = []
|
|
node.next_sibling = ExpectCertificateRequest(context=context)
|
|
node = node.next_sibling.add_child(CertificateGenerator(X509CertChain([cert]), context=context))
|
|
node = node.add_child(CertificateVerifyGenerator(private_key, padding_xors={-1: 0xff}, context=context))
|
|
node = node.add_child(ExpectAlert(AlertLevel.fatal,
|
|
AlertDescription.decrypt_error))
|
|
node.add_child(ExpectClose())
|
|
#node = node.add_child(FinishedGenerator(context=context))
|
|
conversations["malformed signature in PHA"] = 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 throught
|
|
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 post-handshake authentication test case")
|
|
print("Check if server will accept PHA, check if server rejects invalid")
|
|
print("signatures on PHA CertificateVerify, etc.")
|
|
|
|
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)
|
|
|
|
if __name__ == "__main__":
|
|
main()
|